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ウェーブフロント 本社

EstablishmentMarch 1990
number of employees29
addressKanagawa/Nishi-ku, Yokohama-shi/Minato Mirai Queens Tower B (12th floor)
phone045-682-7070
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last updated:Feb 13, 2024
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Business Improvement Support Solution Business Improvement Support Solution
Lab Management DX Solution Lab Management DX Solution
Functional Safety/Reliability Assessment Functional Safety/Reliability Assessment
Plasma Analysis Solution Plasma Analysis Solution
DX solutions in the production and manufacturing process DX solutions in the production and manufacturing process
CAE Solutions CAE Solutions
Equipment Management System Solution Equipment Management System Solution
CAE Contract Analysis CAE Contract Analysis
CAE

CAE Contract Analysis

In addition to selling software such as CAE, our company also conducts contract analysis based on customer requests. For example: - Analysis of plasma behavior occurring inside piping - Investigation of homogeneity issues in surface modification using ion beams - Gas flow within CVD equipment - Behavior of plasma in an ICP device with RF electrodes - Simulation of a spiral pump (centrifugal pump) - Fluid analysis of an internal gear pump - Airflow simulation in an engine room - Simulation of a shell and tube heat exchanger We perform analyses tailored to customer needs.

AI "Neural Designer" that anyone can easily use right now.

We have the data but not the knowledge, we have the knowledge but want to try it out; for companies like these, definitely!

■I have data thrown into Excel and other tools, but I don't know how to utilize it. ■I have no knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! Easily with 'Neural Designer'! Start using AI right away from today! Even without troublesome programming knowledge in Python, TensorFlow, or PyTorch, you can immediately master AI, machine learning, deep learning, and deep learning! Of course, it is also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from that troublesome programming and focus on your core work?

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AI 'Neural Designer' that anyone can easily use right now.

We have the data but lack the knowledge; we lack the knowledge but want to try using it. This is perfect for companies like yours!

■I have data thrown into Excel and other tools, but I don't know how to utilize it. ■I have no knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! Easily with 'Neural Designer'! Start using AI right away from today! Even without the hassle of programming or knowledge of Python, TensorFlow, or PyTorch, you can immediately master AI, machine learning, deep learning, and deep learning! Of course, it is also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from that troublesome programming and focus on your core work?

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AI 'Neural Designer' that anyone can easily use right now.

We have the data but lack the knowledge; we lack the knowledge but want to try it out. This is perfect for companies like yours!

■I have data that I've thrown into Excel and such, but I don't know how to utilize it. ■I don't have any knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! Easily with 'Neural Designer'! Start using AI right away from today! Even without the hassle of programming or knowledge of Python, TensorFlow, or PyTorch, you can easily master AI, machine learning, deep learning, and deep learning! Of course, it is also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from the hassle of programming and focus on your core work?

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AI "Neural Designer" that anyone can easily use right now.

We have the data but not the knowledge, we have the knowledge but want to try it out—this is perfect for companies like yours!

■I have data that I've thrown into Excel and such, but I don't know how to utilize it. ■I have no knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! Easily with 'Neural Designer'! Start using AI right away from today! Even without the hassle of programming or knowledge of Python, TensorFlow, or PyTorch, you can immediately master AI, machine learning, deep learning, and deep learning! Of course, it's also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from that tedious programming and focus on your core work?

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AI 'Neural Designer' that anyone can easily use right now.

We have the data but not the knowledge, we have the knowledge but want to try it out—this is perfect for companies like yours!

■I have data that I've thrown into Excel, but I don't know how to utilize it. ■I don't have any knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! With 'Neural Designer', it's easy! Start using AI right away from today! Even without the hassle of programming or knowledge of Python, TensorFlow, or PyTorch, you can immediately master AI, machine learning, deep learning, and deep learning! Of course, it's also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from that tedious programming and focus on your core work?

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AI "Neural Designer" that anyone can easily use right now.

We have the data but not the knowledge, we have the knowledge but want to try it out; for companies like these, definitely!

■I have data that I've thrown into Excel and other tools, but I don't know how to utilize it. ■I have no knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! Easily with 'Neural Designer'! Start using AI right away from today! Even without troublesome programming knowledge in Python, TensorFlow, or PyTorch, you can immediately master AI, machine learning, deep learning, and deep learning! Of course, it is also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from that troublesome programming and focus on your core work?

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AI 'Neural Designer' that anyone can easily use right now.

We have the data but lack the knowledge, or we have no knowledge but want to try using it—this is perfect for such companies!

■I have data thrown into Excel and other tools, but I don't know how to utilize it. ■I have no knowledge, but I want to experience what data analysis is like at least once. ■I want to see what kind of future predictions can be made from past data. 'Neural Designer' will solve and realize these concerns and requests! Easily with 'Neural Designer'! Start using AI right away from today! Even without the hassle of programming or knowledge of Python, TensorFlow, or PyTorch, you can immediately master AI, machine learning, deep learning, and deep learning! Of course, it is also recommended for those who are already working with AI, machine learning, deep learning, and deep learning. Especially for those who are programming to support their main business, why not free yourself from that tedious programming and focus on your core work?

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Cooling analysis of motors with 'Simerics MP+'

Not only applicable to hydraulic circuits such as engines and transmissions, but there are also numerous achievements in the analysis of oil cooling, water cooling, and air cooling circuits for motors and batteries!

PumpLinx is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes with clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there have been increasing inquiries about SimericsMP+ due to difficulties in VOF analysis with other CFD software. SimericsMP+ has strengths in VOF and is well-regarded for its support. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!

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SimericsMP+, the fluid analysis software for planetary gear systems.

Simulating the flow characteristics of positive displacement pumps such as gear pumps and vane pumps! A CFD software specialized for pumps that other CFD software struggles with!

SimericsMP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements for oil pumps used in automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, please see a demo for the actual mesh creation and movement!!

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Surface treatment property prediction solution

We propose a surface treatment property prediction solution utilizing multiple analysis software.

By combining CAE software, molecular modeling, and molecular simulation software, we can cover a wider range of analysis targets! For example, the creation/processing of material surfaces and material properties, etc. We provide a comprehensive analysis of plasma process equipment and surface state property predictions! 【Physical phenomena to be analyzed】 - Bonding and activation - Film formation - Sputtering and etching - Desorption and cleaning, etc. 【Examples of evaluable surface properties】 - Evaluation of the incident amount and energy of raw gas or plasma, or etching/film formation rates - Evaluation of material properties based on atomic/molecular data of substances - Prediction of surface reactions of incident particles - Evaluation of surface roughness after processing - Changes in hydrophilicity before and after processing - Calculation of the refractive index of crystals after processing, etc. *For more details, please refer to the PDF document or feel free to contact us.

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"Analysis is possible even in areas where experiments cannot be conducted" - Surface treatment property prediction solution.

Engineers with specialized knowledge provide support! By combining various analysis software, we can meet diverse demands in surface modification.

We propose a "Surface Treatment Characteristic Prediction Solution" utilizing multiple analysis software. By combining analysis software such as "CAE software," "molecular modeling," and "molecular simulation software," we cover a wider range of analysis targets. We provide a comprehensive analysis of the creation/processing processes of the material surface you wish to investigate, as well as the characteristics of the material, including the prediction of surface states using plasma processing equipment. 【Features】 ■ Various approaches to surface modification are possible by combining different analysis software. ■ Analysis is possible even in areas where experiments cannot be conducted. ■ Plasma analysis is feasible. ■ New material exploration and Materials Informatics (MI) initiatives are possible. ■ We can provide consultations and proposals tailored to your needs. *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Water Adsorption on the Surface of V2O5 Electrodes Used in Water Batteries

"Materials Studio" can perform battery property calculations [Case Study] Here we introduce a paper case.

In this paper, we analyze the behavior of water molecules adsorbed on surfaces such as V2O5(1 0 0) using Materials Studio. ◇ It is possible to analyze the relationship between functional groups on the surface of 2D layers, density of states, and adsorption properties. 【Product Features】 ■ Also optimal for "Materials Informatics (MI)" ■ Simulation software that streamlines material development ■ Helps in the development of new materials more efficiently and easily *For more details, please feel free to contact us.

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[Case Study] Plasma Analysis of "Particle-PLUS" Dual Frequency CCP

Introduction to Particle-PLUS Analysis Case: "Plasma Analysis of Dual Frequency CCP" Simulation Case

This is a case study on plasma analysis of CCP (Capacitively Coupled Plasma) devices. Particle-PLUS specializes in plasma analysis within vacuum chambers and can perform high-speed simulations even when there are multiple electrodes or when applying overlapping frequencies. ◇ Features of 'Particle-PLUS' - Excels in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, it can quickly obtain results without the need for full device simulations. - Specializes in plasma simulations for low-pressure gases, where fluid modeling is challenging. - Supports 2D (two-dimensional) and 3D (three-dimensional) analyses, efficiently handling complex models. - As a strength of our in-house developed software, customization to fit customer devices is also possible. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *For more details, please feel free to contact us.

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[Case Study] Cleaning Process Using Particle-PLUS: CCP

Introduction of Particle-PLUS Analysis Case: "Cleaning Process by CCP" Simulation Case

This is an analysis case regarding CCP (Capacitively Coupled Plasma) etching, which is one of the representative dry etching methods. Particle-PLUS specializes in plasma analysis within vacuum chambers and can perform simulations of etching rates and other parameters at high speed. ◇ Features of 'Particle-PLUS' - Excels in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, results can be obtained quickly without the need for full device simulations. - Specializes in plasma simulations for low-pressure gases, where fluid modeling is challenging. - Supports both 2D and 3D, allowing for efficient analysis even with complex models. - As a strength of our in-house developed software, customization to fit customer devices is also possible. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *For more details, please feel free to contact us.

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Example: Particle-PLUS: GEC-CCP Device Plasma Analysis

Introduction to Particle-PLUS Analysis Case: "Plasma Analysis of GEC-CCP Device" 3D Simulation Case

This is a 3D analysis case related to CCP (Capacitively Coupled Plasma) etching, which is one of the representative dry etching methods. Particle-PLUS specializes in plasma analysis within vacuum chambers and can perform simulations of etching rates and other parameters at high speed. ◇ Features of 'Particle-PLUS' - Excels in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, it can obtain results quickly without the need for full device simulations. - Specializes in plasma simulations for low-pressure gases, where fluid modeling is challenging. - Supports both 2D and 3D, allowing efficient analysis even for complex models. - As a strength of our in-house developed software, customization to fit customer devices is also possible. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *For more details, please feel free to contact us.

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[Example] "Particle-PLUS" RF Magnetron Sputtering

Introduction to Particle-PLUS Analysis Case: "RF Magnetron Sputtering Analysis" Simulation Example

This is an analysis case of RF magnetron sputtering, which is one of the film deposition methods using process plasma. Particle-PLUS specializes in plasma analysis within vacuum chambers and can quickly simulate deposition rates and other parameters. ◇ Features of 'Particle-PLUS' - Excels in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, results can be obtained quickly without the need for full device simulations. - Specializes in plasma simulations for low-pressure gases, where fluid modeling is challenging. - Supports 2D (two-dimensional) and 3D (three-dimensional) analyses, efficiently handling complex models. - As a strength of our in-house developed software, customization to fit customer devices is also possible. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *For more details, please feel free to contact us.

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[Example] Particle-PLUS: RF Magnetron for Dielectric Targets

Introduction of Particle-PLUS Analysis Case: "RF Magnetron Sputtering Analysis of Dielectric Target" Simulation Case

This is an analysis case of RF magnetron sputtering, which is one of the film deposition methods using process plasma. Particle-PLUS specializes in plasma analysis within vacuum chambers and can quickly simulate deposition rates and other parameters. ◇ Features of 'Particle-PLUS' - Excels in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, it can obtain results quickly without the need for full device simulations. - Specializes in plasma simulations in low-pressure gases, where fluid modeling is challenging. - Supports 2D (two-dimensional) and 3D (three-dimensional) analyses, efficiently handling complex models. - As a strength of our in-house developed software, customization to fit customer equipment is also possible. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *Please feel free to contact us for more details.

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[Example] Particle-PLUS: 3D Opposing Target Type Putter

Introduction to Particle-PLUS Analysis Case: "Counter Target Type Putter (3D Analysis)" Simulation Case

This is an analysis case of a counter-target sputtering method, which is one of the film deposition techniques that causes low damage to the substrate. 3D calculations have a higher computational cost compared to 2D calculations, but they allow for simulations that take into account more complex shapes and their effects. ◇ Features of 'Particle-PLUS' - Specializes in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, results can be obtained quickly without the need to simulate the entire device. - Excels in plasma simulations in low-pressure gases, where calculations using fluid models are challenging. - Supports both 2D and 3D, allowing for efficient analysis even with complex models. - As a strength of our in-house developed software, customization to fit the customer's equipment is also possible. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *Please feel free to contact us for more details.

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[Example] "Particle-PLUS" cylindrical magnetron sputter

Introduction of Particle-PLUS Analysis Case: "Plasma Sputtering of Cylindrical Magnetron Device" Simulation Case

This is an analysis case of magnetron sputtering using a cylindrical target, which is one method for forming a strong film on the inside of a long cylindrical pipe. By combining the axisymmetric model and mirror symmetry boundary conditions available in Particle-PLUS, it is possible to obtain results quickly without the need to simulate the entire device. ◇ Features of 'Particle-PLUS' - It excels in low-pressure plasma analysis. - By combining the axisymmetric model and mirror symmetry boundary conditions, it allows for rapid results without the need to simulate the entire device. - It specializes in plasma simulations for low-pressure gases, where calculations using fluid models are challenging. - It supports both 2D (two-dimensional) and 3D (three-dimensional) analyses, enabling efficient analysis of complex models. - Customization is possible as a strength of our in-house developed software. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *Please feel free to contact us for more details.

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Would you like to improve business efficiency with "CAE×AI"?

We can assist you in improving business efficiency using machine learning and AI! We will introduce our software and analysis examples.

It is said that we have entered an era where the use of machine learning and AI is desired in research and development. Our company assists in improving operational efficiency by utilizing machine learning and AI. Experienced engineers will propose various plans tailored to our customers' needs, such as "packaged software sales" and "contract analysis." Please feel free to contact us when you need assistance. 【Software We Handle】 ■ Predictive modeling tool "Neural Designer" ■ Plasma analysis "Particle PLUS/DL" ■ Data science tool "Pipeline Pilot" ■ Material development analysis software "Materials Studio" ■ Electronic lab notebook "BIOVIA Notebook" *For more details, please refer to the PDF materials or feel free to contact us.

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Semiconductor plasma analysis software 'Particle-PLUS'

"Particle-PLUS" is a plasma and rarefied fluid analysis software that excels in ICP and CCP analysis using particle methods.

"Particle-PLUS" is software suitable for research and development of devices using plasma, compatible with ICP and CCP. - Excels in simulations of low-pressure gases where fluid modeling is difficult - Calculation functions for inductive heating for ICP simulations - Advanced physical model analysis such as CCP and external circuit models - Capable of simultaneously simulating ICP and CCP - Supports 2D and 3D, efficiently analyzing complex models - As a strength of our in-house developed software, customization to fit customer devices is possible ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD), etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *For more details, please feel free to contact us at sales@wavefront.co.jp.

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[Case Study] Machine Learning Example at a Coating Material Manufacturer

Introducing case studies of machine learning using "Pipeline Pilot"【Case Studies】

This time, the goal was to grasp the trends of optimal experimental conditions by predicting characteristic values. <Background> From traditional to modern times, developing materials with better characteristic values is an important task across all fields and remains a significant challenge. Additionally, since the characteristic values of materials can be influenced by various factors, there is a demand for increased efficiency in material development. For instance, factors such as the materials used during development, reaction time, temperature, and hysteresis may also affect the results. While it is ideal to introduce experimental design methods for all these conditions and discover optimal conditions through actual experiments and measurements, this is not realistic from a cost and time perspective. Therefore, we conducted machine learning using a small dataset that recorded several experimental conditions (for example, explanatory variables X1, X2, X3, X4, ...) and their respective characteristic values (for example, objective variables Y1, Y2). In this case, we were able to easily perform machine learning to create a model and improve prediction accuracy. *For more details, please contact us.*

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Simerics MP+ is also used for oil cooling analysis of eAxle.

Analyze the oil cooling of the eAxle using Simerics, which has strong rotation and VOF capabilities! It's also suitable for switching from other general-purpose CFD solvers or particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Flow field (velocity vectors, pressure), flow rate, fluid forces, and time variation of torque Recently, there has been an increase in projects for oil cooling analysis of eAxles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine calculation meshes - It diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it can only determine the areas where oil is present. Our company undertakes actual contract work from Tier 1 customers, gaining know-how that cannot be obtained solely from software sales. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/

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Simerics MP+ is also used for the oil cooling analysis of E-Axle.

Analyze the oil cooling of the E-Axle using Simerics, which has strong rotation and VOF capabilities! It's also suitable for switching from other general-purpose CFD solvers or particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for oil cooling analysis of E-Axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The solution diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to determine the areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contract work from Tier 1 customers. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/

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Simerics MP+ is also used for oil cooling analysis of e-axles.

Analyze the oil cooling of the e-axle with Simerics, which has strong rotation and VOF capabilities! It's also suitable for switching from other general-purpose CFD solvers and particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in the liquid ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for oil cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries regarding: - Excessive analysis time - Difficulty in creating fine computational meshes - Divergence and failure to converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to determine the areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contracted work from Tier 1 customers. SAE presentation paper on motor oil cooling from the developer: https://saemobilus.sae.org/content/2020-01-0168/

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Simerics MP+ is also used for oil cooling analysis of e-axles.

Analyze the oil cooling of e-axles with the powerful rotation and VOF features of Simerics! It's also suitable for switching from other general-purpose CFD solvers and particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for oil cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - It diverges and does not converge Additionally, even when analyzed using particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it only provides a rough idea of where the oil is located. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contracted work from Tier 1 customers. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/

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Cooling analysis of the eAxle also uses "Simerics MP+".

Analyze the cooling of eAxle with Simerics, which has strong rotation and VOF capabilities! It's also suitable for switching from other general-purpose CFD solvers or particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for cooling analysis of eAxles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The solution diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it can only determine the areas where oil is present. Our company undertakes actual contracted work from Tier 1 customers, gaining know-how that cannot be obtained solely from software sales. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/

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Cooling analysis of the E-Axle also uses "Simerics MP+".

Analyze the cooling of the E-Axle with Simerics, which has strong rotating and VOF capabilities! It's also suitable for switching from other general-purpose CFD solvers or particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for cooling analysis of E-Axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine calculation meshes - The analysis diverges and does not converge Additionally, even when analyzed using particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to identify areas where oil is present. Our company undertakes actual contracted work from Tier 1 customers, gaining know-how that cannot be obtained solely from software sales. Development source's SAE presentation paper on motor oil cooling: https://saemobilus.sae.org/content/2020-01-0168/

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Cooling analysis of the e-axle also uses "Simerics MP+".

Analyze the cooling of the e-axle with Simerics, which has strong rotation and VOF capabilities! It's also suitable for switching from other general-purpose CFD solvers or particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations, water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Flow field (velocity vectors, pressure), flow rate, fluid forces, and time variations of torque Recently, there has been an increase in projects for cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The solution diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to identify areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by undertaking actual contract work from Tier 1 customers. SAE presentation paper on motor oil cooling from the developer: https://saemobilus.sae.org/content/2020-01-0168/

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Simerics MP+ is also used for cooling analysis of e-axles.

Analyze the cooling of e-axles with the powerful rotation and VOF features of Simerics! It's also suitable for switching from other general-purpose CFD solvers or particle methods.

【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Flow field (velocity vectors, pressure), flow rate, fluid forces, and torque over time Recently, there has been an increase in projects for cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The analysis diverges and does not converge Additionally, even when analyzed using particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to determine the areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contracted work from Tier 1 customers. SAE presentation paper on motor oil cooling from the developer https://saemobilus.sae.org/content/2020-01-0168/

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[Example] "DSMC-Neutrals" Vacuum Exhaust Simulation

Simulation of vacuum exhaust and analysis of gas flow under low-pressure conditions, analysis software compatible with rarefied gases (rarefied fluids).

**Features** - Adopts unstructured mesh, allowing for calculations that accurately reflect the complex shapes of actual devices. - High parallel efficiency enables quick computation results even for large-scale geometries. - Utilizes a particle method, ensuring convergence to a solution even with poor-quality computational grids, unlike fluid models. - Comprehensive technical support ensures that even those new to simulation or busy with experiments can reliably achieve results. **Supports Various Cases** - Simulation of rarefied gas flow in a vacuum chamber. - Simulation of thin film generation in semiconductor manufacturing. - Chemical vapor deposition (CVD), organic light-emitting diode (OLED), molecular beam epitaxy (MBE). - Film deposition simulations involving chemical reactions like CVD. **Outputs Various Computational Results** - Calculation of chemical reactions. - Calculation of chemical reactions from Arrhenius-type reaction data. - Calculation of dissociation, recombination, and molecular (atomic) exchange reactions. - Ability to set multiple reaction equations on the GUI. *For more details, please refer to the catalog or feel free to contact us.*

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[Example] Exhaust simulation of DSMC-Neutrals vacuum device

Various information about vacuum exhaust can be derived through simulation!

Our self-developed software for three-dimensional rarefied gas analysis, 'DSMC-Neutrals', enables vacuum system exhaust simulation. By visualizing the calculation results of various physical quantities and plotting transient graphs, it allows for easy visualization of various information that is difficult to obtain through experiments alone in the design and development of exhaust systems. For more details, please visit the URL below.

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  • 大型品の切削や低コストな複合加工に。ロボットシステムの資料進呈

    大型品の切削や低コストな複合加工に。ロボットシステムの資料進呈

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