We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Optimization software.
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Optimization software Product List and Ranking from 41 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:May 27, 2026~Jun 23, 2026
This ranking is based on the number of page views on our site.

Optimization software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:May 27, 2026~Jun 23, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. FsTech Kanagawa//software
  3. CGTech Tokyo//software
  4. 4 くいんと Tokyo//software
  5. 4 ブロードリーフ Tokyo//software

Optimization software Product ranking

Last Updated: Aggregation Period:May 27, 2026~Jun 23, 2026
This ranking is based on the number of page views on our site.

  1. Experimental Design & Optimization Software 'MODDE'
  2. MODDE for Biotechnology
  3. Profile Grinding Machine Chart Plotter - NTP-5 ネオ
  4. 4 CubeMaster ローゼンソリューション 九州サポートセンター
  5. 4 General-purpose intelligent optimization software "AIPOD" FsTech

Optimization software Product List

61~90 item / All 104 items

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General-purpose parameter optimization software "AMDESS"

Improve work efficiency with a dedicated GUI! Efficiently analyze multiple challenges such as performance, cost, and safety.

"AMDESS" is a general-purpose parameter optimization software aimed at achieving optimization easily and in a short time. It can be executed easily using an Excel-based interface, automating the input and output to streamline design improvements and decision-making. By using approximate models for the relationships among multiple parameter responses, it derives suitable values that meet requirements for various problems, providing hints to designers. 【Features】 ■ Sequential update response surface method ■ Dedicated GUI/interface for improved work efficiency ■ Compatible with various pre-post and solvers ■ Recommended for nonlinear problems *For more details, please refer to the related links or feel free to contact us.

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[Example] Shape optimization to match the natural frequency with experimental measurement results.

Efficiently considering multiple constraints, control the eigenvalues of automotive brake components!

We present an analysis example applying the non-parametric shape optimization function of "OPTISHAPE-TS," which employs an algorithm based on the smoothing gradient method (force method) to match multiple natural frequencies in automotive brake components. The optimization conditions were set to target the natural vibration modes from the 7th to the 21st, aiming to match their natural frequencies to the target values (considering MAC values) while keeping the volume unchanged. As a result, a final shape was obtained where each eigenvalue and volume matched their respective constraint values with an accuracy within 0.01%. In this case, the control of eigenvalues was performed using specified initial shape ratios, but analyses can also be conducted using absolute values or combinations of other controls such as nodal positions of natural vibration modes and frequency responses. This can be utilized for controlling eigenvalues and avoiding resonance. For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis
  • Contract Analysis
  • Other analyses
  • Optimization software

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[Case Study] Shape optimization of an arm considering layout constraints due to component interference.

Shape optimization is suitable for improvements from existing shapes! A case that achieved approximately 40% weight reduction.

We will introduce a case of arm optimization considering interference conditions. To obtain a shape that does not interfere with the designated area, we create a mesh of the designable region. By specifying this model as the "deviation designated area," we optimize the shape to ensure it does not extend beyond this region (does not deviate). As a result, we achieved a lightweight shape that meets various constraints without deviating from the specified area. Shape optimization is suitable for improving existing shapes, and by adding multiple constraints such as stress constraints and manufacturing requirements, it is possible to conduct more detailed examinations. *For more details, please refer to the PDF document or feel free to contact us.*

  • Structural Analysis
  • Optimization software

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Example: Press Processing - Optimization of Press Processing Conditions

Optimize the press processing conditions to improve wrinkle height and strain.

Press processing is a method used in the manufacturing of various industrial products, including automobiles. Since this press processing is often used for mass-produced products, it is desirable to thoroughly examine the processing conditions in advance using CAE. In this case, we optimized the processing conditions by linking the general parameter optimization software "AMDESS" with the explicit dynamic analysis software "Abaqus/Explicit Student Edition" (from SIMULIA, USA). We added recommended points based on the density of the data points we had previously investigated! We devised a way to avoid falling into local solutions. As a result, we achieved a maximum equivalent plastic strain reduction of 9% while satisfying all constraints. [Analysis Model] ■Blank - Number of nodes: 505 - Number of elements: 400 - Young's modulus: 2.1×10^11 [Pa] - Poisson's ratio: 0.3 *For more details, please refer to the PDF document or feel free to contact us.

  • Other analyses
  • Optimization software

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Example: Material Data Correlation - Identification of Heat Transfer Coefficient

We identify parameters that change with environmental and analytical conditions. Not only the heat transfer coefficient but also the stress-strain curve in elastoplastic analysis can be identified!

The heat transfer coefficient depends on the surrounding environment and is not unique to the material, making it difficult to determine its value. If a heat transfer coefficient that can reproduce the measurement results can be identified, it is expected that good simulation results can be obtained for another model under similar conditions. In this case, the general-purpose parameter optimization software "AMDESS" was linked with "Nastran" to identify the heat transfer coefficient. As a result, the temperature at the evaluation points matched the target value within an error of 0.3%, and the heat transfer coefficients for each surface were obtained. 【Optimization Conditions】 ■ Design Variables - Heat transfer coefficients for each surface (h1 to h6) - Range: 10.0 to 70.0 [W/m2k] ■ Objective Function: Minimize the square of the error from the target temperature at each evaluation point = Bring the calculated temperature closer to the specified target temperature *For more details, please refer to the PDF document or feel free to contact us.

  • Other analyses
  • Contract Analysis
  • simulator
  • Optimization software

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[Example] Topology optimization considering manufacturing requirements

Initial design proposals and significant contributions to cost reduction! Introducing the topology density variation limitation feature such as 'cross-section'!

Topology optimization is a method for determining the necessity or redundancy of materials (member layout) that contributes to lightweight and high-rigidity product design, such as seeking structures that maximize rigidity under a certain weight limit. While it allows for significant structural changes compared to the initial structure, it can also result in outcomes that are difficult to manufacture or lead to complex structures with high manufacturing costs. To avoid such situations, the topology optimization in 'OPTISHAPE-TS' utilizes a topology density variation limitation feature, enabling optimization while satisfying manufacturing requirements. [Contents] ■ Overview ■ Topology Density Variation Limitation Feature ■ Discussion *Detailed case information can be viewed through the related links. For more information, please feel free to contact us.

  • Structural Analysis
  • Stress Analysis
  • Contract Analysis
  • Optimization software

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CAE Contract Analysis ★ Experienced technical staff support various problem-solving.

Leveraging years of experience in the manufacturing industry, we handle everything from data creation to analysis and report preparation according to your challenges and objectives. ★Case studies on problem-solving available★

If you are working on structural optimization, such as lightweight design, strength improvement, and vibration issues, and are facing challenges with your approach, or if you are exploring image processing, modeling, and analysis from 3D printer shapes or CT scan data, our experienced technical staff will take care of everything from model and data creation to analysis and report preparation (of course, we can also handle just part of the process). If you have any concerns, please feel free to contact us. It is perfectly fine if your issues are vague and specific details have not been determined yet. We will discuss the details and propose methods that align with your needs. ◎ Main Achievements - Various lightweight designs - Strength improvement - Reverse design - Avoidance of resonance - Numerical fitting - Warpage suppression and weld control - Noise and vibration reduction - CAD model generation for optimized shapes - Reinforcement design - Reduction of mesh creation man-hours - Optimization of plastic molding conditions - Simulation model creation - Editing STL data for 3D printer shapes And many more. ★ A collection of case studies on various problem-solving is currently available ★ Please take a look at the PDF download.

  • Analysis Services
  • Structural Analysis
  • Other analyses
  • Optimization software

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Base Configuration Tool SFLO

SFLO is a tool used for supply chain design and analysis by leveraging optimization methods, as well as for facility location analysis.

SFLO (Smart Facility Location Optimizer) is a decision support system for facility placement that utilizes optimization methods. It calculates the optimal locations for factories and distribution centers, as well as their production and processing capacities, for companies that manufacture products and manage logistics both domestically and globally, and determines the optimal allocation between distribution centers and customers. SFLO is also used as a strategic logistics network design tool, helping to design supply chains that minimize total logistics costs while adhering to various constraints and creating new project proposals. SFLO has already been utilized in many cases, achieving significant cost reductions (10-15%).

  • Other production management systems
  • Optimization software

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iMachining

Automatically calculates tool rotation speed, feed speed, step-over adjustment, and cutting depth!

"iMachining" is an optimized tool path that enhances the profitability and competitiveness of operating NC machine tools more than ever before. It features an astonishing effect that can reduce machining time by up to 90%, with the ability to select shapes and automatically protect machining shape models. Additionally, it can eliminate all air cuts through small step-up leftover machining and a stock model that is automatically updated, along with a mode that processes only the leftover material. 【Features】 ■ Shape selection and automatic protection of machining shape models ■ Optimized machining for each Z step using proven "iMachining 2D" technology ■ Deep rough machining across the entire tool length, achieving reduced cycle times and improved tool life ■ Leftover machining with small step-ups ■ Further reduction of cycle times with optimized constant scallop *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAM related software
  • Optimization software

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Tohoku Univ. Technology : Efficient solution of constrained quadratic programming problem in quantum annealer : T22-365

Possible to solve constrained quadratic programming problems

Recently, almost all combinatorial optimization problems are represented by constrained quadratic programming problems. However, in solving them, we further apply the penalty method, etc., transform them into unconstrained quadratic programming problems, and perform quantum annealing operations on the converted mathematical expressions. However, the conversion generated redundant variables that required a huge amount of computing resources, so that practical operations are impossible.  We propose a method for solving all combinatorial optimization problems by quantum annealing, and it became possible to solve practically all optimization problem.

  • others
  • Optimization software

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CubeMaster

It is the best choice for increasing loading rates, improving operational efficiency, and reducing costs in the loading field.

Our company is constantly conducting research on algorithms to improve loading efficiency, and we have independently developed an algorithm that combines increased loading rates with high execution speed. CubeMaster, our flagship product that incorporates this algorithm, is used not only in Japan but also by transportation companies, shipping companies, and air freight companies around the world, achieving significant results.

  • Other analyses
  • Other information systems
  • Other packaging materials
  • Optimization software

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Hemming Process Optimization Software AutoForm-HemPlanner

Software for simple definition and optimization of the hemming process.

With AutoForm-HemPlanner, you can easily define and optimize the hemming process. The software allows you to identify potential issues that may occur during the process, such as flange cracking, wrinkling, material overlap at corners, and material entrapment. By combining AutoForm-HemPlanner with AutoForm-Solverplus, you can achieve an efficient process planning solution for hemming. For more details, please contact us.

  • Structural Analysis
  • Other analyses
  • Stress Analysis
  • Optimization software

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Pallet loading optimization software 'Cape Pack'

Enables efficient pallet and truck loading! Software that optimizes product sizes, builds case sizes and pallet patterns, and conducts compression strength analysis.

Cape Pack is a palletizing software that enables the optimization of shipping sizes for products, the creation of new case sizes, the construction of efficient pallet patterns, the analysis of the compression strength of cases and pallets, and the effective use of materials and cube space. Recently, the distribution industry has been experiencing price increases due to labor shortages, which has become one of the reasons for the rising costs of packaged products. The challenges faced by food and beverage manufacturers and logistics companies are efficient pallet and truck loading capacities that cover strength. CAPE is a solution that can cover everything from cardboard design to loading calculations in conjunction with CAD. It is also compatible with online systems. 【Benefits】 ■ Design appropriate product sizes and maximize pallet loading capacity ■ Reduce material and shipping costs associated with delivery ■ Reduce environmental impact *For more details, please refer to the materials available for download in PDF format or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Optimization software

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Single-function Palette Master

The Palette Master is an easy-to-use optimization tool that helps with switching to T11 type pallets, determining the dimensions of new product packaging boxes, and warehouse transfers.

The "Banning Master Pallet" is an easy-to-use optimization tool equipped with "pallet version automatic calculation software" that is helpful for tasks such as "switching to T11 type pallets," "determining the dimensions of new product packaging boxes," and "warehouse transfer." It enables centralized management of information regarding stacking across various departments from the development of new containers. It instantly simulates based on pallet size and product size, displaying multiple suitable stacking patterns. You can select stacking patterns that are appropriate for storage and transportation purposes. 【Features】 ■ Information sharing ■ Suitable stacking pattern display function ■ Layout editing function ■ Bulk calculation function for stacking patterns ■ Stacking information data output function *For more details, please refer to the PDF materials or feel free to contact us.

  • Other operation management software
  • Optimization software

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System "LSS"

Innovate picking! We will equip a verification function visualized based on picking performance.

"LSS" is a solution that maximizes the productivity of the "picking operation," which is said to incur high costs in logistics operations. By creating map data of the warehouse layout and simulating it with a unique algorithm, we optimize the picking routes. With WiFi communication capabilities, we can track the work base of operators, allowing for communication of break signals and instructions via a messaging function. [Features] ■ Reduction of work time ■ Integration with STOC ■ Visualization of the site ■ Management of operations *For more details, please refer to the PDF materials or feel free to contact us.

  • Process Control System
  • Optimization software

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Optimize complex shift planning with quantum computing! *Case study available.

Reduce overtime and increase productivity with shift optimization! Achieve a highly efficient food manufacturing line even with a labor shortage.

Fixstars Amplify automatically optimizes complex shift scheduling that even experienced personnel find challenging, using computers and algorithms. It quickly calculates the optimal shifts while considering various constraints such as employee skills, preferences, working hours, break times, and staffing for production lines. This allows for maintaining productivity even in the face of labor shortages, while also achieving a better work-life balance for employees. **Benefits of Implementation** Dramatic reduction in shift creation time: AI takes over the complicated task of shift scheduling, achieving significant time savings compared to manual creation. High-efficiency shifts even with labor shortages: Automatically creates shifts that maximize productivity with limited personnel by considering employee skills and preferences. Reduction of overtime hours: AI proposes shifts that minimize overtime while ensuring compliance with laws and considering employee health. Improvement in employee satisfaction: By creating shifts that take into account preferred days off and fairness in working hours, it helps maintain employee motivation. Thorough compliance with laws: Automatically creates shifts that comply with relevant laws such as the Labor Standards Act, reducing compliance risks.

  • Other production management systems
  • Optimization software

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Optimal production planning for small-batch, multi-variety production sites! *Case studies available.

Optimization of small-batch production of multiple varieties relies on automation! A DX solution that innovates manufacturing production planning, achieving increased productivity and reduced inventory.

Does your company face the following challenges in production planning? - The planning process has become complicated due to small-lot production of various items. - You want to reduce inventory, but the accuracy of planning is not keeping up. - The burden on production planning personnel is increasing, leading to reliance on specific individuals. - You want to implement a new system, but it requires significant effort for installation and operation. "Fixstars Amplify" automatically creates the best production plans that meet complex manufacturing constraints using computers and algorithms. It allows for a small start with the data you have on hand. The system can be built gradually to fit your company's operations, enabling optimal solutions tailored to the needs of the site. Additionally, it easily integrates with existing production management systems, allowing for a smooth system transition. 【Benefits of Implementation】 Reduction of Excess Inventory: By analyzing real-time data from the site and automatically controlling equipment and systems, it optimizes energy consumption, production volume, quality, and more. Rapid Response to Planning Changes: In cases where planning changes are necessary due to sudden orders or equipment troubles, it quickly re-plans with optimal solutions. Shortening of Production Lead Times: By optimizing all processes, it reduces product lead times and enhances customer satisfaction.

  • Other production management systems
  • Optimization software

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[DX of Production Planning] A Grand Showcase of Case Studies from Various Manufacturing Companies! *Free explanatory materials available!

Automate complex production planning in an optimization computing cloud to achieve shorter delivery times and improved productivity.

Attention to those in charge of considering DX for production planning! Are you facing issues such as "only veterans can create plans, leading to dependency on individuals" or "the implemented application cannot provide the best solutions"? The optimization calculation cloud "Fixstars Amplify" automatically creates the best production plans while meeting complex manufacturing constraints using dedicated machines and algorithms. It supports various production methods, including discrete, process, and small-batch production. We provide production schedules that maximize your goals, such as maximizing production efficiency and leveling workloads. 【Benefits of Implementation】 ■ Highly efficient production planning ■ Elimination of dependency on individuals ■ Reduction of workload 【Differences from Other Products】 ■ Capable of formulating production plans of quality comparable to or exceeding that of veteran know-how ■ Not an application, allowing for the construction of systems that reflect your company's unique constraints We have a proven track record in a wide range of industries, including food, electrical equipment, precision machinery, and equipment manufacturing. *For detailed information, please download and view the catalog below.

  • Other production management systems
  • Optimization software

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Optimize production planning! Accelerate decision-making for eliminating dependency and equipment investment. *Case study provided.

[Manufacturing Industry DX] Freeing from the personalization of production planning! Automating the know-how of skilled workers to achieve optimization of production planning and capital investment.

Complex production planning unique to low-volume, high-variety production. Even experienced personnel may find themselves overwhelmed with deadline adjustments and urgent requests, busy with daily operations. Fixstars Amplify streamlines production planning tasks that tend to rely on the experience and know-how of skilled personnel, contributing to the elimination of dependence on individuals, improvement of production efficiency, and reduction of lead times through high-performance computers and algorithms. **Benefits of Implementation** Reduction of production lead times: By considering complex constraints, it automatically determines the optimal process sequence. It calculates the optimal process sequence for bottleneck processes, which are difficult to manage manually, with high speed and accuracy, significantly shortening lead times. Improvement of equipment utilization rates: By devising optimal production plans, it minimizes equipment downtime and maximizes utilization rates, fully leveraging the potential of existing equipment. Optimization of inventory: In addition to the forward method of producing as efficiently as possible, it can also provide solutions using the backward method to control inventory levels to a minimum. Reduction of labor costs: By converting the experience and knowledge of skilled personnel into formulas, it achieves automation of production planning tasks. This reduces the burden on personnel and supports a shift towards more creative tasks.

  • Other production management systems
  • Optimization software

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General-purpose intelligent optimization software "AIPOD"

Dramatic improvement in optimization efficiency! Supports the rapid and accurate acquisition of design solutions that meet requirements.

"AIPOD" is a general-purpose optimization software that addresses design issues such as performance improvement and cost reduction. By utilizing features such as integration with CAE tools, optimization strategies leveraging AI technology, and easy process construction, it enables efficient product design across various fields and the acquisition of superior design candidates. Since it allows for the easy construction of any optimization process, it facilitates rapid reflection in design and the attainment of true design capabilities. [Features] ■ Dramatic improvement in optimization efficiency ■ Rapid response to industry trends ■ One-stop platform *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analyses
  • Optimization software

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[Case Study] Optimization of Ship Shape (2) 'AIPOD'

A case that demonstrates the ability to appropriately support the discovery of efficient design areas that had been excluded from consideration!

We would like to introduce a case study on the optimization of ship shapes (2) using our intelligent optimization software "AIPOD." This software is designed to be very user-friendly, even for those who are just starting with optimization. We conducted optimization calculations targeting eight design variables, with the objective function being the minimum resistance coefficient, two constraint conditions, and a CFD calculation of 100 cases. The optimization calculation with 83 cases achieved a performance improvement of 4.68%, surpassing the 4.13% of competing software. [Case Overview] - By turning on the Bound-break function during the optimization process of AIPOD, we obtained optimization results that exceeded expectations. - It can appropriately support the discovery of efficient design areas that were previously considered outside the scope of consideration. *For more details, please download the PDF or feel free to contact us.

  • 船型の最適化(2)2.PNG
  • 船型の最適化(2)3.PNG
  • Other Software
  • Optimization software

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[Case Study] Optimization of Hub Shape for Axial Flow Fans 'AIPOD'

Achieved a performance improvement of 52.31%, surpassing the 49.36% of competing software!

We would like to introduce a case study on the optimization of the hub shape of a diagonal flow fan using our intelligent optimization software "AIPOD." This software efficiently finds superior design solutions for structural, thermal fluid, acoustic, and multiphysics coupling problems. We conducted optimization calculations targeting 14 design variables, with the objective function being the maximum pressure difference at the inlet and outlet, and one constraint condition, using 150 CFD calculation cases. The optimization calculations resulted in a performance improvement of 52.31%, surpassing the 49.36% achieved by competing software. [Case Overview] - By enabling the Bound-break function during the AIPOD optimization process, we obtained optimization results that exceeded expectations. - Although competing software was able to capture efficient design areas for several design variables, it was limited to exploring only within that range due to constraints, preventing the discovery of further optimal candidate solutions. *For more details, please download the PDF or feel free to contact us.

  • 斜流ファンのハブ形状の最適化2.PNG
  • 斜流ファンのハブ形状の最適化3.PNG
  • Other Software
  • Optimization software

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[Case Study] Optimization of Entrance Shape 'AIPOD'

During the optimization process, by turning on the Bound-break feature, you can achieve optimization results that exceed expectations!

We would like to introduce a case study on the optimization of inlet shapes using our intelligent optimization software "AIPOD." This software allows for the visual construction of the calculation process through its graphical definition features. Focusing on five design variables, the objective function aimed at minimizing the weighted outlet total pressure/velocity non-uniformity, with optimization calculations conducted over 60 cases. The optimization calculations achieved a performance improvement of 54.89%, surpassing the 52.34% of competing software. [Case Overview] - By turning on the Bound-break feature during the optimization process of AIPOD, optimization results exceeding expectations were obtained. - When comparing the optimization progress of AIPOD with that of competing software, although the competing algorithm initially outperformed AIPOD, its local performance declined thereafter, with no further improvements observed. *For more details, please download the PDF or feel free to contact us.

  • 入口形状の最適化3.PNG
  • 入口形状の最適化4.PNG
  • Other Software
  • Optimization software

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Design of a water pump with a shrouded impeller.

Introducing the creation of parametric cross-sectional shapes, as well as the camber and thickness of blades!

In the shape optimization of water pumps with shrouded impellers, it is important to have an efficient parametric model with numerous design variables. This time, we will introduce the design/modeling of water pumps, which have many shape variations and a high degree of freedom for fine-tuning. With the optimization software CAESES, equipped with CAD functions, robust parametric models can be flexibly created while incorporating the designer's ideas, and it is utilized in various stages of the design process. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

  • シュラウド付きインペラを持つウォーターポンプの設計2.png
  • シュラウド付きインペラを持つウォーターポンプの設計3.png
  • シュラウド付きインペラを持つウォーターポンプの設計4.png
  • シュラウド付きインペラを持つウォーターポンプの設計5.png
  • シュラウド付きインペラを持つウォーターポンプの設計6.png
  • シュラウド付きインペラを持つウォーターポンプの設計7.png
  • Structural Analysis
  • Other CAD
  • Other pumps
  • Optimization software

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Optimization of the performance of the AIPOD battery pack water cooling plate.

Under the restriction of a pressure loss dp of less than 25 kPa for the water-cooled plate, the temperature difference across the section is reduced by 13.403%!

Using the general-purpose optimization software AIPOD, we will optimize the performance of the water cooling plate for battery packs used in new energy vehicles. Under unsteady low-temperature heating conditions and steady flow resistance conditions, when the minimum temperature of the cross-section rises by 5°C, the temperature difference in the Z-direction of the battery cell's 1/2 cross-section decreases, but the pressure loss in the flow path must be less than 25 kPa. The water cooling plate model used here is created with the parametric modeling software CAESES, and only the flow path area inside the water cooling plate will be the target for optimization, while other components and conditions will remain unchanged. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.

  • Other analysis software
  • Optimization software

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