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In the manufacturing of plastic molds, press molds, forging molds, and casting molds, we will introduce key points for improving the efficiency of machining processes using 3D CAM. We will also provide examples using the integrated 3D CAD/CAM Cimatron for molds. Manufacturing is exposed to global competition, and are you struggling with the pressure to improve productivity? Sometimes, how about considering things from a different perspective? This article focuses on the NC machining processes in mold manufacturing and introduces key points for efficiency using CAM software. The machining equipment will be limited to milling machines such as machining centers. *For detailed content of the article, you can view it through the related links. For more information, please download the PDF or feel free to contact us.*
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In the manufacturing of plastic molds, press molds, forging molds, and casting molds, we will introduce the relationship between surface roughness and the pitch of machining paths when using 3D CAM. We hope this will be somewhat helpful to you. The content we will explain is intended for those who fall into the following categories. Please take a look. 【Recommended for the following people】 ■ Those who want to confirm the relationship between tool radius and surface roughness ■ Those who are unsure about setting the pitch between paths in CAM ■ Those who want to confirm the relationship between precision symbols on drawings and machining *You can view the detailed content of the article through the related links. For more information, please download the PDF or feel free to contact us.
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In the manufacturing of plastic molds, press molds, forging molds, and casting molds, we will introduce the relationship between the surface roughness of the machining when using 3D CAM and the pitch of the machining path. We hope this will be somewhat helpful. The content we are about to explain is aimed at those who fall into the following categories. Please take a look. 【Recommended for】 ■ Those who want to confirm the relationship between the size of the tool radius and the scallop ■ Those who are unsure about setting the pitch between paths in CAM *You can view the detailed content of the article through the related links. For more information, please download the PDF or feel free to contact us.
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Introducing the CAD/CAM software 'GO2cam' option "Deburring." When you select the machining surface, edges are automatically extracted, and paths are created. By setting a safety distance, interference is automatically checked, resulting in paths that do not cause interference. In the case of a 5-axis machining machine, deburring can be performed while rotating the workpiece. The deburring option is available for both 3-axis and 5-axis. 【Features】 ■ Automatic edge extraction from solids ■ Interference checks are performed automatically ■ Deburring is also possible on 5-axis *For more details, please download the PDF or feel free to contact us.
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This document summarizes the success stories of four companies that have implemented the CAD/CAM software "GO2cam." We specifically introduce how companies that were struggling with long programming times for machining processes or faced challenges in training young employees have resolved these issues through the adoption of "GO2cam." We hope this serves as a helpful hint for solving challenges such as improving efficiency in the processing site and developing human resources within your company. [Featured Cases] ■ Haruki Metal Industry Co., Ltd. ■ Itoh Hagane Co., Ltd. ■ Hope Engineering Co., Ltd. ■ Iida Co., Ltd. *For more details, please download the PDF or feel free to contact us.
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This document explains why the 3D CAD/CAM system "Cimatron" can contribute to improving operational efficiency. Based on actual user feedback, it delves into three key features: "excellent UI design," "user-friendly system," and "convenient dedicated functions," while also introducing flexible operability and smooth integration features. From the perspectives of tool usability, functionality, and operational methods, you can gain insights that help achieve efficiency improvements. [Contents (partial)] ■ What is Cimatron ■ Cimatron's solutions ■ Case studies from three users ■ Two perspectives on efficiency improvement *For more details, please download the PDF or feel free to contact us.
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This document explains the reasons why the introduced CAM is not sufficiently utilized on-site and the measures to address this issue. It analyzes the reasons for the lack of establishment of CAM on-site, such as usability issues and challenges in the implementation process. It introduces how to choose products that fit your company based on three criteria: "UI," "coexistence with business flow," and "support system." This will help prevent the waste of costs and time due to mistakes in CAM selection and facilitate smooth on-site implementation and operational efficiency. [Contents (partial)] ■ About this document ■ Reasons for lack of utilization ■ Common "negative cycle" in CAM implementation ■ Criteria for selecting CAM that promotes on-site utilization ■ What is GO2cam *For more details, please download the PDF or feel free to contact us.
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This document introduces the features included in the 3D CAD/CAM system "Cimatron." It explains a variety of design support functions that cater to both single and progressive dies, such as model unfolding, finite element analysis, progressive layout design, mold structure design, and trimming punch creation. The system is packed with features that enable rapid responses to design changes and automate repetitive tasks, contributing to shorter delivery times and improved quality. [Contents] ■ What is Cimatron ■ Feature Introduction ■ Summary ■ About Seiro Japan *For more details, please download the PDF or feel free to contact us.
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This document explains the key points for achieving shortened construction periods with the theme of "3D Mold Design." We introduce specific methods to leverage the effects of 3D design from three perspectives: "unification of design and manufacturing systems," "utilization of specialized functions," and "streamlining of process flows," along with actual case studies. This content is recommended for those looking to gain insights into the challenges of 3D mold design and tips for achieving shorter construction periods. [Contents (partial)] ■ Top 3 issues and factors in 3D mold design ■ Case studies that significantly improved mold manufacturing efficiency ■ Key points to maximize the effects of 3D design ■ Unification of design and manufacturing systems ■ Utilization of specialized functions *For more details, please download the PDF or feel free to contact us.
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This document is a collection of case studies on the implementation of the CAD/CAM system "CIMATRON," which is specialized in 3D mold design. It includes examples from eight companies, such as press mold and plastic mold manufacturers. It introduces the challenges faced by each company, the solutions provided by the introduction of this product, and the specific effects of the implementation. For companies considering a transition to 3D design or looking to improve operational efficiency, this document is filled with information that can provide hints for solving challenges. 【Featured Case Studies (Partial)】 ■ Kyowa Kogyo Co., Ltd.: Achieved a 50% reduction in construction time by effectively utilizing 3D press design. ■ Creative Technology Co., Ltd.: Significantly reduced design errors even with complex shapes. ■ Maruichi Co., Ltd.: Reduced design man-hours for freeform surface shapes. ■ Toyoei Kogyo Co., Ltd.: Achieved a 30% increase in efficiency in mold design and electrode design. ■ Akebono Co., Ltd.: Realized 3D mold design in mold design, resulting in a 20% efficiency increase. ■ Kuroda Seisakusho Co., Ltd.: Successfully automated and unmanned the processing and measurement of partial electrodes. *For more details, please download the PDF or feel free to contact us.
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This document explains four points to consider when selecting a CAM system that fits your company's manufacturing process. From the perspectives of "function," "expandability," "UI/usability," and "support," it includes specific comparison points such as standard features, the customizability of databases, the clarity of screens, and the robustness of support systems. This book serves as a helpful resource for comparing products from multiple angles to avoid failures in CAM implementation, so please make use of it. [Contents] ■ Four Ways to Choose CAM ■ CAM Selection Checklist ■ Summary ■ What is GO2cam ■ About Seiro Japan *For more details, please download the PDF or feel free to contact us.
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We would like to introduce a case study of the implementation of "CIMATRON" at a plastic mold manufacturer. The company faced tight deadlines for the modeling design of electrodes for molds, and during the inspection process after machining the partial electrodes, machine operators were spending a lot of time on in-process measurements. After the implementation, the process from machining to measurement was automated, leading to increased productivity and a reduction in overtime hours. Additionally, the measurement results were made paperless. 【Case Overview】 ■Challenges - The inspection process for partial electrodes was time-consuming, causing delays in production scheduling. ■Support and Implementation Effects - Improved efficiency with electrode design that allows parallel flow of machining data. - Introduced in-process measurement options to automate and unmanned the measurement of partial electrode machining. *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case study of the implementation of "CIMATRON" at a plastic mold manufacturer. The company was using the predecessor system "φSTATION," but as the demand for 3D shapes increased, the need for 3D mold design arose. They also had some aspects of the current system that they liked, which made the transition challenging. After the implementation, they were able to perform mold design within three months, and overall efficiency, including electrode design, improved by an average of 20%. 【Case Overview】 ■Challenges - Recognized the necessity for 3D mold design due to changes in work ■Support and Implementation Effects - Mastered operations in almost three months, enabling mold design - The flow of mold design changed, achieving an average efficiency increase of 20% *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case study of the implementation of "CIMATRON" at a plastic mold manufacturer. The company was facing challenges in the processing stage, where they had to design molds in 2D and then create the cavity shape again in 3D, which was time-consuming. After the implementation, they were able to shorten the delivery time by about 30%, including the creation of drawings, and the output of the purchased parts list eliminated any omissions in ordered components. By the time they moved on to the next processing stage, the 3D model was already completed. [Case Overview] ■ Challenges - It took a long time to create the cavity and core for plastic mold design. ■ Support and Implementation Effects - Started using it after a one-day training session. - Achieved a 30% increase in efficiency in mold design and electrode design. *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case study of the implementation of "CIMATRON" at a comprehensive water system and parts manufacturing company. The company was facing challenges in handling solid and surface data in the design of curved shapes using 3D CAD, which was time-consuming. After the implementation, designing curved shapes became easier, leading to a reduction in man-hours, and converting DXF drawings to 3D became simpler, making detailed modifications easier. 【Case Overview】 ■Challenges - The design of freeform surfaces was time-consuming, causing issues in product development. ■Support and Implementation Effects - Satisfied with the clear training and support for software information. - Designing curved shapes became easier, resulting in reduced man-hours. *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case study of the implementation of "CIMATRON" at a plastic mold manufacturer. Due to the recent trend of lightweighting in the automotive industry, the company needed to perform advanced mold design to control the temperature and flow of water circulating inside the mold to maintain the internal set temperature. After the implementation, they significantly reduced mistakes such as modeling errors and forgetting to trim, and by automating the creation of electrode machining drawings and discharge forms, they eliminated over 50% of drawings and instructions. This allowed them to shorten the design process by 30%. 【Case Overview】 ■Challenges - There was a need to further pursue lightweighting of automotive parts. ■Support and Implementation Effects - Standardization of design operations alongside the introduction of 3D design. - 30% reduction in the design process and elimination of over 50% of drawings and instructions. *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case study of a mold press independent manufacturer that implemented "CIMATRON." The company was using other companies' 3D CAD/CAM systems to handle everything from shape design to the creation of machining programs. However, they needed to manually set various parameters, which resulted in a significant amount of time being spent before outputting the machining programs. After implementation, the extensive support greatly contributed to the system setup, and they were able to shorten the construction period by 30% through intermediate shape design utilizing the strip layout function. [Challenges] ■ Setting design parameters takes effort and time ■ Creating and outputting machining programs takes time ■ Rework due to missing machining instructions *For more details, please refer to the PDF document or feel free to contact us.
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This document presents case studies of the implementation of the CAD/CAM system "CIMATRON" for mold and prototype manufacturing in mold press manufacturers and plastic mold manufacturers. It introduces examples where effective utilization of 3D press design has achieved a 50% reduction in construction time, as well as cases where design errors were significantly reduced even with complex shapes. The document details challenges, our support, and the effects of implementation, making it easy to reference when considering adoption. [Contents] ■ Kyowa Kogyo Co., Ltd. 【Independent mold press manufacturer】 ■ Creative Technology Co., Ltd. 【Plastic mold manufacturer】 ■ Maruichi Co., Ltd. 【Comprehensive water system and parts manufacturer】 ■ Toyoei Kogyo Co., Ltd. 【Plastic mold manufacturer】 ■ Akebono Co., Ltd. 【Plastic mold manufacturer】 ■ Kuroda Seisakusho Co., Ltd. 【Plastic mold manufacturer】 *For more details, please refer to the PDF document or feel free to contact us.
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Cimatron significantly contributes to reducing lead times in mold manufacturing as an integrated solution for molds, achieving substantial efficiency improvements through its high functionality and ease of use. 【Features】 ■ It offers a wide range of services from hybrid modeling and high-performance 3D design to extensive machining. ■ By utilizing it as a comprehensive integrated system or as a system for partial optimization of individual processes, we enhance our customers' competitiveness and profitability. *For more details, please request documentation or view the PDF data available for download.
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GO2cam is a CADCAM system for parts processing that supports machining, lathes, multi-tasking machines, and wire EDM. It is particularly effective for customers who frequently create processing programs for small quantities of various items or single items. GO2cam allows users to significantly reduce the time required to create machining paths by reusing registered operation lists (process registration). **Features of the GO2cam Operation List:** - Tool selection, cutting conditions, and processing area settings can be completed in one go. - Multiple processing steps from roughing to finishing can be registered collectively. - No programming skills are required, making it easy for anyone to register. - Users can freely create categories such as work size, material, tool diameter, and machine type. **Customer Feedback** from HILLTOP Co., Ltd.: "By creating an operation list (process registration) with GO2cam, we achieved a reduction in work time to 1/5 to 1/10 of what we used with our previous CAM." **Customer Feedback** from Itoh Hagane Co., Ltd.: "The GO2cam operation list allows us to register processes once and easily recall them for reuse, significantly reducing the time needed to select processing conditions."
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Cimatron can flexibly handle various shapes such as solids, surfaces, and wire elements. It also widely supports advanced surface features required in industries like automotive. It allows for continuous work without filling gaps, is strong in freeform surfaces, and can flexibly design even with large assembly data, with the ability to use that information in CAM. Features appreciated by customers: ◆ Shortened delivery times as mold design can proceed even with incomplete data! Solidification of received data is not mandatory. Additionally, if there are gaps in the loaded data, work can still progress, which users have found to be "efficient." * Please be sure to watch the video. * The video is not of the latest version, so if you would like to see it in the latest version or have any questions regarding the latest version, please feel free to contact us. ◆ Efficiently edit progressed work while retaining parametric design data! It can load wireframe, point cloud, and mesh data into the design environment, meeting a wide range of requests in mold and prototype design.
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A common issue when handling analysis data is that the data quality output from analysis software is not guaranteed. Therefore, in many cases, modifications on the CAD software side are necessary. Cimatron, being a CAD/CAM software developed by 3D Systems, the creator of STL, has a high affinity for STL data and possesses a mechanism that allows collaboration regardless of the analysis software manufacturer. For example, with point cloud data, it is possible to specify the edge length of the triangular mesh and convert it into mesh surface data, allowing for partial addition or deletion of facets while ensuring a certain level of accuracy. In areas where you want to maintain curves, it is also possible to use splines to preserve smooth curves. Furthermore, since it is possible to integrate the modeled shape with the mesh, the range of applications expands. The completed data can be directly used to create NC machining programs, and it is also possible to make model modifications while comparing with the original model.
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Cimatron's stock recognition supports multi-axis models using 3D meshes. It is updated not only for 3-axis machining but also for positioning/simultaneous 5-axis machining. This results in a very smooth process with minimal air cutting, making it highly beneficial for multi-axis machining. It boasts high precision when setting up tools, shanks, holders, as well as components and fixtures that make up the machine for interference checks in simulations. Furthermore, it ensures safety when converting trajectories created for 3-axis machining to tilt transformations or 5-axis trajectories. With a wealth of applications, it also offers robust semi-automatic support for creating 5-axis trajectories. Cimatron enables efficient 5-axis machining while ensuring high safety standards.
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Cimatron has a rare capability to directly modify STL data, allowing mesh (point cloud) data with quality issues to be imported into a CAD environment. Additionally, the ECO function distinguishes itself from other systems by enabling users to identify only the truly necessary changes when searching for modifications that affect multiple models. It is also possible to compare mesh data (including point clouds) exported from advanced analytical software with product data due to recent technological innovations. Specifically, it can check overall shrinkage (confirmation of thin areas), product dimension tolerances, and defects such as sink marks and warping, and it has the ability to reflect only the modifications within the product correction model into the latest mold data without stress. A notable feature of Cimatron's ECO function is its ability to directly reflect design changes into the latest mold data. While many other CAD software also have comparison functions, the ability to compare modification data with mold data, accurately detect changes, and directly reflect those changes into the mold data is unique to Cimatron. The ECO function also has measures in place to address potential issues (history errors) inherent in its parametric functionality.
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Are you facing issues like these? 1. There is a shortage of CAM engineers. 2. There is no time for CAM engineer training. 3. I want to increase the machine's operating rate. NCBrain AICAM can solve your problems! 1. CAM tasks can be calculated with just five clicks, reducing the working time of CAM engineers. 2. Optimal processing conditions tailored to machines, tools, and materials are database-driven, so no skilled expertise is required. 3. By recognizing the processing volume, it automatically adjusts the rotation speed and feed rate, allowing for safe and secure machine operation. Benefits of implementing NCBrain AICAM: - Setup is completed in 5 minutes, regardless of CAM proficiency. - Machine operating rates can be improved by 20%. - Processing time can be reduced by 20%.
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Moldex3D, a complete 3D resin flow analysis software, simulates the behavior inside molds during the plastic molding process on a computer, aiming to foresee and prevent any troubles that may arise during various processes. 【Features】 ■ Large-scale, high-speed analysis using the finite volume method for high-precision 3D analysis In traditional finite element method (FEM), computation time increases geometrically with the number of elements, whereas in the finite volume method (FVM), it increases linearly, making it overwhelmingly advantageous as the number of elements increases. ■ High-precision 3D analysis It faithfully solves the Navier-Stokes equations based on non-Newtonian fluids and can consider the effects of inertia and gravity, allowing it to handle complex phenomena such as runner balance and jetting. Unsteady cooling analysis and vent analysis are also supported as standard features. ■ High-performance computing capabilities By efficiently utilizing multi-core, multi-CPU, and multi-PC clusters, it achieves cutting-edge computation speeds. It supports: - Flow analysis - Pressure holding analysis - Cooling analysis - Stress analysis - Warpage analysis - Structural analysis integration For detailed features, please refer to the catalog.
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Once the mold shaping data is prepared, the work of mold splitting begins. Various systems are equipped with different functions to separate the core and cavity. For example, there are functions for gradient angle analysis to detect undercut areas, as well as features that automatically create parting lines and parting surfaces. Cimatron also comes standard with corresponding analysis functions and the ability to create parting surfaces in its model design application. However, for models with complex shapes, mold splitting requires very challenging work, and even highly skilled operators cannot easily achieve the separation.
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The "Artec Leo" allows for completely wireless 3D scanning while checking the scanning status on the included touch panel, without needing to connect to a power source or PC. It also has a dedicated CPU, GPU, and SD card built-in. It can be easily transported and measured by one person, allowing for scanning from various angles with ease. 【Uses of Artec Leo】 1. I want to carry the scanner to various locations for measurement. → It can be easily transported and measured by one person. 2. I want to perform 3D scanning in difficult environments such as outdoors or tight spaces. → It can scan completely wirelessly, making it adaptable to various environments, including outdoors (however, it does not have waterproof or splash-proof features). 3. I want to scan the human body. → It is used for scanning not only arms and legs but also the entire body. (Since it uses LED lights, it is safe for the human body.) 4. I want to use it for CG production. → It can capture not only shape but also color information. It can be used for CG production and digital archiving of artworks. 【Features of Artec Leo】 - Completely wireless and easy to handle handheld type. - Highest precision of 0.1 mm, suitable for inspection tasks. - Ideal for human body measurement. - Capable of capturing color information.
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The manufacturing industry is currently facing various challenges. One of the challenges is the aging workforce. With the retirement of veteran employees, it becomes difficult to maintain the quality of work when the skills and know-how developed over many years are lost. Additionally, there is the reality that there is not enough time to invest in training new employees.
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3D modeling and the digitization of physical objects (reverse engineering) are tasks that cannot be expedited regardless of the systems used, as they require human effort. Therefore, during short deadlines or busy periods, the lack of manpower becomes a significant challenge. However, it is also a reality that it is difficult to supplement personnel or invest in expensive systems to address this issue.
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When visiting processing sites, I often hear the following challenges: - There are concerns about CAM and manually written NC programs. - There have been experiences of machine interference. - There have been experiences of damaging clamps and tools. - There have been experiences of reprocessing due to accuracy issues. - There are problems with communication between design and the site. Avoiding machine interference and tool damage is a significant challenge at any processing site.
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Injection molding is performed within a closed mold throughout the entire process from resin filling to cooling. As a result, it is said to be very difficult to identify the factors causing defects in the molded products. In some cases, the know-how of experienced technicians on-site can be utilized to improve defects, but because this know-how is a black box, sharing information becomes challenging. For example, when significant warping occurs in a product, various potential causes can be cited, such as whether it is due to the fibers of the reinforcing material or temperature differences. However, determining the cause and making improvements based solely on the molded product is considered difficult without incurring substantial human and time costs. Therefore, visualizing the interior of the mold has become necessary for improving productivity, reducing costs, and developing high-value-added products.
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Introduction Effects: ◆ OA (Office Automation) Effects The data import functions of Excel and EDI can significantly reduce the input workload of the materials procurement and administrative departments. The progress status becomes visible to anyone at any time, reducing the effort required to search for items on-site. ◆ Strengthening Progress and Delivery Management and Cost Reduction Effects During price negotiations for purchased goods and outsourced orders, data such as past purchase prices and total amounts can be easily referenced. By inquiring about cost details by production number, individual costs can be grasped in real-time, enabling measures to achieve profitability. ◆ Improvement and Sustaining Effects on Profitability (Company Quality) By freeing management and veteran employees from administrative tasks, they can focus on product development and customer acquisition, utilizing their experience and knowledge. During estimation and calculation, quick and accurate quotes can be created based on past similar cost records, leading to advantageous sales activities and securing high-quality orders. The results of improvement effects (information) are actively disclosed through "visualization" and "presentation," drawing out the motivation of all employees through fair numerical evaluations.
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The "Dr. Process" series efficiently manages resources in manufacturing sites and contributes to maximizing productivity. Dr. Process is a manufacturing support tool that encompasses everything from managing inquiries to process design, progress management, performance collection, and purchasing support. ◆ Process Management System Dr. Process Pro A process management system that is well-versed in mold manufacturing sites. It enables the establishment of a cyclical operation (PLAN→DO→CHECK→ACTION). It centrally manages the production process from order to completion and delivery, overseeing the load and progress from the entire factory down to individual resources (machines and personnel). It automatically proposes scheduling based on detailed condition settings such as delivery dates and priorities, aiming to improve productivity through the digitization of various information, ultimately leading to increased profits.
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Cimatron is a 3D CAD/CAM system developed by 3D Systems. Cimatron significantly contributes to shortening the delivery time for mold manufacturing as an integrated solution for molds, achieving substantial efficiency improvements through its high functionality and ease of use. 【Features】 ■ It offers hybrid modeling, high-performance 3D design, and a wide range of machining capabilities. ■ By utilizing it as a comprehensive integrated system or optimizing individual processes, it enhances customers' competitiveness and profitability. *For more details, please request materials or view the PDF data available for download.
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GO2cam, developed by GO2cam International (France), is a 3D CADCAM system for machining mechanical parts. It creates NC programs for milling, drilling, lathe machining, wire cutting, and electrical discharge machining from 2D CAD data and solid data, ranging from 2-axis to 5-axis operations.
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We received the elliptical vibration device from Taga Electric for Yasuda Industries' high-precision 5-axis YBM machine and challenged ourselves to achieve the ultimate mirror finish processing. In the processing that controls micron-level downsteps in 5-axis machining, we have been implementing hairline processing on various 3D curved surfaces. While pursuing convenience for our customers, we have been gradually achieving results. Additionally, a new simulation function for checking interference has been developed in Cimatron, further enhancing its usability. We have become capable of accommodating a wide range of processing materials and shapes. If you are interested, please feel free to contact us.
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NCSIMUL is an all-in-one solution software that can simulate 5-axis CNC machines. It virtually reproduces the environment of actual CNC machines in software, allowing for the early detection of issues that may arise during machining, such as error avoidance. ◆ It is a simulator based on G-code that allows for the verification of cutting and layering operations. ◆ It can integrate with various CAD/CAM systems, allowing you to use the same environment from CAM directly in NCSIMUL. ◆ Without returning to CAM, you can import G-code or APT files to rearrange or add to the sequence of machining processes.
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Moldex3D, a complete 3D resin flow analysis software, simulates the behavior inside molds during the plastic molding process on a computer, aiming to proactively identify and prevent various potential issues that may arise during the process. 【Features】 ■ Large-scale and high-speed analysis using the finite volume method for high-precision 3D analysis In traditional finite element methods (FEM), computation time increases geometrically with the number of elements, whereas in the finite volume method (FVM), it increases linearly, making it overwhelmingly advantageous as the number of elements increases. ■ High-precision 3D analysis By accurately solving the Navier-Stokes equations based on non-Newtonian fluids and considering the effects of inertia and gravity, it can handle complex phenomena such as runner balance and jetting. Unsteady cooling analysis and vent analysis are also supported as standard features. ■ High-performance computing capabilities By efficiently utilizing multi-core, multi-CPU, and multi-PC clusters, it achieves high computation speeds. It supports: - Flow analysis - Pressure holding analysis - Cooling analysis - Stress analysis - Warpage analysis - Structural analysis integration For detailed features, please refer to the catalog.
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We mainly offer the following seven products: 1. 3D Thermal Flow Analysis Program for Extrusion Molding - Flowsimutator3D 2. Software for Single Screw Analysis - Single Screw Simulator 3. Software for Twin Screw Extruder Analysis - Twin Screw Simulator 4. Thermal Flow Analysis Software for Flat Die - Flat Simulator 5. Thermal Flow Analysis Software for Spiral Die - Spiral Simulator 6. Advanced Blow Molding/Thermoforming Simulator - Hyper Blow 7. Polymer Simulator - NAPLES
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【Do you have these concerns?】 I want to easily scan and obtain data. It doesn't have to be highly accurate. I prefer something that can capture scan data to a certain extent and is inexpensive. I want a scanner that is easy to operate. 【Artec can solve your problems!】 It's lightweight and compact, so you can easily take it out and scan objects as if you were ironing. There are options with precision of "0.1mm" and "0.05mm." Setup is so simple that no manual is needed. Just turn on your computer and connect the cable to start using it immediately. 【Frequently Asked Questions】 Q1. Is the scanner's light harmful to humans? A1. The 3D scanner uses photographic technology and does not use laser light, making it safe for the eyes and skin. Q2. How far should I scan from? A2. If you are scanning a person, the best distance is about the length of their outstretched arms. Q3. What file formats are available? A3. STL, OBJ, ASCII, etc.
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■Engineering Services - Contract Analysis We conduct high-precision analysis using the advanced facilities of the Seiro Japan Rheology Center. Our experienced staff utilizes the latest CAE technology to solve our clients' challenges. Please feel free to contact us. - Resin Property Acquisition Using the equipment listed below, we measure the viscoelasticity, low shear viscosity, specific heat, reaction heat, crystallinity, and more of resins. Even for properties that are difficult to analyze with conventional equipment, measurements can be performed using the latest devices at the Rheology Center. Our experienced staff will assist you in solving your challenges. Please feel free to contact us.
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GO2designer is a new CAD for CAM programming. It helps with preparations before CAM programming, such as reading CAD data, drafting, printing, and designing clamp fixtures.
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We will create 3D data from the actual object using a high-precision 3D scanner. We can also handle reverse engineering to convert it into CAD data. We also accept CAD modeling and processing from drawings.
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Cimatron is a high-quality CAD/CAM system specifically designed to improve the efficiency of mold and prototype manufacturing.
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