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Optimization design software - List of Manufacturers, Suppliers, Companies and Products

Optimization design software Product List

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Structural optimization design software 'OPTISHAPE-TS'

We propose suitable forms that meet various requirements! For initial design plans and improvements to existing structures.

"OPTISHAPE-TS" is software that assists in the research, development, and design of automotive parts, electrical equipment, construction machinery, and more. With its topology optimization feature, it presents new design proposals that capture the essence of mechanics. It enhances design ideas from the results obtained, enabling early concepts and early designs. We promise to improve current processes through cost reduction and quality enhancement, leading to shortened development and manufacturing periods and reduced costs. 【Features】 ■ Proposes the ideal "shape of things" through structural optimization ■ Improves current processes through cost reduction and quality enhancement ■ Commits to reducing development and manufacturing periods and costs ■ Utilized in various scenarios, including initial design stages and improvements to existing shapes *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis

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Case Studies of Structural Optimization Design Software for Interference and Stress with Other Components

We will introduce examples aimed at stress reduction, weight reduction, and control of natural frequencies. Consideration of situations such as component interference is also included! Detailed explanations of the analysis models, optimization conditions, and discussions will be provided!

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'OPTISHAPE-TS'. We include examples of shape optimization for arms considering layout constraints due to part interference, as well as shape optimization case studies using stress constraints from multiple areas. From the analysis model to optimization conditions, results, and discussions, we provide detailed explanations using diagrams. Please feel free to download and take a look. [Featured Examples] ■ Shape optimization considering interference with other parts ■ Shape optimization considering stress ■ Shape optimization to improve natural frequencies ■ Stress reduction through optimization of fillet shapes *For more details, please refer to the PDF document or feel free to contact us! *For those who are not members of Ipros, you can also download the materials from the related links below (within our company site).

  • Structural Analysis

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【1-month free trial now available!】Optimization design software 'ProTOp'

Seminars are held on the third Friday of every month! For details, please contact us through our website. Showcasing power from innovative ideas to prototypes for weight reduction and reinforcement!

"ProTOp" is a high-performance optimization design software compatible with all versions of Creo Simulate 2.0, 3.0, 4.0, and 5.0. It is equipped with a structural change monitoring function, allowing real-time verification of stress, displacement, and eigenvalues. This enables users to gain design insights from shapes in the optimization process, significantly broadening the scope of ideas. Additionally, it can be integrated with CAD/CAE software (Creo Simulate/Solidworks/ABAQUS), requiring minimal new operations to learn, allowing for immediate utilization after implementation. 【Features】 ■ Ability to monitor shapes during optimization ■ Fast solver with a unique optimizer that provides immediate results ■ Can be integrated with your currently used CAD/CAE software *For more details, please download the PDF or feel free to contact us.

  • Other CAD related software

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Case Studies on the Introduction of Structural Optimization Software for Component Lightweighting and Topology Optimization

Detailed explanations of examples of shape optimization that aligns the natural frequency with experimental measurement results, and examples of topology optimization that consider manufacturing requirements, using diagrams and tables!

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'OPTISHAPE-TS'. We include examples of shape optimization that aligns natural frequencies with experimental measurement results, as well as topology optimization examples that consider manufacturing requirements. From the analysis model to optimization conditions, results, and discussions, we provide detailed explanations using figures and tables. Please feel free to download and take a look. [Contents] ■ Shape optimization that aligns natural frequencies with experimental measurement results ■ Lightweight design of rotating parts considering rigidity and manufacturing requirements ■ Topology optimization considering manufacturing requirements ■ Shape optimization considering rigidity in the arrangement patterns of multiple parts * For more details, please refer to the PDF materials or feel free to contact us. * Those who are not members of Ipros can also download the materials from the related links below (within our company site).

  • Structural Analysis

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[Technical Column] The Theory of OPTISHAPE-TS Topology Optimization

The emergence of the H1 gradient method and its background! Introduction to a technical column on structural optimization design software.

In the previous article, I explained the calculation procedure of the force method, which is an H1 gradient method in shape optimization, including the previously proposed growth strain method. In this article, I will explain the H gradient method in topology optimization. Please feel free to download and take a look. [Contents] ■ Episode 7: The Emergence of the H1 Gradient Method and Its Background Part 2 "Topology Optimization" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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Theory of OPTISHAPE-TS Compliance Sensitivity Part 2

Compliance with design variables! An introduction to substitution method and direct differentiation method in a column.

We would like to introduce a technical column on our structural optimization design software "OPTISHAPE-TS." The discussion began in the previous article about deriving the sensitivity of compliance. This is the second installment of that article, where we will consider the derivative of compliance with respect to design variables. Please feel free to download and take a look. [Contents] ■ Episode 23: Sensitivity of Compliance Part 2 "Substitution Method and Direct Differentiation Method" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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Theory of OPTISHAPE-TS: Optimization of Functions and Its Applications

An example of a function optimization problem! Introduction to a technical column on structural optimization design software.

As mentioned in previous articles, non-parametric structural optimization reduces to the problem of finding the optimal function. In fact, when it comes to gradient methods, they are applied not only in design problems such as shape optimization and topology optimization but also in various fields of function optimization. This time, I will briefly introduce one example of identifying muscle activity during human swallowing movements. Please feel free to download and take a look. [Contents] ■ Episode 31: On Function Optimization and Its Applications *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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Case Studies on the Introduction of Structural Optimization Design Software for Initial Layout Design and Weight Reduction

Collection of case studies on initial layout design and structural optimization aimed at weight reduction and rigidity improvement.

This case study collection presents problem-solving examples using the SOLIDWORKS add-in structural optimization design software, HiramekiWorks. It provides detailed explanations from the analysis model to optimization conditions, results, and discussions. [Contents] ■ Shape optimization of table legs considering wall thickness A case study on examining a lightweight framework while considering generated stress and member thickness. ■ Initial layout design to detailed design of the lower arm A case study on examining a lightweight reinforcement layout. HiramekiWorks covers everything from layout examination to detailed design, achieving lightweight design through combined techniques. ■ Topology optimization of a monitor arm intended for symmetrical design Deriving the optimal framework while considering numerous load patterns. [Features of HiramekiWorks] ■ Easy optimization in a familiar environment ■ Responds to practical needs such as lightweight design and stress reduction under various conditions ■ Automatically generates solid models of optimization results ■ Easily generates STL data for 3D printing using the geometry editor *For more details, please refer to the PDF materials or feel free to contact us. *Materials can also be downloaded from the related links below (on our company website).

  • Structural Analysis

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Structural Optimization Software: Case Studies on Problem Solving: Rigidity Improvement and Strength Enhancement

Attention those struggling with rigidity and strength improvements! We are offering a collection of case studies that include shape optimization considering interference with other components and various loading patterns.

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'HiramekiWorks.' We include topology optimization examples where "mirror symmetry" is set for a monitor arm, as well as shape optimization examples where "designable areas" are defined. From the analysis model to optimization conditions, results, and discussions, we provide detailed explanations using diagrams and tables. Please feel free to download and take a look. [Contents] ■ Case study on lightweight reinforcement layout ■ Shape optimization case considering interference with other components ■ Case study on optimal shapes considering multiple load patterns ■ Case study on deriving ideas for optimal skeletal structures ■ Case study on efficient design support for reinforcement ribs *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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[Case Study] Optimization of Fan Blades 'AIPOD'

A case study of FsTech's uniquely developed general-purpose optimization design platform!

We would like to introduce a case study on the optimization of fan blades using our intelligent optimization software "AIPOD." This software employs optimization algorithms specifically designed to address issues such as the high costs of numerical simulations in the field of industrial design. An optimization calculation was performed targeting nine design variables, with the objective function being the minimization of total pressure loss and a CFD calculation of 150 cases. The optimization calculation achieved a performance improvement of 19.21%, surpassing the 14.69% of competing software. [Case Overview] - By turning on the Bound-break function during the AIPOD optimization process, optimization results exceeding expectations were obtained. - In this case, since the range of the set design variables was relatively reasonable, the more optimal candidate solutions obtained by both methods are included within the design space. *For more details, please download the PDF or feel free to contact us.

  • ファンブレードの最適化2.png
  • Other Software

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Spot Welding Shape Optimization, etc.: Case Studies on Structural Optimization Design Software Solutions

We will introduce examples of optimization related to spot-welded components and cases proposing shapes that equalize reaction forces ★ Detailed explanations of analysis models, optimization conditions, and discussions!

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'OPTISHAPE-TS'. We present cases of optimizing the shape of spot-welded flat plate stiffeners, optimizing the optimal arrangement of spot welds themselves, and optimizing shapes to equalize reaction forces. We provide a detailed explanation using diagrams, covering the analysis model, optimization conditions, results, and discussions. Please feel free to download and take a look. [Featured Cases] ■ Shape optimization of spot-welded flat plate stiffeners ■ Topology optimization to reduce spot welding ■ Shape optimization to equalize reaction forces *For more details, please refer to the PDF materials or feel free to contact us! *For those who are not members of Ipros, you can also download the materials from the related links below (within our company site).

  • Structural Analysis
  • Contract Analysis
  • Other analyses

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