Visualizing stress distribution to support rational lightweight design.
Lightweight design considerations involve analyses aimed at reducing the weight of structures and components while optimizing shape and thickness, confirming strength and rigidity. Our company evaluates stress distribution and deformation behavior using the finite element method (FEM) and our proprietary optimization program, conducting design studies that ensure necessary strength while reducing unnecessary materials. This can be utilized for design improvements aimed at cost reduction, material reduction, and performance enhancement.
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basic information
<Analysis Content> Lightweight Design Consideration Strength Evaluation Stiffness Evaluation Plate Thickness Consideration Evaluation of Shape Change Effects Reinforcement Layout Consideration Design Proposal Comparative Evaluation <Target> Mechanical Parts Frame Structures Support Structures Sheet Metal Parts Cast Parts Plastic Parts Various Structures <Evaluation Items> Stress Distribution Maximum Displacement Safety Factor Stiffness Weight Change Weight Reduction Rate
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Applications/Examples of results
<Applications> Lightweighting of products Reduction of material costs Reduction of transportation costs Design improvement Balancing strength and weight Design verification before prototyping <Examples of Achievements> Consideration of lightweighting aluminum extrusions Consideration of lightweighting plastic containers Consideration of lightweighting steel structures
Company information
Our company supports designers who are troubled by issues such as "lightweight and strength" of products and equipment like automobiles, electronics, and machine tools, as well as "deformation and stress due to heat" and "fatigue failure due to vibration," with 15 years of product design experience and 30 years of structural analysis expertise. With the motto of providing advanced structural analysis at a low cost, we aim to be a "small company with unique technology."






