Verification of wind resistance strength of outdoor equipment, frames, and structures through numerical analysis.
Wind resistance strength evaluation is an assessment method that analyzes the stresses and deformations caused by wind pressure and wind loads to confirm the safety of structures. Our company conducts wind resistance strength evaluations using the finite element method (FEM) for equipment frames, support structures, steel structures, and various types of frames. We evaluate the stress, displacement, and safety factor against anticipated wind loads, which can be utilized for design verification and reinforcement considerations.
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basic information
<Analysis Content> Wind Resistance Strength Evaluation Stress Analysis due to Wind Load Deformation Amount Evaluation Strength Confirmation of Support Structure Comparison and Examination of Reinforcement Plans Anchor Bolt Load Evaluation Impact Assessment during Design Changes <Target> Outdoor Equipment Equipment Stands Support Frames Steel Structures Signage Structures Pipe Support Structures Various Mechanical Equipment <Evaluation Items> Generated Stress Maximum Displacement Safety Factor Support Reaction Force Anchor Bolt Load Reinforcement Effect
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Applications/Examples of results
<Uses> Verification of wind resistance for outdoor equipment Design verification of equipment frames Safety assessment during strong winds Consideration of reinforcement for support structures Strength confirmation during equipment updates Preparation of documents for client submission <Examples of Achievements> Wind resistance strength evaluation of large FRP towers Wind resistance strength evaluation of balcony fences Wind resistance strength evaluation of outdoor unit frames Wind resistance strength evaluation of meteorological observation device support structures Wind resistance strength evaluation of chimney ducts
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."







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