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[AIFEM] Strength Analysis of Automotive Floor

By comparing the results of strength analysis and eigenvalue analysis with reference results, the verification of AIFEM's analysis accuracy is also conducted simultaneously!

The rear floor of the vehicle is influenced by both the static load of the tires and the dynamic load from the road surface. Verifying the deformation and stress distribution of the floor plays an important role not only in improving the safety performance of the vehicle but also in leading to proposals for new structural designs. In this analysis, we will conduct structural strength and eigenvalue analysis of the vehicle floor to investigate its structural performance. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

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  • Other analysis software
  • Strength Analysis

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Strength analysis of the steel structure of the transfer device.

Conducted strength analysis using AIFEM! High strength performance is required for structures.

This article introduces the strength analysis of the steel structure of a transfer device used offshore, conducted using the general-purpose finite element analysis software AIFEM. The transfer device is used for transporting and moving large marine equipment, thus requiring high strength performance in its structure. Strength analysis was performed using AIFEM to identify the weak points of the structure under different working conditions. *For more detailed information, please refer to the related links. You can download the PDF for more details or feel free to contact us.*

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  • Structural Analysis
  • Strength Analysis

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FEMFAT Max Extension Module: Fatigue Strength Analysis of Multiaxial Operating Loads

Accurate fatigue strength evaluation under actual load conditions.

Predicting fatigue life under multi-axial loading is one of the significant challenges. The approach applied in FEMFAT max is based on research results conducted in collaboration with international research institutions, as well as the latest development achievements and academic papers within the company. All methods, theories, and hypotheses have been utilized in various projects and have been successfully validated. FEMFAT max includes ChannelMAX and TransMAX based on loading conditions, evaluating damage or fatigue life, fatigue limit safety factors, static fracture safety factors, and multi-axiality at each FE node. 【Module Introduction】 - Accurate fatigue strength assessment under actual loading conditions - Interface for time history data compatible with general-purpose mechanism analysis software and measurement software (e.g., ADAMS, RPC, DIAdem) - Input of loads corresponding to superposition (Channel) and transient response (Transient) - Filtering function for quick calculations only at necessary locations - Safety factors and damage calculations for fatigue limits under multi-axial stress states *For more details, please download the PDF or contact us.

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