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A systematic FEM analysis of the influence of mechanical properties in the reliability of the correlation methods in the small punch test

机译:机械性能对小冲击试验中的相关方法可靠性影响的系统有限元分析

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摘要

The Small Punch Test (SPT) is a miniature mechanical characterization test used as an alternative method to obtain a wide selection of mechanical properties (Young's modulus, yield strength, ultimate tensile strength, fracture toughness, etc). These mechanical properties are obtained in the SPT from correlations with different data of the load-displacement curve of the test (SPT curve). The main disadvantage of the SPT is the scattering observed when a wide set of materials is included in the correlations. A systematic finite element analysis of the SPT was performed for an extensive selection of hypothetical materials with an extensive range of mechanical properties (Young's modulus, yield strength and strain hardening) in order to study the influence of each mechanical property on the correlation methods. This investigation showed the multi-dependencies of the current correlation methods with more than one mechanical property. These multiple dependencies were analyzed and quantified and were introduced in the correlation equations to reduce the scattering.
机译:小冲击试验(SPT)是一种微型机械表征测试,用作获得各种机械性能(杨氏模量,屈服强度,最终拉伸强度,断裂韧性等)的替代方法。这些机械性能在SPT中获得与测试的负载 - 位移曲线的不同数据(SPT曲线)的相关性。 SPT的主要缺点是当宽套材料中包括在相关性时观察到的散射。对于广泛的机械性能(杨氏模量,屈服强度和应变硬化)进行广泛选择SPT的系统有限元分析,以研究每个机械性质对相关方法的影响。该研究表明,具有多于一个机械性能的当前相关方法的多依赖性。分析和量化这些多个依赖性,并在相关方程中引入以减少散射。

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