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A New Prediction Method for the Ultimate Tensile Strength of Steel Alloys with Small Punch Test

机译:小冲孔试验预测钢合金极限抗拉强度的新方法

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摘要

The load–deflection curve acquired from the Small Punch Test (SPT) is used to obtain the mechanical properties of materials using different correlation methods. The scattering level of these regressions tends to be high when a wide set of materials is analyzed. In this study, a correlation method based on a specific slope of the SPT curve was proposed to reduce scattering. Assuming the Ramberg–Osgood hardening law, the dependence of the SPT curve slope on the yield strength and the hardening coefficient is demonstrated by numerical simulations (FEM). Considering that the ultimate tensile strength could be obtained from the hardening coefficient, a response surface of the ultimate tensile strength with the yield strength and SPT curve slope, along with its equation, is presented for steel alloys. A summary of steel mechanical properties, based on the Boiler and Pressure Vessel Code (BPVC) and limited to yield strengths lower than 1300 MPa, is shown to select a set of experimental tests (tensile tests and SPTs) for which the range is completely covered. This experimental analysis validates the previous FEM analyses and the validity of the proposed correlation method, which shows more accurate correlations compared to the current methods.
机译:从小冲孔试验(SPT)获得的载荷-挠度曲线用于使用不同的相关方法获得材料的机械性能。当分析大量材料时,这些回归的散射水平往往较高。在这项研究中,提出了一种基于SPT曲线特定斜率的相关方法来减少散射。假设使用Ramberg–Osgood硬化定律,则通过数值模拟(FEM)证明SPT曲线斜率对屈服强度和硬化系数的依赖性。考虑到可以从硬化系数中获得极限抗拉强度,给出了钢合金极限抗拉强度的响应面与屈服强度和SPT曲线斜率的关系式。根据锅炉和压力容器规范(BPVC)并限制屈服强度低于1300 MPa的钢机械性能的摘要,显示了选择一组完全覆盖范围的实验测试(拉伸测试和SPT)。 。该实验分析验证了以前的有限元分析以及所提出的相关方法的有效性,与现有方法相比,该方法显示出更准确的相关性。

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