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Finite-Element Modeling and Experimental Comparisons of the Effects of Deformable Ball Indenters on Rockwell B Hardness Tests

机译:变形球压头对洛氏B硬度测试影响的有限元建模和实验比较

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摘要

Significant differences occur in Rockwell B hardness (HRB) tests depending on whether the 1.588 mm diameter ball indenter that is used is made of steel or of tungsten carbide (WC). It is important to study and assess the effect of different indenter materials on the HRB tests since the Rockwell hardness test method standards, published by ASTM International and the International Organization for Standardization, now permit the use of either steel or tungsten carbide ball indenters. In this paper, finite-element analysis (FEA) is used to simulate the HRB indentation process using steel and WC ball indenters on the same test materials under the same testing conditions. The influence of the deformable steel and WC indenters on the HRB tests is analyzed by comparing their PEA results with those of a simulated nondeformable rigid indenter. The contact pressure, stress, strain, and deformations of both the indenters and the tested materials during the loading and unloading period are analyzed. The FEA simulation results show that the HRB difference between steel and WC ball indenters is about 0.4 HRB for 40-78 HRB levels, but increases to 0.56 HRB at the 23 HRB level. The FEA simulation results agree with experimental HRB results.
机译:根据所使用的直径1.588毫米的球形压头是由钢还是由碳化钨(WC)制成,在洛氏B硬度(HRB)测试中会出现显着差异。研究和评估不同压头材料对HRB测试的影响非常重要,因为ASTM International和国际标准化组织发布的洛氏硬度测试方法标准现在允许使用钢或碳化钨球压头。在本文中,有限元分析(FEA)用于模拟在相同测试条件下,相同测试材料上使用钢和WC球压头的HRB压痕过程。通过将可变形钢和WC压头的PEA结果与模拟的不可变形刚性压头的PEA结果进行比较,分析了可变形钢和WC压头对HRB测试的影响。分析了在加载和卸载期间压头和被测材料的接触压力,应力,应变和变形。 FEA仿真结果表明,钢和WC压头之间的HRB差在40-78 HRB的水平下约为0.4 HRB,但在23 HRB的水平上则增加到0.56 HRB。 FEA仿真结果与HRB实验结果一致。

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