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Mechanical Property Evaluation Using the Small Punch Test

机译:使用小冲孔试验评估机械性能

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摘要

The small punch (SP) test technique is an attractive method for evaluating mechanical behavior in materials where only small volumes of materials are available. An SP-test machine was developed where miniature disc specimens 5 and 3 mm in diameter and with thickness ranging between 50 to 400 mu m can be investigated. For two materials, a 1Cr-0.5Mo low alloy steel and an 18Cr-9Ni austenitic stainless steel, the stress-strain flow curve was assessed and compared with that in tensile tests. The yield strength was determined from the SP-test by analyzing the initial elastic deformation with help of classical plate bending theory. The effective flow properties in the biaxial stress state were evaluated through analytical modelling of the stretching deformation. Good agreement between the uniaxial and biaxial flow properties was found for the 1Cr-0.5Mo steel and acceptable agreement for the 18Cr-9Ni steel.
机译:小冲模(SP)测试技术是一种评估材料机械性能的极具吸引力的方法,其中只有少量材料可用。开发了一种SP测试机,可以研究直径5到3毫米,厚度在50到400微米之间的微型圆盘样品。对于两种材料,一种1Cr-0.5Mo低合金钢和一种18Cr-9Ni奥氏体不锈钢,评估了应力-应变流动曲线,并将其与拉伸试验中的曲线进行了比较。屈服强度是通过SP试验通过借助经典板弯曲理论分析初始弹性变形而确定的。通过分析拉伸变形的模型评估了双轴应力状态下的有效流动特性。发现1Cr-0.5Mo钢的单轴和双轴流动特性之间具有良好的一致性,而18Cr-9Ni钢则具有可接受的一致性。

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