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Determination of the Constitutive Relation Parameters of a Metallic Material by Measurement of Temperature Increment in Compressive Dynamic Tests

机译:通过压缩动态试验中温度增量的测量来确定金属材料的本构关系参数

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The mechanical behaviour of a material can be established by an analytic expression called the constitutive relation that shows stress as a function of plastic strain, strain rate, temperature, and possibly other thermo-mechanical variables. The constitutive relation usually includes such parameters as coefficients or exponents that must be determined. At a high strain rate, the heat generated during the deformation process is directly related to the plastic deformation energy of the material. This energy can be calculated from the plastic work, resulting in an expression that includes the constitutive relation parameters as variables. The heat generated can also be estimated by measuring the temperature surface of the specimen during compressive tests using the technique of infrared thermography. The objective of this paper is to present a procedure for determining the constitutive relation parameters by measuring the temperature increase associated with plastic strain in compressive Hopkinson tests. The procedure was applied to estimate the parameters of the Johnson-Cook constitutive relation of an aluminium alloy (Al6082).
机译:材料的机械行为可以通过称为本构关系的解析表达式来建立,该表达式将应力显示为塑性应变,应变速率,温度以及其他可能的热机械变量的函数。本构关系通常包括必须确定的参数,例如系数或指数。在高应变率下,变形过程中产生的热量与材料的塑性变形能直接相关。可以从塑性功中计算出该能量,从而得到一个包含本构关系参数作为变量的表达式。还可以通过使用红外热成像技术在压缩测试过程中测量样品的温度表面来估算产生的热量。本文的目的是提出一种通过测量霍普金森压缩试验中与塑性应变相关的温度升高来确定本构关系参数的程序。该程序用于估算铝合金(Al6082)的Johnson-Cook本构关系的参数。

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