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Modeling Bake Hardening Effects in Steel Sheets—Application to Dent Resistance

机译:钢板造型烘烤硬化效应 - 应用于牙抗性

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摘要

This study is dedicated to the experimental characterisation and phenomenological modeling of the bake hardening effect of a thin steel sheet, to predict the static dent resistance and perform an experimental validation on a bulged part. In a first step, rectangular samples are submitted to a thermo-mechanical loading to characterise the bake hardening magnitude in tension. A three-step procedure is considered, involving first a pre-strain in tension up to several values followed by unloading. Secondly, a heat treatment during a fixed time and a given temperature is performed, and finally, a reloading in tension in the same direction as the pre-strain is applied. Then, a specific device is developed to perform dent tests on a bulged specimen, to evaluate the influence of bake hardening on the dent resistance. A three-step procedure is also considered, with a pre-strain applied with a hydraulic bulge test followed by a heat treatment and then static dent test at the maximum dome height. An original phenomenological model is proposed to represent the yield stress increase after the heat treatment and the second reloading. Material parameters are identified from the tensile tests and are input data to a finite element model. The numerical prediction of the load evolution during the dent test is then compared with experimental data and shows an overall good correlation.
机译:本研究是专用于实验表征和的薄钢板的烘烤硬化效应现象的建模,预测静态凹痕抗力并在鼓出部执行实验验证。在第一步骤中,矩形样品提交给热机械载荷以表征在烘烤硬化张力大小。甲三个步骤被认为是,涉及第一预应变在张力达几个值,接着卸载。其次,在固定的时间的热处理,并在给定温度下进行,最后,施加在相同的方向上预应变张力的重新装载。然后,一个特定的设备被显影以在凸出的试样进行测试,凹痕,以评价烘烤硬化对耐冲击性的影响。三步过程也被认为是,与施加有液压膨胀试验,接着进行热处理,然后静态凹痕测试在最大圆顶高度的预应变。提出了一种原始唯象模型以表示热处理和第二重装后的屈服应力增加。材料参数从拉伸试验确定的并输入数据到一个有限元模型。凹陷试验时的负荷变化的数值预测然后用实验数据和示出了整体良好的相关性进行比较。

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