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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical and experimental investigation on the forming behaviour of stainless/carbon steel bimetal composite
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Numerical and experimental investigation on the forming behaviour of stainless/carbon steel bimetal composite

机译:不锈钢/碳钢双金属复合材料成形行为的数值和实验研究

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摘要

Bimetal composites have wide applications due to their excellent overall performance and relatively low cost. In this study, the formability of stainless/carbon steel bimetal medium-thick composite in the stamping process without blank holder was investigated by finite element (FE) simulations and experiments. Uniaxial tensile tests on substrate metal (carbon steel) and clad metal (stainless steel) were first conducted, respectively, in order to obtain the material properties of each metal layer required in the FE simulation. Processing variables, including the layer stacking sequence, relative thickness ratios of two layers and friction conditions, were considered, and their effects on the magnitude of press load and distributions of thickness strain for predicting the high-risk region of necking during stamping were discussed. Experimental tests were carried out to verify the simulation results. It is indicated that simulation results can be used as an evaluation indicator to ensure the bimetal medium-thick composite can be safely formed.
机译:双金属复合材料由于其优异的整体性能和相对较低的成本而具有广泛的应用。在该研究中,通过有限元(Fe)模拟和实验研究了没有坯料支架的冲压过程中不锈钢/碳钢双金属中厚复合材料的可成形性。在基板金属(碳钢)和包层金属(不锈钢)上的单轴拉伸试验分别首先进行,以便获得Fe模拟所需的每个金属层的材料性质。考虑了包括层堆叠序列,两层和摩擦条件的层堆叠序列的处理变量,并讨论了对预测冲压期间颈部高风险区域的压力载荷和厚度应变的厚度和厚度应变分布的影响。进行实验测试以验证仿真结果。结果表明,仿真结果可用作评价指标,以确保可以安全地形成双金属介质厚复合材料。

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