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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Finite-element-based methodology for predicting the thermo-mechanical behaviour of superplastic forming tools
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Finite-element-based methodology for predicting the thermo-mechanical behaviour of superplastic forming tools

机译:基于有限元的方法预测超塑性成形工具的热机械行为

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摘要

The time-dependent, thermo-mechanical behaviour of superplastic forming (SPF) dies is studied using finite-element (FE) analysis and experimental testing. The objective of the work is to predict the cyclic, non-linear stress-strain response of the dies under the severe cyclic thermal conditions that lead to short lives in service. Experiments are carried out on a simple rectangular-shaped die within a laboratory SPF press for a 20%Ni-24%Cr high-temperature tool steel to validate the FE modelling methodology. Tensile tests at four different temperatures up to 900℃ and short-term tensile creep tests at 900℃ are carried out to measure the high-temperature mechanical behaviour of the 40%Ni-20%Cr die material XN40F. Finally, time-dependent, non-linear, sequentially coupled, FE analyses are employed to study the behaviour of a representative XN40F SPF die. Attention is focused on the practical combined thermal cycles consisting of (a) major cycles, which correspond to controlled heat-up and free cool-down, and (b) minor cycles, which correspond to smaller temperature changes associated with the opening and closing of the press and die for part removal and blank insertion. It is shown that significant cyclic inelastic strains develop at die locations that correspond to locations at which major cracking has been observed during service. Elastic-plastic-creep, stress-strain loops are presented corresponding to these locations as a basis for die life prediction.
机译:使用有限元(FE)分析和实验测试研究了超塑性成形(SPF)模具随时间变化的热机械行为。这项工作的目的是在严重的循环热条件下预测模具的循环,非线性应力-应变响应,从而导致使用寿命缩短。实验是在实验室SPF压力机中的简单矩形模具上对20%Ni-24%Cr高温工具钢进行的,以验证FE建模方法。在四个不同温度下(最高900℃)进行拉伸试验,并在900℃下进行短期拉伸蠕变试验,以测量40%Ni-20%Cr模具材料XN40F的高温机械性能。最后,采用时变,非线性,顺序耦合的有限元分析来研究代表性XN40F SPF芯片的性能。注意的是实际的组合热循环,包括(a)主要循环,对应于受控的加热和自由冷却,(b)次要循环,对应于与打开和关闭温度相关的较小温度变化。压机和模具用于零件拆卸和毛坯插入。结果表明,在模具位置产生了明显的循环非弹性应变,该应变对应于在维修过程中观察到大裂纹的位置。提出了与这些位置相对应的弹塑性蠕变,应力应变环,作为预测模具寿命的基础。

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