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Characterization of a superplastic titanium alloy with an experimental and numerical approach based on free-inflation tests

机译:基于自由膨胀试验的实验性和数值方法表征超塑性钛合金

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It's well known that the microstructure dramatically affects the strain behaviour of superplastic materials. Virtually, each batch should be characterized ex novo: optimal ranges of temperature and strain rate as well as material constants have to be defined. An accurate and simple characterization methodology based on a strain condition close enough to the real forming process is of great industrial interest. In this work, a characterization methodology based on an experimental and numerical approach is proposed. Experimental free inflation tests with a pressure jump were carried out on a titanium alloy. Results were used as reference data for an inverse analysis based on the height evolution of the dome. Material constants were calculated by means of a genetic algorithm. The approach was verified with further experimental results and a good correlation was found.
机译:众所周知,微观结构显着影响超塑性材料的应变行为。实际上,每个批次都应表征EX Novo:必须定义最佳温度和应变率以及材料常数。基于足够靠近真实成形过程的应变条件的准确和简单的表征方法具有很大的工业利益。在这项工作中,提出了一种基于实验和数值方法的表征方法。在钛合金上进行具有压力跳跃的实验自由膨胀试验。结果用作基于圆顶高度演化的逆分析的参考数据。通过遗传算法计算材料常数。通过进一步的实验结果验证该方法,发现了良好的相关性。

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