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Analysis of the SPF of a titanium alloy at lower temperatures

机译:较低温度下钛合金的SPF分析

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This paper analyses a possibility to decrease the temperature of the industrial forming of the VT6 alloy. Experimental laboratory studies of the mechanical properties of the material show that one can lower the temperature of industrial superplastic forming. A developed mathematical model is proposed and enables to calculate an optimum pressurization taking into account the structural state of the shell material and principles of the shell friction on the die surface. The calculated pressurization enables to obtain the optimum superplastic properties of the material in the maximum area of the deformed shell. The proposed model has been checked up experimentally. In laboratory conditions, the forming of special workpieces with calculated pressurization has been conducted. The experimental researches confirm the made theoretical forecasts about a capability of decreasing the forming temperature of SPF VT6 alloy components. The studies have been made with the support of the international company AIRBUS GIE and the firm KOMMEK Ltd. (Russia).
机译:本文分析了降低VT6合金工业成型温度的可能性。材料的力学性能的实验实验室研究表明,它可以降低工业超塑性成形的温度。提出了一种开发的数学模型,该模型能够考虑壳材料的结构状态和模具表面上壳摩擦的原理来计算最佳加压。计算出的压力使得能够在变形壳的最大区域中获得材料的最佳超塑性。提出的模型已经过实验检验。在实验室条件下,已经进行了计算加压的特殊工件的成型。实验研究证实了关于降低SPF VT6合金部件成形温度的能力的理论预测。该研究是在国际公司AIRBUS GIE和公司KOMMEK Ltd.(俄罗斯)的支持下进行的。

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