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The Study of the Complex Mechanical Properties of Rolled Bars of VT6 Alloy as a Function of Chemical Composition and Structure Type

机译:作为化学成分和结构型函数的VT6合金轧制棒的复杂力学性能研究

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This paper presents the results of statistical tests, carried out to identify the mechanical properties of ? 16-150 mm VT6 titanium alloy bars, as a function of their post-annealing chemical composition and structure. It is shown that the high variation of mechanical properties may be, due to fluctuations in the grade composition and structure type. 50% to 60% of variations in strength properties are due to composition + structure co-effects. To improve the stability of such properties, the paper identifies maximum permissible total fluctuations in the chemical composition in terms of aluminum/molybdenum equivalents of alloying elements and impurities. The research team has fitted the regression dependencies for evaluating the mean values of the mechanical properties of ? 16-60 mm VT6 bars, as a function of the structure type and aluminum/molybdenum equivalents of the alloying elements and impurities.
机译:本文介绍了统计试验的结果,以确定机械性能? 16-150 mm VT6钛合金棒,作为其退火后化学成分和结构的函数。 结果表明,由于等级组成和结构类型的波动,可以是机械性能的高变化。 50%至60%的强度性能变化是由于组合物+结构的协同效应。 为了提高这些性质的稳定性,本文在合金元素和杂质的铝/钼等同物方面识别化学成分中的最大允许总波动。 研究团队拟合回归依赖性来评估机械性能的平均值? 16-60 mm VT6条,作为合金元素和杂质的结构类型和铝/钼的函数。

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