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首页> 外文期刊>Materials Science and Engineering >Hot workability characteristics of as-cast titanium alloy Ti-6Al-2Zr-1Mo-1V: A study using processing map
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Hot workability characteristics of as-cast titanium alloy Ti-6Al-2Zr-1Mo-1V: A study using processing map

机译:铸钛合金Ti-6Al-2Zr-1Mo-1V的热加工性能:加工图研究

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摘要

The intrinsic workability of as-cast Ti-6Al-2Zr-1Mo-1V alloy was investigated by using processing maps constructed from the stress-strain data generated by isothermal compression tests with a height reduction of 60% over a range of temperatures 1073-1323 K and strain rates 0.01-10 s~(-1). As the true strain was 0.3, 0.5, 0.7, and 0.9, respectively, the responses of strain rate sensitivity (m-value), power dissipation efficiency (η-value) and instability parameter (ξ-value) to temperature and strain rate were evaluated. By the superimposition of power dissipation and instability maps, the stable and unstable regions were clarified clearly. In further, in the stable area the regions have the highest efficiency of power dissipation (≥0.2) were identified and recommended. On the basis of determination for domains with dynamic recrystallization (DRX) microstructural evolution, the full DRX regions were identified in the processing map at true strain 0.3-0.9. Then not only the domains optimized were validated by DRX refined microstructures, but also the regimes of flow instabilities were validated by the microstructures involving wedge cracking and deformation twinning. The optimal working parameters identified by processing maps and validated by microstructure observations contribute to designing the reasonable hot forming process of Ti-6Al-2Zr-1Mo-1V alloy without resorting to expensive and time-consuming trial-and-error methods.
机译:使用由等温压缩试验产生的应力-应变数据构造的加工图研究了铸造的Ti-6Al-2Zr-1Mo-1V合金的固有加工性能,该加工图在一定温度范围内高度降低了60%(1073-1323年) K和应变速率为0.01-10 s〜(-1)。当真实应变分别为0.3、0.5、0.7和0.9时,应变率灵敏度(m值),功耗效率(η值)和不稳定性参数(ξ值)对温度和应变率的响应分别为评估。通过功耗和不稳定性图的叠加,可以清楚地阐明稳定区域和不稳定区域。此外,在稳定区域中,已确定并推荐了功耗最高的区域(≥0.2)。在确定具有动态重结晶(DRX)微结构演变的域的基础上,在加工图中以真实应变0.3-0.9识别了完整的DRX区域。然后不仅通过DRX改进的微结构验证了优化的区域,而且还通过涉及楔形裂纹和变形孪生的微结构验证了流动不稳定性的状态。通过加工图确定并通过微结构观察验证的最佳工作参数有助于设计Ti-6Al-2Zr-1Mo-1V合金的合理热成型工艺,而无需诉诸昂贵且费时的反复试验方法。

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