首页> 外文OA文献 >The optimal determination of forging process parameters for Ti–6.5Al–3.5Mo–1.5Zr–0.3Si alloy with thick lamellar microstructure in two phase field based on P-map
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The optimal determination of forging process parameters for Ti–6.5Al–3.5Mo–1.5Zr–0.3Si alloy with thick lamellar microstructure in two phase field based on P-map

机译:基于P-map的两相场中厚板状Ti-6.5Al-3.5Mo-1.5Zr-0.3Si合金锻造工艺参数的最优确定

摘要

The deformation behavior of Ti–6.5Al–3.5Mo–1.5Zr–0.3Si alloy with thick lamellar α microstructure is investigated by using the Processing-map (P-map). The results show that the P-map can predict the regime of flow instability and reveal deformation mechanisms well. Through analyzing P-maps and observing the microstructure evolution of Ti–6.5Al–3.5Mo–1.5Zr–0.3Si alloy in forging process, the phenomena of flow instability are found to occur at the temperature and strain rate ranges of (750–880 °C, 0.005–10.0 s−1) and (880–950 °C, 0.17–10.0 s−1), which include macrocracks, adiabatic shear bands and prior β boundary cavities. The preferable temperature and strain rate for hot working of the Ti-alloy are (790–900 °C, 0.001–0.003 s−1) and (900–950 °C, 0.001–0.017 s−1). In these two deformation domains, the globularization of α lamellae occurs, and the combination of the globularization of α lamellae and α + β → β phase transformation happen, respectively. For forging of Ti–6.5Al–3.5Mo–1.5Zr–0.3Si alloy in α + β phase field, the optimum temperature can be selected from the temperature range of 850–950 °C and the optimum stain rate is 0.001 s−1 based on the volume fraction of α phase for obtaining the needed properties of forgings in design of forging processes.
机译:利用加工图(P-map)研究了具有较厚的层状α微结构的Ti-6.5Al-3.5Mo-1.5Zr-0.3Si合金的变形行为。结果表明,P-map可以预测流动的不稳定状态并很好地揭示变形机理。通过分析P图并观察Ti–6.5Al–3.5Mo–1.5Zr–0.3Si合金在锻造过程中的组织演变,发现在(750–880)温度和应变速率范围内会发生流动不稳定性现象。 °C,0.005-10.0 s-1)和(880-950°C,0.17-10.0 s-1),其中包括宏观裂纹,绝热剪切带和先前的β边界腔。钛合金热加工的最佳温度和应变率分别为(790-900°C,0.001-0.003 s-1)和(900-950°C,0.001-0.017 s-1)。在这两个变形域中,发生了α薄片的球状化,并且分别发生了α薄片的球状化和α+β→β相变的组合。对于在α+β相场中锻造Ti–6.5Al–3.5Mo–1.5Zr–0.3Si合金,可以从850–950°C的温度范围中选择最佳温度,并且最佳染色速率为0.001 s-1基于α相的体积分数,以获得锻造工艺设计中所需的锻件性能。

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