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Removal of alpha case on titanium alloy surfaces using chemical milling

机译:用化学铣削去除钛合金表面的α壳

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摘要

Elevated temperature deformation processing of titanium such as during forging causes the formation of alpha case, a brittle layer on the processed components. Alpha case removal has been attempted by several methods, however, in-depth understanding of chemical milling to this end is not evident from the prevailing literature. This work therefore undertakes experimental analysis of chemical milling to remove alpha case generated on titanium alloys after deformation after forging. Several compositions of chemicals and heat treatment conditions for titanium work-material were evolved. Effectiveness of these methods and their applications in removing alpha case on forged titanium alloy were investigated by performing a series of experiments. After the alpha case removal, the titanium work surfaces were examined using optical and scanning electron microscopy as well as electron back scattered diffraction and X-ray diffraction. The optimum results achieved show that 8% HF and 10% HNO3 solution with 13min and 30-s etching time is more effective in completely removing alpha case layer by chemical etching of Ti-6Al-4V alloy work specimens heated in air at 930 degrees C.
机译:钛的升高温度变形加工,例如在锻造期间导致α壳体的形成,在加工组分上形成脆性层。已经通过几种方法尝试了α案例去除,然而,深入了解化学铣削到此目的的理解从普遍的文献中并不明显。因此,该工作对化学铣削进行了实验分析,以在锻造后变形后除去钛合金上产生的α例。演化了几种化学品和热处理条件的化学品和热处理条件。通过进行一系列实验,研究了这些方法及其在去除锻造钛合金上除去α壳的应用。在α壳体去除后,使用光学和扫描电子显微镜以及电子背散射衍射和X射线衍射检查钛工作表面。实现的最佳结果表明,通过在930摄氏度在空气中加热的Ti-6Al-4V合金工作标本的化学蚀刻,通过在930摄氏度中加热的化学蚀刻,8%HF和10%HNO 3溶液在完全除去α壳层方面更有效。

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