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Carbide evolution and its potential reduction methods in Ti-22Nb based alloys prepared by metal injection moulding

机译:金属注射成型Ti-22Nb基合金中碳化物的演化及其电势降低方法

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Carbide evolution was investigated in order to find methods to reduce the carbide precipitation because it lowers the ductility of metal injection moulded beta-Ti alloys. Comparing Ti-22Nb and Ti-22Nb-2/10Zr alloys, the crystal structure of carbides is unchanged, but the lattice parameter of beta-Ti increases, then carbide fraction slightly decreases. Dissolution of carbides occurs fast around beta-transus temperature via short circuit diffusion but it becomes slow with decreasing temperature because of uniform atomic detachment. Based on these results, a multiple step treatment was proposed which in conjunction with grain refinement by adding Y/Y203, can significantly decrease the carbide fraction of Ti-22Nb-10Zr-xY/Y2O3. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了找到减少碳化物沉淀的方法,研究了碳化物的析出,因为它降低了金属注射成型的β-Ti合金的延展性。比较Ti-22Nb和Ti-22Nb-2 / 10Zr合金,碳化物的晶体结构没有变化,但β-Ti的晶格参数增加,然后碳化物的含量略有下降。碳化物的溶解通过短路扩散在β-转变温度附近快速发生,但由于均匀的原子分离,随着温度的降低碳化物的溶解变得缓慢。基于这些结果,提出了一种多步处理方法,该方法与通过添加Y / Y203进行晶粒细化相结合,可以显着降低Ti-22Nb-10Zr-xY / Y2O3的碳化物含量。 (C)2017 Elsevier B.V.保留所有权利。

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