首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Microstructure and tensile properties after thermohydrogen processing of Ti-6 Al-4V.
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Microstructure and tensile properties after thermohydrogen processing of Ti-6 Al-4V.

机译:Ti-6 Al-4V热氢处理后的组织和拉伸性能。

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摘要

Thermohydrogen processing (THP), a technique in which hydrogen is used as a temporary alloying element, can refine the microstructure and improve the final mechanical properties of the Ti-6 Al-4V alloy. THP allows microstructural modification of titanium alloys near net shape such as biomaterial components obtained by powder metallurgy and castings, since it does not require mechanical working. Two THP, called THP-A and THP-B, have been evaluated in samples of Ti-6Al-4V with a coarse and lamellar microstructure typical of castings and powder metallurgy. The THP-A is based in the eutectoid decomposition of the beta(H) phase to alpha phase and hydride phase. The THP-B is based in the isothermal decomposition of alpha('') martensite phase, obtained by quenching of hydrogenated samples. The refinement of the microstructure due to THP has been evaluated by means of optical and electron microscopy. Tensile tests showed that while both processes were able to increase the strength of the alloy as compared with the starting material, the ductility in samples subjected to THP-B was severely reduced.
机译:热氢加工(THP)是一种将氢用作临时合金元素的技术,可以改善Ti-6 Al-4V合金的微观结构并改善其最终机械性能。由于THP不需要机械加工,因此可以对钛合金进行近乎净形的微结构改性,例如通过粉末冶金和铸造获得的生物材料组件。已经在具有铸件和粉末冶金典型特征的粗大和层状微观结构的Ti-6Al-4V样品中评估了两种THP,即THP-A和THP-B。 THP-A基于β(H)相到α相和氢化物相的共析分解。 THP-B基于α('')马氏体相的等温分解,该相通过淬灭氢化样品而获得。已经通过光学和电子显微镜评价了由于THP引起的微观结构的细化。拉伸试验表明,虽然两种方法均能提高合金强度,但与THM-B相比,试样的延展性却大大降低。

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