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Relation Between the Microstructure and Properties of Commercial Titanium Alloys and the Parameters of Gas Nitriding

机译:市售钛合金的组织性能与气体渗氮参数的关系

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摘要

Titanium alloys are unique materials with an excellent combination of properties. However, their applications are limited due to low surface hardness. In the present work gas nitriding is performed with the aim of improving the surface properties of commercial titanium alloys. Four widely used titanium alloys, namely. Ti - 6 percent Al -4 percent V. Ti - 6 percent Al - 2 percent Sn - 4 percent Zr - 2 percent Mo. Ti - 8 percent Al - 1 percent Mo - 1 percent V. and Ti - 10 percent V - 3 percent Fe - 3 percent Al. are studied. The process is performed in a nitrogen atmosphere at 950 and 1050 deg C for 1,3. and 5 h. The resulting surface hardness exceeds the normal value for titanium alloys by a factor of 3 - 5 due to the change in the phase composition of the surface layer, yielding a solid solution of nitrogen in an a-Ti phase, a TiN nitride, and TiO_2 dioxide. The influence of the parameters of the treatment process and the chemical composition of the alloys on the phase composition, microstructure. microhardness. and thickness of the surface layer is analyzed. It is shown that nitriding of alloys with a- and (a - P)-structures al 1050 deg C yields surface layers with in homogeneous composition and irregular thickness, whereas after nitriding at 950 deg C the surface layers are homogeneous and have high properties. Practical recommendations are given for choosing nitriding parameters for different alloys and variants of application are discussed.
机译:钛合金是具有优异性能组合的独特材料。然而,由于低表面硬度,它们的应用受到限制。在目前的工作中,进行气体氮化是为了改善商业钛合金的表面性能。四种广泛使用的钛合金,即。 Ti-6%Al -4%V.Ti-6%Al-2%Sn-4%Zr-2%Mo.Ti-8%Al-1%Mo-1%V.Ti-10%V-3铁百分比-3%铝被研究。该过程在氮气气氛中在950和1050℃下进行1.3。和5小时。由于表面层相组成的变化,所得的表面硬度超过钛合金的正常值的3-5倍,从而产生a-Ti相中的氮,TiN氮化物和TiO_2固溶体二氧化碳。处理工艺参数和合金化学成分对相组成,微观结构的影响。显微硬度。分析表面层的厚度。结果表明,a-和(a-P)结构的合金在1050℃渗氮后,其表面层的成分均一且厚度不规则,而在950℃渗氮后,这些表面层是均质的并具有较高的性能。给出了针对不同合金选择渗氮参数的实用建议,并讨论了各种应用。

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