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首页> 外文期刊>Journal of Materials Science >Microstructure and tensile strength of grade 2 titanium processed by equal-channel angular pressing and by rolling
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Microstructure and tensile strength of grade 2 titanium processed by equal-channel angular pressing and by rolling

机译:等通道角向压制和轧制加工的2级钛的组织和抗拉强度

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Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to the use of complex Ti alloys in many medical or industrial applications. In this research, rods of grade 2 Ti were processed by up to six passes using Equal-channel angular pressing (ECAP) at 573 K followed by cold rolling at room or subzero temperatures. After four passes of ECAP, the grain size was refined down to the submicrometer scale and subsequent rolling led to further refinement. The microstructure was characterized by taking Vickers microhardness measurements and tensile testing was performed both at room temperature and in the temperature range of 573-773 K. The results show that at all temperatures the tensile strength is significantly improved by means of these processing techniques. At room temperature, the ultimate tensile strength of pure Ti after ECAP plus subzero rolling is close to that of the traditional Ti-6Al-4V alloy while maintaining adequate levels of elongation to failure.
机译:在许多医学或工业应用中,通过严重的塑性变形而增强的商业纯钛构成了替代复杂的钛合金的替代方法。在这项研究中,使用573 K等通道角向压制(ECAP)对2 Ti级棒材进行了多达6次加工,然后在室温或零度以下温度下进行冷轧。 ECAP经过四次通过后,晶粒尺寸缩小到亚微米级,随后的轧制导致进一步细化。通过进行维氏显微硬度测量来表征微观结构,并在室温和573-773 K的温度范围内进行了拉伸测试。结果表明,在这些温度下,通过这些加工技术可以显着提高拉伸强度。在室温下,ECAP加零度以下轧制后的纯Ti的极限抗拉强度接近传统的Ti-6Al-4V合金,同时保持足够的断裂伸长率。

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