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Oxygen Solid Solution Strengthened Pure Titanium Powder Materials

机译:氧固溶强化纯钛粉材料

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摘要

The applications of Ti and its alloys are limited to high-performance products because of expensive cost and poor plastic formability. In order to develop a cost-effective processing route for pure Ti and its alloys, pure Ti powder was used as raw material and consolidated by different powder metallurgy routes in this study. Warm compaction and cold compaction were employed to consolidate Ti powder and spark plasma sintering (SPS) was used as reference method. The obtained compacts were subsequently hot extruded. The microstructure and mechanical properties of the hot-extruded pure Ti were evaluated. It was found that the samples prepared by warm compaction showed a higher tensile strength of 973.6 MPa, a better elongation of 26% and a higher hardness of 389.8 Hv comparing with the other two methods. Solid solution strengthening of oxygen was the main reinforcement mechanism for the sample prepared by warm compaction in this study. The strengthening effect of oxygen was calculated as 769.8 MPa / mass. %.
机译:由于其昂贵的成本和较差的塑性加工性,Ti及其合金的应用仅限于高性能产品。为了开发一种纯钛及其合金的经济有效的加工路线,本研究以纯钛粉为原料,并通过不同的粉末冶金路线进行固结。采用热压实和冷压实来固结钛粉,并采用火花等离子体烧结(SPS)作为参考方法。随后将获得的压块热挤出。评价了热挤压纯钛的显微组织和力学性能。发现与其他两种方法相比,通过热压制制备的样品显示出更高的拉伸强度为973.6 MPa,更好的伸长率为26%和更高的硬度为389.8 Hv。氧气的固溶强化是本研究中通过热压实制备的样品的主要强化机理。氧的强化效果经计算为769.8 MPa /质量。 %。

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