A Novel Method for Densification of Titanium Using Hydrogenation-Induced Expansion Under Constrained Conditions

Chengshang Zhou, F. Lin, Pei Sun, Zoujun Chen, Z. Duan, X. Zhu, Yong Liu, Z. Fang
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引用次数: 5

Abstract

Full density of sintered Ti alloys is difficult to achieve through conventional pressureless sintering techniques. This paper introduces a novel approach for densifying powder metallurgy Ti alloys through constrained hydrogenation assisted densification (CHAD). This method utilizes hydrogenation-induced volumetric expansion and constrains a sintered Ti body in a rigid mold to achieve densification. The results demonstrate that the residual porosity in powder metallurgy CP-Ti and Ti-6Al-4V alloys can be effectively reduced or removed by CHAD, leading to improved tensile properties. The described method can be used as an efficient and cost-effective technique to make Ti and Ti alloys with high density and improved mechanical properties.
在约束条件下利用氢化诱导膨胀致密化钛的新方法
传统的无压烧结技术很难达到烧结钛合金的全密度。本文介绍了一种约束氢化辅助致密化(CHAD)粉末冶金钛合金的新方法。该方法利用氢化诱导的体积膨胀,并将烧结Ti体约束在刚性模具中以实现致密化。结果表明:CHAD能有效地减少或去除粉末冶金CP-Ti和Ti-6Al-4V合金中的残余孔隙,提高合金的拉伸性能;该方法可作为一种高效、经济的方法来制备具有高密度和高机械性能的钛和钛合金。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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