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High-Temperature Deformation Behavior of Ti-TiB_w In-Situ Metal-Matrix Composites

机译:Ti-TiB_w原位金属基复合材料的高温变形行为

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摘要

In developing titanium-based materials for high-performance structural applications, the focus has been on discontinuously reinforced titanium-matrix composites that are based on the in-situ creation of TiB whiskers. This article presents the elevated-temperature compressive flow properties of Ti- TiB_w composites as a function of temperature (from 973 K to 1,273 K), strain rate (from 10~(-5) to 10~(-3)s~(-1)), and the TiB whisker content (commercially pure titanium and composites with 30 to 86 vol. percent TiB_w). In both the commercially pure titanium and the TiB-whisker-containing titanium composites, flow stress increases with increasing strain rate and decreasing test temperature. In this study, flow stress increased with increasing volume fraction of TiB at a given temperature and strain rate. The composite containing 86 percent TiB_w showed significantly higher elevated-temperature strength when compared to the other composites. The composites exhibit systematic trends in the variation of work-hardening behavior (in terms of work-hardening exponent, n, and work-hardening rate, d sigma/d epsilon and the strain-rate dependence.
机译:在开发用于高性能结构应用的钛基材料时,重点是基于原位生成的TiB晶须的不连续增强钛基复合材料。本文介绍了Ti-TiB_w复合材料的高温压缩流动特性与温度(973 K至1,273 K),应变率(10〜(-5)至10〜(-3)s〜(-)的关系。 1))和TiB晶须含量(商业纯钛和30%至86%(体积)TiB_w的复合材料)。在商业纯钛和含TiB晶须的钛复合材料中,流动应力都随着应变速率的增加和测试温度的降低而增加。在这项研究中,在给定的温度和应变速率下,流动应力随着TiB体积分数的增加而增加。与其他复合材料相比,含有86%TiB_w的复合材料显示出更高的高温强度。复合材料在加工硬化行为的变化方面表现出系统的趋势(根据加工硬化指数n和加工硬化率,d sigma / d epsilon和应变率依赖性)。

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