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Thermal stability of residual stresses and work hardening of shot peened tungsten cemented carbide

机译:残余应力的热稳定性和滴灌碳化碳化碳化物的滴灌的硬化

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摘要

Tungsten cemented carbide of WC-10 wt.% Co with shot peening treatment was isothermal annealed at the temperatures ranging from 550 to 850 degrees C for different time. The relaxation behavior of residual stresses and full width at half maximum (FWHM)(1) of the X-ray diffraction profiles was investigated using the X-ray stress analyzer. The variations of structure in the top surface layer were also determined via the X-ray diffractometer. The results showed that both the residual stresses and the FWHM reduced sharply in the initial stage, and then they gradually declined to the stable state. The thermal activation enthalpy of WC and Co phases calculated by Zener-Wert-Avrami function indicated that the predominant relaxation mechanism was thermally activated gliding of dislocations. The work hardening effect presented better resistance to thermal relaxation in comparison with the residual stresses. The microhardness also declined with the heating temperature and the annealing time, which was analogous to the changes of residual stresses and FWHM. The residual stresses in WC and Co phases remained at compressive state suggesting that the shot peened WC-Co composite has good thermal stability under the working temperature of up to 850 degrees C. (C) 2016 Elsevier B.V. All rights reserved.
机译:钨WC-10%(重量)的Co烧结碳化物与在温度范围从550至850摄氏度的不同时间喷丸硬化处理是等温退火。使用X射线应力分析仪的残余应力和在的X射线衍射曲线半最大值(FWHM)(1)全宽的松弛行为进行了研究。结构的顶表面层中的变化进行了通过X射线衍射仪也被确定。结果表明,该残余应力和FWHM在初始阶段急剧降低,然后又逐渐下降到稳定的状态。通过齐纳WERT-阿夫拉米函数计算WC和Co相的热活化焓表明,主要的松弛机理热激活位错的滑动。强化效果的工作与残余应力比较呈现更好的耐热弛豫。显微硬度也下降用的加热温度和退火时间,这是类似于残余应力和FWHM的变化。在WC和Co相的残余应力保持在压缩状态表明喷丸WC-Co复合镜头具有高达850摄氏度(℃)2016保留爱思唯尔B.V.所有权利的工作温度下具有良好的热稳定性。

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