...
首页> 外文期刊>Advances in materials science and engineering >Transition of Dislocation Structures in Severe Plastic Deformation and Its Effect on Dissolution in Dislocation Etchant
【24h】

Transition of Dislocation Structures in Severe Plastic Deformation and Its Effect on Dissolution in Dislocation Etchant

机译:塑性变形中位错结构的转变及其对位错蚀刻剂溶出的影响

获取原文
           

摘要

Transition of dislocation structures in ultrafine-grained copper processed by simple shear extrusion (SSE) and its effects on dissolution were manifested by simple immersion tests using a modified Livingston dislocation etchant, which attacks dislocations and grain boundaries selectively. The SSE process increased the internal strain evaluated by X-ray line broadening analysis until eight passes but decreased it with further extrusion until twelve passes. The weight loss in the immersion tests reflected the variation in the internal strain namely, it increased until eight passes and then decreased with further extrusion to twelve passes. Taking our previous report on microstructural observation into account, it is suggested that variation in the internal strain is caused by both the variation in dislocation density and structural change of grain boundaries from equilibrium to nonequilibrium states or vice versa. Decreased dislocation density and structural change back to equilibrium state of grain boundaries in very high strain range by possibly dynamic recovery as pointed out by Dalla Torre were validated by X-ray and dissolution in the modified Livingston etchant in addition to the direct observation by TEM reported in our former report.
机译:通过使用改性利文斯顿位错蚀刻剂的简单浸没测试,可以证明通过简单的剪切挤压(SSE)处理的超细晶粒铜中位错结构的转变及其对溶解的影响,该浸蚀剂选择性地腐蚀了位错和晶界。 SSE过程增加了通过X射线线展宽分析评估的内部应变,直到八次通过,但通过进一步挤压使其减小,直到十二次通过。浸没测试中的重量损失反映了内部应变的变化,即,内部应变的变化一直增加到八次通过,然后随着进一步挤出减少到十二次通过。考虑到我们先前关于显微组织观察的报告,建议内部应变的变化是由位错密度的变化和晶界从平衡态到非平衡态的结构变化引起的,反之亦然。通过X射线验证了Dalla Torre指出的可能的动态恢复,从而在非常高的应变范围内降低了位错密度和结构变化,回到了晶界的平衡状态,并通过X射线验证了其在改性利文斯顿蚀刻剂中的溶解,以及通过TEM的直接观察在我们以前的报告中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号