期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
An experiment study of quartz-coesite transition at differential stress 被引量:6
1
作者 ZHOUYongsheng HEChangrong SONGJuan MAShengli MAJin 《Chinese Science Bulletin》 SCIE EI CAS 2005年第5期446-451,共6页
In order to study quartz-coesite transition under the conditions of differential stress, experiments of quartzite deformation were carried out using a triaxial testing system with a Griggs type solid medium pressure v... In order to study quartz-coesite transition under the conditions of differential stress, experiments of quartzite deformation were carried out using a triaxial testing system with a Griggs type solid medium pressure vessel. Analyses on the plastically-deformed samples under optical microscope and Raman spectra show that fine-grained coesite was present in the region of samples adjacent to the pistons at temperatures of 950-1000℃, confining pressure of 1.3 GPa, differential stress of 1.5-1.67 GPa, and total strain of 75%-81%. It is evident that the transition pressure of quartz-coesite at differential stress and intensely-strained conditions is far lower than the pressure for coesite stability at isostatic pressure. In other words, the stress condition of coesite occurrence is not unique. The decrease in confining pressure for quartz-coesite transition under differential stress conditions is controlled by a combined effect of the maximum principal stress that provides a high stress environment, and differential stress that causes sample deformation. Coesite was produced in the plastically-deformed samples in this study, but it can occur in both semi-brittle and plastic deformation regimes as seen in previous studies. Phase transition in semi-brittle deformation regime is caused by local mechanical instability induced by shear deformation, and phase transition in plastic flow regime is due to strain instability induced by the presence of a high dislocation density within intensely-deformed quartz crystals. 展开更多
关键词 石英 柯石英 转换过程 压力 温度 实验方法 三维测试实验
原文传递
差应力对石英-柯石英转化压力的影响 被引量:4
2
作者 周永胜 何昌荣 +1 位作者 马胜利 马瑾 《高校地质学报》 CAS CSCD 2004年第4期523-527,共5页
在差应力条件下出现柯石英的压力远小于静压条件下柯石英稳定存在的压力 ,这表明差应力对石英 -柯石英转化具有显著影响。根据柯石英形成条件 ,石英 -柯石英相变边界向低压方向迁移有两种不同物理机制 :发生在低温半脆性域的相变机制是... 在差应力条件下出现柯石英的压力远小于静压条件下柯石英稳定存在的压力 ,这表明差应力对石英 -柯石英转化具有显著影响。根据柯石英形成条件 ,石英 -柯石英相变边界向低压方向迁移有两种不同物理机制 :发生在低温半脆性域的相变机制是差应力产生的剪切变形引起应力不稳定 。 展开更多
关键词 石英—柯石英转化 差应力 高温高压
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部