首页> 外文会议>Mediterranean Conference on Fracture and Structural Integrity >The relaxation processes of Pressure Stimulated Currents under the concept of Non-extensive statistical physics
【24h】

The relaxation processes of Pressure Stimulated Currents under the concept of Non-extensive statistical physics

机译:非广泛统计物理概念下压力刺激电流的放松过程

获取原文

摘要

This study presents the results of Pressure Stimulated Currents (PSC) analysis using non-extensive statistical physics (NESP) approach when marble and amphibolite specimens were subjected to mechanical stress up to fracture. The specimens were subjected to a constant uniaxial stress, interrupted by an abrupt step-wise stress increase (Step-Stress Technique - SST) while concurrently the PSC emission was recorded. The loading protocol involved eight sequential steps of mechanical stress at a gradually higher level until the failure of the specimens. After each step, the stress was maintained constant until the PSC signal was restored to a final low value. After the PSC restoration the next stress step was applied. The recorded PSC temporal relaxation when the stress remained constant, was analyzed under the concept of NESP based on Tsallis' entropy and the behavior of the entropic index q was studied for various stress levels. Throughout each next loading step at higher level, the entropic index q shows a progressive increase from 1.15 to 1.40 until the stress attains about 85% of the specimens' total strength where it reaches a maximum value close to 1.4. When the applied stress becomes higher than the 85% of the specimens' total strength, the entropic index q gradually decreases. It should be noted that this peak along with the subsequent decline of q coexists with the excessive damage development in the specimens' bulk due to the applied mechanical stress. Taking into consideration the fact that the entropic index q quantifies the self-organization of the system, this behavior of q, for stress levels higher than 85% of the specimens' ultimate stress strength, clearly corresponds to dynamic processes that dominate the system and guide the upcoming fracture. The above findings advocate the use of the entropic index q as a pre-failure indicator of the upcoming specimen fracture.
机译:本研究介绍了使用非广泛统计物理(NESP)接近的压力刺激电流(PSC)分析的结果,当大理石和倒角标本受到骨折的机械胁迫时。对试样进行恒定的单轴应力,通过突然的逐步应力增加(步进应力技术 - SST),同时记录PSC发射。装载方案涉及八个顺序步骤,逐渐较高的机械应力直至样本的故障。在每个步骤之后,将应力保持恒定,直到PSC信号恢复到最终低值。 PSC恢复后,施加下一个应力步骤。记录的PSC颞弛豫当应力保持恒定时,在基于TSAllis的熵的概念下分析了熵,研究了熵指标Q的行为,用于各种应力水平。在较高级别的每个下一个加载步骤中,熵指数Q显示从1.15到1.40的渐进增加,直到应力达到标本总强度的约85%,其达到1.4的最大值。当施加的应力变得高于标本总强度的85%时,熵指数Q逐渐降低。应该注意的是,由于所施加的机械应力,这种峰随后随后的Q与样品散装中的过度损伤开发共存。考虑到熵指数Q定量系统的自组织,这种Q的这种行为,对于高于标本的最终应力强度的85%,清楚地对应于主导系统和指导的动态过程即将到来的骨折。上述研究结果倡导使用熵指数Q作为即将发生的试样骨折的预破坏性指标。

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