Loukidis Andronikos, Triantis Dimos, Stavrakas Ilias
Devices and Materials Laboratory, Department of Electrical and Electronics Engineering, University of West Attica, 250 Thivon Avenue, 122 44 Athens, Greece.
Entropy (Basel). 2021 Feb 25;23(3):276. doi: 10.3390/e23030276.
Non-extensive statistical mechanics (NESM), introduced by Tsallis based on the principle of non-additive entropy, is a generalisation of the Boltzmann-Gibbs statistics. NESM has been shown to provide the necessary theoretical and analytical implementation for studying complex systems such as the fracture mechanisms and crack evolution processes that occur in mechanically loaded specimens of brittle materials. In the current work, acoustic emission (AE) data recorded when marble and cement mortar specimens were subjected to three distinct loading protocols until fracture, are discussed in the context of NESM. The NESM analysis showed that the cumulative distribution functions of the AE interevent times (i.e., the time interval between successive AE hits) follow a q-exponential function. For each examined specimen, the corresponding Tsallis entropic q-indices and the parameters and were calculated. The entropic index shows a systematic behaviour strongly related to the various stages of the implemented loading protocols for all the examined specimens. Results seem to support the idea of using the entropic index as a potential pre-failure indicator for the impending catastrophic fracture of the mechanically loaded specimens.
由Tsallis基于非加性熵原理引入的非广延统计力学(NESM)是玻尔兹曼 - 吉布斯统计的推广。NESM已被证明为研究复杂系统提供了必要的理论和分析方法,如脆性材料机械加载试样中发生的断裂机制和裂纹扩展过程。在当前工作中,在NESM的背景下讨论了大理石和水泥砂浆试样在三种不同加载方案下直至断裂时记录的声发射(AE)数据。NESM分析表明,AE事件间隔时间(即连续AE撞击之间的时间间隔)的累积分布函数遵循q指数函数。对于每个测试试样,计算了相应的Tsallis熵q指数以及参数 和 。熵指数 表现出一种系统行为,与所有测试试样所实施加载方案的各个阶段密切相关。结果似乎支持将熵指数 用作机械加载试样即将发生灾难性断裂的潜在失效前指标的观点。