垫层对煤炭试样变形定位和损伤构成模型的影响

IF 2.1 4区 材料科学 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Shaoqiang Liu, Hongbao Zhao, Jiabin Zhu, Boyi Su
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引用次数: 0

摘要

为揭示静力加载下含平行层理煤体变形场演化的层理效应,采用数字散点相关法观测了垂直层理加载和平行层理加载条件下原煤试样的最大剪切应变场,定量分析了两种加载条件下含平行层理原煤试样在加载过程中的变形场演化和变形定位特征。根据特征统计数据定义了描述煤试样损伤的损伤变量,并建立了反映含平行层理煤试样完整应力应变特征的损伤构成模型。结果表明,平行层理加载试样的应变场在压实初始阶段呈斑块状分布,而垂直层理加载试样在加载末端则形成一个变形集中区。在强度达到峰值前后,竖向垫层加载试样的应变场变化剧烈,试样出现剪切破坏,而平行垫层加载试样的应变场变化不大,试样出现劈裂破坏,裂纹发展较快,试样破坏程度较高。垂直敷层试件的变形局部起始应力更接近峰值强度,而平行敷层试件更容易出现变形局部特征。基于特征统计的损伤构成模型可以很好地反映原煤试样在垂直和平行铺层加载条件下的应力-应变特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The effect of bedding on deformation localization and damage constitutive modeling in coal specimens

The effect of bedding on deformation localization and damage constitutive modeling in coal specimens

To reveal the bedding effects on the deformation field evolution of coal bodies containing parallel bedding under static loading, the maximum shear strain field of raw coal specimens under vertical bedding loading and parallel bedding loading conditions was observed by the digital scatter correlation method, and the deformation field evolution and deformation localization characteristics of raw coal specimens containing parallel bedding during loading process under two loading conditions were quantitatively analyzed. A damage variable was defined to describe the damage of coal specimens based on the characteristic statistics, and a damage constitutive model was established to reflect the full stress–strain characteristics of coal specimens with parallel bedding. The results show that the strain field of the parallel-bedding-loaded specimens is patchily distributed during the initial compaction stage, whereas the vertical-bedding-loaded specimens form a deformation-concentrated area at the loading end. Before and after the peak strength, the strain field of the vertical-bedding loading specimen changes dramatically, and the specimen shows shear damage, whereas the strain field of the parallel-bedding loading specimen does not have large changes, and the specimen shows splitting damage, with higher crack development and degree of specimen failure. The initiation stress of deformation localization in the vertical bedding specimens is closer to the peak strength, whereas the parallel bedding specimens are more likely to show deformation localization characteristics. The damage constitutive model based on the characteristic statistics can well reflect the stress–strain characteristics of the raw coal specimens under the loading conditions of vertical and parallel bedding.

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来源期刊
Mechanics of Time-Dependent Materials
Mechanics of Time-Dependent Materials 工程技术-材料科学:表征与测试
CiteScore
4.90
自引率
8.00%
发文量
47
审稿时长
>12 weeks
期刊介绍: Mechanics of Time-Dependent Materials accepts contributions dealing with the time-dependent mechanical properties of solid polymers, metals, ceramics, concrete, wood, or their composites. It is recognized that certain materials can be in the melt state as function of temperature and/or pressure. Contributions concerned with fundamental issues relating to processing and melt-to-solid transition behaviour are welcome, as are contributions addressing time-dependent failure and fracture phenomena. Manuscripts addressing environmental issues will be considered if they relate to time-dependent mechanical properties. The journal promotes the transfer of knowledge between various disciplines that deal with the properties of time-dependent solid materials but approach these from different angles. Among these disciplines are: Mechanical Engineering, Aerospace Engineering, Chemical Engineering, Rheology, Materials Science, Polymer Physics, Design, and others.
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