|
|
|
| Study on DIC monitoring of uniaxial compression based on similar simulation calibration sample |
| Li Ping, Zhang Lei, Wang Meng, Lin Bo |
1. Datong Coal Mine Group Design and Research Co., Ltd., Jinneng Holding Coal Industry Group, Datong 037003, China;
2. Coal Engineering College of Shanxi Datong University, Datong 037003, China; 3. Cultivation Base of Shanxi Provincial Key Laboratory for Coal Mine Water Jet Technology and Equipment, Co-constructed by the Provincial Department and the Municipal Government, Datong 037003, China; 4. Shanxi Technology Innovation Center of Mining Area Geological Environment Monitoring and Emergency Disaster Reduction, Datong 037003, China |
|
|
|
|
Abstract In order to calibrate the similar simulation samples, the uniaxial compression test method was used, and the DIC technology was introduced to observe and collect the surface displacement cloud map of the sample, and the generation and development path of the cracks in the compression process of the sample were analyzed. The results showed that the DIC displacement field monitoring could reflect the deformation state of the object under the action of force. In the early stage of loading, the sample was gradually compacted, resulting in a large displacement change. At the peak strength, the crack was generated from the upper part of the sample and gradually developed to the surface of the sample, resulting in crack generation. Cracks developed downward with increasing pressure. That was, from the beginning of pressurization to the stage of crack development, the sample first underwent the compaction stage, and the displacement variation was large. When the crack initiated, the displacement on both sides of the crack was different. In addition, the observation of DIC strain field could describe the strain of the specimen under stress. The change of the strain field on the surface of the specimen reflected the failure process of the specimen, and also reflected the change of the internal loss of the specimen on the boundary. The crack was generated from the upper part of the sample. After the crack initiation, the monitored strain value increased significantly at the top of the sample, and the strain path changed with the crack development. The effective combination of DIC monitoring technology similar simulation test to calibrate the uniaxial compression process of the sample better revealed the strain evolution law of the sample failure process. The research results can be used for sample failure.
|
|
|
|
|
|
| [ 1 ] 宋文成,梁正召,刘伟韬,等. 采场底板破坏特征及稳定性理论分析与试验研究[ J ]. 岩石力学与工程学报,2019,38( 11 ):2 208 - 2 218.
[ 2 ] 郭惟嘉,张士川,孙文斌,等. 深部开采底板突水灾变模式及试验应用[ J ]. 煤炭学报,2018,43( 1 ):219 - 227.
[ 3 ] 郑 赟,单仁亮,黄 博,等. 强帮强角应用于沿空留巷支护的相似模型试验研究[ J ]. 采矿与安全工程学报,2021,38( 1 ):94 - 102.
[ 4 ] 成云海,黄国栩,焦仕学,等. 采动条件下断层夹持影响区域覆岩运移相似模拟试验研究[J/OL]. 矿业安全与环保,1-9[2025-01-20].
[ 5 ] 盛 佳,万 文,江飞飞,等. 深部双中段卸荷连续开采相似模拟试验研究[ J ]. 矿业研究与开发,2024,44( 12 ):1 - 12.
[ 6 ] 徐 展,杜常博,高 健,等. 袋装石墨尾矿承载性能及沿空留巷数值模拟研究[J/OL]. 煤炭科学技术,1 - 14[2025-01-20].
[ 7 ] 梅福星,尚宇琦,孔德中,等. 基于DIC技术近距离煤层采动裂隙-位移-应变演化规律相似模拟研究[ J ]. 矿业科学学报,2024,9( 4 ):519 - 528.
[ 8 ] 刘群艳,刘黎萍,贺 苗,等. 粒化高炉矿渣粉-粉煤灰稳定大粒径碎石立方体抗压强度尺寸效应研究[J/OL]. 中外公路,1-13[2025-01-20].
[ 9 ] 李 波,汪 隆. 不同温度变化下海测滩煤矿岩体物理力学
特性分析[ J ]. 煤炭科技,2024( 6 ):20 - 24.
[ 10 ] 冯慧坤,吕原君,罗战友,等. 辉绿岩单轴压缩过程变形场 的DIC监测与模拟[ J ]. 宁波大学学报( 理工版 ),
2024,37( 5 ):27 - 34.
[ 11 ] 张春阳,张宇超,李小双. 基于3D-DIC系统的白砂岩单轴压缩应变率效应的力学性能试验研究[ J ]. 矿冶工程,2023,43( 1 ):21 - 25,31.
[ 12 ] 时金娜,赵燕茹,郝 松,等. DIC技术分析玄武岩纤维混凝土单轴受压应力应变曲线研究[ J ]. 硅酸盐通报,2019,38( 6 ):1 668 - 1 673,1 680.
[ 13 ] 孙临宵,熊厚仁,黄殿武,等. 碳酸钙晶须对水泥砂浆单轴压缩特性的影响[ J ]. 新型建筑材料,2024,51( 4 ):72 - 76.
[ 14 ] 章德超,肖桃李,折海成,等. 应用DIC研究裂隙分布对层状复合岩力学特性及变形破坏影响[ J ]. 中国测试,2024,50( 9 ):191 - 200.
[ 15 ] 亓宪寅,柯 婷,耿殿栋. 基于压电陶瓷和DIC的软硬互层岩石内外损伤试验及模型研究[ J ]. 煤矿安全,2023,54( 9 ):119 - 128. |
|
|
|