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不同界面倾角和形状的砂浆-岩石界面区域动态断裂特性的试验研究

Experimental Study on the Dynamic Fracture Characteristics of Mortar-Rock Interface Zones with Different Interface Inclinations and Shapes.

作者信息

Li Zhaoqi, Dong Jie, Jiang Tao, Feng Kai, Cheng Siwu, Liu Yuqian, Zhang Guoxiang, Tian Xuewei

机构信息

College of Civil Engineering, Hebei University of Architecture, Zhangjiakou 075000, China.

Hebei Colleges Applied Technology Research Center of Green Building Materials and Building, Reconstruction, Zhangjiakou 075000, China.

出版信息

Materials (Basel). 2023 Aug 4;16(15):5475. doi: 10.3390/ma16155475.

Abstract

There has been little research on the impact resistance of mortar-rock slope protection structures. To ensure that the mortar-rock interface has good adhesion properties under the action of impact loading, in this paper, based on fracture mechanics theory, a theoretical impact model was established for mortar-rock binary material. Dynamic fracture tests were carried out on mortar-rock interfaces using the split-Hopkinson pressure bar (SHPB) system. The Brazilian disc (CSTBD) specimen was prepared with one half in granite and the other half in mortar. The specimen used for the dynamic impact test was 48 mm in diameter and 25 mm thick. The effects caused by the change in interface inclination and interface shape on the dynamic fracture mode were discussed. The dynamic model parameters were obtained for different inclination angles and interfaces. The results show that both the interface inclination and interface shape have significant effects on the dynamic mechanical properties of the mortar-rock binary material. The fracture modes of the mortar-rock specimens can be classified into three types. When the interface inclination is 0°, the specimen shows shear damage with an interface fracture; when the interface inclination is in the range of 0-90°, the dynamic splitting strength of the mortar-rock material increases with increasing interface inclination, and the interface undergoes composite fracture; and when the interface inclination is 90°, the dynamic splitting strength of the specimen reaches its peak, and the interface undergoes tensile fracture. The mortar-rock interface damage follows the M-C criterion. The roughness of the interface shape has a large influence on the dynamic splitting strength of the specimens. The rougher the interface shape, the higher the interface cleavage strength and the higher the peak load that causes the material to damage. The results of this study can provide a reference for the design of mortar-rubble structures to meet the demand for impact resistance and have strong engineering application value.

摘要

关于浆砌石护坡结构抗冲击性能的研究较少。为确保在冲击荷载作用下浆砌石界面具有良好的粘结性能,本文基于断裂力学理论,建立了浆砌石二元材料的理论冲击模型。利用分离式霍普金森压杆(SHPB)系统对浆砌石界面进行了动态断裂试验。制备了巴西圆盘(CSTBD)试样,一半为花岗岩,另一半为砂浆。用于动态冲击试验的试样直径为48mm,厚度为25mm。讨论了界面倾角和界面形状变化对动态断裂模式的影响。获得了不同倾角和界面的动态模型参数。结果表明,界面倾角和界面形状对浆砌石二元材料的动态力学性能均有显著影响。浆砌石试样的断裂模式可分为三种类型。当界面倾角为0°时,试样表现为剪切破坏且界面断裂;当界面倾角在0-90°范围内时,浆砌石材料的动态劈裂强度随界面倾角的增大而增大,界面发生复合断裂;当界面倾角为90°时,试样的动态劈裂强度达到峰值,界面发生拉伸断裂。浆砌石界面损伤遵循莫尔-库仑准则。界面形状的粗糙度对试样的动态劈裂强度有较大影响。界面形状越粗糙,界面劈裂强度越高,导致材料破坏的峰值荷载也越高。本研究结果可为浆砌石结构设计以满足抗冲击需求提供参考,具有较强的工程应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81de/10419951/d6a00216782d/materials-16-05475-g001.jpg

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