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Dynamic mechanical properties and wave propagation of composite rock-mortar specimens based on SHPB tests 被引量:14
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作者 Zhenyu Han Diyuan Li Xibing Li 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2022年第4期793-806,共14页
Filled inclusions in rock discontinuities play a key role in the mechanical characteristics of the rock and thereby influence the stability of rock engineering. In this study, a series of impact tests were performed u... Filled inclusions in rock discontinuities play a key role in the mechanical characteristics of the rock and thereby influence the stability of rock engineering. In this study, a series of impact tests were performed using a split Hopkinson pressure bar system with high-speed photography to investigate the effect of interlayer strength on the wave propagation and fracturing process in composite rock-mortar specimens.The results indicate that the transmission coefficient, nominal dynamic strength, interlayer closure, and specific normal stiffness generally increase linearly with increasing interlayer stiffness. The cement mortar layer can serve as a buffer during the deformation of composite specimens. The digital images show that tensile cracks are typically initiated at the rock-mortar interface, propagate along the loading direction, and eventually result in a tensile failure regardless of the interlayer properties. However, when a relatively weaker layer is sandwiched between the rock matrix, an increasing amount of cement mortar is violently ejected and slight slabbing occurs near the rock-mortar interface. 展开更多
关键词 rock dynamics Wave propagation rock-mortar STIFFNESS Energy FRACTURING
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Tensile strength and failure behavior of rock-mortar interfaces: Direct and indirect measurements 被引量:1
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作者 Ghasem Shams Patrice Rivard Omid Moradian 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第1期41-55,共15页
The tensile strength at the rock-concrete interface is one of the crucial factors controlling the failure mechanisms of structures,such as concrete gravity dams.Despite the critical importance of the failure mechanism... The tensile strength at the rock-concrete interface is one of the crucial factors controlling the failure mechanisms of structures,such as concrete gravity dams.Despite the critical importance of the failure mechanism and tensile strength of rock-concrete interfaces,understanding of these factors remains very limited.This study investigated the tensile strength and fracturing processes at rock-mortar interfaces subjected to direct and indirect tensile loadings.Digital image correlation(DIC)and acoustic emission(AE)techniques were used to monitor the failure mechanisms of specimens subjected to direct tension and indirect loading(Brazilian tests).The results indicated that the direct tensile strength of the rock-mortar specimens was lower than their indirect tensile strength,with a direct/indirect tensile strength ratio of 65%.DIC strain field data and moment tensor inversions(MTI)of AE events indicated that a significant number of shear microcracks occurred in the specimens subjected to the Brazilian test.The presence of these shear microcracks,which require more energy to break,resulted in a higher tensile strength during the Brazilian tests.In contrast,microcracks were predominantly tensile in specimens subjected to direct tension,leading to a lower tensile strength.Spatiotemporal monitoring of the cracking processes in the rock-mortar interfaces revealed that they show AE precursors before failure under the Brazilian test,whereas they show a minimal number of AE events before failure under direct tension.Due to different microcracking mechanisms,specimens tested under Brazilian tests showed lower roughness with flatter fracture surfaces than those tested under direct tension with jagged and rough fracture surfaces.The results of this study shed light on better understanding the micromechanics of damage in the rock-concrete interfaces for a safer design of engineering structures. 展开更多
关键词 rock-mortar rock-concrete Moment tensor inversion(MTI) Acoustic emission(AE) Digital image correlation(DIC) Tensile strength Direct tensile test Brazilian test
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布敦岩沥青在高速公路养护工程中的应用研究 被引量:1
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作者 郑国荣 唐国奇 《交通科技》 2014年第1期88-91,共4页
结合高速公路养护工程实践,采用大量室内试验对印尼布敦岩沥青的胶浆性能和混合料路用性能进行了研究。试验表明,随着岩沥青掺量的增加,混和沥青的热稳定性和耐老化都有明显增加,混合料的动稳定度、稳定度、劈裂强度等指标都得到了提高。
关键词 布敦岩沥青 胶浆性能 路用性能 工程应用
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二滩厂房进水口全强风化岩体工程边坡的综合处理措施
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作者 李正刚 《四川水力发电》 1994年第A00期61-64,76,共5页
二滩水电站厂房进水口上部及左岸坝顶8 ̄#公路边坡全强风化,强卸荷岩体高边坡,在使用了喷锚支护及锚索梁加固等综合处理后保证了临时边坡和永久边坡的稳定性,效果显著。
关键词 水电站厂房 进水口 岩体 边坡 风化 喷锚
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