中国钨业
中國鎢業
중국오업
CHINA TUNGSTEN INDUSTRY
2014年
3期
1-4
,共4页
岩石力学%循环加卸载%声发射%Kaiser效应%Felicity效应
巖石力學%循環加卸載%聲髮射%Kaiser效應%Felicity效應
암석역학%순배가사재%성발사%Kaiser효응%Felicity효응
rock mechanics%cyclic loading and unloading%acoustic emission%Kaiser Effect%Felicity Effect
通过对砂岩进行循环加载试验,揭示了砂岩在循环加卸载过程中的强度变化及声发射特性。试验利用电液伺服岩石三轴试验机和SDAES数字声发射检测仪采集系统,对两组砂岩试样分别进行单轴抗压、单轴循环加卸载试验。试验结果表明岩样在经过循环加卸载后试样的单轴抗压强度略有增大,循环加卸载过程中在伴随着岩样内部原始天然裂隙的压密、新生裂纹的产生、扩展和贯通的同时,也伴随着声发射不断产生。声发射事件在砂岩再次加载应力到达上次加载最大应力前极少发生,达到上次加载最大应力以后则大量发生,说明砂岩岩样在循环加卸在作用下存在声发射的Kaiser效应,而无Felicity效应产生。
通過對砂巖進行循環加載試驗,揭示瞭砂巖在循環加卸載過程中的彊度變化及聲髮射特性。試驗利用電液伺服巖石三軸試驗機和SDAES數字聲髮射檢測儀採集繫統,對兩組砂巖試樣分彆進行單軸抗壓、單軸循環加卸載試驗。試驗結果錶明巖樣在經過循環加卸載後試樣的單軸抗壓彊度略有增大,循環加卸載過程中在伴隨著巖樣內部原始天然裂隙的壓密、新生裂紋的產生、擴展和貫通的同時,也伴隨著聲髮射不斷產生。聲髮射事件在砂巖再次加載應力到達上次加載最大應力前極少髮生,達到上次加載最大應力以後則大量髮生,說明砂巖巖樣在循環加卸在作用下存在聲髮射的Kaiser效應,而無Felicity效應產生。
통과대사암진행순배가재시험,게시료사암재순배가사재과정중적강도변화급성발사특성。시험이용전액사복암석삼축시험궤화SDAES수자성발사검측의채집계통,대량조사암시양분별진행단축항압、단축순배가사재시험。시험결과표명암양재경과순배가사재후시양적단축항압강도략유증대,순배가사재과정중재반수착암양내부원시천연렬극적압밀、신생렬문적산생、확전화관통적동시,야반수착성발사불단산생。성발사사건재사암재차가재응력도체상차가재최대응력전겁소발생,체도상차가재최대응력이후칙대량발생,설명사암암양재순배가사재작용하존재성발사적Kaiser효응,이무Felicity효응산생。
This paper studies the sandstone and sound intensity changes in the process of loading and unloading cycle emission characteristics based on the sandstone cyclic loading tests. Electro-hydraulic servo triaxial testing machine and SDAES digital acoustic emission detector acquisition system are applied. Two sandstone samples are subjected to uniaxial compressive uniaxial cyclic loading test. Testing results show that the rock sample after cyclic loading and unloading after the sample is uniaxial compressive strength increases slightly. The same cyclic loading and unloading process is observed of having compaction, resulting in cracks in the rock sample nascent internal raw natural fissures, expansion and penetration, accompanied by the continuous generation of acoustic emission. In addition, after unloading sand again last loaded before loading stress reaches the maximum stress acoustic emission events occur only rarely. Loading stress reaches a large amount of new acoustic emission event after the last load of maximum stress proved sandstone samples in circulation unloading presence Kaiser effect of acoustic emission in the role, without Felicity effect produced.