岩石力学与工程学报
巖石力學與工程學報
암석역학여공정학보
CHINESE JOURNAL OF ROCK MECHANICS AND ENGINEERING
2010年
2期
375-380
,共6页
陈荣%郭弦%卢芳云%夏开文
陳榮%郭絃%盧芳雲%夏開文
진영%곽현%로방운%하개문
岩石力学%花岗岩%动态断裂%裂纹面张开位移
巖石力學%花崗巖%動態斷裂%裂紋麵張開位移
암석역학%화강암%동태단렬%렬문면장개위이
rock mechanics%granite%dynamic fracture%crack surface opening displacement(CSOD)
采用一种新的方法研究Stanstead花岗岩的动态断裂性能,包括起裂韧度、断裂能、传播韧度和裂纹传播速度.该方法采用分离式霍普金森压杆加载的带预制裂纹的半圆盘三点弯试样,同时采用激光位移计监测试样的裂纹面张开位移.在动态力平衡的条件下,起裂韧度由准静态公式计算得到.通过裂纹面张开位移数据推算出2个碎片的残余动能,从而计算出平均传播断裂能和传播韧度.裂纹传播平均速度由黏接在试样上的一系列裂缝计测量得到.试验结果表明,该花岗岩的起裂韧度和传播韧度都与加载速率有关,传播韧度大于起裂韧度,传播韧度随着裂纹传播速度的提高而提高.通过裂纹传播速度和传播韧度的关系拟合得到材料的止裂韧度及裂纹传播极限速度.得到的Stanstead花岗岩与Laurentian花岗岩结果对比表明,Stanstead花岗岩颗粒较大,起裂、止裂韧度较小;Laurentian花岗岩颗粒较小,传播韧度较小,裂纹传播极限速度较大,裂纹容易传播.
採用一種新的方法研究Stanstead花崗巖的動態斷裂性能,包括起裂韌度、斷裂能、傳播韌度和裂紋傳播速度.該方法採用分離式霍普金森壓桿加載的帶預製裂紋的半圓盤三點彎試樣,同時採用激光位移計鑑測試樣的裂紋麵張開位移.在動態力平衡的條件下,起裂韌度由準靜態公式計算得到.通過裂紋麵張開位移數據推算齣2箇碎片的殘餘動能,從而計算齣平均傳播斷裂能和傳播韌度.裂紋傳播平均速度由黏接在試樣上的一繫列裂縫計測量得到.試驗結果錶明,該花崗巖的起裂韌度和傳播韌度都與加載速率有關,傳播韌度大于起裂韌度,傳播韌度隨著裂紋傳播速度的提高而提高.通過裂紋傳播速度和傳播韌度的關繫擬閤得到材料的止裂韌度及裂紋傳播極限速度.得到的Stanstead花崗巖與Laurentian花崗巖結果對比錶明,Stanstead花崗巖顆粒較大,起裂、止裂韌度較小;Laurentian花崗巖顆粒較小,傳播韌度較小,裂紋傳播極限速度較大,裂紋容易傳播.
채용일충신적방법연구Stanstead화강암적동태단렬성능,포괄기렬인도、단렬능、전파인도화렬문전파속도.해방법채용분리식곽보금삼압간가재적대예제렬문적반원반삼점만시양,동시채용격광위이계감측시양적렬문면장개위이.재동태력평형적조건하,기렬인도유준정태공식계산득도.통과렬문면장개위이수거추산출2개쇄편적잔여동능,종이계산출평균전파단렬능화전파인도.렬문전파평균속도유점접재시양상적일계렬렬봉계측량득도.시험결과표명,해화강암적기렬인도화전파인도도여가재속솔유관,전파인도대우기렬인도,전파인도수착렬문전파속도적제고이제고.통과렬문전파속도화전파인도적관계의합득도재료적지렬인도급렬문전파겁한속도.득도적Stanstead화강암여Laurentian화강암결과대비표명,Stanstead화강암과립교대,기렬、지렬인도교소;Laurentian화강암과립교소,전파인도교소,렬문전파겁한속도교대,렬문용역전파.
A recently proposed method is used to measure dynamic fracture parameters of Stanstead granite(SG),such as fracture initiation toughness,fracture energy,fracture propagation toughness,and fracture propagation velocity. With the method,a notched semicircular bend specimen is loaded by the split Hopkinson pressure bar(SHPB) system;and a laser gap gauge system is employed to monitor the crack surface opening displacement (CSOD) of the specimen. The dynamic initiation toughness is subsequently calculated by using a quasi-static formula,for the dynamic force balance is achieved in the test. Based on the CSOD data,residual kinetic energies of the two fragments are estimated. The average propagation fracture energy and thus the propagation toughness are calculated. The average fracture propagation velocity is estimated with a series of crack gauges glued on the specimen. It is shown from the results of the experiments that both the initiation and propagation toughnesses of this brittle solid are loading- dependent. The propagation toughness is larger than the initiation toughness. The propagation fracture toughness is shown to increase with the fracture propagation velocity. The fracture arrest toughness and the limiting fracture propagation velocity are obtained by a literature model of this relationship. The results of SG in this work are compared with the ones of Laurentian granite(LG). The grain size of SG is much larger than the one of LG,so that the fracture is easy to be generated and arrested but difficult to propagate. On the contract,the LG has smaller dynamic propagation toughness and the larger limit fracture propagation velocity.