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681.
循环冲击下波阻抗定义岩石损伤变量的研究 总被引:3,自引:0,他引:3
在动静组合加载试验系统上,对有轴向预应力的岩石进行循环冲击时无法测量其声波波速,以致于不能用声波波速值的变化研究此过程中岩石的损伤演变特性,为此提出了基于岩石波阻抗定义其损伤变量的方法。在理论上证明裂隙岩石的密度和纵波波速间具有良好的正向相关性,在同一损伤过程中,岩石的波阻抗与其纵波波速的相对变化量接近,根据密度和纵波波速都能反映岩石损伤的现实,得出基于岩石波阻抗定义岩石损伤的方法是可行的结论,并给出其定义损伤变量的表达式。根据一维应力波理论,推导出由入射波和反射波或透射波求解波阻抗的表达式。对利用霍布金森压杆装置进行试验时应力波在岩石试件两界面间多次透反射的过程进行了分析,在此基础上,确定了由试验数据计算循环冲击过程中岩石波阻抗的方法。对岩石试件进行了无初始应力的循环冲击试验,测量了岩石在每次冲击后的纵波波速,得出了基于波阻抗和纵波波速定义的损伤变量具有相同的变化趋势的结论,并分析了二者之间有差别的原因。研究结果表明,在入射能大小接近的循环冲击过程中,利用波阻抗定义岩石损伤变量的方法是可行的 相似文献
682.
循环加载时围压对岩石动力特性的影响 总被引:1,自引:0,他引:1
针对砂岩岩样,探讨了在不同围压作用下和轴向循环加载时岩样的动力力学性质,研究围压对砂岩岩样的动力力学性质的影响。采用的试验设备是MTS-815岩石和混凝土试验系统,5组围压分别为10、20、30、40、50 MPa。岩样为汶川地区的干砂岩,轴向荷载施加的频率为1 Hz。结果表明,(1)随着围压的逐渐增加,试样的残余轴向应变和体变逐渐增加,且剪胀发生时的残余体变也逐渐增加;(2)动力荷载作用时岩样在高围压比低围压下的初始刚度和强度高;(3)不同围压作用下,当应力比Rs较大时,岩样在较小的循环次数下发生破坏;(4)试样的破坏模式为剪切破坏,动力荷载作用下试样形成的局部化破坏带更宽。 相似文献
683.
Zheng Wenzhong Ji Jing 《地震工程与工程振动(英文版)》2008,7(2):137-146
Tests of nine angle-steel concrete column (ASCC) specimens under low cyclic loading are described in a companion paper (Zheng and Ji, 2008). In this paper, the skeleton curves from the numerical simulation are presented, and show good agreement with the test results. Furthermore, parametric studies are conducted to explore the influence of factors such as the axial compression ratio, shear steel plate ratio, steel ratio, prismatic concrete compression strength, yield strength of angle steel and shear span ratio, etc., on the monotonic load-displacement curves of the ASCCs. Based on a statistical analysis of the calculated results, hysteretic models for load-displacement and moment-curvature are proposed, which agree well with the test results. Finally, some suggestions concerning the conformation of ASCCs are proposed, which could be useful in engineering practice. 相似文献
684.
Tests of nine angle-steel concrete column (ASCC) specimens under low cyclic loading are described in acompanion paper (Zheng and Ji, 2008). In this paper, the skeleton curves from the numerical simulation are presented, andshow good agreement with the test results. Furthermore, parametric studies are conducted to explore the influence of factorssuch as the axial compression ratio, shear steel plate ratio, steel ratio, prismatic concrete compression strength, yield strengthof angle steel and shear span ratio, etc., on the monotonic load-displacement curves of the ASCCs. Based on a statisticalanalysis of the calculated results, hysteretic models for load-displacement and moment-curvature are proposed, which agreewell with the test results. Finally, some suggestions concerning the conformation of ASCCs are proposed, which could beuseful in engineering practice. 相似文献
685.
在工程实际中认为饱和度超过80 %即为饱和土,但在室内土工试验中制作的土样饱和度达95 %以上,后者经过试验测定,动力参数与前者实际上有一定差异。在50,100,200 kPa三种固结压力下分别对饱和度为95 %,92 %,88 %,83 %的饱和土样进行了循环单剪试验,得到了4种土样在3种固结压力下的最大动剪模量Gdmax和最大阻尼比Dmax,以及动剪模量比G/Gdmax-? 和阻尼比D/Dmax-? 归一化数值,并进行了对比分析。结果表明:在同一固结压力下,土样的Gdmax,Dmax,G/Gdmax随着饱和度增大有相对递减的趋势,而阻尼比D/Dmax数值随着饱和度加大而逐渐增加;随着固结压力的增大,4种土样的Gdmax,Dmax以及G/Gdmax-? (? 为动剪应变)数值上差异逐渐减小。最后对此种现象进行了讨论并分析其产生的原因。 相似文献
686.
软土中桶型基础水平循环承载力的模型试验 总被引:2,自引:0,他引:2
利用真空预压方法制备了一个大尺寸软黏土模型试验土池,进行了不同竖向静荷载与水平循环荷载共同作用下软土中单桶基础承载力的模型试验,研究了竖向静荷载与水平循环荷载对基础承载力的影响。结果表明,基础的水平循环承载力小于静承载力;导致基础破坏的循环荷载与循环次数取决于竖向静荷载。竖向静荷载越大,与同一循环破坏次数对应的循环荷载就越小。依据模型试验土的循环强度变化关系,采用弹塑性有限元计算方法对模型试验进行了数值模拟,计算与试验结果基本吻合,表明可以依据软黏土的循环强度变化关系,通过弹塑性有限元数值计算评价软土地基中桶型基础的水平循环承载力。 相似文献
687.
K0固结条件下砂土的循环剪切特性试验研究 总被引:1,自引:0,他引:1
利用土工静力-动力液压三轴-扭转多功能剪切仪,针对福建标准砂Dr = 30 %,在K0固结条件下,进行不同围压下的循环三轴试验,探讨了K0固结过程和K0固结条件下砂土的孔隙水压力特性与强度特性,并与原有均等固结条件和非均等固结条件下的循环三轴试验进行对比分析。通过分析和比较表明,砂土的K0固结试验过程可以分为两个阶段,第1个阶段是初期的缓慢变形阶段,第2个阶段是后期的稳定发展阶段,围压对静止土压力系数K0的测定有一定影响。不同固结过程对砂土动孔隙水压力的发展有很大的影响,K0固结条件下试样出现明显的剪胀现象。另外,K0固结条件下砂土动强度高于非均等固结条件(Kc = 1.67)下砂土动强度,低于非均等固结条件(Kc =2.94)下砂土动强度。 相似文献
688.
This experimental study investigates the effectiveness of crossed inclined bars (X‐bars) as joint shear reinforcement in exterior reinforced concrete beam–column connections under cyclic deformations. Test results of 20 joint subassemblages with various reinforcement ratios and arrangements including X‐bars in the joint area are presented. The X‐type, non‐conventional reinforcement is examined as the only joint reinforcement and in combination with common stirrups or vertical bars. The experimental results reported herein include full loading cycle curves, energy dissipation values and a categorization of the observed damage modes. Based on the comparisons between the overall hysteretic responses of the tested specimens, it is deduced that joints with X‐bars exhibited enhanced cyclic performance and improved damage mode since a distinct flexural hinge was developed in the beam–joint interface. Further, the combination of crossed inclined bars and stirrups in joint area resulted in enhanced hysteretic response and excellent performance capabilities of the specimens. However, in some specimens with X‐bars as the only joint shear reinforcement, the deformations of the bent anchorage of the beam's bars caused considerable damages at the back of the joint area. Discussion for a potential replacement of the joint stirrups with X‐type reinforcement in some cases of exterior joints is also included. Copyright © 2008 John Wiley & Sons, Ltd. 相似文献
689.
A new type of hybrid coupled wall system, consisting of rolled steel coupling beams, reinforced concrete (RC) wall piers, and concrete‐filled tube (CFT) short columns, is introduced. In this new system, the bases of the wall piers are connected to the base beams only through CFT short columns, unlike conventional coupled walls. Yield occurs in the coupling beams and the short columns; hence, in the RC wall piers, only minimum cracking appears. A total of four subassembly specimens, designed to fail in various collapse mechanisms, were cyclically loaded under constant axial force. A benchmark specimen showed ductile behavior with large energy dissipation until fracture occurred in the coupling beam. In the specimen designed to fail in shear in its CFT, substantial axial shortening was observed, but the overall behavior was ductile. Behavior of specimens with small amounts of section steel in the wall panel fringe, or with thin wall panels, also showed ductile behavior, but the strength and energy dissipation were significantly smaller than other two specimens. An analytical model was proposed for a frame analysis program using fiber elements to simulate elastic–plastic behavior of the system. Design methods to prevent shear failure of CFT and RC panels are suggested using the analytical and test results. Copyright © 2008 John Wiley & Sons, Ltd. 相似文献
690.