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1.
为了开展含预制裂纹的巷道模型试样在冲击载荷下的动态断裂响应实验,选用青砂岩作为模型材料制作巷道模型试样,以可调速落锤冲击实验机作为冲击加载装置进行试样的动态断裂实验,分析冲击载荷作用下的巷道内裂纹的扩展规律。采用裂纹扩展计及应变片测试系统监测裂纹的起裂时间、扩展速度及止裂时间,并借助于AUTODYN、ABAQUS有限元数值分析软件对实验模型进行数值模拟,计算裂纹的动态起裂韧度、动态扩展韧度、动态止裂韧度等断裂参数。结果表明:巷道内裂纹在扩展路径过程中存在着明显的止裂现象;采用实验-数值方法能够较好地得出裂纹的起裂韧度、扩展韧度和止裂韧度等参数。另外,对止裂现象进行了初步的分析,讨论了试样内应力反射波与透射波对止裂问题的影响。  相似文献   

2.
采用分离式霍普金森压杆(SHPB)系统对页岩进行冲击实验,研究层理角度对页岩动态断裂过程的影响,在裂尖设置裂纹扩展计,借助高速摄影和数字图像相关(DIC)技术对页岩中心切槽半圆盘弯曲(NSCB)试件断裂的全过程进行研究,得到了不同加载角度下页岩的动态起裂韧度、裂纹扩展速度、断裂过程中应变场和水平位移场的变化规律。实验发现:不同加载角度下,页岩的动态起裂韧度具有显著的各向异性,加载角度与动态起裂韧度呈正相关;加载角度对试样的裂纹扩展速度具有显著影响,与裂纹扩展速度呈负相关;当冲击速度较低时,切槽方向是裂纹扩展的优势方向,而当冲击速度较高时,试样会产生沿层理弱面的次生裂纹,次生裂纹对试样的断裂具有显著影响。  相似文献   

3.
实际工程中岩体往往处于Ⅰ型和Ⅱ型加载同时存在的状态,而这种复合加载条件下岩石断裂行为的预测较为复杂,也是迫切需要解决的问题。本文基于Ⅰ型加载条件下测试得到的页岩试样断裂韧度,应用MTS(Maximum Tangential Stress,最大切向应力)断裂准则对页岩试样在Ⅱ型加载条件下的裂纹起裂角以及断裂韧度进行了预测。为评估预测效果,通过Ⅱ型加载条件下2种尺寸页岩断裂试验,发现Ⅰ型断裂韧度随岩样尺寸变化的趋势不同,Ⅱ型断裂韧度基本没有尺寸效应。通过比较预测结果以及试验结果发现,利用传统的MTS断裂准则预测的理论值与试验测试值相差较大。在预测过程中断裂过程区尺寸的确定也是非常重要的,如果不考虑断裂过程区的尺寸效应同样会造成很大的预测误差。结合MTS准则确定的断裂过程区尺寸,利用GMTS(Generalized Maximum Tangential Stress,广义最大切向应力)断裂准则预测的岩样裂纹起裂角以及断裂韧度都与试验测试值非常接近。  相似文献   

4.
爆炸、冲击、地震等人为或自然灾害不可避免,经常造成大量土木工程设施的破坏,因此岩石在动态载荷作用下的行为受到特别关注.岩石动态断裂韧度是评价岩石抵抗裂纹动态起裂、扩展和止裂性能的材料参数,开展岩石动态断裂韧度测试方法的研究对相关理论基础和实验技术的要求较高.岩石动态断裂韧度分为动态起裂、动态扩展、动态止裂三种,虽然关于动态起裂和动态扩展的研究已有一些成果,对岩石动态止裂的研究仍是一个难题,至今几乎无人问津.研究表明,在分离式霍普金森压杆撞击压缩单裂纹圆孔板岩石试样的I型动态断裂试验中,动态起裂、扩展、止裂的全过程可以由黏贴在压缩单裂纹圆孔板试样上的裂纹扩展计监测,岩石的动态起裂、扩展、止裂韧度可以用实验-数值-解析法确定.特别值得一提的是首次测出了岩石的动态止裂韧度.裂纹扩展计信号还显示,压缩单裂纹圆孔板在止裂后,停止的裂纹还会再次动态起裂、扩展并超出裂纹扩展计的检测范围.从能量的角度分析了动态止裂的过程,指出测试动态止裂韧度时要注意的一些问题.结果显示,岩石动态起裂韧度和动态扩展韧度分别随动态加载率和裂纹扩展速度的增大而增大,岩石动态起裂韧度略大于动态止裂韧度.   相似文献   

5.
采用基于黏聚裂纹模型的扩展有限元方法,开展了镁铝合金结构冲击破坏过程的数值模拟研究。通过镁铝合金三点弯曲试样冲击实验,获得了不同子弹撞击速度下试样的冲击破坏模式。在此基础上,建立了实验结构的扩展有限元模型,并采用最大主应力准则,以及含损伤型的本构关系模拟材料的冲击断裂行为。对于裂纹尖端附近区域,采用黏聚裂纹模型模拟裂纹的断裂过程。对子弹速度分别为12.2、15.1、26.3 m/s的3种工况下镁铝合金试样的动态破坏过程进行了数值模拟研究,获得了与实验相一致的断裂模式。计算结果表明,试样以Ⅰ型断裂模式为主,裂纹沿初始预制裂纹方向扩展。当裂纹扩展到一定程度后,在试样韧带区域被撞击端附近,由于应力波及边界效应导致该区域处于复杂应力状态,试样出现复合型断裂模式,裂纹偏离原扩展路径,与本文实验结果相吻合。  相似文献   

6.
李炼  罗林  吴礼舟  王启智 《爆炸与冲击》2018,38(6):1218-1230
针对平台圆环构型的优点, 提出偏心圆孔单裂纹平台圆盘(cracked eccentrically holed flattened disc, CEHFD), 该试样具有更长的断裂路径。利用霍普金森压杆加载系统, 径向冲击CEHFD试样, 完成Ⅰ型动态断裂实验。砂岩试样表面粘贴应变片和裂纹扩展计, 用于监测裂纹动态起裂、扩展和止裂的全过程。实验表明, 在整个断裂过程中, 裂纹非匀速扩展, 裂纹扩展速度在裂纹起裂后加速上升, 在裂纹止裂前有明显的减速, 与地震时断层的动态破裂全过程完全吻合。采用实验-数值-解析法得到动态应力强度因子, 其时间历程呈现先增大后减小的趋势。根据断裂过程不同时刻, 得到相应的动态起裂韧度、扩展韧度及止裂韧度。在动态断裂全过程中, 动态扩展韧度为速度的函数, 变化趋势与速度一致, 随着时间先增大后减小; 动态起裂韧度大于动态止裂韧度, 止裂韧度随着裂纹最大扩展速度的增大而降低, 并且有较大的离散性。  相似文献   

7.
白桦材断裂韧度的各向异性性质   总被引:1,自引:0,他引:1  
木材可视为正交各向异性材料,表征木材抵抗裂纹扩展能力的断裂韧度硒。是木材的基本力学性质之一,它具有明显的各向异性.对白桦材试样断裂韧度硒。测试结果表明,LT试样的断裂韧度明显高于TL,TR试样的断裂韧度,TL和TR试样的断裂韧度相接近.无论哪种试样类型,起裂均发生在裂纹尖端.TL,TR试样裂纹扩展方向与原裂纹初始方向一致,LT试样与前两不同,裂纹沿着几乎平行于纤维的方向扩展.并且含水率对各个方向木材断裂韧度的影响趋势是一致的.  相似文献   

8.
由于原状冻土处于自然状态下,其本构关系及水分、温度的分布符合实际状态,而且其实际破坏形式往往是非线性的剪切破坏,所以论文采用了非线性冻土断裂实验模型,对自然状态下的原状冻土进行了断裂破坏实验,着重对Ⅱ型断裂(剪切)破坏的四点弯曲直裂纹试样进行了实验研究.实验过程中改造了四点弯曲实验台,采用着色法测量预制裂纹尺寸.实验原理采用基于能量平衡的方法,利用数据采集系统分别测出了原状冻土四点弯曲试样加力点处位移与力的关系曲线以及相应的非线性参数,推导出裂纹扩展非线性能量释放率计算公式,当试样达到承载极限状况时测试出Ⅱ型断裂试样非线性断裂韧度.同时,提出了修正因子计算非线性断裂韧度的方法,将能量方法测试结果与修正因子方法结果进行了对比,二者基本是一致的.以上提出的冻土Ⅱ型断裂非线性断裂韧度测试方法,及获得的非线性断裂韧度测试结果,为非线性理论研究和工程应用提供了依据.  相似文献   

9.
混凝土三点弯曲梁裂缝断裂全过程数值模拟研究   总被引:3,自引:1,他引:2  
考虑裂缝黏聚力的作用,基于Paris位移公式推导出混凝土三点弯曲梁裂缝扩展过程中断裂过程区上的裂缝张开位移的解析表达式.采用起裂韧度作为裂缝起裂及扩展的判断标准,提出了荷载作用下混凝土裂缝起裂、扩展及失稳破坏全过程的数值模拟方法,并分别与国内外断裂试验实测值及有限元计算值进行了比较.结果表明,本文提出的数值模拟方法形式简单且精度较好.  相似文献   

10.
介绍了一种适用于评价GFRP-混凝土界面断裂性能的理论分析模型,并结合端部开口试件的四点弯曲试件(4ENF)试验,测得了该类界面在II型模态控制下的断裂韧度.该模型考虑了试件各子梁中的横向剪切变形对能量释放率的影响,引入一阶剪切变形梁理论对界面断裂过程进行模拟;同时由于混凝土在受剪及受拉区域容易发生破坏,故试件设计过程中引入钢筋进行加强,有效减少了实验数据的离散性;进一步通过与有限元仿真进行对比发现结果吻合较好,这说明本文方法能够有效测定II型模态荷载控制下复合材料-混凝土界面的断裂韧度,评价复合材料增强混凝土结构的界面断裂性能,预测界面的起裂、裂纹扩展和失效容差.  相似文献   

11.
12.
Three-dimensional (3D) elastic–plastic finite element analyses (FEA) are performed to study constraint effect on the crack-front stress fields for single-edge notched bend (SENB) specimens. Both rectangular and square cross-section of the specimens with a deep crack of a/W=0.5 are considered to investigate the effect of specimen size. A square-cross-section specimen with a shallow crack of a/W=0.15 is also considered to examine the effect of crack depth. Stresses from FEA at the crack front on different planes of the specimen are compared with those determined by the JA2 three-term solution. Results show that in-plane stress fields can be characterized by the three-term solution throughout the thickness even in the region near the free surface. Cleavage fracture toughness data is compared to predict the effects of specimen size and crack depth on fracture behavior. It is found that the distributions of crack opening stress are nearly the same for the SENB specimens at the critical J which is consistent with the RKR model. Furthermore our results indicate that there is a distinct relationship between the crack-front constraint and the cleavage fracture toughness. By introducing the failure curves, the minimum fracture toughness and scatter band can be well captured using the JA2 approach.  相似文献   

13.
在柴油机曲轴、连杆等关键零部件的可靠性设计和失效评估中,断裂韧性及疲劳裂纹扩展门槛值分别是衡量材料抵抗裂纹失稳扩展和裂纹开始扩展的重要指标.但是,对于高韧性合金材料,难以通过常规试验所推荐的厚度确定平面应变断裂韧性,而门槛值的测定通常不但非常耗时,且难以直接应用于不同循环特性的实际结构.本文针对高韧性合金钢34CrNi3MoA,提出一种将断裂韧性和疲劳裂纹扩展门槛值试验合二为一的试验方法,即用同一个试件可以同时测定门槛值和断裂韧性.利用断裂韧性关于试件厚度的渐近特性,以几种较薄试件的试验,确定平面应变状态下的断裂韧性.试验结果还表明,裂纹扩展门槛值的试件厚度依存性可以忽略,并给出了任意循环特性(应力比)下的门槛值计算公式.  相似文献   

14.
The macroscopic pre-cracked line scratch test (MPLST), in which a debonded edge of a film is loaded in in-plane compression, has been modeled as a generic, coupled fracture–buckle problem using simple beam theory. Near crack-tip beam rotation (also called root rotation in literature), which always exists due to the eccentric loading in this type of test, has been incorporated into the governing equations. An analytical solution to the augmented problem has been derived. It is found that the near-tip rotation can introduce pre-buckle bending in the film. One important consequence of this pre-buckle bending is that it leads to the reduction of the critical buckling condition. This agrees well with the results of [Int. J. Fract. 113 (2002) 39] obtained by solving the full elastic field near the crack-tip. Furthermore, the pre-buckle bending moment at crack-tip remains negative (leading to crack closure) as long as the pre-buckle crack length is small, but it becomes positive (leading to crack opening) at larger pre-buckle crack length. The negative bending moment causes the crack-tip energy release rate to decrease as the crack propagates, which results in a stable pre-buckle crack growth. Once it becomes positive, however, the bending moment causes crack-tip energy release rate to increase rapidly as crack length increases and hence leads to an unstable (pre-buckle) crack growth. Further, the nominal phase angle is initially larger than the classic prediction of 52.1° owing to the existence of the negative crack-tip bending moment, but it drops quickly upon approaching the buckle point. All these results are confirmed by a rigorous 2D FEM calculation using cohesive zone modeling (CZM) approach. Finally the derived analytical solution has been used to analyze a set of PLST data reported in the literature. It has been demonstrated that plasticity in the adhesive layer and in the bonded film is responsible for the strong R-curve toughening characteristics in the deduced interface toughness data. It has also been shown that, once the deduced interface toughness is incorporated into a CZM simulation, both the axial loading and buckling point can be accurately predicted.  相似文献   

15.
童谷生  徐攀  罗翔 《力学季刊》2020,41(1):125-135
混凝土的断裂韧度是重要的材料参数,本文利用含U形切口的三点弯曲梁试验结合临界距离线法来获得混凝土的断裂韧度.理论推导了含断裂韧度与不同根部半径的断裂失效方程,采用有限元法计算了切口应力集中系数.根据断裂失效方程和试验中的材料几何参数,利用最小二乘法拟合计算得到混凝土材料的断裂韧度和抗拉强度.对小切口半径情形,采用双K断裂准则分析计算了混凝土起裂韧度和失稳断裂韧度,分析结果表明:临界距离线法得到的材料断裂韧度与双K断裂准则中的失稳断裂韧度吻合,同时获得相应临界距离值.  相似文献   

16.
裂纹面摩擦接触引起的断裂韧性增长的研究   总被引:2,自引:2,他引:2  
李永东  张男  唐立强  贾斌 《力学学报》2005,37(3):280-286
采用弹黏塑性的材料本构关系, 建立了压、剪混合型裂纹常速准静 态扩展的力学模型, 求得了裂纹面摩擦接触条件下裂纹尖端场的数值解, 并基于数 值结果讨论了扩展裂纹的摩擦效应. 计算和分析表明, 裂纹面的摩擦效应主要表现 在两个方面. 第一方面是摩擦会导致裂纹尖端区材料的断裂韧性增高, 并且裂纹面间的摩擦作用越强, 增韧效果越显著. 摩擦增韧的机制可以解释为裂纹 面间的摩擦作用导致裂纹尖端塑性区尺寸变大, 使裂纹尖端场的塑性变形能增加, 从而使得裂纹尖端区材料增韧. 摩擦生热并不是导致材料断裂韧性增长的根本机制. 第二方面是摩擦会导致``断裂延缓'. 利用裂纹面的摩擦来提高构件的承载能力和延长构件的服役寿命具有较大的工程实用价值.  相似文献   

17.
有限断裂力学准则综合了应力和能量参数,假设裂纹或切口端部有限裂纹长度的增长.特别地,该有限裂纹的长度不是材料的基本常数,而是与构件的结构有关.基于U形切口两种形式:点方式和线方式有限断裂准则,对文献中的铝合金U形切口三点弯曲断裂实验进行了分析验证.一方面基于材料的断裂韧度和抗拉强度,预测切口件断裂载荷;另一方面根据几组不同的切口根部半径及其对应的临界切口应力强度因子,同时估算材料的断裂参数:断裂韧度和抗拉强度.将点方式和线方式两种不同形式有限断裂准则的预测结果,与平均周向应力准则、最大周向应力准则以及文献中相关结果进行了比较得出:无论是预测断裂载荷还是估算材料断裂参数,线方式有限断裂准则,与文献中相关结果比较吻合,尤其是估算的断裂韧度精度较高.  相似文献   

18.
Effects of magnetic field on fracture toughness of soft ferromagnetic materials were studied using experimental techniques and theoretical models. The manganese–zinc ferrite with a single-edge-notch-beam (SENB) were chosen to be the specimen and the Vickers’ indentation specimen subjected to a magnetic field were chosen to be the specimens. Results indicate that there is no significant variations of the measured fracture toughness of the manganese–zinc ferrite ceramic in the presence of the magnetic field. The theoretical model involves an anti-plane shear crack with finite length in an infinite magnetostrictive body where an in-plane magnetic field prevails at infinity. Magnetoelasticity is used. The crack-tip elastic field is different from that of the classical mode III fracture problem. Furthermore, the magnetoelastic fracture of the soft ferromagnetic material was studied by solving the stress field for a soft ferromagnetic plane with a center-through elliptical crack. The stress field at the tip of a slender elliptical crack is obtained for which only external magnetic field normal to the major axis of the ellipse is applied at infinity. The results indicate that the near field stresses are governed by the magnetostriction and permeability of the soft ferromagnetic material. The induction magnetostrictive modulus is a key parameter for finding whether magnetostriction or magnetic-force-induced deformation is dominant near the front an elliptically-shaped crack. The influence of the magnetic field on the apparent toughness of a soft ferromagnetic material with a crack-like flaw can be regarded approximately in two ways: one possesses a large induction magnetostrictive modulus and the other has a small modulus. Finally, a small-scale magnetic-yielding model was developed on the basis of linear magnetization to interpret the experimental results related to the fracture of the manganese–zinc ferrite ceramics under magnetic field. Studied also is the fracture test of the soft ferromagnetic steel with compact tension specimens published in the existing literature.  相似文献   

19.
The influence of intrinsic stress gradient on the mode-I fracture of thin films with various thicknesses fabricated for Microelectromechanical Systems (MEMS) was investigated. The material system employed in this study was hydrogen-free tetrahedral amorphous diamond-like carbon (ta-C). Uniform gauge microscale specimens with thicknesses 0.5, 1, 2.2, and 3 μm, containing mathematically sharp edge pre-cracks were tested under mode-I loading in fixed grip configuration. The effective opening mode fracture toughness, as calculated from boundary force measurements, was 4.25±0.7 MPa√m for 0.5-μm thick specimens, 4.4±0.4 MPa√m for 1-μm specimens, 3.74±0.3 MPa√m for 2.2-μm specimens, and 3.06±0.17 MPa√m for 3-μm specimens. Thus, the apparent fracture toughness decreased with increasing film thickness. Local elastic property measurements showed no substantial change as a function of film thickness, which provided evidence for the stability of the sp2/sp3 carbon binding stoichiometry in films of different thicknesses. Detailed experiments and finite element analysis pointed out that the dependence of the effective fracture toughness on specimen thickness was due to the intrinsic stress gradient developed during fabrication and post-process annealing. This stress gradient is usually unaccounted for in mode-I fracture experiments with thin films. Thicker films, fabricated from multiple thin layers, underwent annealing for extended times, which resulted in a stress gradient across their thickness. This stress gradient caused an out-of-plane curvature upon film release from its substrate and, thus, combined bending and tensile mode-I loading at the crack tip under in-plane forces. Since the bending component cannot be isolated from the applied boundary force measurements, its contribution, becoming important for thick films, remains unaccounted for in the calculation of the critical stress intensity factor, thus resulting in reduced apparent fracture toughness that varies with film thickness and curvature. It was concluded that in the presence of a stress gradient, accounting only for the average intrinsic stresses could lead in an overestimate of the fracture resistance of a brittle film. Under these considerations the material fracture toughness of ta-C, as determined from specimens with negligible curvature, is KIC=4.4±0.4 MPa√m.  相似文献   

20.
脆性材料在双向应力下的断裂实验与理论分析   总被引:5,自引:0,他引:5  
包亦望 《力学学报》1998,30(6):682-689
研究了脆性材料在双向应力下的断裂特性和失效机理,特别是在平行于裂纹的应力对临界断裂参数的影响方面进行了实验上和理论上的研究.采用玻璃、陶瓷等脆性材料进行了平面双向拉伸和单向拉伸试验,并对实验结果进行比较.观测直通裂纹的启裂和扩展过程,证明了双向应力对裂纹驱动力有明显影响,讨论了裂纹扩展的应变准则.  相似文献   

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