本文应用激光散斑法对预制缺口岩石的缝端微裂区进行了无接触位移测量,求得加裁点位移 d 和缝端张开位移η.通过对主裂缝的跟踪量测,表明该试件的裂缝在失稳前存在着亚临界扩展.在此阶段,预制裂缝缝端主裂缝的形式推测主要是类似“啮合...本文应用激光散斑法对预制缺口岩石的缝端微裂区进行了无接触位移测量,求得加裁点位移 d 和缝端张开位移η.通过对主裂缝的跟踪量测,表明该试件的裂缝在失稳前存在着亚临界扩展.在此阶段,预制裂缝缝端主裂缝的形式推测主要是类似“啮合”裂缝及部分张开裂缝,当缝端张开位移达到临界值时,荷载稍增,裂缝即快速扩展,以致发生断裂.展开更多
A generalized form of material gradation applicable to a more broad range of functionally graded materials(FGMs) was presented.With the material model,analytical expressions of crack tip higher order stress fields in ...A generalized form of material gradation applicable to a more broad range of functionally graded materials(FGMs) was presented.With the material model,analytical expressions of crack tip higher order stress fields in a series form for opening mode and shear mode cracks under quasi-static loading were developed through the approach of asymptotic analysis.Then,a numerical experiment was conducted to verify the accuracy of the developed expressions for representing crack tip stress fields and their validity in full field data analysis by using them to extract the stress intensity factors from the results of a finite element analysis by local collocation and then comparing the estimations with the existing solution.The expressions show that nonhomogeneity parameters are embedded in the angular functions associated with higher terms in a recursive manner and at least the first three terms in the expansions must be considered to explicitly account for material nonhomogeneity effects on crack tip stress fields in the case of FGMs.The numerical experiment further confirms that the addition of the nonhomogeneity specific terms in the expressions not only improves estimates of stress intensity factor,but also gives consistent estimates as the distance away from the crack tip increases.Hence,the analytical expressions are suitable for the representation of crack tip stress fields and the analysis of full field data.展开更多
文摘本文应用激光散斑法对预制缺口岩石的缝端微裂区进行了无接触位移测量,求得加裁点位移 d 和缝端张开位移η.通过对主裂缝的跟踪量测,表明该试件的裂缝在失稳前存在着亚临界扩展.在此阶段,预制裂缝缝端主裂缝的形式推测主要是类似“啮合”裂缝及部分张开裂缝,当缝端张开位移达到临界值时,荷载稍增,裂缝即快速扩展,以致发生断裂.
基金Project(20080431344) supported by Postdoctoral Science Foundation of ChinaProject(51021001) supported by the National Natural Science Foundation of China
文摘A generalized form of material gradation applicable to a more broad range of functionally graded materials(FGMs) was presented.With the material model,analytical expressions of crack tip higher order stress fields in a series form for opening mode and shear mode cracks under quasi-static loading were developed through the approach of asymptotic analysis.Then,a numerical experiment was conducted to verify the accuracy of the developed expressions for representing crack tip stress fields and their validity in full field data analysis by using them to extract the stress intensity factors from the results of a finite element analysis by local collocation and then comparing the estimations with the existing solution.The expressions show that nonhomogeneity parameters are embedded in the angular functions associated with higher terms in a recursive manner and at least the first three terms in the expansions must be considered to explicitly account for material nonhomogeneity effects on crack tip stress fields in the case of FGMs.The numerical experiment further confirms that the addition of the nonhomogeneity specific terms in the expressions not only improves estimates of stress intensity factor,but also gives consistent estimates as the distance away from the crack tip increases.Hence,the analytical expressions are suitable for the representation of crack tip stress fields and the analysis of full field data.