...
首页> 外文期刊>International Journal of Solids and Structures >A field theory of strain/curvature incompatibility for coupled fracture and plasticity
【24h】

A field theory of strain/curvature incompatibility for coupled fracture and plasticity

机译:断裂与塑性耦合的应变/曲率不相容性场论

获取原文
获取原文并翻译 | 示例
           

摘要

The displacement and rotation discontinuities arising between crack surfaces are assigned to smooth areal/tensorial densities of crystal defects referred to as disconnections and rotational disconnections (r-disconnections), through the incompatibility of the smooth strain and curvature tensors. In a dual way, the disconnections and r-disconnections are defined as line defects terminating surfaces where the displacement and rotation encounter a discontinuity. Relationships for the conservation across arbitrary patches of their strength (the crack opening displacement and opening angle) provide a natural framework for crack dynamics in terms of transport laws for the line defect densities. Similar methodology is applied to the discontinuities of the plastic displacement and rotation arising from the presence of dislocations and standard disclinations in the body, which results in the concurrent involvement of the dislocation/disclination density tensors in the analysis. The present model can therefore be viewed as an extension of the mechanics of dislocation and disclination fields to the case where continuity of the body is disrupted by cracks. From the continuity of the elastic strain and curvature tensors, it is expected that the stress/couple stress fields remain bounded everywhere in the body, including at the crack tip and in dislocation/disclination cores. Thermodynamic arguments provide the driving forces for the crystal defects motion, and guidance for the formulation of mobility, laws insuring non-negative dissipation. The Peach-Koehler-type forces on dislocations and disclinations are retrieved in the analysis, and similar Peach-Koehler-type forces are defined for the disconnections and r-disconnections. A threshold in the (r-)disconnection driving force vs. (r-)disconnection velocity constitutive relationship provides for a Griffith-type fracture criterion. Application of the theory to a pencil-shaped notch configuration in elastic and elasto-plastic solids through finite element modeling shows that it provides elastic fields with lower energy level around crack tips than conventional singular solutions, and that crack propagation can be consistently described by the transport scheme. Interactions between crack growth and tilt boundary mobility are explored. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过平滑应变和曲率张量的不兼容,将裂纹表面之间产生的位移和旋转不连续性分配给晶体缺陷的平滑面/张密度,这些缺陷被称为断开和旋转断开(r断开)。以双重方式,断开和r断开被定义为线缺陷,终止于位移和旋转不连续的表面。就线缺陷密度的传输规律而言,跨任意强度点(裂纹开口位移和开口角度)的守恒关系为裂纹动力学提供了自然的框架。类似的方法适用于由于体内位错和标准错位的存在而引起的塑性位移和旋转的不连续性,这导致位错/位移密度张量同时参与分析。因此,可以将本模型视为位错和错位场的力学的扩展,以扩展到人体的连续性被裂缝破坏的情况。从弹性应变和曲率张量的连续性,可以预期应力/耦合应力场在体内的任何位置(包括裂纹尖端和位错/倾角核心)都将保持边界。热力学论据为晶体缺陷运动提供了驱动力,并为迁移率的制定提供了指导,确保了非负耗散的规律。在分析中检索了对位错和错位的Peach-Koehler型力,并为断开和r型断开定义了类似的Peach-Koehler型力。 (r-)断开驱动力与(r-)断开速度本构关系的阈值提供了格里菲斯型断裂准则。通过有限元建模,将该理论应用于弹性和弹塑性固体中的铅笔形缺口构造,结果表明,与传统奇异解相比,它在裂纹尖端周围提供的能级更低,且裂纹扩展可以一致地描述。运输计划。探索了裂纹扩展和倾斜边界迁移率之间的相互作用。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号