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Microstructure containing entities rotating under an applied load to enhance toughening against fracture

机译:包含实体的微结构在施加的载荷下旋转以增强抗断裂韧性

摘要

A composite material having a microstructure model is provided with a continuous matrix of microstructure entities such as particles and grains that rotate under both remotely applied stresses and induced concentrated stresses from nearby cracks, pores and smaller particles, all networked within the matrix. The rotation microstructure entities are smooth closed contours that are elliptically-shaped. A net moment results on the boundaries of the microstructure entities effecting fracture toughening of the material. Small particles and other microstructural entities may reduce the attenuation of, transmit, and counteract the stresses induced by the rotating microstructure entities. The induced stresses counteract those stresses and strain energy densities that promote crack propagation. The result is a microstructure free of laminates, coatings, fibers and fiber architectures that effect toughening of the material against fracture.
机译:具有微结构模型的复合材料具有连续的微结构实体矩阵,例如颗粒和晶粒,它们在远距离施加的应力和来自附近的裂缝,孔和较小颗粒的集中应力下旋转,所有这些都在矩阵内形成网络。旋转微结构实体是椭圆形的光滑封闭轮廓。在微观结构实体的边界上产生净力矩,从而影响材料的断裂韧性。小颗粒和其他微结构实体可以减少旋转的微结构实体引起的应力的衰减,传递和抵消。感应应力抵消了促进裂纹扩展的那些应力和应变能密度。结果是没有层压材料,涂层,纤维和纤维结构的微观结构,从而使材料坚韧不易断裂。

著录项

  • 公开/公告号US2002016686A1

    专利类型

  • 公开/公告日2002-02-07

    原文格式PDF

  • 申请/专利权人 KENNEFICK CHRISTINE M.;

    申请/专利号US20010919922

  • 发明设计人 CHRISTINE M. KENNEFICK;

    申请日2001-08-02

  • 分类号G01L1/00;G01L3/00;G01L5/00;G06F19/00;

  • 国家 US

  • 入库时间 2022-08-22 00:47:43

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