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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Mixed Mode Dynamic Fracture in Particulate Reinforced Functionally Graded Materials
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Mixed Mode Dynamic Fracture in Particulate Reinforced Functionally Graded Materials

机译:在颗粒混合模式动态断裂增强功能梯度材料

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摘要

A detailed analytical and experimental investigation is presented to understand the dynamic fracture behavior of functionally graded materials (FGMs) under mode I and mixed mode loading conditions. Crack-tip stress, strain and displacement fields for a mixed mode crack propagating at an angle from the direction of property gradation were obtained through an asymptotic analysis coupled with a displacement potential approach. This was followed by a comprehensive series of experiments to gain further insight into the behavior of propagating cracks in FGMs. Dynamic photoelasticity coupled with high-speed photography was used to obtain crack tip velocities and dynamic stress fields around the propagating cracks. Birefringent coatings were used to conduct the photoelastic study due to the opaqueness of the FGMs. Dynamic fracture experiments were performed using different specimen geometries to develop a dynamic constitutive fracture relationship between the mode I dynamic stress intensity factor (K{sub}(ID)) and crack-tip velocity ( a ) for FGMs with the crack moving in the direction of increasing fracture toughness. A similar a{top}·-K{sub}(ID) relation was also obtained for matrix material (polyester) for comparison purposes. The results obtained show that crack propagation velocities in FGMs were about 80% higher than the polyester matrix. Crack arrest toughness was found to be about 10% lower than the value of local fracture toughness in FGMs.
机译:一个详细的分析和实验调查提出了理解功能梯度的动态断裂行为功能梯度材料的材料()模式和混合模式加载条件。混合模式裂缝位移场在一个角的方向传播属性层次得到通过渐近分析耦合位移潜在的方法。全面的一系列实验来获得进一步了解传播的行为功能梯度材料裂缝。用高速摄影被用来获得裂纹尖端速度和动态应力场在传播裂缝。涂料被用来进行光弹性研究功能梯度材料的不透明性。断裂实验进行使用不同试样几何图形开发动态本构关系断裂我动态应力强度之间的模式因子(K{子}(ID)和有关速度(a)功能梯度材料的裂纹的方向移动增加断裂韧性。{前}·- k{子}(ID)关系也获得了基质材料(聚酯)进行比较目的。功能梯度材料中传播速度是大约80%高于聚酯矩阵。韧性是低于10%当地的价值功能梯度材料的断裂韧性。

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