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Role of Roughness in Fibre/Matrix interface Behaviour

机译:粗糙度在光纤/基体界面行为中的作用

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Pushout and push-back tests are performed on monofilament model composites SiC/Pyrex, by using an indentation apparatus where the stiffness of the loading device can be changed. Under low stiffness, the sliding exhibits stick-slip motion and steady slip under high stiffness. Duromg push-out/push-back cycling, the applied load decreases slowly indicating interfaceal wear and progressive reduction of the effective interfacial shear stress. The radial clamping stress on the fibre is due to a combined effect of the thermal misfit and of an additional dilatancy coming from the crushing of the asperities. By Fush-hack, the load-displacement curve exhibits a seating drop when the fihre reaches its onginal position again. Analysis of steady and serrated motion shows that the main interfacial wear occurs under low velocity sliding. Sliding velocity jumps indicate that the local contacts failures are creep controlled. All these features are described and discussed with regards to the physics of' dry friction and micromechanics..
机译:通过使用压痕设备对单丝模型复合材料SiC /派热克斯纤维进行压出和推回测试,在压痕设备中可以更改加载设备的刚度。在低刚度下,滑动表现出粘滑运动,在高刚度下表现出稳定的滑动。 Duromg推出/推出循环,施加的载荷缓慢降低,表明界面磨损和有效界面剪切应力逐渐降低。光纤上的径向夹紧应力是由于热失配和因粗糙物的压碎而产生的额外膨胀引起的。通过Fush-hack,当纤维再次达到其初始位置时,载荷-位移曲线呈现出落座下降。对稳态和锯齿运动的分析表明,主要界面磨损发生在低速滑动下。滑动速度跳变表明局部接触故障是蠕变控制的。所有这些特征都是关于干摩擦和微力学的物理学来描述和讨论的。

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