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首页> 外文期刊>International Journal of Fracture >On microstructural mechanisms causing non-linear stress-strain behavior of porous ceramics under tension
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On microstructural mechanisms causing non-linear stress-strain behavior of porous ceramics under tension

机译:引起多孔陶瓷在拉伸状态下非线性应力-应变行为的微观机制

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摘要

Possible micromechanisms that explain experimental data on stress-strain behavior of porous ceramics (such as cordierite) under tensile cyclic loading are discussed. The data show that, in the first cycle, the stress-strain curve exhibits non-linear behavior, with sharply higher incremental stiffness at the beginning of unloading and noticeable hysteresis. In subsequent cycles, the curves are almost perfectly linear. Whereas the underlying micromechanisms of such behavior are presently not fully clear, we suggest possible mechanisms that involve frictional sliding on microcracks.Such sliding may take place under tensile loads provided the cracks have complex non-flat geometries (such as zigzag ones).
机译:讨论了可能的微观机理,这些机理解释了多孔陶瓷(例如堇青石)在拉伸循环载荷下的应力-应变行为的实验数据。数据显示,在第一个循环中,应力-应变曲线表现出非线性行为,在卸载开始时具有明显更高的增量刚度,并具有明显的滞后现象。在随后的循环中,曲线几乎完全是线性的。尽管目前尚不清楚这种行为的潜在微观机制,但我们建议可能的机制涉及微裂纹上的摩擦滑动,只要裂纹具有复杂的非平坦几何形状(例如之字形),这种滑动就可能在拉伸载荷下发生。

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