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首页> 外文期刊>Journal of the European Ceramic Society >Spherical indentation of porous ceramics: Elasticity and hardness
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Spherical indentation of porous ceramics: Elasticity and hardness

机译:多孔陶瓷的球形压痕:弹性和硬度

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摘要

A combined experimental and numerical approach is used to characterise the elastic and plastic deformation of a porous bulk ceramic material (La0.6Sr0.4Co0.2Fe0.8O3, LSCF) with porosities in the range 5-45 vol%, undergoing spherical indentation. The Gurson model was used in FEM simulations to describe the densification of the porous material in the plastic zone under the indenter. The simulated indentation response curves, extracted elastic modulus, hardness and densification in the plastic zone all showed good agreement with corresponding experimental observations. The results show that the hardness increases with maximum indentation depth over a representative depth that depends on porosity. In this particular ceramic the hardness, at sufficiently large penetration depth, is approximately 1.7 times the uniaxial yield stress of the porous material. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:采用组合的实验和数值方法来表征孔隙率为5-45%(体积)且经过球形压痕的多孔块状陶瓷材料(La0.6Sr0.4Co0.2Fe0.8O3,LSCF)的弹性和塑性变形。有限元模拟中使用了Gurson模型来描述压头下塑料区内多孔材料的致密化。模拟的压痕响应曲线,提取的弹性模量,硬度和塑性区的致密化都与相应的实验观察结果很好地吻合。结果表明,随着压痕深度的增加,硬度在代表孔隙度的代表深度范围内增加。在这种特殊的陶瓷中,在足够大的穿透深度下的硬度约为多孔材料单轴屈服应力的1.7倍。 (C)2016作者。由Elsevier Ltd.发布

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