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首页> 外文期刊>Journal of the European Ceramic Society >A two-scale Weibull approach to the failure of porous ceramic structures made by robocasting: Possibilities and limits
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A two-scale Weibull approach to the failure of porous ceramic structures made by robocasting: Possibilities and limits

机译:机械铸造法对多孔陶瓷结构破坏的两尺度威布尔方法:可能性和局限性

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摘要

This paper introduces our approach to modeling the mechanical behavior of cellular ceramics, through the example of calcium phosphate scaffolds made by robocasting for bone-tissue engineering. The Weibull theory is used to deal with the scaffolds' constitutive rods statistical failure, and the Sanchez-Palencia theory of periodic homogenization is used to link the rod- and scaffold-scales. Uniaxial compression of scaffolds and three-point bending of rods were performed to calibrate and validate the model. If calibration based on rod-scale data leads to over-conservative predictions of scaffold's properties (as rods' successive failures are not taken into account), we show that, for a given rod diameter, calibration based on scaffold-scale data leads to very satisfactory predictions for a wide range of rod spacing, i.e. of scaffold porosity, as well as for different loading conditions. This work establishes the proposed model as a reliable tool for understanding and optimizing cellular ceramics' mechanical properties. Published by Elsevier Ltd.
机译:本文以机器人铸造为骨组织工程制造的磷酸钙支架为例,介绍了我们对多孔陶瓷力学行为建模的方法。 Weibull理论用于处理支架的本构杆统计失败,而Sanchez-Palencia周期性均质化理论用于链接支架尺度和支架尺度。进行脚手架的单轴压缩和杆的三点弯曲以校准和验证模型。如果基于杆尺度数据的校准导致对支架性能的过度保守的预测(因为未考虑杆的连续失效),我们表明,对于给定的杆直径,基于支架尺度数据的校准会导致非常广泛的杆间距(即脚手架孔隙率)以及不同的加载条件的令人满意的预测。这项工作建立了建议的模型,作为理解和优化多孔陶瓷机械性能的可靠工具。由Elsevier Ltd.发布

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