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首页> 外文期刊>Journal of the European Ceramic Society >Mechanical properties of cellular ceramics obtained by gel casting: Characterization and modeling
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Mechanical properties of cellular ceramics obtained by gel casting: Characterization and modeling

机译:通过凝胶铸造获得的多孔陶瓷的机械性能:表征和建模

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摘要

Dense and cellular ceramics were produced from yttria partially stabilized zirconia powders by gel-casting, using agar as a gelling agent and polyethylene spheres (125-300 mum diameter) as volatile pore forming agent to create 50-65 vol. percent spherical macropores, uniformly distributed in a microporous matrix. The mechanical properties of both dense and porous samples were investigated at the microscale by nanoindentation testing. The influence of micro-porosity on the mechanical properties of samples was evaluated by the analysis of hardness and modulus depth profiles, coupled with FIB-SEM section observations of selected indentation marks. The intrinsic elastic modulus of the zirconia phase resulted to be of the order of 220 GPa. Mechanical characterization at the macroscale consisted of uniaxial compression tests and four point bending tests. Elastic moduli of about 170 GPa were measured for about 93 percent dense ceramics, lowering down to 44 and 13 GPa with the addition 50 and 65 vol. percent macropores, respectively. Digital image based finite element analysis (DIB-FEA) procedures were implemented in order to verify their applicability for the prediction of mechanical behavior of this type of cellular materials: results confirmed that a very good match between measured and calculated values of elastic modulus can be achieved, provided that the effects of micro-porosity are considered by the proper choice of the elastic properties to be assigned to each individual phase identified by Image Analysis.
机译:使用琼脂作为胶凝剂和聚乙烯球(直径为125-300微米)作为挥发性孔形成剂,通过凝胶浇铸由氧化钇部分稳定的氧化锆粉末生产致密和多孔陶瓷。百分比的球形大孔均匀分布在微孔基质中。通过纳米压痕测试,在微观尺度上研究了致密和多孔样品的机械性能。通过分析硬度和模量深度分布,并结合所选压痕的FIB-SEM截面观察,评估了微孔对样品机械性能的影响。氧化锆相的固有弹性模量约为220 GPa。宏观上的机械表征包括单轴压缩测试和四点弯曲测试。对于约93%的致密陶瓷,测得的弹性模量约为170 GPa,添加50和65 vol时,其弹性模量降低至44和13 GPa。大孔百分比。进行了基于数字图像的有限元分析(DIB-FEA)程序,以验证其在预测此类细胞材料的机械性能方面的适用性:结果证实,弹性模量的测量值与计算值之间可以很好地匹配如果通过适当选择要分配给“图像分析”标识的每个单独相的弹性属性来考虑微孔的影响,则可以实现此效果。

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