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基于STEP的多功能梯度材料信息融合方法 被引量:4
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作者 周满元 习俊通 严隽琪 《上海交通大学学报》 EI CAS CSCD 北大核心 2003年第1期17-20,共4页
基于 STEP实体模型提出了一种融合多功能梯度材料信息与几何信息的方法 .通过选择参考特征并指定材料分布函数 ,将材料信息添加到面、壳等几何实体中 ,从而实现材料信息与几何信息的融合 .通过截面轮廓内部各点的材料值与点到参考特征... 基于 STEP实体模型提出了一种融合多功能梯度材料信息与几何信息的方法 .通过选择参考特征并指定材料分布函数 ,将材料信息添加到面、壳等几何实体中 ,从而实现材料信息与几何信息的融合 .通过截面轮廓内部各点的材料值与点到参考特征的距离的映射 ,得到层内的材料分布信息 。 展开更多
关键词 多功能梯度材料 信息融合 材料信息 几何信息 STEP实体模型 快速成型
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Interface microstructure and mechanical properties of selective laser melted multilayer functionally graded materials 被引量:6
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作者 WANG Di DENG Guo-wei +4 位作者 YANG Yong-qiang CHEN Jie WU Wei-hui WANG Hao-liang TAN Chao-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1155-1169,共15页
Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufactu... Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufacturing highlights the capability in manufacturing FGMs with a high geometrical complexity and manufacture flexibility.In this work,the 316L/CuSn10/18Ni300/CoCr four-type materials FGMs were fabricated using SLM.The microstructure and properties of the FGMs were investigated to reveal the effects of SLM processing parameters on the defects.A large number of microcracks were found at the 316L/CuSn10 interface,which initiated from the fusion boundary of 316L region and extended along the building direction.The elastic modulus and nano-hardness in the 18Ni300/CoCr fusion zone decreased significantly,less than those in the 18Ni300 region or the CoCr region.The iron and copper elements were well diffused in the 316L/CuSn10 fusion zone,while elements in the CuSn10/18Ni300 and the 18Ni300/CoCr fusion zones showed significantly gradient transitions.Compared with other regions,the width of the CuSn10/18Ni300 interface and the CuSn10 region expand significantly.The mechanisms of materials fusion and crack generation at the 316L/CuSn10 interface were discussed.In addition,FGM structures without macro-crack were built by only altering the deposition subsequence of 316L and CuSn10,which provides a guide for the additive manufacturing of FGM structures. 展开更多
关键词 selective laser melting multilayer functionally graded material interfacial characterization crack defects mechanical properties
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