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增强体表面镀钛对SiCP/Al2014复合材料组织和性能的影响 被引量:1
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作者 吕品回 王小锋 +2 位作者 董翠鸽 彭超群 王日初 《矿冶工程》 CAS CSCD 北大核心 2020年第4期156-160,共5页
为了提高SiCP/Al2014复合材料的界面结合强度,分别采用盐浴法和真空微蒸发法对SiCP进行表面镀钛处理,并通过热压烧结+热挤压工艺制备了SiCP增强Al2014复合材料(10%SiCP/Al2014),研究了SiCP表面镀钛对SiCP/Al2014复合材料微观组织、抗拉... 为了提高SiCP/Al2014复合材料的界面结合强度,分别采用盐浴法和真空微蒸发法对SiCP进行表面镀钛处理,并通过热压烧结+热挤压工艺制备了SiCP增强Al2014复合材料(10%SiCP/Al2014),研究了SiCP表面镀钛对SiCP/Al2014复合材料微观组织、抗拉强度和耐磨性能的影响。结果表明:经过表面镀钛处理后,SiCP表面均形成了TiC+Ti5Si3的化合物层,使复合材料中SiCP与铝基体的界面结合由物理缩合转化为化学结合,故改善了SiCP与铝基体的润湿性,减少了界面缺陷,从而提高了界面结合强度。盐浴镀钛和微蒸发镀钛10%SiCP/Al2014复合材料的拉伸强度(407 MPa和394 MPa)相比未镀钛10%SiCP/Al2014复合材料分别提升了12.1%和8.0%,磨损量分别降低了58.3%和50.0%。 展开更多
关键词 粉末冶金 增强体 碳化硅 SiCP/Al2014 铝基复合材料 盐浴镀钛 真空微蒸发镀钛 组织性能
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Preparation and characterization of different surface modified SiCp reinforced Al-matrix composites 被引量:10
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作者 LÜ Pin-hui WANG Xiao-feng +2 位作者 DONG Cui-ge PENG Chao-qun WANG Ri-chu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第9期2567-2577,共11页
The effects of SiCp surface modifications(Cu coating,Ni coating and Ni/Cu coating)on the microstructures and mechanical properties of Al matrix composites were investigated.Surface modification of SiC particles with C... The effects of SiCp surface modifications(Cu coating,Ni coating and Ni/Cu coating)on the microstructures and mechanical properties of Al matrix composites were investigated.Surface modification of SiC particles with Cu,Ni and Cu/Ni,respectively,was carried out by electroless plating method.SiCp/Al composites were prepared by hot pressed sintering followed by hot extrusion.The results show that the surface modification of SiC particles plays an effective role,which is relative to the type of surface coating,and the interfacial bonding become stronger in the following order:untreated SiCp<Ni(Cu)-coated SiCp<Ni/Cu-coated SiCp.The Ni/Cu-coated SiCp/Al composites exhibit the best comprehensive mechanical properties,with ultimate tensile strength(σUTS)and fracture strain(εf)of 389 MPa and 6.3%,respectively.Compared with that of untreated-SiCp/Al composites,theσUTS andεf are enhanced by 19.3%and 57.5%. 展开更多
关键词 SiCp/Al composite surface modification electroless plating mechanical properties interfacial bonding
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