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Zr对激光增材制备镁合金组织及性能的影响

Effect of Zr on Microstructure and Mechanical Properties of Magnesium Alloy by Laser Additive Manufacturing

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【作者】 秦兰兰陈长军张敏严凯程广萍敬和民王晓南邹涛

【Author】 Qin Lanlan;Chen Changjun;Zhang Min;Yan Kai;Cheng Guangping;Jing Hemin;Wang Xiaonan;Zou Tao;School of Material Science and Engineering,Anhui University of Technology;Laser Processing Research Center,School of Mechanical and Electrical Engineering,Soochow University;Shagang School of Iron and Steel,Soochow University;Kuka Industry Ltd.Co.;

【机构】 安徽工业大学材料科学与工程学院苏州大学机电工程学院激光加工中心苏州大学沙钢钢铁学院库卡工业公司

【摘要】 激光增材制造技术是一种典型的快速成形技术,运用高能激光束熔化金属粉末逐层堆积,可直接成形复杂高性能金属零部件。采用激光增材制造技术沉积镁合金,研究了Zr元素对镁合金的组织及性能的影响。采用金相显微镜、扫描电子显微镜(SEM)、维氏硬度计及XRD衍射仪对沉积试样进行相关分析。结果表明,激光增材制造镁合金的晶粒粒径(约10μm)比传统铸造法得到的晶粒(约500μm)更为细小;与此同时,和传统铸造法相比,增材制造试样的硬度也有明显的提高。在金属粉末中添加适量的Zr元素后,Zr在α-Mg结晶过程起到异质形核的作用使沉积试样晶粒得到进一步细化,同时硬度也有提高达到70.0HV。

【Abstract】 Laser additive manufacturing(LAM)technology has been developed as a new advanced rapid prototyping technology.Metal parts with advanced properties and complexity were directly manufactured with the SLM technology.Influence of Zr element on microstructure and properties of magnesium alloy by laser additive manufacturing was investigated.The as-deposited samples were analyzed by optical microscope(OM),scanning electron microscope(SEM),X-ray diffraction and Vickers hardness tester.The results show that the grain size of the magnesium alloy(about 10μm)by laser additive manufacturing is finer than traditional casting methods obtained(about 500μm).Meanwhile,compared with conventional casting methods,the hardness of the sample fabricated by laser manufacturing is also significantly improved.The addition of some Zr element played the role of heterogeneous nucleation in the metal powder.The deposited sample is further refined,while the hardness is also improved and reached to 70.0HV.

【基金】 苏州市科技局产业技术创新专项资助项目(重点产业技术创新-前瞻性研究)(项目编号:SYG2016044);国家自然科学基金资助项目(项目编号:51104110)
  • 【分类号】TG146.22
  • 【被引频次】6
  • 【下载频次】444
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