摘要
研究了电弧增材制造(Wire and Arc Additive Manufacture,WAAM)高强AlCuMnZr合金的气孔缺陷形成机理及其控制方法。基于三维CT图像分析技术,对采用自然空冷(AC)、基板强制水冷(WC)及热等静压(HIP)后处理的薄壁件气孔缺陷分析。结果表明:AC/WC/HIP试样的气孔率分别为1.29%、1.21%、0.45%。HIP处理可有效降低气孔率并提升合金力学性能。基板自然空冷下WAAM成形AlCuMnZr合金经HIP处理后,抗拉强度、屈服强度和伸长率分别为(270±18)MPa、(150±8)MPa和(9±1)%。
Pore defect formation mechanism and its control method of high-strength AlCuMnZr alloy fabricated by Wire and Arc Additive Manufacture(WAAM)were studied in this paper.Based on three-dimensional CT image analysis technology,the results of analyzing the porosity defects of thin-walled parts post-treated by natural air cooling(AC),substrate-forced water cooling(WC)and hot isostatic pressing(HIP)show that the porosity of the WC/AC/HIP specimens are 1.29%,1.21%and 0.45%,respectively,and that the HIP treatment can effectively reduce the porosity and improve the mechanical properties of the alloys.The tensile strength,yield strength and elongation of AlCuMnZr alloy formed by WAAM under natural air-cooling of the substrate after HIP treatment were(270±18)MPa,(150±8)MPa and(9±1)%,respectively.
作者
康士豪
孟杰
杨代婷
马欣凯
魏浩鹏
解威豪
敖豪杰
周颖惠
KANG Shihao;MENG Jie;YANG Daiting;MA Xinkai;WEI Haopeng;XIE Weihao;AO Haojie;ZHOU Yinghui(School of Materials and Chemical Engineering,Xi'an Technological University,Xi'an 710021,Shannxi,China)
基金
陕西省自然科学基础研究计划一般项目(青年)(2023-JC-QN-0551)
中国博士后科学基金第73批面上资助(312804)
陕西省教育厅大学生创新创业训练计划项目(国家级)(202310702054)。