Fabrication and microstructural analysis of 3A21/7075 aluminum alloy cladding material based on impact jet solid–liquid compound casting

Hu Ming, Ren Xiaoxue, Sun Jian-bo, Z. Yunlong, Teng Chunfeng, Qiao Guang
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Abstract

To solve thickness problem for high-strength aluminum alloy used as plastic mold materials and eliminate oxide film on the surface of aluminum alloy, a new compound casting, namely impact jet solid–liquid compound casting, was developed to fabricate 3A21/7075 aluminum alloy cladding material. Then, optical microscope (OM), electron-backscattered diffraction (EBSD) technique, and transmission electron microscope (TEM) together with energy-dispersive spectrometer (EDS) were used to analyze microstructure of 3A21/7075 aluminum alloy cladding material. The OM and EBSD results showed that the 3A21/7075 aluminum alloy cladding material was composed of 3A21 cladding layer, fusion zone (FZ), heat-affected zone, and 7075 matrix. The grain morphology on both sides of FZ had great differences. Moreover, the TEM and EDS results showed that the 3A21 cladding layer showed a bulk phase and lots of fine and dispersed granular phases, while the 7075 matrix appeared undetermined strip phases and amounts of fine and dispersed rod-like phases. Moreover, FZ existed a great deal of fine and dispersed granular phases and rod-like phases. The 3A21/7075 aluminum alloy cladding material could effectively solve the problems mentioned above and the in-depth analysis of microstructures of 3A21/7075 aluminum alloy cladding material was of great importance in terms of engineering value and academic significance.
冲击喷射固液复合铸造3A21/7075铝合金包层材料制备及显微组织分析
为解决高强铝合金作为塑料模具材料的厚度问题,消除铝合金表面氧化膜,研制了一种新型复合铸造方法,即冲击射流固液复合铸造,制备3A21/7075铝合金包层材料。利用光学显微镜(OM)、电子背散射衍射(EBSD)技术、透射电镜(TEM)和能谱仪(EDS)对3A21/7075铝合金包层材料的微观结构进行了分析。OM和EBSD结果表明,3A21/7075铝合金熔覆材料由3A21熔覆层、熔合区(FZ)、热影响区和7075基体组成。FZ两侧的晶粒形态差异较大。TEM和EDS结果表明,3A21熔覆层呈现出块状相和大量细小分散的颗粒相,而7075熔覆层呈现出未确定的条状相和大量细小分散的棒状相。FZ中存在大量细小分散的颗粒相和棒状相。3A21/7075铝合金包层材料可以有效地解决上述问题,深入分析3A21/7075铝合金包层材料的显微组织具有重要的工程价值和学术意义。
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