Shi Guohui, Yu Mingyang, Zhu Kai, Ren Weicai, Wen Kai, Li Xiwu
State Key Laboratory of Nonferrous Metals and Processes, China GRINM Group Co., Ltd., Beijing 100088, China.
General Research Institute for Nonferrous Metals, Beijing 100088, China.
Materials (Basel). 2024 Sep 21;17(18):4633. doi: 10.3390/ma17184633.
The Al-Zn-Mg-Cu alloy plate is a structural material widely used in aerospace, and its rolling process plays a crucial role in determining its performance. This study investigated the effects of different pass combinations of forward and spread rolling on the grain characteristics, strength, and fracture toughness of Al-Zn-Mg-Cu aluminum alloy plates under industrial conditions. The results show that initially using a small pass reduction followed by a larger one can improve the grain width and thickness on the Long Transverse-Short Transverse surface. Additionally, increasing the spread rolling pass enhances the grain width-to-thickness ratio on the TS surface. Performance tests indicate that grain characteristics have minimal influence on room-temperature tensile properties. However, a higher grain width-to-thickness ratio significantly improves the alloy's fracture toughness.
Al-Zn-Mg-Cu合金板材是一种广泛应用于航空航天领域的结构材料,其轧制工艺对决定其性能起着至关重要的作用。本研究在工业条件下,研究了正反轧制不同道次组合对Al-Zn-Mg-Cu铝合金板材晶粒特性、强度和断裂韧性的影响。结果表明,先采用小压下量道次,再采用大压下量道次,可改善长横向-短横向表面的晶粒宽度和厚度。此外,增加展宽轧制道次可提高TS表面的晶粒宽厚比。性能测试表明,晶粒特性对室温拉伸性能影响最小。然而,较高的晶粒宽厚比显著提高了合金的断裂韧性。