Qi Yushi, Wei Fangming, Wang Yu, Jin Yu, Chang Xusheng, Chen Gang
School of Materials Science and Engineering, Harbin Institute of Technology, Weihai 264209, China.
Materials (Basel). 2025 Apr 27;18(9):1988. doi: 10.3390/ma18091988.
To enhance the mechanical properties of 6082 aluminum alloy, a novel Sc- and Zr-microalloyed 6082 alloy was fabricated through squeeze casting technology. Microalloying with Sc and Zr substantially refined the microstructure of alloy, achieving an average grain size of 136.36 μm-a 31.7% reduction compared to the baseline 6082 alloy. Furthermore, the addition of Sc and Zr effectively refined the coarse AlFeMnSi intermetallic phases, mitigating their inherent brittleness. The Sc/Zr-modified alloy exhibited delayed age-hardening kinetics, requiring 100% longer aging time to reach peak hardness due to Sc/Zr-induced retardation of β''-phase precipitation. The optimized alloy demonstrated better mechanical properties, showing 10.4%, 8.0%, and 71.8% enhancements in yield strength, ultimate tensile strength, and elongation, respectively, over the non-microalloyed counterpart. The squeeze-cast Sc/Zr-modified alloy valve body showed yield strength exceeding 300 MPa and elongation above 10% across various sections, which verifies the effectiveness of this integrated microalloying and forming approach.
为提高6082铝合金的力学性能,采用挤压铸造技术制备了一种新型的含钪和锆微合金化的6082合金。钪和锆的微合金化显著细化了合金的微观结构,平均晶粒尺寸达到136.36μm,与基准6082合金相比减小了31.7%。此外,钪和锆的添加有效地细化了粗大的AlFeMnSi金属间相,降低了其固有脆性。钪/锆改性合金表现出延迟时效硬化动力学,由于钪/锆导致β''相析出延迟,达到峰值硬度所需的时效时间延长了100%。优化后的合金表现出更好的力学性能,与未微合金化的对应合金相比,屈服强度、抗拉强度和伸长率分别提高了10.4%、8.0%和71.8%。挤压铸造的钪/锆改性合金阀体在各个部位的屈服强度均超过300MPa,伸长率均高于10%,这验证了这种微合金化与成型一体化方法的有效性。