Texture and strain rate sensitivity analysis of solid solution and precipitation hardening aluminum alloys processed by repetitive corrugation and straightening

S. Elizalde, Marco Ezequiel, L. Romero-Resendiz, José María Cabrera, Gonzalo González
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Abstract

Abstract. The potential of improving the mechanical strength by the RCS process is evaluated on the 5754, 6061, and 7075 aluminum alloys, which present different hardening mechanisms related to their respective alloying elements. This work compares the evolution of the texture and the mechanical properties of the different alloys through the RCS processing. The mechanical properties were evaluated by micro-hardness measurements, tensile tests at different temperatures, and strain rates to evaluate the strain-rate sensitivity. The results showed that after two RCS passes, the 6061 and 5754 alloys showed a relatively high strain-rate sensitivity at 300°C. In addition, an increment of 27%, 22%, 15% in hardness was obtained for the 5754, 6061 and 7075 alloys, respectively. Showing the potential of improvement in the mechanical resistance due to the different hardening mechanism. Furthermore, the crystallographic texture was characterized by the obtention of pole figures by X-ray diffraction and the calculation of their orientation distribution functions. The results showed the same trend in the three aluminum alloys, i.e., the initial texture components were conserved, but the texturized volume decreased.
反复波纹矫直加工固溶与析出硬化铝合金织构及应变率敏感性分析
摘要对5754、6061和7075铝合金进行了RCS工艺提高机械强度的潜力评价,这三种铝合金的硬化机制与合金元素有关。本文比较了不同合金在RCS加工过程中织构和力学性能的演变。通过显微硬度测量、不同温度下的拉伸试验和应变速率来评估其力学性能,以评估应变速率敏感性。结果表明:6061和5754合金经过两次RCS通道后,在300℃时表现出较高的应变率敏感性;另外,5754、6061和7075合金的硬度分别提高了27%、22%和15%。由于硬化机制的不同,显示出提高机械抗力的潜力。此外,通过x射线衍射观察其极点图并计算其取向分布函数来表征其晶体织构。结果表明,三种铝合金的织构成分基本保持不变,但织构体积减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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