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首页> 外文期刊>International Journal of Integrated Engineering >Effect of Annealing and Artificial Ageing Parameters on The Ultimate Tensile Strength and Elongation of New Al-(4-5) Zn- Mg-Mn-Cu Alloys Fabricated using Recycled Beverage Cans
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Effect of Annealing and Artificial Ageing Parameters on The Ultimate Tensile Strength and Elongation of New Al-(4-5) Zn- Mg-Mn-Cu Alloys Fabricated using Recycled Beverage Cans

机译:使用再生饮料罐制备的新型抗拉强度与人工老化参数对新的抗拉强度和新型Zn-Mg-Mn-Cu合金的影响

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The transport industry is one of the highest consumers of aluminium alloys. However, the quest for new and cheaper aluminium with properties comparable to the contenders has remain in the research domain for sometimes. Even at that, the literature is dearth of clear ideas on conversion of the huge RBCs to X7475 experimental alloys. In furtherance to the fabrication of a new 7xxx (Al-4-5Zn-1.5Mg-1.0Mn-0.35Cu) alloy from Recycled Beverage Cans (RBCs), the effect of annealing temperature (350 o C, 380 o C and 413 o C) and artificial ageing time (6, 10.5 and 15 hours) on the ultimate tensile strength (UTS) and elongation (e) were reported. Nine samples (S1- S9) of experimental alloys were fabricated and subjected to tensile tests, SEM/EDX and XRD analysis. Secondary phases like MgZn2, Cu2Mg precipitates as observed in the XRD supported an improved UTS. The elemental analysis revealed the presence of alloying compositions. An alloy fabricated using Al-5Zn-1.5Mg-1.0Mn-0.35Cu (S9), artificially aged at 6 h and annealed at 413 o C had the highest UTS of 362.2 MPa and an elongation of 3.09 mm (15.45 %). The result demonstrated that a new X7475 alloy was fabricated from RBCs has comparable mechanical properties with alloys fabricated using pure aluminium.
机译:运输业是铝合金最高消费者之一。然而,对具有与竞争者相当的性质的新和更便宜的铝的追求仍然存在于有时的研究领域。即使在那之上,文献也是关于将巨大RBC转换为X7475实验合金的明确思想。从再生饮料罐(RBC)的新增7xxx(Al-4-5zn-1.5mg-1.0mn-0.35cu-1.0mn-0.35cu)合金的制造,退火温度的效果(350 o c,380 o c和413 o c)据报道,据报道,在最终拉伸强度(UTS)和伸长率(E)上的人工老化时间(6,1.05和15小时)。制造实验合金的九个样品(S1-S9)并进行拉伸试验,SEM / EDX和XRD分析。如MgzN2,如在XRD中观察到的副相,Cu 2Mg沉淀物支持改进的UT。元素分析显示出合金化组合物的存在。使用Al-5Zn-1.5mg-1.0mN-0.35cu(S9)制造的合金,在6小时内,在413 o C下退火,具有362.2MPa的最高UT,伸长3.09mm(15.45%)。结果表明,新的X7475合金由RBC制造,具有可比的机械性能与使用纯铝制造的合金。

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