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Finite Element Modeling and Mechanical Testing of Metal Composites Made by Composite Metal Foil Manufacturing

机译:复合金属箔制造金属复合材料的有限元建模和力学测试

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Foils of aluminum 1050 H14 ? hard temper and 99.9% copper with 500-micron thickness have been used to manufacture similar and dissimilar composites by composite metal foil manufacturing (CMFM). The metal foils are bonded to each other using a special 80% zinc and 20% aluminum by weight brazing paste. A 3D finite element model has been developed to numerically analyze the time required to heat the metal foils so that a strong bond can be developed by the paste. The numerical simulations run in ANSYS 19.1 have been validated through experiments and rectangular layered composite products have been developed for flexural testing. The flexural test results for layered Al and Al/Cu composites are compared with solid samples of Al 1050 and 99.9% pure copper made by subtractive method. The results show that the layered Al composite is 5.2% stronger whereas the Al/Cu sample is 11.5% stronger in resisting bending loads compared to a solid Al 1050 sample. A higher bend load indicates the presence of a strong intermetallic bond created by the brazing paste between the metal foils. Corrosion testing was also carried out on the composite samples to assess the effect of corrosion on flexural strength. The tests revealed that the composites made by CMFM are not affected by galvanic corrosion after 7 days of testing and the flexural loads remained consistent with composites that were not immersed in a solution of distilled water and NaCl.
机译:铝箔1050 H14?硬质回火和厚度为99.9%的铜(厚度为500微米)已用于通过复合金属箔制造(CMFM)来制造相似和相异的复合材料。使用特殊的80%锌和20%重量比的铝钎焊膏将金属箔彼此粘合。已经开发了3D有限元模型,以对加热金属箔所需的时间进行数值分析,以便可以通过焊膏形成牢固的结合。 ANSYS 19.1中运行的数值模拟已通过实验验证,并且矩形层状复合产品已开发用于弯曲测试。将层状Al和Al / Cu复合材料的挠曲测试结果与通过减法法制成的Al 1050和99.9%纯铜的固体样品进行了比较。结果表明,与固态Al 1050样品相比,层状Al复合材料的抗弯曲载荷强度高5.2%,而Al / Cu样品的强度高11.5%。较高的弯曲载荷表示在金属箔之间存在由钎焊膏产生的牢固的金属间结合。还对复合材料样品进行了腐蚀测试,以评估腐蚀对弯曲强度的影响。测试表明,由CMFM制造的复合材料在测试7天后不受电腐蚀的影响,挠曲载荷与未浸入蒸馏水和NaCl溶液中的复合材料保持一致。

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