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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Evaluation of different heat treatment cycles on improving single point incremental forming of AA6061 aluminum alloy
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Evaluation of different heat treatment cycles on improving single point incremental forming of AA6061 aluminum alloy

机译:不同热处理循环的评价改善AA6061铝合金单点增量成型

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Both the formability and hardness of the age-hardenable AA6061 aluminum alloy sheet are highly dependent on the type of the heat treatment. In this research, to simultaneously improve the formability and the final hardness of a truncated pyramid from the AA6061 aluminum alloy formed by single point incremental forming (SPIF), three different heat treatment cycles have been investigated. The considered cycles include solid solution/SPIF/aging (the cycle I), solid solution/aging/SPIF (the cycle II), and annealing/SPIF/solid solution/aging (the cycle III). The maximum forming depth achievable at certain wall angles before fracture was considered as a formability indicator. Microstructural studies were carried out using optical and scanning electron microscopy and differential scanning calorimetry. The obtained results show that the best condition among the investigated heat treatment cycles for SPIF of the 70° wall angle is cold working of the annealed sheet in the cycle III which results in an improvement of 100% in the forming depth and an increase of 2% in the hardness by the subsequent artificial aging treatment, as compared to the as-received condition. Also, microstructural studies revealed that the solution temperature and time considerably affect the formability and hardness of the final formed part during the cycle I.
机译:年龄可硬化AA6061铝合金板的可成形性和硬度均高度依赖于热处理的类型。在该研究中,为了同时提高通过单点增量成型(SPIF)形成的AA6061铝合金截短金字塔的可成形性和最终硬度,已经研究了三种不同的热处理循环。所考虑的循环包括固溶体/ SPIF /老化(循环I),固溶体/老化/ SPIF(循环II)和退火/ SPIF /固溶/老化(循环III)。在裂缝之前在某些壁角处可实现的最大成形深度被认为是可成形性指示剂。使用光学和扫描电子显微镜和差示扫描量热法进行微观结构研究。所得结果表明,70°壁角的SPIF的研究中的研究热处理循环中的最佳条件是循环III中的退火片的冷加工,这导致形成深度的100%,增加2与后续的人工老化处理相比,在硬度的百分比与接受的条件相比。而且,微观结构研究表明,溶液温度和时间显着影响了在循环I期间最终形成部分的成形性和硬度。

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