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首页> 外文期刊>Materials & design >Effect of secondary processing on the microstructure and wear behavior of spray formed Al-30Mg_2Si-2Cu alloy
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Effect of secondary processing on the microstructure and wear behavior of spray formed Al-30Mg_2Si-2Cu alloy

机译:二次加工对喷射成形Al-30Mg_2Si-2Cu合金显微组织和磨损行为的影响

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摘要

In the present work, Al-30Mg_2Si-2Cu alloy has been spray formed and subsequently hot pressed for den-sification. The alloy is then subjected to solutionizing and isothermal aging treatments. The microstruc-tural features, hardness and wear behavior of spray formed and secondary processed alloys have been evaluated individually and compared with that of as-cast alloy. The microstructure of spray formed alloy showed refined and globular shaped primary Mg_2Si intermetallic particles and Al_2Cu precipitate particles uniformly distributed in Al matrix. The microstructure was refined further after hot consolidation. The microstructure after solution heat treatment appeared similar to that of the spray formed alloy but aging led to a further refinement in the microstructure compared to that of the hot pressed alloy. The evaluation of wear behavior of these alloys, under dry sliding condition, showed that the age hardened alloy exhibits maximum wear resistance and minimum coefficient of friction over the entire range of applied load (10-50 N) at a sliding speed of 2 ms~(-1) followed by hot pressed, spray formed and solution heat treated alloys. The as-cast alloy showed the least wear resistance and highest coefficient of friction. Similar trend has been observed even in their hardness values too. The wear resistance of the alloys is discussed in light of their microstructural modifications induced during spray forming and subsequent secondary processing and also the topography of worn surfaces.
机译:在目前的工作中,已经对Al-30Mg_2Si-2Cu合金进行了喷涂成型,然后对其进行热压以进行致密化。然后对该合金进行固溶和等温时效处理。分别评估了喷射成形和二次加工合金的显微组织特征,硬度和磨损行为,并将其与铸态合金进行了比较。喷射成形合金的显微组织显示出细化且呈球形的初级Mg_2Si金属间化合物颗粒和Al_2Cu沉淀颗粒均匀分布在Al基体中。热固结后,微结构进一步细化。固溶热处理后的显微组织看起来与喷射合金相似,但是时效导致与热压合金相比显微组织进一步细化。在干滑动条件下对这些合金的磨损行为进行评估,结果表明,时效硬化合金在2 ms〜的滑动速度下,在所施加载荷的整个范围(10-50 N)内显示出最大的耐磨性和最小的摩擦系数。 (-1)随后进行热压,喷射成形和固溶热处理的合金。铸态合金显示出最低的耐磨性和最高的摩擦系数。即使在硬度值上也观察到了类似的趋势。根据合金的耐磨性,根据它们在喷射成形和随后的二次加工过程中引起的微观结构变化以及磨损表面的形貌进行讨论。

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  • 来源
    《Materials & design》 |2013年第5期|489-496|共8页
  • 作者单位

    Department of Mechanical Engineering, Tontadarya College of Engineering, Cadag 582 101, India;

    Department of Mechanical Engineering, St. Joseph Engineering College, Mangalore 575 028, India;

    Metal Extraction and Forming Division, National Metallurgical Laboratory, Jamshedpur 831 007, India;

    Department of Mechanical Engineering Basaveshwar Engineering College, Bagalkot 587 101, India;

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