某些(Zn–Al)合金的超塑性行为研究

S. Abed, A. K. Rajih, A. O. Al-Roubaiy
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引用次数: 0

摘要

超塑性行为在许多领域都有应用,例如,航空航天制造是超塑性的主要市场,但汽车、医疗、体育、炊具和建筑应用也有其份额。本文研究了一种新型Zn-Al合金的超塑性行为。此外,还研究了Zn-0.5Al合金可能的超塑性行为。这些合金是用重力铸造和冷铸技术制备的。Zn-0.5Al合金在250℃下进行热轧,在室温下进行冷轧,而Zn-48Al合金也在250℃至20%re下进行热轧样品厚度的减少,然后在500ºC下进行部分重熔。进行了物理、机械和化学测试,包括XRF、XRD、OP、SEM、显微硬度(HV)和拉伸(冷、热)测试。结果表明,“Zn-0.5Al合金的力学性能较差,不能与Zn-48Al合金相比,认为是一种超塑性合金。Zn-48Al的合金总体上提高了所有性能。经过热机械控制和部分重熔,Zn-48Al获得了最大伸长率(450%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGATION OF SUPERPLASTIC BEHAVIOR OF CERTAIN (Zn – Al) ALLOYS
Super plasticity behavior finds applications in so many fields, for example the aerospacemanufacturing that is the main bazaar for super plasticity, but automotive, medical, sports,cookware and architectural applications have their share too. "In this work a study of thesuperplastic behavior of a new Zn-Al alloy was conducted. In addition to the investigation ofthe possible superplastic behavior of Zn-0.5Al alloy. These alloys were prepared by usinggravity and chill casting techniques. Zn-0.5Al alloy was subjected to hot rolling at 250 ºCand cold rolling at room temperature, while Zn-48Al alloy was also hot rolled at 250 ºC to20% reduction in the thickness of sample followed by partial remelting at 500 ºC. Severaltests were carried out such as physical, mechanical and chemical which include (XRF, XRD,OP, SEM, Microhardness (HV) and Tensile (cold, hot) test). Results showed that the"Zn-0.5Al alloy has poor mechanical properties and may not be regarded as a superplastic alloycompared with Zn-48Al alloy. The Zn-48Al alloy generally enhanced all properties. Themaximum elongation of (450%) was obtained in Zn-48Al alloy after thermomechanicalcontrolling process and partial remelting.
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