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EXPERIMENTAL ANALYSIS OF THERMAL, TENSILE AND MICROHARDNESS PROPERTIES IN DIRECTIONAL SOLIDIFIED ZA, Zn-Ag AND ZINAG ALLOYS

机译:定向凝固ZA,Zn-Ag和Zinag合金中热,拉伸和微硬度性能的实验分析

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The family of Zn-Al (ZA), Zn-Ag and Zn-Al-Ag (ZINAG) alloys offers high mechanical properties, ease of finishing, the advantage of low energy and pollution-free melting. Also, present alternatives to the well developed alloy systems, such as brasses, bronzes, cast irons and aluminum alloys. The main objective of this paper is to measure thermal parameters in ZA, Zn-Ag and ZINAG hypoeutectic and hypereutectic alloys directionally solidified which present columnar, equiaxed and columnar to equiaxed transition structures (CET). Also, estimate the mechanical properties, such as microhardness and tensile parameters and correlate these with the thermal (cooling rate) and structural parameters (grain size and dendritic spacing). The different types of structures were analyzed with optical and scanning electron microscopy. The results showed the influence of concentration, microstructural arrangement and thermal conditions during solidification on the mechanical properties. The results of the present investigation are compared with previous experiments.
机译:Zn-Al(Za),Zn-Ag和Zn-Al-Ag(Zinag)合金的家族提供高机械性能,便于整理,低能量和无污染熔化的优点。此外,卓越的合金系统的替代方案,如黄铜,隆隆,铸铁和铝合金。本文的主要目的是测量Za,Zn-Ag和Zinogscoxic和过度化合金方向凝固的热参数,其定向凝固,其将柱状,等式和柱状稳定于等轴过渡结构(CET)。此外,估计机械性能,例如显微硬度和拉伸参数,并将这些与热(冷却速率)和结构参数(晶粒尺寸和树突间距相关)相关。用光学和扫描电子显微镜分析不同类型的结构。结果表明浓度,微观结构布置和热条件在机械性能期间的影响。将本研究结果与先前的实验进行比较。

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