标题: | 背压对AZ80镁合金等径转角挤制显微结构之研究 Study of back-pressure on microstructure of AZ80 magnesium alloy in equal channel angular extrusion |
作者: | 林岳贤 Lin, Yueh-Shien 徐瑞坤 Hsu, Ray-Quan 机械工程学系 |
关键字: | 镁合金;大量塑性变形法;等径转角挤制;背压;Magnesium;SPD;ECAE;Back-pressure |
公开日期: | 2008 |
摘要: | 目前有许多的研究使用大量塑性变形法来进行镁合金机械性质的改善。等径转角挤制为众多大量塑性变形法中最为简单方便的一种方法,而且运用此法在挤制后可以得到与试片在进行挤制前相同的横截面。此外,ECAE所需的外力较小,并且可以藉由改变模具参数控制试片的显微组织。文献中指出,当温度越低时晶粒细化的效果越好,但对于不同的材料与挤制模具,最低挤制温度多半有所限制。而增加背压有助于增加试片的应变量并且可以防止由张应力造成表面破裂,即代表增加背压可降低成形温度。 本研究将探讨藉由增加背压降低最低挤制温度对镁合金AZ80晶粒尺寸的影响。实验结果显示增加背压确实有助于降低最低挤制温度,而在同温度下增加背压将使的晶粒尺寸增大,但随着温度的降低,晶粒细化的效果越好。 Severe Plastic Deformation (SPD) is widely used to improve the mechanical properties of magnesium. The equal channel angular extrusion (ECAE) is the most simple and convenient technique in SPD. By using ECAE, we obtain a product which has the same cross section with original billet after extrusion .In addition, the force required in extrusion during ECAE process is usually not large, and we can control the microstructure of the billet by changing the die parameters. Our experiments show that low temperature extrusion can achieve in grain refinement, but the lowest extrusion temperature is limited by materials and dies. Imposing a back-pressure is useful for increasing the strain of billet to avoid the cracking on the billet surface by tensile stress. In order words, imposing a back-pressure is beneficial to compromise the extrusion temperature. In this study, the effect on the microstructure of magnesium alloy AZ80 of imposing the back-pressure was investigated. As a result, we found that imposing the back-pressure is helpful in extending the lowest extrusion temperature. At the same temperature, it makes the grain size larger with increasing back-pressure. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079614511 http://hdl.handle.net/11536/42077 |
显示于类别: | Thesis |
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