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FORMABILITY OF AZ31 MAGNESIUM ALLOY SHEET IN DRY PRESS FORMING USING DIAMOND-COATED DIES

机译:使用金刚石涂层模具的干压成型中AZ31镁合金板的可成型性

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Dry press forming which hasn't used lubricants in the process is the attractive forming technique of zero emission for the lubricants. As one of the dry press forming techniques, the usage of dies coated with a chemical vapor deposition (CVD) diamond film, which are expected to be applied to forming tools owing to their high tribological properties, abrasion resistance and heat resistance, has been proposed. Magnesium alloys have attracted attention owing to their advantages over what such as, high specific strength and ease of recycling. However, they have intractable characteristics, and it is necessary to perform the forming technique at high temperature and to consider lubrication condition. In this study, diamond-coated dies were used in the deformation of magnesium alloy sheets without lubricants in press forming, and the formability of magnesium alloy and its effect on the surface texture of a formed-cup were investigated. Dry deep-drawing tests and dry ironing tests were carried out to estimate the effect of the diamond-coated dies on the formability of magnesium alloy sheets. Furthermore, the formability obtained using the above-mentioned tests was compared with that obtained in tests using non-lubricant dies with traditional lubricant. AZ31 magnesium alloy sheets (thickness: t_0=0.5 mm) were deformed at 200 °C in dry deep-drawing tests. From the results, it was found that what can be deformed using diamond-coated dies. Moreover, a 20 % reduction in drawing force was confirmed compared with the usage of the traditional lubricant (MoS_2). Meanwhile, dry ironing tests were performed under conditions of 10 % ironing ratio by a method similar to the dry deep-drawing tests. In general, the ironing process, which is the most difficult step in lubrication in sheet forming, has been enabled by the diamond coating technique. Furthermore, it was observed that the surface roughness of the formed-cup walls using the diamond-coated dies was 0.4 μmRz, and, 1.3 μmR_z in case of MoS_2. It was confirmed that the application of diamond-coated dies improved the surface roughness of the formed-cup. It produced an improvement in the formability of magnesium alloys compared with the traditional lubrication technique (use of MoS_2). It was concluded that the validity of the use of diamond-coated dies became clear.
机译:在该过程中未使用润滑剂的干压形成是润滑剂零排放的有吸引力的成型技术。作为一种干压形成技术之一,已经提出了预期应用于化学气相沉积(CVD)金刚石膜的模具的使用,这预计将应用于其培训性的摩擦性能,耐磨性和耐热性。 。由于它们的优点,镁合金引起了诸如诸如高比强度和再循环的易用性的优势。然而,它们具有难治性特性,并且有必要在高温下进行成型技术并考虑润滑条件。在该研究中,在没有压制成形中没有润滑剂的镁合金板的变形中使用了金刚石涂层的模具,并研究了镁合金的可成形性及其对形成杯的表面纹理的影响。进行干燥的深拉测试验和干熨烫试验以估计金刚石涂层模具对镁合金板材成形性的影响。此外,将使用上述试验获得的成形性与使用非润滑剂模具与传统润滑剂的试验中获得的可形成性进行比较。 AZ31镁合金板(厚度:T_0 = 0.5mm)在200℃下在干燥的深图试验中变形。从结果中,发现可以使用钻石涂层模具变形。此外,与传统润滑剂的用途(MOS_2)相比,确认了拉伸力减少了20%。同时,通过类似于干燥的深拉测试的方法,在10%熨烫比的条件下进行干熨烫试验。通常,金刚石涂层技术使熨烫方法是片材形成中润滑的最困难的步骤。此外,观察到,在MOS_2的情况下,使用金刚石涂层模具的形成杯壁的表面粗糙度为0.4μmRZ,1.3μmR_Z。证实,金刚石涂层的模具的应用改善了形成杯的表面粗糙度。它在与传统润滑技术(使用MOS_2)的比较方案中产生了镁合金的成形性的提高。得出结论是,钻石涂层的使用的有效性变得清晰。

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