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首页> 外文期刊>Journal of Materials Processing Technology >Experimental investigations on hot forming of AA6082 using advanced plasma nitrocarburised and CAPVD WC: C coated tools
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Experimental investigations on hot forming of AA6082 using advanced plasma nitrocarburised and CAPVD WC: C coated tools

机译:使用先进的等离子氮碳共渗和CAPVD WC:C涂层工具对AA6082进行热成型的实验研究

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The use of lubricant for hot stamping process of sheet material can reduce the tendency of adhesion between work-piece and tool significantly and the friction coefficient. However, the post-process of cleaning the formed part and lubricating the tools before each stamping operation can compromise the manufacturing efficiency. It is especially challenging for hot stamping because reducing lubricant could lead to severe adhesion between tool and blank during stamping. Hence, it is desirable to develop an advanced tooling technique suitable for hot stamping processes of aluminium alloys. In this paper, an innovative tooling technology enabling hot and cold forming of aluminium with little lubricant has been developed using plasma thermochemical treatment and Cathodic Arc Physical Vapour Deposition (CAPVD) technologies. The forming performance was validated on a top-hat part stamping test to benchmark the performance of the developed tools at different forming temperature, blank-holding force (BHF) and lubrication state. The results show that WC: C coating prepared by CAPVD adequately reduced the aluminium sticking on the tpol surfaces, to the extent that it achieved an 80% lubricant reduction in the hot forming stamping of a top-hat part with a drawing depth of 70 mm. The morphology of die showed that aluminium adhesion at the corner area of the die where the contact pressure doubled was still noticeable, while no severe adhesion was observed on the top flat surfaces. A further investigation of tribology on hot and cold stage tribometers was deployed to quantify the friction coefficient and wear resistance of tooling materials which were found correlated to the material's universal hardness and time-dependent adhesion rate of aluminium. (C) 2016 Published by Elsevier B.V.
机译:在片材的热冲压过程中使用润滑剂可以显着降低工件和工具之间的粘附趋势以及摩擦系数。然而,在每次冲压操作之前清洁成形部件并润滑工具的后处理会损害制造效率。对于热冲压而言,这尤其具有挑战性,因为减少润滑剂可能会导致冲压过程中工具与毛坯之间的严重粘附。因此,期望开发一种适用于铝合金的热冲压工艺的先进工具技术。本文使用等离子体热化学处理和阴极电弧物理气相沉积(CAPVD)技术开发了一种创新的工具技术,该技术可在几乎没有润滑剂的情况下对铝进行冷热成型。成型性能在高帽零件冲压测试中得到了验证,以基准已开发工具在不同成型温度,毛坯固持力(BHF)和润滑状态下的性能。结果表明,由CAPVD制备的WC:C涂层充分减少了铝在tpol表面上的粘附,达到在拉伸深度为70 mm的顶帽零件热成型冲压中将润滑剂减少80%的程度。模具的形态表明,在模具的接触压力加倍的拐角区域的铝粘附仍然很明显,而在顶部平坦表面上没有观察到严重的粘附。在冷热阶段的摩擦计上对摩擦学进行了进一步的研究,以量化工具材料的摩擦系数和耐磨性,发现这些摩擦系数和材料与材料的通用硬度和铝的时效粘附率相关。 (C)2016由Elsevier B.V.发布

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