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Lubricant Viscosity: Evaluation between Existing and Alternative Lubricant in Metal Forming Process

机译:润滑剂粘度:金属成形过程中现有润滑剂与替代润滑剂之间的评估

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Lubrication in metal forming process is very important to control wear and friction at the interface between interacting surfaces. Non-renewable resources, such as mineral oil are widely used since a beginning due to its ability to act as a reservoir to the wearing contact which functions as a film material or sustains chemical transformation to become a film material. There is big concern that an alternative metal forming lubricant with similar viscosity able to replace existing metal forming lubricant without neglecting all main factors as demanded by industries. Two additives free paraffinic mineral oil with variable viscosity; VG95 and VG460 and daphnee were choose as existing lubricants, and is compared to an alternative lubricant with similar viscosity; RBD palm stearin and RBD palm kernel. The experiment used a cold work extrusion apparatus consisting of a pair of taper die and a symmetrical work piece (billet). The billet material was annealed pure aluminum A1100 with 45 of edge at the deformation area. It was found that lubricant with high viscosity performed slightly low extrusion load, but resulting higher surface roughness than low viscosity lubricants. However they show no severe wear on product surface.
机译:金属成型过程中的润滑对于控制相互作用表面之间的界面处的磨损和摩擦非常重要。矿物油等不可再生资源从一开始就被广泛使用,这是由于其具有作为耐磨触点的储存器的能力,该耐磨触点起着薄膜材料的作用或维持化学转化而成为薄膜材料。令人担忧的是,具有类似粘度的替代金属成形润滑剂能够替代现有的金属成形润滑剂,而不会忽略工业要求的所有主要因素。两种不含添加剂的可变粘度石蜡矿物油;选择VG95和VG460以及daphnee作为现有润滑剂,并将其与具有类似粘度的替代润滑剂进行比较; RBD棕榈硬脂精和RBD棕榈仁。该实验使用的冷作挤压设备由一对锥形模和一个对称的工件(坯料)组成。坯料是在变形区域进行了45边缘纯铝A1100退火处理。已经发现,具有高粘度的润滑剂的挤出负荷略低,但与低粘度润滑剂相比,其表面粗糙度更高。但是,它们在产品表面没有显示出严重磨损。

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