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GLUES MAKE GUMMY METALS EASY TO CUT

机译:胶使金属易切割

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摘要

Metals such as Cu, Al, Ni, Ta and stainless steels, despite their softness and ductility, are considered difficult to machine. This is due to large cutting forces and corresponding formation of a very thick chip during cutting and hence these metals are referred to as "gummy". Their poor machinability of these materials arises because of an unsteady and highly redundant mode of plastic deformation referred to as sinuous flow. The prevailing plastic deformation mode during machining can be overcome by the application of certain coatings and chemical media on the un-deformed free surface of the workpiece ahead of the cutting process. Using in-situ imaging and concunent force measurements we present two different mechanochemical routes through which these media can improve machinability. The first route, which requires chemicals that adhere to the metal surface, such as glues and inks, improves cutting by inducing a change in the local plastic deformation mode - from sinuous flow to one characterized by periodic fracture or segmented flow. The second route, which requires chemicals that can react with the workpiece to form a low-friction layer, changes the sinuous flow mode to a smooth, laminar one. Both routes decrease cutting forces by more than 50% with order of magnitude improvement in surface texture as characterized by measured roughness and defect density. The results suggest a broad range of opportunities for improving performance of machining processes for many difficult-to-cut gummy metals.
机译:尽管铜,铝,镍,钽和不锈钢等金属柔软且具有延展性,但仍难以加工。这是由于较大的切削力和在切削过程中相应地形成非常厚的切屑所引起的,因此这些金属被称为“胶粘”。这些材料的可加工性差是由于不稳定的,高度冗余的塑性变形模式(称为正弦流动)引起的。在切削之前,可以通过在工件未变形的自由表面上施加某些涂层和化学介质来克服加工过程中普遍存在的塑性变形模式。使用原位成像和辅力测量,我们展示了两种不同的机械化学途径,这些介质可通过这些途径改善可加工性。第一条路线需要粘附在金属表面的化学物质(例如胶水和墨水),它通过引起局部塑性变形模式的变化(从弯曲流动到周期性断裂或分段流动的特征)来改善切割效果。第二种路线要求化学物质能够与工件发生反应以形成低摩擦层,该路线将正弦流模式更改为平滑的层流模式。两种途径都将切削力降低了50%以上,表面粗糙度的改善幅度达到了数量级,其特征是测得的粗糙度和缺陷密度。结果表明,为改善许多难以切割的胶粘金属的机加工性能提供了广泛的机会。

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