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Permeation of Lubricant Trapped Within Pocket Into Real Contact Area on the End Surface of Cylinder

机译:袋内的润滑剂渗透到圆柱端面上的实际接触区域

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摘要

Knowledge on the behavior of lubricant trapped in a surface pocket is important for improving metal forming technology, since the trapped lubricant affects friction and surface finishing. The permeation phenomena at higher reduction in height were quantitatively observed during the upsetting of cylinders with a central conical dent using the new fluorescence direct observation apparatus developed by the authors. Moreover, the permeation phenomena were estimated using a rigid-plastic finite element analysis model incorporating the compressibility of the lubricant. From the experimental results, it was quantitatively observed that over a reduction in height of 37%, the outline of the central conical dent became blurred, and the lubricant trapped within the conical dent permeated into the peripheral real contact area. It was also quantitatively observed that the volume of the lubricant trapped within the conical dent decreased gradually and abruptly with increasing reduction in height up to and above 36%, respectively. From the numerical results, it was estimated that the trapped lubricant permeated when the hydrostatic pressure generated within the lubricant pocket exceeded the die pressure at higher reduction in height.
机译:由于表面润滑剂会影响摩擦力和表面光洁度,因此有关表面凹穴中捕获的润滑剂行为的知识对于改进金属成型技术非常重要。使用作者开发的新型荧光直接观察装置,在具有中心锥形凹痕的圆柱体up粗过程中,定量观察到高度降低时的渗透现象。而且,渗透现象是使用结合了润滑剂可压缩性的刚塑性有限元分析模型估算的。从实验结果定量地观察到,高度降低超过37%时,中心圆锥形凹痕的轮廓变得模糊,截留在圆锥形凹痕内的润滑剂渗透到周围的实际接触区域中。还定量地观察到,截留在圆锥形凹痕中的润滑剂的体积随着高度的减小而逐渐地和突然地减小,分别达到或超过36%。从数值结果可以估计,当润滑剂袋内产生的静水压力在高度降低时超过模具压力时,滞留的润滑剂会渗透。

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