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Development of upsetting-extrusion type tribometer for evaluating lubrication coating performance in cold forging

机译:开发用于评估冷锻中润滑涂层性能的up挤型摩擦计

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A new upsetting-extrusion type tribometer has been developed to investigate the performance of the lubrication coating on the side surface of a billet in the multi-stage cold forging. In this tribometer, the lubrication coating is first destroyed by the upsetting process due to the free expansion of the billet surface and then evaluated by the extrusion process. The frictional shear factor of the lubrication coating is obtained by plotting the measured extrusion load and the position after the extrusion of a centerline drawn on the billet in advance on the calibration curve obtained by FEM. Experimental results using a zinc phosphate coating and a dry in-place type coating showed that the reduced peak height Rpk is more appropriate than the maximum height Rz to express the effect of the surface roughness of tool on galling generation. When no galling occurs, the frictional shear factor hardly varies with the type of the lubrication coating and the surface expansion ratio. The anti-galling ability of the dry in-place type coating is greatly improved by a two-stage shot blast before the lubrication coating and reaches a level better than the zinc phosphate coating.
机译:为了研究在多级冷锻中坯料侧面上的润滑涂层的性能,开发了一种新的up粗挤压型摩擦计。在该摩擦计中,润滑层首先由于坯料表面的自由膨胀而被up粗工艺破坏,然后通过挤压工艺进行评估。润滑涂层的摩擦剪切系数是通过在FEM获得的校准曲线上预先绘制测得的挤压载荷和在坯料上绘制的中心线挤压后的位置来获得的。使用磷酸锌涂层和干式原位涂层的实验结果表明,降低的峰高Rpk比最大高度Rz更合适,以表达工具表面粗糙度对磨损产生的影响。当没有磨损发生时,摩擦剪切系数几乎不会随润滑涂层的类型和表面膨胀率而变化。通过在润滑涂层之前进行两阶段的喷丸处理,就地干燥型涂层的抗磨损能力大大提高,并达到了比磷酸锌涂层更好的水平。

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