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Surface roughness of a hot-dipped galvanized sheet steel as a function of deformation mode

机译:热浸镀锌钢板的表面粗糙度与变形模式的关系

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A hot-dipped galvanized zinc-coated sheet steel was deformed with three different laboratory test systems: a Marciniak punch system, a flat-die friction test system, and a cupping system. These systems were able to impose various combinations of deformation modes to the sheet. The deformation modes include: (1) strain without die contact, (2) sliding, (3) pressing, and (4) bending. Strain measurements from the electrolitically gridded specimens were made at the same locations as surface profilometry measurements, allowing a direct correspondence of surface roughness with strain. Quantification of the roughening as a function of strain, sliding and bending was determined. The roughening rate depends upon the strain level as well as the strain path. Increased strain without die contact causes an increase in the surface roughness with strain paths close to plane strain exhibiting the highest roughening rate. The deformation modes of sliding, pressing, and bending cause a decrease in the surface roughness (i.e. smoothing) to occur. A first-order model is proposed to account for the surface roughness as a function of these deformation modes.
机译:用三种不同的实验室测试系统使热浸镀锌的钢板变形:Marciniak冲头系统,平模摩擦测试系统和拔罐系统。这些系统能够对板材施加各种变形模式组合。变形模式包括:(1)没有模具接触的应变;(2)滑动;(3)压紧;(4)弯曲。在与表面轮廓仪测量相同的位置上进行了电栅格化样品的应变测量,从而使表面粗糙度与应变直接对应。确定了作为应变,滑动和弯曲函数的粗化的量化。粗化率取决于应变水平以及应变路径。没有模具接触的应变增加导致表面粗糙度增加,应变路径接近于平面应变,表现出最高的粗糙化率。滑动,压制和弯曲的变形模式导致表面粗糙度的降低(即,平滑)发生。提出了一阶模型来考虑表面粗糙度作为这些变形模式的函数。

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