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Micropitting in Wind Turbine Gearboxes: Calculation of the Safety Factor And Optimization of the Gear Geometry

机译:风力涡轮机齿轮箱中的微量速度:计算安全系数和齿轮几何优化

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摘要

If the contact pressure between mating flanks of a gear set is increased, the lubricant film thickness in between is reduced to a level where the asperities of the flanks start to touch. This case where the surface roughness is of similar value as the EHD film thickness is called "mixed friction". Due to the metallic contact of the asperities and the movement of the flanks with respect to each other, the flanks are damaged. The damaged flanks appear dull or greyish, hence the name "grey-staining" (or "Graufleckigkeit" in German), see e.g. or. Micropitting are small cracks on the surface of the gears (as opposed to pitting, where the cracks form below the surface), which grow into the material. The size of the damages is about 10-20 μm depth, 25-100 μm length and 10-20 μm width. Micropitting is mainly observed with case carburized gears but may also be found in nitrided, induction hardened or through hardened gears. Micropitting mainly occurs in areas of negative specific sliding. Negative specific sliding is to be found along the path of contact between point A and C on the driving gear and between point C and E on the driven gear.
机译:如果增加齿轮组的配合侧面之间的接触压力,则润滑剂膜厚度在两者之间的厚度降低到侧面的粗糙度开始触摸的水平。在作为EHD膜厚度称为“混合摩擦”的情况下,表面粗糙度具有相似值的情况。由于粗糙的金属接触和侧面相对于彼此的运动,侧面被损坏。损坏的侧翼似乎沉闷或灰色,因此名称“灰色染色”(或“Graufleckigkeit”在德语),见equi。或者。微型裂缝是齿轮表面上的小裂缝(而不是蚀,其中裂缝形式的裂缝)生长到材料中。损坏的尺寸约为10-20μm深度,25-100μm长,宽度为10-20μm。用碳渗碳齿轮观察微米,但也可以在氮化,感应硬化或通过硬化齿轮中找到。显微材料主要发生在负面特定滑动区域。沿着驱动齿轮上的点A和C之间的接触路径以及从动齿轮上的点C和E之间的接触路径找到负面特定滑动。

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