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Experimental investigation of oil pockets effect on abrasive wear resistance

机译:油穴对耐磨性影响的实验研究

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The experiments were carried out using a block-on-ring tester. The stationary blocks were modified by a burnishing technique in order to obtain surfaces with oil pockets of spherical shape. The area density of oil pockets varied in order to explore their effect on wear resistance and wear intensity. Specimen surfaces had dimples with depths 45-60 μm and diameters 1-1.2 mm. The area density of oil pockets S_p was in the range 4-20%. The block samples were made from bronze B101 (CuSn10P) of 138 HB hardness. The rotated rings were made from 42CrMo4 steel, hardness of 40 HRC obtained after heat treatment. The tested assembly was lubricated by mineral oil L-AN 46. The experiment was carried out under artificially increased dustiness conditions. The dust added to oil consists mainly of SiO_2 (74%) and Al_2O_3 (15%) particles. During the test friction force and temperature of block sample were registered. The tendencies of block surface topography changes during wear were analysed. It was found that sliding pairs with textured specimens were not superior to a system with a turned block with regard to abrasive wear resistance.
机译:使用环上阻滞测试仪进行实验。固定块通过打磨技术进行了改造,以获得具有球形油囊的表面。油穴的面积密度各不相同,以探讨它们对耐磨性和耐磨强度的影响。样品表面具有深度为45-60μm,直径为1-1.2 mm的凹坑。油囊S_p的面积密度在4-20%的范围内。块状样品由硬度为138 HB的青铜B101(CuSn10P)制成。旋转环由42CrMo4钢制成,热处理后硬度为40 HRC。被测组件用矿物油L-AN 46润滑。该实验是在人为增加的粉尘条件下进行的。加到油中的粉尘主要由SiO_2(74%)和Al_2O_3(15%)颗粒组成。在测试期间,记录块样品的摩擦力和温度。分析了磨损过程中块状表面形貌变化的趋势。已经发现,在耐磨性方面,带有纹理试样的滑动副并不优于带有车削滑块的系统。

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