首页> 外文期刊>Tribology Transactions >The Effect of Laser Texturing of Steel Surfaces and Speed-Load Parameters on the Transition of Lubrication Regime from Boundary to Hydrodynamic
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The Effect of Laser Texturing of Steel Surfaces and Speed-Load Parameters on the Transition of Lubrication Regime from Boundary to Hydrodynamic

机译:钢表面激光纹理化和速度-载荷参数对润滑状态从边界到流体动力过渡的影响

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摘要

Laser surface texturing (LST) is an emerging, effective method for improving the tribological performance of friction units lubricated with oil. In LST technology, a pulsating laser beam is used to create thousands of arranged microdimples on a surface by a material ablation process. These dimples generate hydrodynamic pressure between oil-lubricated parallel sliding surfaces. The impact of LST on lubricating-regime transitions was investigated in this study. Tribological experiments were carried out on pin-on-disk test apparatus at sliding speeds that ranged from 0.15 to 0.75 m/s and nominal contact pressures that ranged from 0.16 to 1.6 MPa. Two types of oil with different viscosities (54.8 cSt and 124.7 cSt at 40℃) were evaluated as lubricants. Electrical resistance between flat-pin and laser-textured disks was used to determine the operating lubrication regime. The test results showed that laser texturing expanded the range of speed-load parameters for hydrodynamic lubrication. LST also reduced the measured friction coefficients of contacts that operated under the hydrodynamic regime. The beneficial effects of laser surface texturing are more pronounced at higher speeds and loads and with higher viscosity oil.
机译:激光表面纹理化(LST)是一种新兴的有效方法,可改善用油润滑的摩擦单元的摩擦学性能。在LST技术中,脉冲激光束用于通过材料烧蚀工艺在表面上形成数千个排列的微凹坑。这些凹痕在油润滑的平行滑动表面之间产生流体动力压力。在这项研究中研究了LST对润滑体系转变的影响。在销钉盘测试设备上进行了摩擦学实验,其滑动速度范围为0.15至0.75 m / s,标称接触压力范围为0.16至1.6 MPa。评价了两种不同粘度的油(40℃下为54.8 cSt和124.7 cSt)作为润滑剂。使用平销盘和激光织纹盘之间的电阻来确定工作润滑方式。测试结果表明,激光纹理化扩展了流体动力润滑的速度-负载参数范围。 LST还降低了在水动力条件下工作的触头的测量摩擦系数。激光表面纹理化的有益效果在更高的速度和负载以及更高粘度的油下更加明显。

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