首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Deterministic Micro Asperities on Bearings and Seals Using a Modified LIGA Process
【24h】

Deterministic Micro Asperities on Bearings and Seals Using a Modified LIGA Process

机译:使用改进的LIGA工艺确定轴承和密封件上的确定性微粗糙度

获取原文
获取原文并翻译 | 示例
           

摘要

Deterministic micro asperities show potential for enhancement of lubrication in confor-mal contacts as found in many bearing and seal designs. Several manufacturing methods have been proposed for deterministic micro asperities. Of these, laser texturing has emerged as the most viable option. This paper proposes the LIGA MEMs manufacturing method as an alternative. Using LIGA, surfaces with patterned micron sized surface features of arbitrary cross section (cylindrical, hex, triangular, etc.) can be fabricated from electroplated nickel, gel-cast silicon nitride, or plastic. The resulting asperities can be positive (protuberances) or negative (recesses) and can have heights (depths) from 1-1000 microns and be patterned over surface areas up to about 150 mm X 150 mm. In this paper, the LIGA method is used to fabricate a sample thrust bearing surface with a hexagonal array of positive asperities. The resulting asperities are 550 μm in average diameter, 165 μm in edge-to-edge spacing and have heights of 3-100 μm. Surface metrology indicates submicron accuracy of form and 13 nm Ra roughness on the asperity tops (land). Tribology testing in a nonpressurized oil bath indicates full film conditions and shows a 14-22% reduction in friction coefficient for a thrust surface covered with the micro asperities. A model confirms the experimental trends and indicates the potential to further reduce the friction coefficient by about 60% through optimization of the asperity geometry and layout.
机译:如许多轴承和密封设计中所发现的,确定性的微粗糙显示出潜在的改善了适形接触的润滑的能力。已经提出了几种用于确定性微粗糙的制造方法。其中,激光纹理化已成为最可行的选择。本文提出了LIGA MEMs制造方法作为替代方法。使用LIGA,可以用电镀镍,凝胶浇铸的氮化硅或塑料来制造具有任意横截面(圆柱形,六角形,三角形等)的带图案的微米级表面特征的表面。产生的凹凸可以是正的(隆起)或负的(凹入),并且高度(深度)为1-1000微米,并且可以在最大约150 mm X 150 mm的表面上进行构图。在本文中,LIGA方法用于制造带有正凹凸面六边形阵列的样品止推轴承表面。产生的凹凸不平平均直径为550μm,边对边间距为165μm,高度为3-100μm。表面计量学表明形状的亚微米精度和粗糙顶部(表面)的13 nm Ra粗糙度。在非加压油浴中进行的摩擦学测试表明膜已完全覆盖,并显示了覆盖有微细凹凸的推力表面的摩擦系数降低了14-22%。模型证实了实验趋势,并指出了通过优化凹凸形状和布局进一步将摩擦系数降低约60%的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号