首页> 外文期刊>Tribology letters >Adhesion and Friction Force Measurements Using an Optical Micro-Apparatus
【24h】

Adhesion and Friction Force Measurements Using an Optical Micro-Apparatus

机译:使用光学微型设备的粘合力和摩擦力测量

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

An optical micro-apparatus was designed and developed to visualize and measure adhesion and friction forces for a steel ball in contact with a sapphire window. The apparatus allows for in situ optical investigation of the contact interface during the initiation, separation and simultaneous measurement of the normal force generated within the contact. A high precision z-stage was utilized to move the steel ball at low velocities (0.1 mu m/s) to bring it into contact with the fixed sapphire window. In this study, the adhesion force between a 1-mm-diameter steel ball and sapphire window was measured and visualized when the surfaces approach and retract from each other. The experimental results demonstrated the presence of the adhesion force and stick area during the retraction of the contacting surfaces. The optical micro-apparatus is also equipped with a piezoelectric actuator to reciprocate the ball against the sapphire window to conduct sliding friction experiments at various normal loads. In this investigation, a new optical technique was also developed to measure the tangential displacement of the contacting interfaces during sliding friction tests. In this technique, the video of the contacting bodies during sliding friction cycle was processed to trace the center of the contact area and, consequently, measure the relative tangential displacement of the contact. The friction loops obtained using the measured tangential displacement exhibited a rectangular shape thus eliminating the system stiffness commonly observed in friction loop studies. The vertical and horizontal segments of the rectangular friction loops characterize the stick and slip regions of the contact, respectively.
机译:设计并开发了一种光学微型设备,以可视化并测量与蓝宝石窗口接触的钢球的附着力和摩擦力。该装置允许在触头内产生,产生的法向力的初始化,分离和同时测量期间对触头界面进行原位光学检查。利用高精度的Z型平台以低速(0.1μm / s)移动钢球,使其与固定的蓝宝石窗口接触。在这项研究中,当表面彼此靠近和缩回时,测量并可视化了直径为1毫米的钢球与蓝宝石窗口之间的粘附力。实验结果表明在缩回接触表面的过程中存在粘附力和粘附区域。光学微型设备还配备有压电致动器,以使球相对于蓝宝石窗口往复运动,以在各种正常载荷下进行滑动摩擦实验。在这项研究中,还开发了一种新的光学技术来测量滑动摩擦测试期间接触界面的切向位移。在这种技术中,在滑动摩擦循环期间接触体的视频经过处理以跟踪接触区域的中心,从而测量接触的相对切向位移。使用测得的切向位移获得的摩擦环呈现矩形,因此消除了在摩擦环研究中通常观察到的系统刚度。矩形摩擦环的垂直和水平部分分别表示触点的粘着和滑动区域。

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