首页 | 本学科首页   官方微博 | 高级检索  
     

非接触式激光钢丝圈内直径测量仪的设计
引用本文:李建黎,李雪东.非接触式激光钢丝圈内直径测量仪的设计[J].橡胶科技,2021,19(1):0039-0041.
作者姓名:李建黎  李雪东
作者单位:山东玲珑轮胎股份有限公司,山东玲珑轮胎股份有限公司
摘    要:介绍非接触式激光钢丝圈内直径测量仪的构成、工作原理和测量过程。该测量仪包括圆形激光三角测量传感器、定位传感器的机械部件以及电控部分,激光发射器可360°发射激光,每次测量可得到径向360°的内部几何特征轮廓线;通过采集特征点数据、配合软件算法可直接测量出轮胎钢丝圈内直径及其平均值、最大值、最小值、极差值和椭圆度等;电控部分可高效稳定地控制机械部件的动作时序及定位,并将检测结果通过人机交互界面传输给终端,实现了柔性、动态、非接触、高精度地检测,可在不破坏钢丝圈结构的情况下一次性精确测量钢丝圈内直径和椭圆度。

关 键 词:激光钢丝圈内直径测量仪  传感器  非接触式  轮胎  钢丝圈  内直径  椭圆度
收稿时间:2020/9/18 0:00:00
修稿时间:2020/9/18 0:00:00

Design on Non-contact Laser Instrument for Measuring Inner Diameter of Bead Ring
Authors:LI Jianli and LU Xuedong
Affiliation:(Shandong Linglong Tire Co.,Ltd,Zhaoyuan 265400,China)
Abstract:The structure,working principle and measuring process of the non-contact laser instrument for measuring the inner diameter of bead ring were introduced.The instrument consisted of a circular laser triangulation sensor,mechanical parts of the positioning sensor and electronic control parts.The laser transmitter could emit 360°laser,and each measurement could obtain the radial 360°geometric characteristic contour line.By collecting the characteristic point data and cooperating with the software algorithm,the inner diameter of the bead ring and its average value,maximum value,minimum value,value range,and the ellipticity of the bead ring could be directly measured.The electronic control parts could effectively and stably control the action sequence and positioning of the mechanical components,and transmit the detection results to the terminal through the human-computer interface,which realized flexible,dynamic,non-contact and high-precision detection.With this device,the inner diameter and ovality of the bead ring could be accurately measured at one time without damaging the structure of the bead ring.
Keywords:laser instrument for measuring inner diameter of bead ring  circular laser triangulation sensor  non-contact  tire  bead ring  inner diameter  ovality
本文献已被 CNKI 维普 等数据库收录!
点击此处可从《橡胶科技》浏览原始摘要信息
点击此处可从《橡胶科技》下载全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号