1)seam tracking焊缝跟踪
1.Study on seam tracking technique based on the Kalman Filtering;基于卡尔曼滤波的焊缝跟踪技术研究
2.Fuzzy control of seam tracking system with leading sensor;传感器前置式焊缝跟踪系统的模糊控制技术
3.Research on seam tracking system with DSP for wheeled mobile welding robot;移动式焊接机器人DSP焊缝跟踪控制系统研究
英文短句/例句
1.Longitudinal Submerged Arc Welded Pipe Weld Tracking Method and Misalignment Analysis直缝埋弧焊管焊缝跟踪方法与焊偏分析
2.Design of Submerged-arc Welding Machine with Seam-tracking Controlled by One Chip Computer;单片机控制带焊缝跟踪埋弧焊机设计
3.Study on Seam Tracing System Base on Laster-stripe and Vision;基于激光视觉的焊缝跟踪系统的研究
4.Study on the Application of Kalman Filtering State for Seam-tracking;焊缝跟踪Kalman滤波状态估计应用研究
5.Welding Seam Tracking System Based on Image Technique;基于图像技术的焊缝跟踪系统的开发
6.Research of Image Processing Technology in Welding Seam Tracking System;焊缝跟踪系统中的图像处理技术研究
7.Research of Digitize Rotating Arc Welding Seam Tracking System数字化旋转电弧焊缝跟踪系统的研究
8.Method Research of Welding Seam Tracking Based on Active Vision Sensor基于主动视觉的焊缝跟踪方法的研究
9.Design of DSP-based Automatic Seam Tracking Underwater System MO Lidong,CUI Ming,ZHANG Wenming基于DSP的水下焊缝跟踪系统设计
10.Seam Tacking Method to Visual Teaching and Correcting一种视觉示教与纠偏的焊缝跟踪方法
11.The control algorithm of welding seam tracking based on composite FYZZY-PID复合FUZZY-PID焊缝跟踪控制算法
12.Robotic underwater weld seam tracking based on visual sensor基于视觉传感的机器人水下焊缝跟踪
13.Design of Weld Tracking Self-Adaptive Fuzzy Controller in Consumable Electrode Arc Welding熔化极电弧焊焊缝跟踪自适应模糊控制器设计
14.The Research on the Arc-swing-typed TIG Welding Seam Tracking Sensor and Its System;摆动TIG焊焊缝跟踪传感器及其系统的研究
15.Research on the Weld Tracking System of Revolving Arc Sensor in GMAW-P;旋转电弧脉冲GMAW焊焊缝跟踪系统的研究
16.Research on Machine Vision for Arc Welding Seam Auto-tracking;用于弧焊焊缝跟踪的机器视觉系统研究
17.Design of the Fuzzy Control Seam Tracking System for Arc Welding Based on DSP;基于DSP的模糊控制弧焊焊缝跟踪系统的设计
18.Signal Testing and Processing in the Seam Tracking System of Arc-swing-typed Submerged Arc Welding;摆动电弧埋弧焊焊缝跟踪信号检测与处理
相关短句/例句
welding seam tracking焊缝跟踪
1.Image processing in welding seam tracking based on single-stripe laser;单条纹激光引导焊缝跟踪图像处理
2.Coordinate control of broken-line welding seam tracking for wheeled robot;轮式机器人折线焊缝跟踪协调控制方法
3.Computer vision sensing is a promising technology for welding seam tracking.为实现实时焊缝跟踪,采用了基于信号和噪声的统计特性的相关检测技术,该技术对焊缝图像清晰度要求不高。
3)weld seam tracking焊缝跟踪
1.Design of weld seam tracking fuzzy controlling system with self-adjusting parameters in arc welding;一种基于DSP的焊缝跟踪模糊控制器系统的设计
2.Robotic underwater weld seam tracking based on visual sensor基于视觉传感的机器人水下焊缝跟踪
3.The present research status of the weld seam tracking technology was introduced in this paper.介绍了焊缝跟踪技术的研究现状,分析了用于焊缝检测的传感器工作原理及其优缺点,重点论述了基于机器视觉的焊缝跟踪系统的硬件组成和图像处理的工作流程。
4)seam-tracking焊缝跟踪
1.The application of semiconductor laser in the CCD seam-tracking system;半导体激光器在CCD焊缝跟踪系统中的应用
2.A magnetic-control arc sensor for seam-tracking;一种用于焊缝跟踪的磁控电弧传感器
3.The wet underwater arc welding seam-tracking technology based on rotating arc sensor is introduced.论述了基于旋转电弧传感的湿法水下电弧焊V形坡口焊缝跟踪技术。
5)weld tracking焊缝跟踪
1.A new technology of weld tracking based on image centroid;基于视觉图像质心的焊缝跟踪新技术
2.Application of proportion and fuzzy-sliding control method upon the weld tracking比例模糊滑模控制在焊缝跟踪中的运用
3.In order to solve this problem,a real-time weld tracking technology is proposed based on the passive vision.阐述了目前"示教-再现"机器人的局限性,为解决这一问题,提出了基于被动视觉实时焊缝跟踪技术。
6)Cross Weld Tracking (CWT)横焊缝跟踪
延伸阅读
ANSYS工字梁焊缝初应力例子建立好模型…../SOLU!*ANTYPE,0/INPUT,'input','txt',/INPUT,'output1','txt',!*ISFILE,READ,1,txt, ,0SOLVE=====================!定义残余应力矩阵I=1fy=310e6!定义单元中心坐标数组,初应力数组*DIM,EleCenter,ARRAY,NumNode,3,1, , ,*DIM,EleIS,ARRAY,NumNode,1,1, , ,*DO,I, 1, NumNode,1!得到单元中心坐标*GET,EleCenter(I,1,1),ELEM,I,CENT,X*GET,EleCenter(I,2,1),ELEM,I,CENT,Y*GET,EleCenter(I,3,1),ELEM,I,CENT,Z!焊缝位置在X=1.0 到1.05 之间*IF,EleCenter(I,1,1),GT,1,THEN*IF,EleCenter(I,1,1),LT,1.05,THEN*IF,EleCenter(I,2,1),GT,0.5,THEN!上翼缘初始应力EleIS(I,1,1)=-20*fy*EleCenter(I,3,1)**2+0.3*fy*endif*IF,EleCenter(I,2,1),LT,0.0,THEN!下翼缘初始应力EleIS(I,1,1)=-20*fy*EleCenter(I,3,1)**2+0.3*fy*endif!腹板初始应力*if,EleCenter(I,2,1),GE,0.0,THEN*IF,ELECENTER(I,2,1),LE,0.5,THENEleIS(I,1,1)=4.076*fy*(EleCenter(I,2,1)-0.5)**2EleIS(I,1,1)=EleIS(I,1,1)-0.719*fy*IF,EleIS(I,1,1),LT,-0.3*fy,THENELeIS(I,1,1)=-0.3*fy*ENDIF*ENDIF*ENDIF*ENDIF*ENDIF*ENDDO===============!输出应力数值*CFOPEN,'1','txt',' '*DO,I,1,3840!*IF,EleIS(I,1,1),ne,0.,then*VWRITE,'!'(A)*VWRITE,'! Stress for element',(A,F)*VWRITE,'!'(A)*VWRITE,'eis,',I(A,F)P=EleIS(I,1,1)*VWRITE,P,0.,0.,0.,0.,0.(E,E,E,E,E,E)!*ENDIF*ENDDO*CFCLOS
