Freeform surface grinding and polishing by CCOS based on industrial robot

Author(s):  
HaiTao Liu ◽  
YongJian Wan ◽  
ZhiGe Zeng ◽  
LiChao Xu ◽  
HongShen Zhao ◽  
...  
Wear ◽  
1999 ◽  
Vol 225-229 ◽  
pp. 215-226 ◽  
Author(s):  
K Venkatesh ◽  
M.S Bobji ◽  
R Gargi ◽  
S.K Biswas

2019 ◽  
Vol 11 (1) ◽  
pp. 1 ◽  
Author(s):  
Ji-Young Lee ◽  
Geun-Won Jang ◽  
In-Im Park ◽  
Yu-Ri Heo ◽  
Mee-Kyoung Son

Author(s):  
А. Шоев ◽  
A. Shoev

A technology and a tool for processing work surfaces in crankshafts and cams of camshafts by endless diamond belts are considered. The characteristics of endless diamond belts and their potentialities in assurance of roughness and efficiency at work surface grinding and polishing are shown. The purposefulness in assurance of an optimum curvilinear transverse section of cams in camshafts by grinding with endless belts is defined. It is shown, that it is possible to control a curvilinear profile of cams in camshafts at the expense of a belt width and a belt tension. It is based on a theoretical basis of the interaction of a rigid die (cam) with the elastic half-space (belt). An optimum curvilinearity of the transverse section of a cam ensures the increase of its life.


2012 ◽  
Vol 186 ◽  
pp. 50-57 ◽  
Author(s):  
Tadeusz Mikolajczyk ◽  
Pawel Wasiak

Paper describes the robot equipped with USB camera for capture view of machined objects and tools holder mounted to robots wrist. Showed ideas of using view of machined surface to programming the machining process as art milling or surface grinding. Special pc control of industrial robot system was used.


Author(s):  
Lei Hong ◽  
Baosheng Wang ◽  
XiaoLan Yang ◽  
Yuguo Wang ◽  
Zhong Lin

Purpose The purpose of this paper is to present a robotic off-line programming method for freeform surface grinding based on visualization toolkit (VTK). Nowadays, manual grinding and traditional robot on-line programming are difficult to ensure the surface grinding accuracy, thus off-line programming is gradually used in grinding, however, several problems are needed to be resolved which include: off-programming environment depends on the third-party CAD software, leads to insufficient self-development flexibility; single support for robot type or workpiece model format contributes to lack of versatility; grinding point data depends on external data calculation and import process, causes human-computer interaction deterioration. Design/methodology/approach In this method, the visualization pipeline and observer/command mode of VTK are used to display the 3D model of the robot grinding system and pick up the workpiece surfaces to be grinded respectively. Two groups of cutter planes with equidistant spacing are created to form the grinding nodes on the surface, and the extraction method for the position and posture of the nodes is proposed. Furthermore, the position and posture of discretized points along the grinding curve are obtained by B-spline curve interpolation and quaternion spherical linear interpolation respectively. Finally, the motion simulation is realized by robot inverse kinematics. Findings Through a watch case grinding experiment, the results show that the proposed method based on VTK can achieving high precision grinding effect, which is obviously better than traditional method. Originality/value The proposed method is universal which does not depend on the specific forms of surface, and all calculations in simulation are completed within the system, avoiding tedious external data calculation and import process. The grinding trajectory can be generated only by the mouse picking operation without relying on the other third-party CAD software.


2011 ◽  
Vol 487 ◽  
pp. 317-321
Author(s):  
W.H. Wang ◽  
L. Teng ◽  
B.L. Zhao ◽  
Q.Q. Yang ◽  
J.J. Wang ◽  
...  

Manufacturing of precise couples is the most important key technology for hydraulic products. The hydraulic characteristics are not only strongly correlated with their geometric elements, but also associated with the surface qualities of the couples, including surface roughness and surface texture, and which primarily influence the dead zone, lag rings and friction of the couples. In order to get better surface machining quality of the precise hydraulic couples, the process of surface grinding and polishing was researched. Through process test, the optimum parameters of grinding and polishing processing were found, which made the surface roughness achieved Ra 0.031μm.


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