Junfen Huang
Beijing Institute of Petrochemical Technology
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Featured researches published by Junfen Huang.
robotics, automation and mechatronics | 2008
Jiqiang Huang; Junfen Huang; Yong Zou; Lipei Jiang; Long Xue; Minshuang Huang
A type of pipe welding robot system was studied. It recognizes and tracks the groove in two dimensions using one laser visual sensor. When the first layer seam is real-time tracked and welded, the groove information is memorized by robot, and the work of teaching robot is completed at the same time. Experimental results verify that the welding seam tracking can meet the needs of the automatization of pipe welding process.
Chinese Journal of Mechanical Engineering | 2016
Yong Zou; Lipei Jiang; Yunhua Li; Long Xue; Junfen Huang; Jiqiang Huang
The welding deviation detection is the basis of robotic tracking welding, but the on-line real-time measurement of welding deviation is still not well solved by the existing methods. There is plenty of information in the gas metal arc welding(GMAW) molten pool images that is very important for the control of welding seam tracking. The physical meaning for the curvature extremum of molten pool contour is revealed by researching the molten pool images, that is, the deviation information points of welding wire center and the molten tip center are the maxima and the local maxima of the contour curvature, and the horizontal welding deviation is the position difference of these two extremum points. A new method of weld deviation detection is presented, including the process of preprocessing molten pool images, extracting and segmenting the contours, obtaining the contour extremum points, and calculating the welding deviation, etc. Extracting the contours is the premise, segmenting the contour lines is the foundation, and obtaining the contour extremum points is the key. The contour images can be extracted with the method of discrete dyadic wavelet transform, which is divided into two sub contours including welding wire and molten tip separately. The curvature value of each point of the two sub contour lines is calculated based on the approximate curvature formula of multi-points for plane curve, and the two points of the curvature extremum are the characteristics needed for the welding deviation calculation. The results of the tests and analyses show that the maximum error of the obtained on-line welding deviation is 2 pixels(0.16 mm), and the algorithm is stable enough to meet the requirements of the pipeline in real-time control at a speed of less than 500 mm/min. The method can be applied to the on-line automatic welding deviation detection.
Chinese Journal of Mechanical Engineering | 2016
Long Xue; Jinming Wu; Junfen Huang; Jiqiang Huang; Yong Zou; Jian Liu
Welding polarity has influence on welding stability to some extent, but the specific relationship between welding polarity and weld quality has not been found, especially under the hyperbaric environment. Based on a hyperbaric dry welding experiment system, gas metal arc welding(GMAW) experiments with direct current electrode positive(DCEP) and direct current electrode negative(DCEN) operations are carried out under the ambient pressures of 0.1 MPa, 0.4 MPa, 0.7 MPa and 1.0 MPa to find the influence rule of different welding polarities on welding spatters and weld bead geometry. The effects of welding polarities on the weld bead geometry such as the reinforcement, the weld width and the penetration are discussed. The experimental results show that the welding spatters gradually grow in quantity and size for GMAW with DCEP, while GMAW with DCEN can produce fewer spatters comparatively with the increase of the ambient pressure. Compared with DCEP, the welding current and arc voltage waveforms for DCEN is more stable and the distribution of welding current probability density for DCEN is more concentrated under the hyperbaric environment. When the ambient pressure is increased from 0.1 MPa to 1.0 MPa, the effects of welding polarities on the reinforcement, the weld width and the penetration are as follows: an increase of 0.8 mm for the weld reinforcement is produced by GMAW with DCEN and 1.3 mm by GMAW with DCEP, a decrease of 7.2 mm for the weld width is produced by DCEN and 6.1 mm by DCEP; and an increase of 3.9 mm for the penetration is produced by DCEN and 1.9 mm by DCEP. The proposed research indicates that the desirable stability in the welding procedure can be achieved by GMAW with DCEN operation under the hyperbaric environment.
Chinese Journal of Mechanical Engineering | 2014
Long Xue; Yong Zou; Jiqiang Huang; Junfen Huang; Xinghua Tao; Yanfeng Hu
Expandable profile liner(EPL) is a promising new oil well casing cementing technique, and welding is a major EPLs connection technology. Connection of EPL is still in the stage of manual welding so far, automatic welding technology is a hotspot of EPL which is one of the key technologies to be solved. A robot for automatic welding of “8” type EPL is studied. Four quadrants of mathematical equations of the 8-shaped cross-section track of EPL, consisting of multiple arcs, are established. Mechanism program for complex cross-section welding of EPL based on angle detection is proposed according to characteristics of small size, small valleys, and large forming errors, etc. A welding velocity vector control model is established by linkage control of a welding vehicle, a small driven actuator, and a height tracking mechanism. A constant speed control model based on an angle and symmetrical analysis model of rectangular coordinate system for EPL is built. Constraint conditions of constant speed control between each section are analyzed with 4 sections in first quadrant as an example, and cooperation work mechanism of the welding vehicle and the small tracking actuator is established based on pressure detection. The constant speed control model using angle self-test can be used to avoid the need for a precise mathematical model for tracking control and to adapt manufacture and installation deviation of EPL workpiece. The model is able to solve constant speed and trajectory tracking problems of EPL cross-section welding. EPL seams welded by the studied robot are good in appearance, and non-destructive testing(NDT) shows the seams are good in quality with no welding defects. Bulge tests show that the maximum pressure of welded EPL is 35 MPa, which can fulfill expansion performance requirements.
Archive | 2008
Long Xue; Lipei Jiang; Yingyu Cao; Junfen Huang; Jie Zhao; Haitao Yu
Archive | 2008
Long Xue; Lipei Jiang; Junfen Huang; Yingyu Cao; Jie Zhao; Haitao Yu
Archive | 2008
Long Xue; Weiyi Zhang; Jialei Zhu; Yajun Liang; Junfen Huang; Yingyu Cao
Archive | 2010
Junfang Cao; Junfen Huang; Yajun Liang; Long Xue; Weiyi Zhang; Yong Zou
Archive | 2011
Jiqiang Huang; Junfen Huang; Minshuang Huang; Yong Zou; Long Xue; Lipei Jiang
Archive | 2008
Long Xue; Weiyi Zhang; Yajun Liang; Junfen Huang; Junfang Cao; Jian Tang