Method of Vacuum Electron Beam Welding of Chromium Bronze Butt Joints of Annular Workpieces with Sandwich Structure
A vacuum electron beam, butt joint technology, applied in electron beam welding equipment, welding equipment, welding equipment and other directions, can solve the problems of reducing production efficiency, reducing the bearing capacity of the welding seam, increasing the production cost, etc., to improve the effective thickness and The effect of bearing capacity, reducing the number of rework and welding, and reducing production costs
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Embodiment 1
[0053] (1) The outer walls of the A workpiece and the B workter are brazed and soldered, respectively, the inner wall is a sandwich structure annular structure of chrome bronze. The walls of the a workpiece and the B-workpiece have a wall thickness of 1.2 mm, and the grades are qcr0.8, and the weld diameter is φ260mm. The surface of the A workpiece and the B-workpiece chrome bronze bobbin on the blade are cleaned, and the metal gloss is exposed, welding in 24 hours.
[0054] (2) Positioning the positioning sheet in the outer wall by manual argon arc welding, and the spacing between adjacent positioning sheets is 180 mm. The displacement of the chrome bronze on the back surface of the chrome bronze on the A workpiece and B workpiece is 0.1 mm, and the gap is 0.1 mm. The copper pad material of the weld back surface is consistent with the inner wall of the workpiece, the width is 12mm, each layer has a thickness of 1 mm, and after the two-layer copper pad is placed, it is connected w...
Embodiment 2
[0059] (1) The outer walls of the A workpiece and the B workter are brazed and soldered, respectively, the inner wall is a sandwich structure annular structure of chrome bronze. The walls of the a workpiece and the B-workpiece have a wall thickness of 2 mm, and the grade is qcr0.8, and the weld is φ120 mm. The surface of the A workpiece and the B-workpiece chrome bronze bobbin on the blade are cleaned, and the metal gloss is exposed, welding in 24 hours.
[0060] (2) Positioning the positioning sheet in the outer wall in the outer wall to position the A workpiece and the B workpiece, the spacing between adjacent positioning sheets is 150 mm. The dislocation of the back surface of the chrome bronze on the back surface of the a workpiece and the B-workpiece is 0.05 mm, and the gap is 0.05 mm. The copper pad material of the weld back surface is consistent with the inner wall of the workpiece, the width is 10mm, each layer has a thickness of 1 mm, and the two-layer copper pad is place...
Embodiment 3
[0065] (1) The outer walls of the A workpiece and the B workter are brazed and soldered, respectively, the inner wall is a sandwich structure annular structure of chrome bronze. The walls of the a workpiece and the B-workpiece have a wall thickness of 3 mm, the grade of the material is qcr0.8, and the weld is diameter is φ800mm. The surface of the A workpiece and the B-workpiece chrome bronze bobbin on the blade are cleaned, and the metal gloss is exposed, welding in 24 hours.
[0066](2) Positioning the positioning sheet in the outer wall by manual argon arc welding, the spacing of the adjacent positioning sheet is 200 mm. The displacement of the chrome bronze on the back surface of the chrome bronze on the A workpiece and B workpiece is 0.1 mm, and the gap is 0.1 mm. The copper pad material of the weld back surface is consistent with the inner wall of the workpiece. The width is 14mm, each layer has a thickness of 1 mm, and the two-layer copper pad is overlapped, and the manual ...
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