Continuous processing equipment and processing method for heterogeneous pipe materials
A technology for processing equipment and pipes, which is applied to the continuous processing equipment and processing fields of dissimilar pipes, can solve the problems of waste of personnel, complicated processing operations, irregular shapes of pipe cross-sections, etc., and achieves the effect of reducing the operation of repositioning.
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Embodiment 2
[0043] Such as figure 2 as shown, figure 2 It is a structural view of the conversion device; the clamping assembly 11 includes a telescopic block 13 and a positioning block 14; the telescopic block 13 is connected to the positioning block 14, and the telescopic block 13 can drive the The positioning block 14 moves along the axial direction of the different pipe material 3, so that the positions of the different pipe material 3 and the processing device 2 can be adjusted, thereby facilitating the fixing of the different pipe material 3 by the fixing assembly, and at the same time It is convenient to control the determination of the processing start position of the different pipe material 3 by the processing component.
[0044] The rotating assembly 12 can be configured as a rotating disk fixed on the output shaft of a stepping motor, and the stepping motor is fixedly arranged in the base of the conversion device 1 , and the base is fixed on the bearing surface. The clamping...
Embodiment 3
[0054] In order to avoid the influence of friction when the adjacent moving blocks 145 move relative to each other, the clamping part 147 is set in a T shape, including a clamping plate 1471 and a connecting block 1525, and the clamping plate 1471 passes through the connecting block 1525 Fixedly connected with the moving block 145, the clamping plate 1471 includes a corresponding front and back, the connecting block 1525 is connected with the clamping plate 1471 on the reverse side; the sliding groove 146 corresponds to the clamping Portion 147 is configured as a T-slot. A pair of magnetic groups 148 are arranged in the engaging portion 147 and the sliding groove 146, the magnetic group 148 includes a first magnetic part and a second magnetic part, and the first magnetic part and the second magnetic part A repulsive force is provided between them to avoid direct contact between the engaging portion 147 and the sliding groove 146 .
[0055] Such as Figure 5 as shown, Figur...
Embodiment 4
[0065] The flexible layer is configured as an arc-shaped surface structure protruding inward toward the moving block 145 . For the connecting assembly, in order to ensure the non-contact setting of the engaging portion 147 and the sliding groove 146, the thickness of the engaging plate 1471 of the engaging portion 147 is smaller than the depth of the sliding groove 146 , so that there is a very small gap space between the upper and lower adjacent moving blocks 145. At the same time, for the left and right adjacent moving blocks 145, in order to avoid their relative contact, there is also a space between the left and right adjacent moving blocks 145. Minimal clearance space.
[0066] By the adjustment block 1413 moving left and right under the control of the fixed column 1412, the gap space between the adjacent moving blocks 145 is reduced, so that the concave-shaped limiting cavity wall formed by the profiling block 142 is compatible with the The dissimilar pipe material 3 is...
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