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Welding and positioning device

A technology for welding positioning and positioning blocks, which is applied in the direction of auxiliary devices, welding equipment, auxiliary welding equipment, etc., and can solve problems such as low efficiency, lack of positioning conditions, and inability to guarantee quality

Pending Publication Date: 2021-11-30
珠海格力机电工程有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, the welding of the crosspiece on the ground mainly adopts pure manual welding. First, spot welding is carried out on the spot to be welded, and the preliminary welding of each component is completed, and then the welded spot that has been spot welded is fully welded to complete the welding. With positioning conditions, when the welding position is inaccurate, it is necessary to knock off the welding material and re-spot weld, which is not only labor-intensive, the quality cannot be guaranteed, and the efficiency is low

Method used

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  • Welding and positioning device
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  • Welding and positioning device

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0049] figure 1 It is a structural schematic diagram of the welding positioning device shown in the embodiment of the present application;

[0050] see figure 1 , The welding positioning device includes: a welding table 1, an X-axis positioning block 2 and a Y-axis positioning block 3, and the welding table 1 includes: a placement surface 11, an X-axis scale surface 12 and a Y-axis scale surface 13, the placement surface 11 1. The X-axis scale surface 12 and the Y-axis scale surface 13 are adjacent to each other. The X-axis positioning block 2 is arranged on the X-axis scale surface 12 and protrudes relative to the placement surface 11. The Y-axis positioning block 3 includes a Y-axis that is connected to each other. The moving part 31 and the surface limiting part 32 are placed, and the Y-axis positioning block 3 can move along the Y-axis direction on the Y-axis scale surface 13 .

[0051] The connection mode of the X-axis positioning block 2 on the X-axis scale surface 12 ...

Embodiment 2

[0061] In practical applications, on the basis of Embodiment 1, it is necessary to satisfy the requirement that the Y-axis positioning block can move along the Y-axis direction on the Y-axis scale surface, which can be achieved by setting a chute.

[0062] The Y-axis scale surface 13 is provided with a chute extending along the Y-axis direction, and the Y-axis positioning block 3 can move in the chute.

[0063] By setting the chute, the Y-axis positioning block 3 can be moved to any position on the Y-axis scale surface 13 , which facilitates adjustment of spot welding positions for different positioning requirements.

[0064] The following beneficial effects can be obtained from the second embodiment above:

[0065] In this embodiment, a chute extending along the Y-axis direction is provided on the Y-axis scale surface, so that the Y-axis positioning block can adjust the Y-axis position of the spot welding position through the chute, which is convenient and quick.

Embodiment 3

[0067] In practical applications, on the basis of the above embodiments, it needs to satisfy that the Y-axis positioning block can move along the Y-axis direction on the Y-axis scale surface, which can also be achieved by setting positioning holes.

[0068] see figure 1 , the Y-axis scale surface 13 is provided with at least two positioning holes 14 arranged along the Y-axis direction, the at least two positioning holes 14 are arranged according to the scale on the Y-axis scale surface 13, and the Y-axis positioning block 3 is arranged on the Y-axis scale any positioning hole on the face 13.

[0069] In this embodiment, when the position of the Y-axis positioning block 3 needs to be adjusted, the Y-axis positioning block 3 can be removed and repositioned in other suitable positioning holes, or in other suitable positioning holes A new Y-axis positioning block 3 is set. Since the positioning holes 14 are arranged according to the scale, the Y-axis positioning can be performed ...

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Abstract

The invention relates to a welding and positioning device. The device comprises a welding workbench, an X-axis positioning block and a Y-axis positioning block; the welding workbench comprises a placing surface, an X-axis scale surface and a Y-axis scale surface, and every two of the placing surface, the X-axis scale surface and the Y-axis scale surface are adjacent; the X-axis positioning block is arranged on the X-axis scale surface and protrudes relative to the placing surface; the Y-axis positioning block comprises a Y-axis moving part and a placing surface limiting part which are connected with each other, and the Y-axis positioning block can move on the Y-axis scale surface in the Y-axis direction. According to the scheme, spot welding and positioning can be conducted on the welding points of a welding object, and the welding accuracy and the welding efficiency are improved.

Description

technical field [0001] The present application relates to the field of welding technology, in particular to a welding positioning device. Background technique [0002] Comprehensive supports and hangers are mainly used for supporting and fixing hot and cold water pipelines, process pipelines, trunking, fire-fighting pipelines, etc. in large buildings. , so the general engineering is to use self-made. The comprehensive support and hanger is composed of a herringbone frame, a gantry frame, a trapezoidal frame, and a crosspiece. Among them, the crosspiece is used in a large amount. During production, each component of the crosspiece needs to be welded on the ground, and then connected with the herringbone in the air. Combination welding of frame, gantry frame, ladder frame, etc. [0003] At present, the welding of the crosspiece on the ground mainly adopts pure manual welding. First, spot welding is carried out on the spot to be welded, and the preliminary welding of each com...

Claims

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Application Information

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IPC IPC(8): B23K37/00B23K37/04
Inventor 庞杰初张爱民庄京忠黄军伟陈淦彬赵成龙
Owner 珠海格力机电工程有限公司