Welding frame for machining embedded parts

By introducing a coolant recovery system and a hydraulic positioning and clamping mechanism into the welding frame, the problems of low efficiency and environmental pollution of existing welding frames are solved, and the recycling of coolant and the improvement of welding efficiency are realized.

CN224273815UActive Publication Date: 2026-05-26TIANJIN ZHONGLIAN STEEL STRUCTURE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN ZHONGLIAN STEEL STRUCTURE CO LTD
Filing Date
2025-06-21
Publication Date
2026-05-26

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  • Figure CN224273815U_ABST
    Figure CN224273815U_ABST
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Abstract

A welding frame for machining embedded parts comprises a welding workbench and a cooling box, hooks are connected to the outer side of the welding workbench, the cooling box is arranged on the lower portion of the welding workbench, a plurality of universal wheels are connected to the bottom of the workbench, a cooling liquid recycling box is arranged on the inner side of the cooling box, and a cooling liquid storage box is arranged on the lower portion of the cooling liquid recycling box. A liquid discharge hole is formed in the bottom of the cooling liquid recycling box and located in the top end of the cooling liquid storage box, the upper portion of the liquid discharge hole is connected with a filter screen, the lower portion of the cooling box is connected with a liquid discharge pipe, the liquid discharge pipe is communicated with the cooling liquid storage box, and the outer side of the cooling box is connected with a plastic telescopic pipe. The device has two use modes of welding a single embedded part or simultaneously welding a plurality of embedded parts, is convenient to use, wide in application range, simple to operate, reasonable in structure and high in working efficiency, and avoids resource waste.
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Description

Technical Field

[0001] This utility model relates to the field of welding frames, and in particular to a welding frame for processing embedded parts. Background Technology

[0002] An existing patent (publication number: CN220407676U) proposes a row-type welding frame for processing cable bracket embedded parts, including a rectangular welding frame. Both sides of the rectangular welding frame are fixedly connected to rotating shafts, and the outer wall of the rotating shafts is provided with a linkage flipping assembly. The linkage flipping assembly includes a concave collar bracket disposed on the outer wall of the rotating shaft, and a rotating toothed ring is fixedly connected to the outer wall of the rotating shaft and located on one side of the outer wall of the concave collar bracket. The above device has a simple usage method, low working efficiency, and its structure needs improvement. Summary of the Invention

[0003] This utility model addresses the aforementioned shortcomings of the existing technology by providing a welding frame for processing embedded parts. The device can be used in two ways: welding a single embedded part or welding multiple embedded parts simultaneously. It is convenient to use, has a wide range of applications, is simple to operate, has a reasonable structure, high work efficiency, and avoids resource waste.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] A welding frame for processing embedded parts includes a welding workbench and a cooling box. Hooks are connected to the outer side of the welding workbench, and the cooling box is located at the bottom of the workbench. Multiple casters are connected to the bottom of the workbench. A coolant recovery tank is located inside the cooling box, and a coolant storage tank is located below the coolant recovery tank. A drain hole is located at the bottom of the coolant recovery tank and at the top of the coolant storage tank. A filter screen is connected above the drain hole. A drain pipe is connected to the lower part of the cooling box and communicates with the coolant storage tank. A plastic telescopic tube is connected to the outer side of the cooling box and communicates with the coolant storage tank. One end of the plastic telescopic tube is connected to a nozzle, and hooks are connected to the outer side of the plastic telescopic tube.

[0006] The welding workbench of this utility model has two rows of positioning bases on the upper part. The positioning bases are symmetrically arranged and located on both sides of the coolant recovery tank. Multiple No. 2 fastening protrusions are connected to the inner side of the positioning bases. The No. 2 fastening protrusions are evenly distributed on the inner side of the positioning bases.

[0007] The welding workbench of this utility model has an auxiliary support on the upper part and multiple positioning grooves on the lower part of the auxiliary support. The positioning grooves are symmetrically arranged. A hydraulic pump is connected to the top of the auxiliary support and a hydraulic telescopic rod is connected to the lower part of the hydraulic pump.

[0008] The first hydraulic telescopic rod of this invention passes through an auxiliary bracket and connects to a first auxiliary connecting plate. The first auxiliary connecting plate has two auxiliary connecting rods at both ends, symmetrically arranged. The outer side of each auxiliary connecting rod is connected to a positioning groove, allowing it to slide within the groove. Multiple second hydraulic telescopic rods are connected to the lower part of the first auxiliary connecting plate, evenly distributed below it. The lower part of each second hydraulic telescopic rod is connected to a second auxiliary connecting plate. Two fastening sleeves are connected to the lower part of the second auxiliary connecting plate, symmetrically arranged. A first fastening protrusion is connected to the inner side of each fastening sleeve, evenly distributed within it. A positioning base is connected to the lower part of each fastening sleeve, corresponding to the positioning base. Beneficial effects

[0009] This utility model device has two usage modes: welding a single embedded part or welding multiple embedded parts simultaneously. It is convenient to use, has a wide range of applications, is simple to operate, and has a reasonable structure.

[0010] The coolant in the coolant storage tank of this invention enters the plastic telescopic tube and is sprayed onto the welding joint through the nozzle, cooling the welding joint, shortening the cooling time of the welding joint, and improving work efficiency.

[0011] After being sprayed, the coolant falls into the coolant recovery tank. After being filtered by the filter screen at the bottom of the coolant recovery tank, the coolant flows into the coolant storage tank through the drain hole, preventing the coolant from being sprayed onto the outside of the device and causing pollution to the surrounding environment. The coolant is also repeatedly recycled, avoiding resource waste. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of a welding frame structure for processing embedded parts according to the present invention.

[0013] Figure 2 This is a schematic diagram of the combined structure of auxiliary connecting plate No. 1 and auxiliary connecting plate No. 2 of the welding frame for processing embedded parts according to the present invention.

[0014] Figure 3 This is a cross-sectional view of a welding frame structure for processing embedded parts according to the present invention. Detailed Implementation

[0015] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:

[0016] Example 1:

[0017] A welding frame for processing embedded parts includes a welding workbench 01 and a cooling box 02. Hooks 15 are connected to the outer side of the welding workbench 01. The cooling box 02 is located at the bottom of the welding workbench 01. Multiple casters 18 are connected to the bottom of the welding workbench 01. A coolant recovery tank 13 is located inside the cooling box 02. A coolant storage tank 21 is located below the coolant recovery tank 13. A drain hole 22 is located at the bottom of the coolant recovery tank 13 and is situated at the top of the coolant storage tank 21. A filter screen 23 is connected to the upper part of the drain hole 22. A drain pipe 14 is connected to the lower part of the cooling box 02 and communicates with the coolant storage tank 21. A plastic telescopic tube 16 is connected to the outer side of the cooling box 02. The telescopic tube 16 is connected to the coolant storage tank 21. One end of the plastic telescopic tube 16 is connected to the nozzle 17, and the outside of the plastic telescopic tube 16 is connected to the hook 15. The coolant in the coolant storage tank 21 enters the plastic telescopic tube 16 and is sprayed onto the welding joint along the nozzle 17 to cool and lower the temperature of the welding joint, shortening the cooling time of the welding joint and improving work efficiency. The sprayed coolant falls into the coolant recovery tank 13. After being filtered by the filter screen 23 at the bottom of the coolant recovery tank 13, the coolant enters the coolant storage tank 21 along the drain hole 22, avoiding the coolant from being sprayed onto the outside of the device and avoiding pollution to the surrounding environment. The coolant is also repeatedly recycled to avoid resource waste.

[0018] Example 2:

[0019] The upper part of the welding workbench 01 of this utility model has two rows of positioning bases 11. The positioning bases 11 are symmetrically arranged and located on both sides of the coolant recovery tank 13. Multiple second fastening protrusions 12 are connected to the inner side of the positioning bases 11. The second fastening protrusions 12 are evenly distributed on the inner side of the positioning bases 11.

[0020] Example 3:

[0021] The welding workbench 01 of this utility model has an auxiliary support 03 on the upper part, and multiple positioning grooves 19 on the lower part of the auxiliary support 03. The positioning grooves 19 are symmetrically arranged. The top of the auxiliary support 03 is connected to a hydraulic pump 04, and the bottom of the hydraulic pump 04 is connected to a hydraulic telescopic rod 05.

[0022] Example 4:

[0023] The lower part of the first hydraulic telescopic rod 05 of this utility model passes through the auxiliary bracket 03 and connects to the first auxiliary connecting plate 06. The first auxiliary connecting plate 06 has two auxiliary connecting rods 20 at both ends, symmetrically arranged. The outer sides of the auxiliary connecting rods 20 are connected to positioning grooves 19, allowing them to slide within the grooves. Multiple second hydraulic telescopic rods 07 are connected to the lower part of the first auxiliary connecting plate 06. The second hydraulic telescopic rods 07 are evenly distributed below the first auxiliary connecting plate 06, and their lower parts are connected to... Auxiliary connecting plate 08 is connected to two fastening sleeves 09 at its lower part. The fastening sleeves 09 are symmetrically arranged. The inner side of the fastening sleeve 09 is connected to a fastening protrusion 10, which is evenly distributed on the inner side of the fastening sleeve 09. The lower part of the fastening sleeve 09 is connected to a positioning base 11, and the fastening sleeve 09 corresponds to the positioning base 11. This device has two usage modes: welding a single embedded part or welding multiple embedded parts at the same time. It is convenient to use, has a wide range of applications, is simple to operate, and has a reasonable structure.

[0024] Example 5:

[0025] Installation steps: During use, place the two embedded parts to be welded into the two symmetrical positioning bases 11 on the upper part of the welding workbench 01, with the welding joint located on the coolant recovery tank 13. Extend the second hydraulic telescopic rod 07 downwards, causing the fastening sleeve 09 to move downwards, fixing the two embedded parts into the positioning bases 11. Then, weld the two embedded parts together. Sparks from welding will fall into the coolant recovery tank 13. After welding, turn on the nozzle 17 switch. Coolant from the coolant storage tank 21 enters the plastic telescopic tube 16 and sprays onto the welding joint through the nozzle 17, cooling the joint and shortening the cooling time, thus improving work efficiency. When welding a single embedded part, extend the second hydraulic telescopic rod 07 downwards to... When multiple embedded parts are welded simultaneously, the first hydraulic telescopic rod 05 extends downward, causing the first auxiliary connecting plate 06 to move downward. When the first auxiliary connecting plate 06 moves downward, it causes multiple second auxiliary connecting plates 08 and fastening sleeves 09 to move downward together to clamp the multiple embedded parts. This device has two usage modes: welding a single embedded part or welding multiple embedded parts simultaneously. It is convenient to use, has a wide range of applications, is simple to operate, and has a reasonable structure. The sprayed coolant falls into the coolant recovery tank 13. After being filtered by the filter screen 23 at the bottom of the coolant recovery tank 13, the coolant enters the coolant storage tank 21 through the drain hole 22, preventing the coolant from spraying onto the outside of the device and avoiding pollution to the surrounding environment. The coolant is also repeatedly recycled to avoid resource waste.

[0026] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A welding frame for processing embedded parts, characterized in that: The welding workbench (01) and cooling tank (02) are included. Hooks (15) are connected to the outer side of the welding workbench (01). The cooling tank (02) is located at the bottom of the welding workbench (01). Multiple casters (18) are connected to the bottom of the workbench (01). A coolant recovery tank (13) is located inside the cooling tank (02). A coolant storage tank (21) is located below the coolant recovery tank (13). A drain hole (22) is located at the bottom of the coolant recovery tank (13). Located at the top of the coolant storage tank (21), the upper part of the drain hole (22) is connected to the filter screen (23), the lower part of the coolant tank (02) is connected to the drain pipe (14), the drain pipe (14) is connected to the coolant storage tank (21), the outside of the coolant tank (02) is connected to the plastic telescopic tube (16), the plastic telescopic tube (16) is connected to the coolant storage tank (21), one end of the plastic telescopic tube (16) is connected to the nozzle (17), and the outside of the plastic telescopic tube (16) is connected to the hook (15).

2. A welding fixture for machining a preform according to claim 1, characterized in that The welding workbench (01) has two rows of positioning bases (11) on the upper part. The positioning bases (11) are symmetrically arranged and located on both sides of the coolant recovery tank (13). Multiple second fastening protrusions (12) are connected to the inner side of the positioning bases (11). The second fastening protrusions (12) are evenly distributed on the inner side of the positioning bases (11).

3. The welding frame for processing embedded parts according to claim 2, characterized in that: The welding workbench (01) has an auxiliary support (03) on the upper part and multiple positioning grooves (19) on the lower part of the auxiliary support (03). The positioning grooves (19) are symmetrically arranged. The top of the auxiliary support (03) is connected to a hydraulic pump (04), and the bottom of the hydraulic pump (04) is connected to a hydraulic telescopic rod (05).

4. The welding frame for processing embedded parts according to claim 3, characterized in that: The lower part of the first hydraulic telescopic rod (05) passes through the auxiliary bracket (03) and connects to the first auxiliary connecting plate (06). The first auxiliary connecting plate (06) has two auxiliary connecting rods (20) at both ends. The auxiliary connecting rods (20) are symmetrically arranged. The outer side of the auxiliary connecting rod (20) is connected to the positioning slide groove (19). The auxiliary connecting rod (20) slides in the positioning slide groove (19). The lower part of the first auxiliary connecting plate (06) is connected to multiple second hydraulic telescopic rods (07). The second hydraulic telescopic rods (07) are evenly distributed in... The lower part of the No. 1 auxiliary connecting plate (06) is connected to the lower part of the No. 2 hydraulic telescopic rod (07). The lower part of the No. 2 auxiliary connecting plate (08) is connected to two fastening sleeves (09). The fastening sleeves (09) are symmetrically arranged. The inner side of the fastening sleeve (09) is connected to the No. 1 fastening protrusion (10). The No. 1 fastening protrusion (10) is evenly distributed on the inner side of the fastening sleeve (09). The lower part of the fastening sleeve (09) is connected to the positioning base (11). The fastening sleeve (09) corresponds to the positioning base (11).

Citation Information

Patent Citations

  • Row type welding frame for machining cable support embedded part

    CN220407676U