An electrode storage rack for charging

CN224727424UActive Publication Date: 2026-09-08CHINA ENERGY ENG GRP TIANJIN ELECTRIC POWER CONSTR CO LTD
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Patent Information

Application Number
CN202522070033.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-09-08
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

[0003]施工现场常处于露天或半露天环境,传统保温桶缺乏专用固定支架,易因地面不平、人员碰撞发生倾倒,且现有保温桶需外接电源维持保温功能,但施工现场供电接口分散,且缺乏统一的电源适配与收纳结构,线缆杂乱易引发触电风险

Benefits of technology

[0014] The power sockets arranged in an equidistant array on the back of the partition are centrally connected to an external power source via cables, providing a unified charging interface for multiple insulated barrels. This solves the problem of scattered power supply interfaces and messy cables on the construction site. Furthermore, the elastic conductive sheet on the inner wall of the power socket and the anti-oxidation layer on the surface ensure stable power supply contact and reduce contact failures. The dust cover at the opening also prevents dust from entering the socket and causing short circuits, reducing the risk of electric shock. There is no need to frequently move the insulated barrels to find a power source, ensuring continuous operation and improving construction efficiency.

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Abstract

The utility model provides a kind of electrode heat preservation bucket frame for charging, comprising: fixed frame, fixed frame top is equipped with rain shelter frame;Placement mechanism is set to fixed frame, slide strip is symmetrically set with limiting post on fixed frame side, limiting post is set corresponding with limiting hole, there is power jack with equidistance array on the rear side of baffle, power jack is connected with external power supply by cable.Power jack with equidistance array on the rear side of baffle, concentrated connection with external power supply by cable, provide unified charging interface for multiple heat preservation barrels, solve the problem that power supply interface is dispersed in construction site, cable is messy;And the elastic conductive sheet of power jack inner wall and surface oxidation layer, can guarantee power supply contact stability, reduce contact failure, the dust cover of opening can also avoid dust into jack to cause short circuit, reduce the risk of electric shock, without frequently moving heat preservation barrel to find power supply, ensure that operation is continuously carried out, improve construction efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of insulated barrel rack technology, specifically to an insulated barrel rack for charging welding rods. Background Technology

[0002] In welding operations, welding electrodes need to be stored in a dry, temperature-controlled environment to prevent moisture from affecting welding quality. Therefore, welding electrode insulation containers have become a core auxiliary equipment. Currently, most welding electrode insulation containers used on construction sites rely on an independent, portable design.

[0003] Construction sites are often in open or semi-open environments. Traditional thermal insulation barrels lack dedicated fixed supports and are prone to tipping over due to uneven ground or collisions with people. In addition, existing thermal insulation barrels require an external power supply to maintain their insulation function, but power supply interfaces at construction sites are scattered and lack a unified power adapter and storage structure. The messy cables can easily cause electric shock risks. Utility Model Content

[0004] The present invention aims to solve the problems mentioned in the background art by providing a welding rod heat preservation barrel rack for charging.

[0005] The specific technical solution is as follows:

[0006] A welding rod heat preservation barrel rack for charging includes: a fixed frame with a rain cover mounted on the top of the fixed frame; a placement mechanism disposed on the fixed frame, the placement mechanism including limiting holes on both sides of the fixed frame, a partition between the inner walls of the fixed frame, symmetrically formed slots on the surface of the partition, sliding strips slidably connected in the slots, limiting posts symmetrically arranged on the side of the sliding strips near the fixed frame, the limiting posts corresponding to the limiting holes, and power sockets equidistantly arrayed on the rear side of the partition, the power sockets being connected to an external power source via cables.

[0007] The above-mentioned welding rod heat preservation barrel rack for charging includes: a sliding groove is provided in the empty slot, the sliding strip is slidably connected in the sliding groove, and the sliding strip is symmetrically provided with push blocks on the upper and lower sides.

[0008] The aforementioned welding rod heat preservation barrel rack for charging includes: springs symmetrically arranged on the side of the slide bar away from the limiting post; one end of the spring is fixedly connected to the partition; and the upper and lower sides of the lever are flush with the upper and lower sides of the partition.

[0009] The above-mentioned welding rod heat preservation barrel rack for charging includes: a support mechanism on the fixed frame, the support mechanism including a turntable rotatably connected to both sides of the fixed frame, a support frame fixedly connected to the surface of the turntable, a sliding frame slidably connected to the telescopic end of the support frame, a support block rotatably connected to one side of the sliding frame, and connection holes opened on the surfaces of the support frame and the sliding frame, with pins inserted into the connection holes.

[0010] The above-mentioned welding rod heat preservation barrel rack for charging is provided with an anti-slip rubber pad on the side of the support block away from the sliding frame. The surface of the anti-slip rubber pad is provided with a diamond-shaped anti-slip pattern, and the anti-slip rubber pad is detachably connected to the support block by bolts.

[0011] The above-mentioned welding rod heat preservation barrel rack for charging is provided with: the inner wall of the connection hole between the support frame and the sliding frame is provided with internal thread, the surface of the pin is provided with external thread, and the pin and the connection hole are detachably connected by thread.

[0012] The above-mentioned welding rod heat preservation barrel rack for charging includes: an elastic conductive sheet provided on the inner wall of the power socket, the surface of the elastic conductive sheet being coated with an anti-oxidation layer, and a dust cover provided at the opening of the power socket, one side of which is rotatably connected to a partition.

[0013] This utility model has the following beneficial effects:

[0014] The power sockets arranged in an equidistant array on the back of the partition are centrally connected to an external power source via cables, providing a unified charging interface for multiple insulated barrels. This solves the problem of scattered power supply interfaces and messy cables on the construction site. Furthermore, the elastic conductive sheet on the inner wall of the power socket and the anti-oxidation layer on the surface ensure stable power supply contact and reduce contact failures. The dust cover at the opening also prevents dust from entering the socket and causing short circuits, reducing the risk of electric shock. There is no need to frequently move the insulated barrels to find a power source, ensuring continuous operation and improving construction efficiency.

[0015] The turntable allows for adjustable support frame angles, and the sliding frame can extend and retract to adjust its height. Combined with the anti-slip rubber pads on the support blocks, the fixed frame can be placed stably even on sloping ground or uneven ground, effectively preventing the insulated bucket from tipping over due to collisions or unstable ground. Attached Figure Description

[0016] Figure 1 A schematic diagram of the structure of a welding rod heat preservation barrel rack for charging, provided for an embodiment of this utility model;

[0017] Figure 2 A schematic diagram of the structure of a placement mechanism for a welding rod heat preservation barrel rack for charging, provided for an embodiment of this utility model;

[0018] Figure 3 A welding rod heat preservation barrel rack for charging, provided as an embodiment of this utility model. Figure 1 Enlarged schematic diagram of the structure at point A in the middle;

[0019] Figure 4 A welding rod heat preservation barrel rack for charging, provided as an embodiment of this utility model. Figure 2 Enlarged schematic diagram of the structure at point B.

[0020] In the attached image:

[0021] 100. Fixed frame; 110. Rain shelter frame; 200. Placement mechanism; 210. Partition; 220. Empty slot; 230. Slide groove; 240. Slide bar; 250. Limiting post; 260. Toggle block; 270. Limiting hole; 280. Power socket; 290. Spring; 400. Support mechanism; 410. Turntable; 420. Support frame; 430. Sliding frame; 440. Support block; 450. Pin. Detailed Implementation

[0022] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0023] The accompanying drawings are for illustrative purposes only and are schematic diagrams, not actual images. They should not be construed as limiting the scope of this patent. To better illustrate the embodiments of this utility model, some components in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.

[0024] In the accompanying drawings of this utility model, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," "right," "inner," and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0025] In the description of this utility model, unless otherwise explicitly specified and limited, the term "connection" or similar designation indicating the connection relationship between components should be interpreted broadly. For example, it can refer to a fixed connection, a detachable connection, or an integral part; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0026] Example

[0027] This embodiment provides a welding rod heat preservation barrel rack for charging, such as... Figure 1 - Figure 4As shown, it includes: a fixed frame 100, with a rain cover 110 mounted on the top of the fixed frame 100; a placement mechanism 200, which is disposed on the fixed frame 100, the placement mechanism 200 including limiting holes 270 opened on both sides of the fixed frame 100, a partition 210 disposed between the inner walls of the fixed frame 100, a slot 220 symmetrically opened on the surface of the partition 210, a slide bar 240 slidably connected in the slot 220, a limiting post 250 symmetrically disposed on the side of the slide bar 240 near the fixed frame 100, the limiting post 250 being disposed corresponding to the limiting hole 270, and power sockets 280 equidistantly arrayed on the rear side of the partition 210, the power sockets 280 being connected to an external power source via a cable.

[0028] A welding rod insulation barrel rack for charging, employing the above-mentioned technical solution, features equidistant arrays of power sockets 280 on the rear side of the partition 210. These sockets are centrally connected to an external power source via cables, providing a unified charging interface for multiple insulation barrels. This solves the problems of scattered power supply interfaces and messy cables on construction sites. Furthermore, the elastic conductive sheet on the inner wall of the power socket 280 and the surface anti-oxidation layer ensure stable power supply contact and reduce contact failures. The dust cover at the opening also prevents dust from entering the socket and causing short circuits, reducing the risk of electric shock. It eliminates the need to frequently move the insulation barrels to find a power source, ensuring continuous operation and improving construction efficiency. The turntable 410 allows for adjustable support frame 420 angles, and the sliding frame 430 can extend and retract to adjust its height. Combined with the anti-slip rubber pads on the support block 440, the fixed frame 100 can be placed stably even on sloping ground or uneven terrain, effectively preventing the insulation barrels from tipping over due to collisions or unstable ground.

[0029] To improve the stability and guidance of the slider 240 and prevent it from shifting during adjustment, a groove 230 is provided within the slot 220. The slider 240 is slidably connected within the groove 230, and symmetrical levers 260 are arranged on both the upper and lower sides of the slider 240. The groove 230 limits the movement of the slider 240, ensuring it always moves along a predetermined trajectory and guaranteeing that the limiting post 250 is precisely aligned with the limiting hole 270. The levers 260 provide a convenient point of force for the operator to adjust the slider 240, allowing the slider 240 to be pushed without the need for additional tools.

[0030] To achieve automatic reset of the slider 240 and reduce the tedious steps of manual positioning, springs 290 are symmetrically arranged on the side of the slider 240 away from the limiting post 250. One end of the spring 290 is fixedly connected to the partition 210, and the upper and lower sides of the lever 260 are flush with the upper and lower sides of the partition 210. After releasing the lever 260, the elastic force of the spring 290 can drive the slider 240 to automatically reset, allowing the limiting post 250 to quickly engage with the limiting hole 270. In addition, the upper and lower sides of the lever 260 are flush with the upper and lower sides of the partition 210, which can prevent the lever 260 from protruding from the surface of the partition 210 and causing bumps, while ensuring that the surface of the partition 210 is flat and does not affect the placement stability of the insulation bucket.

[0031] To enhance the support capacity of the fixed frame 100 in complex environments, a support mechanism 400 is also provided on the fixed frame 100. The support mechanism 400 includes a turntable 410 rotatably connected to both sides of the fixed frame 100. A support frame 420 is fixedly connected to the surface of the turntable 410. A sliding frame 430 is slidably connected to the telescopic end of the support frame 420. A support block 440 is rotatably connected to one side of the sliding frame 430. Both the support frame 420 and the sliding frame 430 have connection holes, into which pins 450 are inserted. The sliding frame 430 can extend and retract along the support frame 420, allowing for flexible adjustment of the support height. The support block 440 can adaptively rotate according to the ground slope to ensure full contact with the ground. By inserting the pins 450 into the connection holes at different positions, the adjusted support height can be fixed, ensuring the stability of the support mechanism 400.

[0032] To increase the friction between the support block 440 and the ground and prevent the support mechanism 400 from slipping, an anti-slip rubber pad is provided on the side of the support block 440 away from the sliding frame 430. The surface of the anti-slip rubber pad has a diamond-shaped anti-slip pattern, and the anti-slip rubber pad is detachably connected to the support block 440 by bolts. The diamond pattern increases the contact friction with the ground, effectively preventing slippage. When the anti-slip rubber pad is severely worn, it is not necessary to replace the entire support block 440; only the bolts need to be removed to replace the new rubber pad, reducing maintenance costs.

[0033] To enhance the firmness of the fit between the pin 450 and the connecting hole and prevent the support height from loosening due to vibration during use, the inner wall of the connecting hole between the support frame 420 and the sliding frame 430 is provided with internal threads, and the surface of the pin 450 is provided with external threads. The pin 450 and the connecting hole are detachably connected via threads. This detachable threaded connection between the pin 450 and the connecting hole increases the connection strength and ensures the stability of the support height of the support mechanism 400.

[0034] To ensure the power supply stability and lifespan of the power socket 280, and to prevent dust and debris from entering, the inner wall of the power socket 280 is equipped with an elastic conductive sheet. The surface of the elastic conductive sheet is coated with an anti-oxidation layer, and a dust cover is provided at the opening of the power socket 280. One side of the dust cover is rotatably connected to the partition 210. When the power socket 280 is not in use, the dust cover can be closed to prevent dust from entering. When in use, simply flip the dust cover to insert the plug, making operation convenient.

[0035] In summary, the welding rod insulation barrel rack provided in this embodiment has the following advantages: the power sockets 280 arranged equidistantly on the rear side of the partition 210 are centrally connected to an external power source via cables, providing a unified charging interface for multiple insulation barrels and solving the problems of scattered power supply interfaces and messy cables on the construction site; the elastic conductive sheet on the inner wall of the power socket 280 and the surface anti-oxidation layer can ensure stable power supply contact and reduce contact failures; the dust cover at the opening can also prevent dust from entering the socket and causing short circuits, reducing the risk of electric shock; there is no need to frequently move the insulation barrels to find a power source, ensuring continuous operation and improving construction efficiency; the turntable 410 can adjust the angle of the support frame 420, and the sliding frame 430 can extend and retract to adjust the height. With the anti-slip rubber pad of the support block 440, even on sloping ground or uneven ground, the fixed frame 100 can be placed stably, effectively preventing the insulation barrels from tipping over due to collisions or unstable ground.

[0036] When in use, first place the fixing frame 100 in the designated position on the construction site, adjust the support mechanism 400 according to the flatness of the ground, rotate the turntables 410 on both sides of the fixing frame 100 so that the support frame 420 faces the direction of stable ground force; pull the sliding frame 430 along the extension and retraction of the support frame 420, adjust it until the fixing frame 100 is kept horizontal, at this time screw the pin 450 into the connection hole at the corresponding position of the support frame 420 and the sliding frame 430, fix the support height through the threaded engagement, the support block 440 will rotate adaptively with the ground slope, and the anti-slip rubber pad at the bottom is in close contact with the ground to prevent the fixing frame 100 from sliding or tipping over;

[0037] Push the levers 260 on both sides of the slide bar 240 to make the slide bar 240 slide along the slide groove 230 in the slot 220. At this time, the spring 290 on the side of the slide bar 240 away from the limiting post 250 is compressed. Release the levers 260, and the elastic force of the spring 290 will cause the slide bar 240 to automatically reset, so that the limiting post 250 on the slide bar 240 is accurately engaged in the limiting holes 270 on both sides of the fixing frame 100. Place the heat preservation bucket on the partition 210 to facilitate the placement of heat preservation buckets of different heights. Since the levers 260 are flush with the upper and lower sides of the partition 210, they will not affect the stability of the heat preservation bucket.

[0038] Flip the dust cover at the opening of the power socket 280 and insert the charging plug of the insulated container into the power socket 280. The elastic conductive sheet on the inner wall of the power socket 280 makes close contact with the plug through its own elasticity to ensure stable power supply. Insert the plugs into the power sockets 280 in the equidistant array behind the partition 210 in sequence to achieve centralized power supply and avoid messy cables.

[0039] The above are merely preferred embodiments of the present utility model and are not intended to limit the implementation methods and protection scope of the present utility model. Those skilled in the art should realize that any equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A welding rod heat preservation barrel rack for charging, characterized in that, include: A fixing frame (100) is provided with a rain cover (110) mounted on its top; A placement mechanism (200) is mounted on a fixed frame (100). The placement mechanism (200) includes limiting holes (270) on both sides of the fixed frame (100). A partition (210) is provided between the inner walls of the fixed frame (100). A slot (220) is symmetrically provided on the surface of the partition (210). A slide bar (240) is slidably connected in the slot (220). A limiting post (250) is symmetrically provided on the side of the slide bar (240) near the fixed frame (100). The limiting post (250) is correspondingly provided with the limiting hole (270). A power socket (280) is equidistantly arrayed on the rear side of the partition (210). The power socket (280) is connected to an external power source through a cable.

2. The welding rod heat preservation barrel rack for charging according to claim 1, characterized in that, A sliding groove (230) is provided in the empty groove (220), and the slide bar (240) is slidably connected in the sliding groove (230). The slide bar (240) is symmetrically provided with push blocks (260) on the upper and lower sides.

3. The welding rod heat preservation barrel rack for charging according to claim 2, characterized in that, A spring (290) is symmetrically arranged on the side of the slide bar (240) away from the limiting post (250). One end of the spring (290) is fixedly connected to the partition plate (210). The upper and lower sides of the lever block (260) are flush with the upper and lower sides of the partition plate (210).

4. The welding rod heat preservation barrel rack for charging according to claim 1, characterized in that, The fixed frame (100) is also provided with a support mechanism (400). The support mechanism (400) includes a turntable (410) rotatably connected to both sides of the fixed frame (100). A support frame (420) is fixedly connected to the surface of the turntable (410). A sliding frame (430) is slidably connected to the telescopic end of the support frame (420). A support block (440) is rotatably connected to one side of the sliding frame (430). Both the support frame (420) and the sliding frame (430) have connecting holes. A pin (450) is inserted into the connecting hole.

5. The welding rod heat preservation barrel rack for charging according to claim 4, characterized in that, The support block (440) is provided with an anti-slip rubber pad on the side away from the sliding frame (430). The surface of the anti-slip rubber pad is provided with a diamond-shaped anti-slip pattern, and the anti-slip rubber pad is detachably connected to the support block (440) by bolts.

6. The welding rod heat preservation barrel rack for charging according to claim 5, characterized in that, The inner wall of the connection hole between the support frame (420) and the sliding frame (430) is provided with internal threads, and the surface of the pin (450) is provided with external threads. The pin (450) and the connection hole are detachably connected by threads.

7. The welding rod heat preservation barrel rack for charging according to any one of claims 1-6, characterized in that, The inner wall of the power socket (280) is provided with an elastic conductive sheet, the surface of which is coated with an anti-oxidation layer, and a dust cover is provided at the opening of the power socket (280), one side of which is rotatably connected to the partition (210).