Supporting leg device of energy cabin

By designing hollow tubular support legs and a cooling fan device, the problem of the single function of support legs in existing purification equipment has been solved, realizing multi-functional support, wiring and heat dissipation, and improving the overall performance of the energy chamber.

CN224033484UActive Publication Date: 2026-03-24CHINA NAT FOOD PURIFICATION TECH BEIJING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The energy compartment legs of existing purification equipment have limited functionality, lack versatility, are difficult to support and wire effectively, and have poor heat dissipation.

Method used

The design incorporates hollow tubular legs with wiring inlets and outlets, an inclined lead plate, a cooling fan, and adjustable support feet to achieve multifunctional support, wiring, and heat dissipation.

Benefits of technology

It improves support strength and stability, simplifies cable routing, ensures safe heat dissipation of cables, and enhances the overall performance of the energy chamber.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a supporting leg device of an energy cabin, which comprises at least two pairs of supporting legs which are symmetrically arranged below two sides of the energy cabin and are used for supporting the energy cabin, and is characterized in that the supporting legs are tubular, and the upper parts of the supporting legs extending into a cabin body of the energy cabin are provided with wiring and threading inlets; the side face, facing the inner side, of the lower portion of the supporting leg is provided with a wiring and threading outlet, and a wire leading plate used for leading out wires is arranged at the wiring and threading outlet in a pipe of the supporting leg. The multifunctional supporting leg is novel in structure and ingenious in design conception, multiple functions of the supporting leg can be achieved, the wiring function of the supporting leg is increased, meanwhile, the problems of cable leading-out difficulty and cooling are solved, and the comprehensive performance of the supporting leg is improved.
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Description

Technical Field

[0001] This utility model relates to a support leg device for an energy chamber, specifically to a support leg device for an energy chamber that provides energy to food purification equipment, belonging to the field of food purification technology. Background Technology

[0002] The support legs of the chambers or tanks of existing food purification equipment on the market are basically for a single load-bearing function, and the support pipes are also basically vertical structures. For example, 202410961257.7 discloses a modular industrial food purification equipment, including a power supply module. The power supply module is set above the purification tank and is supported by support legs. The support legs only play a supporting role. The support legs are difficult to integrate with the equipment. Its function is single and lacks multi-functionality. Its function and value are not high.

[0003] Based on the above-mentioned shortcomings, a leg device that can provide a multifunctional energy capsule has become a goal pursued by those skilled in the art. Summary of the Invention

[0004] The purpose of this invention is to solve the problem of the limited functionality of the support legs in the energy chamber of existing purification equipment.

[0005] To achieve the above-mentioned objectives, the technical solution of this utility model is as follows:

[0006] A leg device for an energy cabin includes: at least two pairs of legs symmetrically arranged on both sides below the energy cabin for supporting the energy cabin, characterized in that: the legs are tubular, the upper part of the legs extending into the energy cabin is provided with a wiring inlet, the lower part of the legs facing inward has a wiring outlet, and a lead plate for leading out wires is provided at the wiring outlet position inside the tube of the legs.

[0007] In a preferred embodiment, the lower end of the lead plate is connected to the lower edge of the wiring outlet, and the upper end of the lead plate extends upward at an angle inside the tube of the support leg and is connected to the inner wall of the tube.

[0008] To improve support strength, as a preferred embodiment, the outriggers are inclined outward from top to bottom.

[0009] Preferably, the outrigger includes a first segment, a second segment, and a third segment located at the top, middle, and bottom, respectively. The angle between the first segment and the ground is greater than 10 degrees and less than 45 degrees, the angle between the second segment and the ground is greater than 70 degrees and less than 90 degrees, and the angle between the third segment and the ground is 90 degrees.

[0010] As a preferred embodiment, the support leg is a tubular shape with a rectangular cross-section.

[0011] As a preferred embodiment, a cooling fan device is provided inside the energy compartment. The cooling fan device includes a cooling fan installed inside the energy compartment and an airflow duct connected to the air outlet of the cooling fan. The other end of the airflow duct extends into the tube of the support leg through the wiring inlet of the support leg.

[0012] As a preferred embodiment, the lower end of the outrigger is provided with an adjustable support foot, the adjustable support foot comprising: a foot base in contact with the ground, a vertically arranged stud that can rotate relative to the foot base on the foot base, an adjusting nut at the lower part of the stud that can drive the stud to rotate; a threaded through hole is opened at the center of the sealing plate at the lower end of the outrigger, the stud is screwed into the threaded through hole, and a locking nut for locking is provided below the sealing plate.

[0013] As a preferred embodiment, a protective decorative cover is provided outside the wiring outlet of the support leg.

[0014] By adopting the above-mentioned technical solution, this utility model designs the support legs as hollow tubes, with wiring inlets and outlets at the upper and lower ends of the support legs, respectively. This allows the cables in the energy compartment to be led through the support legs to the purification device in the purification tank below the energy compartment. In particular, an inclined lead plate is set inside the tube cavity of the support leg at the wiring outlet, which facilitates the cable lead-out and makes wiring faster, smoother, and more efficient.

[0015] Furthermore, this utility model designs each pair of outriggers so that the distance between the lower ends is wider than the distance between the upper ends, that is, each outrigger is inclined downward and outward. This can improve the strength of the outrigger support. In particular, the outrigger is designed as three sections. The bottom third section is set vertically, the middle second section is set at a large angle to the ground and inward, and the top first section is set at a small angle to the ground. This can improve rigidity on the one hand, and the vertical third section can facilitate the height adjustment of the outrigger, while the first section can facilitate the connection with the cooling fan device and the introduction of cables.

[0016] Furthermore, this utility model provides a cooling fan device near the upper end of the support leg, and guides the air blown out by the cooling fan into the tube of the support leg through an airflow duct, thereby achieving heat dissipation treatment for the cables inside the support leg tube and ensuring the safety of the cables in the suspended energy cabin.

[0017] Furthermore, this utility model features an adjustable support foot at the bottom of the outrigger. The screw on the foot base is threaded to the sealing plate at the bottom of the outrigger. The extension of the screw on the foot base can be adjusted by adjusting the nut, and then locked by locking the nut. This allows for adjustment of the outrigger's height, facilitating the adjustment of the energy cabin's height.

[0018] In summary, this utility model has a novel structure and ingenious design, which can realize the multi-functional use of the support legs, effectively solve the problems of cable wiring and cooling, and improve its overall performance. Attached Figure Description

[0019] Figure 1 This is a diagram showing the application of the support leg device of the energy cabin described in this utility model to the energy cabin in its usage state;

[0020] Figure 2 This is a partial perspective view of the support leg device of the energy cabin described in this utility model, which is applied to the energy cabin.

[0021] Figure 3 This is a perspective view of the upper part of the support leg of the support leg device of the energy cabin described in this utility model;

[0022] Figure 4 This is a perspective view of the lower part of the support leg of the support leg device of the energy cabin described in this utility model;

[0023] Figure 5 This is a perspective view of the bottom of the legs of the support leg device of the energy cabin described in this utility model.

[0024] Explanation of reference numerals in the attached drawings: 1. Support leg; 11. Wiring inlet; 12. Wiring outlet; 13. First section; 14. Second section; 15. Third section; 16. Sealing plate; 2. Cooling fan device; 21. Cooling fan; 22. One airflow duct; 3. Lead plate; 4. Adjustable support foot; 41. Foot base; 42. Adjusting nut; 43. Locking nut; 44. Stud; 5. Protective decorative cover; 100. Detailed Implementation

[0025] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings, but these preferred embodiments should not be used to limit the scope of protection of the present invention.

[0026] See Figure 1 The figure shows an energy cabin with a leg device for the energy cabin described in this utility model. The energy cabin includes a cabin body 100 supported by legs 1, which includes two pairs of legs 1.

[0027] See Figure 2-5The figure shows the support leg device of the energy cabin according to this utility model, which includes: two pairs of support legs 1, each pair of support legs 1 is symmetrically arranged on both sides of the lower part of the energy cabin, the support legs 1 are used to support the energy cabin, in this embodiment there are two pairs, if the length of the energy cabin is too long, they can also be added in pairs as needed; the support legs 1 are tubular, in this embodiment a rectangular cross-section is chosen, obviously square or circular tubes can be used, but rectangular is the better choice, the use of rectangle is conducive to improving the rigidity of the support legs, and at the same time, it is conducive to the setting of other components; each support leg 1 extends to the upper part of the energy cabin body and is provided with a wiring inlet 11, that is, the wiring inlet 11 in this embodiment is Located on the upper surface of the rectangular tube for easy cable insertion, each leg 1 has a wiring outlet 12 on its lower side facing inward, i.e., the inner side facing the purification water tank below the energy chamber. To facilitate cable exit from the wiring outlet 12, a lead plate 3 for cable exit is provided at the wiring outlet 12 position inside the tube of the leg 1. The lead plate 3 is preferably inclined, with its lower end connected to the lower edge of the wiring outlet 12 and its upper end connected to the inner side wall of the tube opposite to the wiring outlet 12 of the leg 1. Because the lead plate 3 is inclined with the inside higher than the outside, the cable can pass through the wiring outlet 12 along the lead plate 3, making the cable exit smoother.

[0028] As a preferred embodiment, the outriggers 1 are inclined outwards from top to bottom. That is, the upper end of each pair of outriggers is connected to the side of the energy cabin, while the distance between the lower ends of the outriggers is wider than the distance between the upper ends, thereby making the support more stable.

[0029] In this embodiment, as the optimal solution, the outrigger 1 includes a first segment 13, a second segment 14, and a third segment 15 located at the top, middle, and bottom, respectively. The angle between the first segment 13 and the ground is greater than 10 degrees and less than 45 degrees, the angle between the second segment 14 and the ground is greater than 70 degrees and less than 90 degrees, and the angle between the third segment 15 and the ground is 90 degrees.

[0030] To reduce the heat inside the tube of the support leg 1 and prevent the cable temperature from becoming too high, the support leg device of the energy cabin of this utility model further includes: a cooling fan device 2. The cooling fan device 2 is located inside the energy cabin, preferably near the upper end of the support leg 1. One cooling fan device 2 is installed near each support leg 1. Each cooling fan device 2 includes a cooling fan 21 and an airflow duct 22. The cooling fan 21 is installed inside the energy cabin. One end of the airflow duct 22 is connected to the air outlet of the cooling fan 21. The other end of the airflow duct 22 extends into the tube of the support leg 1 through the wiring inlet 11 of the support leg 1 to deliver air into the tube of the support leg 1. This can reduce the temperature inside the tube of the support leg 1, achieve heat dissipation of the heated cable inside the tube of the support leg 1, ensure the safety of the cable of the suspended energy cabin, and avoid problems such as cable overheating during operation that reduce lifespan or cause failure and short circuit.

[0031] As a preferred option, to facilitate adjustment of the energy compartment's installation height, it is best to have adjustable support feet 4 at the lower end of the outrigger 1, see [reference]. Figure 5 The adjustable support foot 4 includes: a foot base 41, which is disc-shaped and contacts the ground; a vertically mounted stud 44 on the foot base 41, rotatably connected to the foot base 41; an adjusting nut 42 fixed to the stud 44 at its lower part, used to drive the stud 44 to rotate; a threaded through hole 161 is opened in the center of the sealing plate 16 at the lower end of the support leg 1, and the stud 44 is screwed to the sealing plate 16 through the threaded through hole 161; a locking nut 43 is located on the stud below the sealing plate 16. When the height needs to be adjusted, the locking nut 43 can be loosened, and the adjusting nut 42 can be rotated to drive the stud 44 to rotate, thereby allowing the sealing plate 16 to rise or fall along the stud 44. When in the appropriate position, the locking nut 43 can be tightened again.

[0032] Furthermore, it is preferable to provide a protective decorative cover 5 outside the wiring outlet 12 of the support leg 1. The protective decorative cover 5 is attached to the wiring outlet 12 and has a cable outlet at its lower end. The protective decorative cover 5 can cover and hide the cable passing through the wiring outlet 12. On the one hand, the protective decorative cover 5 can protect the cable and prevent water from splashing out of the water tank and falling on the cable. On the other hand, it can also serve a decorative purpose, making the support leg pipe 1 more integrated with the purification equipment.

[0033] The above description is illustrative only and not restrictive of this utility model. This utility model aims to provide a leg device for an energy cabin, which can provide a channel for cables and raise or lower the height of the energy cabin as needed. Those skilled in the art will understand that many modifications, variations or equivalents can be made without departing from the spirit and scope defined by the claims, such as changing the cross-sectional shape of the legs, changing the angle of inclination of the legs, etc., but all of these will fall within the protection scope of this utility model.

Claims

1. A leg device for an energy capsule, comprising: At least two pairs of symmetrically arranged support legs (1) on both sides of the energy cabin for supporting the energy cabin are characterized in that: the support legs (1) are tubular, and the upper part of the support legs (1) extending into the energy cabin is provided with a wiring inlet (11), and the lower part of the support legs (1) facing inward has a wiring outlet (12), and a lead plate (3) for leading out the wire is provided at the wiring outlet (12) position inside the tube of the support legs (1).

2. The leg support device for an energy cabin according to claim 1, characterized in that: The lower end of the lead plate (3) is connected to the lower edge of the wiring outlet (12), and the upper end of the lead plate (3) extends upward at an angle inside the tube of the support leg (1) and is connected to the inner wall of the tube.

3. The leg support device for an energy cabin according to claim 2, characterized in that: The outrigger (1) is inclined and extends outward from top to bottom.

4. The outrigger device for an energy cabin according to claim 3, characterized in that: The outrigger (1) includes a first segment (13), a second segment (14), and a third segment (15) located at the top, middle, and bottom. The angle between the first segment (13) and the ground is greater than 10 degrees and less than 45 degrees. The angle between the second segment (14) and the ground is greater than 70 degrees and less than 90 degrees. The angle between the third segment (15) and the ground is 90 degrees.

5. The outrigger device for an energy cabin according to claim 4, characterized in that: The support leg (1) is a tube with a rectangular cross-section.

6. The leg device for an energy cabin according to any one of claims 1-5, characterized in that: A cooling fan device (2) is provided in the energy cabin. The cooling fan device (2) includes a cooling fan (21) installed in the energy cabin and an air volume duct (22) connected to the air outlet of the cooling fan (21). The other end of the air volume duct (22) extends into the tube of the support leg (1) through the wiring inlet (11) of the support leg (1).

7. The leg device for an energy cabin according to any one of claims 1-5, characterized in that: The lower end of the support leg (1) is provided with an adjustable support foot (4). The adjustable support foot (4) includes: a foot base (41) in contact with the ground; a stud (44) is provided on the foot base (41) and can rotate relative to the foot base (41); an adjusting nut (42) is provided at the lower part of the stud (44) to drive the stud (44) to rotate; a threaded through hole (161) is provided in the center of the sealing plate (16) at the lower end of the support leg (1); the stud (44) is screwed into the threaded through hole (161); and a locking nut (43) for locking is provided below the sealing plate (16).

8. The outrigger device for an energy cabin according to claim 6, characterized in that: The lower end of the support leg (1) is provided with an adjustable support foot (4). The adjustable support foot (4) includes: a foot base (41) in contact with the ground; a stud (44) is provided on the foot base (41) and can rotate relative to the foot base (41); an adjusting nut (42) is provided at the lower part of the stud (44) to drive the stud (44) to rotate; a threaded through hole (161) is provided in the center of the sealing plate (16) at the lower end of the support leg (1); the stud (44) is screwed into the threaded through hole (161); and a locking nut (43) for locking is provided below the sealing plate (16).

9. The leg device for an energy cabin according to any one of claims 1-5, characterized in that: A protective decorative cover (5) is provided outside the wiring outlet (12) of the support leg (1).

Citation Information

Patent Citations

  • Modularized industrial food purification equipment

    CN118595038A