Power supply mounting device of food purifier
By installing a mounting plate horizontally along the longitudinal direction and tilting the power supply inside the energy chamber of the food purification equipment, combined with fastening and anti-slip structural components, the problems of low space utilization and condensation hazards inside the energy chamber are solved, achieving safe and reliable operation of the power supply and good heat dissipation.
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
The power supply installation in the energy compartment of existing food purification equipment has low space utilization and poses a safety hazard to the power supply due to condensation, affecting the reliability of power supply.
An installation plate is installed horizontally along the longitudinal direction inside the energy compartment. The power supply is installed via an inclined mounting bracket and secured with fastening and anti-slip structural components to ensure that the power supply is installed at an angle, forming a ventilation channel, utilizing the compartment space and preventing condensation buildup.
It improves the space utilization of the energy compartment, ensures that the power supply operates in a safe state, avoids damage to the power supply from condensation, and achieves good heat dissipation.
Smart Images

Figure CN224033532U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a power supply installation device for a food purification machine, specifically a power supply installation device inside the energy chamber of a food purification equipment, belonging to the field of food purification technology. Background Technology
[0002] Existing food purification equipment on the market typically uses a cabinet structure for its energy compartment, which is independent of the purification equipment and connects the power supply to the core components of the purification equipment via cables. A problem with this is that the cables need to be laid over long distances, which reduces the reliability of the power supply to the purification equipment. Therefore, the applicant has developed an energy compartment for power supply located above the purification equipment, as disclosed in patent 202410961257.7, which discloses a modular industrial food purification equipment including a power supply module positioned above the purification tank. This solves the problem of long-distance cable laying. However, since the energy compartment is located above the purification tank, how to design the power supply module within the compartment to suit the above-tank operating conditions, avoid safety hazards from condensation within the energy compartment, and ensure safe operation of the power supply equipment are crucial issues. Furthermore, given the limited space above the purification tank, optimizing the space of the energy compartment and improving space utilization are urgent problems to be solved.
[0003] Based on the above-mentioned shortcomings, a power supply installation device for food purifiers that can improve the utilization rate of energy compartment space and ensure the safety of power supply operation has become the goal pursued by those skilled in the art. Summary of the Invention
[0004] The purpose of this utility model is to provide a power supply installation device for a food purifier, which can effectively improve the space utilization of the energy compartment and ensure safe and reliable power supply operation.
[0005] To achieve the above-mentioned objectives, the technical solution of this utility model is as follows: a power supply installation device for a food purifier, characterized in that it includes: a mounting plate installed horizontally along the longitudinal direction inside the energy chamber; several power supplies are arranged in a row and inclined on the mounting plate; the power supplies are installed by two power supply mounting brackets that install the power supplies at an inclined angle; the two power supply mounting brackets are respectively located on both ends of the mounting plate; each power supply mounting bracket includes: a base plate horizontally arranged and installed on the mounting plate; and an inclined load-bearing panel integrally formed on the base plate; the power supplies are installed on the load-bearing panels of the two power supply mounting brackets.
[0006] As a preferred embodiment, the included angle between the load-bearing panel and the mounting plate is greater than or equal to 30° and less than 90°.
[0007] As a preferred embodiment, the included angle between the load-bearing panel and the mounting plate is greater than or equal to 45° and less than or equal to 60°.
[0008] As a preferred embodiment, the upper and lower parts of the load-bearing panel are respectively provided with fastening structural members and anti-slip structural members for installing the power supply, and the power supply is installed on the load-bearing panel through the fastening structural members and anti-slip structural members.
[0009] As a preferred embodiment, the anti-slip structural component includes a support plate perpendicular to the load-bearing panel for supporting the power supply and two support plates located below the support plate and on both sides of the load-bearing panel for supporting the support plate; a channel for air supply is formed between the support plate and the mounting plate.
[0010] As a preferred embodiment, the fastening structure includes a locking plate disposed opposite to the support plate on the upper end of the load-bearing panel and a fixing plate disposed perpendicular to the locking plate and connected to the load-bearing panel.
[0011] As a preferred embodiment, the load-bearing panel has two uprights on its rear sides for supporting the load-bearing panel, and the width of the uprights gradually decreases from bottom to top.
[0012] This invention, employing the aforementioned technical solution, utilizes elongated mounting plates symmetrically arranged longitudinally along both sides of the central crossbeam within the energy chamber of a food purification equipment. Power supplies can be sequentially arranged on these mounting plates. Furthermore, by using two power supply mounting brackets with their load-bearing panels angled, the power supplies are mounted at an angle. This design maximizes the use of the chamber's height and saves on length space, improving the energy chamber's space utilization. Another crucial advantage is that, since the energy chamber is located above the purification tank, which requires a low operating temperature to maintain food freshness, and the power supplies generate and release heat during operation, condensation can form inside the chamber. The angled mounting of the power supplies prevents condensation from accumulating on them. Additionally, an internal fan maintains ventilation within the energy chamber, facilitating the removal of condensation and eliminating safety hazards. Moreover, by designing two power supply mounting brackets supporting both sides of the power supply, the back of the power supply is exposed, allowing for better heat dissipation.
[0013] Furthermore, this utility model secures the power supply to the power supply mounting bracket by fastening structural components and anti-slip structural components. In particular, the anti-slip structural components have a certain height, so that the lower end of the power supply is suspended in the air, forming a channel for airflow between the lower end of the power supply and the mounting plate, which is more conducive to the heat dissipation of the power supply.
[0014] Furthermore, this utility model designs the load-bearing panel as follows: the thickness gradually decreases from bottom to top, with a larger thickness at the bottom to improve its rigidity and strength, and a gradually smaller thickness at the top to reduce weight.
[0015] In summary, this utility model has a novel structure and ingenious design, which effectively improves the space utilization of the energy compartment and ensures safe and reliable power supply. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the installation of the power supply installation device of the food purifier described in this utility model on the energy chamber;
[0017] Figure 2 , 3 4, 5 The power supply installation device of the food purifier described in this utility model removes the mounting plate and combines the power supply and power supply mounting bracket in a three-dimensional manner. Figure 1 3D Figure 2 3D exploded view and side view.
[0018] Explanation of reference numerals in the attached drawings: Mounting plate 1, Power supply mounting bracket 2, Base plate 21, Load-bearing panel 22, Fastening structural component 23, Locking plate 231, Fixing plate 232, Anti-slip structural component 24, Support plate 241, Support plate 242, Vertical plate 25, Power supply 3, Energy chamber 100, Cooling fan 200, Ventilation hole 300. Detailed Implementation
[0019] 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.
[0020] See Figure 1-5The figure shows a power supply installation device for a food purifier according to the present invention, which includes: a mounting plate 1 arranged horizontally along the longitudinal direction. The mounting plate 1 is a long strip and is installed inside the energy chamber. Several power supplies 3 are arranged in a row along the longitudinal direction and at an angle on the mounting plate 1. The number of power supplies 3 is determined according to the length of the mounting plate 1. Each power supply 3 is installed by a set of power supply mounting brackets 2. Each set of power supply mounting brackets 2 consists of two brackets, i.e., two power supply mounting brackets on the left and right sides support one power supply 3. Each power supply mounting bracket 2 includes: a horizontally arranged base plate 21 for connecting and fixing to the mounting plate 1, and an angled load-bearing panel 22, which is disposed on or integrally formed with the base plate. On 21, the load-bearing panel 22 is set at an angle, so that all the power supplies 3 are installed at an angle. The advantages of the angled installation are: it helps to prevent condensation from remaining on the power supply, which could damage the power supply or cause a short circuit. Another point is that it can greatly improve the space utilization. If it is placed horizontally, the length of the cabin will be too long. If it is installed vertically, the height of the cabin will be too high. Therefore, the angled setting of the power supply will improve the space utilization of the cabin. The power supply 3 is installed on the load-bearing panel 22 of the two power supply mounting brackets 2. The two power supply mounting brackets 2 support the power supply on both sides, which can expose most of the back of the power supply (the surface in contact with the load-bearing panel 22), which is conducive to heat dissipation and ventilation of the power supply.
[0021] As a preferred embodiment, the angle of inclination between the load-bearing panel 22 and the mounting plate 1, i.e., the included angle α, is greater than or equal to 30° and less than 90°. Ideally, it is greater than or equal to 45° and less than or equal to 60°; in this embodiment, it is 55°, which provides the best space utilization.
[0022] As a preferred embodiment, fastening structural members 23 and anti-slip structural members 24 for installing power supply 3 are respectively provided at the upper and lower parts of the load-bearing panel 22. Power supply 3 is installed on load-bearing panel 22 through fastening structural members 23 and anti-slip structural members 24. The anti-slip structure 24 includes a support plate 241 perpendicular to the load-bearing panel 22 and two support plates 242 located below the support plate 241. The support plate 241 supports the power supply 3, and the support plates 242 are located on both sides of the load-bearing panel 22 to support the support plate 241. A channel for airflow is formed between the support plate 241 and the mounting plate 1, that is, the support plate 241 is a certain distance from the bottom surface of the base plate 21, thus forming a ventilation channel at the lower end of the power supply for heat dissipation. The fastening structure 23 includes a locking plate 231 and a fixing plate 232 located on the upper end of the load-bearing panel 22. The locking plate 231 and the support plate 241 are arranged opposite to each other on the load-bearing panel 22, with the power supply 3 in the middle. The upper and lower ends of the power supply 3 are connected to the locking plate 231 and the support plate 241 by fixing bolts. The fixing plate 232 is set perpendicular to the locking plate 231 and is connected and fixed to the load-bearing panel 22 by screw fasteners.
[0023] During use, there are convection cooling fans 200 at both ends inside the energy chamber 100, and ventilation holes 300 on the end plates at both ends. The way the power supply 3 is installed on the power supply mounting bracket 2 provides space above, below, left, right, front, and back of the power supply. This way, when the air blown by the cooling fans 200 inside the energy chamber blows towards the front of the power supply 3, eddies are easily formed at the back, thereby carrying away the residual heat on the back of the power supply 3 and achieving a good heat dissipation effect. It also makes it easy to remove condensate from the power supply.
[0024] To improve the rigidity of the load-bearing panel 22, it is preferable that two upright plates 25 are provided on both sides of the rear of the load-bearing panel 22 for supporting the load-bearing panel 22, and the width of the upright plates 25 gradually decreases from bottom to top. The lower part of the upright plate 25 is wider, which improves the support rigidity and strength, and the upper part gradually narrows, increasing the accommodation space between adjacent power supply mounting brackets 2. This allows the power supply installed in front of the load-bearing panel 22 to move forward, making its structure more compact and improving space utilization.
[0025] The above description is illustrative only and not restrictive. The present invention aims to provide a power supply installation device for a food purifier. 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 the length of the mounting plate to increase or decrease the corresponding number of power supplies, changing the angle of the load-bearing panel, etc., but all of these will fall within the protection scope of the present invention.
Claims
1. A power supply mounting device for a food purifier, characterized by comprising: It includes: The installation plate (1) is longitudinally and horizontally arranged in the energy cabin cabin body, a plurality of power supplies (3) are sequentially and obliquely arranged on the installation plate (1), the power supply (3) is installed by two power supply installation supports (2) which make the power supply be installed at an inclined angle, two power supply installation supports (2) are respectively arranged on the upper surface of the two ends of the installation plate (1), the power supply installation support (2) includes: a seat plate (21) which is horizontally arranged and installed on the installation plate (1), and a bearing panel (22) which is obliquely arranged and integrally formed on the seat plate (21); the power supply (3) is installed on the bearing panel (22) of the two power supply installation supports (2).
2. The power installation device for a food purifier according to claim 1, wherein The included angle between the bearing panel (22) and the installation plate (1) is greater than or equal to 30° and less than 90°.
3. The power installation device for a food purifier according to claim 2, wherein The included angle between the bearing panel (22) and the installation plate (1) is greater than or equal to 45° and less than or equal to 60°.
4. The power installation device for a food purifier according to claim 3, wherein The upper end and the lower part of the bearing panel (22) are respectively provided with a fastening structure (23) and a slip stop structure (24) for installing the power supply (3), and the power supply is installed on the bearing panel (22) through the fastening structure (23) and the slip stop structure (24).
5. The power installation device for a food purifier according to claim 4, wherein The slip stop structure (24) includes a supporting plate (241) which is perpendicular to the bearing panel (22) and is used for supporting the power supply, and two supporting plates (242) which are located below the supporting plate (241) and are arranged on the two sides of the bearing panel (22) and are used for supporting the supporting plate (241); the supporting plate (241) and the installation plate (1) form a channel for air passing.
6. The power installation device of the food purifier according to claim 5, wherein The fastening structure (23) includes a locking plate (231) which is arranged on the upper end of the bearing panel (22) and is opposite to the supporting plate (241), and a fixing plate (232) which is arranged vertically to the locking plate (231) and is connected with the bearing panel (22).
7. The power installation device of the food purifier according to claim 4, wherein Two vertical plates (25) are arranged on the two sides of the rear surface of the bearing panel (22) and are used for supporting the bearing panel (22), and the width of the vertical plate (25) gradually decreases from bottom to top.
Citation Information
Patent Citations
Modularized industrial food purification equipment
CN118595038A