Spliced box body of electroplating power supply
By using a modularly designed electroplating power supply unit with a bolted central enclosure structure, the high customization costs and inconvenient maintenance of existing electroplating power supply units are solved, achieving flexible adaptation and convenient maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-03-31
AI Technical Summary
The existing electroplating power supply enclosures are expensive to customize, lack flexibility, and are inconvenient to maintain. They also cannot flexibly adjust the number of electroplating power supplies, leading to increased production costs and maintenance difficulties.
The electroplating power supply adopts a modular design with a modular assembly cabinet. The middle cabinet is detachable through bolt connection. It includes a combination of straight and L-shaped brackets and rectangular columns, which makes it easy to add or remove the number of middle cabinets to adapt to different electroplating power supply needs.
It enables flexible adaptation of the number of electroplating power sources, reduces customization costs, improves production efficiency, simplifies the maintenance process, and reduces maintenance costs.
Smart Images

Figure CN224068921U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to electroplating power supply technical field, especially relates to a electroplating power supply splicing type box. BACKGROUND
[0002] In the electroplating industry, the electroplating power supply box is an important equipment for installing and fixing the electroplating power supply. The existing electroplating power supply box is usually customized designed according to the number of installed electroplating power supply. This design has the following problems:
[0003] 1. High customization cost: every time the number of electroplating power supply changes, a new box needs to be designed and manufactured, resulting in increased production cost.
[0004] 2. Poor flexibility: since the box is a fixed structure, it cannot be flexibly adjusted according to the actual demand, limiting the expansion and adjustment of the production line.
[0005] 3. Inconvenient maintenance: the box structure is complex, and the disassembly and installation process is cumbersome, increasing the difficulty of maintenance and replacement of the electroplating power supply. UTILITY MODEL CONTENT
[0006] The utility model aims to provide a electroplating power supply splicing type box, which can flexibly increase or decrease the number of middle boxes according to the actual demand through modular design, thereby adapting to different numbers of electroplating power supply, and facilitating the maintenance and replacement of the electroplating power supply.
[0007] The above technical purpose of the utility model is realized by the following technical scheme:
[0008] A electroplating power supply splicing type box, comprising a bottom box, a plurality of middle boxes and a top box arranged in layers from bottom to top;
[0009] Two adjacent middle boxes are detachably connected by bolts;
[0010] The uppermost middle box and the top box, and the lowermost middle box and the bottom box are also detachably connected by bolts.
[0011] Further, the middle box comprises a one-piece bracket and a pair of L-shaped brackets fixedly connected with the one-piece bracket, a rectangular column is fixed to each end of the one-piece bracket and the short edge end of the L-shaped bracket, and the four rectangular columns are arranged at the four corners of the rectangle;
[0012] The L-shaped bracket and the one-piece bracket of the upper middle box are detachably connected with the rectangular column of the lower middle box by bolts.
[0013] Further, the rectangular column comprises a hollow column-shaped support part, both ends of the support part are fixedly provided with support plates, the support plates are fixedly connected with the support part in a welding mode, a plurality of bolt holes are formed on the support plates, and the support plates of the rectangular columns of the upper and lower two adjacent middle box bodies are connected through bolts.
[0014] Further, the support part comprises a long side and a short side arranged vertically, and a folding edge is formed at one end of the long side and the short side, so that a larger operation space is left on the support part, thereby facilitating the installation and disassembly of the bolts and facilitating the increase and decrease of the number of middle box bodies.
[0015] Further, the middle box body further comprises a pair of side plates and a rear plate; the side plates are detachably connected with the rectangular column through screws; and the rear plate is detachably connected at the rear ends of the two side plates through screws.
[0016] Further, a front positioning flange is formed on the linear bracket, and a rear positioning flange is formed on the L-shaped bracket.
[0017] The front positioning flange is pressed against the rear side wall of the rectangular column on the front side, and the rear positioning flange is pressed against the front side wall of the rectangular column on the rear side.
[0018] The prominent effect of the utility model is:
[0019] Compared with the prior art, the flexibility is high: by increasing or decreasing the number of middle box bodies, different numbers of electroplating power supplies can be flexibly adapted to meet different production requirements.
[0020] Low cost: modular design reduces the cost of customized production and improves production efficiency.
[0021] Convenient maintenance: the detachable connection structure makes the installation, disassembly and maintenance of the box body more convenient, and reduces the maintenance cost. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is a disassembled schematic view of the utility model;
[0023] Figure 2 is a schematic view of the utility model after assembly;
[0024] Figure 3 is a structural schematic view of the middle box body of the utility model;
[0025] Figure 4 is a structural schematic view of the rectangular column of the utility model;
[0026] Figure 5 is a structural schematic view of the linear bracket of the utility model;
[0027] Figure 6 It is the structural schematic view of the L-shaped support of the utility model;
[0028] Figure 7 It is the assembly schematic view of the utility model and the electroplating power supply.
[0029] Reference signs: 1, bottom box; 2, middle box; 3, top box; 4, electroplating power supply;
[0030] 21, linear support; 22, L-shaped support; 23, rectangular column; 24, side plate; 25, rear plate;
[0031] 211, front positioning flange;
[0032] 221, rear positioning flange;
[0033] 231, support part; 232, support plate; 233, bolt hole;
[0034] 2311, long side; 2312, short side; 2313, flange. DETAILED DESCRIPTION
[0035] The specific embodiments of the utility model will be further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.
[0036] The following reference Figures 1 to 7 The embodiments of the utility model are described:
[0037] An electroplating power supply splicing type box, as Figure 1 shown, comprising bottom box 1, multiple middle boxes 2 and top box 3 arranged in sequence from bottom to top;
[0038] Two adjacent middle boxes 1 are detachably connected by bolts; electroplating power supply 4 is inserted into middle box 2, and the two are assembled as Figure 7 shown.
[0039] The uppermost middle box 2 and the top box 3, and the lowermost middle box 2 and the bottom box 1 are also detachably connected by bolts, and the shape of the combined bottom box, multiple middle boxes and top box is as Figure 2 shown, and when used, a proper number of middle boxes can be adapted according to the number of electroplating power supplies required to be installed, so as to meet the needs of various working conditions.
[0040] The middle box structure is as Figure 3As shown, the middle box 2 comprises a one-shaped support 21 and a pair of L-shaped supports 22 fixedly connected with the one-shaped support 21, and a rectangular column 23 is fixedly arranged at each end of the one-shaped support 21 and the short end of the L-shaped support 22, and the four rectangular columns 23 are arranged in a rectangular four-corner position;
[0041] The L-shaped support and the one-shaped support are the basic framework of the whole middle box and are the main load-bearing components after the electroplating power supply is installed.
[0042] The middle box 2 further comprises a pair of side plates 24 and a rear plate 25; the side plates 24 are detachably connected with the rectangular columns 23 through screws; and the rear plate 25 is detachably connected at the rear ends of the two side plates 24 through screws, so that the maintenance and repair work of a certain electroplating power supply or a certain small module is facilitated.
[0043] The rectangular column structure is as shown in Figure 4 The rectangular column 23 comprises a support part 231 in a hollow columnar shape, and support plates 232 are fixedly arranged at both ends of the support part 231, and the support plates 232 are fixedly connected with the support part 231 through welding, and a plurality of bolt holes 233 are formed in the support plates 232, and the support plates 232 of the rectangular columns 23 of the upper and lower adjacent middle boxes 2 are connected through bolts, and the bolts pass through the bolt holes and the corresponding L-shaped supports 22 or one-shaped supports 21.
[0044] The support part 231 comprises a long side 2311 and a short side 2312 arranged vertically, and a folding edge 2313 is formed at one end of each of the long side 2311 and the short side 2312, so that a larger operation space is left on the support part, thereby facilitating the installation and disassembly work of the bolts and facilitating the increase or decrease of the number of middle boxes.
[0045] The positioning folding edge structure is as shown in Figure 5 、 Figure 6 The one-shaped support 21 is formed with a front positioning folding edge 211, and the L-shaped support 22 is formed with a rear positioning folding edge 221.
[0046] The front positioning folding edge 211 is pressed against the rear side wall of the front rectangular column 23, and the rear positioning folding edge 221 is pressed against the front side wall of the rear rectangular column 23, and the positioning effect of the front and rear positioning folding edges facilitates the alignment work of the upper and lower middle boxes and facilitates the installation and splicing of the middle boxes.
[0047] The above merely is the preferred embodiment of the present application, it should be pointed out that, for ordinary skilled in the art, without departing from the technical principles of the present application, under the premise of, can also make a number of improvements and variations, the above assumptions these improvements and variations should also be considered as the protection scope of the present application.
Claims
1. A modular box for electroplating power supplies, characterized by: The bottom box (1), a plurality of middle boxes (2) and a top box (3) are sequentially arranged from bottom to top. Two adjacent middle boxes (2) are detachably connected by bolts. The uppermost middle box (2) and the top box (3) and the lowermost middle box (2) and the bottom box (1) are also detachably connected by bolts.
2. The modular enclosure for electroplating power supplies of claim 1, wherein: The middle box (2) comprises a one-shaped bracket (21) and a pair of L-shaped brackets (22) fixedly connected with the one-shaped bracket (21), and a rectangular column (23) is fixedly arranged at each end of the one-shaped bracket (21) and the short edge end of the L-shaped bracket (22), and the four rectangular columns (23) are arranged at the four corners of the rectangle. The L-shaped bracket (22) and the one-shaped bracket (21) of the upper middle box (2) are detachably connected with the rectangular column (23) of the lower middle box (2) by bolts.
3. The modular enclosure of claim 2, wherein: The rectangular column (23) comprises a hollow column-shaped support part (231), and support plates (232) are fixedly arranged at both ends of the support part (231), and a plurality of bolt holes (233) are formed in the support plates (232).
4. The modular enclosure for electroplating power supplies of claim 3, wherein: The support part (231) comprises a long edge (2311) and a short edge (2312) arranged vertically, and a folding edge (2313) is formed at one end of each of the long edge (2311) and the short edge (2312).
5. The modular enclosure of claim 2, wherein: The middle box (2) further comprises a pair of side plates (24) and a rear plate (25), the side plates (24) are detachably connected with the rectangular column (23) by screws, and the rear plate (25) is detachably connected at the rear ends of the two side plates (24) by screws.
6. The modular enclosure for electroplating power supplies of claim 2, wherein: A front positioning flange (211) is formed on the one-shaped bracket (21), and a rear positioning flange (221) is formed on the L-shaped bracket (22). The front positioning flange (211) is pressed against the rear side wall of the front rectangular column (23), and the rear positioning flange (221) is pressed against the front side wall of the rear rectangular column (23).