Guide rail wire passing structure of a sterilizing cabinet
Patent Information
- Application Number
- CN202522006835.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-17
AI Technical Summary
上述消毒柜利用了过线外管与过线内管之间的内外套设形成导线区域,连接导线则设置在导线区域中,但是,过线外管与过线内管的套设装配工艺烦琐,而且由于利用两个构件的配合才能形成导线区域,所以生产成本高
[0014]This utility model, through the structural improvement described above, utilizes a slide rail sleeve to protect the slide rail assembly of the drawer door while integrally bending a wire channel above or below the slide rail sleeve. This avoids the drawback of existing technologies requiring multiple components to form the wire area, thereby reducing production costs. Furthermore, a door wire passage hole is provided on the drawer door, allowing the wires of the circuit board inside the drawer door to pass through the door wire passage hole and be placed on the wire channel. This not only facilitates wire arrangement but also, since the wire channel can be set above or below the slide rail sleeve, the wire arrangement can be adjusted according to the production and assembly of the disinfection cabinet, thus simplifying the wire arrangement process and making it highly practical.
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Figure CN224723475U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of disinfection cabinet technology, specifically a guide rail cable routing structure for a disinfection cabinet. Background Technology
[0002] Chinese utility model patent CN201120407573.8 discloses an embedded disinfection cabinet, including a frame, an inner guide rail groove, a guide rail, and a door. The inner guide rail groove is horizontally mounted on the frame. One end of the guide rail is fixed to the inner guide rail groove, and the other end of the guide rail is fixedly connected to the door. The guide rail is provided with an outer wire guide tube and an inner wire guide tube. The outer wire guide tube is sleeved over the inner wire guide tube and movably connected to it. Connecting wires are provided in both the outer and inner wire guide tubes. At least one control panel is provided on the door, and the control panel is electrically connected to a main control device through the connecting wires. This disinfection cabinet utilizes the inner and outer sleeves between the outer and inner wire guide tubes to form a wire guide area, where the connecting wires are located. However, the assembly process of the outer and inner wire guide tubes is cumbersome, and because the wire guide area requires the cooperation of two components, the production cost is high. Therefore, further improvement is necessary. Utility Model Content
[0003] The present invention aims to provide a guide rail cable routing structure for a disinfection cabinet to overcome the shortcomings of the prior art.
[0004] A guide rail cable routing structure for a disinfection cabinet designed for this purpose includes a drawer door body, a slide rail sleeve on the drawer door body, a cable routing groove integrally bent above or below the slide rail sleeve, a circuit board inside the drawer door body, and a door body cable routing hole corresponding to the cable routing groove, wherein the wires on the circuit board pass through the door body cable routing hole and are placed on the cable routing groove.
[0005] The front end of the wire guide groove is spaced apart from or relies on the back of the drawer door, and the outer side of the wire guide groove is spaced apart from or relies on the slide rail sleeve.
[0006] The slide rail sleeve has an integrally bent edge flange on the upper or lower edge towards the inward side. The edge flange on the upper edge is bent downward or the edge flange on the lower edge is bent upward to form an inner flange. The inner flange is bent in the direction of the slide rail sleeve to form an extended flange. The wire groove is formed between the edge flange, the inner flange, and the extended flange.
[0007] The extended flange is integrally bent with a reinforcing flange, and the reinforcing flange and the extended flange are stacked on top of each other.
[0008] The slide rail sleeve, the edge flange, the inner flange, and the extended flange are vertically fitted together, and the fitting points are arc-shaped transitions.
[0009] The front and rear end extension lengths of the extended flange and the reinforced flange are the same, and the front and rear end extensions of the slide rail sleeve, the edge flange, and the inner flange are the same, wherein the front and rear end extension lengths of the extended flange and the reinforced flange are less than the front and rear end extension lengths of the slide rail sleeve, the edge flange, and the inner flange.
[0010] The side portions of the extended flange and the reinforced flange respectively form gaps between themselves and the slide rail sleeve.
[0011] The drawer door includes a door panel and a door bracket. The front of the door bracket is open and forms an open cavity. The circuit board is fixedly installed in the open cavity. The door panel is fixedly installed in front of the door bracket and covers the open cavity. The front end of the slide rail sleeve is provided with a sleeve connecting block and is vertically fixed to the back of the door bracket through the sleeve connecting block.
[0012] The sheath connecting block is composed of a first connecting piece and a second connecting piece that are bent perpendicularly to each other. The first connecting piece is provided with a first connecting piece fastening part and a sheath connecting block wire hole. The first connecting piece fastening part is fixedly engaged with the back of the door bracket, and the sheath connecting block wire hole is connected to the wire hole of the door body. The second connecting piece is provided with a second connecting piece fastening part, and the slide rail sheath is provided with a sheath fastening part. The second connecting piece fastening part and the sheath fastening part correspond to each other and are fixedly engaged by fasteners.
[0013] A door body connecting block is also fixedly installed inside the open cavity. A door body fastening part and a door body wire passage hole are provided on the back of the door bracket. A door body connecting block fastening part and a door body connecting block wire passage hole are provided on the door body connecting block. A first connecting piece fastening part and a sheath connecting block wire passage hole are provided on the sheath connecting block. The door body connecting block fastening part, the door body fastening part, and the first connecting piece fastening part correspond to each other and are fixedly engaged by fasteners. The door body connecting block wire passage hole, the door body wire passage hole, and the sheath connecting block wire passage hole correspond to each other and are connected. A door bracket notch is also provided at the bottom of the door bracket. A handle is fixedly installed on the door bracket notch.
[0014] This utility model, through the structural improvement described above, utilizes a slide rail sleeve to protect the slide rail assembly of the drawer door while integrally bending a wire channel above or below the slide rail sleeve. This avoids the drawback of existing technologies requiring multiple components to form the wire area, thereby reducing production costs. Furthermore, a door wire passage hole is provided on the drawer door, allowing the wires of the circuit board inside the drawer door to pass through the door wire passage hole and be placed on the wire channel. This not only facilitates wire arrangement but also, since the wire channel can be set above or below the slide rail sleeve, the wire arrangement can be adjusted according to the production and assembly of the disinfection cabinet, thus simplifying the wire arrangement process and making it highly practical. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the assembly structure of an embodiment of the present utility model.
[0016] Figure 2 This is a schematic diagram of the assembly structure from another perspective of an embodiment of the present invention.
[0017] Figure 3 This is an exploded structural diagram of an embodiment of the present invention.
[0018] Figure 4 This is an exploded structural diagram from another perspective of an embodiment of the present invention.
[0019] Figure 5 for Figure 3 A magnified structural diagram at point A in the diagram.
[0020] Figure 6 for Figure 4 A magnified structural diagram at point B in the diagram.
[0021] Figure 7 This is a schematic diagram of the assembly cross-sectional structure of an embodiment of the present invention.
[0022] Figure 8 This is a schematic diagram of the assembly cross-section structure from another perspective of an embodiment of the present invention.
[0023] Figure 9 This is an exploded structural diagram of the slide rail sleeve and sleeve connecting block.
[0024] Figure 10 This is an exploded structural diagram of the slide rail sleeve and sleeve connecting block from another perspective. Detailed Implementation
[0025] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0027] See Figures 1-10 The guide rail wiring structure of this disinfection cabinet includes a drawer door 1, a slide rail sleeve 2 on the drawer door 1, a wiring groove 3 integrally bent above or below the slide rail sleeve 2, a circuit board inside the drawer door 1, and a door wiring hole 4 corresponding to the wiring groove 3, the wires on the circuit board pass through the door wiring hole 4 and are placed on the wiring groove 3.
[0028] In this embodiment, the drawer door 1 is provided with a slide rail assembly, which slides open and closes on the main body of the disinfection cabinet. The fixed slide rail of the slide rail assembly is fixedly connected to the main body of the disinfection cabinet, and the movable slide rail of the slide rail assembly is fixedly connected to the slide rail sleeve 2. The movable slide rail is fixed inside the slide rail sleeve 2. The slide rail sleeve 2 protects the slide rail assembly of the drawer door 1, thereby preventing foreign objects from affecting the slide rail assembly.
[0029] Meanwhile, in this embodiment, a wire groove 3 is integrally bent above or below the slide rail sleeve 2 to avoid the drawback of the prior art requiring multiple components to form the wire area, thereby reducing production costs. In addition, a door wire hole 4 is provided on the drawer door 1 so that the wires of the circuit board set in the drawer door 1 can be placed on the wire groove 3 after passing through the door wire hole 4. This not only facilitates the arrangement of wires, but also, since the wire groove 3 can be set above or below the slide rail sleeve 2, the arrangement of wires can be adjusted according to the production and assembly of the disinfection cabinet, thereby simplifying the wire arrangement process and making it highly practical.
[0030] The front end of the cable tray 3 is spaced apart from or relies on the back of the drawer door 1, and the outer side of the cable tray 3 is spaced apart from or relies on the slide rail sleeve 2.
[0031] That is, the front end and the outer side of the cable tray 3 can respectively rest against the back of the drawer door 1 and the inner wall of the slide rail sleeve 2, thereby improving the assembly stability.
[0032] In addition, the front end of the wire guide 3 is spaced apart from the back of the drawer door 1, and the outer side of the wire guide 3 is also spaced apart from the inner wall of the slide rail sleeve 2. The wires on the circuit board can be placed on the wire guide 3 through the above-mentioned gaps to facilitate the arrangement of the wires.
[0033] In this embodiment, the front end of the wire groove 3 is preferably spaced with the back of the drawer door 1, and the outer side of the wire groove 3 is spaced with the inner wall of the slide rail sleeve 2.
[0034] The upper or lower edge of the slide rail sleeve 2 is integrally bent inward to form an edge flange 5. The edge flange 5 of the upper edge is bent downward or the edge flange 5 of the lower edge is bent upward to form an inner flange 6. The inner flange 6 is integrally bent in the direction of the slide rail sleeve 2 to form an extension flange 7. A wire groove 3 is formed between the edge flange 5, the inner flange 6, and the extension flange 7.
[0035] In this embodiment, the upper and lower edges of the slide rail cover 2 are integrally bent inward with flanges 5, so that the upper and lower edges of the slide rail cover 2 are integrally formed with wire grooves 3, so that the wires can be selectively adjusted above and below the slide rail cover 2 according to the production and assembly of the disinfection cabinet.
[0036] The extended flange 7 is integrally bent with a reinforcing flange 8. The reinforcing flange 8 and the extended flange 7 are stacked on each other. Because the reinforcing flange 8 and the extended flange 7 are stacked on each other, the structural strength of the extended flange 7 can be improved, so as to avoid bending deformation or even breakage during wire arrangement.
[0037] The slide rail sleeve 2, edge flange 5, inner flange 6, and extension flange 7 are perpendicular to each other, and the joint is arc-shaped.
[0038] In this embodiment, the wire groove 3 and the slide rail sleeve 2 form a rectangular fit, providing sufficient space for the wires to be placed and to move with the opening and closing of the drawer door 1, thus avoiding the wires getting stuck due to insufficient space. Moreover, since the bends of the slide rail sleeve 2, the edge flange 5, the inner flange 6, and the extended flange 7 are curved, the problem of wire damage caused by sharp corners can be avoided.
[0039] The front and rear extension lengths of the extended flange 7 and the reinforced flange 8 are the same. The front and rear extension lengths of the slide rail sleeve 2, the edge flange 5, and the inner flange 6 are the same. The front and rear extension lengths of the extended flange 7 and the reinforced flange 8 are less than the front and rear extension lengths of the slide rail sleeve 2, the edge flange 5, and the inner flange 6. This allows the front end of the wire groove 3 to be spaced and fitted with the back of the drawer door 1.
[0040] In this embodiment, the front and rear ends of the inner flange 6, the extended flange 7, and the reinforcing flange 8 are all provided with arc-shaped parts. The arc-shaped parts can avoid damage to the wires by the sharp corners and prevent user injury when assembling the slide rail sleeve 2.
[0041] The side portions of the extended flange 7 and the reinforced flange 8 respectively form a gap 9 between them and the slide rail sleeve 2, thereby allowing the outer side of the wire groove 3 to be spaced and fitted with the inner wall of the slide rail sleeve 2.
[0042] The drawer door 1 includes a door panel 10 and a door bracket 11. The front of the door bracket 11 is open and forms an open cavity 12. A circuit board is fixedly installed in the open cavity 12. The door panel 10 is fixedly installed in front of the door bracket 11 and covers the open cavity 12. The front end of the slide rail sleeve 2 is provided with a sleeve connecting block 13 and is vertically fixed to the back of the door bracket 11 through the sleeve connecting block 13.
[0043] In this embodiment, the slide rail sleeve 2 and the sleeve connecting block 13 can be integrally set or separately set and then fixed to each other. The slide rail sleeve 2 can be vertically fixed to the back of the door bracket 11 by means of the sleeve connecting block 13, so as to reduce the occupation of the horizontal position of the door bracket 11 by the slide rail sleeve 2 during assembly.
[0044] Furthermore, the sheath connecting block 13 is composed of a first connecting piece 14 and a second connecting piece 15 that are bent and fitted together perpendicularly. The first connecting piece 14 is provided with a first connecting piece fastening part 16 and a sheath connecting block wire passage hole 17. It is fixedly fitted to the back of the door bracket 11 through the first connecting piece fastening part 16 and connected to the door body wire passage hole 4 through the sheath connecting block wire passage hole 17. The second connecting piece 15 is provided with a second connecting piece fastening part 18, and the slide rail sheath 2 is provided with a sheath fastening part 19. The second connecting piece fastening part 18 and the sheath fastening part 19 correspond to each other and are fixedly fitted together by fasteners.
[0045] Specifically, a door body connecting block 20 is fixedly installed inside the open cavity 12. A door body fastening part 21 and a door body wire passage hole 4 are provided on the back of the door bracket 11. A door body connecting block fastening part 22 and a door body connecting block wire passage hole 23 are provided on the door body connecting block 20. A first connecting piece fastening part 16 and a sheath connecting block wire passage hole 17 are provided on the sheath connecting block 13. The door body connecting block fastening part 22, the door body fastening part 21, and the first connecting piece fastening part 16 correspond to each other and are fixedly engaged by fasteners. The door body connecting block wire passage hole 23, the door body wire passage hole 4, and the sheath connecting block wire passage hole 17 correspond to each other and are connected. A door bracket notch 24 is also provided at the bottom of the door bracket 11.
[0046] In this embodiment, when the sheath connecting block 13 and the slide rail sheath 2 are assembled, the sheath connecting block 13 rests against the inner wall of the slide rail sheath 2 using the second connecting piece 15, and then fastens are used to fasten the second connecting piece fastening part 18 and the sheath fastening part 19, thereby achieving the fixation between the sheath connecting block 13 and the slide rail sheath 2.
[0047] During assembly, the sheath connecting block 13, the door bracket 11, and the door body connecting block 20 are assembled. The sheath connecting block 13 rests against the back of the door bracket 11 using the first connecting piece 14, and the door body connecting block 20 is placed in the open cavity 12 and rests against the front of the door bracket 11. Then, fasteners are used to fasten the door body connecting block fastening part 22, the door body fastening part 21, and the first connecting piece fastening part 16, thereby achieving the fixation between the sheath connecting block 13, the door bracket 11, and the door body connecting block 20.
[0048] A handle 25 is fixedly installed on the door bracket notch 24. The working part of the handle 25 faces downward, and the user can open and close the drawer door 1 through the working part of the handle 25.
[0049] The above describes the preferred embodiments of this utility model, illustrating and describing its basic principles, main features, and advantages. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made without departing from the spirit and scope of this utility model, and all such changes and modifications fall within the scope of protection of this utility model as defined by the appended claims and their equivalents.
Claims
1. A guide rail wiring structure for a disinfection cabinet, comprising a drawer door (1), characterized in that: The drawer door (1) is provided with a slide rail sleeve (2), and the slide rail sleeve (2) is bent in one piece above or below to pass through the wire groove (3). The drawer door (1) is provided with a circuit board and a door wire hole (4) is provided corresponding to the wire groove (3). The wires on the circuit board pass through the door wire hole (4) and are placed on the wire groove (3).
2. The guide rail wiring structure of the disinfection cabinet according to claim 1, characterized in that: The front end of the wire guide groove (3) is spaced apart from or relies on the back of the drawer door body (1), and the outer side of the wire guide groove (3) is spaced apart from or relies on the slide rail sleeve (2).
3. The guide rail wiring structure of the disinfection cabinet according to claim 1 or 2, characterized in that: The slide rail sleeve (2) has an edge flange (5) integrally bent inward on the upper or lower edge. The edge flange (5) of the upper edge is bent downward or the edge flange (5) of the lower edge is bent upward on the inner edge flange (6). The inner edge flange (6) is integrally bent in the direction of the slide rail sleeve (2) on the extension flange (7). The wire groove (3) is formed between the edge flange (5), the inner edge flange (6), and the extension flange (7).
4. The guide rail wiring structure of the disinfection cabinet according to claim 3, characterized in that: The extended flange (7) is integrally bent with a reinforcing flange (8), and the reinforcing flange (8) and the extended flange (7) are stacked on each other.
5. The guide rail wiring structure of the disinfection cabinet according to claim 4, characterized in that: The slide rail sleeve (2), the edge flange (5), the inner flange (6), and the extension flange (7) are vertically fitted together, and the fitting points are arc-shaped transitions.
6. The guide rail wiring structure of the disinfection cabinet according to claim 4, characterized in that: The front and rear end extension lengths of the extended flange (7) and the reinforced flange (8) are the same, and the front and rear end extensions of the slide rail sleeve (2), the edge flange (5), and the inner flange (6) are the same. The front and rear end extension lengths of the extended flange (7) and the reinforced flange (8) are less than the front and rear end extension lengths of the slide rail sleeve (2), the edge flange (5), and the inner flange (6).
7. The guide rail wiring structure of the disinfection cabinet according to claim 4, characterized in that: The side portions of the extended flange (7) and the reinforced flange (8) respectively form a gap (9) between them and the slide rail sleeve (2).
8. The guide rail wiring structure of the disinfection cabinet according to claim 1, characterized in that: The drawer door (1) includes a door panel (10) and a door bracket (11). The door bracket (11) is open in the front and forms an open cavity (12). The circuit board is fixedly installed in the open cavity (12). The door panel (10) is fixedly installed in front of the door bracket (11) and covers the open cavity (12). The front end of the slide rail sleeve (2) is provided with a sleeve connecting block (13) and is vertically fixed to the back of the door bracket (11) through the sleeve connecting block (13).
9. The guide rail wiring structure of the disinfection cabinet according to claim 8, characterized in that: The sheath connecting block (13) is composed of a first connecting piece (14) and a second connecting piece (15) that are bent and fitted together perpendicularly. The first connecting piece (14) is provided with a first connecting piece fastening part (16) and a sheath connecting block wire hole (17). The first connecting piece fastening part (16) is fixedly fitted to the back of the door bracket (11) and the sheath connecting block wire hole (17) is connected to the door body wire hole (4). The second connecting piece (15) is provided with a second connecting piece fastening part (18). The slide rail sheath (2) is provided with a sheath fastening part (19). The second connecting piece fastening part (18) and the sheath fastening part (19) correspond to each other and are fixedly fitted together by fasteners.
10. The guide rail wiring structure of the disinfection cabinet according to claim 9, characterized in that: A door body connecting block (20) is also fixedly installed in the open cavity (12). A door body fastening part (21) and a door body wire hole (4) are provided on the back of the door bracket (11). A door body connecting block fastening part (22) and a door body connecting block wire hole (23) are provided on the door body connecting block (20). A first connecting piece fastening part (16) and a sheath connecting block wire hole (17) are provided on the sheath connecting block (13). The door body connecting block fastening part (22), the door body fastening part (21), and the first connecting piece fastening part (16) correspond to each other and are fixedly engaged by fasteners. The door body connecting block wire hole (23), the door body wire hole (4), and the sheath connecting block wire hole (17) correspond to each other and are connected. A door bracket notch (24) is also provided at the bottom of the door bracket (11). A handle (25) is fixedly installed on the door bracket notch (24).
Citation Information
Patent Citations
Embedded disinfection cabinet
CN202288938U