Wire passing structure of sterilization cabinet and sterilization cabinet
By designing a wiring structure in the disinfection cabinet, including a wiring box and wire positioning components, the problem of easy damage to the wires when the basket is pushed and pulled is solved, and the safe and stable operation of the wires is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO JINLING KITCHEN WARE CO LTD
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-29
AI Technical Summary
When the pull-out basket is pushed or pulled in the disinfection cabinet, the wires are prone to interference with the basket, which can damage the wires and affect the operation of the equipment.
Design a wiring structure for a disinfection cabinet, including a pull-out basket, a control panel, a wiring box, and wires. The wires are housed in the wiring box. The design of the wiring groove and the wiring hole avoids interference between the wires and the pull-out basket. The wire positioning parts and wire clips are used to fix the wires, ensuring that the wires are not easily damaged during the sliding of the pull-out basket.
This effectively avoids interference between the wires and the disinfection cabinet structure when the basket slides back and forth, reducing the probability of wire damage and ensuring normal operation of the equipment.
Smart Images

Figure CN224292275U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of disinfection cabinets, and in particular to a wiring structure for a disinfection cabinet and a disinfection cabinet. Background Technology
[0002] Sterilization cabinets typically have pull-out baskets inside for storing dishes. These baskets slide horizontally to the cabinet, allowing users to pull them out to retrieve dishes or push them back in to store them inside the cabinet.
[0003] In appliances such as disinfection cabinets, a control panel is sometimes installed on the outside of the pull-out basket. The control panel is electrically connected to the cabinet body via wires, and the operation of the disinfection cabinet or other equipment can be controlled through the control panel. When the pull-out basket moves, it pulls the wires inside the cabinet. After repeated pulling of the pull-out basket, the wires are prone to getting tangled and knotted, and the wires can easily interfere with the moving pull-out basket. As a result, the wires can be easily damaged when the pull-out basket is pulled, affecting the operation of the equipment. Utility Model Content
[0004] To address the shortcomings of existing technologies where the wires easily interfere with the pull-out basket during operation, leading to wire damage, this invention provides a wiring structure for a disinfection cabinet and the disinfection cabinet itself.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0006] According to a first aspect of the present invention, a wiring structure for a disinfection cabinet is provided, the wiring structure comprising:
[0007] A pull-out basket for placing tableware, the pull-out basket being slidably installed inside the disinfection cabinet;
[0008] Control panel, which is connected to the front side of the pull-out basket frame;
[0009] A cable tray is fixedly installed on the pull-out basket frame along the sliding direction of the pull-out basket frame. The cable tray has a long strip-shaped cable passage groove along its length, and the cable passage groove is connected to the inner cavity of the cable tray.
[0010] A wire is inserted into the wiring box, with one end of the wire connected to the control panel and the other end of the wire away from the control panel passing through the wire channel and connected to the actuator inside the disinfection cabinet.
[0011] In this design, the pull-out basket can slide horizontally back and forth along the disinfection cabinet together with the control panel. A junction box is fixedly connected to the pull-out basket, housing the wires connected to the control panel, minimizing exposed wires. Users can operate the disinfection cabinet with this wiring structure via the control panel. The control panel transmits electrical signals to the actuators inside the disinfection cabinet through the wires to control their operation. When the pull-out basket is pulled out, the section of wire between the control panel and the disinfection cabinet is straightened, and the wire, housed in the junction box, is less likely to interfere with the pull-out basket. When the pull-out basket is pushed back, the wire can slide along the cable tray to bend, adapting to changes in the distance between the control panel and the disinfection cabinet. At this time, the junction box will not interfere with the wires, preventing them from being damaged. Therefore, the wires in this wiring structure are less likely to interfere with the structure of the disinfection cabinet when the pull-out basket slides back and forth, and the wires are less likely to be damaged by pulling.
[0012] Furthermore, the wiring structure also includes a side plate disposed in the inner cavity of the disinfection cabinet, and the pull-out basket is slidably connected to the side plate; the side plate has a wiring hole, which is disposed at the front of the side plate, and the wire passes through the wiring hole.
[0013] In this design, the wires pass through the wire holes in the side panel and connect to the actuator inside the cabinet. The wire holes are located at the front of the side panel to reduce the distance between the wire holes and the control panel, thereby reducing the length of the wires between the control panel and the wire holes and making it less likely for the wires to interfere with the structure of the disinfection cabinet.
[0014] Furthermore, the cable tray has a first end wall and a second end wall disposed opposite to each other, the first end wall being located on the side of the second end wall away from the control panel; when the pull-out basket is pulled outward, the first end wall corresponds to the cable hole.
[0015] In this design, the cable tray has a first end wall and a second end wall that are positioned opposite each other, meaning the cable tray is a closed groove surrounded on all four sides. When the pull-out basket is pulled out, the first end wall corresponds to the cable hole. The wire extends from the control panel through the cable box to the first end wall, then passes through the cable tray at the first end wall and enters the cable hole. This makes the length of the cable tray reasonable, and the wire can enter the cable hole immediately after exiting the cable tray, reducing the exposed part of the wire and further reducing the probability of interference between the wire and the pull-out basket.
[0016] Furthermore, the wire guiding structure also includes a wire positioning component, which is fixedly connected to the side plate. The wire positioning component is inserted into the wire guiding groove and can slide along the length direction of the wire guiding groove. The wire positioning component has a positioning groove that communicates with the wire guiding hole, and the wire passes through the positioning groove.
[0017] In this design, one end of the positioning groove is connected to the wire passage hole, and the other end of the positioning groove is inserted into the wire passage groove along with the wire positioning component. Thus, the wire can pass through the positioning groove in the wire positioning component and exit the wire passage groove, and then pass into the wire passage hole under the limiting of the wire positioning component. The setting of the wire positioning component makes it difficult for the wire between the wire passage groove and the wire passage hole to be exposed, further reducing the probability of interference between the wire and the basket frame.
[0018] Furthermore, the cable box is disposed on the lower side of the pull-out basket frame, the opening of the cable passage groove faces downward, and the cable passage hole is located below the cable passage groove.
[0019] In this design, the junction box is located on the lower side of the pull-out basket frame, the cable tray is located on the lower side of the junction box, and the cable hole is located below the cable tray. Thus, the wire passes through the cable tray and then through the cable hole from below. The space below the pull-out basket frame is relatively large, which facilitates the wire passing between the cable tray and the cable hole, and further makes it less likely for the wire to interfere with the pull-out basket frame.
[0020] Furthermore, the wire positioning component includes a vertical part and a horizontal part connected in an L-shape. Both the vertical part and the horizontal part are provided with positioning grooves. The vertical part is inserted into the wire passage groove, and the horizontal part is aligned with the wire passage hole and fixed to the side plate.
[0021] In this design, the L-shaped wire positioning device facilitates guiding the wire passing downward through the wire hole from the vertical direction to the horizontal direction and through the wire hole on the side plate.
[0022] Furthermore, a wire clip is provided inside the wire box. One end of the wire clip is fixed inside the wire box, and the other end of the wire clip is bent and pressed against the wire to fix the wire to the wire box. The distance from the wire clip to the first end wall is greater than the distance from the wire clip to the second end wall.
[0023] In this solution, wire clips are installed inside the junction box to secure the wires, preventing them from wandering around inside the junction box. The distance from the wire clip to the first end wall is greater than the distance from the wire clip to the second end wall. This allows the wires to be bent so that they pass through the wire groove at the second end wall and exit the junction box. In other words, the wire clips do not affect the straightening and bending of the wires when the basket rack is pushed or pulled.
[0024] Furthermore, at least two line cards are provided, with adjacent line cards spaced apart.
[0025] Furthermore, the cable clip is integrally disposed in the cable holder, and the cable clip is stamped into the side wall of the cable holder.
[0026] According to a second aspect of the present invention, a disinfection cabinet is provided, the disinfection cabinet including a cabinet body and a wiring structure as described above, the wiring structure being installed on the cabinet body, and the pull-out basket being slidable back and forth relative to the cabinet body.
[0027] In this solution, the disinfection cabinet adopts this wiring structure, so that while the control panel can move back and forth with the pull-out basket, the wires between the control panel and the cabinet body of the disinfection cabinet are not easily damaged by interference with the pull-out basket.
[0028] In summary, this utility model has the following beneficial effects:
[0029] In the wiring structure of this disinfection cabinet, a pull-out basket is fixedly connected to a wiring box. The wires connected to the control panel are housed in the wiring box, reducing exposed wires. When the pull-out basket is pulled out, the section of wire between the control panel and the cabinet is straightened, and the wire housed in the wiring box is less likely to interfere with the pull-out basket. When the pull-out basket is pushed back, the wire can slide along the wiring groove to bend, adapting to changes in the distance between the control panel and the cabinet. At this time, the wiring box will not interfere with the wire, preventing the wire from being torn. The wires in this wiring structure are less likely to interfere with the structure of the disinfection cabinet when the pull-out basket slides back and forth, and the wires are less likely to be damaged by pulling. Attached Figure Description
[0030] Figure 1 This is a three-dimensional structural diagram of the pull-out basket frame and side plate when the pull-out basket frame is pushed back according to an embodiment of this utility model. Figure 1 .
[0031] Figure 2 This is a three-dimensional structural diagram of the pull-out basket frame and side plate when the pull-out basket frame is pulled out according to an embodiment of the present invention.
[0032] Figure 3 This is a three-dimensional structural diagram of the wire and cable box when the pull-out basket frame is pulled out according to an embodiment of the present invention.
[0033] Figure 4 This is a three-dimensional structural diagram of the pull-out basket frame and side plate when the pull-out basket frame is pushed back according to an embodiment of this utility model. Figure 2 .
[0034] Figure 5 This is a three-dimensional structural diagram of the wire and cable box when the pull-out basket frame is pushed back according to an embodiment of this utility model.
[0035] Figure 6 This is a three-dimensional structural diagram of the guide wire and guide wire positioning component when the pull-out basket frame is pushed back according to an embodiment of this utility model.
[0036] In the picture:
[0037] 100. Side panel; 110. Cable guide hole; 200. Pull-out basket frame; 210. Guide rail; 220. Control panel; 300. Cable box; 310. Cable groove; 311. First end wall; 312. Second end wall; 400. Wire positioning component; 410. Positioning groove; 420. Vertical part; 430. Horizontal part; 500. Cable clip; 600. Wire. Detailed Implementation
[0038] The present invention will be further described below with reference to the accompanying drawings.
[0039] This embodiment discloses a disinfection cabinet, which includes a cabinet body and a wiring structure, with the wiring structure installed in the cabinet body.
[0040] Reference Figure 1 The cable management structure includes a side panel 100 and a pull-out basket 200. The side panel 100 is fixedly installed inside the cabinet and is vertically oriented. A guide member is provided on the side panel 100 along the horizontal direction. The pull-out basket 200 is a frame structure for placing bowls, plates, and other tableware. The pull-out basket 200 is slidably installed inside the cabinet. Specifically, in this embodiment, a guide rail 210 is horizontally arranged on the side of the pull-out basket 200. The guide rail 210 cooperates with the guide member to guide the pull-out basket 200 to slide horizontally. The guide member can be a slider, slide bar, or roller that cooperates with the slide rail.
[0041] The cabinet is equipped with an electrically driven actuator. In this embodiment, the actuator can be an irradiation sterilization mechanism, a steam sterilization mechanism, a heating mechanism, a ventilation mechanism, or other similar mechanisms within the disinfection cabinet. A control panel 220 is connected to the front of the pull-out basket 200. The control panel 220 is electrically connected to the actuator, and its operation can be controlled via the control panel 220. The control panel 220 may include a display screen and an operating area. The display screen shows parameters such as the disinfection cabinet's operating time, operating temperature and humidity, and preset modes. The operating area may have buttons or a touchscreen for the user to control the actuator.
[0042] The pull-out basket frame 200 cooperates with the guide rail 210 and the guide component, so that the pull-out basket and the control panel 220 can slide horizontally back and forth along the side panel 100 together. That is, the distance between the control panel 220 and the cabinet changes as the pull-out basket frame 200 moves.
[0043] Reference Figures 1 to 3In this embodiment, the control panel 220 is electrically connected to the actuator via a wire 600. Specifically, a wiring box 300 is fixedly connected to the pull-out basket frame 200. The wiring box 300 is fixedly installed on the pull-out basket frame 200 along the sliding direction of the pull-out basket frame 200, with one end of the wiring box 300 facing the control panel 220. One end of the wire 600 is connected to the control panel 220, the wire 600 passes through the wiring box 300, and the end of the wire 600 away from the control panel 220 passes through the wiring box 300 and is connected to the actuator inside the cabinet.
[0044] In this embodiment, the junction box 300 is a rectangular box-shaped component with a hollow interior to accommodate the wire 600. In other embodiments, the junction box 300 may also have other suitable shapes.
[0045] The junction box 300 has a long strip-shaped cable passage 310 along its length (i.e., the sliding direction of the pull-out basket 200). The cable passage 310 is connected to the inner cavity of the junction box 300. The wires 600 inside the junction box 300 can pass through the cable passage 310 to connect with the cabinet outside the junction box 300.
[0046] In this embodiment, by housing the wire 600 connected to the control panel 220 in the junction box 300, the exposure of the wire 600 is reduced. The user can operate the disinfection cabinet through the control panel 220. The control panel 220 transmits electrical signals to the actuator inside the cabinet through the wire 600 to control the operation of the actuator.
[0047] When the pull-out basket 200 is pulled out, the section of wire 600 between the control panel 220 and the cabinet is straightened. The wire 600 is housed in the junction box 300 and is unlikely to interfere with the pull-out basket 200. When the pull-out basket 200 is pushed back, the wire 600 can slide and bend along the cable tray 310 to accommodate changes in the distance between the control panel 220 and the cabinet. At this time, the junction box 300 will not interfere with the wire 600, preventing it from being damaged. Therefore, the wire 600 in the wiring structure of this disinfection cabinet is unlikely to interfere with the wiring structure of the disinfection cabinet when the pull-out basket 200 slides back and forth, and the wire 600 is unlikely to be damaged by pulling.
[0048] Reference Figures 2 to 4 The side panel 100 has a wiring hole 110 located at the front of the side panel 100. The wire 600 passes through the wiring groove 310 and then through the wiring hole 110 to connect with the actuator inside the cabinet. The wiring hole 110 is located at the front of the side panel 100 to reduce the distance between the wiring hole 110 and the control panel 220, thereby reducing the length of the wire 600 between the control panel 220 and the wiring hole 110, and making it less likely for the wire 600 to interfere with the wiring structure of the disinfection cabinet.
[0049] Reference Figures 3 to 5The cable tray 310 is a closed tray enclosed on all four sides, meaning it has walls on all four sides. The two side walls of the cable tray 310, positioned opposite each other along its length, are defined as the first end wall 311 and the second end wall 312. The second end wall 312 is located on the side of the cable tray 310 closest to the control panel 220, while the first end wall 311 is positioned opposite the second end wall 312 on the side furthest from the control panel 220.
[0050] like Figure 2 and Figure 3 As shown, when the pull-out basket frame 200 is pulled outward, the first end wall 311 corresponds to the wire hole 110, that is, the position of the first end wall 311 and the position of the wire hole 110 are in the same vertical plane. Thus, the wire 600 extends from the control panel 220 through the cable box 300 to the first end wall 311, and then passes through the wire groove 310 at the first end wall 311 and enters the wire hole 110. At this time, the wire 600 is in a straightened state.
[0051] like Figure 1 , Figure 4 and Figure 5 As shown, when the pull-out basket 200 is pushed back into the cabinet, the second end wall 312 corresponds to the cable passage hole 110. That is, the position of the second end wall 312 and the position of the cable passage hole 110 are in the same vertical plane. The wire 600 starts from the control panel 220, extends away from the control panel 220 in the cable box 300, then turns back and passes through the cable groove 310 at the second end wall 312 and enters the cable passage hole 110. Thus, without changing the length of the wire 600, it is kept contained in the cable box 300. This makes the length of the cable groove 310 reasonable, and the wire 600 can pass into the cable passage hole 110 immediately after passing through the cable groove 310, reducing the exposed part of the wire 600 and further reducing the probability of interference between the wire 600 and the pull-out basket 200.
[0052] Reference Figure 1 and Figure 4 In this embodiment, the cable box 300 is disposed on the lower side of the pull-out basket frame 200, the opening of the cable groove 310 faces downward, and the cable hole 110 is located below the cable groove 310. Compared with the scheme where the cable box 300 is disposed on the side or above the pull-out basket frame 200, in this embodiment, the wire 600 passes through the cable groove 310 and then enters the cable hole 110 from below. The space below the pull-out basket frame 200 is larger, which facilitates the wire 600 to pass between the cable groove 310 and the cable hole 110, and further makes it less likely for the wire 600 to interfere with the pull-out basket frame 200.
[0053] Reference Figures 3 to 6The wire guiding structure also includes a wire positioning component 400. The wire positioning component 400 is fixedly connected to the side plate 100 at the position where the wire guiding hole 110 is provided. One end of the wire positioning component 400 is inserted into the wire guiding groove 310 and can slide along the length direction of the wire guiding groove 310. The other end of the wire positioning component 400 faces the wire guiding hole 110.
[0054] The wire positioning component 400 has a positioning groove 410. One end of the positioning groove 410 is connected to the wire passage hole 110, and the other end of the positioning groove 410 is inserted into the wire passage groove 310 along with the wire positioning component 400. Thus, the wire 600 can pass through the positioning groove 410 in the wire positioning component 400 and exit the wire passage groove 310. Under the limitation of the wire positioning component 400, it passes into the wire passage hole 110. The setting of the wire positioning component 400 makes it difficult for the wire 600 between the wire passage groove 310 and the wire passage hole 110 to be exposed, further reducing the probability of interference between the wire 600 and the pull basket frame 200.
[0055] The wire positioning member 400 includes a vertical portion 420 and a horizontal portion 430, which are connected in an L-shape. Both the vertical portion 420 and the horizontal portion 430 have positioning grooves 410. The vertical portion 420 extends vertically and inserts into the wire passage groove 310, while the horizontal portion 430 extends horizontally, aligns with the wire passage hole 110, and is fixed to the side plate 100. Thus, the L-shaped wire positioning member 400 facilitates guiding the wire 600, which passes downward through the wire passage hole 110, from the vertical direction to the horizontal direction and through the wire passage hole 110 on the side plate 100. Furthermore, the first end wall 311 and the second end wall 312 of the wire passage groove 310 phase the vertical portion 420 of the wire positioning member 400, thereby limiting the front and rear end positions of the wire positioning member 400 as it slides along the wire passage groove 310.
[0056] In addition, in other embodiments, the wire positioning member 400 may also be of other suitable shape, as long as it can guide the wire 600 between the wire groove 310 and the wire hole 110.
[0057] Reference Figures 3 to 5 A wire clip 500 is provided inside the junction box 300. One end of the wire clip 500 is fixed inside the junction box 300, and the other end of the wire clip 500 is bent and pressed onto the wire 600 to fix the wire 600 to the junction box 300. By fixing the wire 600 with the wire clip 500, the wire 600 is less likely to move around inside the junction box 300.
[0058] The distance from the wire clip 500 to the first end wall 311 is greater than the distance from the wire clip 500 to the second end wall 312. Therefore, when the pull-out basket 200 is pulled out, the length of the wire 600 (i.e., the movable part of the wire 600) between the second end wall 312 and the wire clip 500 is greater than the length of the wire 600 (i.e., the immovable part of the wire 600) between the wire clip 500 and the first end wall 311. Thus, when the pull-out basket 200 is pushed back, the wire 600 can be bent so that the wire 600 passes through the wire groove 310 at the second end wall 312 and exits the cable box 300. In other words, the setting of the wire clip 500 does not affect the straightening and bending of the wire 600 when the pull-out basket 200 is pushed and pulled, and thus does not affect the pulling out and pushing back of the pull-out basket 200.
[0059] The embodiment includes at least two line cards 500, with adjacent line cards 500 spaced apart. This embodiment specifically illustrates the use of two line cards 500.
[0060] In this embodiment, the wire clip 500 is integrally disposed in the junction box 300. Specifically, strip-shaped components connected to the junction box 300 are punched and cut from the side walls on opposite sides of the junction box 300. After bending, the strip-shaped components form the wire clip 500 pressed onto the guide. This method reduces the material cost and installation steps of the wire clip 500. In addition, in other embodiments, the wire clip 500 can also adopt other structures, as long as it can fix the wire 600 inside the junction box 300.
[0061] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A wiring structure for a disinfection cabinet, characterized in that, The wiring structure includes: a pull-out basket (200) for placing tableware, the pull-out basket (200) being slidably disposed inside the disinfection cabinet; A control panel (220) is connected to the front side of the pull-out basket frame (200); A cable tray (300) is fixedly installed on the pull-out basket frame (200) along the sliding direction of the pull-out basket frame (200). The cable tray (300) has a long strip-shaped cable passage groove (310) along its length direction. The cable passage groove (310) is connected to the inner cavity of the cable tray (300). A wire (600) is inserted into the wiring box (300). One end of the wire (600) is connected to the control panel (220), and the other end of the wire (600) away from the control panel (220) passes through the wire channel (310) and is connected to the actuator inside the disinfection cabinet.
2. The wiring structure of a disinfection cabinet as described in claim 1, characterized in that, The wiring structure also includes a side plate (100) disposed in the inner cavity of the disinfection cabinet. The pull-out basket (200) is slidably connected to the side plate (100) via a horizontally arranged guide rail (210). The side plate (100) has a wiring hole (110) located at the front of the side plate (100), and the wire (600) passes through the wiring hole (110).
3. The wiring structure of a disinfection cabinet as described in claim 2, characterized in that, The cable tray (310) has a first end wall (311) and a second end wall (312) arranged opposite to each other. The first end wall (311) is located on the side of the second end wall (312) away from the control panel (220). When the pull-out basket (200) is pulled outward, the first end wall (311) corresponds to the cable hole (110).
4. The wiring structure of a disinfection cabinet as described in claim 2, characterized in that, The wire guiding structure also includes a wire positioning component (400), which is fixedly connected to the side plate (100). The wire positioning component (400) is inserted into the wire guiding groove (310) and can slide along the length of the wire guiding groove (310). The wire positioning component (400) has a positioning groove (410) that communicates with the wire guiding hole (110), and the wire (600) passes through the positioning groove (410).
5. The wiring structure of a disinfection cabinet as described in claim 4, characterized in that, The cable box (300) is located on the lower side of the pull-out basket frame (200), the opening of the cable groove (310) is oriented downwards, and the cable hole (110) is located below the cable groove (310).
6. The wiring structure of a disinfection cabinet as described in claim 5, characterized in that, The wire positioning component (400) includes a vertical part (420) and a horizontal part (430) connected in an L-shape. Both the vertical part (420) and the horizontal part (430) are provided with positioning grooves (410). The vertical part (420) is inserted into the wire passage groove (310), and the horizontal part (430) is aligned with the wire passage hole (110) and fixed to the side plate (100).
7. The wiring structure of a disinfection cabinet as described in claim 3, characterized in that, A wire clip (500) is provided inside the wire box (300). One end of the wire clip (500) is fixed inside the wire box (300), and the other end of the wire clip (500) is bent and pressed against the wire (600) to fix the wire (600) to the wire box (300). The distance from the wire clip (500) to the first end wall (311) is greater than the distance from the wire clip (500) to the second end wall (312).
8. The wiring structure of a disinfection cabinet as described in claim 7, characterized in that, At least two line cards (500) are provided, and adjacent line cards (500) are spaced apart.
9. The wiring structure of a disinfection cabinet as described in claim 7, characterized in that, The cable clip (500) is integrally disposed on the cable box (300), and the cable clip (500) is formed by stamping the side wall of the cable box (300).
10. A disinfection cabinet, characterized in that, The disinfection cabinet includes a cabinet body and a wiring structure as described in any one of claims 1-9, wherein the wiring structure is installed on the cabinet body and the pull-out basket (200) is slidable back and forth relative to the cabinet body.