Sterilizer
By incorporating a steering adjustment mechanism and track structure within the disinfection cabinet, the drawers can move in multiple directions and have their tilt angles adjusted, thus solving the problems of poor flexibility and ineffective disinfection and drying in existing disinfection cabinets and improving the user experience and overall performance.
Patent Information
- Application Number
- CN202410390349.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-02
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2044-04-02
AI Technical Summary
Existing disinfection cabinets have drawer racks that are not very flexible to use, and their disinfection and drying effects are not ideal.
A steering adjustment mechanism is installed in the disinfection cabinet, which allows the drawer to move and adjust its tilt angle by rotating it. Combined with the first drive component, connecting parts and track structure, the drawer can move in multiple directions and adjust its angle.
It improves the flexibility of use of the disinfection cabinet, enhances the disinfection and drying effects, meets various usage needs, and makes it easy to take out disinfected items.
Smart Images

Figure CN118304449B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of disinfection cabinets, and particularly to a disinfection cabinet. Background Technology
[0002] Disinfection cabinets are now widely used. A disinfection cabinet usually consists of a cabinet body and drawers inside the cabinet. Currently, disinfection cabinets typically use ultraviolet irradiation for disinfection, and ultraviolet disinfection lamps are also installed inside the cabinet.
[0003] Currently, the drawer racks of disinfection cabinets on the market are usually fixed in certain positions on the cabinet body. For example, they can only be pulled out horizontally and cannot be moved as needed, such as moving up and down, moving up and down automatically, moving forward and backward automatically, or adjusting the tilt angle. This limits their use and makes them less flexible.
[0004] In addition, the disinfection and drying effects of the drawer racks in the disinfection cabinets on the market are not good because they are fixed in a certain position on the inner wall of the cabinet. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to overcome the shortcomings of existing disinfection cabinets, such as poor flexibility in use and unsatisfactory disinfection and drying effects, and to provide a disinfection cabinet.
[0006] The present invention solves the above-mentioned technical problems through the following technical solution:
[0007] A disinfection cabinet includes a drawer and a cabinet body, wherein the drawer is movably disposed inside the cabinet body;
[0008] The disinfection cabinet also includes a steering adjustment mechanism connected between the drawer and the cabinet body. The steering adjustment mechanism is at least partially connected to the drawer so that when the drawer is in a moving state or moves to any position within a preset moving range, the steering adjustment mechanism can drive the drawer to rotate relative to the cabinet body.
[0009] In this design, the adjustable steering mechanism allows the drawers of the disinfection cabinet to not only move but also tilt at an adjustable angle. This tilt adjustment can be performed while the drawer is moving, while the drawer is in any position, or even when the drawer is stationary. Therefore, this disinfection cabinet can meet various usage needs, offering good flexibility and facilitating the removal of disinfected items. Furthermore, the ability to move and tilt the drawer ensures that more items inside are disinfected more thoroughly and evenly, resulting in better disinfection and drying effects.
[0010] Preferably, the steering adjustment mechanism includes a first driving member, a first connecting member, and a second connecting member;
[0011] The first drive component is fixed to the drawer;
[0012] The first connecting component is connected between the drawer and the cabinet body. The first connecting component is connected to the output end of the first driving component. The first connecting component is used to convert the motion of the output end of the first driving component into linear motion and to drive the drawer to rotate.
[0013] The second connecting member is hinged to the drawer and is spaced apart from the first connecting member in the rotation plane of the drawer, so that the drawer can rotate around the second connecting member.
[0014] In this design, the first connecting component converts the rotation of the first driving member into linear motion. By operating the first driving member, the drawer can rotate around the second connecting component with a relatively simple structure, thereby adjusting the drawer's tilt angle. Furthermore, converting the rotation of the first driving member into linear motion also helps reduce the space occupied by the steering adjustment mechanism within the cabinet.
[0015] Preferably, the first connecting component includes a first connector and a first track;
[0016] The first connector is connected to the output end of the first drive unit, and the first connector is movably disposed within the first track;
[0017] The first track is fixed relative to the cabinet in the direction in which the first connector moves along the first track.
[0018] In this solution, the first connecting component has a simple structure, which helps to simplify the structure of the steering adjustment mechanism, as well as the structure of the disinfection cabinet, and also helps to reduce the space occupied inside the cabinet.
[0019] Preferably, the first driving component is a servo motor, the first connecting component is a gear, and the first track is a toothed track;
[0020] The servo motor housing is fixed to the drawer, and the servo motor output shaft is coaxially fixed with the gear.
[0021] The gear meshes with the toothed track;
[0022] The toothed track can rotate relative to the cabinet, or the toothed track can translate relative to the cabinet in a direction perpendicular to the first connector moving along the toothed track.
[0023] In this solution, after the servo motor is activated, the servo motor will drive the gear to rotate. The gear can move on the toothed track. Since the toothed track can rotate relative to the cabinet or translate in a direction perpendicular to the movement of the first connecting member (i.e., the gear), the tilt angle of the drawer can be adjusted.
[0024] Preferably, the disinfection cabinet further includes a second track and a second connector, the second track being fixed to the drawer and the second connector being movably assembled within the second track;
[0025] And / or, the disinfection cabinet further includes a third track and a third connector, the third track being fixed to the cabinet body and the third connector being movably assembled within the third track;
[0026] When the drawer is in a horizontal position, the extension direction of the second track is parallel to the extension direction of the first track, and the extension direction of the second track is perpendicular to the extension direction of the third track.
[0027] In this design, the second and / or third rails provide the conditions for the drawer to move, and the rails also guide the movement of the drawer, which helps to ensure the reliability of the drawer movement.
[0028] Preferably, when the disinfection cabinet includes both the second connector and the third connector, the second connector and the third connector are fixedly connected.
[0029] In this solution, by fixing the second connector to the third connector, the movement of the drawer along the extension directions of the second and third tracks is associated, which helps to reduce other additional structures, thereby improving the compactness of the structure and simplifying the structure.
[0030] Preferably, when the disinfection cabinet includes both the second connector and the third connector, the second connector, the second connector, and the third connector are an integral structure.
[0031] Alternatively, when the disinfection cabinet includes only one of the second connector and the third connector, the second connector is an integral structure with the included second connector or the third connector.
[0032] In this design, when the second and third connectors coexist, if the drawer needs to move along the extension direction of the second track, the position of the second / third connector within the third track remains unchanged, allowing the position of the second track relative to the second / third connector to change; that is, the second / third connector remains stationary while the second track moves. Similarly, if the drawer needs to move along the extension direction of the third track, the position of the second / third connector within the second track remains unchanged, allowing the second / third connector to move within the third track. This design simplifies the structure of the disinfection cabinet.
[0033] Preferably, the second track is provided with a first linear motor and a first spring. The first end of the first linear motor is fixed to one end of the second track, and the second end of the first linear motor abuts against a first side of the movement direction of the second connector. The first end of the first spring is fixed to the other end of the second track, and the second end of the first spring abuts against a second side of the movement direction of the second connector.
[0034] And / or, the third track is provided with a second linear motor and a second spring, the first end of the second linear motor is fixed to one end of the third track, the second end of the second linear motor abuts against the first side of the movement direction of the third connector, the first end of the second spring is fixed to the other end of the third track, and the second end of the second spring abuts against the second side of the movement direction of the third connector.
[0035] In this solution, the connecting piece is positioned between the spring and the linear motor. The position of the corresponding connecting piece is adjusted by the extension and retraction of the linear motor (such as a linear reciprocating stepper motor), thereby achieving automatic movement in the corresponding direction.
[0036] Preferably, the disinfection cabinet further includes a fourth connector, wherein, in the case that the disinfection cabinet includes both the second track and the third track, the fourth connector is movably fitted into the third track;
[0037] The fourth connector is hinged to the toothed track so that the toothed track can rotate relative to the cabinet.
[0038] The toothed track can be translated relative to the cabinet along the extension direction of the third track via the fourth connector.
[0039] In this solution, the movement of the drawer along the extension direction of the second track, the movement along the extension direction of the third track, and the tilt angle adjustment are interconnected. This allows for the realization of the corresponding movement and tilt angle adjustment in a relatively simple and compact structure, while ensuring that the corresponding movement and tilt angle adjustment do not affect each other.
[0040] Preferably, the disinfection cabinet further includes a fourth connector when the disinfection cabinet includes only one of the second and third tracks:
[0041] When the disinfection cabinet includes only the second track, the fourth connector is connected to the inner wall of the cabinet, and the fourth connector can move relative to the cabinet in a direction parallel to the second track. The fourth connector is hinged to the toothed track so that the toothed track can rotate relative to the cabinet.
[0042] When the disinfection cabinet includes only the third track, the fourth connector is assembled inside the third track and fixed to the toothed track. The toothed track is arranged perpendicular to the third track so that the toothed track can translate relative to the cabinet body along the extension direction of the third track.
[0043] In this design, the movement of the drawer along the extension direction of the second track / the extension direction of the third track is related to the drawer's tilt angle adjustment. This allows for a simple and compact structure to achieve both movement and tilt angle adjustment without interference between them. Furthermore, when a third track is provided, the fourth connector is directly installed on it, eliminating the need for additional structural components for its installation, further simplifying the structure of the disinfection cabinet.
[0044] The positive and progressive effects of this invention are as follows:
[0045] In the disinfection cabinet of this invention, the steering adjustment mechanism allows the drawer to not only move but also tilt, with the tilt angle adjustable by rotation. This tilt angle adjustment can be performed while the drawer is moving, while the drawer is in any position, or even when the drawer is stationary. Therefore, this disinfection cabinet can meet various usage needs and offers good flexibility. Attached Figure Description
[0046] Figure 1 This is a schematic diagram of the first overall structure of a disinfection cabinet according to a preferred embodiment of the present invention.
[0047] Figure 2 This is a schematic diagram of the second overall structure of a disinfection cabinet according to a preferred embodiment of the present invention.
[0048] Figure 3 This is a schematic diagram of the third overall structure of a disinfection cabinet according to a preferred embodiment of the present invention.
[0049] Figure 4 This is a partial structural diagram of a disinfection cabinet according to a preferred embodiment of the present invention, wherein the drawer is shown in the figure.
[0050] Figure 5 This is a schematic diagram of another part of the structure of a disinfection cabinet according to a preferred embodiment of the present invention, wherein the drawer is not shown in the figure.
[0051] Explanation of reference numerals in the attached figures:
[0052] 10 drawers
[0053] 20 cabinets
[0054] 30 Steering Adjustment Mechanism
[0055] 301 First Drive Unit
[0056] 302 First Connector
[0057] 303 First Track
[0058] 304 Second Track
[0059] 305 Second Connector
[0060] 306 Third Track
[0061] 307 Fourth Connector
[0062] 308 First Linear Motor
[0063] 309 First Spring
[0064] 310 Second Linear Motor
[0065] 311 Second Spring
[0066] 312 First Base
[0067] 313 Second Base
[0068] 314 Third Connector
[0069] 40 UV disinfection lamp Detailed Implementation
[0070] The present invention will be further illustrated by way of embodiments below, but the present invention is not limited to the scope of the embodiments.
[0071] like Figures 1 to 5 As shown, this embodiment provides a disinfection cabinet, including a drawer 10 and a cabinet body 20, wherein the drawer 10 is movably disposed inside the cabinet body 20. The disinfection cabinet also includes a steering adjustment mechanism 30, which is connected between the drawer 10 and the cabinet body 20. The steering adjustment mechanism 30 is at least partially connected to the drawer 10 so that when the drawer 10 is in a moving state or moved to any position within a preset moving range, the steering adjustment mechanism 30 can drive the drawer 10 to rotate relative to the cabinet body 20.
[0072] In this embodiment, the steering adjustment mechanism 30 allows the drawer 10 of the disinfection cabinet to not only move but also have its tilt angle adjusted by rotation. This tilt angle adjustment can be performed while the drawer 10 is moving, while the drawer 10 is in any position, or even when the drawer 10 is stationary. Therefore, this disinfection cabinet can meet various usage needs, offering good flexibility and facilitating the removal of disinfected items. Furthermore, by moving the drawer 10 and adjusting its tilt angle, more items within the drawer are disinfected more thoroughly and evenly, resulting in better disinfection and drying effects.
[0073] It should be noted that the items to be disinfected in this embodiment are mainly tableware. Furthermore, the disinfection cabinet in this embodiment primarily uses ultraviolet disinfection lamps 40 for disinfection. Figures 1 to 3 The image schematically shows an ultraviolet disinfection lamp 40.
[0074] Additionally, it should be noted that the moving direction of drawer 10 in this embodiment is not limited to one; it can be set to any two or more angled directions. As a preferred configuration, refer to... Figures 1 to 5 It should be understood that in this embodiment, the drawer 10 moves in two directions: vertically up and down and vertically forward and backward.
[0075] It should be further noted that, in theory, the structure used to move the drawer 10 and the structure used to adjust the tilt angle of the drawer 10 can be completely independent or partially related. Accordingly, those skilled in the art should understand that any structure applicable to this in the prior art can be used to achieve the corresponding movement and tilt angle adjustment, which will not be elaborated here.
[0076] like Figures 1 to 5 As shown, the steering adjustment mechanism 30 includes a first driving member 301, a first connecting member, and a second connecting member. The first driving member 301 is fixed to the drawer 10. The first connecting member connects the drawer 10 and the cabinet 20, and is drively connected to the output end of the first driving member 301. The first connecting member converts the motion of the output end of the first driving member 301 into linear motion, thereby driving the drawer 10 to rotate. The second connecting member is hinged to the drawer 10 and is spaced apart from the first connecting member within the rotation plane of the drawer 10, allowing the drawer 10 to rotate around the second connecting member.
[0077] The first connecting component converts the rotation of the first driving member 301 into linear motion. By operating the first driving member 301, the drawer 10 can rotate around the second connecting component with a relatively simple structure, thereby adjusting the tilt angle of the drawer 10. In addition, converting the rotation of the first driving member 301 into linear motion also helps to reduce the space occupied by the steering adjustment mechanism 30 within the cabinet 20.
[0078] Specifically, the first connecting component includes a first connector 302 and a first track 303. The first connector 302 is connected to the output end of the first drive component 301, and the first connector 302 is movably disposed within the first track 303. The first track 303 is fixed relative to the cabinet 20 in the direction in which the first connector 302 moves along the first track 303. This configuration simplifies the structure of the first connecting component, which in turn simplifies the structure of the steering adjustment mechanism 30 and the disinfection cabinet, and also reduces the space occupied within the cabinet 20.
[0079] In a preferred configuration, the first driving component 301 is a servo motor, the first connecting component 302 is a gear, and the first track 303 is a toothed track. The servo motor's housing is fixed to the drawer 10, and the servo motor's output shaft is coaxially fixed with the gear. The gear meshes with the toothed track. The toothed track can rotate relative to the cabinet 20, or it can translate relative to the cabinet 20 in a direction perpendicular to the first connecting component 302 along the toothed track.
[0080] If it is necessary to adjust the tilt angle of drawer 10, start the servo motor. After starting the servo motor, the servo motor will drive the gear to rotate. The gear can move on the toothed track. Since the toothed track can rotate relative to the cabinet 20 or translate in the direction perpendicular to the movement of the first connector 302 (i.e., the gear), the tilt angle of drawer 10 can be adjusted.
[0081] It should be noted that the first drive unit 301 is a servo motor, which enables automatic adjustment of the tilt angle of the drawer 10. The first track 303 is set as a toothed track, and the gear and the toothed track mesh similarly to the gear and rack structure in the prior art. Referring to the accompanying drawings, the first track 303 is an oblong track set on a plate-like structural member, which has an upper toothed track portion and a lower toothed track portion arranged opposite each other. When the tilt angle of the drawer 10 needs to be adjusted, the gear meshes with the upper toothed track portion or the lower toothed track portion, thereby realizing the movement of the gear relative to the toothed track. Since the toothed track can rotate relative to the cabinet 20, or the toothed track can translate relative to the cabinet 20 in the direction perpendicular to the first connecting member 302 along the toothed track movement, under the drive of the servo motor, the drawer 10 can ultimately rotate around the second connecting member.
[0082] like Figures 1 to 5 As shown, the disinfection cabinet also includes a second track 304 and a second connector 305. The second track 304 is fixed to the drawer 10, and the second connector 305 is movably assembled inside the second track 304.
[0083] Optionally or preferably, the disinfection cabinet further includes a third track 306 and a third connector 314. The third track 306 is fixed to the cabinet body 20, and the third connector 314 is movably assembled within the third track 306. When the drawer 10 is in a horizontal position, the extension direction of the second track 304 is parallel to the extension direction of the first track 303, and the extension direction of the second track 304 is perpendicular to the extension direction of the third track 306.
[0084] Here, the setting of the second track 304 and / or the third track 306 provides the conditions for the movement of the drawer 10. At the same time, the track can also guide the movement of the drawer 10, which helps to ensure the reliability of the movement of the drawer 10.
[0085] It should be noted that, as mentioned above, the second connector 305 and the third connector 314 can be arranged separately or independently, or they can be fixedly connected, or even as a single integrated structure. As a preferred arrangement, the second connector 305 and the third connector 314 are a single integrated structure. More preferably, the second connecting component, the second connector 305, and the third connector 314 are a single integrated structure. This can also be understood as the single integrated structure of the second connector 305 and the third connector 314 simultaneously serving as the second connecting component.
[0086] Of course, in other alternative implementations, the second connecting component can also be configured as a separate structure from the second connecting member 305, as long as the two do not interfere with each other.
[0087] When the second connector 305 is fixedly connected to the third connector 314, the movement of the drawer 10 along the extension direction of the second track 304 and the third track 306 is associated, which helps to reduce other additional structures, thereby improving the compactness of the structure and simplifying the structure.
[0088] As described above, in this embodiment, the second connecting component, the second connector 305, and the third connector 314 are an integral structure. In other alternative embodiments, when the disinfection cabinet includes only one of the second connector 305 and the third connector 314, the second connecting component can be configured to be an integral structure with either the included second connector 305 or the third connector 314.
[0089] Accordingly, when the second connector 305 and the third connector 314 coexist, if the drawer 10 needs to move along the extension direction of the second track 304, the positions of the second connector 305 / third connector 314 within the third track 306 can remain unchanged, allowing the position of the second track 304 relative to the second connector 305 / third connector 314 to change; that is, the second connector 305 / third connector 314 remains stationary while the second track 304 moves. Similarly, if the drawer 10 needs to move along the extension direction of the third track 306, the positions of the second connector 305 / third connector 314 within the second track 304 can remain unchanged, allowing the second connector 305 / third connector 314 to move within the third track 306. This arrangement helps to further simplify the structure of the disinfection cabinet.
[0090] Regarding the second track 304 and the third track 306, it should be noted that in this embodiment, both the second track 304 and the third track 306 are provided by grooves provided on the base. The second track 304 is provided by the groove of the first base 312 installed on the outer wall of the drawer 10, and the third track 306 is provided by the groove of the second base 313 installed on the inner wall of the cabinet 20.
[0091] In this embodiment, as Figures 1 to 5 As shown, both the left and right sides of the drawer 10 are provided with adjustment components for moving the drawer 10 and adjusting its tilt angle. The two adjustment components are arranged symmetrically, which helps to ensure the stability of the drawer 10 during the movement and tilt angle adjustment process.
[0092] Furthermore, in this embodiment, as Figures 2 to 5 As shown (wherein, to clearly illustrate the structure of the steering adjustment mechanism 30, in...), Figure 5 In this configuration, one adjustment component conceals the first base 312, and the other adjustment component conceals the second base 313. The second track 304 houses a first linear motor 308 and a first spring 309. The first end of the first linear motor 308 is fixed to one end of the second track 304, and the second end of the first linear motor 308 abuts against a first side of the movement direction of the second connecting member 305. The first end of the first spring 309 is fixed to the other end of the second track 304, and the second end of the first spring 309 abuts against a second side of the movement direction of the second connecting member 305. The third track 306 houses a second linear motor 310 and a second spring 311. The first end of the second linear motor 310 is fixed to one end of the third track 306, and the second end of the second linear motor 310 abuts against a first side of the movement direction of the third connecting member 314. The first end of the second spring 311 is fixed to the other end of the third track 306, and the second end of the second spring 311 abuts against a second side of the movement direction of the third connecting member 314.
[0093] The connecting piece is positioned between the spring and the linear motor. The position of the corresponding connecting piece is adjusted by the extension and retraction of the linear motor (such as a linear reciprocating stepper motor), thereby achieving automatic movement in the corresponding direction.
[0094] like Figure 5 As shown, the disinfection cabinet also includes a fourth connector 307. In this embodiment, the disinfection cabinet includes both a second track 304 and a third track 306. The fourth connector 307 is movably mounted within the third track 306 and hinged to the toothed track, allowing the toothed track to rotate relative to the cabinet body 20. The toothed track can translate relative to the cabinet body 20 along the extension direction of the third track 306 via the fourth connector 307. The movement of the drawer 10 along the extension direction of the second track 304, the movement along the extension direction of the third track 306, and the tilt angle adjustment are interconnected. This allows for a relatively simple and compact structure to achieve the corresponding movement and tilt angle adjustment, while ensuring that the movement and tilt angle adjustments do not interfere with each other.
[0095] In other alternative embodiments, where the disinfection cabinet includes only one of the second track 304 and the third track 306, when the disinfection cabinet includes only the second track 304, the fourth connector 307 is connected to the inner wall of the cabinet body 20, and the fourth connector 307 is movable relative to the cabinet body 20 in a direction parallel to the second track 304. The fourth connector 307 is hinged to the toothed track so that the toothed track can rotate relative to the cabinet body 20. When the disinfection cabinet includes only the third track 306, the fourth connector 307 is fitted inside the third track 306, and the fourth connector 307 is fixed to the toothed track. The toothed track is arranged perpendicular to the third track 306 so that the toothed track can translate relative to the cabinet body 20 along the extending direction of the third track 306.
[0096] Here, the movement of drawer 10 along the extension direction of the second track 304 / along the extension direction of the third track 306 is related to the tilt angle adjustment of drawer 10. This allows for a relatively simple and compact structure to achieve the corresponding movement and tilt angle adjustment, while ensuring that the movement and tilt angle adjustment do not interfere with each other. When the third track 306 is provided, the fourth connector 307 is directly installed on the third track 306, eliminating the need for additional structural components for installing or setting the fourth connector 307, which further simplifies the structure of the disinfection cabinet.
[0097] As a preferred configuration, the steering adjustment mechanism 30 is configured to allow the drawer 10 to tilt relative to the cabinet 20 within a range of -45° to 45° around the second connecting member. Of course, this range can be adjusted according to actual needs.
[0098] In summary, the drawer 10 of the disinfection cabinet in this embodiment can move forward and backward along the second track 304 and up and down along the third track 306. Furthermore, its tilt angle can be adjusted by a servo motor, gears, and toothed rails (also known as gear sleeves). The tilt angle adjustment of the drawer 10 can be performed automatically during up / down movement or forward / backward movement, or it can be adjusted independently when the drawer 10 is not moving. That is, up / down movement, forward / backward movement, and tilt angle adjustment can be performed independently or simultaneously during movement, providing superior flexibility and effectively improving disinfection and drying results, while also facilitating the user's loading and unloading of items.
[0099] While specific embodiments of the present invention have been described above, those skilled in the art should understand that these are merely illustrative examples, and the scope of protection of the present invention is defined by the appended claims. Those skilled in the art can make various changes or modifications to these embodiments without departing from the principles and essence of the present invention, but all such changes and modifications fall within the scope of protection of the present invention.
Claims
1. A disinfection cabinet, comprising drawers and a cabinet body, characterized in that, The drawer is movably disposed inside the cabinet. The disinfection cabinet also includes a steering adjustment mechanism, which is connected between the drawer and the cabinet body. The steering adjustment mechanism is at least partially connected to the drawer so that when the drawer is in a moving state or when it is moved to any position within a preset moving range, the steering adjustment mechanism can drive the drawer to rotate relative to the cabinet body. The steering adjustment mechanism includes a first driving component, a first connecting component, and a second connecting component; The first drive component is fixed to the drawer; The first connecting component is connected between the drawer and the cabinet body. The first connecting component is connected to the output end of the first driving component. The first connecting component is used to convert the motion of the output end of the first driving component into linear motion and to drive the drawer to rotate. The second connecting member is hinged to the drawer and is spaced apart from the first connecting member in the rotation plane of the drawer, so that the drawer can rotate around the second connecting member; The first connecting component includes a first connector and a first track; The first connector is connected to the output end of the first drive unit, and the first connector is movably disposed within the first track; The first track is fixed relative to the cabinet in the direction in which the first connector moves along the first track; The first driving component is a servo motor, the first connecting component is a gear, and the first track is a toothed track; The servo motor housing is fixed to the drawer, and the servo motor output shaft is coaxially fixed with the gear. The gear meshes with the toothed track; The toothed track can rotate relative to the cabinet, or the toothed track can translate relative to the cabinet in a direction perpendicular to the first connector moving along the toothed track. The disinfection cabinet also includes a second track and a second connector, the second track being fixed to the drawer and the second connector being movably assembled within the second track; And / or, the disinfection cabinet further includes a third track and a third connector, the third track being fixed to the cabinet body and the third connector being movably assembled within the third track; When the drawer is in a horizontal position, the extension direction of the second track is parallel to the extension direction of the first track, and the extension direction of the second track is perpendicular to the extension direction of the third track.
2. The disinfection cabinet as described in claim 1, characterized in that, When the disinfection cabinet includes both the second connector and the third connector, the second connector and the third connector are fixedly connected.
3. The disinfection cabinet as described in claim 1, characterized in that, When the disinfection cabinet includes both the second connector and the third connector, the second connector, the second connector, and the third connector are an integral structure. Alternatively, when the disinfection cabinet includes only one of the second connector and the third connector, the second connector is an integral structure with the included second connector or the third connector.
4. The disinfection cabinet as described in claim 1, characterized in that, The second track is provided with a first linear motor and a first spring. The first end of the first linear motor is fixed to one end of the second track, and the second end of the first linear motor abuts against the first side of the movement direction of the second connector. The first end of the first spring is fixed to the other end of the second track, and the second end of the first spring abuts against the second side of the movement direction of the second connector. And / or, the third track is provided with a second linear motor and a second spring, the first end of the second linear motor is fixed to one end of the third track, the second end of the second linear motor abuts against the first side of the movement direction of the third connector, the first end of the second spring is fixed to the other end of the third track, and the second end of the second spring abuts against the second side of the movement direction of the third connector.
5. The disinfection cabinet as described in claim 1, characterized in that, The disinfection cabinet also includes a fourth connector, which is movably assembled into the third track when the disinfection cabinet includes both the second track and the third track. The fourth connector is hinged to the toothed track so that the toothed track can rotate relative to the cabinet. The toothed track can be translated relative to the cabinet along the extension direction of the third track via the fourth connector.
6. The disinfection cabinet as described in claim 1, characterized in that, The disinfection cabinet also includes a fourth connector, in the case where the disinfection cabinet includes only one of the second and third tracks: When the disinfection cabinet includes only the second track, the fourth connector is connected to the inner wall of the cabinet, and the fourth connector can move relative to the cabinet in a direction parallel to the second track. The fourth connector is hinged to the toothed track so that the toothed track can rotate relative to the cabinet. When the disinfection cabinet includes only the third track, the fourth connector is assembled inside the third track and fixed to the toothed track. The toothed track is arranged perpendicular to the third track so that the toothed track can translate relative to the cabinet body along the extension direction of the third track.
Citation Information
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