Disinfection cabinet aging test device
By designing a disinfection cabinet aging test device with a support device and a conductive track device, the automated assembly, aging test and warehousing process of the disinfection cabinet has been realized, which solves the problem of low production efficiency in the existing technology and improves the production efficiency and reliability of aging test of the disinfection cabinet.
Patent Information
- Application Number
- CN202520334869.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-27
AI Technical Summary
In existing technologies, aging tests need to be conducted in a separate aging test room, which affects the production efficiency of disinfection cabinets.
A disinfection cabinet aging test device was designed, which includes a support device, a conveying track device, a lifting device, and a conductive track device. The conductive conveying mechanism realizes the automated process of assembly, aging test, and product storage, and ensures that the conductive tooling device is continuously and stably connected during the conveying process.
This has improved the production efficiency of disinfection cabinets, avoided intermittent power outages, and enhanced the reliability and automation of aging testing devices.
Smart Images

Figure CN223770311U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of aging test, in particular to an aging test device for a disinfection cabinet. BACKGROUND
[0002] The aging test is a test method for products or materials under specific environmental conditions for a long time, aiming to evaluate the performance, reliability and durability of the products or materials under simulated actual use or accelerated aging conditions, and common test items include electrical performance test, mechanical performance test, appearance inspection and function test, the electrical performance test includes measuring parameters such as voltage, current, resistance, insulation resistance and capacitance of the product, checking whether the parameters meet the standard requirements, and judging whether the electrical performance of the product is stable or not.
[0003] In the prior art, the aging test is generally configured in a separate aging test room, after the product is assembled, the product needs to be sent to the aging test room again, and after the aging test is completed, the product is put into storage or sent out, so that the production efficiency of the disinfection cabinet is affected. CONTENT OF THE UTILITY MODEL
[0004] The utility model embodiment provides a kind of disinfection cabinet aging test device, realize the automation of assembly, aging test and the product in storage of aging test device in daily work process, effectively improve the production efficiency of disinfection cabinet.
[0005] To achieve the foregoing object, the application adopts the following technical solutions:
[0006] A disinfection cabinet aging test device, characterized by comprising
[0007] Support device;The support device includes upper support frame and lower support frame;
[0008] Conveying rail device connected to the support device;
[0009] Lifting device;The lifting device is connected to one end of the support device;
[0010] Electrically conductive track device connected to the support device;The electrically conductive track device includes an electrically conductive track, an elastic support mechanism connected to the electrically conductive track, and an electrically conductive conveying mechanism connected to the elastic support mechanism, two limit pieces are provided inside the electrically conductive track along the transverse direction, and the electrically conductive track and the limit pieces cooperate to form a containing bin, at least one set of limit grooves is provided at the bottom of the containing bin along the conveying direction, the elastic support mechanism includes an elastic support assembly and an electrically conductive support plate connected to the elastic support assembly;One end of the elastic support assembly abuts against the limit groove, and the other end abuts against the electrically conductive support plate;
[0011] a conductive tooling device; the conductive tooling device is conveyed on the conductive track device or the conveying track device;
[0012] The conductive conveying mechanism electrically connects the conductive tooling device with the conductive support plate.
[0013] In some alternative embodiments, two groups of the limiting pieces are opposite to each other and have a certain interval between them.
[0014] In some alternative embodiments, the conductive conveying mechanism comprises a conveying assembly and a rolling assembly connected to the conveying assembly.
[0015] In some alternative embodiments, the conveying assembly comprises at least one group of primary conveying pieces and at least one group of secondary conveying pieces, the primary conveying pieces are axially connected with the secondary conveying pieces, and the rolling assembly comprises at least one group of rollers, the rollers are located between the intervals of the two groups of limiting pieces.
[0016] In some alternative embodiments, the conductive support plate comprises a support plate layer and a conductive layer covering the support plate layer.
[0017] In some alternative embodiments, the limiting pieces are T-shaped.
[0018] In some alternative embodiments, one group of the limiting grooves has at least ten limiting grooves.
[0019] In some alternative embodiments, the conductive track is further provided with limiting bosses, and opposite two side walls of the conductive tooling device are matched with the limiting bosses.
[0020] In some alternative embodiments, the number of the primary conveying pieces is twice the number of the secondary conveying pieces, one group of the primary conveying pieces has at least twenty primary conveying pieces, one group of the secondary conveying pieces has at least ten secondary conveying pieces, and one group of the rollers has at least forty rollers, the adjacent rollers have gaps between them, and the rollers are connected with the primary conveying pieces.
[0021] In some alternative embodiments, the rollers abut against the conductive tooling device.
[0022] The sterilization cabinet aging test device provided by the present application has the following beneficial effects:
[0023] In the technical solution adopted in this application, the support device includes an upper support frame and a lower support frame. The support device is connected to a conveying rail device, a lifting device, and a conductive rail device. Two limiting plates arranged laterally inside the conductive rail of the conductive rail device cooperate with the conductive rail to form a receiving compartment. At least one set of limiting grooves is provided at the bottom of the receiving compartment along the conveying direction. The elastic support mechanism in the conductive rail device is connected to the conductive rail. The elastic support mechanism includes an elastic support component and a conductive support plate connected to the elastic support component. One end of the elastic support component abuts against the limiting groove, and the other end abuts against the conductive support plate. The conductive conveying mechanism in the conductive rail device is connected to the elastic support mechanism. At the same time, the conductive tooling device is conveyed on the conductive rail device or the conveying rail device. The conductive conveying mechanism electrically connects the conductive support plate to the conductive tooling device to realize the automated completion of assembly, aging testing, and warehousing of products in the daily operation of the aging test device, effectively improving the production efficiency of the disinfection cabinet. Attached Figure Description
[0024] Other features, objects, and advantages of this application will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0025] Figure 1 This is a perspective view of an aging test device for a disinfection cabinet according to this application;
[0026] Figure 2 This is a partial structural diagram of the conductive track device in an aging test device for a disinfection cabinet according to this application;
[0027] Figure 3 yes Figure 2 Enlarged view of circle A shown;
[0028] Figure 4 This is a partial structural diagram of the conductive track in a disinfection cabinet aging test device of this application;
[0029] Figure 5 yes Figure 4 Enlarged view of circle B shown;
[0030] Figure 6 This is a schematic diagram of the conductive support plate in an aging test device for a disinfection cabinet according to this application;
[0031] Figure 7 This is a perspective view of the conductive transmission mechanism in an aging test device for a disinfection cabinet according to this application.
[0032] Figure label:
[0033] 10. Support device; 11. Upper support frame; 12. Lower support frame;
[0034] 20. Conveying track device;
[0035] 30. Lifting device;
[0036] 40. Conductive track device; 41. Conductive track; 41A. Receiving compartment; 41A1. Limiting groove; 411. Limiting piece; 412. Limiting boss; 42. Elastic support mechanism; 421. Elastic support assembly; 422. Conductive support plate; 4221. Support plate layer; 4222. Conductive layer; 43. Conductive conveying mechanism; 431. Conveying assembly; 4311. Primary conveying piece; 4312. Secondary conveying piece; 432. Rolling assembly; 4321. Roller;
[0037] 50. Conductive tooling device. Detailed Implementation
[0038] The specific embodiments of this application are described below with reference to the accompanying drawings and examples. Through the content described in this specification, those skilled in the art can clearly and completely understand the technical solution, the technical problem solved, and the resulting technical effects of this application. It is understood that the specific embodiments described herein are only for explaining this application and not for limiting it. Furthermore, for ease of description, only the parts related to this application are shown in the accompanying drawings.
[0039] It should be noted that the structures, proportions, sizes, etc., shown in the accompanying drawings are only for the purpose of assisting those skilled in the art in understanding and reading the contents described in the specification, and are not intended to limit the conditions under which this application can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportional relationships, or adjustments to the size should fall within the scope of the technical content disclosed in this application, provided that they do not affect the effects and purposes that this application can produce.
[0040] The use of terms such as "first," "second," and "the" does not imply quantity limitation and may indicate singular or plural. The terms "comprising," "including," "having," and any variations thereof used in this application are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or device that includes a series of steps or modules is not limited to the listed steps or units, but may also include steps or units not listed, or other steps or units inherent to such processes, methods, products, or devices. The terms "connected," "linked," and "coupled" used in this application are not limited to physical or mechanical connections, but may also include direct or indirect electrical connections.
[0041] It should also be noted that the longitudinal section corresponding to the embodiment of this application can be the section corresponding to the front view direction, the transverse section can be the section corresponding to the right view direction, and the horizontal section can be the section corresponding to the top view direction.
[0042] Furthermore, where there is no conflict, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.
[0043] refer to Figure 1 and Figure 2 , Figure 1 This is a perspective view of an aging test device for a disinfection cabinet according to this application. Figure 2 This is a partial structural diagram of the conductive track device in an aging test apparatus for a disinfection cabinet according to this application. Figure 1 and Figure 2 As shown, a disinfection cabinet aging test device includes a support device 10, a conveying track device 20 connected to the support device 10, a lifting device 30, a conductive track device 40 connected to the support device 10, and a conductive fixture device 50. During the operation of the aging test device, the conductive fixture device 50 is conveyed on the conductive track device 40 or the conveying track device 20. The conductive fixture device 50 is made of conductive metal. It should be noted that the conductive track device 40 is energized, while the conveying track device 20 is not energized. When the conductive fixture device 50 is conveyed to the conductive track device 40, the conductive fixture device 50 is energized, and aging testing is performed while conveying. When the conductive fixture device 50 is conveyed to the conveying track device 20, the conductive fixture device 50 is de-energized, and only conveying is performed without testing.
[0044] Continue to refer to Figure 1 The support device 10 includes an upper support frame 11 and a lower support frame 12. Furthermore, a conveying rail device 20 is connected to the lower support frame 12, a conductive rail device 40 is connected to the upper support frame 11, and a lifting device 30 is connected to one end of the support device 10 for reciprocating lifting between the upper support frame 11 and the lower support frame 12. Conversely, the conveying rail device 20 can be connected to the upper support frame 11, and the conductive rail 41 can be connected to the lower support frame 12.
[0045] refer to Figure 3 , Figure 4 and Figure 5 , Figure 3 yes Figure 2 The enlarged view of circle A shown. Figure 4 This is a partial structural diagram of the conductive track in an aging test device for a disinfection cabinet according to this application. Figure 5 yes Figure 4 An enlarged view of circle B shown. Figure 3 , Figure 4 and Figure 5As shown, the conductive track device 40 includes a conductive track 41, an elastic support mechanism 42 connected to the conductive track 41, and a conductive conveying mechanism 43 connected to the elastic support mechanism 42. Two limiting plates 411 are provided laterally inside the conductive track 41. The two limiting plates 411 are opposite each other and have a certain interval between them. The conductive track 41 and the limiting plates 411 cooperate to form a receiving chamber 41A. The bottom of the receiving chamber 41A is provided with at least one set of limiting grooves 41A1 along the conveying direction, and one set of limiting grooves 41A1 has at least ten limiting grooves 41A1. Furthermore, the number of limiting grooves 41A1 can be increased or decreased according to the length of the conductive track 41 along the conveying direction to meet the needs of the elastic force points of the elastic support mechanism 42. The limiting plates 411 are T-shaped. Here, the limiting piece 411 is T-shaped to limit the elastic support mechanism 42. The conductive transmission mechanism electrically connects the conductive support plate to the conductive tooling device. It should be noted that the T-shaped part of the limiting piece 411 limits the position of the conductive support plate 422, so that the elastic support assembly 421 is in a state of stored force contraction. The conductive support plate 422 contacts the limiting piece 411 to realize the conductive track 41, and the conductive layer 4222 of the conductive support plate 422 can be energized.
[0046] Continue to refer to Figure 4 The conductive track 41 is also provided with a limiting boss 412. The opposite side walls of the conductive tooling device 50 cooperate with the limiting boss 412 to constrain the conductive tooling device 50 during the transmission process, so as to prevent the conductive tooling device 50 from leaving the conductive track 41. The conductive track 41 is made of metal conductive material.
[0047] Continue to refer to Figure 5 The elastic support mechanism 42 includes an elastic support component 421 and a conductive support plate 422 connected to the elastic support component 421. One end of the elastic support component 421 abuts against the limiting groove 41A1, and the other end abuts against the conductive support plate 422 to provide elastic support for the conductive transmission mechanism 43. Here, the elastic support component 421 includes, but is not limited to, a tower spring, a column spring, etc.
[0048] refer to Figure 6 , Figure 6 This is a schematic diagram of the conductive support plate in an aging test device for a disinfection cabinet according to this application. Figure 6 As shown, the conductive support plate 422 includes a support plate layer 4221 and a conductive layer 4222 covering the support plate layer 4221. The support plate layer 4221 is an insulating layer and includes, but is not limited to, plastic, ceramic, etc. The conductive layer 4222 is a conductive metal material. After an external power supply is connected, the conductive layer 4222 can be energized. It includes, but is not limited to, copper, aluminum, steel, etc.
[0049] Here, with the cooperation between the elastic support mechanism 42 and the conductive transmission mechanism 43, the elastic support mechanism 42 provides elastic support to the conductive transmission mechanism 43. During the aging test of the disinfection cabinet, the conductive track device 40 and the conductive fixture plate can make real-time contact, thereby avoiding the situation of the conductive fixture plate experiencing a phased power outage during the transmission process and improving the reliability of the aging test device.
[0050] refer to Figure 7 , Figure 7 This is a perspective view of the conductive transmission mechanism in an aging test device for a disinfection cabinet according to this application. Figure 7 As shown, the conductive conveying mechanism 43 includes a conveying component 431 and a rolling component 432 connected to the conveying component 431. The conveying component 431 includes at least one set of primary conveying plates 4311 and at least one set of secondary conveying plates 4312. The primary conveying plates 4311 and the secondary conveying plates 4312 are connected by a shaft. Through this shaft connection, a certain unevenness will occur between the primary conveying plates 4311 and the secondary conveying plates 4312, which will cause the rollers 4321 to be uneven and unable to make complete contact with the conductive tooling device 50. Therefore, the elastic support mechanism 42 provides continuous elastic support for the rollers 4321, corrects the unevenness caused by the shaft connection between the primary conveying plates 4311 and the secondary conveying plates 4312, and avoids poor contact between the rollers 4321 and the conductive tooling device 50. The number of primary conveyor plates 4311 is twice the number of secondary conveyor plates 4312. A set of primary conveyor plates 4311 has at least twenty primary conveyor plates 4311, and a set of secondary conveyor plates 4312 has at least ten secondary conveyor plates 4312. The rolling assembly 432 includes at least one set of rollers 4321, and a set of rollers 4321 has at least forty rollers 4321. There is a gap between adjacent rollers 4321 to avoid short circuit between adjacent rollers 4321. The rollers 4321 are connected to the primary conveyor plates 4311 and are located between the intervals of the two limiting plates 411. Specifically, the rollers 4321 abut against each other with the conductive tooling device 50 and form an elastic abutment under the action of the aforementioned elastic support mechanism 42. The rollers 4321 are made of a metallic conductive material, including but not limited to copper, aluminum, steel, etc.
[0051] Here, the support device 10 includes an upper support frame 11 and a lower support frame 12. The support device 10 is connected to a conveying rail device 20, a lifting device 30, and a conductive rail device 40. Two limiting plates 411 inside the conductive rail 41 of the conductive rail device 40 cooperate with the conductive rail 41 to form a receiving chamber 41A. The bottom of the receiving chamber 41A has at least one set of limiting grooves 41A1 along the conveying direction. The elastic support mechanism 42 in the conductive rail device 40 is connected to the conductive rail 41. The elastic support mechanism 42 includes an elastic support component 421 and a conductive support plate 422 connected to the elastic support component 421. One end of the elastic support component 421 abuts against… The conductive conveying mechanism 43 in the conductive track device 40 is connected to the elastic support mechanism 42, and the conductive tooling device 50 is conveyed on the conductive track device 40 or the conveying track device 20. This realizes the automation of assembly, aging test and warehousing of products in the daily operation of the aging test device, effectively improving the production efficiency of the disinfection cabinet. It also realizes the continuous and stable connection between the conductive conveying mechanism and the conductive tooling device in the daily operation of the aging test device, avoiding the situation of intermittent power failure of the conductive tooling plate during the conveying process, and improving the reliability of the aging test device.
[0052] To facilitate understanding, the working principle of this application is further described as follows: In use, the disinfection cabinet aging test device first connects the lifting device 30 to the air supply, enabling it to complete the lifting action. Simultaneously, it energizes the conductive track device 40 and the conductive layer 4222 in the conductive support plate 422, and connects an external motor to run the conveying assembly 431. Then, through an external automatic guide device, the assembled disinfection cabinet is placed on the conductive tooling device 50 on the conveying track device 20 for transport. The conductive tooling device containing the disinfection cabinet is transported via the conveying track device 20. The 50 is transported to the working area of the lifting device 30. After the lifting device 30 senses the signal through the external sensing device, it is controlled by the external PLC to raise the lifting device 30 to the end of the upper support frame 11. Finally, the conductive tooling device 50 containing the disinfection cabinet is transferred to the conductive track device 40 through the corresponding conversion mechanism. At this time, the conductive tooling device 50 is powered on, and the corresponding disinfection cabinet is also powered on. The disinfection cabinet enters the working state of simultaneous transportation and aging test until the disinfection cabinet is put into storage through the external defective product classification device or directly shipped.
[0053] Although this application has been described and illustrated with reference to specific embodiments thereof, such description and illustration are not limiting of this application. It will be readily understood by those skilled in the art that various changes can be made and equivalent elements can be substituted within embodiments without departing from the true spirit and scope of this application as defined by the appended claims. Illustrations may not be drawn to scale. Differences may exist between the technical representation in this application and actual implementation due to variables in the manufacturing process, etc. Other embodiments of this application may exist that are not specifically described. The description and illustrations should be considered illustrative rather than restrictive. Modifications can be made to adapt particular circumstances, materials, composition, methods, or processes to the objectives, spirit, and scope of this application. All such modifications fall within the scope of the appended claims. While the methods disclosed herein have been described with reference to specific operations performed in a particular order, it should be understood that these operations can be combined, subdivided, or reordered to form equivalent methods without departing from the teachings of this application. Therefore, unless specifically indicated herein, the order and grouping of operations do not limit this application.
Claims
1. A sterilizer aging test apparatus, characterized by, The utility model relates to a kind of supporting device (10);The supporting device (10) includes upper support frame (11) and lower support frame (12); Connecting to the supporting device (10) conveying rail device (20); Lifting device (30);The lifting device (30) is connected to one end of the supporting device (10); Connecting to the supporting device (10) conducting rail device (40);The conducting rail device (40) includes conducting rail (41), elastic support mechanism (42) connected to the conducting rail (41) and conducting transmission mechanism (43) connected to the elastic support mechanism (42), two limit sheets (411) are provided inside the conducting rail (41) along transverse direction, the conducting rail (41) is matched with the limit sheet (411) to form accommodating bin (41A), the bottom of the accommodating bin (41A) is provided with at least a set of limit slot (41A1) along the direction of transmission, the elastic support mechanism (42) includes elastic support assembly (421), conducting support plate (422) connected to the elastic support assembly (421);One end of the elastic support assembly (421) is abutted to the limit slot (41A1), and the other end is abutted to the conducting support plate (422); Conducting tool device (50);The conducting tool device (50) is conveyed on the conducting rail device (40) or the conveying rail device (20); The conducting transmission mechanism is electrically connected the conducting tool device with the conducting support plate. Two sets of limit sheet (411) are opposite to each other, and there is a certain interval between two sets of limit sheet (411).
2. The sanitizing cabinet burn-in test device of claim 1, wherein, The conducting transmission mechanism (43) includes transmission assembly (431) and rolling assembly (432) connected to the transmission assembly (431).
3. The sanitizing cabinet burn-in test device of claim 1, wherein, The transmission assembly (431) includes at least a set of first-level transmission sheet (4311) and at least a set of second-level transmission sheet (4312), the first-level transmission sheet (4311) is connected with the second-level transmission sheet (4312) on shaft, the rolling assembly (432) includes at least a set of roller (4321), and the roller (4321) is located between the interval of two sets of limit sheet (411).
4. The sanitizing cabinet burn-in test device of claim 3, wherein, The conducting support plate (422) includes support plate layer (4221) and conducting layer (4222) covered on the support plate layer (4221).
5. The aging test device for a sterilizing cabinet of claim 1, wherein, The shape of the limit sheet (411) is T type.
6. The sanitizing cabinet burn-in test device of claim 2, wherein, A set of limit slot (41A1) has at least ten limit slots (41A1).
7. The sanitizing cabinet burn-in test device of claim 6, wherein, Limit boss (412) is further provided on the conducting rail (41), and opposite two side walls of the conducting tool device (50) are matched with the limit boss (412).
8. The aging test device for a sterilizing cabinet of claim 1, wherein, 9. The aging test device for a sterilizing cabinet of claim 4, wherein, The number of the primary conveying pieces (4311) is twice the number of the secondary conveying pieces (4312), one group of the primary conveying pieces (4311) has at least twenty primary conveying pieces (4311), one group of the secondary conveying pieces (4312) has at least ten secondary conveying pieces (4312), and one group of the rollers (4321) has at least forty rollers (4321), and gaps are provided between adjacent rollers (4321), and the rollers (4321) are connected with the primary conveying pieces (4311).
10. The sanitizing cabinet burn-in test device of claim 9, wherein, The rollers (4321) and the conductive tool device (50) abut each other.