Solid-state USB flash disk test cabinet with detachable heat insulation mechanism
By designing a detachable heat insulation mechanism connection device in the solid-state USB flash drive test cabinet, the heat insulation mechanism can be quickly installed and disassembled using guide grooves and snap-fit structures. This solves the problem of the heat insulation mechanism being difficult to install and disassemble, improves the flexibility and ease of maintenance of the test cabinet, and extends its service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-04-14
AI Technical Summary
Existing solid-state USB flash drive test cabinets have deficiencies in the quick-disassembly and assembly structure of the insulation mechanism, making it impossible to flexibly adjust the insulation effect. Furthermore, the maintenance and replacement of insulation materials are inconvenient, affecting the efficiency and economy of the test cabinet.
A solid-state USB flash drive test cabinet with a detachable heat insulation mechanism was designed. Through the connection device including a positioning base plate and a connecting frame, the heat insulation mechanism can be quickly inserted, positioned and disassembled by the cooperation of guide grooves, buckle protrusions and buckle grooves, ensuring that the heat insulation mechanism can be flexibly adjusted according to test requirements.
It enables rapid installation and disassembly of the insulation mechanism, facilitating adjustments to the insulation effect according to testing needs, improving the flexibility and efficiency of the test cabinet, and also facilitating the maintenance and replacement of insulation materials, thus extending the service life of the test cabinet.
Smart Images

Figure CN224123126U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of test cabinets, specifically to a solid-state USB flash drive test cabinet with a detachable heat insulation mechanism. Background Technology
[0002] Solid-state drives (SSDs) are storage devices made using solid-state electronic storage chip arrays. Before leaving the factory, manufacturers insert SSDs into computers or servers and provide a stable DC 5V voltage to test their read and write operations. This high-temperature environment and stable voltage testing helps filter out potentially problematic or unstable products, ensuring that all products meet industry performance requirements. Therefore, testing is typically performed using a test cabinet.
[0003] Existing solid-state drive (SSD) test cabinets typically consist of a main cabinet body, testing equipment, a temperature control system, and a control system. The main cabinet body has multiple test bays, each capable of housing one or more SSDs for testing. The testing equipment sends test commands to the SSDs and receives their response data to evaluate their performance. The temperature control system simulates different temperature environments to test the stability and reliability of the SSDs under varying temperatures. The control system manages and monitors the entire testing process, ensuring that the tests proceed according to the predetermined procedure.
[0004] However, existing solid-state USB flash drive test cabinets still have some shortcomings in terms of the quick-release and disassembly structure of the insulation mechanism. Specifically, solid-state USB flash drive test cabinets may require different insulation effects at different testing stages, and traditional insulation mechanisms are difficult to adjust once installed, failing to meet flexible and varied testing needs. In addition, the maintenance and replacement of insulation materials are not convenient enough, affecting the efficiency and economy of the test cabinet. Therefore, designing a detachable insulation mechanism that can flexibly adjust the insulation effect according to testing needs and facilitate the maintenance and replacement of insulation materials is of great significance for improving the performance and service life of the test cabinet. Utility Model Content
[0005] The purpose of this utility model is to solve the above-mentioned defects and provide a solid-state USB flash drive test cabinet with a detachable heat insulation mechanism. This solves the technical problem in the prior art where the heat insulation mechanism of the existing test cabinet is not easy to be quickly disassembled and assembled, which makes it impossible to meet the testing requirements of the changing heat insulation environment, thus affecting the use and convenience of the test cabinet.
[0006] The objective of this utility model is achieved through the following means:
[0007] A solid-state USB flash drive test cabinet with a detachable heat insulation mechanism includes a cabinet with an internal cavity. The inner wall of the cavity is provided with a connecting device, which includes a positioning base plate and two symmetrically arranged connecting brackets. The positioning base plate is connected to the bottom wall of the cavity, and the two connecting brackets are symmetrically arranged on both sides of the positioning base plate and connected to the inner wall of the cavity. Each adjacent inner side of the two connecting brackets has a guide groove for quick insertion of the heat insulation mechanism, allowing the heat insulation mechanism to slide along the guide groove and be paired with the positioning base plate. The end of the connecting bracket away from the positioning base plate has a latching protrusion for holding the heat insulation mechanism. The side of the heat insulation mechanism has a latching groove that is paired with the latching protrusion. The side of the cabinet near the heat insulation mechanism has an installation slot communicating with the cavity, and the installation slot is hinged to a rotatable and closable sealing plate.
[0008] Furthermore, as described above, the inner surfaces of both connecting brackets are provided with limiting protrusions for holding the heat insulation mechanism, and the two connecting brackets are connected to the inner wall of the receiving cavity through mounting holes.
[0009] The extension of the limiting protrusion forms a guide groove for holding the heat insulation mechanism, and the heat insulation mechanism can be quickly inserted and assembled along the guide groove, thereby improving the convenience of installation and subsequent quick disassembly and replacement.
[0010] Furthermore, as described above, the buckle protrusion is formed in the guide groove. The buckle protrusion is formed into a protrusion shape by bending. The heat insulation mechanism slides along the guide groove and is engaged with the buckle protrusion through the buckle groove.
[0011] The heat insulation mechanism slides along the guide groove to the designated position, so that the snap-fit groove and snap-fit protrusion engage and match, thereby completing the positioning for quick installation of the heat insulation mechanism and improving the convenience and reliability of the heat insulation mechanism installation.
[0012] Furthermore, as described above, a positioning groove is formed on the positioning base plate, and a protruding insertion protrusion is formed within the positioning groove.
[0013] By setting the base plate, the insertion and positioning of the heat insulation mechanism is further improved, enabling the heat insulation mechanism to be quickly installed and disassembled. This allows the heat insulation mechanism to be flexibly adjusted according to the internal space of the test cabinet and the layout of the USB flash drive, ensuring the heat insulation effect without affecting the test operation.
[0014] Furthermore, as described above, the positioning groove is V-shaped, and a wedge-shaped inclined surface is formed on the positioning groove.
[0015] The bottom of the positioning plate has a positioning slope that fits into contact with the wedge-shaped slope, which improves the positioning effect of the heat insulation mechanism through the connecting device.
[0016] Furthermore, as described above, the bottom of the heat insulation mechanism is provided with a positioning plate for mating positioning grooves, and the positioning plate is provided with insertion grooves for mating insertion with the insertion protrusions.
[0017] The connection between the heat insulation mechanism and the positioning plate allows for insertion and assembly between the positioning plate and the positioning groove. The insertion protrusion and the insertion groove are matched with a snap fastener, enabling quick pairing and installation of the heat insulation mechanism and the connecting device. At the same time, the snap fastener between the insertion protrusion and the insertion groove, as well as the guide groove, prevent the heat insulation mechanism from loosening or shifting, thus improving the stability and reliability of the connection.
[0018] Furthermore, as described above, two mounting slots are provided, and the two mounting slots are symmetrically arranged on both sides of the cabinet. Two sets of connecting devices are provided, and the two sets of connecting devices are respectively located on the inner side of the receiving cavity near the mounting slot.
[0019] The beneficial effects of this utility model are as follows: The detachable connection of the heat insulation mechanism via the connecting device allows for quick replacement or adjustment of the heat insulation mechanism during testing of the solid-state USB flash drive inside the test cabinet, adapting to different temperature control requirements and improving testing flexibility and efficiency. Simultaneously, the detachable connection of the heat insulation mechanism facilitates subsequent cleaning and maintenance, extending the service life of the test cabinet. Specifically, the design of the mounting slot facilitates the entry and exit of the heat insulation mechanism, and a sealing plate connected by hinges maintains the cabinet's airtightness. The heat insulation mechanism slides along the path of the guide groove and is quickly locked and released by the matching of the buckle groove and buckle protrusion. This allows for efficient installation and positioning of the heat insulation mechanism via two connecting brackets, avoiding misalignment or damage during installation and enhancing the convenience and reliability of heat insulation mechanism installation in the test cabinet. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the overall structure of this embodiment;
[0021] Figure 2 This is a schematic diagram of the connection device in this embodiment;
[0022] Figure 3 This is a schematic diagram of the connecting device in this embodiment;
[0023] Figure 4 for Figure 3 A magnified view of part A in the diagram;
[0024] Figure 5 for Figure 3 A magnified view of part B in the diagram;
[0025] The reference numerals in the diagram are as follows: 1-cabinet, 2-accommodating cavity, 3-positioning base plate, 4-connecting frame, 5-guide groove, 6-snap protrusion, 7-snap groove, 8-mounting slot, 9-hinge, 10-sealing plate, 11-limiting protrusion, 12-mounting hole, 13-positioning groove, 14-insertion protrusion, 15-wedge tightening slope, 16-positioning plate, 17-insertion groove, 18-heat insulation mechanism. Detailed Implementation
[0026] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0027] In this embodiment, refer to Figures 1-5 The present invention relates to a solid-state USB flash drive test cabinet with a detachable heat insulation mechanism, comprising a cabinet 1, wherein the cabinet 1 has an internal cavity 2, and the inner wall of the cavity 2 is provided with a connecting device, the connecting device comprising a positioning base plate 3 and two symmetrically arranged connecting brackets 4. The positioning base plate 3 is connected to the bottom wall of the cavity 2, and the two connecting brackets 4 are symmetrically arranged on both sides of the positioning base plate 3 and connected to the inner wall of the cavity 2. The adjacent inner sides of the two connecting brackets 4 are provided with guide grooves 5 for quick insertion of the heat insulation mechanism 18, so that the heat insulation mechanism can slide along the guide grooves 5 and be paired with the positioning base plate 3 for installation. The end of the connecting bracket 4 away from the positioning base plate 3 is provided with a buckle protrusion 6 for holding the heat insulation mechanism. The side of the heat insulation mechanism is provided with a buckle groove 7 that is paired with the buckle protrusion 6. The side of the cabinet 1 near the heat insulation mechanism is provided with an installation slot 8 that communicates with the cavity 2. The installation slot 8 is connected to a rotatable and closable sealing plate 10 through a hinge 9.
[0028] The connecting device includes a positioning base plate 3 and two symmetrically arranged connecting frames 4, which can stably support the heat insulation mechanism and ensure the stability of the bottom of the heat insulation mechanism through the positioning base plate 3. The connecting frames 4 provide guide grooves 5, which simplify the installation steps of the heat insulation mechanism and improve assembly efficiency.
[0029] The inner surfaces of both connecting brackets 4 are provided with limiting protrusions 11 for holding the heat insulation mechanism 18. The two connecting brackets 4 are connected to the inner wall of the receiving cavity 2 through mounting holes 12. The limiting protrusions 11 extend to form guide grooves 5 for holding the heat insulation mechanism, and the heat insulation mechanism can be quickly inserted and assembled along the guide grooves 5, thereby improving the convenience of installation and subsequent quick disassembly and replacement.
[0030] The latching protrusion 6 is formed within the guide groove 5. The latching protrusion 6 is formed by bending. The heat insulation mechanism 18 slides along the guide groove 5 and engages with the latching protrusion 6 through the latching groove 7. When the heat insulation mechanism slides along the guide groove 5 to a designated position, the latching groove 7 engages with the latching protrusion 6, thereby completing the positioning for rapid installation of the heat insulation mechanism and improving the convenience and reliability of its installation.
[0031] The positioning base plate 3 has a positioning groove 13, and a protruding insertion protrusion 14 is formed within the positioning groove 13. The positioning base plate 3 further improves the insertion positioning of the heat insulation mechanism, enabling quick installation and disassembly of the heat insulation mechanism. It allows for flexible adjustment of the heat insulation mechanism according to the internal space of the test cabinet and the layout of the USB flash drive, ensuring the heat insulation effect without affecting the test operation.
[0032] The positioning groove 13 is V-shaped, and a wedge-tightening inclined surface 15 is formed on the positioning groove 13. The bottom of the positioning plate 16 has a positioning inclined surface that fits into contact with the wedge-tightening inclined surface 15, so that the connection device can improve the positioning effect of the heat insulation mechanism.
[0033] The bottom of the heat insulation mechanism 18 is provided with a positioning plate 16 for mating with the positioning groove 13. The positioning plate 16 has an insertion groove 17 for mating with the insertion protrusion 14. The connection between the heat insulation mechanism and the positioning plate 16 allows for insertion and mating between the positioning plate 16 and the positioning groove 13, and for quick mating and installation of the heat insulation mechanism and the connecting device through the snap-fit mating of the insertion protrusion 14 and the insertion groove 17. At the same time, the snap-fit mating of the insertion protrusion 14 and the insertion groove 17 and the setting of the guide groove 5 prevent the heat insulation mechanism from loosening or shifting, improving the stability and reliability of the connection.
[0034] Two mounting slots 8 are provided, and the two mounting slots 8 are symmetrically arranged on both sides of the cabinet 1. Two sets of connecting devices are provided, and the two sets of connecting devices are respectively located on the inner side of the receiving cavity 2 near the mounting slots 8.
[0035] Specifically, the heat insulation mechanism 18 in this embodiment includes a heat insulation board and a heat insulation film adhered to the heat insulation board. The heat insulation board is filled with heat insulation cotton and is made of heat insulation foam board. The heat insulation mechanism is a conventional technical means in this field and will not be described in detail here.
[0036] The specific installation and usage process of this embodiment is as follows: The connecting device is installed in the receiving cavity 2 of the cabinet 1. The sealing plate 10 is connected to the cabinet 1 through the hinge 9, so that the sealing plate 10 is opened. The heat insulation mechanism 18 of different specifications is sleeved on the positioning plate 16 and inserted into the receiving cavity 2 through the mounting slot 8, so that the heat insulation mechanism is set between the two connecting brackets 4. The heat insulation mechanism is slid along the guide groove 5, and the positioning plate 16 is matched with the positioning groove 13, so that the insertion protrusion 14 is engaged with the insertion groove 17. At the same time, the guide groove 5 formed by the two connecting brackets 4 prevents the heat insulation mechanism from loosening or shifting, thereby improving the stability and reliability of the connection. When inserted into the set position, the side of the heat insulation mechanism is fastened and positioned by the snap-fit groove 7 and the snap-fit protrusion 6 in the guide groove 5. Conversely, the heat insulation mechanism is slid out along the guide groove 5, thus completing the quick installation and positioning of the heat insulation mechanism. It can be detachably connected to the heat insulation mechanism through the connecting device. During the test, the solid-state USB flash drive in the test cabinet can be quickly replaced or adjusted according to actual needs to adapt to different temperature control requirements, improving the flexibility and efficiency of the test. At the same time, the detachable installation of the heat insulation mechanism in the cabinet 1 can enhance the convenience and reliability of the heat insulation mechanism installation.
[0037] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.
Claims
1. A detachable heat insulation mechanism solid-state USB flash disk test cabinet, comprising a cabinet, a containing cavity is formed in the inside of the cabinet, characterized in that: The inner wall of the receiving cavity is provided with a connecting device, which includes a positioning base plate and two symmetrically arranged connecting frames. The positioning base plate is connected to the bottom wall of the receiving cavity. The two connecting frames are symmetrically arranged on both sides of the positioning base plate and connected to the inner wall of the receiving cavity. The inner sides of the adjacent connecting frames are formed with guide grooves for quick insertion of the heat insulation mechanism, so that the heat insulation mechanism can slide along the guide grooves and be paired with the positioning base plate for installation. The end of the connecting frame away from the positioning base plate is provided with a buckle protrusion for holding the heat insulation mechanism. The side of the heat insulation mechanism is provided with a buckle groove that is paired with the buckle protrusion. The side of the cabinet near the heat insulation mechanism is provided with an installation slot that communicates with the receiving cavity. The installation slot is connected to a rotatable and closable sealing plate by a hinge.
2. The solid state USB flash drive testing cabinet with detachable thermal insulation mechanism according to claim 1, characterized in that: The inner sides of both connecting frames are formed with limiting protrusions for holding the heat insulation mechanism, and the two connecting frames are connected to the inner wall of the receiving cavity through mounting holes.
3. The solid state USB flash drive testing cabinet with detachable thermal insulation mechanism according to claim 1, characterized in that: The buckle protrusion is formed in the guide groove. The buckle protrusion is formed into a protrusion by bending. The heat insulation mechanism slides along the guide groove and is matched with the buckle protrusion by buckle groove.
4. The solid state USB flash drive testing cabinet with detachable thermal insulation mechanism according to claim 1, characterized in that: A positioning groove is formed on the positioning base plate, and a protruding insertion protrusion is formed inside the positioning groove.
5. The solid state USB flash drive testing cabinet with detachable thermal insulation mechanism according to claim 4, characterized in that: The positioning groove is V-shaped, and a wedge-shaped inclined surface is formed on the positioning groove.
6. The solid-state USB flash drive testing cabinet with detachable thermal insulation mechanism according to claim 4 or 5, characterized in that: The bottom of the heat insulation mechanism is provided with a positioning plate for matching positioning grooves, and the positioning plate is provided with a insertion groove for matching insertion with the insertion protrusion.
7. The solid-state USB flash drive testing cabinet with detachable thermal insulation mechanism according to any one of claims 1-5, characterized in that: Two mounting slots are provided, and the two mounting slots are symmetrically arranged on both sides of the cabinet. Two sets of connecting devices are provided, and the two sets of connecting devices are respectively located on the inner side of the receiving cavity near the mounting slot.