Quick-release hard disk for environmental sanitation image acquisition
Through the quick disassembly hard disk design, the fast installation and disassembly of the hard disk is achieved by using connectors, fixing frames and locking components, solving the problem of low disassembly efficiency in the prior art with the help of tools and improving the efficiency of hard disk disassembly.
Patent Information
- Application Number
- CN202422181699.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-05
AI Technical Summary
The existing hard disk disassembly process requires special tools, resulting in low disassembly efficiency.
The quick-removal hard disk design includes a connector, fixing frame and locking components. The fast-removal hard disk body is inserted into the fixing frame and fixed it to the connector using the locking component to achieve rapid installation and removal of the hard disk.
It improves the disassembly efficiency of hard disk, simplifies the disassembly process, and reduces dependence on tools.
Smart Images

Figure CN223123619U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of hard disk installation, and particularly to a quick-release hard disk for environmental sanitation image acquisition. Background Art
[0002] The hard disk fixing bracket is the most widely used component in the chassis of products that require a large amount of data storage, such as computers, servers, and image acquisition memories.
[0003] In existing devices, in order to facilitate the disassembly of the hard disk, a separable frame is usually set outside the hard disk body. During use, the frame is first fixedly installed on the device, and then the hard disk body is carried by the frame, and then the hard disk body is inserted and pulled out on the frame to achieve the insertion and removal of the hard disk.
[0004] However, the current frame structure is simple. The common frame only has connection holes corresponding to the hard disk body on the frame, and then the frame and the hard disk body are fixedly connected by bolts, so that the frame and the hard disk body are fixed as a whole and set on the device. However, the disassembly process of this connection method often requires the use of special tools to disassemble the bolts, thereby reducing the disassembly efficiency of the hard disk. Utility Model Content
[0005] In order to improve the disassembly efficiency of the hard disk, this application provides a quick-release hard disk for environmental sanitation image acquisition.
[0006] A quick-release hard disk for environmental sanitation image acquisition provided by this application adopts the following technical solutions:
[0007] A quick-release hard disk for environmental sanitation image acquisition includes a frame for connecting with environmental sanitation equipment, and a hard disk body arranged on the frame. The frame includes:
[0008] A connection head, which is arranged on the environmental sanitation equipment and is used to connect the power interface and data interface of the hard disk body with the environmental sanitation equipment;
[0009] A fixing frame, which is arranged on the connection head and is used to fix the hard disk body. The hard disk body is slidably arranged in the fixing frame along the direction of approaching or departing from the connection head;
[0010] A locking component, which is arranged on the fixing frame and is used to tightly lock the hard disk body on the connection head.
[0011] By adopting the above technical solutions, the hard disk body is inserted into the fixing frame, the hard disk body is pushed to slide in the fixing frame, and finally the power connection head and data connection head of the hard disk body are jointly inserted into the connection ports on the connection head, and then the hard disk body is fixedly tightened on the connection head through the locking component to realize the installation of the hard disk, so as to improve the disassembly efficiency of the hard disk.
[0012] Furthermore, the fixing frame includes:
[0013] Guide plates, two groups of which are spaced apart on the connector head. On the opposite sides of the two groups of guide plates, sliding grooves are formed for slidably clamping the opposite side walls of the hard disk body. The two groups of guide plates and the end face of the connector head enclose a storage space for accommodating the hard disk body;
[0014] Support frame, which is arranged at one end of the two groups of guide plates away from the connector head and is used to support the end of the guide plate away from the connector head.
[0015] By adopting the above technical solution, the two groups of guide plates slide and guide the hard disk body through the sliding grooves, the storage space fixes and stores the hard disk body, and at the same time the support frame supports the end of the guide plate away from the connector head, reducing the probability of deformation of the guide plate.
[0016] Furthermore, support bars for supporting and fixing the end face of the hard disk body are spaced apart on the fixing frame. The two ends of the support bar are respectively arranged on the two groups of guide plates and abut against one end face of the hard disk body.
[0017] By adopting the above technical solution, the support bar is used to support and fix the end face of the hard disk body, improving the support and fixing effect of the fixing frame on the end face of the hard disk body.
[0018] Furthermore, through holes for ventilation and heat dissipation of the side wall of the hard disk body are spaced apart on the guide plate.
[0019] By adopting the above technical solution, the side of the hard disk body is in contact with the outside air through a plurality of through holes, so as to facilitate reducing the temperature of the hard disk body.
[0020] Furthermore, a rubber pad for buffering is arranged at one end of the connector head close to the hard disk body. The locking component presses the hard disk body against the rubber pad and makes the hard disk body closely connected to the power interface and data interface of the sanitation equipment.
[0021] By adopting the above technical solution, the rubber pad is used to buffer when the hard disk body is inserted into the connector head. At the same time, through the slight deformation of the rubber pad, the connection effect between the hard disk body and the connector head is improved.
[0022] Furthermore, the locking component includes:
[0023] Locking plate, one end of which is rotatably arranged on the support frame and abuts against the hard disk body. A locking hole for locking is formed on the locking plate;
[0024] Positioning post, which is arranged on the support frame and is clamped in the locking hole;
[0025] A locking block is slidably arranged on a positioning column along a direction close to or away from the center line of the positioning column. A guiding surface is arranged at one end of the locking block away from the positioning column. The side wall of the locking hole abuts against the guiding surface of the locking block and pushes the locking block into the positioning column as the locking plate rotates;
[0026] A return spring is arranged on the positioning column and is used to push the locking block to slide and reset in a direction away from the center line of the positioning column.
[0027] By adopting the above technical solution, when the locking plate slides towards the bottom of the positioning column, the side wall of the locking hole abuts against the guiding surface of the locking block and presses the locking block into the positioning column. After the locking plate slides past the locking block, the locking block resets under the action of the return spring, and the locking express is used to block the backward sliding of the locking plate; when it is necessary to release the locking of the locking plate, just press the locking block into the positioning column.
[0028] Furthermore, two groups of the locking blocks and the return springs are provided, and the two groups of locking blocks are symmetrically arranged on the positioning column.
[0029] By adopting the above technical solution, the two groups of locking blocks respectively slide and abut against the opposite side walls of the locking hole, thereby improving the locking effect on the locking plate.
[0030] Furthermore, an unlocking assembly is arranged on the positioning column, and the unlocking assembly includes:
[0031] A sliding rod is slidably arranged on the positioning column along the center line direction of the positioning column;
[0032] A connecting rope is arranged on the locking block. One end of the connecting rope away from the locking block is arranged on the sliding rod. When the sliding rod slides, it drives the connecting rope to move and pulls the locking block to move in a direction close to the center line of the positioning column;
[0033] A compression spring is sleeved on the sliding rod, and the compression spring is used to push the sliding rod away from the positioning column and restore it to its original position.
[0034] By adopting the above technical solution, when it is necessary to unlock the locking plate, press the sliding rod and pull the locking block to slide into the positioning column through the connecting rope. When the pressing on the sliding rod is released, the sliding rod resets through the compression spring.
[0035] Furthermore, a pushing component for pushing out the hard disk body is arranged on the connecting head, and the pushing component includes:
[0036] A push rod is rotatably arranged on the connecting head, and the push rod is used to abut against the hard disk body;
[0037] The force arm rod is arranged on the push rod and is used to drive the push rod to rotate and push the hard disk body away from the connector.
[0038] By adopting the above technical solution, the force arm rod is rotated to drive the push rod to rotate, and then the hard disk body is pushed out of the fixed frame.
[0039] In summary, the present application includes at least one of the following beneficial technical effects:
[0040] 1. The hard disk body is inserted into the sliding grooves on the two groups of guiding plates, and the hard disk body is pushed to slide in the sliding grooves. Finally, the power connector and data connector of the hard disk body are jointly inserted into the connection ports on the connector. Then, the locking plate is rotated and clamped on the positioning post, and the position of the locking plate is locked by the locking block, so as to fix and press the hard disk body against the connector to realize the installation of the hard disk; when the hard disk needs to be taken out, the locking of the locking plate is released by pressing the sliding rod, and at the same time, the force arm rod is rotated to push the hard disk body out, so as to realize the rapid disassembly of the hard disk and finally improve the disassembly efficiency of the hard disk. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] Figure 1 is a schematic diagram of the quick-release hard disk structure of the present application;
[0042] Figure 2 is a schematic diagram of the quick-release hard disk structure of the present application, in which the hard disk body is not shown and the locking plate is in the open state;
[0043] Figure 3 is Figure 2 an enlarged schematic view of part A in
[0044] Figure 4 is a schematic diagram of the positioning post structure of the present application, in which the side wall of the positioning post is sectioned.
[0045] Reference numerals: 1, frame body; 2, connector; 21, rubber pad; 3, fixed frame; 31, guiding plate; 311, sliding groove; 312, through hole; 313, storage space; 32, support frame; 33, support bar; 4, locking assembly; 41, locking plate; 411, locking hole; 42, positioning post; 43, locking block; 431, guiding surface; 44, return spring; 5, unlocking assembly; 51, sliding rod; 52, connecting rope; 53, compression spring; 54, cap; 6, pushing component; 61, push rod; 62, force arm rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0046] The following will Figures 1-4 be further described in detail with reference to the attached
[0047] The embodiment of the present application discloses a quick-release hard disk for environmental sanitation image acquisition.
[0048] Reference Figure 1 , a quick-release hard disk for sanitation image acquisition, including a frame body 1 for connecting with sanitation equipment and a hard disk body arranged on the frame body 1.
[0049] Reference Figure 1 and Figure 2 , the frame body 1 includes a connector 2 and a fixing frame 3. The connector 2 is installed on the sanitation equipment through bolts. The connector 2 is used to connect the power interface and data interface of the hard disk body with the sanitation equipment. The fixing frame 3 is arranged on the connector 2. The fixing frame 3 is used to fix the hard disk body. The hard disk body is slidably arranged in the fixing frame 3 along the direction of approaching or departing from the connector 2. The connector 2 is connected to the power interface and data interface of the sanitation equipment through cables. The hard disk body slides towards one end close to the connector 2 in the fixing frame 3, and finally inserts the power connector 2 and data connector 2 of the hard disk body into the connection port on the connector 2 together, so as to realize the connection between the power interface and data interface of the hard disk body and the sanitation equipment.
[0050] Reference Figure 1 and 2 , the fixing frame 3 includes a guiding plate 31 and a supporting frame 32. Two groups of guiding plates 31 are installed at intervals on the same side wall of the connector 2. The guiding plate 31 is used to fix the hard disk body. Sliding grooves 311 for sliding and clamping the opposite side walls of the hard disk body are arranged on the opposite sides of the two groups of guiding plates 31. A receiving space 313 for accommodating the hard disk body is formed by the two groups of guiding plates 31 and the end face of the connector 2. The supporting frame 32 is fixedly installed at one end of the two groups of guiding plates 31 away from the connector 2. The supporting frame 32 is used to support one end of the guiding plate 31 away from the connector 2, reducing the probability of deformation of the guiding plate 31. At the same time, the supporting frame 32 is used to guide the hard disk body, so as to facilitate sliding the hard disk body into the receiving space 313. At the same time, in order to facilitate ventilation and heat dissipation of the hard disk body, a plurality of through holes 312 are arranged at intervals on the guiding plate 31. The side of the hard disk body is in contact with the outside air through a plurality of through holes 312, so as to facilitate reducing the temperature of the hard disk body.
[0051] Reference Figure 1 , in order to improve the supporting and fixing effect of the fixing frame 3 on the end face of the hard disk body, supporting strips 33 for supporting and fixing the end face of the hard disk body are arranged at intervals on the fixing frame 3. The two ends of the supporting strip 33 are respectively fixedly installed on the two groups of guiding plates 31. The supporting strip 33 is used to abut against one end face of the hard disk body, and the opposite end faces of the hard disk are supported and fixed by a plurality of groups of supporting strips 33 together.
[0052] Reference Figure 2 , Figure 3 and Figure 4, the frame body 1 further includes a locking component 4. The locking component 4 is arranged on the fixed frame 3. The locking component 4 is used to tightly press and lock the hard disk body on the connector 2. The locking component 4 includes a locking plate 41, a positioning post 42, a locking block 43 and a return spring 44. One end of the locking plate 41 is rotatably installed on the support frame 32. The locking plate 41 is used to tightly press on the hard disk body, so as to tightly press the hard disk body on the connector 2. A locking hole 411 for locking is formed on the side of the locking plate 41 away from the rotating end; the positioning post 42 is fixedly installed on the support frame 32; the positioning post 42 in this embodiment is of a cuboid structure; when the locking plate 41 rotates towards the end close to the positioning post 42, the positioning post 42 is snap-fitted into the locking hole 411.
[0053] Refer to Figure 2 and Figure 4 , the locking block 43 is slidably installed on the positioning post 42 along the direction close to or away from the center line of the positioning post 42. A guiding surface 431 is arranged at one end of the locking block 43 away from the positioning post 42. When the locking plate 41 slides towards the bottom of the positioning post 42, the side wall of the locking hole 411 first tightly presses on the guiding surface 431 of the locking block 43, and then as the locking plate 41 rotates, a force is applied to the guiding surface 431 by the side wall of the locking hole 411, thereby pushing the locking block 43 to slide towards the center line of the positioning post 42, and finally the locking block 43 completely slides into the positioning post 42; the return spring 44 is fixedly installed on the positioning post 42. The two ends of the return spring 44 are respectively tightly pressed on the positioning post 42 and the locking block 43. The return spring 44 is in a compressed state. The return spring 44 is used to push the locking block 43 away from the center line of the positioning post 42; when the locking plate 41 slides towards the bottom of the positioning post 42, the side wall of the locking hole 411 tightly presses on the locking block 43, and the locking block 43 is tightly pressed into the positioning post 42 through the guiding action of the guiding surface 431. When the locking plate 41 slides past the locking block 43, the locking block 43 resets under the action of the return spring 44, and at the same time the bottom of the locking block 43 tightly presses on the upper surface of the locking plate 41, so as to block the locking plate 41 from sliding backward; when it is necessary to release the locking of the locking plate 41, just press the locking block 43 into the positioning post 42.
[0054] Refer to Figure 2 and Figure 4 , in order to improve the locking effect on the locking plate 41, two groups of locking blocks 43 and return springs 44 are provided. The two groups of locking blocks 43 and return springs 44 are symmetrically installed on the opposite sides of the positioning post 42, and the two groups of locking blocks 43 are respectively in contact with the opposite side walls of the locking hole 411.
[0055] Refer to Figure 3 and Figure 4, a unlocking component 5 is provided on the positioning post 42. The unlocking component 5 includes a sliding rod 51, a connecting rope 52 and a compression spring 53. The sliding rod 51 is slidably mounted on the positioning post 42 along the central line direction of the positioning post 42; the connecting rope 52 is fixedly mounted on the locking block 43, and one end of the connecting rope 52 away from the locking block 43 is fixedly mounted on the sliding rod 51. When the sliding rod 51 slides, it drives the connecting rope 52 to move. When the sliding rod 51 moves downward, it drives the connecting rope 52 to move downward, thereby pulling the locking block 43 to move towards the central line direction of the positioning post 42. When the sliding rod 51 moves upward, it drives the connecting rope 52 to move upward, and then there is no pulling force on the locking block 43, so that the locking block 43 is reset under the action of the return spring 44; the compression spring 53 is sleeved on the sliding rod 51, and a cap 54 is fixedly mounted at one end of the sliding rod 51 away from the positioning post 42. The two ends of the compression spring 53 are respectively abutted against the upper surface of the positioning post 42 and the lower surface of the cap 54, so as to push the sliding rod 51 away from the positioning post 42, so that the sliding rod 51 returns to its original position after being pressed downward, which is convenient for the next pressing.
[0056] Refer to Figure 2 , a rubber pad 21 is fixedly mounted on one end of the connector 2 close to the hard disk body. The rubber pad 21 is used for buffering when the hard disk body is inserted into the connector 2. At the same time, the hard disk body is abutted against the rubber pad 21 by the locking plate 41. Through the slight deformation of the rubber pad 21, the power connector 2 and the data connector 2 of the hard disk body are tightly inserted into the connection ports on the connector 2.
[0057] Refer to Figure 1 and Figure 2 , a pushing component 6 for pushing the hard disk body out is provided on the connector 2. The pushing component 6 includes a push rod 61 and a force arm rod 62. The push rod 61 is rotatably mounted on the connector 2, and a groove for accommodating the push rod 61 is provided on the connector 2. When the push rod 61 is not needed to push the hard disk body to move, the push rod 61 is located in the groove; when it is necessary to push the hard disk body, the push rod 61 is rotated so that the head of the push rod 61 abuts against one end of the hard disk body close to the connector 2, thereby pushing the hard disk body out of the fixing frame 3; the force arm rod 62 is fixedly mounted on the push rod 61, and the force arm rod 62 has a certain angle with the push rod 61; in this embodiment, the included angle between the force arm rod 62 and the push rod 61 is 90 degrees, and the force arm rod 62 abuts against one end of the fixing plate away from the hard disk body. The force arm is used to drive the push rod 61 to rotate, thereby pushing the hard disk body away from the connector 2.
[0058] The working principle of the embodiment of the present application is as follows:
[0059] By inserting the hard disk body into the sliding grooves 311 on the two groups of guide plates 31 and pushing the hard disk body to slide in the sliding grooves 311, finally inserting the power connection head 2 and the data connection head 2 of the hard disk body together into the connection ports on the connection head 2, then rotating the locking plate 41 and clamping it on the positioning column 42, and locking the position of the locking plate 41 through the locking block 43, so as to fix and press the hard disk body tightly on the connection head 2 to realize the installation of the hard disk; when the hard disk needs to be taken out, by pressing the sliding rod 51 to release the locking of the locking plate 41, and at the same time rotating the lever arm 62 to push out the hard disk body, so as to realize the quick disassembly of the hard disk and finally improve the disassembly efficiency of the hard disk.
[0060] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. A quick-release hard disk for sanitation image acquisition, characterized in that: It includes a frame body (1) for connecting with sanitation equipment, and a hard disk body arranged on the frame body (1). The frame body (1) includes: A connector (2) which is arranged on the sanitation equipment and is used to connect the hard disk body with the power interface and data interface of the sanitation equipment; A fixing frame (3) which is arranged on the connector (2) and is used to fix the hard disk body. The hard disk body is slidably arranged in the fixing frame (3) along the direction of approaching or departing from the connector (2); A locking assembly (4) which is arranged on the fixing frame (3) and is used to tightly press and lock the hard disk body on the connector (2).
2. The quick-release hard disk for environmental sanitation image acquisition according to claim 1, wherein: The fixing frame (3) includes: Guide plates (31). Two groups of the guide plates (31) are arranged on the connector (2) at intervals. On the opposite sides of the two groups of the guide plates (31), sliding grooves (311) for slidably clamping the opposite side walls of the hard disk body are formed. The two groups of the guide plates (31) and the end face of the connector (2) enclose a storage space (313) for accommodating the hard disk body; A support frame (32) which is arranged at one end of the two groups of the guide plates (31) away from the connector (2) and is used to support one end of the guide plates (31) away from the connector (2).
3. The quick-release hard disk for environmental sanitation image acquisition according to claim 2, characterized in that: Support bars (33) for supporting and fixing the end face of the hard disk body are arranged on the fixing frame (3) at intervals. The two ends of the support bars (33) are respectively arranged on the two groups of the guide plates (31) and press against one end face of the hard disk body.
4. A quick-release hard disk for environmental sanitation image acquisition according to claim 2, characterized in that: Through holes (312) for ventilating and dissipating heat of the side wall of the hard disk body are arranged on the guide plates (31) at intervals.
5. A quick-release hard disk for environmental sanitation image acquisition according to claim 1, characterized in that: A rubber pad (21) for buffering is arranged at one end of the connector (2) close to the hard disk body. The locking assembly (4) tightly presses the hard disk body on the rubber pad (21) and makes the hard disk body closely connected with the power interface and data interface of the sanitation equipment.
6. A quick-release hard disk for environmental sanitation image acquisition according to claim 2, characterized in that: The locking assembly (4) includes: A locking plate (41). One end of the locking plate (41) is rotatably arranged on the support frame (32) and presses against the hard disk body. A locking hole (411) for locking is formed on the locking plate (41); A positioning post (42) which is arranged on the support frame (32) and is clamped in the locking hole (411); A locking block (43) which is slidably arranged on the positioning post (42) along the direction of approaching or departing from the center line of the positioning post (42). A guiding surface (431) is arranged at one end of the locking block (43) away from the positioning post (42). The side wall of the locking hole (411) presses against the guiding surface (431) of the locking block (43) and pushes the locking block (43) into the positioning post (42) as the locking plate (41) rotates; A return spring (44) which is arranged on the positioning post (42) and is used to push the locking block (43) to slide and reset in the direction away from the center line of the positioning post (42).
7. A quick-release hard disk for environmental sanitation image acquisition according to claim 6, characterized in that: The locking blocks (43) and the reset springs (44) are provided in two groups, and the two groups of locking blocks (43) are symmetrically arranged on the positioning posts (42).
8. A quick-release hard disk for environmental sanitation image acquisition according to claim 6, characterized in that: An unlocking assembly (5) is arranged on the positioning post (42), and the unlocking assembly (5) includes: A sliding rod (51), the sliding rod (51) is slidably arranged on the positioning post (42) along the central line direction of the positioning post (42); A connecting rope (52), the connecting rope (52) is arranged on the locking block (43), one end of the connecting rope (52) far from the locking block (43) is arranged on the sliding rod (51), and when the sliding rod (51) slides, it drives the connecting rope (52) to move and pulls the locking block (43) to move towards the direction close to the central line of the positioning post (42); A compression spring (53), the compression spring (53) is sleeved on the sliding rod (51), and the compression spring (53) is used to push the sliding rod (51) away from the positioning post (42) and restore it to its original position.
9. A quick-release hard disk for environmental sanitation image acquisition according to claim 1, characterized in that: A pushing component (6) for pushing out the hard disk body is arranged on the connecting head (2), and the pushing component (6) includes: A push rod (61), the push rod (61) is rotatably arranged on the connecting head (2), and the push rod (61) is used to abut against the hard disk body; A force arm rod (62), the force arm rod (62) is arranged on the push rod (61), and the force arm rod (62) is used to drive the push rod (61) to rotate and push the hard disk body away from the connecting head (2).