A computer hard disk shock protection device
By designing a computer hard disk shock-proof protection device, using technical means such as telescopic rods, stable covers and buffer devices, the problem of easy damage to the hard disk during transportation is solved, achieving more efficient transportation and better hard disk protection.
Patent Information
- Application Number
- CN202210532640.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-10
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2042-05-10
AI Technical Summary
Computer hard disks are susceptible to vibration and collision during transportation, resulting in damage. The existing packaging methods cannot effectively prevent such damage and increase transportation efficiency and waste of resources.
A computer hard disk shock-proof protection device is designed. By starting the telescopic rod, the box body is lifted, and the distance between the support shafts is shortest. The hard disk is fixed in the box body with a stable cover and buffer device to reduce the impact of vibration and collision on the hard disk. Through the design of the support plate and the partition plate, the hard disk does not collide or move during transportation.
有效保护硬盘不受震动和碰撞的损坏,提高了运输效率,减少了人工操作的需求和资源浪费,同时确保了硬盘在运输过程中的安全性和可靠性。
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Figure CN115064190B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a protection device, in particular to a computer hard disk anti-vibration protection device. Background Art
[0002] Computer hard disk is a non-volatile memory based on hard rotating disk. Hard disk is the most important storage device of computer. Hard disk is composed of magnetic head, disk, motor, main control chip and other components. Its reading and writing method adopts semi-random access. Data in hard disk can be read in any order, but the speed of reading data in different positions is different.
[0003] Hard disk products are extremely sophisticated high-tech products that integrate many mechanical and electronic components. They are sensitive to the effects of vibration and static electricity, which are almost impossible to avoid during normal packaging, transportation and use.
[0004] In the process of batch packaging of hard disks, due to the inevitable shaking and bumping, the hard disks will rub against the surrounding materials in the packaging box, generating a large amount of static electricity, which directly endangers the quality of the product. In addition, constant shaking and vibration, especially during the shipping process, unexpected large impacts and shaking often occur, which poses a great threat to the safety and reliability of the hard disk head and other components.
[0005] Due to the characteristics of the hard disk itself, it is extremely afraid of bumps and collisions. Once bumped, it is easy to cause damage to the hard disk, which makes the protection of the hard disk during transportation a problem. Currently, hard disks mainly rely on packaging to avoid this problem during transportation, but this greatly increases natural resources.
[0006] Traditional and ordinary packaging uses sponge for packaging. Since sponge cannot stabilize the hard disk when it collides, in order to protect the hard disk from damage during transportation, a large number of workers are required to load and unload the materials, resulting in low efficiency and increasing the risk of damage to the hard disk, reducing transportation efficiency. Summary of the invention
[0007] The purpose of the present invention is to provide a computer hard disk shockproof protection device, which can lift the box body to the highest point by starting the telescopic rod, and the distance between the support shafts is the shortest. The hard disk is placed in the box body, and the hard disk is stabilized by using a stabilizing cover and covered with a protective cover. The shock-absorbing pad and the protective pad can play a protective and buffering role for the hard board. The support plate can be adjusted according to the height of the object to be placed, which can facilitate the operation of workers. When installing the support plate, hold the spacer plate and the support plate so that the spacer plate and the support plate are in close contact, and install the support plate to the side plate. By turning the handle, the limit shaft is extended to both sides, and finally the limit shaft passes through the limit block for stabilization, and then the packaged hard disk is placed. Placing the items on the support plate for transportation is convenient for transportation and prevents collision and movement of items during transportation, thereby improving transportation efficiency. When unloading, by driving the servo motor, the transmission belt rotates, causing the limit shaft in the limit block to slide downward, and finally the partition plate slides downward on the support plate to unload the items on the support plate. The unloading protective device can be stacked together. When vibration occurs, the buffer is tightened under pressure, and the support shaft slides on the first connecting plate. The distance between the support shafts increases. As the support shaft slides, pulling the sliding shaft of the stabilizing cover can stretch the four corners of the stabilizing cover, thereby increasing the stability of the hard disk under the stabilizing cover and protecting the hard disk from damage.
[0008] The purpose of the present invention can be achieved through the following technical solutions:
[0009] A computer hard disk shockproof protection device, the protection device comprises an operating device that is easy to transport, a supporting device is slidably provided on the operating device, a spacer for preventing collision is provided on the supporting device, the spacer slides on the supporting device, the operating device is provided with a driving device for driving the spacer to slide, a protective device for placing the hard disk is provided above the supporting device, and a buffer device is provided on the protective device.
[0010] Furthermore, the operating device includes a base, symmetrically distributed side panels are provided on both sides of the base, array-distributed pillars are provided below the base, array-distributed dividing grooves are provided on the side panels, and through grooves distributed perpendicular to the dividing grooves are provided on the side panels.
[0011] Furthermore, the supporting device includes a supporting plate, both sides of the supporting plate slide in cooperation with the compartment grooves on the side plates, and the supporting plate is provided with first sliding grooves distributed in an array.
[0012] Furthermore, the spacing device includes a spacing plate that cooperates with the first sliding groove, and the spacing plate is located on the supporting plate and slides.
[0013] A first connecting rod is arranged between the partition plates, a sliding groove is arranged on the partition plate at one end, and a limiting member sliding in the sliding groove is arranged on the partition plate, and the limiting member is used to stabilize the partition plate.
[0014] Furthermore, the limiting member includes a gear rotating in the slide groove, one end of the slide groove is rotatably connected to the partition plate, and the other end is fixed with a connecting block, and the connecting block is provided with a rotating handle, and the rotating handle is used to drive the gear to rotate.
[0015] The gears are meshed with symmetrically distributed racks, and one end of the racks away from the gears is provided with a limiting shaft. The limiting member is meshed with the racks through the gears to drive the limiting shaft to slide in the slide groove.
[0016] Furthermore, the driving device includes a servo motor fixed on the side plate, the servo motor is symmetrically distributed, and the side plate is provided with a pulley located on one side of the through groove, the pulleys are symmetrically distributed, and a transmission belt is meshed between the pulleys.
[0017] The output shaft of the servo motor is tightly connected to one of the pulleys, the pulley rotates on the side plate, and the transmission belt is provided with array-distributed limit blocks, which cooperate with the limit shaft.
[0018] Furthermore, the protection device includes a protection box, a protection cover is rotatably provided on the protection box, a protection pad is provided on the protection cover, the protection pad and the protection cover are connected by an elastic member that acts as a buffer, and the protection pad presses the hard disk placed in the protection box.
[0019] Furthermore, the protection box includes a box body, and a shock-absorbing pad is provided inside the box body, and the shock-absorbing pad is in a honeycomb shape.
[0020] The box body is provided with second sliding grooves distributed in an array, a sliding shaft is slidably arranged in the second sliding groove, a buckle is arranged on the sliding shaft, one side of the hard disk is in contact with the shock-absorbing pad, and the other side is stabilized by a stabilizing cover, and the four corners of the stabilizing cover are limited by the buckles.
[0021] A symmetrically distributed first connecting plate is provided at the bottom of the box body, a third sliding groove is provided on the first connecting plate, the third sliding groove is vertically distributed to the second sliding groove, and a symmetrically distributed supporting shaft is provided between the first connecting plates, the supporting shaft slides in the third sliding groove, and the supporting shaft is tightly connected to the sliding shaft.
[0022] Furthermore, the buffer device includes a base, on which are symmetrically distributed second connecting plates, between which are symmetrically distributed rotating shafts, and between which are symmetrically distributed second connecting rods are rotatably provided the rotating shafts on one side and the supporting shafts on the other side.
[0023] A third connecting rod is rotatably provided between the rotating shaft on the other side and the supporting shaft on the other side, the third connecting rod and the second connecting rod cross each other, and the third connecting rod and the second connecting rod are slidably connected.
[0024] A buffer and a telescopic rod are arranged between the base and the box body, one end of the telescopic rod is fixed on the box body, and the other end of the telescopic rod is fixed on the base, and the buffer is distributed in an array.
[0025] The buffer member comprises a first buffer shaft fixed on the base, a second buffer shaft is slidably arranged on the first buffer shaft, a spring is sleeved on the second buffer shaft and the first buffer shaft, one end of the spring is fixed on the box body, and the other end is fixed on the base.
[0026] Beneficial effects of the present invention:
[0027] 1. The protective device of the present invention starts the telescopic rod to lift the box body to the highest point, and the distance between the support shafts is the shortest. The hard disk is placed in the box body, and the hard disk is stabilized by using a stabilizing cover and covered with a protective cover. The shock-absorbing pad and the protective pad can play a protective and buffering role for the hard board. The support plate can be adjusted according to the height of the object to be placed, which can facilitate the operation of workers;
[0028] 2. When installing the support plate of the protection device of the present invention, hold the spacer plate and the support plate by hand, so that the spacer plate and the support plate are in close contact, install the support plate to the side plate, and turn the handle to extend the limit axis to both sides, and finally the limit axis passes through the limit block for stabilization, and then place the packaged hard disk on the support plate for transportation, which is convenient for transportation and prevents collision and movement of items during transportation, and can improve transportation efficiency;
[0029] 3. When the protective device of the present invention is unloading, the servo motor is driven to rotate the transmission belt, so that the limit axis in the limit block slides downward, and finally the partition plate slides downward on the support plate, so that the objects on the support plate are unloaded, and the unloading protective devices can be stacked together;
[0030] 4. When the protective device of the present invention vibrates, the buffer part shrinks under the action of pressure, the support shaft slides on the first connecting plate, and the distance between the support shafts increases. As the support shaft slides, the sliding shaft of the stabilizing cover is pulled to stretch the four corners of the stabilizing cover, thereby increasing the stability of the hard disk under the stabilizing cover and protecting the hard disk from damage. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The present invention will be further described below in conjunction with the accompanying drawings.
[0032] Figure 1 It is a schematic diagram of the structure of the protection device of the present invention;
[0033] Figure 2 It is a partial structural schematic diagram of the protection device of the present invention;
[0034] Figure 3 It is an exploded view of the partial structure of the protection device of the present invention;
[0035] Figure 4 yes Figure 3 A is an enlarged structural diagram;
[0036] Figure 5 It is a partial structural schematic diagram of the protection device of the present invention;
[0037] Figure 6 yes Figure 5 The enlarged structural diagram at B in FIG.
[0038] Figure 7 It is a partial structural schematic diagram of the protection device of the present invention;
[0039] Figure 8 It is a schematic diagram of the structure of the protective device of the present invention;
[0040] Fig. 9 It is a partial structural schematic diagram of the protection device of the present invention;
[0041] Fig.10 yes Fig. 9 The enlarged structural diagram at C in the figure. DETAILED DESCRIPTION
[0042] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0043] Combination Figure 1-Figure 10 As shown, a computer hard disk shockproof protection device includes an operating device 1 that is easy to transport, a supporting device 2 is slidably provided on the operating device 1, a spacer 3 for preventing collision is provided on the supporting device 2, the spacer 3 slides on the supporting device 2, the operating device 1 is provided with a driving device 4 for driving the spacer 3 to slide, a protective device 5 for placing the hard disk is provided above the supporting device 2, and a buffer device 6 is provided on the protective device 5.
[0044] The operating device 1 includes a base 11, with symmetrically distributed side panels 12 on both sides of the base 11, an array of pillars 13 arranged below the base 11, an array of partition grooves 14 arranged on the side panels 12, and a through groove 15 arranged perpendicular to the partition grooves 14 on the side panels 12.
[0045] The supporting device 2 includes a supporting plate 21, and both sides of the supporting plate 21 slide in cooperation with the dividing grooves 14 on the side plates 12. The supporting plate 21 can be inserted between the side plates 12 as needed, and the spacing between the supporting plates 21 can also be adjusted as needed. The supporting plate 21 is provided with a first sliding groove 22 distributed in an array.
[0046] The spacer device 3 includes a spacer plate 31 that cooperates with the first sliding groove 22. The spacer plate 31 is located on the support plate 21 and slides. A first connecting rod 32 is provided between the spacer plates 31. A sliding groove 33 is provided on the spacer plate 31 at one end. A limiting member 34 sliding in the sliding groove 33 is provided on the spacer plate 31. The limiting member 34 is used to stabilize the spacer plate 31 and prevent sliding.
[0047] The limiting member 34 includes a gear 341 rotating in the slide groove 33. One end of the slide groove 33 is rotatably connected to the partition plate 31, and the other end is fixed with a connecting block 342. The connecting block 342 is provided with a rotating handle 343. The rotating handle 343 is used to drive the gear 341 to rotate. The gear 341 is meshed with symmetrically distributed racks 344. The racks 344 are each provided with a limiting shaft 345 at one end away from the gear 341. The limiting member 34 is meshed with the rack 344 through the gear 341, so that the limiting shaft 345 slides in the slide groove 33.
[0048] The driving device 4 includes a servo motor 41 fixed on the side plate 12, and the servo motor 41 is symmetrically distributed. The side plate 12 is provided with a pulley 42 located on one side of the through groove 15, and the pulleys 42 are symmetrically distributed. A transmission belt 43 is meshed between the pulleys 42. The output shaft of the servo motor 41 is fastened to one of the pulleys 42, and the pulley 42 rotates on the side plate 12. An array of limit blocks 44 are provided on the transmission belt 43. The limit blocks 44 cooperate with the limit shaft 345, and the limit shaft 345 passes through the limit blocks 44, so that the partition plate 31 is stable and will not slide at will. The protective device 5 between the partition plates 31 can be separated to prevent collision during transportation.
[0049] The protection device 5 includes a protection box 51, on which a protection cover 52 is rotatably provided, and on which a protection pad 53 is provided. The protection pad 53 and the protection cover 52 are connected via an elastic member that acts as a buffer. The protection pad 53 can press the hard disk placed in the protection box 51 to prevent it from moving.
[0050] The protective box 51 includes a box body 511, and a shock-absorbing pad 512 is arranged inside the box body 511. The shock-absorbing pad 512 is in a honeycomb shape and can dilute the impact force. An array of second sliding grooves 513 are arranged on the box body 511. A sliding shaft 514 is slidably arranged in the second sliding groove 513. A buckle 515 is arranged on the sliding shaft 514. One side of the hard disk is in contact with the shock-absorbing pad 512, and the other side is stabilized by a stabilizing cover. The four corners of the stabilizing cover are limited by the buckle 515, so that the hard disk remains stationary under the protection of the stabilizing cover. A symmetrically distributed first connecting plate 516 is arranged at the bottom of the box body 511, and a third sliding groove 517 is arranged on the first connecting plate 516. The third sliding groove 517 is vertically distributed with the second sliding groove 513. A symmetrically distributed support shaft 518 is arranged between the first connecting plates 516. The support shaft 518 slides in the third sliding groove 517, and the support shaft 518 is tightly connected to the sliding shaft 514.
[0051] The buffer device 6 includes a base 61, on which are symmetrically distributed second connecting plates 62, between which are symmetrically distributed rotating shafts 63, a second connecting rod 64 is rotatably provided between the rotating shaft 63 on one side and the supporting shaft 518 on one side, and a third connecting rod 65 is rotatably provided between the rotating shaft 63 on the other side and the supporting shaft 518 on the other side, the third connecting rod 65 and the second connecting rod 64 intersect with each other, and the third connecting rod 65 and the second connecting rod 64 are slidably connected.
[0052] A buffer 66 and a telescopic rod 67 are provided between the base 61 and the box body 511 . One end of the telescopic rod 67 is fixed to the box body 511 , and the other end of the telescopic rod 67 is fixed to the base 61 . The buffer 66 is distributed in an array.
[0053] The buffer member 66 includes a first buffer shaft 661 fixed on the base 61 , on which a second buffer shaft 662 is slidably provided, and a spring 663 is sleeved on the second buffer shaft 662 and the first buffer shaft 661 , one end of the spring 663 is fixed on the box body 511 , and the other end is fixed on the base 61 .
[0054] When in use, start the telescopic rod 67 to lift the box body 511 to the highest point, with the distance between the support shafts 518 being the shortest, place the hard disk in the box body 511, use the stabilizing cover to stabilize the hard disk, cover the protective cover 52, the shock-absorbing pad 512 and the protective pad 53 can protect and buffer the hard board, and the support plate 21 can be adjusted according to the height of the object to be placed, which can facilitate the operation of workers. When installing the support plate 21, hold the spacer plate 31 and the support plate 21 so that the spacer plate 31 and the support plate 21 are in close contact, install the support plate 21 on the side plate 12, and extend the limit shaft 345 to both sides by turning the handle. Finally, the limit shaft 345 passes through the limit block 44 for stability, and then the packaged hard disk is placed on the support plate 21. The articles can be transported on the support plate 21 for convenient transportation, and collision and movement of articles can be prevented during transportation, so as to improve the transportation efficiency. When unloading, the servo motor 41 is driven to rotate the transmission belt 43, so that the limit shaft 345 in the limit block 44 slides downward, and finally the partition plate 31 slides downward on the support plate 21, so that the articles on the support plate 21 can be unloaded, and the unloading protective device 5 can be stacked together. When vibration occurs, the buffer 66 is tightened under the pressure, and the support shaft 518 slides on the first connecting plate 516, and the distance between the support shafts 518 increases. As the support shaft 518 slides, the sliding shaft 514 of the stabilizing cover is pulled to stretch the four corners of the stabilizing cover, thereby increasing the stability of the hard disk under the stabilizing cover and protecting the hard disk from damage.
[0055] In the description of this specification, the description with reference to the terms "one embodiment", "example", "specific example", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0056] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments, and the above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, and these changes and improvements all fall within the scope of the present invention to be protected.
Claims
1. A computer hard disk shock protection device, characterized in that: The protective device comprises an operating device (1) which is easy to transport, a supporting device (2) is slidably provided on the operating device (1), a spacer (3) for preventing collision is provided on the supporting device (2), the spacer (3) slides on the supporting device (2), a driving device (4) for driving the spacer (3) to slide is provided on the operating device (1), a protective device (5) for placing a hard disk is provided above the supporting device (2), and a buffer device (6) is provided on the protective device (5); The protection device (5) comprises a protection box (51), a protection cover (52) is rotatably provided on the protection box (51), a protection pad (53) is provided on the protection cover (52), the protection pad (53) and the protection cover (52) are connected via an elastic member having a buffering effect, and the protection pad (53) presses down the hard disk placed in the protection box (51); The protection box (51) comprises a box body (511), a shock absorbing pad (512) is provided inside the box body (511), and the shock absorbing pad (512) is in a honeycomb shape; The box body (511) is provided with second sliding grooves (513) distributed in an array, a sliding shaft (514) is slidably provided in the second sliding groove (513), a buckle (515) is provided on the sliding shaft (514), one side of the hard disk is in contact with the shock-absorbing pad (512), and the other side is stabilized by a stabilizing cover, and the four corners of the stabilizing cover are defined by the buckles (515); A symmetrically distributed first connecting plate (516) is provided below the box body (511), a third sliding groove (517) is provided on the first connecting plate (516), the third sliding groove (517) is vertically distributed with the second sliding groove (513), a symmetrically distributed supporting shaft (518) is provided between the first connecting plates (516), the supporting shaft (518) is located in the third sliding groove (517) and slides, and the supporting shaft (518) is tightly connected with the sliding shaft (514); The buffer device (6) comprises a base (61), on which are symmetrically distributed second connecting plates (62), between which are symmetrically distributed rotating shafts (63), and between which are rotatably provided a second connecting rod (64) on one side of the rotating shaft (63) and a supporting shaft (518) on the other side; A third connecting rod (65) is rotatably provided between the rotating shaft (63) on the other side and the supporting shaft (518) on the other side. The third connecting rod (65) and the second connecting rod (64) intersect with each other, and the third connecting rod (65) and the second connecting rod (64) are slidably connected.
2. A computer hard disk shock protection device according to claim 1, characterized in that: The operating device (1) comprises a base (11), side panels (12) are symmetrically arranged on both sides of the base (11), pillars (13) are arranged in an array below the base (11), partition grooves (14) are arranged in an array on the side panels (12), and through grooves (15) are arranged perpendicular to the partition grooves (14) on the side panels (12).
3. A computer hard disk shock protection device according to claim 2, characterized in that: The support device (2) comprises a support plate (21), both sides of which slide in cooperation with the compartment grooves (14) on the side plate (12), and the support plate (21) is provided with first sliding grooves (22) distributed in an array.
4. A computer hard disk shock protection device according to claim 3, characterized in that: The spacing device (3) comprises a spacing plate (31) matched with the first sliding groove (22), and the spacing plate (31) is located on the support plate (21) and slides; A first connecting rod (32) is provided between the partition plates (31), a sliding groove (33) is provided on the partition plate (31) at one end, and a limiting member (34) is provided on the partition plate (31) for sliding in the sliding groove (33), and the limiting member (34) is used to stabilize the partition plate (31).
5. A computer hard disk shock protection device according to claim 4, characterized in that: The limiting member (34) comprises a gear (341) rotating in the slide groove (33); one end of the slide groove (33) is rotatably connected to the partition plate (31); the other end is fixed with a connecting block (342); a rotating handle (343) is provided on the connecting block (342); the rotating handle (343) is used to drive the gear (341) to rotate; The gear (341) is meshed with symmetrically distributed racks (344), and one end of the racks (344) away from the gear (341) is provided with a limiting shaft (345). The limiting member (34) is meshed with the racks (344) through the gear (341), driving the limiting shaft (345) to slide in the slide groove (33).
6. A computer hard disk shock protection device according to claim 5, characterized in that: The driving device (4) comprises a servo motor (41) fixed on the side plate (12), the servo motor (41) is symmetrically distributed, the side plate (12) is provided with a pulley (42) located on one side of the through groove (15), the pulleys (42) are symmetrically distributed, and a transmission belt (43) is meshed between the pulleys (42); The output shaft of the servo motor (41) is tightly connected to one of the pulleys (42), the pulley (42) rotates on the side plate (12), and the transmission belt (43) is provided with array-distributed limit blocks (44), and the limit blocks (44) cooperate with the limit shaft (345).
7. A computer hard disk shock protection device according to claim 1, characterized in that: A buffer (66) and a telescopic rod (67) are provided between the base (61) and the box body (511), one end of the telescopic rod (67) is fixed to the box body (511), and the other end of the telescopic rod (67) is fixed to the base (61), and the buffer (66) is distributed in an array; The buffer member (66) comprises a first buffer shaft (661) fixed on the base (61), a second buffer shaft (662) being slidably arranged on the first buffer shaft (661), a spring (663) being sleeved on the second buffer shaft (662) and the first buffer shaft (661), one end of the spring (663) being fixed on the box body (511), and the other end being fixed on the base (61).
Citation Information
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