CN210403203U - Computer hard disk protection device that takes precautions against earthquakes - Google Patents

Computer hard disk protection device that takes precautions against earthquakes Download PDF

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Publication number
CN210403203U
CN210403203U CN201921499680.0U CN201921499680U CN210403203U CN 210403203 U CN210403203 U CN 210403203U CN 201921499680 U CN201921499680 U CN 201921499680U CN 210403203 U CN210403203 U CN 210403203U
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China
Prior art keywords
hard disk
fixedly connected
heat dissipation
dissipation device
shock absorber
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Expired - Fee Related
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CN201921499680.0U
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Chinese (zh)
Inventor
赵妍
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Handan central hospital
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Handan central hospital
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Priority to CN201921499680.0U priority Critical patent/CN210403203U/en
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Abstract

The utility model discloses a computer hard disk shockproof protection device, which comprises a hard disk main body, a heat dissipation device, a shock absorber and a hard disk protection shell, wherein the top of the hard disk main body is fixedly connected with the heat dissipation device, one side of the inner bottom of the heat dissipation device is fixedly connected with a motor, the top of the motor is fixedly connected with a linkage gear, the middle of the surface of the heat dissipation device is embedded and connected with an exhaust fan, the periphery of the surface of the heat dissipation device is embedded and connected with a fixed port, the middle of the front side of the heat dissipation device is embedded and connected with a wiring port, the bottom of the wiring port is fixedly connected with the shock absorber, the shock absorber can effectively prevent the hard disk main body from being shocked, the shockproof performance of the device is embodied, the heat dissipation device can better dissipate the heat of the hard disk main body, the heat dissipation plate can more quickly dissipate the heat of, embodies the pertinence of the device and has wide development prospect in the future.

Description

Computer hard disk protection device that takes precautions against earthquakes
Technical Field
The utility model relates to the technical field of computers, specifically be a computer hard disk protection device that takes precautions against earthquakes.
Background
The computer hard disk is the most important storage device of the computer, and the hard disk is composed of one or more aluminum or glass disks covered with ferromagnetic material, most of the hard disks are fixed hard disks which are permanently sealed and fixed in the hard disk drive, and the early hard disk storage media are replaceable, but the hard disk is typically fixed storage media and is sealed in the hard disk, and no gap is left except a filter hole for balancing air pressure.
But computer hard disk damages the hard disk very easily and damages cost of maintenance comparatively expensive under the influence of factors such as receiving outside vibration and generating heat in a large number, and current hard disk protection device has certain drawback when using, and the radiating effect is relatively poor, and under the condition that live time overlength and weather are comparatively hot, the hard disk can be damaged because of high temperature to current protection device can't better shock attenuation, can bring certain damage to the inner structure of hard disk when the hard disk receives the outside vibration.
Therefore, how to design a computer hard disk shockproof protection device becomes a problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a computer hard disk protection device that takes precautions against earthquakes to solve the not good and not good problem of radiating effect of the shock attenuation effect that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a computer hard disk shockproof protection device comprises a hard disk main body, a heat dissipation device, a shock absorber and a hard disk protection shell, wherein the top of the hard disk main body is fixedly connected with the heat dissipation device, one side of the inner bottom of the heat dissipation device is fixedly connected with a motor, the top of the motor is fixedly connected with a linkage gear, the middle of the surface of the heat dissipation device is embedded and connected with an exhaust fan, the periphery of the surface of the heat dissipation device is embedded and connected with a fixing port, the middle of the front surface of the heat dissipation device is embedded and connected with a wiring port, the bottom of the wiring port is fixedly connected with the shock absorber, the middle of the top of the shock absorber is fixedly connected with a fixing stud, the middle of the shock absorber is fixedly connected with a resisting block, the periphery of the resisting block is fixedly connected with a spring, the bottom, the top fixedly connected with magnetic head of disk, the inside bottom opposite side fixedly connected with of hard disk protective housing reads the magnetic ware, the inside bottom fixedly connected with thermal resistance of hard disk protective housing, the embedding is connected with the power mouth in the middle of the front of hard disk protective housing, the surperficial opposite side through connection of hard disk protective housing has the gas vent.
Preferably, a toothed chain is fixedly connected to the periphery of the interlocking gear.
Preferably, the bottom of the fixing stud is fixedly connected with a damping block.
Preferably, a signal transmission port is embedded and connected to one side of the power port.
Preferably, the top of the hard disk protection shell is fixedly connected with a radiating fin.
Preferably, the heat dissipation device is formed by combining an exhaust fan in the middle of the surface, a motor on one side of the bottom inside the heat dissipation device, a linkage gear on the top of the motor, a toothed chain on the periphery of the linkage gear and a thermal resistor in the middle of the bottom inside the hard disk protection shell.
Preferably, the shock absorber is formed by combining a fixing stud in the middle of the top, a damping block at the bottom of the fixing stud, a resisting block at the bottom of the shock absorber and a spring on the periphery of the resisting block.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this kind of computer hard disk protection device that takes precautions against earthquakes, heat abstractor passes through the temperature in the thermal resistance impression hard disk protective housing, and the temperature in the hard disk protective housing is high, and the resistance of the thermal resistance in the hard disk protective housing is less, makes the circuit current big more, thereby the functioning speed of motor is faster, and the motor accelerates the faster that drives the exhaust fan commentaries on classics through functioning speed, and the exhaust fan makes the fin heat dissipation faster, has embodied the device's thermal diffusivity.
2. This kind of computer hard disk protection device that takes precautions against earthquakes, the bumper shock absorber is fixed in on four angles of heat abstractor lower surface, when heat abstractor moved, also can produce vibrations, when heat abstractor produced vibrations, four springs of hard disk protective housing upper surface can offset this vibrations, and the bumper shock absorber can be more effectual the shock resistance of improvement hard disk main part, has embodied the device's shock resistance.
Drawings
FIG. 1 is a schematic diagram of the main structure of the hard disk of the present invention;
FIG. 2 is a schematic diagram of the cross-sectional structure of the heat dissipating device of the present invention;
FIG. 3 is a schematic diagram of the damper according to the present invention;
fig. 4 is the schematic sketch of the sectional structure of the protective shell for a movable hard disk of the present invention.
The labels in the figure are: 1. hard disk main part, 2, heat abstractor, 201, motor, 202, interlock gear, 203, take tooth chain, 3, exhaust fan, 4, fixed mouthful, 5, wiring mouth, 6, bumper shock absorber, 601, fixing stud, 602, damping piece, 603, support piece, 604, spring, 7, hard disk protective housing, 701, magnetic disc, 702, magnetic head, 703, magnetism reading ware, 704, thermal resistance, 8, signal transmission mouth, 9, power supply mouth, 10, gas vent, 11, fin.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, rather than all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative work belong to the protection scope of the present invention based on the embodiments of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a computer hard disk shockproof protection device comprises a hard disk main body 1, a heat dissipation device 2, a shock absorber 6 and a hard disk protection shell 7, wherein the top of the hard disk main body 1 is fixedly connected with the heat dissipation device 2, one side of the inner bottom of the heat dissipation device 2 is fixedly connected with a motor 201, the top of the motor 201 is fixedly connected with a linkage gear 202, the middle of the surface of the heat dissipation device 2 is embedded and connected with an exhaust fan 3, the periphery of the surface of the heat dissipation device 2 is embedded and connected with a fixing port 4, the middle of the front of the heat dissipation device 2 is embedded and connected with a wiring port 5, the bottom of the wiring port 5 is fixedly connected with the shock absorber 6, the middle of the top of the shock absorber 6 is fixedly connected with a fixing stud 601, the middle of the shock absorber 6 is fixedly connected with a resisting block 603, the periphery of the resisting block 603 is fixedly connected, the top of the disk 701 is fixedly connected with a magnetic head 702, the other side of the bottom inside the hard disk protection shell 7 is fixedly connected with a magnetic reader 703, the bottom inside the hard disk protection shell 7 is fixedly connected with a thermal resistor 704, the middle of the front of the hard disk protection shell 7 is connected with a power supply port 9 in an embedded mode, and the other side of the surface of the hard disk protection shell 7 is connected with an exhaust port 10 in a penetrating mode.
Preferably, the peripheral fixedly connected with of interlock gear 202 takes tooth chain 203, when hard disk main part 1 needs the heat dissipation, the inside motor 201 start-up work of heat abstractor 2 at hard disk main part 1 top, motor 201 drives interlock gear 202 rotatory, when interlock gear 202 is rotatory, the peripheral chain 203 that takes tooth of interlock gear 202 also follows the rotation, it is rotatory that the chain 203 that takes tooth drives exhaust fan 3 simultaneously, exhaust fan 3 is rotatory just giving the discharge with the steam that hard disk main part 1 distributed out, thereby reach radiating effect, the coherence of the device has been embodied.
Preferably, the bottom fixedly connected with damping piece 602 of fixing stud 601, damping piece 602 is provided with two altogether, be in the bottom and the top of bumper shock absorber 6 respectively, when hard disk main body 1 produced vibrations, the spring 604 on bumper shock absorber 6 surface is deformed, because spring 604 can produce a deformation power through deformation, can make bumper shock absorber 6 itself shake, spring 604 is cliied from top to bottom by damping piece 602 simultaneously, so damping piece 602 just gives offsetting with the deformation power that spring 604 deformation brought, thereby reach absorbing effect, the pertinence of the device has been embodied.
Preferably, one side of the power port 9 is connected with a signal transmission port 8 in an embedded manner, the signal transmission port 8 is connected with a computer through a section of data line, when a user needs to store data through the hard disk main body 1, the computer transmits the data to be stored to the signal transmission port 8 through the data line, the signal transmission port 8 transmits the data to the magnetic disk 701 inside the hard disk protection shell 7 for storage, when the user needs to check the data through the computer, the magnetic disk 701 inside the hard disk protection shell 7 transmits the data to be checked by the user to the signal transmission port 8, the signal transmission port 8 transmits the data to the computer through the data line, so that the user can check the data quickly, and the timeliness of the device is embodied.
Preferably, top fixedly connected with fin 11 of hard disk protective housing 7, fin 11 is a many slice objects of being made by copper, when the inside hard disk of hard disk protective housing 7 produced heat, the heat can give inside the hard disk protective housing 7 of discharging through fin 11, simultaneously with the effect of airing exhaust of exhaust fan 3, make fin 11's heat dispersion better, make fin 11 can be better faster make the inside heat of hard disk protective housing 7 give and discharge away, fin 11 has reached the effect of protection hard disk protective housing 7, the protectiveness of the device has been embodied.
Preferably, the heat dissipation device 2 is formed by combining the exhaust fan 3 in the middle of the surface, the motor 201 on one side of the bottom inside the heat dissipation device 2, the interlocking gear 202 on the top of the motor 201, the toothed chain 203 on the periphery of the interlocking gear 202 and the thermal resistor 704 in the middle of the bottom inside the hard disk protection case 7, the thermal resistor 704 has high resistance value when the temperature is low and low resistance value when the temperature is high, an electric wire is arranged in the middle of one side of the thermal resistor 704 and is directly connected to a power supply, the power supply always ensures normal electrification, a connecting wire is arranged at the bottom of the thermal resistor 704 and is directly connected with the wiring port 5, the wiring port 5 on the heat dissipation device 2 and the hard disk protection case 7 is connected through an electric wire, so that the power supply, the thermal resistor 704 and the motor 201 form a always electrified passage, when the hard disk main body 1 operates, the hard disk in the hard disk protection case 7, when the heat inside the hard disk protection shell 7 is higher, the resistance of the thermal resistor 704 is smaller, so that the circuit current is larger, the running speed of the motor 201 is higher, meanwhile, the motor 201 drives the linkage gear 202 and the toothed chain 203 to rotate faster, meanwhile, the toothed chain 203 drives the exhaust fan 3 to rotate faster, and the exhaust fan 3 enables the radiating fins 11 to radiate more quickly, so that the heat radiation performance of the device is embodied.
Preferably, the shock absorber 6 is formed by combining a fixing stud 601 in the middle of the top, a damping block 602 at the bottom of the fixing stud 601, a resisting block 603 at the bottom of the shock absorber 6 and a spring 604 at the periphery of the resisting block 603, the shock absorbers 6 are totally eight and are respectively located at the four corners of the upper and lower surfaces of the hard disk protection case 7, when the computer runs or the computer is collided by people, the hard disk main body 1 inside the computer can generate shock, when the hard disk main body 1 vibrates, the shock is transmitted to the four shock absorbers 6 on the upper surface of the hard disk protection case 7 and the four shock absorbers 6 on the lower surface of the hard disk protection case 7 through the hard disk main body 1, at this time, the springs 604 on the surfaces of the eight shock absorbers 6 deform, the elastic force generated by the springs 604 through deformation can be offset by the damping blocks 602 located above and below the springs 604, so that the hard disk protection case 7 cannot vibrate, and because the heat dissipation device 2 is fixed at the top, when the heat dissipation device 2 is operated, vibration can be generated, and when the heat dissipation device 2 generates vibration, the vibration can be offset by the four springs 604 on the upper surface of the hard disk protection shell 7, so that the shock absorber 6 can more effectively improve the shock resistance of the hard disk main body 1, and the shock resistance of the device is reflected.
The working principle is as follows: firstly, the heat radiating fins 11 are multi-sheet objects made of copper, when a hard disk inside the hard disk protection shell 7 generates heat, the heat can be discharged out of the hard disk protection shell 7 through the heat radiating fins 11, meanwhile, the exhaust fan 3 has an exhaust effect, so that the heat radiating performance of the heat radiating fins 11 is better, the heat inside the hard disk protection shell 7 can be discharged out better and faster through the heat radiating fins 11, the heat radiating fins 11 achieve the effect of protecting the hard disk protection shell 7, and the protection performance of the device is embodied.
Then, the signal transmission port 8 is connected with the computer through a data line, when a user needs to store data through the hard disk main body 1, the computer transmits the data to be stored to the signal transmission port 8 through the data line, the signal transmission port 8 transmits the data to the magnetic disk 701 in the hard disk protection shell 7 for storage, when the user needs to check the data through the computer, the magnetic disk 701 in the hard disk protection shell 7 transmits the data which the user wants to check to the signal transmission port 8, and the signal transmission port 8 transmits the data to the computer through the data line, so that the user can quickly check the data, and the timeliness of the device is reflected.
Next, damping piece 602 is provided with two altogether, be located the bottom and the top of bumper shock absorber 6 respectively, when hard disk main body 1 produced vibrations, the spring 604 on bumper shock absorber 6 surface is out of shape, because spring 604 can produce a deformation power through deformation, can make bumper shock absorber 6 itself shake, spring 604 is cliied from top to bottom by damping piece 602 simultaneously, so damping piece 602 just gives offset the deformation power that the spring 604 deformation brought to reach the absorbing effect, embodied the device pertinence.
Next, the thermal resistor 704 has a high resistance when the temperature is low, and has a low resistance when the temperature is high, and there is an electric wire in the middle of one side of the thermal resistor 704, the electric wire is directly connected to the power supply, the power supply always ensures normal power-on, the bottom of the thermal resistor 704 is a connecting wire, the connecting wire is directly connected to the wire connecting port 5, the wire connecting port 5 on the heat dissipation device 2 and the hard disk protection case 7 is connected through an electric wire, so that the power supply, the thermal resistor 704 and the motor 201 form a always-on passage, when the hard disk main body 1 operates, the hard disk in the hard disk protection case 7 generates heat because of operation, when the heat in the hard disk protection case 7 is higher, the resistance of the thermal resistor 704 is smaller, so that the circuit current is larger, so that the operation speed of the motor 201 is faster, and at the motor 201 drives the interlocking gear 202 and, meanwhile, the chain 203 with teeth drives the exhaust fan 3 to rotate faster, and the exhaust fan 3 enables the radiating fins 11 to radiate heat faster, so that the heat radiation performance of the device is embodied.
Finally, eight shock absorbers 6 are arranged in total and are respectively arranged at the four corners of the upper surface and the lower surface of the hard disk protection shell 7, when the computer runs or the computer is collided by people, the hard disk main body 1 in the computer can generate shock, when the hard disk main body 1 vibrates, the shock passes through the hard disk main body 1 and reaches the four shock absorbers 6 on the upper surface of the hard disk protection shell 7 and the four shock absorbers 6 on the lower surface of the hard disk protection shell 7, at the moment, springs 604 on the surfaces of the eight shock absorbers 6 deform, the elastic force generated by the springs 604 through deformation can be counteracted by damping blocks 602 which are arranged above and below the springs 604, so that the hard disk protection shell 7 can not generate shock, and because the heat dissipation device 2 is fixed at the top of the shock absorbers 6 on the upper surface of the hard disk protection shell 7, when the heat dissipation device 2 runs, the shock can also be generated, the four springs 604 on the upper surface of the hard disk protection shell 7 can offset the vibration, and the shock absorber 6 can more effectively improve the shock resistance of the hard disk main body 1, so that the shock resistance of the device is embodied, which is the working principle of the computer hard disk shock-proof protection device.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a computer hard disk protection device that takes precautions against earthquakes, includes hard disk main part (1), heat abstractor (2), bumper shock absorber (6) and hard disk protective housing (7), its characterized in that: the top of the hard disk main body (1) is fixedly connected with a heat dissipation device (2), one side of the bottom inside the heat dissipation device (2) is fixedly connected with a motor (201), the top of the motor (201) is fixedly connected with a linkage gear (202), the middle of the surface of the heat dissipation device (2) is connected with an exhaust fan (3) in an embedded mode, the periphery of the surface of the heat dissipation device (2) is connected with a fixing port (4) in an embedded mode, the middle of the front face of the heat dissipation device (2) is connected with a wiring port (5) in an embedded mode, the bottom of the wiring port (5) is fixedly connected with a shock absorber (6), the middle of the top of the shock absorber (6) is fixedly connected with a fixing stud (601), the middle of the shock absorber (6) is fixedly connected with a support block (603), the periphery of the support block (603) is fixedly connected with a spring, fixedly connected with disc (701) in the middle of the inside of hard disk protective housing (7), the top fixedly connected with magnetic head (702) of disc (701), magnetism ware (703) are read to the inside bottom opposite side fixedly connected with of hard disk protective housing (7), the inside bottom fixedly connected with thermal resistance (704) of hard disk protective housing (7), the embedding is connected with power mouth (9) in the middle of the front of hard disk protective housing (7), the surperficial opposite side through connection of hard disk protective housing (7) has gas vent (10).
2. The computer hard disk shock protection device of claim 1, wherein: a toothed chain (203) is fixedly connected to the periphery of the linkage gear (202).
3. The computer hard disk shock protection device of claim 1, wherein: the bottom of the fixing stud (601) is fixedly connected with a damping block (602).
4. The computer hard disk shock protection device of claim 1, wherein: and a signal transmission port (8) is embedded and connected to one side of the power port (9).
5. The computer hard disk shock protection device of claim 1, wherein: the top of the hard disk protection shell (7) is fixedly connected with a radiating fin (11).
6. The computer hard disk shock protection device of claim 1, wherein: the heat dissipation device (2) is formed by combining an exhaust fan (3) in the middle of the surface, a motor (201) on one side of the bottom inside the heat dissipation device (2), a linkage gear (202) at the top of the motor (201), a toothed chain (203) on the periphery of the linkage gear (202) and a thermal resistor (704) in the middle of the bottom inside the hard disk protection shell (7).
7. The computer hard disk shock protection device of claim 1, wherein: the shock absorber (6) is formed by combining a fixing stud (601) in the middle of the top, a damping block (602) at the bottom of the fixing stud (601), a resisting block (603) at the bottom of the shock absorber (6) and a spring (604) on the periphery of the resisting block (603).
CN201921499680.0U 2019-09-10 2019-09-10 Computer hard disk protection device that takes precautions against earthquakes Expired - Fee Related CN210403203U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921499680.0U CN210403203U (en) 2019-09-10 2019-09-10 Computer hard disk protection device that takes precautions against earthquakes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921499680.0U CN210403203U (en) 2019-09-10 2019-09-10 Computer hard disk protection device that takes precautions against earthquakes

Publications (1)

Publication Number Publication Date
CN210403203U true CN210403203U (en) 2020-04-24

Family

ID=70341336

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921499680.0U Expired - Fee Related CN210403203U (en) 2019-09-10 2019-09-10 Computer hard disk protection device that takes precautions against earthquakes

Country Status (1)

Country Link
CN (1) CN210403203U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200424

Termination date: 20200910

CF01 Termination of patent right due to non-payment of annual fee