CN205540487U - Antidetonation and heat abstractor suitable for no fan industrial computer hard disk - Google Patents

Antidetonation and heat abstractor suitable for no fan industrial computer hard disk Download PDF

Info

Publication number
CN205540487U
CN205540487U CN201620154641.7U CN201620154641U CN205540487U CN 205540487 U CN205540487 U CN 205540487U CN 201620154641 U CN201620154641 U CN 201620154641U CN 205540487 U CN205540487 U CN 205540487U
Authority
CN
China
Prior art keywords
hard disk
heat
heat radiation
fan
antidetonation
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620154641.7U
Other languages
Chinese (zh)
Inventor
程加钢
胡小华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Jhctech Development Co ltd
Original Assignee
Shenzhen Jhctech Development Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen Jhctech Development Co ltd filed Critical Shenzhen Jhctech Development Co ltd
Priority to CN201620154641.7U priority Critical patent/CN205540487U/en
Application granted granted Critical
Publication of CN205540487U publication Critical patent/CN205540487U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The utility model discloses an antidetonation and heat abstractor suitable for no fan industrial computer hard disk, the device include heat dissipation bottom and earthquake -resistant structure, and the hard disk passes through earthquake -resistant structure to be installed in the heat dissipation bottom, and the underrun series thermal silica of this hard disk pastes the laminating on the bottom that dispels the heat, heat that hard disk when operation produced pass through series thermal silica paste transmit the heat dissipation bottom on, this hard disk did not have the fan -type heat dissipation after the heat distributed to the air in by the heat dissipation bottom again. The utility model discloses the hard disk does not have the fan -type heat dissipation for the hard disk quick heat dissipation of in time taking the initiative, earthquake -resistant structure's design can balance the shock attenuation to the hard disk of installing on the heat dissipation bottom, has improved the stability of hard disk operation, the improvement of above -mentioned structure makes antidetonation heat conduction realize simultaneously, and then this hard disk installation obtains extensive use.

Description

It is applicable to antidetonation and the heat abstractor of fan-free industrial computer hard disk
Technical field
This utility model relates to industrial computer mechanical hard disk technical field, particularly relates to a kind of antidetonation being applicable to fan-free industrial computer hard disk and heat abstractor.
Background technology
Hard disk is the most all installed in the chassis, and typically it has been configured with the frame that hard disk is installed in the chassis, so the mechanical erection work of hard disk is the simplest, it is only necessary to screw or add-on hard disk frame by Winchester disk drive vertically or horizontally fixing want mainframe box in suitable disc unit position.
The hard disk of 3.5 cun can be directly mounted on the position of 3.5 cun of floppy disk frames, and the hard disk of 2.5 cun can be directly mounted on the position of 2.5 cun of floppy disk frames.If installing improper on horizontal frames, it is also possible to hard disk is vertically mounted on the vacant position of cabinet.
The correct Installation posture of hard disk has two kinds: a kind of is to be faced down by the circuit board (printed panel) having components and parts, and smooth have the one of lid to face up installation;Another kind is to use side-stand type right angle setting.During hard disk design, the normal work of bearing designs according to both attitudes, if using other attitude to install, it will have a strong impact on the service life of hard disk.
The shockproof of hard disk is divided into again passive type shockproof and active shockproof, passive type shake-proof technology participates in without any electronic devices and components and the support of software, simply filling the cushion that can absorb vibrations of some sponges or quality of rubber materials around hard disk, active shake-proof technology also needs to add to accelerate induction chip on the basis of passive type technology.Generally, shockproof taking off based on active, a lot of equipment manufacturers are not to focus on very much for the design that passive type is shockproof, but install for hard disk and do not design, and but affect product stability very big, even there is potential threat.
For Hard disk heat radiation, being also critically important, the hard disk the most generally existed is installed, and all it is merely observed that shockproof, and does not has the booster injection heat radiation to hard disk, particularly the product of the active heat radiation of the fan-free of confined space, and the stability of hard disk is the biggest on the impact of product.
Utility model content
For weak point present in above-mentioned technology, this utility model provides a kind of good heat dissipation effect, the stable and antidetonation being applicable to fan-free industrial computer hard disk of good damping effect and heat abstractor.
For achieving the above object, this utility model provides a kind of antidetonation being applicable to fan-free industrial computer hard disk and heat abstractor, including heat radiation bottom and anti-seismic structure, hard disk is arranged in heat radiation bottom by anti-seismic structure, and the underrun thermal conductive silicon sticker of this hard disk is fitted on heat radiation bottom;The heat produced during the operating of described hard disk is delivered to dispel the heat on bottom by thermal conductive silicon sticker, and after heat is distributed to air by heat radiation bottom again, this hard disk carries out fan-free type heat radiation.
Wherein, described anti-seismic structure includes hard disk mounting bracket and multiple soft yielding rubber circle, forming an installation through hole suitable with hard disk shape size in described hard disk mounting bracket, described hard disk is arranged on that this installation through hole is interior and bottom surface is fitted in heat conductive silica gel and sticks;Described hard disk mounting bracket compresses and is fixed on by yielding rubber circle on heat radiation bottom.
Wherein, the width of described thermal conductive silicon sticker is more than the width of hard disk, and extends a wherein side of hard disk;The length of described hard disk is more than the length of thermal conductive silicon sticker, and forms radiating area between hard disk length direction two end overhanging portion and heat radiation bottom.
Wherein, the plurality of yielding rubber circle is positioned at thermal conductive silicon sticker and extends on the position of hard disk, and hard disk mounting bracket is fixed on heat radiation bottom by each yielding rubber circle by the adaptation of screw with fourth of the twelve Earthly Branches post.
Wherein, described heat radiation bottom is made up of aluminum alloy material.
The beneficial effects of the utility model are: compared with prior art, the antidetonation being applicable to fan-free industrial computer hard disk of this utility model offer and heat abstractor, the bottom surface of hard disk is fitted on heat radiation bottom by thermal conductive silicon sticker, thermal conductive silicon sticker and bottom itself are respectively provided with the effect of heat radiation, the heat produced during hard disk operating is delivered to dispel the heat on bottom by thermal conductive silicon sticker, heat is distributed to air hard disk by heat radiation bottom again and carries out fan-free type heat radiation so that hard disk can carry out the most quickly heat radiation;The design of anti-seismic structure, can be balanced damping to the hard disk being arranged on heat radiation bottom, improve the stability that hard disk runs;The improvement of said structure makes antidetonation heat conduction realize simultaneously, and then this hard disk is installed and is widely used.
Accompanying drawing explanation
Fig. 1 is the antidetonation being applicable to fan-free industrial computer hard disk of the present utility model and the structure chart of heat abstractor.
Main element symbol description is as follows:
10, heat radiation bottom 11, anti-seismic structure
12, thermal conductive silicon sticker 13, radiating area
14, screw 15, fourth of the twelve Earthly Branches post
16, hard disk 111, hard disk mounting bracket
112, yielding rubber circle.
Detailed description of the invention
In order to more clearly state this utility model, below in conjunction with the accompanying drawings this utility model is further described.
Refer to Fig. 1, the antidetonation being applicable to fan-free industrial computer hard disk of this utility model offer and heat abstractor, including heat radiation bottom 10 and anti-seismic structure 11, hard disk 16 is arranged in heat radiation bottom 10 by anti-seismic structure 11, and the underrun thermal conductive silicon sticker 12 of this hard disk 16 is fitted on heat radiation bottom 10;The heat produced when hard disk 16 operates is delivered to dispel the heat on bottom 10 by thermal conductive silicon sticker 12, and after heat is distributed to air by heat radiation bottom 10 again, this hard disk carries out fan-free type heat radiation.
Situation compared to prior art, the antidetonation being applicable to fan-free industrial computer hard disk of this utility model offer and heat abstractor, the bottom surface of hard disk 16 is fitted on heat radiation bottom 10 by thermal conductive silicon sticker 12, thermal conductive silicon sticker 12 and bottom itself are respectively provided with the effect of heat radiation, the heat produced when hard disk 16 operates is delivered to dispel the heat on bottom 10 by thermal conductive silicon sticker 12, after heat is distributed to air by heat radiation bottom again, this hard disk carries out fan-free type heat radiation so that hard disk can carry out the most quickly heat radiation;The design of anti-seismic structure, can be balanced damping to the hard disk being arranged on heat radiation bottom, improve the stability that hard disk runs;The improvement of said structure makes antidetonation heat conduction realize simultaneously, and then this hard disk is installed and is widely used.
In the present embodiment, anti-seismic structure 11 includes hard disk mounting bracket 111 and multiple soft yielding rubber circle 112, forming an installation through hole suitable with hard disk 16 shape size in hard disk mounting bracket 111, hard disk 16 is arranged on that this installation through hole is interior and bottom surface is fitted on thermal conductive silicon sticker 12;Hard disk mounting bracket 111 compresses and is fixed on by yielding rubber circle 112 on heat radiation bottom 10.Mechanical hard disk is the equipment extremely fearing vibration, and especially during hard disk read-write operations, strong vibration can cause hard disk information to lose or damage hard disk.Although hard disk has been designed with shockproof and damping measure, if but some isolation measures supplemented can be increased in an installation, it will contribute to reducing the probability of hard disk corruptions.Conventional shock isolation method is the material adding shock-absorbing between hard disk and frame, such as foam, sheet, silica gel etc..The most unfavorable to hard disk in view of using silica gel etc. to do padded coaming, such as a lot of silica gel are heated work for a long time, can volatilize gas disadvantageous to hard disc coating, and this utility model uses soft yielding rubber circle, the problem solving above-mentioned existence.While shockproof optimization, it is also contemplated that quality of rubber materials belongs to the non-conductor of heat, heat conduction sticker is therefore used to connect heat radiation bottom and the heat radiation of hard disk, it is ensured that long playing stability.
In the present embodiment, the width of thermal conductive silicon sticker 12 is more than the width of hard disk 16, and extends a wherein side of hard disk 16;The length of hard disk 16 is more than the length of thermal conductive silicon sticker 12, and forms radiating area 13 between hard disk length direction two end overhanging portion and heat radiation bottom 10.The part extended in this structure and the formation of radiating area 13, increase radiating effect so that the heat that hard disk produces can distribute faster.
In the present embodiment, multiple yielding rubber circles 112 are positioned at thermal conductive silicon sticker 12 and extend on the position of hard disk 16, and hard disk mounting bracket 111 is fixed on heat radiation bottom 10 by each yielding rubber circle 112 by the adaptation of screw 14 with fourth of the twelve Earthly Branches post 15.This case is not limited to yielding rubber circle fixed form on heat dissipation base; other fixing connected modes can also be passed through; as long as the embodiment that hard disk mounting bracket is fixed on heat dissipation base by above-mentioned yielding rubber circle can be realized; belong to the simple deformation to this case or conversion, fall in the protection domain of this case.
In the present embodiment, heat radiation bottom 10 is made up of aluminum alloy material, and is 5052 aluminium alloys;Certainly, this case is not limited to material of dispelling the heat, as long as bottom self can be realized there is the embodiment of thermolysis, belongs to the simple deformation to this case or conversion, fall in the protection domain of this case.
The main heat sink scheme that this utility model provides is: first during hard disk startup work, the heat distributed is transferred to, by the heat-conducting medium such as thermal conductive silicon sticker in present case, the heat radiation bottom bottom surface that 5052 aluminium alloys are made, play acceleration mechanical hard disk cooling effect, realize heat transfer process, discharge hard disk operational heat.This case, when designing Hard disk heat radiation, all uses the superior material of heat dispersion and heat-conducting medium, uses 5052 aluminium alloys of heat conduction patch that heat conductivity is high and light weight, excellent in heat dissipation effect to make heat radiation bottom.Secondly, hard disk is core indispensable in industrial control product, during hard disk high speed operation, once works because sharp pounding causes accidental damage, product to will be unable to normally.So hard disk shock-absorbing can not be ignored, just in consideration of it, so when hard disk is installed, use hard disk mounting bracket to be fixed by hard disk, and on hard disk bracket, use the good yielding rubber circle of damping effect, to reaching hard disk shock-absorbing effect.
Only several specific embodiments of the present utility model disclosed above, but this utility model is not limited to this, and the changes that any person skilled in the art can think of all should fall into protection domain of the present utility model.

Claims (5)

1. the antidetonation being applicable to fan-free industrial computer hard disk and heat abstractor, it is characterised in that include dispel the heat bottom and anti-seismic structure, hard disk is arranged in heat radiation bottom by anti-seismic structure, and the underrun thermal conductive silicon sticker of this hard disk is fitted on heat radiation bottom;The heat produced during the operating of described hard disk is delivered to dispel the heat on bottom by thermal conductive silicon sticker, and after heat is distributed to air by heat radiation bottom again, this hard disk carries out fan-free type heat radiation.
The antidetonation being applicable to fan-free industrial computer hard disk the most according to claim 1 and heat abstractor, it is characterized in that, described anti-seismic structure includes hard disk mounting bracket and multiple soft yielding rubber circle, forming an installation through hole suitable with hard disk shape size in described hard disk mounting bracket, described hard disk is arranged on that this installation through hole is interior and bottom surface is fitted in heat conductive silica gel and sticks;Described hard disk mounting bracket compresses and is fixed on by yielding rubber circle on heat radiation bottom.
The antidetonation being applicable to fan-free industrial computer hard disk the most according to claim 2 and heat abstractor, it is characterised in that the width of described thermal conductive silicon sticker is more than the width of hard disk, and extends a wherein side of hard disk;The length of described hard disk is more than the length of thermal conductive silicon sticker, and forms radiating area between hard disk length direction two end overhanging portion and heat radiation bottom.
The antidetonation being applicable to fan-free industrial computer hard disk the most according to claim 3 and heat abstractor, it is characterized in that, the plurality of yielding rubber circle is positioned at thermal conductive silicon sticker and extends on the position of hard disk, and hard disk mounting bracket is fixed on heat radiation bottom by each yielding rubber circle by the adaptation of screw with fourth of the twelve Earthly Branches post.
The antidetonation being applicable to fan-free industrial computer hard disk the most according to claim 1 and heat abstractor, it is characterised in that described heat radiation bottom is made up of aluminum alloy material.
CN201620154641.7U 2016-03-01 2016-03-01 Antidetonation and heat abstractor suitable for no fan industrial computer hard disk Expired - Fee Related CN205540487U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620154641.7U CN205540487U (en) 2016-03-01 2016-03-01 Antidetonation and heat abstractor suitable for no fan industrial computer hard disk

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620154641.7U CN205540487U (en) 2016-03-01 2016-03-01 Antidetonation and heat abstractor suitable for no fan industrial computer hard disk

Publications (1)

Publication Number Publication Date
CN205540487U true CN205540487U (en) 2016-08-31

Family

ID=56780246

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620154641.7U Expired - Fee Related CN205540487U (en) 2016-03-01 2016-03-01 Antidetonation and heat abstractor suitable for no fan industrial computer hard disk

Country Status (1)

Country Link
CN (1) CN205540487U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108572701A (en) * 2017-03-07 2018-09-25 西门子公司 Built-in industrial computer
CN108751722A (en) * 2018-08-11 2018-11-06 芜湖市新海域智能科技有限公司 A kind of computer hard disk substrate devitrified glass and preparation method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108572701A (en) * 2017-03-07 2018-09-25 西门子公司 Built-in industrial computer
CN108572701B (en) * 2017-03-07 2021-09-17 西门子公司 Embedded industrial computer
CN108751722A (en) * 2018-08-11 2018-11-06 芜湖市新海域智能科技有限公司 A kind of computer hard disk substrate devitrified glass and preparation method

Similar Documents

Publication Publication Date Title
CN201465020U (en) Conduction and heat dissipation device of CPCI module
CN202887087U (en) Semiconductor central processing unit (CPU) radiator having heat insulation protection
CN205540487U (en) Antidetonation and heat abstractor suitable for no fan industrial computer hard disk
CN108897409A (en) A kind of computer hardware cooling mechanism
CN209435725U (en) It is a kind of to be gas-cooled and the mutually matched server cabinet cooling device of liquid cooling
CN210928439U (en) Cloud computing server array cabinet
CN201490181U (en) Chip heat radiation device
CN204390150U (en) Notebook computer heat dissipation base
CN200941730Y (en) Shock-proof mechanism of radiator
CN110888499B (en) Mechanical hard disk bracket beneficial to heat dissipation
CN212586813U (en) Computer motherboard mounting bracket
CN205389294U (en) Be applied to electronic and prevent static PCB board subassembly
CN207833446U (en) A kind of pluggable finned radiator for inside computer cabinet
CN203934160U (en) A kind of backboard refrigerating machine cabinet of double door
CN112486301A (en) Heat dissipation device for tablet computer
CN207623908U (en) A kind of radiator structure of computer cabinet
CN207263671U (en) A kind of X fluorescence spectrometer detector cooling device
CN202600559U (en) On-board computer
CN206348725U (en) A kind of server host with wind scooper
CN215576524U (en) Computer casing heat abstractor
CN214545226U (en) PCB circuit board with anti-corrosion function
CN203550098U (en) Atomizing circuit assembly and humidifier comprising same
CN217159730U (en) Sensor network high-precision time synchronization control device with protection function
CN218124021U (en) Emergency lighting centralized power supply cabinet
CN215187975U (en) Fan heat dissipation device and power amplifier assembly

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160831

Termination date: 20180301