CN109270995B - Intelligent computer host - Google Patents

Intelligent computer host Download PDF

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Publication number
CN109270995B
CN109270995B CN201811132221.9A CN201811132221A CN109270995B CN 109270995 B CN109270995 B CN 109270995B CN 201811132221 A CN201811132221 A CN 201811132221A CN 109270995 B CN109270995 B CN 109270995B
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China
Prior art keywords
jacking
plate
conductive
mounting plate
friction
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CN201811132221.9A
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CN109270995A (en
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任忠伟
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SHANGHAI ZHISHENG INFORMATION TECHNOLOGY Co.,Ltd.
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Fuqing Chuangjia Intelligent Technology Co ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • G06F1/182Enclosures with special features, e.g. for use in industrial environments; grounding or shielding against radio frequency interference [RFI] or electromagnetical interference [EMI]

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Electromagnetism (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Human Computer Interaction (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Toys (AREA)

Abstract

The invention relates to an intelligent computer host, which comprises a host body, a mounting plate arranged on the lower surface of the host body, a mounting shaft arranged on the mounting plate, a roller sleeved on the mounting shaft, a roller limiting nut arranged on the mounting shaft, a jacking friction unit arranged on the mounting shaft and used for frictionally fastening the roller in a jacking mode through repulsive magnetic force, a direct current dry battery arranged on the mounting plate and used for supplying power to the jacking friction unit, and a toggle triggering unit arranged on the mounting plate and used for connecting the direct current dry battery in a power-on mode through a rotary toggle mode. The invention has the advantages of intelligent and effective rolling structure, convenient and quick rolling operation, good use effect of the rolling state and the fixed state and convenient switching of the two states.

Description

Intelligent computer host
Technical Field
The invention belongs to the technical field of computer host structures, and particularly relates to an intelligent computer host.
Background
The computer host refers to a main body part of the computer except for input and output devices, and is also a control box body used for placing a mainboard and other main components, and generally comprises a CPU, a memory, a hard disk, an optical drive, a power supply, and other input and output controllers and interfaces. On the other hand, most of the existing computer hosts are directly placed, so that the computer hosts are inconvenient to move and carry.
Chinese utility model patent with patent publication No. CN2743891Y and publication No. 2005.11.30 discloses an ultra-thin computer mainframe with a thickness of 6-8 cm, which is to remove the computer power supply at the side of the motherboard in the computer mainframe, and to make one side of the motherboard where the CPU, the radiator and the CPU fan are installed near the side of the case, and to open a large area of ventilation holes on the side, and to install the cooling fan at the other side of the case.
But the host computer in this utility model patent has the inconvenient problem of transport removal operation.
Disclosure of Invention
The invention aims to provide an intelligent computer host, which can achieve the purpose of effective rolling transportation of the host by arranging a mounting plate, a mounting shaft, a roller limiting nut, a jacking friction unit, a direct current dry battery and a toggle triggering unit on a host body. The invention has the advantages of intelligent and effective rolling structure, convenient and quick rolling operation, good use effect of the rolling state and the fixed state and convenient switching of the two states.
The technical scheme adopted by the invention for solving the problems is as follows: the utility model provides an intelligent computer mainframe, includes the host computer body, sets up mounting panel on the lower surface of the host computer body sets up installation epaxial in the mounting panel cup joints the setting and is in installation epaxial gyro wheel, and set up installation epaxial gyro wheel limit nut still including setting up installation epaxial and through repelling magnetic force jack-up mode in order to be used for the friction fastening the jack-up friction unit of gyro wheel sets up on the mounting panel and owing to the direct current dry battery of jack-up friction unit power supply, and set up and be in on the mounting panel and through rotatory stir the mode in order because the circular telegram is accessed the toggle trigger unit of direct current dry battery.
The further preferred technical scheme is as follows: the poking trigger unit comprises a limiting part arranged on the side face of the electrode at the lower end of the direct-current dry battery, a conductive part arranged on the limiting part in a clamping mode, and a rotating part arranged on the inner side face of the mounting plate and used for being in conductive contact with the direct-current dry battery in a conductive mode through upward jacking.
The further preferred technical scheme is as follows: the limiting part comprises a limiting plate main body arranged at two sides of the direct current dry battery and an end fixing plate arranged at the lower end of the limiting plate main body and used for supporting and fixing the falling conductive part.
The further preferred technical scheme is as follows: the conductive part includes electrically conductive mounting panel, sets up the spacing block groove of electrically conductive mounting panel both sides sets up two conducting strips that are used for setting up the wire on the electrically conductive mounting panel upper surface to and set up be used for the block butt joint on the electrically conductive mounting panel lower surface the groove of stirring of rotating part, the conducting strip sets up direct current dry battery electrode below position department.
The further preferred technical scheme is as follows: the rotating part is including setting up fixed plate on the mounting panel medial surface, the articulated setting is in on the fixed plate and through stir the groove on the roll mode in order to be used for jack-up the rotatory board of dialling of electrically conductive mounting panel, and set up the rotatory wheel of dialling board jack-up end both sides position department.
The further preferred technical scheme is as follows: the hinged shaft of the fixed plate is sleeved with a torsional spring for driving the rotary poking plate to rotate, and the inner side ends of the fixed plate and the rotary poking plate are respectively provided with a permanent magnet block for fixing in a mutual magnetic attraction mode for keeping the rotary poking plate in a horizontal state.
The further preferred technical scheme is as follows: the jacking friction units comprise jacking grooves, friction blocks, electromagnet portions, permanent magnet sheets and reset springs, wherein the jacking grooves are formed in the outer annular surfaces of the installation shafts in a matched mode, the friction blocks are arranged on the jacking grooves, the electromagnet portions are arranged on the inner bottom surfaces of the jacking grooves, the permanent magnet sheets are arranged on the inner side surfaces of the friction blocks and used for forming a repelling magnetic field with the electromagnet portions, the reset springs are arranged on the inner bottom surfaces of the jacking grooves and used for pulling the friction blocks inwards, the number of the jacking friction units is 3-5, and the jacking friction units are arranged on the installation shafts in a uniform circumferential arrangement mode.
The further preferred technical scheme is as follows: the installation board and the installation shaft are provided with main conductor slots, and the main conductor slots are communicated with the jacking slots through auxiliary conductor slots.
The further preferred technical scheme is as follows: the outer side face of the friction block is provided with an arc-shaped rubber friction plate, the reset spring is fixedly bonded on the inner side plane of the friction block, and the friction block slides in an inward and outward limiting mode on the jacking open groove.
The further preferred technical scheme is as follows: the electromagnet part comprises a core body arranged on the inner bottom surface of the jacking groove, a spiral groove arranged on the outer ring surface of the core body, and a spiral coil embedded in the spiral groove and connected with the direct-current dry battery through a lead.
The invention achieves the purpose of effective rolling and carrying of the main machine by arranging the mounting plate, the mounting shaft, the idler wheel limit nut, the jacking friction unit, the direct current dry battery and the toggle trigger unit on the main machine body. The invention has the advantages of intelligent and effective rolling structure, convenient and quick rolling operation, good use effect of the rolling state and the fixed state and convenient switching of the two states.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic position diagram of the jacking friction unit and the toggle triggering unit in the invention.
Fig. 3 is a schematic view of the position structure of the jacking friction unit in the invention.
Fig. 4 is a schematic view of the position structure of the toggle trigger unit in the present invention.
Fig. 5 is a schematic view of a rotary part according to the present invention.
Detailed Description
The following description is only a preferred embodiment of the present invention and is not intended to limit the scope of the present invention.
Example (b): as shown in fig. 1, 2, 3, 4 and 5, an intelligent computer host comprises a host body 1, a mounting plate 2 arranged on the lower surface of the host body 1, a mounting shaft 3 arranged on the mounting plate 2, a roller 4 arranged on the mounting shaft 3 in a sleeved mode, a roller limit nut 5 arranged on the mounting shaft 3, a jacking friction unit 6 arranged on the mounting shaft 3 and used for frictionally fastening the roller 4 in a repelling magnetic jacking mode, a direct current dry battery 7 arranged on the mounting plate 2 and used for supplying power to the jacking friction unit 6, and a toggle trigger unit 8 arranged on the mounting plate 2 and used for connecting the direct current dry battery 7 in a power-on manner in a rotating and toggling mode.
In this embodiment, the host computer body 1 is in to lay motionless state most of the time, at this moment stir trigger unit 8 and be used for triggering the back circular telegram and connect direct current dry battery 7 with jack-up friction unit 6, 6 friction cards of jack-up friction unit die gyro wheel 4, gyro wheel 4 can not rotate, host computer body 1 reaches the purpose of stably laying, and when host computer body 1 need roll the transport, remove earlier stir trigger unit 8's circular telegram trigger effect, at this moment no electric current passes through on the jack-up friction unit 6, jack-up friction unit 6 does not have repulsive magnetic force install and be the state of contracting inwards on the axle 3, gyro wheel 4 can rotate the roll smoothly, has guaranteed host computer body 1 has the convenient effectual advantage of roll transport.
On the other hand, the dc dry battery 7 in this embodiment may be an ac-to-dc converter, and the power supply of the main body 1 is utilized to provide stable dc power to the jacking friction unit 6, so as to ensure the stability of the repulsive magnetic force.
The toggle trigger unit 8 includes a limiting portion 801 disposed on the side surface of the lower electrode of the dc dry battery 7, a conductive portion 802 engaged with the limiting portion 801, and a rotating portion 803 disposed on the inner surface of the mounting plate 2 and configured to be in conductive contact with the dc dry battery 7 by lifting up the conductive portion 802.
In this embodiment, the rotation portion 803 is used to lift the conductive portion 802 upward, the conductive portion 802 is in contact with the dc dry battery 7, and there is current flowing in the lifting friction unit 6, and there is no current when there is no contact, so that the lifting friction effect of the lifting friction unit 6 is stable and controllable.
The position-limiting portion 801 includes a position-limiting plate main body 801a provided at both sides of the dc dry battery 7, and an end fixing plate 801b provided at a lower end of the position-limiting plate main body 801a and configured to support and fix the fallen conductive portion 802.
In this embodiment, the conductive part 802 is freely dropped on the head fixing plate 801b when not being rotatably jacked by the rotating part 803, and the four right and left stopper plate bodies 801a and the head fixing plate 801b are used to ensure stability of the vertical sliding of the conductive part 802.
The conductive part 802 includes a conductive mounting plate 802a, a limiting engaging groove 802b disposed on two sides of the conductive mounting plate 802a, two conductive sheets 802c disposed on the upper surface of the conductive mounting plate 802a and used for setting a wire, and a toggle groove 802d disposed on the lower surface of the conductive mounting plate 802a and used for engaging and abutting against the rotating part 803, wherein the conductive sheets 802c are disposed at a position below the electrode of the dc dry battery 7.
In this embodiment, since the rotating portion 803 rolls on the rolling groove 802d and pushes up, balls and lubricating oil are provided on three sides of the stopper engaging groove 802b to ensure that the conductive portion 802 can smoothly slide up and down without being locked, for the stability of the conductive portion 802 moving up and down.
The rotating portion 803 includes a fixed plate 803a provided on an inner side surface of the mounting plate 2, a rotation toggling plate 803b hingedly provided on the fixed plate 803a and for upwardly toggling the conductive mounting plate 802a by rolling on the toggling groove 802d, and rolling wheels 803c provided at positions on both sides of a toggling end of the rotation toggling plate 803 b. A torsion spring for driving the rotation and rotation of the rotation and activation plate 803b is sleeved on the hinge shaft of the fixed plate 803a, and a permanent magnet 803d for fixing is provided on the inner ends of the fixed plate 803a and the rotation and activation plate 803b to maintain the rotation and activation plate 803b in a horizontal state by means of mutual magnetic attraction.
In this embodiment, the rotating portion 803 has the following advantages:
first, initially, the attractive magnetic force between the two permanent magnets 803d for fixing is greater than the torsion of the torsion spring, the rotating toggle plate 803b is kept horizontal, the rolling wheel 803c is located at a position below the toggle slot 802d, and the main body 1 can conveniently roll at this time;
secondly, when the main body 1 needs to be stably placed, the two permanent magnet blocks 803d for fixing are manually separated, at this time, the rotating toggle plate 803b is driven by the torsion spring to rotate, the rolling wheel 803c enters the toggle groove 802d and is rolled and toggled, and the conductive mounting plate 802a finally moves upwards to perform conductive contact;
thirdly, when the rotating toggle plate 803b is manually rotated to the horizontal position, the two permanent magnet blocks 803d for fixing are attracted and fixed again, the conductive mounting plate 802a falls back onto the end fixing plate 801b again, at this time, the toggle triggering unit 8 is not electrified and connected with the jacking friction unit 6, and the roller 4 can drive the main machine body 1 to carry out effective rolling transportation operation again.
The jacking friction unit 6 comprises a jacking slot 601, a friction block 602, an electromagnet part 603, a permanent magnet sheet 606 and a reset spring 604, wherein the jacking slot 601 is arranged in the outer ring surface of the installation shaft 3, the friction block 602 is arranged on the jacking slot 601, the electromagnet part 603 is arranged on the inner bottom surface of the jacking slot 601, the permanent magnet sheet 606 is arranged on the inner side surface of the friction block 602 and is used for forming a repulsive magnetic field with the electromagnet part 603, the reset spring 604 is arranged on the inner bottom surface of the jacking slot 601 and is used for pulling the friction block 602 inwards, the number of the jacking friction units 6 is 3-5, and the jacking friction units are arranged on the installation shaft 3 in an even circumferential arrangement mode. The mounting panel 2 and the installation axle 3 are provided with a main conductor slot 9, and the main conductor slot 9 is communicated with the jacking slot 601 through an auxiliary conductor slot 10.
In this embodiment, one jack-up friction unit 6 includes four electro-magnet portion 603 and four reset spring 604, all electro-magnet portion 603 with direct current dry battery 7 and stir trigger unit 8 and establish ties, and the wire that makes a round trip is in set up on wire owner fluting 9 and the vice fluting 10 of wire, can form after electro-magnet portion 603 circular telegram with the magnetic field of permanent magnet piece 606 mutual repulsion, friction block 602 is outwards jacked up, carries out effective friction fastening operation, gyro wheel 4 can be effectively fixed, the host computer reaches the stable effect of laying.
An arc-shaped rubber friction plate 605 is arranged on the outer side surface of the friction block 602, the return spring 604 is fixedly bonded on the inner side plane of the friction block 602, and the friction block 602 slides in an inward-outward limiting manner on the jacking slot 601. The electromagnet portion 603 includes a core body provided on the inner bottom surface of the jack-up slot 601, a spiral groove provided on the outer circumferential surface of the core body, and a solenoid coil embedded in the spiral groove and connected to the dc dry battery 7 by a wire.
In this embodiment, the friction block 602 is a square block and an arc-shaped outer side surface, the rubber friction plate 605 is bonded on the arc-shaped outer side surface, and the core body is made of a non-magnetic rubber material.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various modifications can be made within the knowledge of those skilled in the art without departing from the gist of the present invention. These are non-inventive modifications, which are intended to be protected by patent laws within the scope of the claims appended hereto.

Claims (4)

1. The utility model provides an intelligent computer mainframe, includes the host computer body (1), sets up mounting panel (2) on the lower surface of the host computer body (1), sets up installation axle (3) on mounting panel (2) cup joint the setting and is in gyro wheel (4) on installation axle (3), and set up gyro wheel stop nut (5) on installation axle (3), its characterized in that: the device also comprises a jacking friction unit (6) which is arranged on the mounting shaft (3) and is used for frictionally fastening the roller (4) in a jacking mode through repulsive magnetic force, a direct current dry battery (7) which is arranged on the mounting plate (2) and supplies power to the jacking friction unit (6), and a toggle triggering unit (8) which is arranged on the mounting plate (2) and is switched into the direct current dry battery (7) through a rotary toggle mode;
the toggle trigger unit (8) comprises a limiting part (801) arranged on the side surface of the lower electrode of the direct current dry battery (7), a conductive part (802) clamped on the limiting part (801), and a rotating part (803) which is arranged on the inner side surface of the mounting plate (2) and is used for conducting contact with the direct current dry battery (7) in a mode of jacking up the conductive part (802);
the limiting part (801) comprises a limiting plate main body (801a) arranged at two sides of the direct current dry battery (7), and an end fixing plate (801b) arranged at the lower end of the limiting plate main body (801a) and used for supporting and fixing the falling conductive part (802);
the conductive part (802) comprises a conductive mounting plate (802a), limiting clamping grooves (802b) arranged at two sides of the conductive mounting plate (802a), two conductive sheets (802c) arranged on the upper surface of the conductive mounting plate (802a) and used for arranging wires, and a toggle groove (802d) arranged on the lower surface of the conductive mounting plate (802a) and used for clamping and butting the rotating part (803), wherein the conductive sheets (802c) are arranged at the position below the electrode of the direct current dry battery (7);
the rotating part (803) comprises a fixed plate (803a) arranged on the inner side surface of the mounting plate (2), a rotating poking plate (803b) which is hinged on the fixed plate (803a) and used for jacking up the conductive mounting plate (802a) in a rolling manner on the poking groove (802d), and rolling wheels (803c) arranged at two sides of the jacking end of the rotating poking plate (803 b);
a torsion spring for driving the rotary toggle plate (803b) to rotate is sleeved on a hinged shaft of the fixed plate (803a), and a permanent magnet block (803d) for fixing is arranged on the inner side ends of the fixed plate (803a) and the rotary toggle plate (803b) in a mutual magnetic attraction manner and used for keeping the rotary toggle plate (803b) in a horizontal state;
the jacking friction unit (6) comprises a jacking slot (601) arranged in the outer ring surface of the mounting shaft (3) in a facing mode, a friction block (602) arranged on the jacking slot (601), an electromagnet part (603) arranged on the inner bottom surface of the jacking slot (601), a permanent magnet sheet (606) arranged on the inner side surface of the friction block (602) and used for forming a repelling magnetic field with the electromagnet part (603), and a reset spring (604) arranged on the inner bottom surface of the jacking slot (601) and used for pulling the friction block (602) inwards, wherein the number of the jacking friction unit (6) is 3-5, and the jacking friction unit is arranged on the mounting shaft (3) in a uniform circumferential arrangement mode.
2. An intelligent computer host according to claim 1, wherein: be equipped with wire owner fluting (9) on mounting panel (2) and installation axle (3), wire owner fluting (9) with communicate through wire pair fluting (10) between jack-up fluting (601).
3. An intelligent computer host according to claim 1, wherein: an arc-shaped rubber friction plate (605) is arranged on the outer side face of the friction block (602), the return spring (604) is fixedly bonded on the inner side plane of the friction block (602), and the friction block (602) slides in an inward and outward limiting manner on the jacking open groove (601).
4. An intelligent computer host according to claim 1, wherein: the electromagnet part (603) comprises a core body arranged on the inner bottom surface of the jacking open groove (601), a spiral groove arranged on the outer ring surface of the core body, and a spiral coil embedded in the spiral groove and connected with the direct current dry battery (7) through a lead.
CN201811132221.9A 2018-09-27 2018-09-27 Intelligent computer host Active CN109270995B (en)

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Application Number Priority Date Filing Date Title
CN201811132221.9A CN109270995B (en) 2018-09-27 2018-09-27 Intelligent computer host

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Application Number Priority Date Filing Date Title
CN201811132221.9A CN109270995B (en) 2018-09-27 2018-09-27 Intelligent computer host

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CN109270995A CN109270995A (en) 2019-01-25
CN109270995B true CN109270995B (en) 2020-05-29

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109240443B (en) * 2018-09-27 2020-06-12 林莉莉 Multifunctional computer host equipment

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107695120A (en) * 2017-11-24 2018-02-16 湖州织里川蜀机械有限公司 A kind of aluminium section bar extruder being moved easily
CN107826391A (en) * 2017-12-06 2018-03-23 宣城杰爱新材料科技有限公司 A kind of active type warming plate dispenser

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107695120A (en) * 2017-11-24 2018-02-16 湖州织里川蜀机械有限公司 A kind of aluminium section bar extruder being moved easily
CN107826391A (en) * 2017-12-06 2018-03-23 宣城杰爱新材料科技有限公司 A kind of active type warming plate dispenser

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Effective date of registration: 20200424

Address after: Room 595, Room 201, 2f, supervision building, processing trade zone, fftp, Fujian Province (No.9, Xinjiang road, Xincuo Town, Fuqing City)

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Patentee before: FUQING CHUANGJIA INTELLIGENT TECHNOLOGY Co.,Ltd.