CN113470700A - Auxiliary device for preventing magnetic head from being abraded based on rotation of magnetic disk - Google Patents

Auxiliary device for preventing magnetic head from being abraded based on rotation of magnetic disk Download PDF

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Publication number
CN113470700A
CN113470700A CN202110623514.2A CN202110623514A CN113470700A CN 113470700 A CN113470700 A CN 113470700A CN 202110623514 A CN202110623514 A CN 202110623514A CN 113470700 A CN113470700 A CN 113470700A
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China
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magnetic
body shell
head
rotation
preventing
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CN202110623514.2A
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Chinese (zh)
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郑文彬
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Hangzhou Oubin Technology Co ltd
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Hangzhou Oubin Technology Co ltd
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Priority to CN202110623514.2A priority Critical patent/CN113470700A/en
Publication of CN113470700A publication Critical patent/CN113470700A/en
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    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B5/00Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
    • G11B5/127Structure or manufacture of heads, e.g. inductive
    • G11B5/187Structure or manufacture of the surface of the head in physical contact with, or immediately adjacent to the recording medium; Pole pieces; Gap features
    • G11B5/255Structure or manufacture of the surface of the head in physical contact with, or immediately adjacent to the recording medium; Pole pieces; Gap features comprising means for protection against wear
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B5/00Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
    • G11B5/40Protective measures on heads, e.g. against excessive temperature 
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B5/00Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
    • G11B5/41Cleaning of heads

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Recording Or Reproducing By Magnetic Means (AREA)

Abstract

The invention provides an auxiliary device for preventing magnetic head abrasion based on disk rotation, and relates to the technical field of computer auxiliary equipment. This auxiliary device based on magnetic disc rotates and prevents magnetic head wearing and tearing, the inside rotation of engine body shell is connected with the magnetic disc body, the inside elastic connection of engine body shell has magnetic mechanism. The magnetic disk does not stop rotating, the first belt is driven to rotate, the first magnetic pole is driven to be close to the second magnetic pole by the aid of the matching of the turntable and the spring rod, the magnetic head is enabled not to be in contact with the magnetic disk in a power-off state temporarily due to mutual attraction, when the magnetic disk stops rotating, the magnetic head does not receive acting force of the magnetic pole any more, the effect of preventing abrasion of the magnetic head is achieved, the second belt is matched with the rotating wheel to be used, the intermittent extrusion air bag of the pushing block is driven, the cleaning wheel is enabled to be close to the magnetic disk intermittently, dust can be cleaned, the cleaning wheel is prevented from being in contact with the magnetic disk for a long time, and the effect of preventing influence on data reading is achieved.

Description

Auxiliary device for preventing magnetic head from being abraded based on rotation of magnetic disk
Technical Field
The invention relates to the technical field of computer auxiliary equipment, in particular to an auxiliary device for preventing a magnetic head from being worn based on the rotation of a magnetic disk.
Background
With the continuous development of the internet, computers have become more popular office learning tools, and the number of computer-assisted devices has increased, and the computer-assisted devices include four pieces of network devices, office devices, digital devices and video devices, a magnetic disk is one of the network devices, and is used for storing and reading data, but after the computer is stopped, the rotation speed of the magnetic disk is gradually reduced, so that the buoyancy of the magnetic head is reduced, the magnetic head makes contact with the magnetic disk which does not stop rotating, and further friction is generated, the surface of the magnetic head is abraded, and the magnetic disk is placed inside a host machine for a long time, so that much dust is adsorbed on the surface of the magnetic disk, and normal reading and storing of data are influenced.
In order to solve the above problems, the inventor provides an auxiliary device for preventing the magnetic head from being worn based on the rotation of a magnetic disk, wherein a first belt is driven to rotate by the aid of the fact that the magnetic disk does not stop rotating, a first magnetic pole is driven to be close to a second magnetic pole by a sliding block through the cooperation of a rotary disk and a spring rod, the magnetic head is contacted with the magnetic disk which is not powered off temporarily due to mutual attraction, when the magnetic disk stops rotating, the magnetic head is not acted by the magnetic pole any more, and the effect of preventing the magnetic head from being worn is achieved.
Disclosure of Invention
In order to achieve the purpose, the invention is realized by the following technical scheme: the utility model provides an auxiliary device based on magnetic disk rotation prevents magnetic head wearing and tearing, includes engine body shell, engine body shell's inside rotation is connected with the magnetic disk body, the inside fixedly connected with pivot of magnetic disk body, engine body shell's internal transmission is connected with stretching mechanism, engine body shell's inside elastic connection has magnetic mechanism, the peripheral transmission of pivot is connected with clean mechanism.
Preferably, the stretching mechanism includes a belt, carousel, spring beam, dials movable block, slider, atress pole, a magnetic pole, the one end transmission that the pivot was kept away from to a belt is connected with the carousel, the communication front end fixedly connected with spring beam of carousel, the one end fixedly connected with that the carousel axle center was kept away from to the spring beam dials the movable block, engine body shell's inside elastic connection has the slider, the one end rotation that the slider is close to the carousel is connected with the atress pole, the magnetic pole of one side fixedly connected with that the slider is close to each other.
Preferably, a belt is the same with the quantity of carousel, and the symmetric distribution is in the inside of body shell, the spring beam is the same with the quantity of stirring the piece, and evenly distributed is at the concentric front end of carousel, and stirs the piece and be in the coplanar with the atress pole, slider sliding connection is in the inside spout of body shell, a magnetic pole symmetric distribution uses the drive carousel to rotate through the cooperation of pivot and a belt in the inside of body shell, moves under the effect of centrifugal force through the spring beam and drives the piece of stirring and remove to make the atress pole drive the slider and slide, and then make a magnetic pole produce the attraction to No. two magnetic poles.
Preferably, the magnetic mechanism comprises a magnetic head column, a return spring and a second magnetic pole, the return spring is fixedly connected to the top of the magnetic head column, and the second magnetic pole is fixedly connected to one end, far away from the magnetic head column, of the return spring.
Preferably, the magnetic head column is rotatably connected inside the machine body shell, the magnetic head column is not in contact with the turntable, the second magnetic pole is positioned at the bottom of the first magnetic pole and has opposite magnetism to the first magnetic pole, and the return spring generates an upward acting force on the magnetic head column through the matching use of the first magnetic pole and the second magnetic pole.
Preferably, clean mechanism includes No. two belts, runner, spout, swivel mount, extrusion post, promotes piece, gasbag, clean wheel, the one end transmission that the pivot was kept away from to No. two belts is connected with the runner, the face slot is seted up to the inside of runner, the concentric front end fixedly connected with swivel mount of runner, the inside sliding connection of swivel mount has the extrusion post, the one end fixedly connected with that the swivel mount was kept away from to the extrusion post promotes the piece, body cover's inside fixed mounting has the gasbag, the gasbag is close to the clean wheel of one end fixedly connected with of magnetic disk body.
Preferably, the number of the second belts is the same as that of the rotating wheels, the second belts are symmetrically distributed in the machine body shell, the moving blocks are connected in the surface grooves in a sliding mode and are connected in the rotating frame in a sliding mode, the air bags and the cleaning wheels are the same in number and are symmetrically distributed in the machine body shell, the rotating frame is rotated through the matching of the second belts and the rotating wheels, and the pushing blocks are driven to extrude the air bags intermittently through the matching of the rotating frame and the extrusion columns.
The invention provides an auxiliary device for preventing a magnetic head from being worn based on the rotation of a magnetic disk. The method has the following beneficial effects:
1. the auxiliary device for preventing the magnetic head from being worn based on the rotation of the magnetic disk is powered off by a computer host, the magnetic disk body is still in a rotating state at the moment, the rotating shaft is driven to rotate by the rotation of the magnetic disk body, the rotating disk is driven to rotate by the matching of the rotating shaft and a first belt, the spring rod at the concentric front end of the rotating disk is driven to rotate by the rotation of the rotating disk, so that the spring rod moves under the action of centrifugal force, the shifting block is driven to move by the movement of the spring rod, the sliding block is driven to slide in a sliding chute in the body shell by the matching of the shifting block and a stress rod, the first magnetic pole is driven to be close to the second magnetic pole by the sliding of the sliding block, the reset spring generates an upward acting force on the magnetic head column by the matching of the first magnetic pole and the second magnetic pole, the magnetic head column is prevented from contacting with the magnetic disk body, when the magnetic disk body stops rotating, the magnetic head column is not subjected to acting force any more, and the effect of preventing the magnetic head from being abraded is achieved.
2. This auxiliary device based on magnetic disk rotation prevents magnetic head wearing and tearing, it is rotatory to drive its inside pivot through the pivoted of the inside magnetic disk body of engine body shell, it rotates to drive No. two belts through the rotation of pivot, use through the cooperation of No. two belts and runner, make the movable block in the inside facial canal of runner drive the swivel mount and rotate, use through the cooperation of swivel mount and extrusion post, make the extrusion post drive and promote the piece and extrude gasbag intermittent type nature production, extrude the gasbag through promoting the piece, thereby make cleaning wheel intermittent type nature be close to the magnetic disk body and clear up, both can clear up the dust, prevent again that cleaning wheel from contacting with the magnetic disk for a long time, the effect of preventing influence data reading has been reached.
Drawings
FIG. 1 is a cross-sectional view of a front structure of the present invention;
FIG. 2 is a schematic structural view of the stretching mechanism of the present invention;
FIG. 3 is a schematic view of the cleaning mechanism of the present invention;
FIG. 4 is an enlarged view of the structure of FIG. 1 at A according to the present invention.
In the figure: 1. a body housing; 2. a disk body; 3. a rotating shaft; 4. a stretching mechanism; 41. a first belt; 42. a turntable; 43. a spring lever; 44. a shifting block; 45. a slider; 46. a stress beam; 47. a first magnetic pole; 5. a magnetic mechanism; 51. a head post; 52. a return spring; 53. a second magnetic pole; 6. a cleaning mechanism; 61. a second belt; 62. a rotating wheel; 63. a face groove; 64. rotating the frame; 65. extruding the column; 66. a pushing block; 67. an air bag; 68. and cleaning the wheels.
Detailed Description
The technical solutions 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 a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The embodiment of the auxiliary device for preventing the magnetic head from being worn based on the rotation of the magnetic disk is as follows:
the first embodiment is as follows:
referring to fig. 1, 2 and 4, an auxiliary device for preventing magnetic head wear based on magnetic disk rotation comprises a machine body housing 1, a magnetic disk body 2 is rotatably connected inside the machine body housing 1, a rotating shaft 3 is fixedly connected inside the magnetic disk body 2, a stretching mechanism 4 is connected inside the machine body housing 1 in a transmission manner, a magnetic mechanism 5 is elastically connected inside the machine body housing 1, the stretching mechanism 4 comprises a first belt 41, a turntable 42, a spring rod 43, a toggle block 44, a sliding block 45, a stress rod 46 and a first magnetic pole 47, the end of the first belt 41 far away from the rotating shaft 3 is connected with the turntable 42 in a transmission manner, the front end of the turntable 42 in communication is fixedly connected with the spring rod 43, the end of the spring rod 43 far away from the axis of the turntable 42 is fixedly connected with the toggle block 44, the sliding block 45 is elastically connected inside the machine body housing 1, the end of the sliding block 45 near the turntable 42 is rotatably connected with the stress rod 46, the side of the sliding block 45 near each other is fixedly connected with the first magnetic pole 47, the number of the first belts 41 is the same as that of the turntables 42, the first belts 41 and the turntables 42 are symmetrically distributed in the machine body shell 1, the spring rods 43 and the poking blocks 44 are the same in number and are uniformly distributed at the concentric front end of the turntables 42, the poking blocks 44 and the stress rods 46 are positioned on the same plane, the sliding blocks 45 are slidably connected in sliding grooves in the machine body shell 1, the first magnetic poles 47 are symmetrically distributed in the machine body shell 1, the turntables 42 are driven to rotate by the matching of the rotating shafts 3 and the first belts 41, the poking blocks 44 are driven to move by the movement of the spring rods 43 under the action of centrifugal force, so that the stress rods 46 drive the sliding blocks 45 to slide, the first magnetic poles 47 attract the second magnetic poles 53, the magnetic mechanism 5 comprises magnetic head columns 51, return springs 52 and the second magnetic poles 53, the return springs 52 are fixedly connected to the tops of the magnetic head columns 51, one ends of the return springs 52 far away from the magnetic head columns 51 are fixedly connected with the second magnetic poles 53, the magnetic head pole 51 is rotatably connected inside the machine body shell 1, the magnetic head pole 51 is not in contact with the turntable 42, the second magnetic pole 53 is positioned at the bottom of the first magnetic poles 47, the magnetism of the first magnetic pole 47 is opposite to that of the second magnetic pole 53, and the return spring 52 generates an upward acting force on the magnetic head pole 51 by matching the first magnetic pole 47 with the second magnetic pole 53.
Example two:
referring to fig. 1 and 3, an auxiliary device for preventing magnetic head wear based on disk rotation comprises a body case 1, a disk body 2 is rotatably connected inside the body case 1, a rotating shaft 3 is fixedly connected inside the disk body 2, a stretching mechanism 4 is connected inside the body case 1 in a transmission manner, a magnetic mechanism 5 is elastically connected inside the body case 1, a cleaning mechanism 6 is connected to the periphery of the rotating shaft 3 in a transmission manner, the cleaning mechanism 6 comprises a second belt 61, a rotating wheel 62, a surface groove 63, a rotating frame 64, an extrusion column 65, a pushing block 66, an air bag 67 and a cleaning wheel 68, the rotating wheel 62 is connected to one end of the second belt 61 far away from the rotating shaft 3 in a transmission manner, the surface groove 63 is formed inside the rotating wheel 62, the rotating frame 64 is fixedly connected to the concentric front end of the rotating wheel 62, the extrusion column 65 is slidably connected to the inside of the rotating frame 64, and the pushing block 66 is fixedly connected to one end of the extrusion column 65 far away from the rotating frame 64, the inside fixed mounting of organism housing 1 has gasbag 67, the one end fixedly connected with cleaning wheel 68 that gasbag 67 is close to disk body 2, No. two belts 61 is the same with the quantity of runner 62, the symmetric distribution is in the inside of organism housing 1, the inside sliding connection of face slot 63 has the movable block, and movable block sliding connection is in the inside of rotating frame 64, gasbag 67 is the same with the quantity of cleaning wheel 68, the symmetric distribution is in the inside of organism housing 1, use through the cooperation of No. two belts 61 with runner 62, make rotating frame 64 rotate, use through the cooperation of rotating frame 64 with the extrusion post 65, it produces intermittent type nature's extrusion to gasbag 67 to drive promotion piece 66.
Example three:
referring to fig. 1-4, an auxiliary device for preventing magnetic head wear based on disk rotation comprises a body case 1, a disk body 2 is rotatably connected inside the body case 1, a rotating shaft 3 is fixedly connected inside the disk body 2, a stretching mechanism 4 is connected inside the body case 1 in a transmission manner, a magnetic mechanism 5 is elastically connected inside the body case 1, a cleaning mechanism 6 is connected to the periphery of the rotating shaft 3 in a transmission manner, the stretching mechanism 4 comprises a first belt 41, a turntable 42, a spring rod 43, a shifting block 44, a sliding block 45, a stress rod 46 and a first magnetic pole 47, the turntable 42 is connected to one end of the first belt 41 far from the rotating shaft 3 in a transmission manner, the spring rod 43 is fixedly connected to the communication front end of the turntable 42, the shifting block 44 is fixedly connected to one end of the spring rod 43 far from the axis of the turntable 42, the sliding block 45 is elastically connected inside the body case 1, the stress rod 46 is rotatably connected to one end of the sliding block 45 near the turntable 42, one side fixedly connected with magnetic pole 47 that slider 45 is close to each other, belt 41 is the same with the quantity of carousel 42, symmetric distribution is in the inside of engine body shell 1, the quantity of spring bar 43 is the same with stirring piece 44, evenly distributed is at the concentric front end of carousel 42, and stir piece 44 and atress pole 46 are in the coplanar, slider 45 sliding connection is in the inside spout of engine body shell 1, through the outage of computer host computer, at this moment disk body 2 still is in rotatory state, it rotates to drive pivot 3 through the rotation of disk body 2, use the drive carousel 42 through the cooperation of pivot 3 with belt 41 and rotate, it rotates to drive the spring bar 43 of its concentric front end through the rotation of carousel 42, thereby make spring bar 43 remove under the effect of centrifugal force, it removes to drive stirring piece 44 through the removal of spring bar 43, use the cooperation of stirring piece 44 with atress pole 46 and drive slider 45 to slide in the inside spout of engine body shell 1 through stirring piece 44 and atress pole 46 The sliding of the slider 45 drives the first magnetic pole 47 to be close to the second magnetic pole 53, and the first magnetic pole 47 and the second magnetic pole 53 are used in a matched manner, so that the reset spring 52 generates an upward acting force on the magnetic head column 51 to prevent the magnetic head column 51 from contacting with the magnetic disk body 2, and when the magnetic disk body 2 stops rotating, the magnetic head column 51 does not receive the acting force any more, thereby achieving the effect of preventing the magnetic head from being worn.
The first magnetic poles 47 are symmetrically distributed in the body shell 1, the magnetic mechanism 5 comprises a magnetic head column 51, a reset spring 52 and a second magnetic pole 53, the top of the magnetic head column 51 is fixedly connected with the reset spring 52, one end of the reset spring 52 far away from the magnetic head column 51 is fixedly connected with the second magnetic pole 53, the magnetic head column 51 is rotatably connected in the body shell 1, the magnetic head column 51 is not contacted with the turntable 42, the second magnetic pole 53 is positioned at the bottom of the two first magnetic poles 47, the first magnetic pole 47 is opposite to the second magnetic pole 53 in magnetism, the cleaning mechanism 6 comprises a second belt 61, a rotating wheel 62, a surface groove 63, a rotating frame 64, an extrusion column 65, a pushing block 66, an air bag 67 and a cleaning wheel 68, one end of the second belt 61 far away from the rotating shaft 3 is in transmission connection with the rotating wheel 62, the surface groove 63 is arranged in the rotating wheel 62, the concentric front end of the rotating wheel 62 is fixedly connected with the rotating frame 64, the extrusion column 65 is connected in a sliding manner in the rotating frame 64, the end of the extrusion column 65 far away from the rotating frame 64 is fixedly connected with a pushing block 66, the interior of the machine body shell 1 is fixedly provided with an air bag 67, one end of the air bag 67 close to the magnetic disk body 2 is fixedly connected with a cleaning wheel 68, the number of the second belt 61 is the same as that of the rotating wheel 62 and is symmetrically distributed in the machine body shell 1, the interior of the surface groove 63 is slidably connected with a moving block which is slidably connected in the interior of the rotating frame 64, the number of the air bag 67 is the same as that of the cleaning wheel 68 and is symmetrically distributed in the machine body shell 1, the rotating shaft 3 in the interior of the machine body shell 1 is driven to rotate by the rotation of the magnetic disk body 2 in the machine body shell 1, the second belt 61 is driven to rotate by the rotation of the rotating shaft 3, the moving block in the interior surface groove 63 of the rotating wheel 62 drives the rotating frame 64 to rotate by the cooperation of the rotating frame 64 and the extrusion column 65, make extrusion post 65 drive and promote the production extrusion of piece 66 to gasbag 67 intermittent type nature, extrude gasbag 67 through promoting piece 66 to thereby make cleaning wheel 68 intermittent type nature be close to the disk body 2 and clear up, both can clear up the dust, prevent again that cleaning wheel 68 from contacting with the disk for a long time, reached the effect that prevents to influence data reading.
When the computer host is in use, the computer host is powered off, the magnetic disk body 2 is still in a rotating state, the rotating shaft 3 is driven to rotate by the rotation of the magnetic disk body 2, the rotating disk 42 is driven to rotate by the matching of the rotating shaft 3 and the first belt 41, the spring rod 43 at the concentric front end of the rotating disk 42 is driven to rotate by the rotation of the rotating disk 42, so that the spring rod 43 moves under the action of centrifugal force, the shifting block 44 is driven to move by the movement of the spring rod 43, the sliding block 45 is driven to slide in the sliding groove in the body shell 1 by the matching of the shifting block 44 and the stress rod 46, the first magnetic pole 47 is driven to be close to the second magnetic pole 53 by the sliding of the sliding block 45, the reset spring 52 generates an upward acting force on the magnetic head column 51 by the matching of the first magnetic pole 47 and the second magnetic pole 53, and the magnetic head column 51 is prevented from being contacted with the magnetic disk body 2, when the magnetic disk body 2 stops rotating, the magnetic head column 51 will not receive the acting force any more, the effect of preventing the magnetic head from being worn is achieved, the rotating shaft 3 inside the magnetic disk body 2 is driven to rotate through the rotation of the magnetic disk body 2 inside the machine body shell 1, the second belt 61 is driven to rotate through the rotation of the rotating shaft 3, the second belt 61 is used in cooperation with the rotating wheel 62, the moving block in the groove 63 inside the rotating wheel 62 drives the rotating frame 64 to rotate, the rotating frame 64 is used in cooperation with the extrusion column 65, the extrusion column 65 drives the pushing block 66 to intermittently extrude the air bag 67, the air bag 67 is extruded through the pushing block 66, and the cleaning wheel 68 is intermittently close to the magnetic disk body 2 to be cleaned, so that the dust can be cleaned, the cleaning wheel 68 is prevented from being in contact with the magnetic disk for a long time, and the effect of preventing the influence on the data reading is achieved.
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. An auxiliary device for preventing magnetic head abrasion based on disk rotation, comprising a body case (1), characterized in that: the inside of engine body shell (1) rotates and is connected with disk body (2), the inside fixedly connected with pivot (3) of disk body (2), the internal drive of engine body shell (1) is connected with tension mechanism (4), the inside elastic connection of engine body shell (1) has magnetic mechanism (5), the peripheral transmission of pivot (3) is connected with clean mechanism (6).
2. An auxiliary device for preventing a head from being worn based on rotation of a magnetic disk according to claim 1, wherein: tensile mechanism (4) include belt (41), carousel (42), spring beam (43), dial piece (44), slider (45), atress pole (46), magnetic pole (47) No. one, the one end transmission that pivot (3) were kept away from in belt (41) is connected with carousel (42), the communication front end fixedly connected with spring beam (43) of carousel (42), one end fixedly connected with dial piece (44) of carousel (42) axle center are kept away from in spring beam (43), the inside elastic connection of engine body shell (1) has slider (45), the one end rotation that slider (45) are close to carousel (42) is connected with atress pole (46), one side fixedly connected with magnetic pole (47) that slider (45) are close to each other.
3. An auxiliary device for preventing a head from being worn based on rotation of a magnetic disk according to claim 2, wherein: the belt (41) is the same with the quantity of carousel (42), and the symmetric distribution is in the inside of body shell (1), spring beam (43) is the same with the quantity of stirring piece (44), and evenly distributed is at the concentric front end of carousel (42), and stirs piece (44) and atress pole (46) and be in the coplanar, slider (45) sliding connection is in the inside spout of body shell (1), a magnetic pole (47) symmetric distribution is in the inside of body shell (1).
4. An auxiliary device for preventing a head from being worn based on rotation of a magnetic disk according to claim 1, wherein: magnetic mechanism (5) include head post (51), reset spring (52), No. two magnetic poles (53), the top fixedly connected with reset spring (52) of head post (51), one end fixedly connected with No. two magnetic poles (53) of head post (51) are kept away from in reset spring (52).
5. An auxiliary device for preventing a head from being worn based on rotation of a magnetic disk according to claim 2 or 4, wherein: the magnetic head column (51) is rotatably connected inside the machine body shell (1), the magnetic head column (51) is not in contact with the turntable (42), the second magnetic pole (53) is positioned at the bottom of the first magnetic poles (47), and the first magnetic pole (47) and the second magnetic pole (53) are opposite in magnetism.
6. An auxiliary device for preventing a head from being worn based on rotation of a magnetic disk according to claim 1, wherein: clean mechanism (6) are including No. two belt (61), runner (62), face slot (63), swivel frame (64), extrusion post (65), promote piece (66), gasbag (67), clean wheel (68), the one end transmission of pivot (3) is kept away from in No. two belt (61) is connected with runner (62), face slot (63) is seted up to the inside of runner (62), the concentric front end fixedly connected with swivel frame (64) of runner (62), the inside sliding connection of swivel frame (64) has extrusion post (65), the one end fixedly connected with who keeps away from swivel frame (64) in extrusion post (65) promotes piece (66), the inside fixed mounting of engine body shell (1) has gasbag (67), gasbag (67) are close to the clean wheel (68) of the one end fixedly connected with of magnetic disk body (2).
7. An auxiliary device for preventing a head from being worn based on a rotation of a magnetic disk according to claim 6, wherein: the number of the second belts (61) is the same as that of the rotating wheels (62), the second belts and the rotating wheels are symmetrically distributed in the machine body shell (1), the surface grooves (63) are connected with moving blocks in a sliding mode, the moving blocks are connected in the rotating frame (64) in a sliding mode, the number of the air bags (67) is the same as that of the cleaning wheels (68), and the air bags and the cleaning wheels are symmetrically distributed in the machine body shell (1).
CN202110623514.2A 2021-06-04 2021-06-04 Auxiliary device for preventing magnetic head from being abraded based on rotation of magnetic disk Withdrawn CN113470700A (en)

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JPH11353632A (en) * 1998-06-09 1999-12-24 Nec Corp Magnetic disk device
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