CN1211805C - Broadband roller balancer of optical driver - Google Patents

Broadband roller balancer of optical driver Download PDF

Info

Publication number
CN1211805C
CN1211805C CN 00136984 CN00136984A CN1211805C CN 1211805 C CN1211805 C CN 1211805C CN 00136984 CN00136984 CN 00136984 CN 00136984 A CN00136984 A CN 00136984A CN 1211805 C CN1211805 C CN 1211805C
Authority
CN
China
Prior art keywords
magnetic conduction
roller
magnetic
magnet
broadband
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
CN 00136984
Other languages
Chinese (zh)
Other versions
CN1360313A (en
Inventor
郭立华
曹以正
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.)
Lite On IT Corp
Original Assignee
Lite On IT Corp
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 Lite On IT Corp filed Critical Lite On IT Corp
Priority to CN 00136984 priority Critical patent/CN1211805C/en
Publication of CN1360313A publication Critical patent/CN1360313A/en
Application granted granted Critical
Publication of CN1211805C publication Critical patent/CN1211805C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Rolls And Other Rotary Bodies (AREA)

Abstract

The present invention relates to a roller balancing device with wide band for an optical driver, which aims to provide a balancing device as a computer component with the advantages of wide range of rotation speed and good operation effect at slow rotation speed. The roller balancing device comprises a main body arranged on a rotary body, a plurality of magnetic conducting rollers which are made of magnetic conductive materials and are arranged in the main body, magnetic conducting magnets surrounded by the magnetic conducting rollers, and a rolling stop units for surrounding the magnetic conducting rollers.

Description

Broadband roller balancer of optical driver
The invention belongs to the machine element balance device, particularly a kind of broadband roller balancer of optical driver.
Traditional CD-ROM driver roller balance device (Ball Balancer) ties up to and lays particular stress on that the heart (imbalance) rotary body (rotor) is gone up the concentric track of additional one or more and rotating shaft and roller free to rotate on (Race) on track.After the rotating speed of rotary body was higher than a certain critical rotary speed, additional roller can be rolled into the position of balance automatically along with laying particular stress on how much the reaching the orientation of the heart, thereby reaches the purpose that reduces carrier vibration and noise.Yet, the balance device that this is traditional, when the rotating speed of rotary body is less than or equal to this critical velocity (critical rotation speed), not only can't balance lay particular stress on the heart, the orientation that can be rolled into center of gravity because of roller adds the vibratory output of larger vector on the contrary, so very wide or in some ranges of speeds in the application scenario of slow-speed of revolution running, just have no usage.
The purpose of this invention is to provide a kind of, broadband roller balancer of optical driver that slow-speed of revolution operational effect good wide applicable to the range of speeds.
The present invention includes body, be arranged at intrinsic a plurality of magnetic conduction rollers of making by permeability magnetic material, the magnet that centers on for a plurality of magnetic conduction rollers and only roll the unit around a plurality of magnetic conduction rollers; Body is arranged with accommodation space, and is located on the turning axle of CD-ROM driver rotary body.
Wherein:
Magnet is provided with the magnetic conduction disk of being made by permeability magnetic material; Magnetic conduction disk outer rim is concentric with the turning axle of rotary body.
Only rolling the unit is formed in one in the wavy face that only rolls of body inner peripheral surface.
Because the magnet that the present invention includes body, be arranged at intrinsic a plurality of magnetic conduction rollers of being made by permeability magnetic material, centers on for a plurality of magnetic conduction rollers reaches and only rolls the unit around a plurality of magnetic conduction rollers; Body is arranged with accommodation space, and is located on the turning axle of CD-ROM driver rotary body.When rotary body is static,, make the magnetic conduction roller be attracted to the magnet outer rim by the magnetic circuit of magnet; When rotary body begins with after the fixed rotating speed rotation, the magnetic conduction roller is subjected to lay particular stress on vibration force that the heart causes and radial direction that magnet outer rim tangential direction comes from rotary body simultaneously and points to the suction in the center of circle from magnet and come from the centrifugal force away from the center of circle that the rotary body rotation caused and make a concerted effort.When pointing to the suction in the center of circle and come from the centrifugal force away from the center of circle that the rotary body rotation caused, magnet makes a concerted effort.When centrifugal force equaled magnetic force, the magnetic conduction roller can break away from magnet, and utilized the centrifugal force after the magnetic conduction roller breaks away from magnet, made only to roll unit local deformation the magnetic conduction roller is encased, and stoped the magnetic conduction roller to roll only rolling on the unit inner edge.When rotary body stopped the rotation, the centrifugal force that acts on this magnetic conduction roller and then disappeared, and then only rolled the magnet outer rim reinstatement attitude that elastic force that the unit produces because of distortion can push back the magnetic conduction roller tool magnetic force.Not only wide applicable to the range of speeds, and slow-speed of revolution operational effect is good, thus reach purpose of the present invention.
Fig. 1, for structural representation cut-open view of the present invention.
Fig. 2, for structural representation vertical view of the present invention.
Fig. 3, for magnetic figure of the present invention.
Fig. 4, be magnetic conduction roller action synoptic diagram among the present invention.
Fig. 5, for magnetic force index variation coordinate diagram of the present invention.
Fig. 6, be magnetic conduction roller of the present invention action synoptic diagram (when centrifugal force equals magnetic force).
Fig. 7, for magnetic force index variation coordinate diagram of the present invention (when centrifugal force equals magnetic force).
Fig. 8, be structural representation vertical view of the present invention (only roll unit for and the integrated wavy face that only rolls of body).
Below in conjunction with accompanying drawing the present invention is further elaborated.
As shown in Figure 1 and Figure 2, the present invention includes body 12, a plurality of magnetic conduction roller 14, lid 15, magnet 16, magnetic conduction disk 17 and only roll unit 18.
Body 12 is located on the turning axle 11 of CD-ROM driver rotary body 10, and is the center of circle with turning axle 11, is arranged with toroidal cavity shape accommodation space 13 on it.
Magnetic conduction roller 14 is the sphere made from permeability magnetic material, the rolling body of cylindrical or any rolling shape.
The disk body of magnetic conduction disk 17 for making with permeability magnetic material.
Only roll the deformable circular elastic body of unit 18 for making with the rubber elastomeric material, its external diameter is corresponding with body 12 accommodation spaces 13 internal diameters.
Magnetic conduction disk 17 is mounted on the magnet 16, and the center in magnet 16 suitably is fixed in accommodation space 13, and its outer rim is concentric with the turning axle 11 of rotary body 10; More than one magnetic conduction roller 14 is arranged in body 12 accommodation spaces 13, and is positioned at magnet 16 and magnetic conduction disk 17 outsides, around magnet 16 and magnetic conduction disk 17; Lid 15 is arranged in the openend of body 12 accommodation spaces 13, with sealing accommodation space 13; Only roll unit 18 and place in body 12 accommodation spaces 13, and be surrounded on a plurality of magnetic conduction rollers 14 peripheries, only roll element 18 and fix with its outer peripheral face and accommodation space 13 inner peripheral surfaces by mode cemented or that fix.
When rotary body 10 was static, as shown in Figure 3, Figure 4, the magnetic circuit by magnet 16 and magnetic conduction disk 17 are constituted made magnetic conduction roller 14 be attracted to magnetic conduction disk 17 or magnet 16 outer rims.
After rotary body 10 beginnings were with the fixed rotating speed rotation, magnetic conduction roller 14 suffered power comprised:
1) power of magnetic conduction disk 17 outer rim tangential directions
Come from the vibration that the heart causes of laying particular stress on of rotary body 10, when rotating speed<critical velocity, this power can be ordered about magnetic conduction roller 14 to the orientation that lays particular stress on the heart, and vibratory output is strengthened.When rotating speed>critical velocity, this power can be ordered about magnetic conduction roller 14 and be rolled to the other side who lays particular stress on heart orientation, reaches the effect that balance lays particular stress on the heart, and vibratory output is reduced.
2) power of the radial direction of magnetic conduction disk 17
1/ comes from the suction that magnet 16 points to the center of circle, and its size is:
F magnet = F 1 e - x a
Wherein F is the magnetic force of magnetic conduction roller 14 when leaning against magnetic conduction disk 17 outer rims.As Fig. 4, shown in Figure 5, when magnetic conduction roller 14 break away from magnetic conduction disks 17 and and when existing for the gap of X between the magnetic conduction disk 17, F MagmelCan cause exponential taper.
2/ comes from the centrifugal force away from the center of circle that rotary body 10 rotations are caused, and its size is:
F centrifgal=mrω 2
Wherein
R is the radius of turn at place, magnetic conduction roller 14 center
ω is a rotational speed
M is the quality of magnetic conduction roller 14
When magnetic conduction roller 14 leans against magnetic conduction disk 17 outer rims, promptly between magnetic conduction disk 17 and the magnetic conduction roller 14 during the X=0 of crack, suppose that this moment, the radius of turn at magnetic conduction roller 14 place, center was r 0The time, then
F centrifgal=mr 0ω 2
r=r 0
As Fig. 6, shown in Figure 7, when centrifugal force equaled magnetic force, magnetic conduction roller 14 can break away from magnetic conduction disks 17, then this moment rotational speed
ω 1 = F 1 m r 0
And ω 1Second cosmic velocity for magnetic conduction roller 14.Design F 1, m, r 0Make ω 1Greater than critical rotary speed ω critical, after promptly magnetic conduction roller 14 can be rolled to the equilibrium position, just can break away from magnetic conduction disk 17 because of the increase gradually of rotating speed.
Only roll unit 18 for deformable elastomer, utilize the centrifugal force after magnetic conduction roller 14 breaks away from magnetic conduction disk 17, make and only roll unit 18 local deformations magnetic conduction roller 14 is encased, and stop magnetic conduction roller 14 to roll on unit 18 inner edges only rolling, so magnetic conduction roller 14 is maintained at its previous equilibrium position.
As shown in Figure 7, suppose that magnetic conduction roller 14 breaks away from magnetic conduction disks 17 after, the radius of turn that is blocked at the place, magnetic conduction roller 14 center of only rolling unit 18 is r 1, this moment X=X 1Even, ω<ω Critical, as long as
F magnet<F centrifgal r=r0
F ElasticTill roll the screen resilience of unit 18, magnetic conduction roller 14 can maintain equilibrium state, rotating speed can be extended downward be lower than ω CriticalThe zone, thereby broken through the restriction of conventional balanced device, enlarged the application scenario.
When rotary body 10 stops the rotation, act on the F of this magnetic conduction roller 14 CentrifgalAnd then disappear, then only roll the F that the unit produces because of distortion Elastic Magnetic conduction roller 14 can be pushed back magnetic conduction disk 17 outer rims of tool magnetic force and reply the preceding state that activates.
As shown in Figure 8, the present invention also can be directly on body 12 one-body molded for be located at accommodation space 13 inner peripheral surfaces wavy only roll face 19 only roll unit 18 ', magnetic conduction roller 14 is hit in body 12 accommodation spaces 13 after week breaking away from magnetic conduction disk 17, can not roll, thereby keep the previous equilibrium position of magnetic conduction roller 14 along week in the accommodation space 13.When rotary body 10 stopped the rotation, the magnetic line of force that produces by magnet 16 and magnetic conduction disk 17 sucked back magnetic conduction roller 14 to magnetic conduction disk 17 outer rims, replys the state before activating.

Claims (3)

1, a kind of broadband roller balancer of optical driver, it comprises a plurality of magnetic conduction rollers of being made by permeability magnetic material; It is characterized in that described a plurality of magnetic conduction roller is arranged in the body that is arranged with accommodation space; Body is located on the turning axle of CD-ROM driver rotary body; Be provided with the magnet that centers on for a plurality of magnetic conduction rollers and only roll the unit in body interior around a plurality of magnetic conduction rollers.
2, broadband roller balancer of optical driver according to claim 1 is characterized in that described magnet is provided with the magnetic conduction disk of being made by permeability magnetic material; Magnetic conduction disk outer rim is concentric with the turning axle of rotary body.
3, broadband roller balancer of optical driver according to claim 1 is characterized in that the described unit that only rolls is formed in one in the wavy face that only rolls of body inner peripheral surface.
CN 00136984 2000-12-22 2000-12-22 Broadband roller balancer of optical driver Expired - Fee Related CN1211805C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 00136984 CN1211805C (en) 2000-12-22 2000-12-22 Broadband roller balancer of optical driver

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 00136984 CN1211805C (en) 2000-12-22 2000-12-22 Broadband roller balancer of optical driver

Publications (2)

Publication Number Publication Date
CN1360313A CN1360313A (en) 2002-07-24
CN1211805C true CN1211805C (en) 2005-07-20

Family

ID=4597631

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 00136984 Expired - Fee Related CN1211805C (en) 2000-12-22 2000-12-22 Broadband roller balancer of optical driver

Country Status (1)

Country Link
CN (1) CN1211805C (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101840778B (en) * 2010-04-30 2012-05-30 天津市天发重型水电设备制造有限公司 Counterweight balancing device for flat coil winding machine
FR3027086B1 (en) * 2014-10-14 2017-03-31 Valeo Embrayages TORSION OSCILLATION DAMPING DEVICE

Also Published As

Publication number Publication date
CN1360313A (en) 2002-07-24

Similar Documents

Publication Publication Date Title
JP3462500B2 (en) Weight compensation method and apparatus
US5460017A (en) Weight compensating apparatus
CN103104539B (en) Vacuum pump
US11319991B2 (en) Bearingless hub assembly with electromagnetic drive system and associated methods
CN1211805C (en) Broadband roller balancer of optical driver
JP3570204B2 (en) Inertia damper
US5816115A (en) Weight compensating method and apparatus
US6212973B1 (en) Self-compensating dynamic balancer
KR20040029700A (en) Air foil bearing having a viscoelastic foil
US3606802A (en) Vibration-damped rotatable cylindrical member
JP2001218416A (en) Automatic equalizer
JP3259560B2 (en) Ball bearing
CN215110084U (en) Movable elastic sheet composite air bearing
CN215665857U (en) Conveying device for vacuum sputtering
CN1664379A (en) Fan motor suspension
JPH03272317A (en) Gas bearing structure
US20100127440A1 (en) Damping Device Capable of Decreasing Torsional Vibration
JPH08511083A (en) Magnetically compensated vibrating shaft assembly
RU1809342C (en) Balancer device
JP3723669B2 (en) Rotating balancer and related technologies
Sung et al. Effects of Nonlinear Damping Washers on the Automatic Ball Balancer for Optical Disk Drives
CN203670455U (en) Negative clearance bearing
KR100292344B1 (en) Self-compensation dynamic balancer
JPS63289318A (en) Radial ball bearing for protection in magnetic bearing device
SU1551434A1 (en) Vibration exciter

Legal Events

Date Code Title Description
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C06 Publication
PB01 Publication
C14 Grant of patent or utility model
GR01 Patent grant
C19 Lapse of patent right due to non-payment of the annual fee
CF01 Termination of patent right due to non-payment of annual fee