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US3221389A - Textile spindle - Google Patents

Textile spindle
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US3221389A
US3221389AUS398271AUS39827164AUS3221389AUS 3221389 AUS3221389 AUS 3221389AUS 398271 AUS398271 AUS 398271AUS 39827164 AUS39827164 AUS 39827164AUS 3221389 AUS3221389 AUS 3221389A
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tube
rod
annular
rotatable
housing
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US398271A
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Cowell John
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Industrial Tectonics Inc
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Industrial Tectonics Inc
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Dec. 7, 1965 J. COWELL 3,221,389
TEXTILE SPINDLE Filed Sept. 22, 1964 FlG.l
INVENTOR. JOHN COWELL BY W ATT RNEY United States Patent 3,221,389 TEXTILE SPINDLE John Cowell, East Meadow, N.Y., assignor to Industrial Tectonics, Inc., Ann Arbor, Mich., a corporation of Michigan Filed Sept. 22, 1964, Ser. No. 398,271 Claims. (Cl. 29-116) This invention relates to rotary devices such as are employed as guide rolls for filaments or thread composed of nylon, cotton or other textile material.
In the manufacture of such thread, it is often necessary to provide such guide rolls whose rotatable surfaces are adapted to be driven by the thread at high speeds and engaged therewith without risk of contamination. However, it has been found that conventional guide rolls are ill-adapted for these purposes because they require substantial lubrication which, while permitting rotation of the guide rolls, also raises the possibility that the lubricant employed may leak from its intended place of lubrication and contaminate the thread engaged with the guide rolls. Moreover, even where a high viscosity lubricant (such as grease) be used so as to avoid such leakage and contamination, it has been found that the frictional torque on the guide rolls tends toincrease and thereby produce excessive tension on the thread.
Beyond this, at very high speeds of rotation, conventional guide rolls may become unstable and inoperative by reason of damage resulting from such instability.
The present invention solves these difficulties.
Thus, an object of the present invention is to provide an improved guide roll of the character described which requires no lubrication and which remains stable throughout a great range of operative speeds.
Another object of the invention is to provide such a guide roll which presents no risk of contamination to any thread engaged therewith.
Another object of the invention is to provide a guide roll which minimizes the likelihood of imparting a static electrical charge to any thread with which it is used.
Another object of the invention is to provide an improved guide roll which is eaisly installed for operative use and which requires little or no maintenance.
Another object of the invention is to provide an improved guide roll which undergoes little or no wear during use and which operates in a substantially frictionless manner.
Another object of the invention is to provide an improved guide roll which is of simple, economical design and which is of sturdy construction.
In the drawing:
FIGURE 1 is a cross-sectional view of one embodiment of the invention;
FIGURE 2 is a cross-sectional view taken about the line 2-2 of FIGURE 1 and depicting a thread in operative association with such embodiment of the invention;
FIGURE 3 is a cross-sectional view of a modified form of the invention;
FIGURE 4 is a cross-sectional view taken about theline 44 of FIGURE 3.
Other objects and advantages of the invention will be apparent from the following detailed description of one embodiment thereof, as read in connection with the accompanying drawing, submitted for purposes of illustration only and not intended to define the scope of the invention, reference being had for that purpose to the subjoined claims.
As shown in the accompanying drawing, FIGURE 1 discloses a preferred embodiment of the invention. As seen in this figure, the said embodiment of the invention comprises a fixed shaft or rod which may be mounted 3,221,389 Patented Dec. 7, 1965 as, for example, by frictional engagement with the surface of an aperture 11 provided in avertical member 12 such as a wall or other suitable supporting member.
Therod 10 is provided with a pair ofannnular bearings 13 which are preferably composed of graphite and which are suitably secured to therod 10, as by cementing at 14, for example. Thebearings 13 are also housed within a hollowrotatable tube 15 which is preferably composed of steel.
Acap 16 is frictionally engaged with one end of thetube 15, thecap 16 being removable, if desired, so as to permit access to the interior thereof; and, as is hereinafter set forth in detail, a thrust bearing assembly, generally designated by thenumeral 18, is provided in the vicinity of the other end of thetube 15.
An important feature of the invention resides in the provision of a plurality oflongitudinal grooves 19 upon the circumferential periphery of thebearings 13. As may be seen in FIGURE 2 of the drawing, thesegrooves 19 are spaced at equal angular intervals upon said circumferential periphery which is also of a smaller diameter than the internal diameter of thetube 15 so that, as hereinafter explained, the circumferential periphery of thebearings 13 will be in spaced relation with respect to the internal periphery of thetube 15 when the latter is rotated at high speeds.
With the foregoing arrangement, it will be seen that I have accomplished an air bearing whereby, upon rotation of thetube 15, a film of air will be interposed between the circumferential periphery of each of thebearings 13 and the internal periphery of thetube 15, said film serving as a lubricant and minimizing wear upon thebearings 13. Moreover, in accordance with principles known to those skilled in the art of bearings, the aforesaidlongitudinal grooves 19 will impart stability to thetube 15 even though it be operated at high speeds. For example, it has been found in practice that such a tube having an overall diameter of one-half inch may be rotated at 15,000 rpm. without such rotation being characterized -by instability.
It will also be seen that not only is such rotation substantially frictionless, but any tendency to create a charge of static electricity upon the external surface of thetube 15, by reason of the contact which would otherwise exist between thebearings 13 and thetube 15, will be eliminated by reason of the spacing between thebearings 13 and thetube 15. Hence, at such a speed, the movement of the tube will produce a minimum accumulation of static electricity on the thread orfilament 20.
As previously observed, one end of thetube 15 is provided with athrust bearing assembly 18. Here again, the arrangement is such that there is a spaced relation between all moving parts. Thus, as may be seen by reference to FIGURE 1 of the drawing, thetube 15 is engaged with an annular sleeve 21 provided with aradial flange 22. Anannular magnet 23 is seated upon the sleeve 21 andflange 22, and said magnet is disposed within a cup-shaped housing 24 engaged with therod 10. Thus, said sleeve 21,flange 22 andmagnet 23 constitute a magnetic rotor whose function will be more clearly understood from the following discussion.
Theinternal surface 25 of thebase 26 of thehousing 24 is provided with anannular groove 28 wherein a ring-shaped magnet 29 is aflixed, as by a suitable adhesive, for example. So, also, the mouth of thehousing 24 is threadedly engaged with acircular plate 30 whose inner surface is depressed to accommodate anannular magnet 31,such magnet 31 being suitably affixed to said inner surface as by an adhesive, for example.
In the case of each of themagnets 23, 29 and 30,
their magnetic poles are disposed upon their radial peripheries, i.e., upon their planar surfaces, the disposition of the poles is such that adjacent of such poles repel each other, thereby tending to maintain themagnet 23 in spaced relation with respect to theadjacent magnets 29, 30. The disposition of the poles of saidmagnets 23, 29, 30 is indicated by the letters N and S shown in FIGURE 1 and representing the North and South poles of such magnets.
By this arrangement, it will be seen that the very light or non-existent axial loads which might be imposed upon thetube 15, when acting as a guide or idler for conducting the filament orthread 20, will be efiectively met by the above. described magnetic thrust bearing. Here again, the spaced relations between the moving parts disposed upon thetube 15 and the parts engaged with thestationary housing 24, permit a substantially friction-free movement of thetube 15 and avoid the creation of a static electrical charge on thetube 15. In this regard, it will also be observed that theplate 30 is provided with acentral aperture 32 through which thetube 15 extends into thehousing 24, the edges of saidaperture 32 being in spaced relation with respect to thetube 15.
It will be noted that the foregoing arrangement entirely eliminates any necessity for using a grease or liquid lubricant therein. In this way, the risk of contaminating the filament orthread 20 with such a lubricant is avoided and, by the same token, any resistance to high speed rotation which the viscosity of such grease or liquid lubricant might impose, is also avoided.
FIGURES 3 and 4 of the drawing depict 'a modified form of the invention. As may be seen in these figures, this form of the invention comprises astationary rod 40 disposed within asleeve 41 upon whose external periphery is seated anannular magnet 42. Therod 40 is provided with an expandedportion 43, characterized by a plurality oflongitudinal grooves 44, and a reducedportion 45 which seats a secondannular magnet 46.
The expandedportion 43 of therod 40 is journalled within a pair ofannular bearings 48 which are frictionally engaged with theinternal periphery 49 of arotatable tube 50, saidbearings 48 being rotatable together with saidtube 50.
One end of thetube 50 is frictionally engaged with a cup-shaped housing 51 whosebase 52 seats anannular magnet 53 disposed in the vicinity of, but in spaced relation with respect to, themagnet 42. The other end of thetube 50 is frictionally engaged with acap 54 which also seats anannular magnet 55, in this instance, saidmagnet 55 being disposed in the vicinity of, but in spaced relation with respect to, themagnet 46.
Theaforesaid rod 40 andsleeve 41 extend through anaperture 56 provided in thehousing 51 and through theannular magnet 53, saidsleeve 41 being in spaced relation with respect to the surface of saidaperture 56 and with respect to saidmagnet 53.
In this arrangement of the invention, it will be seen that therod 40 may be suitably mounted, as in the case of the previously described form of the invention, and that therotatable bearings 48,tube 50,housing 51,cap 54, andmagnets 53, 55, will all be disposed in spaced relation with respect to the stationary parts of the device; and that their rotation will be lubricated by a film of air between therod 43 and the bearings 48 (said rod being circular in cross-section) and that the rotating members will be stabilized, as in the case of the previously described form of the invention, by thelongitudinal grooves 44.
Here also, the magnets are disposed so that adjacent said magnets will mutually repel each other, thereby functioning as a pair of thrust bearings disposed at opposite ends of therod 40.
Thus, this arrangement of the invention also permits high rotational speeds without the necessity of any potentially contaminating grease or liquid lubricant and, at the same time minimizes any tendency to accumulate a static electrical charge on thread or filament conducted thereby.
Hence, it will be seen that in each of the above-described instances, the objects of the invention are achieved in a simple, direct and ingenious manner.
The embodiments of the invention illustrated and described hereinabove have been selected for the purpose of clearly setting forth the principles involved. It will be apparent, however, that the present invention is susceptible to being modified in respect to details of construction, combination and arrangement of parts which may be resorted to without departure from the spirit and scope of the invention as claimed.
1 claim:
1. In a guide roll having a rotatable tube adapted to conduct a filament upon the external periphery of said rotatable tube, the combination comprising:
(a) a housing;
(b) a rod. engaged with the housing;
(c) said rod being provided with air bearing means;
((1) said air bearing means being journalled in said rotatable tube;
(e) said air bearing means being provided with a plurality of longitudinal grooves, whereby said tube is stabilized during rotation and is supported on a film of air between said bearing means and said tube;
(f) said tube being provided with magnetic thrust bearing means at at least one end thereof.
2. In a guide roll having a rotatable tube adapted to conduct a filament upon the external periphery of said rotatable tube, the combination comprising:
(a) a housing;
(b) a rod engaged with the housing;
(c) said rod being provided with at least one annular bearing;
((1) said annular bearing being disposed within said rotatable tube, there being a spaced region between said tube and said annular bearing during rotation of the tube;
(e) the circumferential periphery of said air bearing being provided with a plurality of longitudinal grooves, whereby said tube is stabilized during rotation;
(f) said tube being provided with magnetic thrust bearing means.
3. In a guide roll having a rotatable tube adapted to conduct a filament upon the external periphery of said rotatable tube, the combination comprising:
(a) a housing;
(b) a rod engaged with the housing;
(c) said rod being provided with at least one annular bearing composed of graphite;
(d) said annular bearing being disposed within said rotatable tube, there being a spaced region between said tube and said annular bearing during rotation of the tube;
(e) the circumferential periphery of said air bearing being provided with at least three longitudinal grooves spaced at equal angular intervals, whereby said tube is stabilized during rotation;
(i) said tube being provided with magnetic thrust bearing means.
4. In a guide roll having a rotatable tube adapted to conduct a filament upon the external periphery of said rotatable tube, the combination comprising:
(a) a housing;
(b) an annular sleeve engaged with one end of said rotatable tube;
(c) a first annular magnet seated upon said annular sleeve;
(d) a second annular magnet being seated Within said housing;
(e) a plate engaged with said housing,
(f) a third annular magnet being seated upon said plate;
(g) said first annular magnet being disposed in spaced relation With respect to said second and third annular magnets;
(h) said first annular magnet presenting repellent polarities to said second and. third annular magnets.
5. In a guide roll having a rotatable tube adapted to conduct a filament upon the external periphery of said rotatable tube, the combination comprising:
(a) a rod provided with a sleeve;
(b) said rod including an expanded portion provided with a plurality of longitudinal grooves spaced at equal angular intervals;
(c) said expanded portion being journalled in at least one rotatable bearing;
((1) said rotatable bearing being seated upon the internal periphery of said rotatable tube;
(e) said rotatable tube being disposed concentrically of said rod and engaged with a rotatable housing; (f) said rotatable bearing being in spaced relation with respect to said expanded portion during rotation of said bearing;
(g) an annular magnet provided at one end of the expanded portion of said rod;
(h) a second annular magnet being seated within said housing and disposed in spaced relation with respect to said annular magnet provided at one end of the expanded portion of said rod;
(i) a third annular magnet depending from the internal periphery of said rotatable tube;
(j) a fourth annular magnet provided at the other end of the expanded portion of the rod, said fourth annular magnet being adjacent to said third annular magnet and. disposed in spaced relation thereto;
(k) said annular magnets provided at the ends of the expanded portion of the rod presenting repellent polarities to said annular magnets disposed in spaced relation therewith.
References Cited by the Examiner UNITED STATES PATENTS 1,478,338 12/1923 Isom 3099 2,054,055 9/1936 Klahn 3089 2,436,939 3/1948 Schug.
2,670,146 2/1954 Heizer.
2,756,115 7/1956 Michel 308-9 2,877,066 3/ 1959 Baumeister.
2,928,960 3/1960 Macks.
3,104,917 9/ 1963 Schwartzwalder 308--9 WALTER A. SCHEEL, Primary Examiner.
BILLY J. WILHITE, Examiner.

Claims (1)

1. IN A GUIDE ROLL HAVING A ROTATABLE TUBE ADAPTED TO CONDUCT A FILAMENT UPON THE EXTERNAL PERIPHERY OF SAID ROTATABLE TUBE, THE COMBINATION COMPRISING: (A) A HOUSING; (B) A ROD ENGAGED WITH THE HOUSING; (C) SAID ROD BEING PROVIDED WITH AIR BEARING MEANS; (D) SAID AIR BEARING MEANS BEING JOURNALLED IN SAID ROTATABLE TUBE; (E) SAID AIR BEARING MEANS BEING PROVIDED WITH A
US398271A1964-09-221964-09-22Textile spindleExpired - LifetimeUS3221389A (en)

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Cited By (35)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3349462A (en)*1966-06-141967-10-31Lambert H MottAir roller
US3397439A (en)*1966-11-151968-08-20Ind Tectonics IncTextile guide roll
US3493274A (en)*1967-12-181970-02-03Little Inc AMagnetic support systems
US3493275A (en)*1967-12-181970-02-03Little Inc AVertical suspension system
US3610146A (en)*1967-05-251971-10-05Victory Kidder Printing MachinPrinting machine cylinder mount
US3611815A (en)*1969-12-241971-10-12Us NavyFrictionless gyroscope
US3614180A (en)*1969-03-191971-10-19Aga AbBearing arrangement for a rotor
US3974884A (en)*1973-07-021976-08-17Atlas Copco AktiebolagPower wrench with magnetic sleeves for variable torque output
US4065234A (en)*1975-12-221977-12-27Nihon Kagaku Kizai Kabushiki KaishaMagnetically driven rotary pumps
US4373673A (en)*1980-02-191983-02-15Toyota Jidosha Kogyo Kabushiki KaishaRotary type electrostatic spray painting device
US4651856A (en)*1985-09-231987-03-24Alfred SkrobischTorque limiting clutches controlled by permanent magnet means
US4674264A (en)*1986-02-031987-06-23Aluminum Company Of AmericaScrewcapping head with a hysteresis clutch
US4679390A (en)*1985-02-221987-07-14Wm. R. Stewart & Sons (Hacklemakers) LimitedOpening roller assemblies for open end spinning machines
US5021048A (en)*1989-08-041991-06-04Medtronic, Inc.Blood pump drive system
US5147186A (en)*1989-08-041992-09-15Bio Medicus, Inc.Blood pump drive system
US5180115A (en)*1989-04-271993-01-19E. I. Du Pont De Nemours And CompanyTorque-transmission device
EP0524580A1 (en)*1991-07-231993-01-27Koyo Seiko Co., Ltd.Roller supporting structure using a dynamic pressure
US5254070A (en)*1991-02-261993-10-19Barmag AgGodet
US5280208A (en)*1991-08-191994-01-18Sumitomo Electric Industries, Ltd.Composite bearing structure
US5324232A (en)*1991-11-221994-06-28Daniel Industries, Inc.Permanent-magnet front or control coupling to transfer measured values, forces or torques
US5370582A (en)*1993-03-241994-12-06Cornell Research Foundation, Inc.Guard for a rotating shaft
US5399141A (en)*1991-07-231995-03-21Koyo Seiko Co., Ltd.Roller supporting structure using a dynamic pressure
US5676600A (en)*1995-12-051997-10-14Cornell Research Foundation, Inc.Shaft guard with magnetic retainer
US5856719A (en)*1994-12-121999-01-05De Armas; JorgeElectromagnetic-coupled/levitated apparatus and method for rotating equipment
US6124658A (en)*1998-06-202000-09-26W. Schlafhorst Ag & Co.Bearing assembly for an open-end spinning machine
US6309304B1 (en)1999-10-222001-10-30Crane Co.Internal torque limiter for a parallel indexer
DE10244495A1 (en)*2002-09-252004-04-08Saurer Gmbh & Co. Kg Textile machine with a variety of jobs
US6784580B2 (en)*2000-03-282004-08-31Ibiden Co., Ltd.Motor and pressure generating apparatus incorporating the motor
US20050127126A1 (en)*2003-10-222005-06-16Dennis HansonWeb roller assist drive
US6926773B2 (en)*2000-04-062005-08-09Band-Zink GmbhCoating installation
WO2011160103A1 (en)*2010-06-192011-12-22Aronstam Peter SDouble -direction thrust magnetic bearing with repulsive magnets
US20120013215A1 (en)*2010-07-192012-01-19Aronstam Peter SMethod and apparatus for hybrid suspension system
US8242649B2 (en)2009-05-082012-08-14Fradella Richard BLow-cost minimal-loss flywheel battery
US20140030114A1 (en)*2010-10-252014-01-30Dresser-Rand CompanySystem and apparatus for reducing thrust forces acting on a compressor rotor
EP3235934A1 (en)*2016-04-192017-10-25Saurer Germany GmbH & Co. KGSpinning rotor shaft, bearing assembly for active magnetic bearings of such a spinning rotor shaft and spinning rotor drive

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US1478338A (en)*1921-09-061923-12-18Benjamin O IsomSpindle
US2054055A (en)*1933-04-251936-09-08Percival Johanna MargaretApparatus for minimizing friction and vibration of rotor elements
US2436939A (en)*1943-10-211948-03-02Hoover CoMagnetic coupling and bearing
US2670146A (en)*1952-12-241954-02-23Specialties Dev CorpWinding machine
US2756115A (en)*1952-10-091956-07-24Gen Motors CorpPneumatic bearing construction
US2877066A (en)*1956-09-251959-03-10IbmFluid pressurized sleeve bearing
US2928960A (en)*1957-12-041960-03-15Air Glide IncDynamoelectric device
US3104917A (en)*1961-05-171963-09-24Gen Motors CorpBearing

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US1478338A (en)*1921-09-061923-12-18Benjamin O IsomSpindle
US2054055A (en)*1933-04-251936-09-08Percival Johanna MargaretApparatus for minimizing friction and vibration of rotor elements
US2436939A (en)*1943-10-211948-03-02Hoover CoMagnetic coupling and bearing
US2756115A (en)*1952-10-091956-07-24Gen Motors CorpPneumatic bearing construction
US2670146A (en)*1952-12-241954-02-23Specialties Dev CorpWinding machine
US2877066A (en)*1956-09-251959-03-10IbmFluid pressurized sleeve bearing
US2928960A (en)*1957-12-041960-03-15Air Glide IncDynamoelectric device
US3104917A (en)*1961-05-171963-09-24Gen Motors CorpBearing

Cited By (45)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3349462A (en)*1966-06-141967-10-31Lambert H MottAir roller
US3397439A (en)*1966-11-151968-08-20Ind Tectonics IncTextile guide roll
US3610146A (en)*1967-05-251971-10-05Victory Kidder Printing MachinPrinting machine cylinder mount
US3493274A (en)*1967-12-181970-02-03Little Inc AMagnetic support systems
US3493275A (en)*1967-12-181970-02-03Little Inc AVertical suspension system
US3614180A (en)*1969-03-191971-10-19Aga AbBearing arrangement for a rotor
US3611815A (en)*1969-12-241971-10-12Us NavyFrictionless gyroscope
US3974884A (en)*1973-07-021976-08-17Atlas Copco AktiebolagPower wrench with magnetic sleeves for variable torque output
US4065234A (en)*1975-12-221977-12-27Nihon Kagaku Kizai Kabushiki KaishaMagnetically driven rotary pumps
US4373673A (en)*1980-02-191983-02-15Toyota Jidosha Kogyo Kabushiki KaishaRotary type electrostatic spray painting device
US4679390A (en)*1985-02-221987-07-14Wm. R. Stewart & Sons (Hacklemakers) LimitedOpening roller assemblies for open end spinning machines
US4651856A (en)*1985-09-231987-03-24Alfred SkrobischTorque limiting clutches controlled by permanent magnet means
US4674264A (en)*1986-02-031987-06-23Aluminum Company Of AmericaScrewcapping head with a hysteresis clutch
US5180115A (en)*1989-04-271993-01-19E. I. Du Pont De Nemours And CompanyTorque-transmission device
US5021048A (en)*1989-08-041991-06-04Medtronic, Inc.Blood pump drive system
US5147186A (en)*1989-08-041992-09-15Bio Medicus, Inc.Blood pump drive system
US5254070A (en)*1991-02-261993-10-19Barmag AgGodet
EP0524580A1 (en)*1991-07-231993-01-27Koyo Seiko Co., Ltd.Roller supporting structure using a dynamic pressure
US5399141A (en)*1991-07-231995-03-21Koyo Seiko Co., Ltd.Roller supporting structure using a dynamic pressure
US5280208A (en)*1991-08-191994-01-18Sumitomo Electric Industries, Ltd.Composite bearing structure
US5324232A (en)*1991-11-221994-06-28Daniel Industries, Inc.Permanent-magnet front or control coupling to transfer measured values, forces or torques
US5370582A (en)*1993-03-241994-12-06Cornell Research Foundation, Inc.Guard for a rotating shaft
US5856719A (en)*1994-12-121999-01-05De Armas; JorgeElectromagnetic-coupled/levitated apparatus and method for rotating equipment
US5676600A (en)*1995-12-051997-10-14Cornell Research Foundation, Inc.Shaft guard with magnetic retainer
US6124658A (en)*1998-06-202000-09-26W. Schlafhorst Ag & Co.Bearing assembly for an open-end spinning machine
US6309304B1 (en)1999-10-222001-10-30Crane Co.Internal torque limiter for a parallel indexer
US6328652B1 (en)1999-10-222001-12-11Crane Co.Internal torque limiter for a right angle indexer
US6784580B2 (en)*2000-03-282004-08-31Ibiden Co., Ltd.Motor and pressure generating apparatus incorporating the motor
US6926773B2 (en)*2000-04-062005-08-09Band-Zink GmbhCoating installation
KR100781441B1 (en)*2000-04-062007-12-03반트-찡크 게엠베하A coating device
DE10244495A1 (en)*2002-09-252004-04-08Saurer Gmbh & Co. Kg Textile machine with a variety of jobs
US20050127126A1 (en)*2003-10-222005-06-16Dennis HansonWeb roller assist drive
US7106011B2 (en)2003-10-222006-09-12Larson Burton, Inc.Web roller assist drive
US8242649B2 (en)2009-05-082012-08-14Fradella Richard BLow-cost minimal-loss flywheel battery
US8803392B2 (en)*2010-06-192014-08-12Peter S. AronstamAxial magnetic suspension
US20120038232A1 (en)*2010-06-192012-02-16Aronstam Peter SAxial magnetic suspension
GB2494836A (en)*2010-06-192013-03-20Peter S AronstamDouble-direction thrust magnetic bearing with repulsive magnets
WO2011160103A1 (en)*2010-06-192011-12-22Aronstam Peter SDouble -direction thrust magnetic bearing with repulsive magnets
US20120013215A1 (en)*2010-07-192012-01-19Aronstam Peter SMethod and apparatus for hybrid suspension system
US8941278B2 (en)*2010-07-192015-01-27Peter S. AronstamMethod and apparatus for hybrid suspension system
US20140030114A1 (en)*2010-10-252014-01-30Dresser-Rand CompanySystem and apparatus for reducing thrust forces acting on a compressor rotor
US9334866B2 (en)*2010-10-252016-05-10Dresser-Rand CompanySystem and apparatus for reducing thrust forces acting on a compressor rotor
EP3235934A1 (en)*2016-04-192017-10-25Saurer Germany GmbH & Co. KGSpinning rotor shaft, bearing assembly for active magnetic bearings of such a spinning rotor shaft and spinning rotor drive
CN107304785A (en)*2016-04-192017-10-31索若德国两合股份有限公司Spindle axle, the bearing arrangement for active magnetic bearing and rotor drive device
CN107304785B (en)*2016-04-192019-05-07索若德国两合股份有限公司 Rotor shaft, bearing arrangement for active magnetic support and rotor drive

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