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US3372443A - Magnetic fastening means - Google Patents

Magnetic fastening means
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US3372443A
US3372443AUS616559AUS61655967AUS3372443AUS 3372443 AUS3372443 AUS 3372443AUS 616559 AUS616559 AUS 616559AUS 61655967 AUS61655967 AUS 61655967AUS 3372443 AUS3372443 AUS 3372443A
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magnet
pin
fastening means
magnetic
armature
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US616559A
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Jr Domenic J Daddona
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Scovill Inc
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Scovill Inc
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D. J. DADDONA, JR
MAGNETIC FASTENING MEANS March 12, 1968 Filed Feb. 16, 1967 United States Patent 3,372,443 MAGNETIC FASTENING MEANS Domenic J. Daddona, Jr., Waterbury, Coum, assiguor to Scovill Manufacturing Company, Waterbury, Conn., a corporation of Connecticut Filed Feb. 16, 1967, Ser. No. 616,559 Claims. (Cl. 24-201) ABSTRACT OF THE DISCLOSURE Improvements are provided in magnetic fasteners of the type used in the place of buttons on garments. The stud pin has a reduced diameter end which fits into a recess in the pin of the socket element, thus providing metal to metal lead-in surfaces and avoiding the inside beveled corner on the ceramic ferrite magnet. The socket pin extends through its magnet resulting in greater resistance to lateral stress and a more nearly continuous metal core for increased magnetic attraction of the fastener parts. The holder shells engage loosely around the magnets to eliminate breakage during assembly.
This invention relates to magnetic fastening means especially useful for garments to be worn by handicapped people. It is an improvement over the fastener disclosed in the pending application of John H. Humiston, S.N. 535,430, filed Mar. 18, 1966, now Patent No. 3,324,521. A still earlier form of magnetic button fasteners is shown in the patent to Brett, 3,141,216.
While the fasteners shown and described in the Humiston application have many desirable features, certain problems have been encountered in their manufacture and use. The annular magnets are made from powdered or granular ceramic ferrite material by a process of com pression molding and sintering and it is diflicult to obtain a good beveled inner corner around the hole in the magnet, which provided the lead-in surface for the stud pin into the socket. Any burr around such lead-in surface would tend to catch against the stud pin and interfere with putting the fastener elements together. Another problem encountered was breakage of the magnets when the holder shell was being clamped around the magnet and armature assembly.
In the fastener of the present invention the magnets have square inner corners, the pin of the socket element is extended to provide a metal lead-in surface around a central recess in the socket pin, and the stud pin has a projecting end portion of reduced diameter to fit into such recess. Also the holder shells are made to engage loosely around their magnets to prevent breakage while permitting adequate manufacture tolerances.
Other improved results will be hereinafter referred to, or will be apparent from the description of a specific embodiment of the invention shown in the accompanying drawings.
In these drawings:
FIG. 1 is a central vertical section, with parts shown in full, of the male and female fastener elements when separated; and
FIG. 2 is a central vertical section of the same elements fastened together.
The male and female fastener elements generally indicated by thenumerals 5 and 6 respectively, are adapted for attachment to overlapping flaps of a garment or the like, by pronged rings (not shown) of the kind commonly used for attaching metal snap fasteners. Each female element has anannular magnet 7 of generally cylindrical shape with anaxial hole 8. Against theouter end face 9 of the magnet is mounted anarmature 10 of magnetic material such as soft iron or steel. Projecting axially from the disc-shaped base 11 of the armature into thehole 8 of the magnet, is asocket pin 12. This pin preferably extends substantially through thehole 8 to theinner face 13 of themagnet 7, and has a large open-ended recess 14 surrounded by acylindrical wall 15. A lead-insurface 16 around the inside upper edge of thewall 15 provides what may be called a flared mouth at the free end of the socket pin so as better to guide into place the stud pin to be described.
A holder shell for the magnet and its armature has aninner wall 17 with anouter edge 18 turned inwardly to bear against thebeveled surface 19 of the armature base 11 and aninner section 20 of thewall 17 is bent over the beveledouter corner 21 of the magnet. Preferably the innercurved section 20 of thewall 17 is not made to bear against the magnet tightly so that there is a certain amount of looseness to take care of reasonable tolerances without breakage of the magnet.
The construction involving the male fastener elements is generally the same as that which has already been described, and corresponding numerals are used where they apply. Thestud pin 22 of the male element, however, is much longer than thepin 12 and projects through and beyond itsmagnet 7. It has a reduced diameterfree end portion 23 to co-operate with the inclined lead-insurface 16 of the socket pin, so that when the parts are brought together with theopposed end surfaces 13 and 24 of the magnets of the female and male elements, respectively, somewhat close together, the stud pin will snap into place even though the elements are not in exact alignment. It will be understood that the magnets are so arranged that the ends which come into juxtaposition are of opposite polarities, as indicated by the letters N and S.
It will also be seen in FIG. 2 that the length of thepin 22 combined with the length ofpin 12 to the bottom ofrecess 14 is greater than the combined axial dimension or length of the two magnets so that the end ofpin 22 will abut thepin 12. There is left a clearance between the magnets in the closed position so as to insure the coming together of thepins 12 and 22. This is in the area of greatest magnetic fiux and produces the greatest holding power when the fastener elements are engaged. Also the cylindrical wall extending through the magnet of the female element and surrounding theend 23 of the stud pin provides a more nearly continuous core of magnetic material to allow better concentration of the magnetic flux. Thepin 22 projecting into the recess provides metal to metal contact to resist transverse stresses.
Joined to theinner wall 17 of the holder shell by the U-bend at theouter edge 18, is theouter wall 25 which flares outwardly and curls over around its outer edge to form theproug retaining channel 26. The extent in the axial direction of both the inner and outer walls is substantially the same.
To attach each of the fastener elements to a garment flap a prong ring as commonly used in snap fasteners pierces through the garment material and has its prongs clinched in thechannel 26.
What I claim is:
1. Magnetic fastening means with male and female fastener elements each of which has (a) a permanent magnet of generally cylindrical shape with an axial hole therethrough each having end surfaces of opposite polarity;
(b) an armature of magnetic material with a discshaped base bearing against an end face of the magnet;
(c) a holder shell engaging around the peripheries of said magnet and said base to hold them together;
(d) a stud pin on the armature of said male element projecting axially from the armature base through and a substantial distance beyond its magnet, said stud pin having a reduced diameter free end portion; and
(e) a socket pin on the armature of the female element projecting axially from the armature base and extending through at least the major portion of the hole in the magnet of the female element and having an open ended recess adapted to receive said reduced diameter free end portion of said stud pin when the fastener elements are brought together with the north pole end of one magnet facing the south pole end of the other magnet.
2. Magnetic fastening means as defined in claim 1 wherein said open ended recess has an outward flare at the free end of said socket pin to provide a lead-in surface for said stud pin.
3. Magnetic fastening means as defined in claim 2 the length of said socket pin is substantially the same as the axial length of the hole in the magnet of the female element.
References Cited UNITED STATES PATENTS 3,141,216 7/1964 Brett.
3,324,521 6/ 1968 Humiston.
FOREIGN PATENTS 1,111,697 3/1956 France.
BERNARD A. GELAK, Primary Examiner.
US616559A1967-02-161967-02-16Magnetic fastening meansExpired - LifetimeUS3372443A (en)

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US4265002A (en)*1979-08-131981-05-05Hosken James CMagnetic fastening means
JPS58170007A (en)*1982-03-311983-10-06Aoki Kinzoku Kogyo KkHanging and stopping tool utilizing magnet
US4453294A (en)*1979-10-291984-06-12Tamao MoritaEngageable article using permanent magnet
US4455719A (en)*1981-01-071984-06-26Tamao MoritaStopper using a magnet
USD274883S (en)1981-01-081984-07-31Application Art Laboratories Co., Ltd.Separable magnetic lock for a purse or similar article
US4480361A (en)*1981-12-161984-11-06Tamao MoritaClasp utilizing attractive force of permanent magnet
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US20040215214A1 (en)*2000-12-132004-10-28Samuel CrewsMethods, devices and systems for forming magnetic anastomoses
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US20050192603A1 (en)*2000-12-132005-09-01Medtronic Avecor Cardiovascular, Inc. A Minnesota CorporationExtravascular anastomotic components and methods for forming magnetic anastomoses
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US20050222592A1 (en)*2002-08-072005-10-06Jamy GannoeIntra-gastric fastening devices
US20050256533A1 (en)*2003-10-142005-11-17Roth Alex TSingle fold device for tissue fixation
US20050268433A1 (en)*2001-08-212005-12-08David SeidlerVirtual hinge
US20060106288A1 (en)*2004-11-172006-05-18Roth Alex TRemote tissue retraction device
US20060142787A1 (en)*2001-05-302006-06-29Gary WellerOvertube apparatus for insertion into a body
US20060151568A1 (en)*2004-03-092006-07-13Gary WellerDevices and methods for placement of partitions within a hollow body organ
US20060150304A1 (en)*2005-01-072006-07-13Bentz William GHeadgear and chin strap with magnetic fastener
US20060271076A1 (en)*2003-10-142006-11-30Gary WellerSystem for tissue approximation and fixation
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Cited By (191)

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Publication numberPriority datePublication dateAssigneeTitle
JPS4984406U (en)*1972-11-131974-07-22
US3919743A (en)*1973-11-051975-11-18Alvin H CutlerMagnetic fastener
US4021891A (en)*1974-04-181977-05-10Application Art Laboratories Co., Ltd.Magnetic lock closure
US4265002A (en)*1979-08-131981-05-05Hosken James CMagnetic fastening means
US4453294A (en)*1979-10-291984-06-12Tamao MoritaEngageable article using permanent magnet
US4455719A (en)*1981-01-071984-06-26Tamao MoritaStopper using a magnet
USD274883S (en)1981-01-081984-07-31Application Art Laboratories Co., Ltd.Separable magnetic lock for a purse or similar article
US4480361A (en)*1981-12-161984-11-06Tamao MoritaClasp utilizing attractive force of permanent magnet
JPS58170007A (en)*1982-03-311983-10-06Aoki Kinzoku Kogyo KkHanging and stopping tool utilizing magnet
US4991270A (en)*1988-01-271991-02-12Application Art Laboratories Co., Ltd.Magnetic lock closure
US5042116A (en)*1988-05-231991-08-27Metal Shearing S.N.C.Magnetic closing button for handbags and the like
US4941235A (en)*1988-10-141990-07-17Application Art Laboratories Co., Ltd.Magnetic lock closure device
EP0493075A1 (en)*1990-12-281992-07-01TARMO CO. Ltd.Magnetic fastener means
US5251362A (en)*1991-05-241993-10-12Randolph-Rand CorporationMagnetic latch
US5400479A (en)*1991-05-241995-03-28Randolph-Rand CorporationMagnetic latch
US5448806A (en)*1991-05-241995-09-12Riceman; Robert G.Magnetic latch
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US5558662A (en)*1994-04-201996-09-24Kimberly-Clark CorporationAbsorbent article having an attachment mechanism and a method of attaching
US5785698A (en)*1994-04-201998-07-28Kimberly-Clark CorporationPanty shield
US5690656A (en)*1995-06-271997-11-25Cook IncorporatedMethod and apparatus for creating abdominal visceral anastomoses
US5675874A (en)*1996-02-161997-10-14Chen; Chi-YuehMagnetic fastener
US5920966A (en)*1996-02-161999-07-13Chen; Chi-YuehMagnetic fastener
USD430483S (en)*1999-07-202000-09-05Mitzi InternationalMagnetic clasp
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US8518062B2 (en)2000-04-292013-08-27Medtronic, Inc.Devices and methods for forming magnetic anastomoses between vessels
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US20050021059A1 (en)*2000-04-292005-01-27Cole David H.Magnetic components for use in forming anastomoses, creating ports in vessels and closing openings in tissue
US7431727B2 (en)2000-04-292008-10-07Medtronic, Inc.Magnetic components for use in forming anastomoses, creating ports in vessels and closing openings in tissue
US20040034377A1 (en)*2000-04-292004-02-19Ventrica, Inc.Components, systems and methods for forming anastomoses using magnetism or other coupling means
US6719768B1 (en)*2000-04-292004-04-13Ventrica, Inc.Magnetic components for use in forming anastomoses, creating ports in vessels and closing openings in tissue
US20110184505A1 (en)*2000-04-292011-07-28Medtronic, Inc.Components, Systems and Methods for Forming Anastomoses Using Magnetism or Other Coupling Means
US7753928B2 (en)2000-11-032010-07-13Satiety, Inc.Method and device for use in minimally invasive placement of intragastric devices
US20040215214A1 (en)*2000-12-132004-10-28Samuel CrewsMethods, devices and systems for forming magnetic anastomoses
US7909837B2 (en)2000-12-132011-03-22Medtronic, Inc.Methods, devices and systems for forming magnetic anastomoses
US20050192603A1 (en)*2000-12-132005-09-01Medtronic Avecor Cardiovascular, Inc. A Minnesota CorporationExtravascular anastomotic components and methods for forming magnetic anastomoses
US20030221297A1 (en)*2001-01-192003-12-04Reiter Howard J.Adjustable magnetic snap fastener
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US8075577B2 (en)2001-05-302011-12-13Ethicon Endo-Surgery, Inc.Obesity treatment tools and methods
US7306614B2 (en)2001-05-302007-12-11Satiety, Inc.Overtube apparatus for insertion into a body
US20070213740A1 (en)*2001-05-302007-09-13Deem Mark EObesity treatment tools and methods
US20070213748A1 (en)*2001-05-302007-09-13Deem Mark EObesity treatment tools and methods
US8080022B2 (en)2001-05-302011-12-20Ethicon Endo-Surgery, Inc.Obesity treatment tools and methods
US7288099B2 (en)2001-05-302007-10-30Satiety, Inc.Obesity treatment tools and methods
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US8080025B2 (en)2001-05-302011-12-20Ethicon Endo-Surgery, Inc.Obesity treatment tools and methods
US8613749B2 (en)2001-05-302013-12-24Ethicon Endo-Surgery, Inc.Obesity treatment tools and methods
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US7909838B2 (en)2001-05-302011-03-22Satiety, Inc.Obesity treatment tools and methods
US8123765B2 (en)2001-05-302012-02-28Ethicon Endo-Surgery, Inc.Obesity treatment tools and methods
US20060142787A1 (en)*2001-05-302006-06-29Gary WellerOvertube apparatus for insertion into a body
US8137367B2 (en)2001-05-302012-03-20Ethicon Endo-Surgery, Inc.Obesity treatment tools and methods
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