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US3645161A - Solder tip setscrew - Google Patents

Solder tip setscrew
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Publication number
US3645161A
US3645161AUS877695AUS3645161DAUS3645161AUS 3645161 AUS3645161 AUS 3645161AUS 877695 AUS877695 AUS 877695AUS 3645161D AUS3645161D AUS 3645161DAUS 3645161 AUS3645161 AUS 3645161A
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United States
Prior art keywords
recess
setscrew
soft metal
tip
metal insert
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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 - Lifetime
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US877695A
Inventor
Lew Wesker
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.)
WELLS BENRUS CORP
PIC DESIGN CORP
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PIC DESIGN CORP
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Assigned to WELLS BENRUS CORPORATIONreassignmentWELLS BENRUS CORPORATIONCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: BENRUS CORPORATION
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Abstract

A setscrew comprising a rounded soft metal tip extending from a threaded shaft. The soft metal tip is adapted to contact a member against which it is forced without damaging deformation to the member or the tip. The setscrew is constructed by melting a piece of soft metal on to a recessed portion in the end of the threaded shaft.

Description

Waited @tates Patent Weaker 5] Feb. 29, 1972 [54] SULDER TIP SETSCREW 2,086,221 7/1937 Gwyn ..85/l SS 2,747,058 5/1956 Ulanet ...85/1 SS [72] went weske" East Rmkaway 3,501,993 3/1970 Swenson ..s5/1 ss P1 E [73] Asslgnee C Design Corp ast Rockaway N Y FOREGN PATENTS OR APPLICATIONS [22] Had: 1969 466,211 5/1937 Great Britain ..151/24 [21] Appl. N0.: 877,695
Primary ExaminerEdward C. Allen 52 11.5.01. ..ss/1 ss Ammeyqames and Franklin [51] 111}!- CI I ..Fl6|l) 35/00 57 ABSTRACT [58] Field of Search ..85/l SS; 269/249, 274;
2 7/529 51 24 A setscrew comprising a rounded soft metal tip extending from a threaded shaft. The soft metal tip is adapted to contact [56] References Cited a member against which it is forced without damaging deformation to the member or the tip. The setscrew is constructed UNITED STATES PATENTS by melting a piece of soft metal on to a recessed portion in the end of the threaded shaft. 1,046,823 12/1916 McBerty ..85/l SS 1,581,096 4/ 1926 Barnes 5 Claims, 6 Drawing Figures SOLDER TIP SETSCREW The present invention relates to a setscrew adapted to hold two members in substantially stationary relationship. The setscrew of the present invention is described in connection with preventing rotational movement of two concentric members but may be used with members of various shapes and designs.
Setscrews of the type here described generally consist of a threaded shaft adapted to be screwed into one member and to contact a second member and hold it in relative stationary relationship. In designing setscrews of this type a balance must be struck between three important considerations. First, the material at the end of the threaded shaft adapted to contact the second member must be of a type such as to cause a minimum of damage to the second member upon contact therewith and the application of compressive force. Second, the material must be of a type such as to withstand the compressive force applied upon contact with the second member without deforming to a shape in which it is-no longer useful for its intended purpose. Third, the engagement between the material and the second member must be effective to hold the second member stationary.
It is a primary object of the present invention to devise a setscrew with a tip portion of a material and shape particularly suitable for continued and repeated contacts in holding relationship with a member.
It is a further object of the present invention to devise a setscrew which is easily manufactured and in which a contacting tip is automatically formed in a desired shape without the necessity of machining.
It is still a further object of the present invention to devise a setscrew with a contacting tip of a soft metallic material in which a minimum of such material is wasted during manufacture.
It is another object of the present invention to devise a setscrew utilizing a contacting tip of a material and shape such that a minimum of tip material will sustain a maximum useful life.
The setscrew of the present invention comprises a threaded shaft with a recessed portion at one end. A soft metal insert is positioned in said recess and extends beyond the end of said shaft in a rounded or convex configuration.
It has been found that conventional setscrews of the type here described which utilize nonmetallic tip inserts, such as nylon, become inoperative after they have been used only a few times to lock two members in stationary relationship. The tip in such devices tends to deform and sometimes crack in outward radial direction upon the application of the compressive force necessary to hold the two members in stationary relationship. This spreading in an outward direction tends to interfere with the insertion of the threaded shaft into the first member. Moreover, continual use. of a setscrew with a tip which has been so deformed may result in a complete severance of the tip portion from the threaded shaft, the tip portion thereafter remaining jammed in its holding position. The difficulty is partially due to the conventional cylindrical shape of such tips. As is well known, a member of such shape will tend to deform radially outwardly upon the application of compressive forces at its ends. This type of deformation is aggravated if the surface of the member which contacts the cylindrical tip is rounded because in such a case the compressive force is exerted unevenly on the end surface of the cylindrical tip.
I have found that a setscrew comprising a tip of soft metal is particularly well suited for repeated compressive contact with a member adapted to be held. Moreover, I have found that such a soft metal tip when formed in a rounded or convex configuration displays a pattern of deformation, after repeated contact with the member to be held, which does not interfere with the insertion of the threaded shaft into the first member and does not weaken the tip, as by cracking.
Moreover, a soft metal tip of the type used in the present invention is more readily adapted to conform to the shape of the member it holds after repeated contact with such member. As
a consequence, the tip becomes more, rather than less, effective in preventing unwanted relative movement after repeated use.
To the accomplishment of the above, and to such other objects as may hereinafter appear, the present invention relates to a setscrew as defined in the accompanying claims and as described in this specification, taken together with the accompanying drawings in which:
FIG. 1 is a cutaway side elevation of the setscrew of the present invention, the cutaway portion showing the tip material inserted in a conical recess of the screw shaft;
FIG. 2 is a front view of the setscrew of FIG. 1;
FIG. 3 is a cutaway side elevation of the setscrew in its operative environment;
FIG. 4A is a side elevation of a prior art setscrew with a Cylindrical tip portion of a material such as nylon;
FIG. 4B is a side elevation of the setscrew of FIG. 4A showing the deformation of the tip material after repeated use; and
FIG. 5 is a side elevation of the setscrew of the present invention showing the deformation of the tip material after repeated use in the environment of FIG. 3.
As best shown in FIG. 1, the setscrew of the present invention comprises an externally threaded screw body generally designated 10 with adriving recess 12 at one end, as is conventional. In the form here shown thedriving recess 12 is designed to accommodate an Allen-head wrench, but this is of course merely a matter of choice. The tip of thescrew body 10 is provided with a tapered or bevelledportion 18 terminating in a flatcircular end 19. Arecess 14 extends axially into thescrew body 10 from thetip end 19, and is provided with inwardly tapering walls, the preferred form here disclosed being substantially conical in shape. Aslug 16 of soft metallic material is received within therecess 14 and extends axially out therefrom, the outwardly extending part terminating in a rounded configuration. It is preferred that thetapered scrcw surface 18 extend all the way to therecess 14 and that the rounded outer surface of theslug 16 extend all the way to thescrew surface 18, preferably merging with thesurface 18 with little or no discontinuity as illustrated in FIG. I.
The device may advantageously be manufactured by placing a mass of appropriate soft metal in or on therecess 14 and then melting the mass so that it flows into and conforms to the shape of therecess 14. The mass of soft metallic material in its original form may take any suitable shape, as determined by the availability of the material in question. Thus, it may be in the form of individually produced spherical globules, or in the form of small cylinders cut from a rod of the material in question, or even in the form ofa collection of small particles. The initial shape of the mass of soft metallic material is of little significance, since when it melts it will change its shape to conform to the particular configuration of therecess 14. The significant feature is that the amount of soft metallic material provided is appropriate to the volume of therecess 14 in order to substantially fill that recess and to project out therefrom. The mass of molten soft metal, when it cools and hardens, will inherently, by virtue of surface tension, solidify with a rounded exposed surface, the radius of curvature of which will depend upon the specific material employed, the amount of material present, and the size of the outermost perimeter of therecess 14 defined byend portion 19. Thus, it will be seen that theslug 16 may be formed to the desired shape without having to perform any machining operation, and without being limited to any specific initial shaping of the soft metallic material.
It is of course essential to proper operation that theslug 16 remain attached to thescrew body 10. This may be accomplished in any convenient manner, as by providing a layer of material on the surface of therecess 14 which will bond the twooperative parts 10 and 16 together. Thus, where as is preferred, theslug 16 is formed ofsilver solder, a conventional solder flux is applied to the surface of therecess 14 before theslug 16 is melted thereon.
FIG. 3 shows the set screw of the present invention in its operative environment. By way of illustration, amember 20 is shown carrying acylindrical shaft 22 in acylindrical passage 24. Withinmember 20 is a threadedpassage 26 communicating withpassage 24 and adapted to receive setscrew 8. Screw 8 is shown received inpassage 26 so thattip 16 contacts shaft 23 at point 28.Shaft 22 is here shown purely by way of example, as cylindrical, but it should be noted that tip 28 will initially bear against the surface ofa member of any shape (other than a complementary concave surface) in point contact. After initial contact has been made, further turning of screw 8 will produce a slight deformation of the rounded tip 28 and a compressive settling of the tip material inconical recess 14. In this position screw 8 is adapted to firmly holdshaft 22 stationary with respect tomember 20.
FIG. shows a setscrew of the present invention after repeated use in an environment such as that shown in FIG. 3. The concave configuration-of thetip 16 is due partially to deformation and partially to wear. It can be seen that the tip shape has tended to conform to the shape of the surface ofshaft 24.
FIG. 4A shows a prior art construction of a setscrew of the type described. Acylindrical tip portion 30 of a synthetic material, such as nylon, is inserted in acylindrical recess 32 in threadedshaft 34 having a tapered or bevelledsurface 33. After repeated use in an environment such as that shown in FIG. 3, the tip material deforms to the shape shown in FIG. 48. Upon the application of axial compressive force the cylindrical tip bulges outwardly, as will any cylindrical member ofa deformable material. It will be readily apparent that this bulging effect once begun is self-perpetuating. Substantially all the deformation oftip 30 takes place exteriorly of therecess 30. Thus the material outsiderecess 30 is squeezed outwardly, weakening the material along a line separating the interior from the exterior portion. Continued use may result in complete severance of the exterior tip material from the portion withinrecess 32, whereby the setscrew is of no further use. Moreover, this severance is likely to occur while the screw is in use so that when the screw is loosened the severed portion may remain lodged againstmember 22, an obviously undesirable result.
It has been also found that the exterior material tends to develop cracks, such as 36 in FIG. 4B, emanating from the perimeter ofrecess 32. This effect is due to the localized compressive force exerted by the sharp edge formed at the intersection of the surface ofrecess 32 andbevelled surface 33. The portion extending beyond the perimeter ofrecess 32 may tend to sever completely from the tip material, again causing obviously undesirable results.
While the tip of a conventional set screw shown in FIG. 4A will show undesirable deformation after only a few uses, it has been found that the setscrew of the present invention can be used to lock and unlock two members over 100 times with a minimum of undesirable distortion.
Although all the reasons for the more desirable distortion pattern achieved with the setscrew of the present invention are not known, it is clear that the tip material used and its shape both contribute to the improved result. The following is offered as a partial explanation for this phenomenon.
As previously discussed, initial application of compressive force will occur by point contact at the center oftip 16. The tip, being constructed of a soft metal material, is readily adapted to flow and conform to the surface against which it is pressed. Thus, unlike a tip ofa material such as nylon, the initial deformation takes place substantially solely at the point of actual contact. That is, the compressive force exerted by member 28 has very little effect on tip material beyond the point of contact. While material is squeezed outwardly, this deformation is not harmful since the material in question is initially near the central axis of the tip and is not squeezed outwardly beyond the perimeter ofrecess 14 defined byend portion 19. The resulting flow pattern thus exhibits substantially very little outward bulging. Any bulging that does occur does not extend radially outwardly a sufficient distance to interfere with the insertion of threadedshaft 10 intomember 20.
The present invention, therefore, comprises a setscrew which is easy to manufacture with a tip the shape and material of which exhibits substantially more durability than conventional setscrew tips.
While only a single embodiment of the present invention has been herein specifically disclosed, it will be apparent that many variations may be made thereto without departure from the scope of the invention as defined in the appended claims.
I claim:
1. In a setscrew for holding a first member in substantially stationary relationship to a second member, comprising a threaded body adapted to be screwed into a threaded opening in said first member toward said second member, the improvement comprising said body having at a first end adapted to he directed toward said second member, a substantially axially extending recess, the sidewalls of which taper inwardly from said first end of said body, said recess being relatively shallow in comparison to the length of said threaded body, and a soft metal insert in said recess, fixedly secured to said body, and extending beyond the plane of said first body end, the extended portion thereof being convexly curved at least in the region of its farthest extending portion and being confined laterally within the limits of the periphery of said recess at said first end ofsaid body, said insert substantially filling said entire recess and being bonded to said body along substantially said entire recess, whereby said soft metal insert initially engages said second member in point contact thereby eliminating radial deformation beyond the outer periphery of said recess.
2. The setscrew of claim 1, wherein said soft metal insert is silver solder.
3. The setscrew of claim 1, in which said recess is substantially conical in shape.
4. The setscrew of claim 3, wherein said soft metal insert is silver solder.
5. The setscrew of claim 1, wherein said soft metal insert is formed of a single soft metal material, said soft metal material being exposed outwardly of said recess.

Claims (5)

1. In a setscrew for holding a first member in substantially stationary relationship to a second member, comprising a threaded body adapted to be screwed into a threaded opening in said first member toward said second member, the improvement comprising said body having at a first end adapted to be directed toward said second member, a substantially axially extending recess, the sidewalls of which taper inwardly from said first end of said body, said recess being relatively shallow in comparison to the length of said threaded body, and a soft metal insert in said recess, fixedly secured to said body, and extending beyond the plane of said first body end, the extended portion thereof being convexly curved at least in the region of its farthest extending portion and being confined laterally within the limits of the periphery of said recess at said first end of said body, said insert substantially filling said entire recess and being bonded to said body along substantially said entire recess, whereby said soft metal insert initially engages said second member in point contact thereby eliminating radial deformation beyond the outer periphery of said recess.
US877695A1969-11-181969-11-18Solder tip setscrewExpired - LifetimeUS3645161A (en)

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US87769569A1969-11-181969-11-18

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Cited By (24)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
GB2196082A (en)*1984-01-121988-04-20Leon SimonsSelf aligning screw
US5079508A (en)*1990-12-171992-01-07General Electric CompanyElectric power meter adjustment and indication method and apparatus
DE9209715U1 (en)*1992-07-201992-11-26Langer, Georg, 5828 Ennepetal Clamping screw
US5611325A (en)*1996-03-271997-03-18Kudlacek; Donald S.Archery bow stabilizer
USD439947S1 (en)1999-09-162001-04-03Donald I. ChipmanAdjustable archery bow stabilizer
US6440135B2 (en)*2000-02-012002-08-27Hand Innovations, Inc.Volar fixation system with articulating stabilization pegs
US20040111090A1 (en)*2002-10-032004-06-10The University Of North Carolina At Chapel HillModification of percutaneous intrafocal plate system
US6767351B2 (en)2000-02-012004-07-27Hand Innovations, Inc.Fixation system with multidirectional stabilization pegs
US20040153073A1 (en)*2000-02-012004-08-05Hand Innovations, Inc.Orthopedic fixation system including plate element with threaded holes having divergent axes
US20040193155A1 (en)*2003-03-272004-09-30Hand Innovations, Inc.Fracture fixation plate with particular plate hole and fastener engagement and methods of using the same
US20050065528A1 (en)*2002-12-102005-03-24Orbay Jorge L.Method of endosteal nailing
US20050180839A1 (en)*2004-02-172005-08-18Czarnek And Orkin Laboratories, Inc.Set screw with NiTi Tip
US20050187551A1 (en)*2002-12-022005-08-25Orbay Jorge L.Bone plate system with bone screws fixed by secondary compression
US20050191151A1 (en)*2004-03-012005-09-01Doug GethmannAnti-rotation apparatus for use with threaded components
US20050240186A1 (en)*2000-02-012005-10-27Orbay Jorge LBone fracture fixation systems with both multidirectional and unidirectional fixation devices
US20050277937A1 (en)*2004-06-102005-12-15Leung Takkwong RBone plating system
US20060009771A1 (en)*2000-02-012006-01-12Orbay Jorge LBone stabilization system including plate having fixed-angle holes together with unidirectional locking screws and surgeon-directed locking screws
US20060041260A1 (en)*2000-02-012006-02-23Orbay Jorge LFixation system with plate having holes with divergent axes and multidirectional fixators for use therethrough
US20060100624A1 (en)*2000-02-012006-05-11Orbay Jorge LIntramedullary fixation device for metaphyseal long bone fractures
US20070088360A1 (en)*2005-09-192007-04-19Orbay Jorge LBone stabilization system including multi-directional threaded fixation element
US20080226422A1 (en)*2002-09-032008-09-18Mark GordonCone-Head Thrust Screw
US20100023063A1 (en)*2008-07-232010-01-28Warsaw Orthopedic, Inc.Set screw with deformable member
US20100241173A1 (en)*2003-09-172010-09-23Orbay Jorge LAnatomical Distal Radius Fracture Fixation Plate With Ulnar Buttress
WO2016058677A1 (en)*2014-10-162016-04-21KARL SCHÜSSLER GmbH & Co. KGClamping system

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US1046823A (en)*1908-02-271912-12-10Western Electric CoElectrical switch-contact.
US1581096A (en)*1924-08-211926-04-20Howard S BarnesSoft-nose screw
US2086221A (en)*1934-12-101937-07-06Mallory & Co Inc P RContact assembly
GB466211A (en)*1935-11-021937-05-25Edouard Francois BourImprovements relating to locking bolts and nuts
US2747058A (en)*1952-08-271956-05-22Ulanet HermanContact adjustment screws and contact assemblies
US3501993A (en)*1968-12-171970-03-24Henry F SwensonSetscrew with rotatable plastic end

Cited By (54)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
GB2196082A (en)*1984-01-121988-04-20Leon SimonsSelf aligning screw
US5079508A (en)*1990-12-171992-01-07General Electric CompanyElectric power meter adjustment and indication method and apparatus
DE9209715U1 (en)*1992-07-201992-11-26Langer, Georg, 5828 Ennepetal Clamping screw
US5611325A (en)*1996-03-271997-03-18Kudlacek; Donald S.Archery bow stabilizer
USD439947S1 (en)1999-09-162001-04-03Donald I. ChipmanAdjustable archery bow stabilizer
US20060100624A1 (en)*2000-02-012006-05-11Orbay Jorge LIntramedullary fixation device for metaphyseal long bone fractures
US20050240186A1 (en)*2000-02-012005-10-27Orbay Jorge LBone fracture fixation systems with both multidirectional and unidirectional fixation devices
US6767351B2 (en)2000-02-012004-07-27Hand Innovations, Inc.Fixation system with multidirectional stabilization pegs
US20040153073A1 (en)*2000-02-012004-08-05Hand Innovations, Inc.Orthopedic fixation system including plate element with threaded holes having divergent axes
US9572609B2 (en)2000-02-012017-02-21Biomet C.V.Method of using a volar bone plate on a fracture
US20040260294A1 (en)*2000-02-012004-12-23Hand Innovations, Inc.Fixation system with multidirectional stabilization pegs
US20040260295A1 (en)*2000-02-012004-12-23Hand Innovations, Inc.Fixation system with multidirectional stabilization pegs
US20040260293A1 (en)*2000-02-012004-12-23Hand Innovations, Inc.Fixation system with multidirectional stabilization pegs
US20040260292A1 (en)*2000-02-012004-12-23Hand Innovations, Inc.Fixation system with multidirectional stabilization pegs
US7695502B2 (en)2000-02-012010-04-13Depuy Products, Inc.Bone stabilization system including plate having fixed-angle holes together with unidirectional locking screws and surgeon-directed locking screws
US7780711B2 (en)2000-02-012010-08-24Depuy Products, Inc.Fixation system with multidirectional bone supports
US20050159747A1 (en)*2000-02-012005-07-21Orbay Jorge L.Volar fixation system including guide
US9492213B2 (en)2000-02-012016-11-15Biomet C.V.Volar fixation system
US7563263B2 (en)2000-02-012009-07-21Depuy Products, Inc.Intramedullary fixation device for metaphyseal long bone fractures
US9480512B2 (en)2000-02-012016-11-01Biomet C.V.Volar fixation system with fixed-angle multi-hole drill guide
US7727264B2 (en)2000-02-012010-06-01Depuy Products, Inc.Intramedullary fixation device for metaphyseal long bone fractures
US20050245931A1 (en)*2000-02-012005-11-03Orbay Jorge LVolar fixation system
US20100268283A1 (en)*2000-02-012010-10-21Orbay Jorge LVolar Fixation System And Methods of Using The Same
US20050283154A1 (en)*2000-02-012005-12-22Orbay Jorge LIntramedullary fixation device for metaphyseal long bone fractures
US20060009771A1 (en)*2000-02-012006-01-12Orbay Jorge LBone stabilization system including plate having fixed-angle holes together with unidirectional locking screws and surgeon-directed locking screws
US20060041260A1 (en)*2000-02-012006-02-23Orbay Jorge LFixation system with plate having holes with divergent axes and multidirectional fixators for use therethrough
US6440135B2 (en)*2000-02-012002-08-27Hand Innovations, Inc.Volar fixation system with articulating stabilization pegs
US8403967B2 (en)2000-02-012013-03-26Biomet C.V.Volar fixation system and methods of using the same
US7527639B2 (en)2000-02-012009-05-05Depuy Products, Inc.Fixation system with multidirectional bone supports
US20080226422A1 (en)*2002-09-032008-09-18Mark GordonCone-Head Thrust Screw
US7645106B2 (en)*2002-09-032010-01-12Mark GordonCone-head thrust screw
US20040111090A1 (en)*2002-10-032004-06-10The University Of North Carolina At Chapel HillModification of percutaneous intrafocal plate system
US20050187551A1 (en)*2002-12-022005-08-25Orbay Jorge L.Bone plate system with bone screws fixed by secondary compression
US7425213B2 (en)2002-12-102008-09-16Depuy Products, Inc.Method of endosteal nailing
US20050065520A1 (en)*2002-12-102005-03-24Orbay Jorge L.Endosteal nail
US7780664B2 (en)2002-12-102010-08-24Depuy Products, Inc.Endosteal nail
US20050065528A1 (en)*2002-12-102005-03-24Orbay Jorge L.Method of endosteal nailing
US7857838B2 (en)2003-03-272010-12-28Depuy Products, Inc.Anatomical distal radius fracture fixation plate
US8579946B2 (en)2003-03-272013-11-12Biomet C.V.Anatomical distal radius fracture fixation plate
US20040193155A1 (en)*2003-03-272004-09-30Hand Innovations, Inc.Fracture fixation plate with particular plate hole and fastener engagement and methods of using the same
US20100241173A1 (en)*2003-09-172010-09-23Orbay Jorge LAnatomical Distal Radius Fracture Fixation Plate With Ulnar Buttress
US8556945B2 (en)2003-09-172013-10-15Biomet C.V.Anatomical distal radius fracture fixation plate with ulnar buttress
US9072558B2 (en)2003-09-172015-07-07Biomet C.V.Distal radius fracture fixation plate with ulnar buttress
US7320570B2 (en)*2004-02-172008-01-22Czarnek And Orkin Laboratories, Inc.Set screw with NiTi tip
US20050180839A1 (en)*2004-02-172005-08-18Czarnek And Orkin Laboratories, Inc.Set screw with NiTi Tip
US20050191151A1 (en)*2004-03-012005-09-01Doug GethmannAnti-rotation apparatus for use with threaded components
US20050277937A1 (en)*2004-06-102005-12-15Leung Takkwong RBone plating system
US20090192550A1 (en)*2004-06-102009-07-30Ebi, L.P.Bone plating system
US20070088360A1 (en)*2005-09-192007-04-19Orbay Jorge LBone stabilization system including multi-directional threaded fixation element
US7905909B2 (en)2005-09-192011-03-15Depuy Products, Inc.Bone stabilization system including multi-directional threaded fixation element
US8057523B2 (en)2008-07-232011-11-15Warsaw Orthopedic, Inc.Set screw with deformable member
US20100023063A1 (en)*2008-07-232010-01-28Warsaw Orthopedic, Inc.Set screw with deformable member
WO2016058677A1 (en)*2014-10-162016-04-21KARL SCHÜSSLER GmbH & Co. KGClamping system
US10118230B2 (en)2014-10-162018-11-06Karl Schuessler Gmbh & Co. KgClamping system

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Effective date:19790828


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