Self-polishing and tapping rivet assembly
A blind setting rivet assembly capable of permanently fastening one or more sheet metal work pieces or the like together is disclosed. The rivet assembly may be self polishing and self tapping and may also provide a hollow cylindrical threaded bolt head onto which a nut may be affixed to provide a means to removably attach other work pieces, components or the like. The rivet assembly comprises a rivet body having a hollow tubular sleeve and an enlarged flattened head. The rivet body surrounds a mandrel that may have a weakened area of reduced diameter to allow detachment of the mandrel shaft following application of sufficient axial force to the shank. This application of force sets the rivet by causing a tapered shoulder section of the mandrel to deform the rivet sleeve. The mandrel shank may be terminated in a screw tip. This screw tip punctures, spreads, self-taps, and self-polishes an aperture in the work pieces through which the rivet sleeve passes. The mandrel's shank may have a weakened area of reduced diameter adjacent to the screw tip that allows detachment of shaft following application of sufficient axial force to the shank. This application of force causes the tapered shoulder section of the screw tip to compress and deform the rivet sleeve setting the rivet.
The present application is a continuation application claiming priority under 35 U.S.C. § 120 to the United States Non-Provisional patent application Ser. No. 10/050,084, filed on Jan. 14, 2002, which claimed priority under 35 U.S.C. § 119(e) of U.S. Provisional Application No. 60/261,650, filed Jan. 12, 2001. Said U.S. Non-Provisional patent application Ser. No. 10/050,084 and the U.S. Provisional Application No. 60/261,650 are herein incorporated by reference in their entireties.
INCORPORATION BY REFERENCE The following related commonly owned patents are incorporated herein by reference in their entirety:
The present invention generally relates to the field of fasteners such as rivets and the like, and more particularly to a self-polishing and tapping rivet assembly.
BACKGROUND OF THE INVENTIONBlind setting rivets are typically used to fasten sheet metal work pieces or the like together when access is available to only one side of the work pieces. However, application of blind setting rivets may at times be cumbersome. For example, in many applications, special jigs must be used to maintain exact alignment of the work pieces from the time the hole is drilled until the rivet can be applied.
Because of these and other limitations, self-drilling blind setting rivets were developed. These rivets employ specialized drill heads which may be difficult to manufacture and are thus prohibitively expensive for many applications. Further, such rivets may leave a burr on the outer layer of the work piece materials. This burr may prevent proper seating of the rivet and may cause fractures in work pieces as it is applied, resulting in a weak joint. Known to the art are self-drilling rivets having deburring ears to remove burrs during the drilling operation. However, the drill bit of such rivets removes work piece material to create a hole for the rivet shank. This removed material may fall within an enclosed area creating a possible nuisance or hazard.
Typical drills have spirals designed to help the metal edges cut and spiral the shrapnel out. In a typical self-drilling rivet the spirals are designed to help the cut metal edges to create shrapnel which requires that high torque be placed on the mandrel of the rivet assembly.
U.S. Pat. No. 5,915,901 describes the use of the excurvations formed during application to increase application strength. However, in some applications, a polished aperture is desirable. Consequently, it would be advantageous to provide a blind setting rivet that would be both self-tapping and self-polishing instead of only self drilling (using a drill bit) or only self-tapping (using a screw tip). Such a self-tapping, self-polishing rivet would remove all excurvations that would leave a clean aperture. Additionally, a self-tapping and self-polishing rivet would be less expensive and easier to manufacture than the self-drilling rivets (using a drill bit) and would require less torque during application.
SUMMARY OF THE INVENTIONAccordingly, the present invention is directed to a self-tapping and self-polishing blind setting rivet assembly capable of permanently fastening one or more work pieces or the like together and/or to another object. In one embodiment, the rivet assembly may further include a hollow cylindrical threaded bolt head onto which a nut may be affixed to provide a means to removably attach other work pieces, components or the like.
In exemplary embodiments of the invention, the self-tapping and self-polishing blind setting rivet assembly comprises a rivet body having a hollow tubular sleeve and an enlarged flattened head. The rivet body surrounds a mandrel having a weakened area of reduced diameter to allow detachment of the mandrel shaft following application of sufficient axial force to the shank. This application of force sets the rivet by causing a tapered shoulder section of the mandrel to deform the rivet sleeve. The mandrel shank is terminated in a self-tapping and self-polishing auger that punctures, spreads, self-taps and self-polishes an aperture in the work piece(s) through which the rivet sleeve passes. The self-tapping and self-polishing auger includes a generally longitudinally formed groove providing one or more cutting edges that incrementally shave or carve small amounts of work piece material allowing torque to be dispersed over several small cutting edges simultaneously.
It is to be understood that both the forgoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention as claimed. The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate an embodiment of the invention and together with the general description, serve to explain the principles of the invention.
BRIEF DESCRIPTION OF THE DRAWINGSThe numerous advantages of the present invention may be better understood by those skilled in the art by reference to the accompanying figures in which:
Reference will now be made in detail to the presently preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings.
Referring generally now to
Self-tapping and self-polishing auger 110 is comprised of a generally conical barrel having a self-tapping and self-polishing tip 116, a cutting portion 118, and optionally a polishing portion 120. A weakened area of reduced diameter 122 may be formed in the mandrel shank 114 rearward from shoulder section 112. This weakened area 122 is preferably sized to fracture upon application of a predetermined tensile force to the shank 114 allowing self-tapping and polishing auger 110 and shoulder section 112 to be detached from shank 114 following completed application of the rivet assembly 100. Likewise, an area of enlarged diameter 124 may be formed in mandrel 108 between shoulder section 112 and weakened area of reduced diameter 122. This area of enlarged diameter 124 retains mandrel 108 within rivet body 102 until sufficient force is applied to the shank 114 during application to set the rivet body 102 and cause the area of reduced diameter 122 to fracture. In one embodiment, this enlarged area 124 also retains the self-tapping and polishing auger 110 and shoulder section 112 within sleeve 104 following application of the rivet assembly 100 by creating an interference with the inner surface of the sleeve 104 as the sleeve 104 is deformed during application of the rivet. Moreover, in embodiments of the invention, mandrel 108 may include a grommet or like seal for providing a liquid and gas impermeable seal between the shank 114 and the rivet body 102. As shown in
In embodiments of the invention, weakened area 122 may be positioned on mandrel 108 so that a length of shank 114 remains in rivet body 102 after separation of the rear portion of the shank 114. Preferably, this length is predetermined to allow shank 114 to fracture at a point that is substantially flush with the outer surface of enlarged flattened head 106. In this manner, the remaining part of shank 114 substantially fills the hollow portion of the rivet body 102, increasing its strength.
It will be appreciated that the areas of reduced diameter 122 and enlarged diameter 124 may have different cross-sectional shapes depending upon factors such as, for example, the material from which the mandrel 108 is made, the types of work piece material(s) in which the rivet assembly 100 is being applied, the amount of fracture strength required for the area of reduced diameter 122, and the holding strength of the area of enlarged diameter 124. For instance, in
During application of rivet assembly 100, self-tapping and polishing auger 110 is held substantially normal to the surface of a work piece while rotary motion is applied to shank 114. This rotary motion threads the auger 110 into the work piece materials and expands them. In this manner, the auger 110 pulls itself through the work piece materials while simultaneously smoothing the aperture it forms. Preferably, self-tapping and self-polishing tip 116 is pointed or angled to facilitate piercing of the outer surface of the work piece.
In exemplary embodiments, the rear portion of the shank 114 may be designed for use with a specialized chuck or various types of power or hand tools to provide rotary motion and axial retraction to the mandrel 108. Preferably, the outer diameter 130 of shoulder section 112 is slightly larger than outer diameter 132 of rivet sleeve 104 allowing the sleeve to pass through the hole or aperture formed by self-tapping and self-polishing rivet head 110.
Referring now to
As shown in
Staged leading cutting edges 140 and trailing edges 142 may be formed in the cutting portion 118 of self-tapping and self-polishing auger 110 along groove 138, rearward of self-tapping tip 116. Preferably, leading cutting edges 140 incrementally remove work piece material(s) by shaving or carving the materials from the wall of the aperture being formed. The removed materials may then be channeled away from the aperture by groove 138. In this manner, the amount of torque required for inserting or tapping rivet assembly 100 through a work piece is substantially reduced compared to conventional self-boring rivet assemblies.
In the exemplary embodiment shown, leading cutting edges 140 and trailing edges 142 may be substantially parallel to the longitudinal axis 144 of self-tapping and self-polishing auger 110. Alternately, as shown
A polishing leading edge 148 may be formed in the polishing portion 120 of self-tapping and self-polishing auger 110 along groove 138 rearward of cutting portion 118 and forward of shoulder portion 112. Similarly, a polishing trailing edge 150 may be formed in the polishing portion 120 along groove 138 opposite leading edge 148. Preferably, polishing leading and trailing edges 148 & 150 remove any excurvations (e.g., material bored away from work piece by auger 110) leaving a clean, substantially burr free aperture formed in the work piece(s) through which rivet sleeve 104 (
In the exemplary embodiment shown, polishing leading edge 148 and polishing trailing edge 150 may be substantially parallel to the longitudinal axis 144 of auger 110. Alternately, as shown in
By angling cutting edges 140, trailing edges 142, polishing leading edge 148 and/or polishing trailing edge 150, the amount of material removed during each turn of auger 110 may be controlled. Generally, by selecting a larger value of angle (αa for an auger having a given length (l), a smaller amount of work piece material is removed by each leading cutting edge 140. Likewise, by selecting a larger value of angle (β) for an auger 110 having a given length (l), a smaller amount work piece material is removed during each turn. Thus, it will be appreciated that the selection of angles (α) and (β) will depend on factors such as the application in which rivet assembly 100 is to be used and the material properties of the work pieces in which rivet assembly 100 is to be inserted, the amount of material to be removed by cutting and polishing edges 140 & 148, and the like. For example, in the embodiment shown in
Referring now to
Turning again to
In exemplary embodiment of the invention, polishing portion 120 may be tapered. Threads 154 may blend smoothly into polishing portion 120 or, alternately, shoulder section 112 to provide a smooth transition for polishing of the aperture formed.
In embodiments of the invention shown in
Rotary motion applied to mandrel 108 causes self-tapping tip 116 to tap a hole or aperture in adjacent work pieces 156 & 158. As the self-tapping tip 116 punctures, spreads and cuts the work piece materials, removed material on the inner surface 160 of the innermost work piece 152 is separated and scraped or carved away from the work piece. The rotary motion further drives threads 154 of head 110 into the work pieces 156 & 158, pulling the auger 110 though the work pieces where cutting edges 140 & 142 incrementally shave or carve material from the surface of the aperture being formed. This removed material may then be channeled away from the aperture via groove 138. In this manner, the amount of torque required to insert or tap auger 110 through a work piece is substantially reduced compared to that required by augers of conventional self-boring rivet assemblies. Further, the material removed by auger 110 may be more easily removed since it is channeled to the outer surface 160 of work piece 156.
Referring now to
A groove 322 is formed generally longitudinally in the cutting portion 318 of barrel 314. Groove 322 may extend to various depths in barrel 314 and may have different shapes depending on the material of the work piece for which the rivet assembly 300 is designed. For example, as shown, groove 322 may have a generally V-shaped cross-section extending from self-tapping tip 316 to shoulder section 320 wherein the depth of groove 322 increases longitudinally along barrel 314 from tip 316 to shoulder section 324.
Staged leading cutting edges 326 and trailing edges 328 may be formed in the cutting portion 318 of auger 312 along groove 322, rearward of self-tapping tip 316. Like cutting edges 140 & 142 of
Similarly, polishing leading edge 332 and trailing edge 334 may be formed in the polishing portion 320 of self-tapping and self-polishing auger 312 along groove 322 rearward of cutting portion 318 and forward of shoulder portion 322. Like polishing edges 148 & 150 of
In certain applications, it may be desirable for the threaded portion of bolt head 408, 508 & 608 to have multiple sets of threads. A separate head may be fashioned so that these multiple threads may strip its internal threads as it is being threaded onto the rivet body. Thus, once threaded onto the threaded portion, the head cannot be removed. In this fashion, the head may be tightened onto the rivet body and permanently retained. A second nut may be fashioned having a thread pattern corresponding to that of the rivet body so that it will not be stripped and consequently may be removable. Nuts suitable for use with bolt rivet assemblies 400, 500 & 600 may vary from six-sided or hex head nuts and wing nuts to various special shapes as required by the application. Additional work pieces, other components, or the like (not shown) may be removably attached to the threaded bolt head and secured by the nut.
The head or flange of the rivet body 402, 502 & 602 may be part of a single piece rivet unit (e.g., enlarged flattened head 410) or it may be removable (e.g., removable heads 510 & 610). In
In the embodiment shown in
It is believed that the self-polishing and tapping rivet assembly of the present invention and many of its attendant advantages will be understood by the forgoing description. It is also believed that it will be apparent that various changes may be made in the form, construction and arrangement of the components thereof without departing from the scope and spirit of the invention or without sacrificing all of its material advantages. The form herein before described being merely an explanatory embodiment thereof. It is the intention of the following claims to encompass and include such changes.
Claims
1. A rivet assembly, comprising:
- a rivet body having a hollow tubular sleeve and an enlarged flattened head suitable for abutting the surface of a work piece; and
- a mandrel disposed in said rivet body, the mandrel including an auger having a groove generally longitudinally disposed therein for forming at least one cutting edge,
- wherein the at least one cutting edge is suitable for incrementally shaving material from the work piece as said mandrel is rotated for creating an aperture capable of receiving the hollow tubular sleeve.
2. The rivet assembly as claimed in claim 1, wherein the at least one cutting edge comprises a leading cutting edge and a trailing cutting edge formed on opposite sides of the groove.
3. The rivet assembly as claimed in claim 2, wherein the leading cutting edge extends outwardly from a longitudinal axis of the auger further than the trailing cutting edge.
4. The rivet assembly as claimed in claim 1, wherein the at least one cutting edge is parallel to a longitudinal axis of the auger.
5. The rivet assembly as claimed in claim 1, wherein the at least one cutting edge forms an angle with respect a longitudinal axis of the auger.
6. The rivet assembly as claimed in claim 1, wherein the at least one cutting edge is curved.
7. The rivet assembly as claimed in claim 1, wherein the groove further forms at least one polishing edge suitable for polishing the aperture created by said at least one cutting edge.
8. The rivet assembly as claimed in claim 7, wherein the at least one polishing edge comprises a leading polishing edge and a trailing polishing edge formed on opposite sides of the groove.
9. The rivet assembly as claimed in claim 8, wherein the leading polishing edge extends outwardly from a longitudinal axis of the auger further than the trailing polishing edge.
10. The rivet assembly as claimed in claim 7, wherein the at least one polishing edge is parallel to a longitudinal axis of the auger.
11. The rivet assembly as claimed in claim 7, wherein the at least one polishing edge forms an angle with respect a longitudinal axis of the auger.
12. The rivet assembly as claimed in claim 7, wherein the at least one polishing edge is curved.
13. The rivet assembly as claimed in claim 1, wherein the auger comprises a tip suitable for self-tapping the aperture.
14. The rivet assembly as claimed in claim 13, wherein the tip includes a point suitable for piercing the work piece, the point extending into a cutting tooth for removing work piece material.
15. The rivet assembly as claimed in claim 1, wherein the auger further comprises a thread for pulling the auger through the work piece.
16. The rivet assembly as claimed in claim 15, wherein the auger includes a tapered polishing portion having at least one polishing edge, and wherein the thread blends into the polishing portion.
17. The rivet assembly as claimed in claim 1, further comprising a threaded bolt head extending from the enlarged flattened head opposite the hollow tubular sleeve.
18. The rivet assembly as claimed in claim 1, wherein the mandrel further comprises a shoulder section adjacent to the auger, the shoulder section having an outer diameter greater than the inner diameter of the hollow tubular sleeve, the shoulder section being suitable for radially compressing and spreading the hollow tubular sleeve as said mandrel is retracted, and a shank having an area of reduced diameter spaced rearward from the shoulder section and sized for allowing the auger and shoulder section to be detached upon application of predetermined tensile force to the shank.
19. The rivet assembly as claimed in claim 18, further comprising a threaded bolt head extending from the enlarged flattened head opposite the hollow tubular sleeve, wherein the area of reduced diameter is positioned substantially flush with an end of the bolt head after the auger and shoulder section are detached so that a length of the shank remains in the rivet body.
20. A rivet assembly, comprising:
- a rivet body having a hollow tubular sleeve and an enlarged flattened head suitable for abutting the surface of a work piece; and
- a mandrel disposed in said rivet body, the mandrel including an auger having a groove generally longitudinally disposed therein for forming at least one cutting and at least one polishing edge;
- wherein the at least one cutting edge is suitable for incrementally shaving material from the work piece and as said mandrel is rotated for creating an aperture capable of receiving the hollow tubular sleeve, and
- wherein the at least one polishing edge is suitable for polishing the aperture created by said at least one cutting edge.
21. The rivet assembly as claimed in claim 20, wherein the at least one cutting edge comprises a leading cutting edge and a trailing cutting edge formed on opposite sides of the groove.
22. The rivet assembly as claimed in claim 20, wherein the leading cutting edge extends outwardly from a longitudinal axis of the auger further than the trailing cutting edge.
23. The rivet assembly as claimed in claim 20, wherein the at least one cutting edge is parallel to a longitudinal axis of the auger.
24. The rivet assembly as claimed in claim 20, wherein the at least one cutting edge forms an angle with respect to a longitudinal axis of the auger.
25. The rivet assembly as claimed in claim 20, wherein the at least one cutting edge is curved.
26. The rivet assembly as claimed in claim 20, wherein the at least one polishing edge comprises a leading polishing edge and a trailing polishing edge formed on opposite sides of the groove.
27. The rivet assembly as claimed in claim 26, wherein the leading polishing edge extends outwardly from a longitudinal axis of the auger further than the trailing polishing edge.
28. The rivet assembly as claimed in claim 20, wherein the at least one polishing edge is parallel to a longitudinal axis of the auger.
29. The rivet assembly as claimed in claim 20, wherein the at least one polishing edge forms an angle with respect a longitudinal axis of the auger.
30. The rivet assembly as claimed in claim 29, wherein the at least one polishing edge is curved.
31. The rivet assembly as claimed in claim 20, wherein the auger comprises a tip suitable for self-tapping the aperture.
32. The rivet assembly as claimed in claim 31, wherein the tip includes a point suitable for piercing the work piece, the point extending into a cutting tooth for removing work piece material.
33. The rivet assembly as claimed in claim 20, wherein the auger further comprises a thread for pulling the auger through the work piece.
34. The rivet assembly as claimed in claim 20, further comprising a threaded bolt head extending from the enlarged flattened head opposite the hollow tubular sleeve.
35. The rivet assembly as claimed in claim 20, wherein the mandrel further comprises a shoulder section adjacent to the auger, the shoulder section having an outer diameter greater than the inner diameter of the hollow tubular sleeve, the shoulder section being suitable for radially compressing and spreading the hollow tubular sleeve as said mandrel is retracted, and a shank having an area of reduced diameter spaced rearward from the shoulder section and sized for allowing the auger and shoulder section to be detached upon application of predetermined tensile force to the shank.
36. A rivet assembly, comprising:
- a rivet body having a hollow tubular sleeve and an enlarged flattened head suitable for abutting the surface of a work piece; and
- a mandrel disposed in said rivet body, the mandrel including an auger having a groove generally longitudinally disposed therein for forming means for cutting material from the work piece,
- wherein the cutting means is suitable for incrementally shaving material from the work piece as said mandrel is rotated for creating an aperture capable of receiving the hollow tubular sleeve.
37. The rivet assembly as claimed in claim 36, wherein the groove further forms means for polishing the aperture created by the cutting means.
38. The rivet assembly as claimed in claim 36, wherein the auger further comprises means for self-tapping the aperture.
39. The rivet assembly as claimed in claim 36, wherein the auger further comprises means for pulling the auger through the work piece.
40. The rivet assembly as claimed in claim 36, further comprising a threaded bolt head extending from the enlarged flattened head opposite the hollow tubular sleeve.
Type: Application
Filed: Sep 13, 2004
Publication Date: Sep 22, 2005
Inventor: A. L. Aasgaard (Omaha, NE)
Application Number: 10/939,987