The field to which the disclosure generally relates includes fastening, and in particular includes fastening where access to the workpiece is limited to one side.
Manufactured products are typically assembled from a number of components that are integrated into a product. The individual elements may be engaged in a number of fashions, one of which involves being fastened together. The options for fastening elements together are copious. However, the challenges in joining parts of an assembly are endless and the need for new and effective devices and methods of fastening persists.
A number of illustrative variations may involve a product for fastening elements and may include a rivet body that has a hollow shank with an opening of a first diameter. A mandrel may extend through the shank. The mandrel may have a segment extending out of the shank that has a second diameter that is greater than the first diameter. The segment may terminate in a cutting edge.
In other illustrative variations, a method may be involved for one sided joining of multiple workpieces. A first workpiece element may be provided and at least a second workpiece element may be positioned adjacent the first workpiece element at a location for fastening the elements together. A rivet assembly may be positioned in a machine. The rivet assembly may include a rivet body that has a shank and a head. A mandrel may extend through the rivet body and may have an edge configured to cut. The machine may be operated to rotate the rivet assembly and to translate the rivet assembly toward the workpiece elements. An opening may be cut through the workpiece elements by the edge and simultaneously the shank and the mandrel may be positioned through the opening. The mandrel may be drawn out of the opening expanding the shank to fasten the multiple workpiece elements together.
Other illustrative variations within the scope of the invention will become apparent from the detailed description provided herein. It should be understood that the detailed description and specific examples, while disclosing variations within the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Select examples of variations within the scope of the invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the variations is merely illustrative in nature and is in no way intended to limit the scope of the invention, its application, or uses.
In assembly, one of the challenges in efficient fastening of components involves limited access to the individual elements that are intended to be secured together. When elements are positioned together so that access can be gained to only one side of the stacked elements, the effective options of available fastening methods are greatly reduced. One such application may involve large sheet components, which may be positioned together with multiple overlapping edges that are in need of being secured. To successfully connect such elements, a rivet assembly 10 with a cutting mandrel tip as illustrated in
The rivet assembly 10 may include a rivet body 12, which may include a shank 14 and a head 16. The shank 14 may be formed in a hollow cylindrical shape with a length selected to extend through the thickness of the elements to be secured together so that the leading end 18 will extend out of the elements when the shank 14 is positioned in an opening through the elements. The head 16 may extend radially outward around the end 20 of the shank 14. The head 16 may include a substantially flat or concave annular surface 22 facing in the direction of the shank 14, and may include a curved or convex surface 24, opposite the surface 22. The shapes of surfaces 22 and 24 may be varied to fit the workpiece and profile or appearance desired for the application.
The rivet assembly 10 may include a mandrel 26 that may extend through the rivet shank 14 and that may have a general shape of a cylindrical rod with a tip section 27. The mandrel 26 may include a segment 28 that extends out of the shank 14 and away from the surface 24 a distance sufficient to connect with a machine for imparting rotary action and force. The segment 28 may include annular grooves around its outer surface or other features for engaging with the chuck of the selected machine. A reduced diameter section 32 may be provided in the mandrel 26 at a location where breakoff from the tip section 27 is preferred. In addition, an enlarged diameter section 34 may be provided in the mandrel 26 near the tip section 27 that may clip into a groove 36 in the interior of the rivet shank 14 near the end 18. The section 34 may provide a mechanism for securing the mandrel 26 in the rivet body 12 prior to use, in a manner that may facilitate feeding into the machine that applies the rivet assembly 10 to a workpiece.
The tip section 27 may be presented extending out of the rivet body 12 and away from end 18 of the rivet shank 14 and may have a diameter 42 that is larger than the diameter 44 of the segment 28, and is larger than the internal open diameter of the shank 14. The tip section 27 may include a cavity 38 opening through the end 40 so that an annular wall 46 is formed around the cavity 38. The cavity may preferably have a depth that is greater than the diameter 42 to facilitate cutting. A cutting edge may be provided at the end 40 with an angled section 41 tapering toward the end 40, or may otherwise be sharpened. The section 41 may be tapered at an angle 43 to facilitate cutting and chip formation, which may be thirty degrees.
A number of slots 48 may be formed around the diameter of the annular wall 46 that open through the end 40. The number of slots 48 may be two or more, and may more preferably be between three and six. The slots may facilitate cutting action and may provide clearance for the escape of displaced workpiece material such as chips, through the wall 46. In addition, the leading edge 50 in the slot 48 may be sharpened to facilitate cutting. The slot 48 may have a depth from the end 40 toward the rivet body 12 that is greater than the stacked thickness of the workpiece components that the mandrel 26 is intended to penetrate. This ensures that the slot remains open during the entire cutting process. The width of the slot 48 across the end 40 may be selected based on the material to be cut
The rivet assembly 10 may be employed to cut through the workpieces to be fastened, providing itself an opening within which the rivet body 12 may then act as a fastener.
Referring to
With the cutting action complete as illustrated in
Referring to
The following description of variants is only illustrative of components, elements, acts, product and methods considered to be within the scope of the invention and are not in any way intended to limit such scope by what is specifically disclosed or not expressly set forth. The components, elements, acts, product and methods as described herein may be combined and rearranged other than as expressly described herein and still are considered to be within the scope of the invention.
Variation 1 may involve a product for fastening elements and may include a rivet body that has a hollow shank with an opening of a first diameter. A mandrel may extend through the shank. The mandrel may have a segment extending out of the shank that has a second diameter that is greater than the first diameter. The segment may terminate in a cutting edge.
Variation 2 may include a product according to variation 1 wherein a cavity may be formed in the segment that opens through the cutting edge.
Variation 3 may include a product according to variation 2 wherein the segment may include a wall disposed around the cavity with at least one slot formed in the wall through the cutting edge.
Variation 4 may include a product according to variation 3 wherein the elements may have a total thickness, and wherein the slot may have a depth that is greater than the total thickness.
Variation 5 may include a product according to any of variations 1 through 4 wherein the mandrel may include a segment with an enlarged diameter that is disposed in the shank to retain the mandrel in the rivet body prior to fastening of the elements.
Variation 6 may include a product according to any of variations 1 through 5 wherein the cutting edge may be formed by an angle of approximately thirty degrees.
Variation 7 may include a product according to any of variations 1 through 6 wherein the elements include an last element that is penetrated last by the cutting edge, wherein the last element may have a thickness less than 2.0 millimeters.
Variation 8 may involve a rivet assembly for fastening multiple elements. The rivet assembly may include a rivet body that may have a hollow shank with a first end and an opposite second end. The rivet body may have a head with a first surface of the head facing the shank and a second surface of the head facing away from the shank. A mandrel may extend through the rivet body. The mandrel may have a first segment extending out of the rivet body beyond the second surface. The mandrel may have a second segment extending out of the rivet body on an opposite side of the rivet body from the first segment. The second segment may terminate at a cutting edge that is formed at an acute angle.
Variation 9 may include a product according to variation 8 wherein a cavity may extend into the second segment and may open through the cutting edge defining a wall around the cavity.
Variation 10 may include a product according to variation 9 wherein a slot may be formed in the wall through the cutting edge.
Variation 11 may include a product according to variation 10 or 11 wherein the slot may form a leading edge on the wall, wherein the leading edge may be sharpened.
Variation 12 may include a product according to variation 11 wherein the elements may have a total thickness and wherein the slot depth may be greater than the total thickness.
Variation 13 may include a product according to any of variations 8 through 12 wherein the cutting edge and the leading edge may be hardened.
Variation 14 may involve a method for one sided joining wherein multiple workpiece elements may be positioned adjacent one another at a location for fastening the multiple elements together. A rivet assembly may be positioned in a machine. The rivet assembly may include a rivet body that has a shank and a head. A mandrel may extend through the rivet body and may have an edge configured to cut. The machine may be operated to rotate the rivet assembly and to translate the rivet assembly toward the multiple workpiece elements. An opening may be cut through the multiple workpiece elements by the edge and simultaneously the shank and the mandrel may be positioned through the opening. The mandrel may be drawn out of the opening expanding the shank to fasten the multiple workpiece elements together.
Variation 15 may include a method according to variation 14 and may include the step of providing a slot in the mandrel that may be configured to allow material of the multiple workpiece elements cut by the edge to pass through the slot.
Variation 16 may include a method according to variation 14 or 15 and may include breaking the mandrel and leaving a segment of the mandrel with the edge in the rivet body and within the multiple workpiece elements.
The above description of select variations within the scope of the invention is merely illustrative in nature and, thus, variations or variants thereof are not to be regarded as a departure from the spirit and scope of the invention.
This application claims benefit of U.S. Provisional Application No. 62/102,883 filed Jan. 13, 2015.
Number | Date | Country | |
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62102883 | Jan 2015 | US |