Fastener system with fastener extension and driving tool
10247222 ยท 2019-04-02
Assignee
Inventors
Cpc classification
F16B15/0007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B35/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25B13/50
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16B35/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fastener includes a shank having a first attachment device for attachment to a first workpiece and a head having a second attachment device for attachment to a second workpiece. The fastener can be a screw and the first attachment device includes a thread formation on the shank. The head includes a drive formation at a central portion thereof, in the form of a Phillips head screwdriver recess. The second attachment device in the head includes attachment members integrally formed in the head, being three prongs which extend in a generally opposite direction to the shank.
Claims
1. A fastener, comprising: a shank having a first attachment means to a first workpiece; a head having a second attachment means to a second workpiece; and a cylindrical shoulder between said shank and said head, said cylindrical shoulder being larger than said shank so as to form a stop surface, said stop surface setting a depth of insertion of said shank, said head being larger than said cylindrical shoulder, wherein a distance between said head and said depth of insertion is constant, wherein the second attachment means comprises at least one attachment member formed on said head, said at least one attachment member extending in a direction from said head opposite to said shank, wherein said head having a peripheral portion and a central portion and being comprised of a drive formation, said at least one attachment member being laterally spaced from said drive formation, and wherein the second attachment means further comprises at least another attachment member, said at least one attachment member and said at least another attachment member being equidistantly spaced around said peripheral portion.
2. The fastener, according to claim 1, wherein the first attachment means is a thread formation on said shank.
3. The fastener, according to claim 1, said at least one attachment member and said at least another attachment member are comprised of prongs, each prong being splayed relative to each other.
4. The fastener, according to claim 3, wherein each prong has a curl configuration when forced into the second workpiece.
5. A fastener system, comprising: a shank having a first attachment means to a first workpiece; a head having a second attachment means to a second workpiece, said second workpiece having a front surface and a rear surface; a shoulder between said shank and said head, said shoulder being cylindrical and larger than said shank so as to form a first stop surface, said head being larger than said shoulder so as to form a second stop surface; and a third workpiece being between said first workpiece and said second workpiece and mounted between said first stop surface and said second stop surface of said shoulder, wherein a distance between said head and a depth of insertion is constant, and wherein said second workpiece is fixed adjacent to said third workpiece by said second attachment means, said second attachment means extending through said rear surface and into said second workpiece so as to be housed within said second workpiece, said second attachment means being positioned between said front surface said second stop surface.
6. The fastener system, according to claim 5, wherein the first attachment means is a thread formation on said shank.
7. The fastener system, according to claim 5, wherein the second attachment means comprises at least one attachment member formed on said head, said at least one attachment member extending in a direction from said head opposite to said shank.
8. The fastener system, according to claim 7, wherein said head having a peripheral portion and a central portion and being comprised of a drive formation, said at least one attachment member being laterally spaced from said drive formation.
9. The fastener system, according to claim 8, wherein the second attachment means further comprises at least another attachment member, said at least one attachment member and said at least another attachment member being equidistantly spaced around said peripheral portion.
10. The fastener system, according to claim 9, wherein said at least one attachment member and said at least another attachment member are comprised of prongs, each prong being splayed relative to each other.
11. The fastener system, according to claim 10, wherein each prong has a curl configuration when forced into the second workpiece.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Notwithstanding any other forms which may fall within the scope of the present invention, preferred embodiments of the present invention will now be described, by way of examples only, with reference to the accompanying drawings.
(2)
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DETAILED DESCRIPTION OF THE DRAWINGS
(9) It should be noted in the following description that like or the same reference numerals in different embodiments denote the same or similar features.
(10)
(11) The head 16 comprises a drive formation 22 at a central portion thereof, in the form of a Phillips head screwdriver recess.
(12) The second attachment means 18 in the head 16 comprises attachment members 24 integrally formed in the head, being three prongs 24 which extend in a generally opposite direction to the shank 12. The prongs 24 are formed laterally of the drive formation 22, being equidistantly spaced around the peripheral portion 17 of the head 16.
(13) The prongs 24 include a generally flattened rectangular portion 26 and a pointed end 27 at the end portion 29 thereof. The prongs 24 are slightly splayed relative to each other in their initial configuration.
(14) The screw 10 also comprises a cylindrical shoulder 19 formed at the junction of the head 16 and the shank 12. The cylindrical shoulder 19 comprises a diameter larger than the shank 12 and thus forms a stop surface 21 with the shank 12. The stop surface 21 is thus spaced from the head 16. In use, the shank 12 can be inserted into a first workpiece and will stop at the stop surface 21. Thus, the shoulder 19 acts a depth measuring means in that the distance of the head 16 from the first workpiece for all of the fasteners 10 will be consistent.
(15)
(16) The wall lining 42 has already been painted its final coat and is fixed to the first workpiece or frame stud 40 (timber, metal or masonry) via the threaded shank 12, up until the first stop surface 21 engages the frame stud 40. The head 16 engages the third workpiece or wall lining 42 providing a clamping force thereto towards the frame stud 40, with the prongs 24 extending outwardly. The second workpiece or timber skirting 44 is then forced into the second attachment means 18, being the prongs 24. The face of the head 16 provides a second stop surface 21 to control/prevent flex of the skirting 44.
(17)
(18) Only the back surface 48 of the skirting 44 is engaged by the prongs 24 and the front pre-finished surface 49 is left unmarked. Thus, the fastener 10 provides concealed fixing of the skirting 44 and no further finishing is needed.
(19) The fastener 10 can be embodied in other forms and can include less or more for different types of prongs 24 or attachment means 18.
(20)
(21)
(22) Product testing shows that the integrated fixing prongs 24 of the fastener 10 (which gave been designed to skew and curl into the soft pine timber) cannot penetrate the dense MDF (Medium Density Fibreboard), and therefore did not provide any bite nor grip.
(23) The serrated fixing prongs 24 of the fasteners 10e and 10f are pin shaped to provide easier penetration of the dense MDF material. Product development has also lead to variations of the serrations on the prongs for maple/meranti timber (
(24) The variation in
(25) In other embodiments, the serrated prongs can also be slightly splayed, and can be adapted to curl outwardly similar to the prongs above.
(26) In other embodiments, the fastener can be a nail or an anchor bolt such as a DYNABOLT.
(27) The fastener of the preferred embodiment thus provides two-directional concealed fixing via a threaded shank in one direction, and integrated fixing prongs in the opposite direction. The preferred fastener has integrated fixing prongs incorporated on the screw head that are designed to bite, skew and curl into pre-finished timber. The preferred fastener has the integrated fixing prongs that provide a skewing and curling action locking the pre-finished timber towards the screw head. The integrated fixing prongs can generate a gripping a force greater than that of single trimming nails through the timber.
(28) The preferred fastener can comprise a varying number of integrated fixing prongs in the screw head. The preferred fastener has a shoulder that provides a depth gauge to ensure all integrated fixing prongs protrude past the face of the plasterboard wall lining equidistantly. The preferred fastener can accommodate any variation of drive system within the head. The preferred fastener provides fixing from the back face of the material, and without penetrating the surface, allows for pre-finished timber to be used.
(29) The preferred fastener provides concealed fixing as an alternative to the current nailing of internal timbers. This has been achieved with the threaded shank providing gripping to the wall frame, and the integral fixing prongs providing bite and penetration to pull the timber towards the crown, which provides for a very strong connection. The fixing prongs are an integral part of the screw head giving the screw head a crown like appearance.
(30) The preferred screw is driven to the wall frame with the shoulder providing the pre-determined bearing depth, ensuring correct engagement of the crown. The timber is positioned for fastening, with pressure being applied to the face of the timber, engaging the fixing prongs which bite into the timber. As more pressure is applied and the timber is forced home, the fixing prongs skew and curl into the timber which provides a powerful locking strength.
(31) The fixing detail is such that the fasteners are secured to each stud frame via the threaded shank, with the shoulder of the fastener providing the bearing surface to ensure all screw heads are set at the same depth, thus providing consistent bite force to the timber skirting. The fixing prongs in the set position, protrude forward of the face of the Plasterboard Wall Lining, and have been designed to bite and skew into the timber Skirting, curling and pulling the pre-finished timber tight with the Plasterboard Wall Lining. The result is that the skirting remains a tight fit along the entire length of wall, thus minimising (or eliminating) the need for gap filler.
(32) The fastener has the potential to change the current construction method of nailing through the timber surface, and allows the opportunity to provide the highest quality of finishes, all without compromising the construction costs nor the build time.
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(34) As shown in
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(36) Whilst preferred embodiments of the present invention have been described, it will be apparent to skilled persons that modifications can be made to the embodiments described.