IP Library Granted Patent US 6,966,737
Granted Patent B2
US 6,966,737 · App. 09/923,288 · Granted Nov 22, 2005

Deck screws suitable for use with composite lumber

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Quick Facts
Patent No.
US 6,966,737
App. No.
09/923,288
Granted
Nov 22, 2005
Kind
B2
Abstract

The present invention is directed to a deck screw intended for use with composite lumber, although it can be used with other wood products, such as pressure treated lumber. The deck screw of the present invention may be provided with a head and a shaft that has two regions of varying diameter. The upper region has threads that exceed the number of threads of the lower shaft, on a unit length basis. The threads of the upper shaft may be configured in an inverted buttress design. The lower region of the shaft terminates at a tapered distal end having a pointed tip that leads the screw through the wood material. Threads are provided on the lower region of the shaft. The head of the screw is provided with an upper surface, a lower surface, and a crown that extends around the perimeter of the head, The crown extends beyond the lower surface of the head, forming a recessed region between the lower edge of the crown and the shaft of the screw. The head may also be provided with an undercut. Further, the head of the screw may be provided with a square driver opening that permits the persons installing the screw to use a square bit. For instance the opening may be a #2 square driver opening. It should be understood that Phillips heads or flat heads in various sizes might also be employed.

Claims (59)

1. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool and a bottom surface having a v-shaped undercut having a conical surface in the undercut that connects the lip with a conical underside of the head;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a tip, and the number of threads per unit length in the upper region exceeds the number of threads per unit length in the lower region, said shaft having a cross-sectional area along the cylindrical upper region greater than the cross-sectional area of the shaft along the cylindrical lower region.

2. The screw of claim 1 wherein the conical surface slants away from the lip toward the axis of the shaft at an angle of approximately 45°.

3. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a gimlet tip having an included angle from about 20° to about 30°, and the number of threads per unit length in the upper region exceeds the number of Threads per unit length in the lower region, said shaft having a cross-sectional area along the cylindrical upper region greater than the cross-sectional area of the shaft along the cylindrical lower region.

4. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a tip, wherein there are at least twice as many threads per unit length in the upper region as there are threads per unit length in the lower region, said shaft having a cross-sectional area along the cylindrical upper region greater than the cross-sectional area of the shaft along the cylindrical lower region.

5. The screw of claim 4 wherein the head is provided with a bottom surface, a crown that extends around the perimeter of the head and extends beyond the lower surface of the head thereby defining an open volume between the lower edge of the crown and the shaft of the screw.

6. The screw of claim 4 wherein the head is provided with a bottom surface, a crown that extends around the perimeter of the head, wherein the crown extends beyond the lower surface of the head, forming a recessed region between the lower edge of the crown and the shaft of the screw.

7. The screw of claim 4 wherein the head is provided with a bottom surface having a v-shaped undercut.

8. The screw of claim 4 wherein the head is provided with a bottom surface having a v-shaped undercut having a conical surface in the undercut that connects the lip with a conical underside of the head.

9. The screw of claim 8 wherein the conical surface slants away from the lip toward the axis of the shaft at an angle of approximately 45°.

10. The screw of claim 4 wherein the head is provided with a top surface having a square opening.

11. The screw of claim 4 wherein the thread pattern of the lower region is symmetrical.

12. The screw of claim 4 wherein the upper region has an inverted buttress thread configuration.

13. The screw of claim 4 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

14. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool, a bottom surface, a crown that extends around the perimeter of the head and extends beyond the lower surface of the head thereby defining an open volume between the lower edge of the crown and the shaft of the screw;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a tip and the number of threads per unit length in the upper region exceeds the number of threads per unit length in the lower region, said shaft having a cross-sectional area along the cylindrical upper region greater than the cross-sectional area of the shaft along the cylindrical lower region.

15. The screw of claim 14 wherein there are at least twice as many threads per unit length in the upper region as there are threads per unit length in the lower region.

16. The screw of claim 14 wherein the head is provided with a top surface having a square opening.

17. The screw of claim 14 wherein the thread pattern of the lower region is symmetrical.

18. The screw of claim 14 wherein the upper region has an inverted buttress thread configuration.

19. The screw of claim 14 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

20. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool, a bottom surface, a crown that extends around the perimeter of the head, wherein the crown extends beyond the lower surface of the head, forming a recessed region between the lower edge of the crown and the shaft of the screw;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a tip, and the number of threads per unit length in the upper region exceeds the number of threads per unit length in the lower region, said shaft having a cross-sectional area along the cylindrical upper region greater than the cross-sectional area of the shaft along the cylindrical lower region.

21. The screw of claim 20 wherein there are at least twice as many threads per unit length in the upper region as there are threads per unit length in the lower region.

22. The screw of claim 20 wherein the head is provided with a top surface having a square opening.

23. The screw of claim 20 wherein the thread pattern of the lower region is symmetrical.

24. The screw of claim 20 wherein the upper region has an inverted buttress thread configuration.

25. The screw of claim 20 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

26. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool and a bottom surface having a v-shaped undercut;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a tip, and the number of threads per unit length in the upper region exceeds the number of threads per unit length in the lower region, said shaft having a cross-sectional area along the cylindrical upper region greater than the cross-sectional area of the shaft along the cylindrical lower region.

27. The screw of claim 26 wherein the v-shaped undercut has a conical surface that connects the lip with a conical underside of the head.

28. The screw of claim 27 wherein the conical surface slants away from the lip toward the axis of the shaft at an angle of approximately 45°.

29. The screw of claim 26 wherein there are at least twice as many threads per unit length in the upper region as there are threads per unit length in the lower region.

30. The screw of claim 26 wherein the head is provided with a top surface having a square opening.

31. The screw of claim 26 wherein the thread pattern of the lower region is symmetrical.

32. The screw of claim 26 wherein the upper region has an inverted buttress thread configuration.

33. The screw of claim 26 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

34. A screw for securing wood products, comprised of:

a shaft and a head, wherein the head is provided with a top surface having an opening to receive a tool;

wherein the shaft is provided with a substantially cylindrical threaded upper region located proximate the head and a substantially cylindrical threaded lower region located near a distal end of the screw, the distal end having a tip, wherein the cross-sectional area of the shaft along the cylindrical upper region is greater than the cross-sectional area of the shaft along the cylindrical lower region, the number of threads per unit length in the upper region are at least twice the number of threads per unit length in the lower region, and wherein the upper region has an inverted buttress thread configuration.

35. The screw of claim 34 wherein the head is provided with a bottom surface, a crown that extends around the perimeter of the head and extends beyond the lower surface of the head thereby defining an open volume between the lower edge of the crown and the shaft of the screw.

36. The screw of claim 35 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

37. The screw of claim 34 wherein the head is provided with a bottom surface, a crown that extends around the perimeter of the head, wherein the crown extends beyond the lower surface of the head, forming a recessed region between the lower edge of the crown and the shaft of the screw.

38. The screw of claim 37 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

39. The screw of claim 34 wherein the head is provided with a bottom surface having a v-shaped undercut.

40. The screw of claim 39 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

41. The screw of claim 34 wherein the head is provided with a top surface having a square opening.

42. The screw of claim 41 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

43. The screw of claim 34 wherein the thread pattern of the lower region is symmetrical.

44. The screw of claim 43 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

45. The screw of claim 34 wherein the tip is a gimlet tip having an included angle from about 20° to about 30°.

Assignments (9)
SECURITY AGREEMENT Recorded Nov 16, 2012
From: ARLON LLC; CONTINENTAL INDUSTRIES, INC.; HANDY & HARMAN; LUCAS-MILHAUPT, INC.; OMNI TECHNOLOGIES; OMG, INC.
To: PNC BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 029308/0304 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Nov 15, 2012
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: OMG, INC. (F/K/A OLYMPIC MANUFACTURING GROUP, INC.)
Reel/Frame 029302/0414 →
RELEASE OF PATENT COLLATERAL ASSIGNMENTS Recorded Nov 14, 2012
From: ABELCO, L.L.C.
To: OMG, INC.
Reel/Frame 029299/0620 →
PATENT COLLATERAL ASSIGNMENT AND SECURITY AGREEMENT Recorded Oct 18, 2010
From: OMG, INC. (F/K/A OLYMPIC MANUFACTURING GROUP, INC.)
To: ABLECO, L.L.C., AS AGENT
Reel/Frame 025150/0295 →
PATENT COLLATERAL ASSIGNMENT AND SECURITY AGREEMENT Recorded Oct 18, 2010
From: OMG, INC. (F/K/A OLYMPIC MANUFACTURING GROUP, INC.)
To: ABLECO, L.L.C., AS AGENT
Reel/Frame 025150/0481 →
SECURITY AGREEMENT Recorded Jan 7, 2010
From: STEEL PARTNERS II, L.P.
To: STEEL PARTNERS II LIQUIDATING SERIES TRUST - SERIES E
Reel/Frame 023741/0717 →
ASSIGNMENT OF SECURITY INTEREST Recorded Nov 5, 2004
From: ABLECO FINANCE LLC
To: CANPARTNERS INVESTMENTS IV, LLC, AS COLLATERAL AGENT
Reel/Frame 015334/0172 →
SECURITY INTEREST Recorded Oct 14, 2004
From: OLYMPIC MANUFACTURING GROUP, INC.
To: ABLECO FINANCE LLC
Reel/Frame 015246/0001 →
SECURITY INTEREST Recorded May 26, 2004
From: OLYMPIC MANUFACTURING GROUP, INC.
To: CONGRESS FINANCIAL CORPORATION, AS AGENT
Reel/Frame 015361/0274 →