Claims
- 1. A balance system for a sash window assembly, the sash window assembly having a sash window slidable within a master frame, the balance system comprising an elastomer balance member having one end adapted to be connected to the master frame and another end adapted to be connected to the sash window to provide an upward biasing force to the sash window.
- 2. The balance system of claim 1 wherein the balance member has a first end having a first loop, the first loop adapted to receive a fastener to fasten the first end to the master frame.
- 3. The balance system of claim 2 wherein the balance member has a second end having a second loop, the second loop adapted to be attached to a brake shoe connected to the sash window.
- 4. The balance system of claim 1 wherein the balance member has a generally cylindrical cross-section.
- 5. The balance system of claim 1 wherein the balance member comprises a first elastomer member and a second elastomer member, the members being coextruded.
- 6. The balance system of claim 1 wherein the balance member comprises a plurality of elastomer members woven together.
- 7. The balance system of claim 1 wherein the balance member comprises a plurality of elastomer members sequentially attached to one another.
- 8. A balance system for a sash window assembly, the sash window assembly having a sash window slidable within a master frame, the balance system comprising an elastomer balance member made from silicone rubber, the member having a generally cylindrical cross-section and having one end adapted to be connected to the master frame and another end adapted to be connected to the sash window to provide an upward biasing force to the sash window.
- 9. The balance system of claim 8 wherein the balance member has a first end having a first loop, the first loop adapted to receive a fastener to fasten the first end to the master frame.
- 10. The balance system of claim 9 wherein the balance member has a second end having a second loop, the second loop adapted to be attached to a brake shoe connected to the sash window.
- 11. The balance system of claim 8 wherein the balance member comprises a first elastomer member and a second elastomer member, the members being coextruded.
- 12. The balance system of claim 8 wherein the balance member comprises a plurality of elastomer members woven together.
- 13. The balance system of claim 8 wherein the balance member comprises a plurality of elastomer members sequentially attached to one another.
- 14. A balance system for a sash window assembly, the sash window assembly having a sash window slidable within a master frame, the master frame having a shoe channel for accommodating the balance system, the balance system comprising:
an elastomer balance member having a first end and a second end; a fastener connecting the first end of the balance member to the shoe channel; a brake shoe adapted to be connected to the sash window, the second end of the balance member being connected to the brake shoe; wherein a length of the balance member is sized such that it provides an upward biasing force to the sash window.
- 15. The balance system of claim 14 wherein the balance member has a first end having a first loop, the first loop adapted to receive a fastener to fasten the first end to the master frame.
- 16. The balance system of claim 15 wherein the balance member has a second end having a second loop, the second loop adapted to be attached to a brake shoe connected to the sash window.
- 17. The balance system of claim 14 wherein the balance member has a generally cylindrical cross-section.
- 18. The balance system of claim 14 wherein the balance member comprises a first elastomer member and a second elastomer member, the members being coextruded.
- 19. The balance system of claim 14 wherein the balance member comprises a plurality of elastomer members woven together.
- 20. A balance system for a sash window assembly, the sash window assembly having a sash window slidable within a master frame, the master frame having a shoe channel for accommodating the balance system, the shoe channel having a support member at an upper portion thereof, the sash window pivotally supported by a brake shoe slidable in the shoe channel, the balance system comprising:
a balance member having one end adapted to be connected to the master frame and another end adapted to provide an upward biasing force to the sash window, the balance member further comprising:
a first elastomer member having a first end and a second end, the first end adapted to be connected to the brake shoe; a first joiner connected to the second end of the first elastomer member; a cord having an intermediate portion extending between a first end and a second end, the first end being attached to the first joiner and the intermediate portion adapted to pass over the support member; a second joiner connected to the second end of the cord; and a second elastomer member having a first end and a second end, the first end connected to the second joiner, the second end adapted to be connected to the master frame.
- 21. The balance system of claim 20 wherein the first elastomer member comprises a primary elastomer member and a secondary elastomer member wrapped around the primary elastomer member.
- 22. The balance system of claim 20 wherein the second elastomer member comprises a primary elastomer member and a secondary elastomer member wrapped around the primary elastomer member.
- 23. The balance system of claim 20 wherein the support member has a pulley, the intermediate portion passing over the pulley.
- 24. The balance system of claim 20 wherein the second end of the second elastomer member is adapted to be connected to a lower portion of the master frame.
- 25. A balance member for a balance system for a sash window assembly, the sash window assembly having a sash window slidable within a master frame, the balance member having one end adapted to be connected to the master frame and another end adapted to be connected to the sash window to provide an upward biasing force to the sash window, the balance member comprising a silicone rubber member.
- 26. A method for manufacturing a plurality of sash window assemblies of varying dimensions, each of the sash window assemblies including a master frame, a sash slidable within the master frame, and a balance system coupled between the master frame and the sash, the method comprising:
providing the master frames; assembling one of the sashes within each of the master frames; providing a length of elastomeric material:
determining an amount of the elastomeric material needed to form the balance system of each of the sash window assemblies based upon each of the sashes' particular dimensions; cutting each of the determined amounts of elastomeric material from the provided length; and installing each of the cut amounts of elastomeric material between the master frame and the sash of each of the respective sash window assemblies.
- 27. The method of claim 26 wherein said determining step is performed by a computer.
- 28. The method of claim 26 wherein the step of providing the master frames includes the step of assembling the master frames.
- 29. A system for manufacturing a plurality of sash window assemblies of varying dimensions, each of the sash window assemblies including a master frame, a sash slidable within the master frame, and a balance system coupled between the master frame and the sash, the system comprising:
means for providing a length of elastomeric material:
means for determining an amount of the elastomeric material needed to form the balance system of each of the sash window assemblies based upon each of the sashes' particular dimensions; and means for cutting each of the determined amounts of elastomeric material from the provided length.
- 30. The system of claim 29 including means for installing each of the cut amounts of elastomeric material between the master frame and the sash of each of the respective sash window assemblies.
- 31. The system of claim 29 wherein the determining means comprises a computer.
- 32. The system of claim 29 wherein the providing means comprises a spool of the elastomeric material.
- 33. A system for manufacturing a plurality of sash window assemblies of varying dimensions, each of the sash window assemblies including a master frame, a sash slidable within the master frame, and a balance system coupled between the master frame and the sash, the system comprising:
a spool of elastomeric material:
a computer for determining an amount of the elastomeric material needed to form the balance system of each of the sash window assemblies based upon each of the sashes' particular dimensions; and means for cutting each of the determined amounts of elastomeric material from the spool of elastomeric material.
- 34. The system of claim 33 including means for assembling providing the master frames.
- 35. The system of claim 34 including means for assembling one of the sashes within each of the assembled master frames.
- 36. A balance system for a closure of an opening in a structure, the closure slideable within the structure, the balance system comprising an elastomer member having one end adapted to be connected to the structure and another end adapted to be connected to the closure to provide a biasing force to the closure.
- 37. The balance system of claim 36 wherein the closure is vertically operable.
- 38. The balance system of claim 36 wherein the closure is horizontally operable.
- 39. The balance system of claim 36 wherein the balance member has a first end having a first loop, the first loop adapted to receive a fastener to fasten the first end to the structure.
- 40. The balance system of claim 36 wherein the balance member has a second end having a second loop, the second loop adapted to be attached to the closure.
- 41. The balance system of claim 36 wherein the balance member has a generally cylindrical cross-section.
- 42. The balance system of claim 36 wherein the balance member comprises a first elastomer member and a second elastomer member, the members being coextruded.
- 43. The balance system of claim 36 wherein the balance member comprises a plurality of elastomer members woven together.
- 44. The balance system of claim 36 wherein the balance member comprises a plurality of elastomer members sequentially attached to one another.
- 45. The balance system of claim 36 wherein the structure is a master frame of a sash window assembly and the closure is a sash window slidable within the master frame.
- 46. The balance system of claim 36 wherein the structure is a garage having an opening and the closure is a garage door slidable within the opening.
- 47. A system for biasing a sliding member slideable within a support structure, the system comprising an elastomer member having one end adapted to be connected to the sliding member and another end adapted to be connected to the closure to provide a biasing force to the closure, the elastomer member being placed in tension for an extended period of time.
- 48. The system of claim 47 wherein the support structure is a master frame of a sash window assembly and the sliding member is a sash window slidable within the master frame.
- 49. The system of claim 47 wherein the support structure is a door frame and the sliding member is a door slidable within the door frame.
RELATED APPLICATION
[0001] This application is a continuation-in-part application of and claims the benefit of U.S. Provisional Application No. 60/198,198, filed Apr. 19, 2000 and which is expressly incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60198198 |
Apr 2000 |
US |