Claims
- 1. A tool for inserting and removing drain flanges comprising:
a driver having a socket opening adapted to receive a socket wrench and a shaft having an upper rounded shaft portion having a first predetermined diameter, a square shaft portion that has a diagonal corner to corner measurement that does not exceed said first predetermined diameter, and a lower rounded shaft portion that has a second predetermined diameter that is less than said first predetermined diameter; a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having an upper rounded opening that is sufficiently large to allow insertion and rotation of said upper rounded shaft portion, said lower main body flange having a lower rounded opening that is sufficiently large to allow insertion and rotation of said lower rounded shaft portion, said main body having teeth disposed at least along predetermined portions of an outer surface of said main body; and, a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam having at least one square opening that is offset from a center point of said cam and that is adapted to engage said square shaft portion so that said cam rotates between a closed position and an extended position relative to said main body, said cam having teeth to engage said drain flange.
- 2. The tool of claim 1 wherein said cam has an opening that allows said cam to rotate 360° in said main body.
- 3. The tool of claim 1 wherein said lower rounded shaft portion further includes a detent ball that engages a slot in said lower rounded opening of said lower main body flange.
- 4. The tool of claim 1 wherein said square shaft portion of said driver is adapted to be force fit into said square opening in said cam.
- 5. The tool of claim 1 further comprising an additional cam that is a different size from said cam to allow said tool to be used with various size drain flanges.
- 6. The tool of claim 1 wherein said cam has two square openings that are offset by different amounts from said center of said cam.
- 7. The tool of claim 1 wherein said cam further includes an adjustable plate that can be used to vary the distance of said square opening from said center point of said cam.
- 8. The tool of claim 1 further comprising:
a nub attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body rests against an inner surface of said drain flange.
- 9. The tool of claim 1 further comprising:
a nub that exerts a force on said arm in counterclockwise direction whenever said driver creates a counterclockwise torque so that said main body rotates in a counterclockwise direction in said drain flange around said nub until said teeth on said main body engage an inner surface of said drain flange and said cam is rotated to said extended position so that said teeth on said cam engage said inner surface of said drain flange.
- 10. A method of removing a drain flange comprising:
providing a driver having a socket adapted to receive a socket wrench and a shaft having an upper rounded portion having a first predetermined diameter, a square shaft portion that has a diagonal corner to corner measurement that does not exceed said first predetermined diameter, and a lower rounded shaft portion that has a second predetermined diameter that is less than said first predetermined diameter; providing a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having an upper rounded opening that is sufficiently large to allow insertion and rotation of said upper rounded shaft portion, said lower main body flange having a lower rounded opening that is sufficiently large to allow insertion and rotation of said lower rounded shaft portion, said main body portion having teeth disposed at least along predetermined portions of an outer surface of said main body portion; providing a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam having at least one square opening that is offset from the center of said cam and that is adapted to engage said square shaft portion so that said cam rotates between a closed position and an extended position relative to said main body, said cam having teeth to engage said drain flange; assembling said driver, said main body and said cam to provide an assembled tool; placing said assembled tool in a drain flange; and applying torque in a counterclockwise direction to said socket wrench to remove said drain flange.
- 11. A tool for inserting and removing a drain flange comprising:
a driver having a round shaft portion that has a predetermined diameter and a square shaft portion at a first end of said driver that has a diagonal, corner to corner measurement that does not exceed said predetermined diameter, and a square receptacle at a second end of said driver that is adapted to receive a socket wrench; a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having a round opening in which said round shaft portion of said driver fits and rotates, said main body having teeth disposed along predetermined portions of an outer surface of said main body; a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam having a square opening that is offset from a center point of said cam, said square opening being adapted to engage said square shaft portion of said driver so that said round shaft portion of said driver rotates in said round opening of said upper main body flange and rotates said cam between a closed position and an extended position relative to said main body, said cam having teeth to engage said drain flange in said extended position.
- 12. The tool of claim 11 further comprising:
a nub attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body rests against an inner surface of said drain flange.
- 13. The tool of claim 12 wherein said nub further comprises:
a nub that exerts a force on said arm in counterclockwise direction whenever said driver creates a counterclockwise torque so that said main body rotates in a counterclockwise direction in said drain flange around said nub until said teeth on said main body engage an inner surface of said drain flange and said cam is rotated to said extended position so that said teeth on said cam engage said inner surface of said drain flange.
- 14. The tool of claim 11 further comprising an opening formed in said upper main body flange and said lower main body flange that is adapted to receive a bolt that is engaged by said teeth on said cam whenever said cam is rotated in a counterclockwise direction, so that said bolt can be rotated in a counterclockwise direction.
- 15. The tool of claim 12 further comprising an opening formed in said upper main body flange and said lower main body flange that is adapted to receive a bolt that is engaged by said teeth on said cam whenever said cam is rotated in a counterclockwise direction, so that said bolt can be rotated in a counterclockwise direction.
- 16. The tool of claim 13 further comprising an opening formed in said upper main body flange and said lower main body flange that is adapted to receive a bolt that is engaged by said teeth on said cam whenever said cam is rotated in a counterclockwise direction, so that said bolt can be rotated in a counterclockwise direction.
- 17. The tool of claim 11 wherein said square shaft is adapted to be force fit into said square opening of said cam.
- 18. The tool of claim 11 further comprising a detent ball on said square shaft portion that engages a slot in said square opening of said cam.
- 19. A method of removing a drain flange comprising:
providing a drain flange removal tool comprising: a driver having a round shaft portion that has a predetermined diameter and a square shaft portion at a first end of said driver that has a diagonal, corner to corner measurement that does not exceed said predetermined diameter, and a square receptacle at a second end of said driver that is adapted to receive a socket wrench; a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having a round opening in which said round shaft portion of said driver fits and rotates, said main body having teeth disposed along predetermined portions of an outer surface of said main body; a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam having a square opening that is offset from a center point of said cam, said square opening being adapted to engage said square shaft portion of said driver so that said round shaft portion of said driver rotates in said round opening of said upper main body flange and rotates said cam between a closed position and an extended position relative to said main body, said cam having teeth to engage said drain flange in said extended position; a nub attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body portion rests against an inner surface of said drain flange; assembling said driver, said main body and said cam to provide an assemble tool; placing said assembled tool in a drain flange; applying torque in a counterclockwise direction to said socket wrench to remove said drain flange.
- 20. The method of claim 19 further comprising applying a torque in a clockwise direction to said socket wrench to insert said drain flange.
- 21. A tool for inserting and removing a drain flange comprising:
first means for driving a cam in both a counterclockwise and clockwise direction, said first means having a round shaft portion that has a predetermined diameter and a square shaft portion at a first end of said driver that has a diagonal, corner to corner measurement that does not exceed said predetermined diameter, and a square receptacle at a second end of said driver that is adapted to receive a socket wrench; second means for transferring a torque from said first means to said drain flange, said second means having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having a round opening in which said round shaft portion of said driver fits and rotates, said main body having teeth disposed along predetermined portions of an outer surface of said main body; third means for transferring said torque from said first means to said drain flange, said third means having a thickness that allows said cam to be inserted and rotated in said slot, said cam having a square opening that is offset from a center point of said cam, said square opening being adapted to engage said square shaft portion of said driver so that said round shaft portion of said driver rotates in said round opening of said upper main body flange and rotates said cam between a closed position and an extended position relative to said main body, said cam having teeth to engage said drain flange in said extended position; fourth means for engaging an arm of drain flange and transferring said torque from said first means to said drain flange through said arm, said fourth means attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body portion rests against an inner surface of said drain flange, and exerts a force on said arm in counterclockwise direction whenever said driver creates a counterclockwise torque so that said main body portion rotates in a counterclockwise direction in said drain flange around said nub until said teeth on said main body portion engage an inner surface of said drain flange and said cam is rotated to said extended position so that said teeth on said cam engage said inner surface of said drain flange.
- 22. A tool for inserting and removing drain flanges comprising:
a driver having an upper rounded portion and a lower rounded portion; a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having an upper rounded opening that is sufficiently large to allow insertion and rotation of said upper rounded portion, said lower main body flange having a lower rounded opening that is sufficiently large to allow insertion and rotation of said lower rounded portion, said main body having a functional surface disposed at least along predetermined portions of an outer surface of said main body; and, a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam attached to said driver in a position that is offset from a center point of said cam so that said cam rotates between a closed position and an extended position relative to said main body, said cam having a frictional surface that engages said drain flange.
- 23. The tool of claim 22 further comprising an additional cam that is a different size from said cam to allow said tool to be used with various size drain flanges.
- 24. The tool of claim 22 further comprising:
a nub attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body rests against an inner surface of said drain flange, and exerts a force on said arm in counterclockwise direction whenever said driver creates a counterclockwise torque so that said main body rotates in a counterclockwise direction in said drain flange around said nub until said frictional surface on said main body engages an inner surface of said drain flange and said cam is rotated to said extended position so that said frictional surface on said cam engage said inner surface of said drain flange.
- 25. A method of removing a drain flange comprising:
providing a driver having an upper rounded portion and a lower rounded portion; providing a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having an upper rounded opening that is sufficiently large to allow insertion and rotation of said upper rounded portion, said lower main body flange having a lower rounded opening that is sufficiently large to allow insertion and rotation of said lower rounded portion, said main body having a frictional surface disposed at least along predetermined portions of an outer surface of said main body; providing a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam attached to said driver in a position that is offset from the center of said cam so that said cam rotates between a closed position and an extended position relative to said main body, said cam having a frictional surface that engages said drain flange; assembling said driver, said main body and said cam to provide an assembled tool; placing said assembled tool in a drain flange; and applying torque in a counterclockwise direction to said socket wrench to remove said drain flange.
- 26. A tool for inserting and removing a drain flange comprising:
a driver having a round portion that is adapted to receive torque; a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having an opening in which said round portion of said driver fits and rotates, said main body having a frictional surface disposed along predetermined portions of an outer surface of said main body; a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam attached to said driver in a position that is offset from a center point of said cam so that said round portion of said driver rotates in said round opening of said upper main body flange and rotates said cam between a closed position and an extended position relative to said main body, said cam having a frictional surface to engage said drain flange in said extended position.
- 27. The tool of claim 26 further comprising:
a nub attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body rests against an inner surface of said drain flange, and exerts a force on said arm in counterclockwise direction whenever said driver creates a counterclockwise torque so that said main body rotates in a counterclockwise direction in said drain flange around said nub until said frictional surface on said main body engages an inner surface of said drain flange and said cam is rotated to said extended position so that said frictional surface on said cam engages said inner surface of said drain flange.
- 28. The tool of claim 26 further comprising an opening formed in said upper main body flange and said lower main body flange that is adapted to receive a bolt that is engaged by said frictional surface on said cam whenever said cam is rotated in a counterclockwise direction, so that said bolt can be rotated in a counterclockwise direction.
- 29. A method of providing a tool for inserting and extracting a drain flange comprising:
providing a driver having a round portion that is adapted to receive torque applied to said driver; providing a main body having an upper main body flange and a lower main body flange that are coupled via a main body support to form a slot between said upper main body flange and said lower main body flange, said upper main body flange having a round opening in which said round portion of said driver fits and rotates, said main body having a frictional surface disposed along predetermined portions of an outer surface of said main body; providing a cam having a thickness that allows said cam to be inserted and rotated in said slot, said cam attached to said driver in a position that is offset from a center point of said cam so that said round portion of said driver rotates in said round opening of said upper main body flange and rotates said cam between a closed position and an extended position relative to said main body, said cam having a frictional surface that engages said drain flange in said extended position; providing a nub attached to said lower main body flange that is adapted to engage an arm of said drain flange and exert a clockwise force on said arm whenever said driver creates a clockwise torque so that said cam is forced against said main body support and said main body rotates in a clockwise direction in said drain flange around said nub until a smooth section of said main body portion rests against an inner surface of said drain flange, and exert a force on said arm in a counterclockwise direction whenever said driver creates a counterclockwise torque so that said main body rotates in a counterclockwise direction in said drain flange around said nub until said frictional surface on said main body engages an inner surface of said drain flange and said cam is rotated to said extended position so that said frictional surface on said cam engages said inner surface of said drain flange.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is based upon and claims the benefit of U.S. Provisional Patent Application 60/473,816 entitled “Tool for Removing and Tightening Screw-On Drains” filed May 27, 2003, and U.S. Provisional Patent Application 60/569,212 entitled “Tool for Removing and Tightening Screw-On Drains” filed May 7, 2004. The entire contents of both are hereby incorporated by reference for all that they disclose and teach.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60473816 |
May 2003 |
US |
|
60569212 |
May 2004 |
US |