Claims
- 1. A method for installing a hollow threaded insert into a hole in a substrate having first and second surfaces where the insert has a hollow shaft having first and second end portions and an intermediate portion between the first end portion and the second end portion, the insert having a front flange surrounding the first end portion of the shaft for engaging the front surface of the substrate around the hole, the second end portion of the shaft having a thread, and said intermediate portion comprising a gripping means that engages the second surface when a force is applied that pulls the second end portion toward the first end portion; said method comprising:
a) placing the shaft of the insert into the hole in the substrate so that the flange of the insert contacts the first surface of the substrate; b) closing a manually operated switch c) activating a rotatable drive in response to the closed switch where the rotatable d rive has an attached drive shaft in turn having an attached mandrel so that the mandrel rotates so that threads of the mandrel mate with the threads of the insert until a nose retainer, through which the mandrel passes, contacts the flange of the insert; d) detecting when the nose retainer reaches the flange of the insert; e) stopping the rotation in response to detecting when the nose retainer reaches the flange of the insert; f) applying pressure to a piston within a cylinder where the piston has a central bore retaining the drive shaft that passes through the bore so that the applied pressure moves the drive shaft in a slide coupling toward the drive so that the motion of the drive shaft and attached mandrel pulls the second end portion of the insert toward the second surface of the substrate and collapses the intermediate portion of the insert to grip the second surface of the substrate; g) detecting when the intermediate portion has collapsed to grip the second surface of the substrate; h) turning the drive in a reverse direction to disengage the mandrel from the threads of the insert in response to sensing when the intermediate portion has collapsed to grip the second surface of the substrate; and, i) controlling steps c), e), f) and h) by means of a controller comprising a programmed logic chip in response to data received by closing of the switch in step b) and in response to data obtained in detecting steps d) and g); provided that, steps a) through h) are sequential except that step a) may be before step b) or step a) may be between steps e) and f).
- 2. The method of claim 1 wherein detecting when the intermediate portion has collapsed to grip the second surface of the substrate is accomplished by detecting an increase in pulling force when the intermediate portion has collapsed sufficiently to grip the second surface of the substrate.
- 3. The method of claim 1 wherein detecting when the intermediate portion has collapsed to grip the second surface of the substrate is accomplished by detecting the travel distance of the second end portion of the insert relative to the first end portion of the insert that corresponds to the relative travel after the intermediate portion has collapsed sufficiently to grip the second surface of the substrate.
- 4. The method of claim 1 where the manually operated switch is a hand trigger switch.
- 5. The method of claim 1 where the manually operated switch is a travel activated switch that closes when the nose retainer is pushed against the flange when the flange is in contact with the first surface of the substrate.
- 6. The method of claim 1 where the manually operated switch is activated by engaging the insert with the mandrel closing a push to start switch.
- 7. The method of claim 1 where the first and second surfaces are parallel surfaces, the hole passes through the surfaces and the intermediate portion of the insert passes through the hole.
- 8. The method of claim 1 where the hole is a blind hole, the first surface is a surface perpendicular to a longitudinal axis of the hollow shaft in contact with the front flange and the second surface is an inside surface surrounding the blind hole.
- 9. A hand held spin-pull tool for securing a hollow threaded insert in a hole in a substrate having first and second surfaces where the insert has a hollow shaft having a first end portion, a second end portion and an intermediate portion between the first end portion and the second end portion, the insert being placed in the hole and having a front flange surrounding the first end portion of the shaft for engaging the first surface of the substrate around the hole, the second end portion of the shaft having a thread, and said intermediate portion comprising a gripping means that engages the second surface when a force is applied that pulls the second end portion toward the first end portion; said tool comprising:
a) a switch activated by manual movement b) a rotatable drive activatable in response to the closed switch where the rotatable drive has an attached drive shaft in turn having an attached threaded mandrel so that upon activation of the drive, the mandrel rotates so that threads of the mandrel mate with the threads of the insert until a nose retainer, through which the mandrel passes, contacts the flange of the insert; c) means for detecting when the nose retainer reaches the flange of the insert; d) means for stopping the rotation in response to detecting when the nose retainer reaches the flange of the insert; e) a cylinder and piston where the piston has a central bore retaining the drive shaft that passes through the bore; f) a slide coupling connecting the drive shaft with the drive; g) means for applying pressure to the piston so that the applied pressure moves the drive shaft in the slide coupling toward the drive so that the motion of the drive shaft and attached mandrel pulls the second end portion of the insert toward the second surface of the substrate and collapses the intermediate portion of the insert to grip the second surface of the substrate; h) means for detecting when the intermediate portion has collapsed to grip the second surface of the substrate; i) means for turning the drive in a reverse direction to disengage the mandrel from the threads of the insert in response to sensing when the intermediate portion has collapsed to grip the second surface of the substrate; and, j) a controller for controlling the rotatable drive and the means for applying pressure, said controller comprising a programmed logic chip operating in response to data received by closing of the switch in step a) and in response to data obtained by the detecting means of paragraphs c) and h).
- 10. The tool of claim 9 where the manually operated switch is a hand trigger switch.
- 11. The tool of claim 9 where the manually operated switch is activated by engaging the insert with the mandrel closing a push to start switch.
- 12. The tool of claim 9 where the manually operated switch is a travel activated switch that closes when the nose retainer is pushed against the flange when the flange is in contact with the first surface of the substrate.
- 13. The tool of claim 9 wherein the means for detecting when the intermediate portion has collapsed to grip the second surface of the substrate is accomplished by means for detecting an increase in pulling force when the intermediate portion has collapsed sufficiently to grip the second surface of the substrate.
- 14. The tool of claim 9 wherein the means for detecting when the intermediate portion has collapsed to grip the second surface of the substrate is accomplished by means for detecting the travel distance of the second end portion of the insert relative to the first end portion of the insert that corresponds to the relative travel after the intermediate portion has collapsed sufficiently to grip the second surface of the substrate.
- 15. The tool of claim 9 where the switch is a hand trigger switch.
- 16. The tool of claim 9 where the switch is a travel activated switch that closes when the nose retainer is pushed against the flange when the flange is in contact with the first surface of the substrate.
- 17. The tool of claim 9 where the first and second surfaces are parallel surfaces, the hole passes through the surfaces and the intermediate portion of the insert passes through the hole.
- 18. The tool of claim 9 where the hole is a blind hole, the first surface is a surface perpendicular to a longitudinal axis of the hollow shaft in contact with the front flange and the second surface is an inside surface surrounding the blind hole.
- 19. The tool of claim 9 where the means for applying pressure to the cylinder is a hydraulic power supply having a hydraulic valve activatable by the controller connected to the tool by a hose.
- 20. The tool of claim 19 where the hydraulic power supply comprises an air compressor having a gas valve activatable by the controller connected to the tool by a hose.
- 21. The tool of claim 9 where the mandrel has a male thread for engagement with a female thread of the insert.
- 22. The tool of claim 9 where the drive is an air motor coupled to a gas valve connected between a pressurized gas supply and the tool by a hose, which valve is activatable by the controller.
- 23. The tool of claim 9 where the controller is connected to the manually held portion of the tool by an electrical cable.
Parent Case Info
[0001] This is a Continuation-in-Part of U.S. Ser. No. 09/707,113 filed Nov. 6, 2000 and a Continuation-in-Part of U.S. Ser. No. 10/256,530 filed Sep. 27, 2002.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09707113 |
Nov 2000 |
US |
Child |
10314585 |
Dec 2002 |
US |
Parent |
10256530 |
Sep 2002 |
US |
Child |
10314585 |
Dec 2002 |
US |