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 a first end portion, a second end portion and an intermediate portion between the first end portion and 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 an internal 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:activating a rotatable drive having a single attached drive shaft in turn having an attached externally threaded mandrel so that the threaded portion of the mandrel rotates into the hollow threaded portion of the insert through the flange until a non-rotatable nose retainer, through which the mandrel passes, contacts the flange of the insert; moving the drive, drive shaft, mandrel and attached insert to place 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; 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 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; turning the drive in a reverse direction to disengage the mandrel from the threads in the insert; moving the mandrel, nose retainer, drive shaft and drive in a direction away from the flange of the installed insert; and controlling foregoing steps of the method by means of a controller comprising a programmed logic chip that receives data from a plurality of sensors.
- 2. The method of claim 1 where the shaft of the insert is passed through he substrate and the second surface is a rear surface of the substrate.
- 3. The method of claim 1 wherein the sensors include at least one sensor for detecting distance of movement of the mandrel.
- 4. The method of claim 1 wherein the sensors include at least one sensor for detecting pulling force applied to the mandrel.
- 5. An apparatus 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 a first end portion, a second end portion and an intermediate portion between the first end portion and 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 an internal thread and, said intermediate portion comprising a gripping means that engages the rear surface when a force is applied that pulls the second end portion toward the first end portion; said apparatus comprising:a piston; a single drive shaft; a cylinder; an externally threaded mandrel having threads that match the internal threads of the insert; a slide coupling; a rotatable drive; a non-rotatable nose retainer; means for moving the piston, drive shaft, cylinder, mandrel, slide coupling, rotatable drive and nose retainer toward the flange of the insert so that the threads of the mandrel contact the threads of the insert; means for moving the threads of the mandrel into the hollow portion of the insert through the flange so that the threads of the mandrel rotate into the threads within the hollow portion of the insert until the flange of the insert contacts the nose retainer, said means for moving and rotating comprising the drive shaft connected to the mandrel where the drive shaft is set into the slide coupling to couple it to the rotatable drive; means for moving the mandrel with attached insert to place the insert shaft into a hole in the substrate so that the flange of the insert contacts the first surface of the substrate; means for pulling the second end portion of the insert toward the second surface of the substrate by means of a pressure applied to the piston within the 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 the slide coupling toward the drive so that the motion of the drive shaft and attached mandrel collapses the intermediate portion of the insert to grip the second surface of the substrate; means for turning the drive in a reverse direction to disengage the screw head from the threads in the insert; means for moving the piston, drive shaft, cylinder, mandrel, slide coupling, rotatable drive and nose retainer away from the flange of the installed insert; and means for controlling the means for moving the piston, the means for moving the threads of the mandrel, the means for moving the mandrel with attached insert, means for pulling and means for turning, comprising a programmed logic chip and data sensors.
- 6. The apparatus of claim 5 wherein the means for moving the piston, drive shaft, cylinder, mandrel, slide coupling, rotatable drive and nose retainer toward and away from the insert comprises a slide connecting the cylinder to a frame where the cylinder is in turn interconnected to the piston, drive shaft, mandrel, slide coupling, rotatable drive and nose retainer.
- 7. The apparatus of claim 6 where the means for moving the piston, drive shaft, cylinder, mandrel, slide coupling, rotatable drive and nose retainer toward and away from the insert includes hydraulic cylinders connected between the frame and a bracket holding the cylinder where the bracket operates within the slide.
- 8. The apparatus of claim 5 wherein the sensors include at least one sensor for detecting distance of movement of the mandrel.
- 9. The apparatus of claim 5 wherein the sensors include at least one sensor for detecting pulling force applied to the mandrel.
- 10. 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 a first end portion, a second end portion and an intermediate portion between the first end portion and 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 an internal 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:activating a rotatable drive having an attached single drive shaft in turn having an attached externally threaded mandrel so that the threaded portion of the mandrel rotates into the hollow threaded portion of the insert through the flange until a non-rotatable nose retainer, through which the mandrel passes, contacts the flange of the insert; moving the drive, drive shaft, mandrel and attached insert to place 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; 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 mandrel 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; turning the drive in a reverse direction to disengage the mandrel from the threads in the insert; moving the mandrel, nose retainer, drive shaft and drive in a direction away from the flange of the installed insert; and controlling foregoing steps of the method by means of a controller comprising a programmed logic chip that receives data from a plurality of sensors.
- 11. An apparatus 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 a first end portion, a second end portion and an intermediate portion between the first end portion and 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 an internal thread and, said intermediate portion comprising a gripping means that engages the rear surface when a force is applied that pulls the second end portion toward the first end portion; said apparatus comprising:a piston; a single drive shaft; a cylinder; an externally threaded mandrel having threads that match the internal threads of the insert; a coupling; a rotatable drive; a non-rotatable nose retainer; means for moving the piston, drive shaft, cylinder, mandrel, coupling, rotatable drive and nose retainer toward the flange of the insert so that the threads of the mandrel contact the threads of the insert; means for moving the threads of the mandrel into the hollow portion of the insert through the flange so that the threads of the mandrel rotate into the threads within the hollow portion of the insert until the flange of the insert contacts the nose retainer, said means for moving and rotating comprising the drive shaft connected to the mandrel where the drive shaft is set into the coupling to couple the drive shaft to the rotatable drive; means for moving the mandrel with attached insert to place the insert shaft into a hole in the substrate so that the flange of the insert contacts the first surface of the substrate; means for pulling the second end portion of the insert toward the second surface of the substrate by means of a pressure applied to the piston within the 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 and attached mandrel toward the drive so that the intermediate portion of the insert collapses to grip the second surface of the substrate and so that the drive shaft moves away from the substrate; means for turning the drive in a reverse direction to disengage the screw head from the threads in the insert; means for moving the piston, drive shaft, cylinder, mandrel, coupling, rotatable drive and nose retainer away from the flange of the installed insert; and means for controlling the means for moving the piston, the means for moving the threads of the mandrel, the means for moving the mandrel with attached insert, means for pulling and means for turning, comprising a programmed logic chip and data sensors.
Parent Case Info
This is a continuation application of U.S. Ser. No. 09/707,113, filed Nov. 6, 2000 which is now U.S. Pat. No. 6,490,905.
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Continuations (1)
|
Number |
Date |
Country |
Parent |
09/707113 |
Nov 2000 |
US |
Child |
10/256530 |
|
US |