Claims
- 1. A power driven wrench for selectively rotating a threaded fastening device relative to a correspondingly threaded member, the wrench comprising:
- a housing;
- an inertial mass rotatably supported along a rotational axis in the housing;
- a drive motor selectively connected to the inertial mass for selectively rotationally driving the inertial mass to rotate about the rotational axis;
- an output drive mechanism selectively connected to the inertial mass for selectively transferring rotational energy from the inertial mass to the fastening device;
- a clutch located between the inertial mass and the output drive mechanism for selectively connecting the inertial mass to the output drive mechanism; and
- isolation devices located between the housing and the inertial mass, drive motor and clutch for rotationally isolating the inertial mass, drive motor and clutch from the housing such that torque reaction from the fastening member is substantially prevented from being transmitted to the housing.
- 2. The wrench of claim 1, wherein the isolation devices include bearings located between the housing and the clutch and between the clutch and inertial mass.
- 3. The wrench of claim 1 wherein the isolation devices include a coaxial mounting of the inertial mass, drive motor, clutch and output mechanism on the rotational axis of the housing.
- 4. The wrench of claim 1, wherein the isolation devices include deactivation switches for disconnecting the drive motor from the inertial mass when the clutch is connected to the inertial mass.
- 5. The wrench of claim 1, wherein the output drive mechanism transfers rotational energy of about 20,000-80,000 foot pounds to the fastening member.
- 6. A power driven wrench for selectively rotating a threaded fastening device relative to a correspondingly threaded member, the wrench comprising:
- a housing;
- an inertial mass rotatably supported along a rotational axis in the housing, the inertial mass including a plurality of cavities located about the rotational axis;
- a drive motor selectively connected to the inertial mass for selectively rotationally driving the inertial mass to rotate about the rotational axis;
- an output drive mechanism selectively connected to the inertial mass for selectively transferring rotational energy from the inertial mass to the fastening device;
- a clutch located between the inertial mass and the output drive mechanism for selectively connecting the inertial mass to the output device, the clutch being coaxial with the inertial mass along the rotational axis and comprising:
- a plurality of pins radially spaced about the rotational axis and each having a longitudinal axis parallel to the rotational axis, the plurality of pins being movable between a radially retracted disengaged position and a radially extended engaged position;
- each of the plurality of the pins in the retracted position being withdrawn inside the clutch to allow the inertial mass to rotate relative to the output drive mechanism, each of the plurality of pins in the engaged position being radially extended into a corresponding one of the plurality of cavities in the inertial mass to transfer rotational energy from the inertial mass to the output drive mechanism.
- 7. The power driven wrench of claims 6, wherein each of the plurality of cavities includes a bottom section and two side sections, each of the plurality of pins in the engaged position being confined between the clutch and the one side of the corresponding cavity.
- 8. The power driven wrench of claim 6, further comprising a sensor for determining a position of the plurality of cavities relative to the plurality of pins, the plurality of pins being moved from the retracted position to the engaged position in response to the sensor determining the position of the cavities.
- 9. The power driven wrench of claim 6, wherein the inertial mass includes a plurality of flywheels stacked together for rotation in unison, a portion of the plurality of flywheels including the plurality of cavities, a remaining portion of the plurality of flywheels being changeable in number in accordance with load requirements for the wrench.
- 10. The power driven wrench of claim 6, further comprising a shifter rod axially movable along the rotational axis and engaging the plurality of pins for moving the plurality of pins between the retracted and engaged positions.
- 11. The power driven wrench of claim 6, wherein the shifter rod is tapered to provide a camming surface for moving the plurality of pins.
- 12. The power driven wrench of claim 11, wherein the shifter rod has first and second tapered surfaces to provide a uniform force against the plurality of pins.
- 13. The power driven wrench of claim 6, wherein the output drive mechanism transfers rotational energy of about 20,000-80,000 foot pounds to the fastening member.
Parent Case Info
This is a Continuation of application Ser. No. 08/756,487 filed Nov. 26, 1996. The entire disclosure of the prior application (s) is hereby incorporated by reference herein in its entirety.
US Referenced Citations (14)
Foreign Referenced Citations (4)
Number |
Date |
Country |
172609 |
Sep 1983 |
NLX |
1215982 |
Mar 1986 |
SUX |
1308457 A1 |
May 1987 |
SUX |
1719193 A1 |
Mar 1992 |
SUX |
Non-Patent Literature Citations (4)
Entry |
English-language abstract of NL172609. |
English-language abstract of SU 1215982 A. |
English-language abstract of SU 1308457 A1. |
English-language abstract of SU 1719193 A1. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
756487 |
Nov 1996 |
|