Claims
- 1. A multiple stage, multiple extend, end of stroke speed reducing, ball screw and nut linear actuator comprising, in combination:
a. a ball screw having helical groove and land portions with a first nut mounted thereon having complemental helical groove portions defining a ball raceway system between the screw and first nut connected with recirculant ball passages; b. said raceway system having a predetermined hand and lead, and incorporating load bearing balls; c. a mount system for said screw restraining its axial movement while permitting its rotation; d. a constant speed reversible drive connected to revolve said screw in one direction at a first constant speed and in the reverse direction, and move said first nut forwardly and rearwardly respectively; e. external helical groove and land portions of the same hand as said nut groove portion provided on said first nut concentrically with said first nut helical groove portions, but of a substantially reduced lead; f. a second rotatably restrained nut adapted to be connected to a member to be moved having end of travel speed controlling helical internal groove and land portions complementing said external groove and land portions on said first nut; and g. yieldable members on said screw in the path of said first nut for slowing travel of said first nut axially and causing rotative coupling of said ball screw and first nut and movement of said second nut at a second reduced constant speed axially to extend axial movement of said member in the same direction of axial travel as said first nut at a significantly reduced speed consonant with said reduced lead of said external groove and land portions on said first nut.
- 2. The actuator of claim 1 wherein said yieldable members are provided at each end of said screw and comprise resilient energy absorbing members providing a speed deceleration zone of travel for said actuator.
- 3. The actuator of claim 1 wherein said yieldable members comprise spring washers providing a resiliently resisted zone of travel for said first nut.
- 4. The actuator of claim 1 wherein said external groove and land portions on said first nut and said internal land and groove portions on said second nut are acme threads.
- 5. The actuator of claim 1 wherein said land and groove portions on said first nut and second nut are of a pitch on the order of one quarter of the pitch of the land and groove portions of said ball screw.
- 6. The actuator of claim 1 wherein said groove and land portions on said second nut mount an adjustable friction increasing member.
- 7. The actuator of claim 6 wherein said friction increasing member comprises a set screw received in a groove portion of said second nut in engagement, but not locking engagement with one of said second nut groove portions.
- 8. The actuator of claim 1 wherein resilient stop members are provided surrounding said yield members opposite each end of said second nut in the path thereof.
- 9. The actuator of claim 1 wherein said reduced lead of the land and groove portions of said first and second nuts is at least half the lead of said land and groove portions of said ball screw.
- 10. A multiple extend linear actuator for connection to an operating member to be moved comprising:
a. a first stage threaded elongate ball screw member with a ball nut member mounted thereon, there being first threads of a predetermined hand and lead provided interiorly on said ball nut to couple said members for relative translatory axial travel at a first constant predetermined speed; b. mechanism resiliently halting said axial travel of said members to provide a speed reduction zone of travel and then coupling said members for conjoint rotary travel; and c. a second stage threaded output nut member mounted on said ball nut member for axial travel thereon in the same axial direction, there being second threads between said nut members of the same hand as said first threads, but a significantly reduced lead relative to said first threads, to create a reduced axial constant speed travel of said output nut and operating member relative to said predetermined speed.
- 11. A method of constructing a multiple extend actuator incorporating a first ball screw with a ball nut thereon, said ball screw and ball nut having threads of a first hand and lead providing a ball raceway; there being a second rotatably restrained nut threaded on said ball nut; comprising:
a. loading balls to said raceway; b. providing mechanism revolvably mounting but axially restraining said ball screw; c. providing threads of the same hand but a substantially reduced lead on said first and second nuts; d. providing resilient stops for said ball nut for first decelerating travel of said ball nut and them coupling said ball screw and ball nut for conjoint rotation; and e. attaching a member to be actuated to said second nut for linear axial travel therewith.
- 12. The method of claim 11 comprising providing a friction adjusting element on said second nut to frictionally resist but not prevent its travel on said ball nut.
- 13. A method of operating a multiple extend actuator comprising a ball screw with a ball nut threaded thereon to provide a helical raceway between them having load bearing balls therein, the threading having a hand and lead; and there being an actuator nut attached to the system to be operated threaded on said ball nut for axial travel thereon, the threading of said actuator nut being of the same hand but of a significantly reduced lead relative to said ball nut threading; comprising:
a. revolving said ball screw at a constant speed in one direction of rotation while restraining its axial travel to move said ball nut axially in a forwarding direction; b. resiliently blocking axial travel of said ball nut after a predetermined movement thereof and decelerating its travel before coupling it to said screw for conjoint rotation therewith; c. utilizing the rotation of said ball nut to drive said actuator nut axially forwardly in the same direction of axial travel as said ball nut but at a significantly reduced speed.
- 14. The method of claim 13 wherein said actuator nut is moved at a speed reduced at least in half.
- 15. The method of claim 13 wherein steps a-c are followed in a reversing direction when said ball screw is rotated in the reverse direction.
- 16. The method of claim 29 wherein, after a predetermined axial travel of said actuator nut on said ball nut at a slower axial travel speed, the axial travel of said actuator nut is halted.
Parent Case Info
[0001] This application is a continuing patent application of application Ser. No. 09/841,216, filed Apr. 24, 2001 and claims the priority of U.S. provisional application 60/200,120, filed Apr. 27, 2000. This invention relates to ball screw linear actuators and, more particularly, to multiple stage, sequenced, multiple extend actuators with end of stroke decelerated speed.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60200120 |
Apr 2000 |
US |
Continuations (1)
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Number |
Date |
Country |
Parent |
09841216 |
Apr 2001 |
US |
Child |
10386776 |
Mar 2003 |
US |