Park lock apparatus
US-2017234428-A1 · Aug 17, 2017 · US
US9488273B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9488273-B2 |
| Application number | US-201314074674-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 7, 2013 |
| Priority date | Nov 7, 2013 |
| Publication date | Nov 8, 2016 |
| Grant date | Nov 8, 2016 |
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Official abstract text for this publication.
A neutral locking system and method for a vehicle includes a park release shaft and a neutral locking tool. The park release shaft is operatively connected to a transmission of the vehicle such that rotation of the park release shaft in a first rotatable direction places the transmission in a neutral state. The neutral locking includes a fixture element and a rotatable element rotatably received within the fixture element. The rotatable element has one end configured to nonrotatably and removably couple to the park release shaft such that rotation of the rotatable element within the fixture element rotates the park release shaft.
Opening claim text (preview).
The invention claimed is: 1. A neutral locking system for a vehicle, comprising: a park release shaft operatively connected to a transmission of the vehicle such that rotation of the park release shaft in a first rotatable direction places the transmission in a neutral state, the park release shaft located adjacent an aperture of a transmission case housing the transmission; and a neutral locking tool for rotating the park release shaft, the neutral locking tool including: a fixture element for positioning over the aperture of the transmission case, a plunger element disposed on the fixture element, the plunger element radially movable between a retracted position wherein relative rotation of the rotatable element is allowed and a locking position wherein the plunger element inhibits relative rotation of the rotatable element, and a rotatable element rotatably received within the fixture element and having one end configured to nonrotatably and removably couple to the park release shaft such that rotation of the rotatable element within the fixture element rotates the park release shaft, wherein the rotatable element includes an aperture into which the plunger element is received when the plunger element is in the locking position and the rotatable element is rotated to thereby rotate the park release shaft and place the transmission in the neutral state. 2. The neutral locking system of claim 1 wherein the park release shaft is biased in a second rotatable direction that is opposite the first rotatable direction, and wherein rotation of the park release shaft with the neutral locking tool in the first rotatable direction is against said biasing in the second rotatable direction. 3. The neutral locking system of claim 1 wherein cooperative engagement between the rotatable element and the fixture element limits a degree of rotation of the rotatable element relative to the fixture element. 4. The neutral locking system of claim 3 wherein the cooperative engagement between the rotatable element and the fixture element limits rotation of the rotatable element between a first rotatable element position corresponding to the park release shaft being in a normal non-neutral position and a second rotatable element position corresponding to the park release shaft being in a neutral position. 5. The neutral locking system of claim 1 wherein one of the fixture element and the rotatable element defines a circumferentially elongated slot and the other of the fixture element and the rotatable element includes a fixedly secured pin, the pin received in the circumferentially elongated slot to limit rotation of the rotatable element relative to the fixture element. 6. The neutral locking system of claim 5 wherein the fixture element defines the circumferentially elongated slot in a cylindrical sleeve portion and the rotatable element includes the fixedly secured pin, the rotatable element received in the cylindrical sleeve portion with a radial extent of the rotation of the rotatable element relative to the fixture element limited by the circumferentially elongated slot. 7. The neutral locking system of claim 1 wherein rotatable element includes a mating slot adjacent a lower axial end thereof and the park release shaft includes a keyed portion configured for cooperative axial receipt within the mating slot. 8. The neutral locking system of claim 5 wherein the rotatable element includes a tool slot adjacent an upper axial end thereof for receipt of a rotating tool configured to rotate the rotatable element and thereby the park release shaft. 9. The neutral locking system of claim 1 further including: a spring urging the plunger element toward the locking position wherein the plunger element inserts into the rotatable element to limit rotation of the rotatable element relative to the fixture element. 10. The neutral locking system of claim 1 wherein the park release shaft is a stub shaft that protrudes only slightly from the transmission case and is disposed vertically spaced apart from an upper end of the engine compartment. 11. A neutral locking system for a vehicle, comprising: a park release shaft operatively connected to a transmission of the vehicle such that rotation of the park release shaft in a first rotatable direction places the transmission in a neutral state, the park release shaft located adjacent an aperture of a transmission case housing the transmission; and a neutral locking tool for rotating the park release shaft, the neutral locking tool including: a fixture element for positioning over the aperture of the transmission case, and a rotatable element rotatably received within the fixture element and having one end configured to nonrotatably and removably couple to the park release shaft such that rotation of the rotatable element within the fixture element rotates the park release shaft, wherein the park release shaft is a stub shaft that protrudes only slightly from the transmission case and is disposed vertically spaced apart from an upper end of the engine compartment, and wherein the transmission case includes an upper side with a polygonal shaped portion protruding upward therefrom, an open end of the aperture defined in an upper surface of the polygonal shaped portion, and wherein the fixture element has a lower end portion configured to complementarily fit over and couple with the polygonal shaped portion to axially align the rotatable element with the stub shaft. 12. A neutral locking method for rotating a transmission park release shaft of a vehicle to place a transmission of the vehicle in a neutral state, the method comprising: providing a neutral locking tool having a fixture element for positioning over an aperture of a transmission case of the transmission and a rotatable element rotatably received within the fixture element; positioning the fixture element over the aperture of the transmission case; and nonrotatably and removably coupling one end of the rotatable element to the park release shaft such that rotation of the rotatable element within the fixture element rotates the park release shaft wherein the nonrotatably and removably coupling includes axially coupling a lower end of the rotatable element to the park release shaft, wherein the rotatable element includes a mating slot adjacent a lower axial end thereof and the park release shaft includes a keyed portion configured for cooperative axial receipt within the mating slot. 13. The neutral locking method of claim 12 further including: rotating the rotatable element within and relative to the fixture element after nonrotatably and removably coupling the one end of the rotatable element to the park release shaft to rotate the park release shaft and place the transmission in the neutral state, wherein rotation of the of the rotatable element relative to the fixture element is limited by receipt of a pin fixedly secured to one of the rotatable element and the fixture element within a circumferentially elongated slot defined in the other of the rotatable element and the fixture element. 14. The neutral locking method of claim 13 further including: locking relative rotation between the rotatable element and the fixture element by radially inserting a plunger element of the fixture element into a radially defined aperture in the rotatable element. 15. The neutral locking system of claim 11 further including: a plunger element disposed on the fixture element, the plunger element radially movable between a retracted position wherein relative rotation of the rotatable element is allowed and a locking position wherein the plunger el
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