Modified vehicle transmission hydraulic valve circuit for forward sprag protection
12007019 ยท 2024-06-11
Assignee
Inventors
Cpc classification
F16H61/0267
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2061/0279
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2061/0062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H61/0009
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2200/0043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H61/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H61/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A modified hydraulic circuit for an OEM vehicle transmission, which transmission has a forward clutch, a forward clutch hub and a forward sprag having an inner sprag race and an outer sprag race, an overrun clutch and an overrun clutch hub, the forward clutch and the forward sprag providing a link to a planetary gear train to propel the vehicle forward, the forward clutch hub defining the outer sprag race, the overrun clutch hub defining the inner sprag race, a hydraulic valve body having a plurality of passages and a separator plate, and a 1-2 shift valve, a 2-3 shift valve, a 3-4 shift valve and a 3-4 relay valve, and a gear shift valve, includes a blockage in the passage fluidically connecting the 2-3 shift valve to the overrun clutch, a blockage in the passage fluidically connecting the gear shift valve to the 2-3 shift valve, removal of a movable element from the first check valve body and a passage from the gear shift valve to the overrun clutch via the first check valve body, wherein when operating in the D4 mode, the forward clutch is applied and the overrun clutch is applied and are locked to one another, such that the forward sprag clutch is ineffective. A method of modifying the hydraulic circuit is disclosed.
Claims
1. A modified hydraulic circuit for an OEM vehicle transmission, the transmission having a forward clutch, a forward clutch hub and a forward sprag having an inner sprag race and an outer sprag race, an overrun clutch and an overrun clutch hub, the forward clutch and the forward sprag providing a link to a planetary gear train to propel the vehicle forward, the forward clutch hub defining the outer sprag race, the overrun clutch hub defining the inner sprag race, the OEM vehicle transmission, when operating in a D4 mode, applying the forward clutch but not applying the overrun clutch, the OEM vehicle transmission further including a hydraulic valve body having a plurality of passages and a separator plate, and further including a 1-2 shift valve, a 2-3 shift valve, a 3-4 shift valve and a 3-4 relay valve, and a gear shift valve, one of the plurality of passages fluidically connecting the 2-3 shift valve to the overrun clutch via a first check valve, the first check valve having a body and a movable element ball, another of the plurality of passages fluidically connecting the gear shift valve to the 2-3 shift valve, the modified hydraulic circuit comprising: a first blockage in the passage fluidically connecting the 2-3 shift valve to the overrun clutch; a second blockage in the passage fluidically connecting the gear shift valve to the 2-3 shift valve; removal of the movable element ball from the first check valve body; and a passage from the gear shift valve to the overrun clutch via the first check valve body, wherein when operating in the D4 mode, the forward clutch is applied and the overrun clutch is applied and are locked to one another, such that the forward sprag is ineffective.
2. The modified hydraulic circuit of claim 1, wherein the first blockage is a plug in the separator plate.
3. The modified hydraulic circuit of claim 1, wherein the second blockage is a plug in the separator plate.
4. The modified hydraulic circuit of claim 1, wherein the first blockage is a plug in the valve body.
5. The modified hydraulic circuit of claim 1, wherein the second blockage is a plug in the valve body.
6. The modified hydraulic circuit of claim 1, wherein the movable element ball is a check valve ball.
7. The modified hydraulic circuit of claim 1, further including a replacement separator plate, and wherein the first and second blockages are formed by a replacement separator plate void of openings at locations that otherwise fluidically connect the 2-3 shift valve to the overrun clutch and fluidically connect the gear shift valve to the 2-3 shift valve.
8. The modified hydraulic circuit of claim 1, wherein the passage from the gear shift valve to the first check valve body is an opening in the valve body.
9. A method of modifying hydraulic circuit for an OEM vehicle transmission, the transmission having a forward clutch, a forward clutch hub and a forward sprag having an inner sprag race and an outer sprag race, an overrun clutch and an overrun clutch hub, the forward clutch and the forward sprag providing a link to a planetary gear train to propel the vehicle forward, the forward clutch hub defining the outer sprag race, the overrun clutch hub defining the inner sprag race, the OEM vehicle transmission, when operating in a D4 mode, applying the forward clutch but not applying the overrun clutch, the OEM vehicle transmission further including a hydraulic valve body having a plurality of passages and a separator plate, and further including a 1-2 shift valve, a 2-3 shift valve, a 3-4 shift valve and a 3-4 relay valve, and a gear shift valve, one of the plurality of passages fluidically connecting the 2-3 shift valve to the overrun clutch via a first check valve, the first check valve having a body and a movable element ball, another of the plurality of passages fluidically connecting the gear shift valve to the 2-3 shift valve, the method comprising: blocking the passage fluidically connecting the 2-3 shift valve to the overrun clutch; blocking the passage fluidically connecting the gear shift valve to the 2-3 shift valve; removing the movable element ball from the first check valve body; and forming a passage from the gear shift valve to the overrun clutch via the first check valve body, wherein when operating in the D4 mode, the forward clutch is applied and the overrun clutch is applied and are locked to one another, such that the forward sprag is ineffective.
10. The method of claim 9, wherein blocking the passage fluidically connecting the 2-3 shift valve to the overrun clutch is installing a plug in the separator plate.
11. The method of claim 9, wherein blocking the passage fluidically connecting the gear shift valve to the 2-3 shift valve is installing a plug in the separator plate.
12. The method of claim 9, wherein blocking the passage fluidically connecting the 2-3 shift valve to the overrun clutch is installing a plug in the valve body.
13. The method of claim 9, wherein blocking the passage fluidically connecting the gear shift valve to the 2-3 shift valve is installing a plug in the valve body.
14. The method of claim 9, further including installing a replacement separator plate, wherein the blocking of the passages is provided by a replacement separator plate void of openings at locations that otherwise fluidically connect the 2-3 shift valve to the overrun clutch and fluidically connect the gear shift valve to the 2-3 shift valve.
15. The method of claim 9, wherein forming the passage from the gear shift valve to the first check valve body is forming an opening in the valve body.
Description
DESCRIPTION OF THE FIGURES
(1) Embodiments of a modified vehicle transmission hydraulic circuit for forward sprag protection methods of making the modification are disclosed as an example and are not limited by the figures of the accompanying drawings, in which like references may indicate similar elements and in which:
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DETAILED DESCRIPTION
(12) While the present disclosure is susceptible of embodiments in various forms, there is shown in the drawings and will hereinafter be described a presently preferred embodiment with the understanding that the present disclosure is to be considered an exemplification and is not intended to limit the disclosure to the specific embodiment illustrated.
(13) Referring first to
(14) The OEM vehicle transmission 10 further includes a hydraulic valve body 36 having a plurality of passages 38 (described in more detail below) and a separator plate 40. The valve body 36 further includes a 1-2 shift valve 42, a 2-3 shift valve 44, a 3-4 shift valve 46, a 3-4 relay valve 48, and a gear shift valve 50. One of the passages 38a fluidically connects the 2-3 shift valve 44 to the overrun clutch 26 via a first check valve 52. The first check valve 52 has a body 54 and a movable element 56. The movable element 56 can be for example, a check ball. Another of the passages 38b fluidically connects the gear shift valve 50 to the 2-3 shift valve 44.
(15) In certain transmissions, such as the illustrated OEM 4L60E transmission the overrun clutch 26 with the forward clutch 28 is applied in the D3, 2 and 1 manual positions. However, most people do not select these positions; rather, they place the selector (operably connected to the gear shift valve 50) in the D4 position and drive.
(16) Referring to the application charts in
(17) To alleviate this problem, referring to
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(22) In order to carry out an embodiment of the present modified hydraulic circuit with sprag protection 58, parts of the OEM transmission hydraulic circuit are modified. In an embodiment, the separator plate 40 is modified to re-route the overrun clutch apply circuit (indicated generally at 64). This can be accomplished by, for example, removing or moving some of the oil circuits. In an embodiment, the #5 check ball 56 can be eliminated and the valve body 54 casting can be drilled to connect the D4 circuit 64 to the overrun clutch circuit as at the opening or passage 62.
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(24) In the present disclosure, the words a or an are to be taken to include both the singular and the plural. Conversely, any reference to plural items shall, where appropriate, include the singular. All patents and published applications referred to herein are incorporated by reference in their entirety, whether or not specifically done so within the text of this disclosure.
(25) It will also be appreciated by those skilled in the art that any relative directional terms such as side(s), upper, lower, top, bottom, rearward, inboard, forward, outboard and the like may be for explanatory purposes only and may not be intended to limit the scope of the disclosure.
(26) From the foregoing it will be observed that numerous modifications and variations can be made without departing from the true spirit and scope of the novel concepts of the present disclosure. It is to be understood that no limitation with respect to the specific embodiments illustrated is intended or should be inferred.