CLUTCH ASSEMBLY, KIT, AND METHOD
20180283466 ยท 2018-10-04
Inventors
Cpc classification
F16D13/648
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/757
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2300/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2250/0084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2250/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/683
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D13/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Clutch kits and methods for converting a stock clutch assembly and the clutch assemblies resulting therefrom. Such a method entails modifying a stock clutch assembly comprising a stock drum and stock friction and driving plates installed in an interior cavity of the drum. The method includes securing a pressure plate to the drum with threads to enclose stock or modified friction and driving plates within the interior cavity of the drum. The pressure plate can be configured to axially externally extend the interior cavity of the drum so that additional friction and/or driving plates may accommodated within the interior cavity.
Claims
1. A clutch assembly comprising: a drum having an interior cavity; friction and driving plates installed in the interior cavity; and a pressure plate secured to the drum with threads and enclosing the friction and driving plates within the interior cavity of the drum, the pressure plate having a recessed surface contacted by one of the friction and driving plates and is configured to be threaded onto the drum to axially externally extend the interior cavity of the drum so that additional friction and/or driving plates can be accommodated within the interior cavity.
2. The clutch assembly according to claim 1, further comprising an apply ring installed in the interior cavity and an apply plate between the apply ring and the friction and driving plates and contacting one of the friction and driving plates, the apply ring having legs contacting recessed surfaces in the apply plate.
3. The clutch assembly according to claim 1, further comprising means for calibrating the extent to which the pressure plate is threaded onto the drum, and the calibrating means modifies clearances between the friction and driving plates.
4. The clutch assembly according to claim 3, wherein the calibrating means comprises set screws located at predetermined angular positions on the pressure plate.
5. The clutch assembly according to claim 4, wherein the calibrating means further comprises dimples mutually formed in the drum for engagement by the set screws.
6. A kit for modifying a clutch assembly having a drum and a stock apply plate and stock friction and driving plates installed in an interior cavity of the drum, the kit comprising: a replacement pressure plate configured to be secured to the drum with threads to enclose the stock friction and driving plates within the interior cavity of the drum, the pressure plate having a recessed surface contacted by one of the friction and driving plates; and a replacement apply plate configured for contacting one of the stock friction and driving plates.
7. The kit according to claim 6, wherein the clutch assembly further has a stock apply ring installed in the interior cavity of the drum and the replacement apply plate is configured to be installed in the interior cavity of the drum between the stock apply ring and the stock friction and driving plates and contact one of the stock friction and driving plates, wherein the replacement apply plate has recessed surfaces and the stock apply ring has legs contacting the recessed surfaces in the replacement apply plate when the apply ring and replacement apply plate are installed in the interior cavity of the drum.
8. The kit according to claim 6, further comprising means for calibrating the extent to which the pressure plate is threaded onto the drum, and the calibrating means modifies clearances between the friction and driving plates.
9. The kit according to claim 8, wherein the calibrating means comprises set screws located at predetermined angular positions on the pressure plate.
10. The kit according to claim 9, wherein the calibrating means further comprises dimples mutually formed in the drum for engagement by the set screws.
11. The kit according to claim 6, wherein the clutch assembly further comprises replacement friction and driving plates that have larger outer diameters and/or smaller inner diameters than the stock friction and driving plates.
12. The kit according to claim 11, wherein the clutch assembly further comprises a stock ring gear mechanically coupled to the stock friction plates, the kit further comprising a replacement ring gear having an outer diameter sized to mechanically couple with the replacement friction plates.
13. A method of modifying a clutch assembly comprising a drum and a stock apply plate and stock friction and driving plates installed in an interior cavity of the drum, the method comprising securing a pressure plate to the drum with threads to enclose the interior cavity of the drum.
14. The method according to claim 13, wherein the drum is a stock drum, the method further comprising machining the stock drum to form threads that are complementary to the threads of the pressure plate.
15. The method according to claim 13, wherein the pressure plate axially externally extends the interior cavity of the drum, the method further comprising installing additional friction and/or driving plates within the interior cavity of the drum.
16. The method according to claim 13, wherein the drum is a stock drum, the method further comprising: machining the stock drum to increase an inner diameter of its interior cavity; and replacing the stock friction and driving plates with replacement friction and driving plates that have larger outer diameters and/or smaller inner diameters than the stock friction and driving plates.
17. The method according to claim 16, wherein the clutch assembly further comprises a stock ring gear mechanically coupled to the stock friction plates, the method further comprising machining the stock ring gear to have an outer diameter sized to mechanically couple with the replacement friction plates.
18. The method according to claim 13, further comprising calibrating the extent to which the pressure plate is threaded onto the drum and thereby modifying clearances between the friction and driving plates.
19. The method according to claim 13, wherein the clutch assembly further has a stock apply ring installed in the interior cavity of the drum and a stock apply plate installed in the interior cavity of the drum between the stock apply ring and the stock friction and driving plates and contacting one of the stock friction and driving plates, the method further comprising replacing the stock apply plate with a replacement apply plate having recessed surfaces that are contacted by legs of the stock apply ring when the stock apply ring and replacement apply plate are installed in the interior cavity of the drum.
20. The method according to claim 19, wherein the recessed surfaces of the replacement apply plate axially internally extend the interior cavity of the drum.
21. A method of modifying a clutch assembly comprising a stock drum and stock friction and driving plates installed in an interior cavity of the stock drum, the method comprising: removing the stock friction and driving plates from the interior cavity of the stock drum; producing a modified drum having a modified interior cavity by machining the stock drum to increase an inner diameter of the interior cavity thereof; and installing in the modified interior cavity of the modified drum replacement friction and driving plates that have larger outer diameters than the stock friction and driving plates and optionally have smaller inner diameters than the stock friction and driving plates.
22. The method according to claim 21, wherein the replacement friction plates have smaller inner diameters than the stock friction plates and the clutch assembly further comprises a stock ring gear mechanically coupled to the stock friction plates, the method further comprising machining the stock ring gear to have an outer diameter sized to mechanically couple with the replacement friction plates.
23. The method according to claim 21, the method further comprising securing a pressure plate to the modified drum with threads to enclose the modified interior cavity of the modified drum.
24. The method according to claim 23, the method further comprising machining the modified drum to form threads that are complementary to the threads of the pressure plate.
25. The method according to claim 23, wherein the pressure plate axially externally extends the modified interior cavity of the modified drum, and more of the replacement friction and driving plates are installed in the modified interior cavity than were the stock friction and driving plates installed in the interior cavity of the stock drum.
26. The method according to claim 23, further comprising calibrating the extent to which the pressure plate is threaded onto the modified drum and thereby modifying clearances between the replacement friction and driving plates.
27. The method according to claim 21, wherein the clutch assembly further has a stock apply ring installed in the interior cavity of the stock drum and a stock apply plate installed in the interior cavity of the stock drum between the stock apply ring and the stock friction and driving plates and contacting one of the stock friction and driving plates, the method further comprising replacing the stock apply plate with a replacement apply plate having recessed surfaces that are contacted by legs of the stock apply ring when the stock apply ring and the replacement apply plate are installed in the modified interior cavity of the modified drum.
28. The method according to claim 27, wherein the recessed surfaces of the replacement apply plate axially internally extend the modified interior cavity of the modified drum.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0024] The invention will be described below in reference to a particular clutch assembly and components shown in the drawings. While certain components of the clutch assembly may be associated with particular transmissions, for example, a line of transmissions in commercial use and known as General Motors Turbo Hydra-Matic (THM) transmissions 700R4, 4L60, 4L60E, 4L65E, 4L70E, and 4L79E, it will be appreciated that aspects and teachings of the invention are generally applicable to other transmissions. More generally, the invention is applicable to clutch assemblies for use in transmissions (drivetrains) of types used in on-road and off-road motor vehicles to interrupt the transfer of power from an engine (motor) to the drive wheels of a vehicle, and particularly to provide the mechanical means to selectively enable and disable power transmission between an input (driving) shaft and a driven shaft of a transmission.
[0025] The drawings schematically represent a limited portion and certain components of a clutch assembly (hereinafter referred to as a clutch assembly 10). The clutch assembly 10 is represented as a type commonly referred to as a friction clutch, and is particularly represented as comprising an input housing or drum 12 that might be installed in one of the aforementioned Turbo Hydra-Matic transmissions. The clutch assembly 10 comprises a stack of interleaved driving and driven members, or plates (generally referred to herein as clutch plates or simply plates), of which a single plate 14 is shown in
[0026] Each clutch plate 14 generally has a ring (annular) disk shape that defines an inner perimeter 22, an outer perimeter 24, and oppositely-disposed axial surfaces (friction faces) 26. To promote power transmission between adjacent plates 14, at least some of the plates 14 have a friction material on one or both of their friction faces 26, which engage the friction faces 26 of one or two immediately adjacent plates 14. The clutch plates 14 bearing a friction material will be referred to herein as friction plates 14, whereas other plates 14 (including the plate 14 shown in
[0027] Because the number, size, mass, rigidity, and materials of the plates 14 are factors that determine how much torque can be transferred through the clutch assembly 10, one aspect of the invention is to enable the use of more and/or thicker plates 14 in the clutch assembly 10, and another aspect of the invention is to enable the surface areas of the friction faces 26 of the plates 12 and 14 to be increased relative to stock plates of a similar type of clutch assembly, for example, as a result of the drum 12, plates 14, pressure plate 16, and/or ring gear 20 being particularly configured for this purpose. These aspects can be individually used or combined to allow for higher torque levels before excessive heating and/or slippage occurs between the plates 12 and 14. As discussed below, embodiments of the invention use modified components that differ from stock components as discussed below, permit certain modified components to be fabricated from stock components, and in some embodiments permit the use of combinations of modified components and unmodified stock components. As used herein, a stock component refers to an OEM component and to aftermarket components intended to be interchangeable therewith.
[0028] The following discussion will describe a particular nonlimiting embodiment that combines both of the above-noted aspects of the invention, in which at least the pressure plate 16 is configured to permit more plates 12 and/or 14 to be assembled in the drum 12, and the plates 14 are manufactured to have friction faces 26 whose surface areas are relatively larger in proportion to the drum 12 than stock plates installed in an equivalent stock drum as a result of the plates 14 having smaller inner diameters defined by their inner perimeters 22 and larger outer diameters defined by their outer perimeters 24. In preferred embodiments, an increase in surface area of more than 200% can be achieved in this manner, though lesser and greater increases are foreseeable. It is also foreseeable that relatively larger surface areas for the friction faces 26 could be attained by either decreasing their inner diameters or increasing their outer diameters.
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[0030] An example of a driving plate 14 configured for assembly with the drum 12 of
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[0033] To prevent spin off of the pressure plate 16 due to the rotational motion of the clutch assembly 10 and its drum 12, threaded holes 42 have been machined through the pressure plate 16 to receive set screws 18 (
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[0037] The stacks shown in
[0038] According to certain nonlimiting embodiments, the stock drum 112 can be modified by forming threads 30 around its rim 28 and increasing the internal diameter of its cavity 13a to allow assembly of the modified friction and driving plates 14, pressure plate 16, ring gear 20, and apply plate 46. Alternatively, the drum 12 could be specifically manufactured as a replacement for the stock drum 112. The plates 14, 16, and 46 and the ring gear 20 may be provided as a kit for assembly with the modified or replacement drum 12, and as such the modified plates 14, 16, and 46 and modified ring gear 20 may be referred to as replacement plates 14, 16, and 46 and a replacement ring gear 20 for the drum 12. It should be appreciated that a variety of replacement friction and driving plates 14 of various thicknesses can be provided in a kit to accommodate drums 12 of different sizes and to achieve a range of clutch clearances with the drum 12. Such a kit may be used to improve the performance of a stock clutch assembly, including increasing the upper toque limit of the assembly by increasing the number of replacement friction plates 14, increasing the friction surface areas provided by the friction faces 26 of the replacement plates 14 in proportion to stock plates installed in an equivalent stock drum, and promoting heat transfer from the plates 14 to the drum 12.
[0039] Alternatively and according to certain additional nonlimiting embodiments, the stock drum 112 can be modified by forming threads 30 around its rim 28 without increasing the internal diameter of its cavity 113a. In such an embodiment, stock friction and driving plates 114 and a stock ring gear 120 can be utilized in combination with the modified pressure plate 16 and modified apply plate 46, which allow additional stock friction and driving plates 114 to be installed as a result of the external and internal axial extensions of the drum cavity 113a created by the modified pressure and apply plates 16 and 46. As before, the modified pressure and apply plates 16 and 46 may be provided as a kit for assembly with the modified or replacement drum 12, and as such the modified plates 16 and 46 may be referred to as replacement plates 16 and 46 for the drum 12. It should be appreciated that such a kit may be used to improve the performance of a stock clutch assembly, including increasing the upper toque limit of the assembly by increasing the number of stock friction plates 114 that can be installed in proportion to the same type of stock plates installed in an equivalent stock drum 112.
[0040] While the invention has been described in terms of a specific or particular embodiment, it should be apparent that alternatives could be adopted by one skilled in the art. For example, the clutch assembly 10 and its components could differ in appearance and construction from the embodiment described herein and shown in the drawings, functions of certain components of the clutch assembly 10 could be performed by components of different construction but capable of a similar (though not necessarily equivalent) function, and various materials could be used in the fabrication of the clutch assembly 10 and its components. In addition, the invention encompasses additional or alternative embodiments in which one or more features or aspects of the disclosed embodiment could be eliminated. Accordingly, it should be understood that the invention is not necessarily limited to any embodiment described herein or illustrated in the drawings. It should also be understood that the phraseology and terminology employed above are for the purpose of describing the illustrated embodiment and do not necessarily serve as limitations to the scope of the invention. Therefore, the scope of the invention is to be limited only by the following claims.