CLUTCH PLATE HAVING DISCONTINUOUS FRICTION MATERIAL PATTERN
20170370423 · 2017-12-28
Inventors
Cpc classification
F16D13/648
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D25/0638
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D69/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/127
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D25/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D13/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention comprehends friction plates, typically fabricated of metal, having friction material that is disposed in multiple concentric bands disposed in interrupted or discontinuous segments or a combination of both. In a first embodiment, the friction material is arranged in two concentric bands on each face, an inner band having a smaller radial width and an outer band having a larger radial width. In a second embodiment, the inner band is replaced with a plurality of discontinuous sections or segments wherein their circumferential separation is greater than their circumferential length. A third embodiment is similar to the second embodiment except that the inner, discontinuous segments have a circumferential length greater than their circumferential separation.
Claims
1. A friction plate for a friction clutch assembly comprising, in combination, a flat, circular plate having a first face, a second face, a center opening and a plurality of splines disposed about an edge, friction material disposed on said first face and said second face, said friction material defining a first, outer continuous band and a second, inner band radially spaced from said outer band, Therein said inner and outer bands of friction material on said first face have inner and outer diameters the same as inner and outer diameters of said inner and outer bands of friction material on said second face.
2. The friction clutch plate of claim 1 wherein said circular plate is fabricated of metal.
3. The friction clutch plate of claim 1 wherein a width of said outer band of friction material is wider than said inner band of friction material.
4. The friction clutch plate of claim 1 wherein said outer band of friction material is radially spaced from said inner band of friction material by a distance substantially equal to a width of said inner band of friction material.
5. The friction clutch plate of claim 1 wherein said inner band of friction material is discontinuous and defines arcuate segments having a length less than a spacing between adjacent segments.
6. The friction clutch plate of claim 1 wherein said inner band of friction material is discontinuous and defines arcuate segments having a length greater than a spacing between adjacent said segments.
7. The friction clutch plate of claim 1 wherein an outer edge of said outer band of friction material is disposed adjacent said splines on an outer edge of said friction plate and an inner edge of said inner band of friction material is disposed adjacent an inner edge of said friction plate.
8. A friction plate for a friction clutch assembly comprising, in combination, a circular metal plate having a first side, a second side, a center opening and a plurality of splines disposed about one of an inner and outer edge, a first, outer band of friction material and a second, inner band of friction material disposed on said first side, said first, outer band of friction material radially spaced from said second, inner band of friction material, a first, outer band of friction material and a second, inner band of friction material disposed on said second side, said first, outer band of friction material radially spaced from said second, inner band of friction material, wherein an inner diameter and an outer diameter of said first, outer band of friction material and an inner diameter and an outer diameter of said second, inner band of friction material on said first side of said circular plate are the same as an inner diameter and an outer diameter of said first, outer band of friction material and an inner diameter and an outer diameter of said second, inner band of friction material on said second side of said circular plate.
9. The friction clutch plate of claim 8 wherein a width of said first, outer band of friction material is wider than said second, inner band of friction material.
10. The friction clutch plate of claim 8 wherein said outer band of friction material is radially spaced from said inner band of friction material by a distance substantially equal to a width of said inner band of friction material.
11. The friction clutch plate of claim 8 wherein said second, inner band of friction material is discontinuous and defines arcuate segments having lengths less than a spacing between adjacent said segments.
12. The friction clutch plate of claim 8 wherein said second, inner band of friction material is discontinuous and defines arcuate segments having lengths greater than a spacing between adjacent said segments.
13. The friction clutch plate of claim 8 wherein an outer edge of said first, outer band of friction material is disposed adjacent said outer edge of said friction plate and an inner edge of said second, inner band of friction material is disposed adjacent said inner edge of said friction plate.
14. A friction clutch assembly comprising, in combination, a hub having axially extending male splines, a plurality of first plates having female splines engaging said male splines on said hub, a plurality of second plates interleaved with said first plates and having male splines, a clutch housing having female splines engaged by said male splines on said second plurality of plates, a clutch operator for applying pressure to said interleaved first and second pluralities of plates, one of said plurality of plates having friction material disposed on both faces of each of said plurality of plates, said friction material defining a first, outer continuous band and a second, inner band radially spaced from said outer band, wherein said inner and outer bands of friction material on said both faces of each clutch plate have the same inner and outer diameters.
15. The friction clutch assembly of claim 14 wherein said one of said plurality of plates having friction material disposed on both faces are friction plates and said other plurality of plates are reaction plates.
16. The friction clutch assembly of claim 14 wherein a width of said outer band of friction material is wider than said inner band of friction material.
17. The friction clutch plate of claim 14 wherein said first, outer band of friction material is radially spaced from said second, inner band of friction material by a distance substantially equal to a width of said inner band of friction material.
18. The friction clutch plate of claim 14 wherein said second, inner band of friction material is discontinuous and defines arcuate segments having a length less than a spacing between adjacent said segments.
19. The friction clutch plate of claim 14 wherein said second, inner band of friction material is discontinuous and defines arcuate segments having lengths greater than a spacing between adjacent said segments.
Description
DRAWINGS
[0013] The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way.
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
DETAILED DESCRIPTION
[0021] The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses.
[0022] With reference to
[0023] An identical pattern or arrangement of friction material is disposed on both front and back surfaces 18A and 18B and thus only the complete front surface 18A is illustrated and will be described, it being understood that the back side, surface or face 18B is identical to the front side, surface or face 18A. On the front face 18A of the friction plate 10 resides a continuous first or outer band or annulus of friction material 20 having an outer circumferential edge 22 disposed just radially inside and adjacent the minor diameter of the splines or teeth 16 on the periphery of the friction plate 10. Similarly, just inside and adjacent the inner edge 24 of the friction plate 10 resides a continuous second or inner band or annulus of friction material 26. The friction material utilized here and in the other disclosed embodiments may be either what is commonly referred to as friction paper or may be one of numerous other conventional or proprietary materials commonly utilized in friction clutch assemblies which is secured to the front and back surfaces 18A and 18B of the disc or plate 12 by an adhesive.
[0024] The width of the first band or annulus of friction material 20 is preferably approximately twice as wide as the width of the second band or annulus of friction material 26. A circular space or region 28 radially separates the inner and outer bands 20 and 26 of friction material. Preferably, the width of the circular space or region 28 between the bands 20 and 26 of friction material is approximately as wide as the width of the second, inner band 26 of friction material. As noted above, the inner and outer diameters of the bands 20 and 26 are the same width and spacing on each face 18A and 18B so that axial forces applied to the friction material 20 and 26 do not distort, i.e., warp, the friction plate 10.
[0025] Referring now to
[0026] An identical pattern or arrangement of friction material is disposed on both front and back surfaces 48A and 48B and thus only the complete front surface 48A is illustrated and will be described, it being understood that the back side, surface or face 48B is identical with regard to both spacing and arrangement of the friction material to the front side, surface or face 48A. On the front face 48A of the friction plate 40 resides a continuous first or outer band or annulus of friction material 50 having an outer circumferential edge 52 disposed just inside and adjacent the minor diameter of the splines or teeth 46 on the periphery of the friction plate 40. Similarly, just inside and adjacent the inner edge 54 of the friction plate 40 resides an interrupted or discontinuous second or inner band or annulus of friction material comprising a plurality of equally circumferentially spaced apart arcuate segments or sections 56.
[0027] The width of the first band or annulus of friction material 50 is preferably approximately twice as wide as the width of the arcuate segments or sections of friction material 56. While six segments or sections 56 each extending over approximately 10° are illustrated in
[0028] The segments or sections 56 are spaced radially inwardly from the first continuous band or annulus of friction material 50. Preferably, the width of the radial spaces 58 between the band or annulus 50 of friction material and the segments or sections 56 of friction material is approximately as wide as the width of the segments or sections 56. As noted above, the width, and inner and outer diameters of the first continuous band 50 of friction material and the number, width, inner and outer diameters and placement of the discontinuous segments or sections 56 are the same on each face 48A and 48B so that axial forces applied to the friction material 50 and 56 do not distort, i.e., warp, the friction plate 40.
[0029] Referring now to
[0030] An identical pattern or arrangement of friction material is disposed on both front and back surfaces 68A and 68B and thus only the complete front surface 68A is illustrated and will be described, it being understood that the back side, surface or face 68B is identical with regard to both spacing and arrangement of the friction material to the front side, surface or face 68A. On the front face 68A of the friction plate 60 resides a continuous first or outer band or annulus of friction material 70 having an outer circumferential edge 72 disposed just inside and adjacent the minor diameter of the splines or teeth 66 on the periphery of the friction plate 70. Similarly, just inside and adjacent the inner edge 74 of the friction plate 70 resides an interrupted or discontinuous second or inner band or annulus of friction material comprising a plurality of equally circumferentially spaced apart arcuate segments or sections 76.
[0031] The width of the first band or annulus of friction material 70 is preferably approximately twice as wide as the radial width of the arcuate segments or sections 76 of friction material. While five segments or sections 76 each extending over approximately 40° are illustrated in
[0032] The segments or sections 76 are spaced radially inwardly from the first continuous band or annulus of friction material 70. Preferably, the width of annular spaces 78 between the continuous band or annulus of friction material 70 and the segments or sections 76 of friction material is at least as wide as the width of the segments or sections 76. As noted above, the width and inner and outer diameters of the continuous band 70 and the number, width, inner and outer diameters and placement of the discontinuous segments or sections 76 are the same on each face 68A and 68B of the friction plate 60 so that axial forces applied to the friction material 70 and segments or sections 76 of friction material do not distort, i.e., warp, the friction plate 70.
[0033] Referring now to
[0034] A typical and exemplary friction pack clutch assembly having the latter configuration and incorporating the present invention is illustrated and generally designated by the reference number 100. The friction pack clutch assembly 100 includes an input hub 102 which is connected to and driven by a source of torque such as a shaft, quill, or clutch or brake component of a transmission, transfer case, differential of other torque carrying member of, for example, a motor vehicle powertrain (not illustrated). The input hub 102 includes axially extending male splines or teeth 104 which are complementary to and engage female splines or teeth 106 on a plurality of first or friction plates 108. The plurality of first or friction plates 108 each includes friction material 110 disposed on both faces which may be arranged according to any of the three embodiments of the present invention 20, 40 and 60 described directly above. The plurality of first or friction plates 108 are interleaved with a plurality of second or reaction plates 112. The reaction plates 112 are preferably fabricated of steel or aluminum and include a plurality of male splines or teeth 114 disposed about their peripheries which engage and drive complementarily configured axially extending female splines or teeth 116 on a clutch housing 120.
[0035] The clutch housing 120 may be either rotatable or stationary. On a first end of the interleaved friction clutch plates 108 and reaction plates 112, the clutch housing 120 includes an inwardly extending circular web or stop 122 and an adjacent annular backing plate 124 against which the interleaved plates 108 and 112 are compressed. On a second or opposite end of the interleaved plates 108 and 112 is an apply plate 126 which is acted upon by a piston 128 of a hydraulic, electric or pneumatic operator or actuator 130. Axial force from the operator or actuator 130 is applied across the apply plate 126, compressing the interleaved plates 108 and 112 against the backing plate 124 thereby transmitting torque through the friction pack clutch assembly 100.
[0036] Although the term “input hub” has been utilized above and the description, for reasons of clarity and simplicity, has assumed that when the clutch is engaged, torque is transmitted from the input hub 102 to the clutch housing 120, it should be appreciated that (a) not only torque may be as readily transmitted from the housing 120 of the friction pack clutch assembly 100 to the hub 102 (b) but also the assembly 100 may readily function as a brake when, as noted above, the clutch housing 120 is stationary.
[0037] It will be appreciated that friction clutch plates 20, 40 and 60 according to the present invention provide improved lubrication flow from the inner diameter of the clutch plates to their outer diameter by virtue of the radial and circumferential spacing of the bands and segments of friction material on the faces or surfaces of the plates. By providing improved lubrication flow, first of all, heat dissipation is improved and, second of all, the repeatability and proportionality of clutch engaging force versus torque transfer and thus the control of delivered torque is also improved.
[0038] The description of the invention is merely exemplary in nature and variations that do not depart from the gist of the invention are intended to be within the scope of the invention. Such variations are not to be regarded as a departure from the spirit and scope of the invention.