Friction part for a frictionally working device
12523263 ยท 2026-01-13
Assignee
Inventors
Cpc classification
F16D13/648
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2069/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/128
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2069/009
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2065/1324
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/74
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D13/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/74
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A friction part for a frictionally working device includes a plurality of friction lining elements arranged to form a circular disk-shaped friction surface having radial slots disposed between the friction lining elements. The radial slots are arranged to receive a coolant or lubricant traversing from a radial inside of the friction surface to a radial outside of the friction surface. The conformation of the friction lining elements and the arrangement of the friction lining elements relative to one another are optimized with regard to an interdependency between a drawing-in of air and a separation behavior of the frictionally working device, and drag losses. The radial slots may extend in a diffuser-like manner from the radial inside to the radial outside, or the radial slots may narrow in a nozzle-like manner from the radial inside to the radial outside.
Claims
1. A friction part for a frictionally working device, having friction lining elements which are arranged with radial slots between one another so as to form a friction surface in the form of a circular disk, which radial slots can be traversed from radially inside to radially outside of the friction surface by a coolant or a lubricant, wherein the radial slots are connected to one another by tangential slots, wherein the friction lining elements are not divided in a circumferential direction and divided in a radial direction to form the tangential slots, adjacent tangential slots in the circumferential direction are offset from one another in the radial direction, and a width of each radial slot increases from radially inside to radially outside by decreasing a width of each friction lining element from radially inside to radially outside.
2. The friction part according to claim 1, wherein the friction lining elements are designed and relatively spaced apart from one another in such a way that the radial slots extend in a diffuser-like manner in the radial direction in relation to the friction surface from radially inside to radially outside.
3. A wet-running clutch or brake comprising at least one friction part according to claim 1.
4. A friction part for a frictionally working device, comprising: a plurality of friction lining elements arranged to form a circular disk-shaped friction surface having radial slots disposed between the friction lining elements, wherein: the radial slots are arranged to receive a coolant or lubricant traversing from a radial inside of the friction surface to a radial outside of the friction surface; the radial slots are connected to one another by tangential slots; and the plurality of friction lining elements is radially divided to form the tangential slots; circumferentially adjacent tangential slots are offset from one another in a radial direction; and a width of each radial slot increases from the radially inside to the radially outside by decreasing a width of each friction lining element from the radially inside to the radially outside.
5. The friction part of claim 4, wherein the radial slots extend in a diffuser-like manner from the radial inside to the radial outside.
6. The friction part of claim 4, wherein each of the plurality of friction lining elements is formed as an isosceles trapezoid or an acute-angled triangle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages, features and details of the disclosure will be apparent from the following description, in which various exemplary embodiments are described in detail with reference to the drawing. In the figures:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) In
(7) A disk pack of the wet-running multi-disk clutch 1 includes steel disks 7 and lined disks 8. The lined disks 8 each include a lining carrier 9 which is connected to the inner disk carrier 2 in a rotationally fixed manner radially on the inside of a coupling region 10. The coupling region 10 of the lining carrier 9 is designed, for example, as an internal toothing that is meshed with a complementary external toothing of the inner disk carrier 2. Similarly, the steel disks 7 are connected to the outer disk carrier 3 in a rotationally fixed manner radially on the outside.
(8) Friction linings 11, 12 are fastened on both sides of the lining carrier 9, i.e., on the left and right in
(9) The cooling and/or lubricating medium is primarily used for cooling in the wet-running multi-disk clutch 1. The lining disk 8 with the lining carrier 9 and the two friction linings 11, 12 is also referred to as the friction part 15. The friction part 15 has a friction surface 16 shown on the right in
(10) The friction surface 16 is delimited radially on the inside by an inner radius r.sub.i. The friction surface 16 is delimited radially on the outside by an outer radius r.sub.a. On the left of
(11) In
(12)
(13)
(14) In each of
(15) The friction part 15 shown in
(16) Radial slots 34, 35 between the friction lining elements 31, 32 and 32, 33 therefore extend in a diffuser-like manner from radially inside to radially outside. As a result, an additional pressure reduction in the slots 34, 35 is generated. In this way, the drawing-in of air (28 in
(17) In the exemplary embodiment illustrated in
(18) The additional tangential slots 37 to 39 produce an improved distribution of air in the slots, which are also referred to as a lubricating gap in their entirety. In order not to worsen the contact pattern in the friction surface 16, the tangential slot 38 is offset radially inward in the radial direction relative to the tangential slots 37, 39.
(19)
(20)
(21) If there is no corrugation in the carrier disk, this can lead to improved separation behavior of the disks. The drag torque can be effectively reduced by an optimal distribution of the disks in the open state of the multi-disk clutch 1.
(22) The embodiment shown in
(23)
(24) The slot 70 with the funnel-like extension on the inner diameter Di creates a lubricating wedge when the multi-disk clutch 1 is closed and supports the separation of the disks when opening. The slot 71 without bevels helps to reduce the risk of the friction part 15 floating when closing. The radial slot 71 thus contributes to ensuring that the multi-disk clutch 1 closes gently.
(25) In
(26) The blind slots 78 to 80 in
(27) With the blind slots 78 to 80 in
(28) The blind slots 78 to 80 in
REFERENCE NUMERALS
(29) 1 Wet-running multi-disk clutch 2 Inner multiple disk carrier 3 Outer multiple disk carrier 4 Axis of rotation 5 Rotation speed 6 Rotation speed 7 Steel disk 8 Lined disk 9 Lining carrier 10 Coupling region 11 Friction lining 12 Friction lining 13 Arrow 14 Arrow 15 Friction part 16 Friction surface 20 X-axis 21 Y-axis 22 Y-axis 23 Y-axis 24 Drawn-in volume flow 25 Supplied volume flow 26 Drawing-in of air 27 Drag torque 28 Drawing-in of air 30 Drag torque curve 31 Friction lining element 32 Friction lining element 33 Friction lining element 34 Slot 35 Slot 37 Tangential slot 38 Tangential slot 39 Tangential slot 41 Friction lining element 42 Friction lining element 43 Friction lining element 44 Slot 45 Slot 47 Friction lining element 48 Friction lining element 49 Friction lining element 50 Slot 51 Slot 53 Friction lining element 54 Friction lining element 55 Friction lining element 56 Bevel 57 Bevel 58 Bevel 59 Bevel 60 Bevel 61 Slot 62 Slot 64 Friction lining element 65 Friction lining element 66 Friction lining element 67 Bevel 68 Bevel 69 Bevel 70 Slot 71 Slot 73 Friction lining element 74 Friction lining element 75 Friction lining element 76 Slot 77 Slot 78 Blind slot 79 Blind slot 80 Blind slot 81 Blind slot 82 Blind slot 83 Blind slot 84 Blind slot 85 Blind slot 86 Blind slot