Brake Comprising a Device for Ascertaining a Wear Limit
20240240685 ยท 2024-07-18
Assignee
Inventors
Cpc classification
F16D66/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2066/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2055/0041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G01B21/16
PHYSICS
F16D59/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D65/0081
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2055/0033
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D66/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D55/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D66/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D55/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A brake (1) with a device for ascertaining a wear limit, the brake (1) comprising: a pressure piece unit (10) comprising a pressure piece (12) designed to press at least one first brake body (3) and at least one second brake body (4) against each other for applying the brake; and a sensor (20) designed to detect a positional relationship between itself and a detection surface (11) of the pressure piece unit (10), wherein if the brake (1) has not reached its wear limit, the positional relationship between the sensor (20) and the detection surface (11) does not change during a movement of the pressure piece (12) in a first direction, and if the brake (1) has reached its wear limit, the positional relationship between the sensor (20) and the detection surface (11) changes during the movement of the pressure piece (12) in the first direction.
Claims
1. A brake comprising a device for ascertaining a wear limit, the brake comprising: a housing; at least one first brake body, at least one second brake body and a pressure piece unit comprising a pressure piece which can be moved relative to the housing in a first direction in order to press the at least one first brake body and the at least one second brake body against each other for the purpose of braking and in a second direction in order to release the brake; and a sensor designed to detect a positional relationship between itself and a detection surface formed on the pressure piece unit, wherein if the brake has not reached its wear limit, the positional relationship between the sensor and the detection surface does not change during the movement of the pressure piece in the first direction, and if the brake has reached its wear limit, the positional relationship between the sensor and the detection surface changes during the movement of the pressure piece in the first direction due to a relative movement between the sensor and the detection surface.
2. The brake according to claim 1, wherein the sensor is an inductive sensor, a capacitive sensor, a reed switch or a microswitch.
3. The brake according to claim 1, wherein the sensor is designed to output a signal from which the change in the positional relationship can be ascertained.
4. The brake according to claim 1, wherein if the brake has reached its wear limit, the pressure piece can be moved during its movement in the first direction by a first distance, at which the positional relationship between the sensor and the detection surface does not change, and by a second distance at which the positional relationship does change due to a relative movement between the sensor and the detection surface.
5. The brake according to claim 1, wherein the pressure piece unit comprises a detection body which can be moved relative to the pressure piece, and which comprises the detection surface.
6. The brake according to claim 5, wherein the pressure piece unit comprises an abutment which is designed to block a movement of the detection body towards the sensor.
7. The brake according to claim 6, wherein the sensor is fixed relative to the housing.
8. The brake according to claim 5, wherein the pressure piece unit also comprises a spring which tenses the detection body in a direction towards the sensor.
9. The brake according to claim 6, wherein the abutment is formed by an abutment part which is accommodated, together with the detection body, in a recess or bore in the pressure piece, wherein the detection body is arranged axially between the abutment part and the pressure piece, and the spring is supported on the detection body and the pressure piece.
10. The brake according to claim 8, wherein the spring presses the detection surface of the detection body onto the sensor which is fixed relative to the housing, while the pressure piece is moved by a first distance in the first direction, wherein at the end of the first distance, the detection body abuts against an abutment which is fixed relative to the pressure piece, thus causing the detection body to participate in the movement of the pressure piece in the first direction and moving the detection surface away from the sensor by a second distance.
11. The brake according to claim 9, wherein the spring presses the detection surface of the detection body onto the sensor which is fixed relative to the housing, while the pressure piece is moved by a first distance in the first direction, wherein at the end of the first distance, the detection body abuts against an abutment which is fixed relative to the pressure piece, thus causing the detection body to participate in the movement of the pressure piece in the first direction and moving the detection surface away from the sensor by a second distance.
12. The brake according to claim 1, wherein the housing and a shaft, which is mounted such that it can be rotated about the rotational axis relative to the housing and to which the at least one second brake body is connected such that it cannot be rotated, enclose an accommodating space which is at least partially filled with oil, wherein the pressure piece unit and at least partially the sensor are arranged in the accommodating space.
13. The brake according to claim 12, wherein the at least one first brake body and the at least one second brake body are arranged in the accommodating space.
14. The brake according to claim 1, further comprising a second brake body holder which can be rotated about a rotational axis relative to the housing, wherein the at least one first brake body is fastened, such that it cannot be rotated, to the housing or to a first brake body holder, and the at least one second brake body is fastened, such that it cannot be rotated, to the second brake body holder.
15. The brake according to claim 1, further comprising a pressure space which is designed such that when it is pressurised by a fluid, it moves the pressure piece in the second direction.
16. The brake according to claim 15, further comprising at least one biased brake spring which acts on the pressure piece and moves the pressure piece in the first direction when the pressure space is relieved of pressure, and which is tensed by pressurising the pressure space and the resultant movement of the pressure piece in the second direction.
Description
[0027] The invention has been described on the basis of multiple embodiments and examples. A particularly preferred embodiment is described below on the basis of figures. The features thus disclosed, each individually and in any combination of features, develop the subject matter of the invention. There is shown:
[0028]
[0029]
[0030]
[0031]
[0032] The brake 1 also comprises a shaft 5, for example a multi-part shaft, which in the example shown is embodied as a hollow shaft and mounted or supported on the housing 2, such that it can be rotated about a rotational axis D, by one or more rotary bearings 9. The housing 2 comprises a first brake body holder 2d, on the inner surface of which multiple first brake bodies 3, in particular first brake discs, are mounted such that they cannot be rotated about the rotational axis D. The shaft 5 comprises a second brake body holder 5b, on the outer surface of which multiple second brake bodies 4, in particular second brake discs, are mounted such that they cannot be rotated about the rotational axis D. When the shaft 5 is rotated about the rotational axis D relative to the housing 2 during operations, the second brake bodies 4 rotate relative to the first brake bodies 3 about the rotational axis D. The brake 1 also comprises a connecting element 5d which in the example shown is embodied as a flange and/or can be part of the housing 2. The connecting element 5d is designed to fasten or flange to it a device which is for example arranged on the drive side of the brake 1, in particular a drive motor or a gear system which is arranged between a drive motor and the brake 1.
[0033] The brake 1 also comprises a pressure piece unit 10, the details of which are most clearly shown in
[0034] In the example shown, the brake 1 comprises one or more brake springs 18 (
[0035] A pressure chamber 6 which is arranged between the housing 2 and the pressure piece 12 can be pressurised or relieved of pressure by a fluid, for example compressed air or oil. If the pressure chamber 6 is pressurised by a fluid, the pressure piece 12 is moved in the second direction, thus releasing the brake 1 (
[0036] A sensor 20 is attached to the housing 2. The sensor 20 is an inductive sensor in the example shown, but can also be another type of sensor. The housing 2 comprises a wall 2e which extends from an inner circumference radially towards the rotational axis D and comprises a breach in which the sensor 20 is arranged, wherein a part of the sensor 20 or at least its sensor surface 21 is arranged on the side of the wall 2ewhich points towards the pressure piece 12, and a signal line which for example leads to a controller is guided away from the sensor 20 on the other side of the wall 2e. The wall 2e can for example form a seating for one of the rotary bearings 9, via which the shaft is supported on the housing 2, and/or for a shaft sealing ring 5a which seals off an accommodating space 2c from the outside.
[0037] The brake 1 forms an accommodating space 2c which extends annularly around the rotational axis D and is enclosed by the housing 2 and the shaft 5. The inner circumference of the housing 2 delineates the accommodating space 2c radially, and the inwardly extending walls 2e, 2f of the housing 2 delineate the accommodating space 2c axially. The accommodating space 2c is arranged between the walls 2e, 2f.
[0038] The wall 2f can for example serve as a counter bearing for the force applied to the brake bodies 3, 4 by the pressure piece 12, and/or the brake bodies 3, 4 can be clamped between the pressure piece 12 and the wall 2f. The shaft 5 delineates the accommodating space 2c towards the rotational axis D. The pressure piece unit 10, the first and second brake bodies 3, 4 and at least partially the sensor 20 are arranged in the accommodating space 2c. In order to reduce the amount of wear on the brake bodies 3, 4, the accommodating space 2c can be at least partially filled with oil. Alternatively, the accommodating space can be filled not with oil but rather with gas, in order to avoid excessive heating at high rotational speeds.
[0039] The pressure piece 12 comprises a recess 17, in particular a recess 17 shaped as a blind hole or a blind bore, the opening of which points towards the sensor 20. A detection body 13, a spring 14 and a sleeve-shaped abutment part 15 are arranged in the recess 17. The abutment part 15 can for example be screwed, press-fitted or glued into the recess 17. The abutment part 15 is advantageously connected or joined, axially fixed, to the pressure piece 12. The end of the abutment part 15 pointing towards the base of the recess 17 forms an axial abutment 16 for the detection body 13. The detection body 13 comprises an outer circumferential surface via which it can be axially moved and guided on an inner circumferential surface of the sleeve-shaped abutment part 15. The detection body 13 also comprises a projection 13a which is embodied as an annular collar, extends radially outwards and is arranged between the axial abutment 16 and the base of the recess 17. The projection 13a of the detection body 13 can be moved back and forth between the base of the recess 17 and the axial abutment 16 of the abutment part 15. The spring 14 is arranged between the detection body 13 and the base of the recess 17 and biases the detection body 13 in a direction towards the sensor 20. The spring 14 is supported on the detection body 13 and the pressure piece 12. In particular, the spring 14 extends into the sleeve-shaped detection body 13 for the purpose of a compact design and is supported axially on an end-facing wall in the interior of the detection body 13.
[0040] When the brake 1 is released, the pressure piece 12 is moved in the second direction (to the left in
[0041] If the brake 1 has become worn to such an extent that the wear limit is reached, the axial abutment 16 of the abutment part 15 abuts against the detection body 13, in particular the projection 13a, during the movement of the pressure piece 12 in the first direction while the brake 1 is being applied, in particular at the end of the first distance x, and entrains the detection body 13 by a distance y (
List of Reference Signs
[0042] 1 brake [0043] 2 housing [0044] 2a stud bolt [0045] 2b flange [0046] 2c accommodating space [0047] 2d first brake body holder [0048] 2e (first) wall [0049] 2f (second) wall [0050] 3 first brake bodies [0051] 4 second brake bodies [0052] 5 (hollow) shaft [0053] 5a shaft sealing ring [0054] 5b second brake body holder [0055] 5d connecting element [0056] 6 pressure space [0057] 7 first gasket [0058] 8 second gasket [0059] 9 rotary bearings [0060] 10 pressure piece unit [0061] 11 detection surface [0062] 12 pressure piece [0063] 13 detection body [0064] 13a radial projection/collar [0065] 14 spring [0066] 15 abutment part [0067] 16 axial abutment [0068] 17 recess [0069] 18 brake spring [0070] 20 sensor [0071] 21 sensor surface [0072] x distance moved [0073] y distance moved when the wear limit is reached [0074] D rotational axis