DISCHARGE DEVICE FOR DISCHARGING ELECTRIC CURRENTS
20210044178 ยท 2021-02-11
Inventors
Cpc classification
H02K11/00
ELECTRICITY
H01R39/10
ELECTRICITY
International classification
H02K11/00
ELECTRICITY
H02K7/00
ELECTRICITY
Abstract
The invention relates to a discharge device (10) for discharging electric currents from a rotor part of a machine to a stator part of the machine, the rotor part in particular having a shaft, the discharge device comprising a contact element (11) and a spring means (12), the spring means being connectable to the stator part in an electrically conductive manner, the contact element being made predominantly of carbon, the contact element being pressurized with a contact force by means of the spring means for realizing an electrically conductive sliding contact between a sliding contact surface (13) of the contact element provided for realizing the sliding contact and an axial shaft contact surface of the shaft. The contact element is circular, the sliding contact surface being at least annular in shape and being disposed coaxially in relation to the shaft contact surface, the spring means comprising a circular support section (15) which at least in part coaxially envelops the shaft of the machine, the support section being configured for radially abutting against an abutment surface of the stator part.
Claims
1. A discharge device (10, 28) for discharging electric currents from a rotor part of a machine to a stator part of the machine, the rotor part in particular having a shaft (30), the discharge device comprising a contact element (11, 34) and a spring (12, 35), the spring being connectable to the stator part in an electrically conductive manner, the contact element being made predominantly of carbon, the contact element being pressurized with a contact force by means of the spring means for realizing an electrically conductive sliding contact (43) between a sliding contact surface (13, 41) of the contact element provided for realizing the sliding contact and an axial shaft contact surface (42) of the shaft, wherein the contact element is circular, the sliding contact surface being at least annular in shape and being disposed coaxially in relation to the shaft contact surface, the spring comprising a circular support section (15, 36) which coaxially encircles the shaft of the machine at least partially, the support section being configured for radially abutting against an abutment surface (39) of the stator part.
2. The discharge device according to claim 1, wherein the shaft contact surface (42) is formed by a shaft ledge of the shaft (30) or a ring (33) of the discharge device (10, 28) disposed on the shaft.
3. The discharge device according to claim 1, wherein the contact element (11, 34) is made predominantly of graphite and is made in one piece.
4. The discharge device according to claim 1, wherein the spring (12, 35) has a holding section (16, 37) which forms a holder (18) for holding the contact element (11, 34), the spring comprising a spring section (17, 38) which extends from the holding section to the support section (15, 36) and enables moving the contact element in relation to the support section.
5. The discharge device according to claim 4, wherein the spring section (17, 38) protrudes from a support plane (26) of the support section (15, 36) and spaces the holder (18) from the support section.
6. The discharge device according to claim 4, wherein the spring section (17, 38) is made of at least one spring arm (20).
7. The discharge device according to claim 6, wherein the spring arm (20) extends from the holding section (16, 37) to the support section (15, 36) in a helical or spiraled shape.
8. The discharge device according to claim 6, wherein a length of the spring arm (20) is of a winding, of a winding, of a winding or 1/spring-arm number of a winding.
9. The discharge device according to claim 4, wherein the contact element (11, 34) is fastened to the holder (18) in a form-fit and/or bonded manner.
10. The discharge device according to claim 4, wherein the holder (18) forms a circular holding sheet (19) to which the contact element (11, 34) is fastened by riveting, welding, soldering, flanging or adhesion.
11. The discharge device according to claim 4, wherein the holder (18) comprises a circular contact sheet (14) to which the contact element (11, 34) is fastened by riveting, welding, soldering, flanging or adhesion, the contact element being fastened to a circular holding sheet (19) of the holder (18) by riveting, welding, soldering, flanging or adhesion.
12. The discharge device according to claim 1, wherein the support section (15, 36) is realized by a radial circular washer (21) and an axial circular collar (22) adjacent thereto for abutting against the abutment surface (39).
13. The discharge device according to claim 12, wherein the circular collar (22) is conical in shape.
14. The discharge device according to claim 12, wherein slits (23) are formed in the circular collar (22) which form spring claws (24) for being abutted against the abutment surface (39).
15. The discharge device according to claim 1, wherein the spring (12, 35) comprises an electrically conductive metal.
16. The discharge device according to claim 1, wherein the spring (12, 35) is made in one piece, by punching or bending.
17. The discharge device according to claim 1, wherein the spring (12, 35) has a coating made of copper, nickel, tin, zinc, gold or silver.
18. A machine having a shaft (30) forming the rotor part and a stator part, and a discharge device (10, 28) according to claim 1.
19. The machine according to claim 18, wherein an abutment surface (39) is an inner surface of a casing (29) of the machine.
20. The machine according to claim 19, wherein a rolling bearing (31) of the shaft (30) abuts against the inner surface.
Description
[0031] In the following, the invention is further described with reference to the attached drawings.
[0032]
[0033]
[0034]
[0035]