Planetary transmission
11209071 ยท 2021-12-28
Assignee
Inventors
Cpc classification
F03D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02078
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2001/103
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/076
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16H1/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A planetary transmission includes at least two planetary stages. A sun shaft of a planetary stage of the at least two planetary stages is connected for transmission of torque via a coupling toothing system to a planetary carrier of a second transmission stage of the at least two planetary stages that follows the first transmission stage. The coupling toothing system is a flat notch toothing system. A drive train of a wind power plant, in which a corresponding planetary transmission is used as transmission, is also provided. A wind power plant that is equipped with a corresponding drive train is provided. An industrial application that has a corresponding planetary transmission as transmission is also provided.
Claims
1. A planetary transmission comprises: at least two planetary stages, a first planetary stage of the at least two planetary stages including a sun shaft, the sun shaft being rotatable about a main rotational axis and being connected for transmission of torque via a coupling toothing system to a planetary carrier of a second planetary stage of the at least two planetary stages, the second planetary stage following the first planetary stage, wherein the coupling toothing system is a flat notch toothing system, and wherein spur toothing systems form the flat notch toothing system, the spur toothing systems being provided on an end side of a hub that is fastened fixedly on an outer circumference of the sun shaft so as to rotate with the sun shaft and on an end side of the planetary carrier, the end side of the planetary carrier bearing against the end side of the hub axially in relation to the main rotational axis.
2. The planetary transmission of claim 1, wherein spur toothing systems form the flat notch toothing system, the spur toothing systems being provided on an end side of the sun shaft and on an end side of the planetary carrier, the end side bearing against the end side of the sun shaft axially in relation to the main rotational axis.
3. The planetary transmission of claim 2, wherein the sun shaft and the planetary carrier are fastened to one another with fastening elements that extend axially in relation to the main rotational axis.
4. The planetary transmission of claim 3, wherein the fastening elements are positioned at regular spacings from one another.
5. The planetary transmission of claim 3, wherein the fastening elements extend through the flat notch toothing system.
6. The planetary transmission of claim 1, wherein the hub and the planetary carrier are fastened to one another with fastening elements that extend axially in relation to the main rotational axis.
7. The planetary transmission of claim 6, wherein the fastening elements are positioned at regular spacings from one another.
8. The planetary transmission of claim 6, wherein the fastening elements extend through the flat notch toothing system.
9. The planetary transmission of claim 1, wherein the hub is connected to the sun shaft via a coupling toothing system.
10. A drive train comprising: a rotor shaft that is connected in a torque-transmitting manner to a transmission, the transmission being connected in a torque-transmitting manner to a generator, wherein the transmission is configured as a planetary transmission, the planetary transmission comprising at least two planetary stages, a first planetary stage of the at least two planetary stages including a sun shaft, the sun shaft being rotatable about a main rotational axis and being connected for transmission of torque via a coupling toothing system to a planetary carrier of a second planetary stage of the at least two planetary stages, the second planetary stage following the first planetary stage, wherein the coupling toothing system is a flat notch toothing system, and wherein spur toothing systems form the flat notch toothing system, the spur toothing systems being provided on an end side of a hub that is fastened fixedly on an outer circumference of the sun shaft so as to rotate with the sun shaft and on an end side of the planetary carrier, the end side of the planetary carrier bearing against the end side of the hub axially in relation to the main rotational axis.
11. A wind power plant comprising: a rotor that is attached to a nacelle; a drive train that is connected in a torque-transmitting manner to the rotor, the drive train being arranged in the nacelle, the drive train comprising a rotor shaft that is connected in a torque-transmitting manner to a transmission, the transmission being connected in a torque-transmitting manner to a generator, wherein the transmission is configured as a planetary transmission, the planetary transmission comprising at least two planetary stages, a first planetary stage of the at least two planetary stages including a sun shaft, the sun shaft being rotatable about a main rotational axis and being connected for transmission of torque via a coupling toothing system to a planetary carrier of a second planetary stage of the at least two planetary stages, the second planetary stage following the first planetary stage, wherein the coupling toothing system is a flat notch toothing system, and wherein spur toothing systems form the flat notch toothing system, the spur toothing systems being provided on an end side of a hub that is fastened fixedly on an outer circumference of the sun shaft so as to rotate with the sun shaft and on an end side of the planetary carrier, the end side of the planetary carrier bearing against the end side of the hub axially in relation to the main rotational axis.
12. An industrial application comprising: a drive that is connected in a torque-transmitting manner to a transmission, the transmission being coupled in a torque-transmitting manner to a mechanical application, wherein the transmission is configured as a planetary transmission, the planetary transmission comprising at least two planetary stages, a first planetary stage of the at least two planetary stages including a sun shaft, the sun shaft being rotatable about a main rotational axis and being connected for transmission of torque via a coupling toothing system to a planetary carrier of a second planetary stage of the at least two planetary stages, the second planetary stage following the first planetary stage, wherein the coupling toothing system is a flat notch toothing system, and wherein spur toothing systems form the flat notch toothing system, the spur toothing systems being provided on an end side of a hub that is fastened fixedly on an outer circumference of the sun shaft so as to rotate with the sun shaft and on an end side of the planetary carrier, the end side of the planetary carrier bearing against the end side of the hub axially in relation to the main rotational axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(6) In the following text, same designations denote same or identically configured components or component regions.
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(8) The construction that is shown in
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(10) On account of the separation of the hub 16 and the planetary carrier 3, the configuration that is shown in
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(14) Although the invention has been described and illustrated in greater detail via the exemplary embodiments, the invention is not restricted to the examples that are disclosed, and other variations may be derived therefrom by a person skilled in the art without departing from the scope of protection of the invention.
(15) The elements and features recited in the appended claims may be combined in different ways to produce new claims that likewise fall within the scope of the present invention. Thus, whereas the dependent claims appended below depend from only a single independent or dependent claim, it is to be understood that these dependent claims may, alternatively, be made to depend in the alternative from any preceding or following claim, whether independent or dependent. Such new combinations are to be understood as forming a part of the present specification.
(16) While the present invention has been described above by reference to various embodiments, it should be understood that many changes and modifications can be made to the described embodiments. It is therefore intended that the foregoing description be regarded as illustrative rather than limiting, and that it be understood that all equivalents and/or combinations of embodiments are intended to be included in this description