This non-provisional patent application claims priority under 35 U.S.C. §119(a) from Patent Application No. 201310359641.1 filed in The People's Republic of China on Aug. 16, 2014, the entire contents of which are hereby incorporated by reference.
This invention relates to a gearbox and in particular, to a gear of a gearbox suitable for a window lift motor assembly of a vehicle.
Currently, manual vehicle window winders have been generally replaced by electric motor driven window lifts. The gear train is a key part of the electric window lift. Conventional window lift gear trains have output gears that can be generally classified into two categories: gears without rubber cushions and gears with rubber cushions. The gear without a rubber cushion is relatively simple in its overall design and has a small number of parts as well as low cost. However, the gear without a rubber cushion has a low anti-shock capability, high accuracy and high sensitivity, which results in increased vibrational friction and noise of the gear train during operation and thus an accelerated wear on the gears. On the other hand, while the gear with a rubber cushion can address the above problems, it has a complicated structure and a large number of parts. In addition, the gear with a rubber cushion has a problem of uneven rigidity when operating in a dual direction mode.
Thus there is a desire for a gear which has a simplified structure, improved performance as well as reduced cost.
Accordingly, in one aspect thereof, the present invention provides a gear comprising an inner ring portion, an outer ring portion, and a plurality of spokes connecting the inner ring portion with the outer ring portion, an outer circumferential surface of the outer ring portion being provided with teeth, wherein each spoke comprises a curve-shaped main portion, an inner end section at an inner end of the main portion which connects to the inner ring portion, and an outer end section at an outer end of the main portion which connects to the outer ring portion, and at least one of the inner end section and outer end section is formed with a furcated structure.
Preferably, at least one of the inner end section and outer end section is furcated to form two branches, and the two branches are located at circumferentially opposite sides of the spoke.
Preferably, each of the inner end section and the outer end section is furcated to form two branches, and the two branches of the each of the inner end section and the outer end section are located at circumferentially opposite sides of the spoke.
Preferably, the main portion of the spoke is S-shaped.
Preferably, the plurality of spokes is uniformly distributed in a circumferential direction of the inner ring portion.
Preferably, the plurality of spokes is non-uniformly distributed in a circumferential direction of the inner ring portion.
Preferably, an axial height of the inner ring portion is greater than the axial height of the outer ring portion, and an outer circumferential surface of a part of the inner ring portion protruding beyond the outer ring portion is formed with teeth.
Preferably, the teeth of the outer ring portion are skew teeth, and the teeth of the inner ring portion are spur teeth.
Preferably, an axial height of the inner ring portion is greater than the axial height of the outer ring portion, the inner ring portion defines an axial through hole, and an inner surface of the axial through hole is formed with inner splines.
Preferably, the inner splines are spur teeth, and an axial height of the spur teeth is greater than an axial height of the outer ring portion.
Preferably, the gear further comprises a shaft sleeve body, an outer circumferential surface of the shaft sleeve body is provided with teeth, a flange and an inserting portion along an axial direction of the shaft sleeve body, the inserting portion of the shaft sleeve body is tight fit into the axial through hole of the inner ring portion, and a step is formed in an axial end of the inner ring portion for receiving the flange of the shaft sleeve body.
Preferably, the inserting portion of the shaft sleeve body is formed with outer splines, and the outer splines and the inner splines are spur teeth and engaged with each other.
Preferably, the flange of the shaft sleeve body is substantially flush with an end surface of the inner ring portion.
Preferably, the outer ring portion comprises an annular inner layer, an annular outer layer, and a connecting member connecting the annular inner layer with the annular outer layer, the teeth are formed on an outer circumferential surface of the annular outer layer, and the outer end sections of the spokes are connected to the annular inner layer.
Preferably, the connecting member comprises an annular piece and a plurality of plate-like pieces connected to the annular piece and the plate-like pieces are disposed respectively on opposite axial sides of the annular piece and disposed alternatively along a circumferential direction of the annular piece.
Preferably, the inner ring portion comprises an annular inner ring, an annular outer ring, and a connecting member connecting the annular inner ring with the annular outer ring, and the inner end sections of the spokes are connected to the annular outer ring.
Preferably, the connecting member includes an annular piece and a plurality of plate-like pieces connected to the annular piece, and the plate-like pieces are spaced apart from each other and perpendicular to a plane in which the annular piece is located.
Preferably, at least one axial side of each spoke is concave in an axial direction of the gear.
According to a second aspect thereof, the present invention provides an assembly comprising a motor and a gear train driven by the motor, the gear train comprising an output gear, wherein the output gear comprises an inner ring portion, an outer ring portion, and a plurality of spokes connecting the inner ring portion with the outer ring portion, an outer circumferential surface of the outer ring portion being provided with teeth, and wherein each spoke comprises a curved main portion, an inner end section at an inner end of the main portion which connects to the inner ring portion, and an outer end section at an outer end of the main portion which connects to the outer ring portion, and at least one of the inner end section and outer end section is formed with a furcated structure.
Preferably, the assembly includes a gear box having a housing fixed to the motor and accommodating the gear train, and a stationary shaft fixed to the housing, and the output gear is rotatably mounted on the stationary shaft.
Preferably, the output gear is a gear as described about.
The present invention can reduce the rigidity of the gear spoke, the noise of the gear as well as the vibration of the gear.
A preferred embodiment of the invention will now be described, by way of example only, with reference to figures of the accompanying drawings. In the figures, identical structures, elements or parts that appear in more than one figure are generally labeled with a same reference numeral in all the figures in which they appear. Dimensions of components and features shown in the figures are generally chosen for convenience and clarity of presentation and are not necessarily shown to scale. The figures are listed below.
As shown in
Referring to
Each spoke 30 includes a main portion 32, an inner end section 34 at a radially inner end of the main portion 32 which connects to the inner ring portion 40, and a radially outer end section 36 at an outer end of the main portion 32 which connects to the outer ring portion 20. The main portion 32 is curved. In the illustrated embodiment, the projection of the main portion 32 on a plane perpendicular to the axial direction of the gear is S-shaped and symmetrical about its center point. A furcated structure is formed at each of the inner end section 34 and the outer end section 36. In the illustrated embodiment, each of the inner end section 34 and the outer end section 36 is furcated to form two branches, which are located on circumferentially opposite sides of the main portion 32. Ends of the branches respectively join with the inner ring portion 40 and outer ring portion 20. As a result, an opening is formed between each two branches and their corresponding inner ring portion 40 or outer ring portion 20, which can reduce stress concentration. The curved main portion 32 reduces the rigidity of the spoke 30 so that the gear bears the same stress and deformation during clockwise and counter-clockwise rotation of the gear, which facilitates reducing the noise and vibration of the gear. The presence of the branches at the inner end section 34 and the outer end section 36 further reduces the stress concentration as well as deformation of the gear.
It will be appreciated that the furcated structure can be formed only at the inner end section 34 or the outer end section 36 of the spoke 30. In addition, the main portion 32 of the spoke 30 may be of another shape other than S-shape or may not be symmetrical about its center point.
The outer ring portion 20 includes an annular inner layer 24, an annular outer layer 22, and a connecting member 28 connecting the annular inner layer 24 with the annular outer layer 28. The teeth 26 are formed on an outer circumferential surface of the annular outer layer 22. The outer end sections 36 of the spokes 30 are connected to the annular inner layer 24.
The inner ring portion 40 includes an annular inner ring 44, an annular outer ring 42, and a connecting member 48 connecting the annular inner ring 44 with the annular outer ring 42. The inner end sections 34 of the spokes 30 are connected to the annular outer ring 42.
In this embodiment, the teeth 26 of the outer ring portion 20 are skew teeth, and the teeth 46 of the inner ring portion 40 are spur teeth. It will be appreciated, however, that the teeth 26, 46 may be configured as skew teeth or spur teeth depending upon actual requirements.
The gear 17 illustrated above is integrally formed as a monolithic structure, preferably as a single piece plastic injection molding, which reduces the number of components. It will be appreciated, however, that the present invention is not intended to be limited to this particular embodiment.
An outer circumferential surface of the shaft sleeve body 45 is provided with teeth 46, a flange 47 and an inserting portion 49, arranged in an axial direction of the shaft sleeve body 45. The inserting portion 49 of the shaft sleeve body 45 is a tight fit into the axial through hole 41 of the inner ring portion 40. The flange 47 abuts against a step 43 of the inner ring portion 40 and is flush with an end surface of the inner ring portion 40 (see
In this embodiment, the inserting portion 49 of the shaft sleeve body 45 is formed with outer splines. The outer splines of the inserting portion 49 of the shaft sleeve body 45 mate with the inner splines of the through hole 41. Preferably, the two parts are made by injection molding plastic material and both splines are constructed as spur teeth, as this gives a join with good strength for the transfer of torque between the parts.
In this embodiment, the outer ring portion 20 includes an annular inner layer 24, an annular outer layer 22, and a connecting member 28 connecting the annular inner layer 24 with the annular outer layer 28. The teeth 26 are formed on an outer circumferential surface of the annular outer layer 22. The outer end sections 36 of the spokes 30 are connected to the annular inner layer 24. The connecting member 28 includes an annular piece 28a and a plurality of plate-like pieces 28b, 28c connected to the annular piece 28a. The plate-like pieces 28b, 28c are spaced apart from each other and extend in a direction perpendicular to a plane containing the annular piece 28a. In this embodiment, the plate-like pieces 28b and 28c are disposed respectively on opposite axial sides of the annular piece 28a and positioned alternately in the circumferential direction of the annular piece 28a.
The inner ring portion 40 includes an annular inner ring 44, an annular outer ring 42, and a connecting member 48 connecting the annular inner ring 44 with the annular outer ring 42. The inner end sections of the spokes 30 are connected to the annular outer ring 42. The connecting member 48 includes an annular piece 48a and a plurality of plate-like pieces 48b connected to the annular piece 48a and extending between the inner ring 44 and the outer ring 42. The plate-like pieces 48b are evenly spaced from each other in a circumferential direction of the annular piece 48a and are substantially perpendicular to a plane containing the annular piece 48a.
In the above-mentioned embodiments, the spokes 30 are uniformly spaced in a circumferential direction of the inner annular portion 40. Referring to
As an alternative, as shown in
In the description and claims of the present application, each of the verbs “comprise”, “include”, “contain” and “have”, and variations thereof, are used in an inclusive sense, to specify the presence of the stated item or feature but do not preclude the presence of additional items or features.
It is appreciated that certain features of the invention, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Conversely, various features of the invention which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable sub-combination.
Although the invention is described with reference to one or more preferred embodiments, it should be appreciated by those skilled in the art that various modifications are possible. Therefore, the scope of the invention is to be determined by reference to the claims that follow.
Number | Date | Country | Kind |
---|---|---|---|
201310359641.1 | Aug 2013 | CN | national |