POWER TRANSMISSION DEVICE
20200208734 ยท 2020-07-02
Inventors
Cpc classification
F16H1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/0222
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/0225
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02034
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/48
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/2863
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2057/02021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H57/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A power transmission device configured to transmit a power inputted thereto from a motor to a wheel is disclosed. The power transmission device includes a first support member, a first gear, a second support member attached to the first support member, a second gear, and an adjustment mechanism. The first gear is supported by the first support member, and configured to rotate about a first axis. The second gear is supported by the second support member, meshed with the first gear, and configured to rotate about a second axis. The second axis is approachable to and separable from the first axis. The adjustment mechanism is configured to adjust a distance between the first axis and the second axis.
Claims
1. A power transmission device configured to transmit a power inputted thereto from a drive source to a wheel, the power transmission device comprising: a first support member; a first gear supported by the first support member, the first gear configured to rotate about a first axis; a second support member attached to the first support member; a second gear supported by the second support member, the second gear meshed with the first gear, the second gear configured to rotate about a second axis, the second axis approachable to and separable from the first axis; and an adjustment mechanism configured to adjust a distance between the first axis and the second axis.
2. The power transmission device according to claim 1, wherein the first gear is a ring gear including a plurality of internal teeth on an inner peripheral surface thereof, and the second gear is a pinion gear including a plurality of teeth on an outer peripheral surface thereof, the plurality of teeth meshed with the plurality of internal teeth of the ring gear.
3. The power transmission device according to claim 2, wherein the ring gar is made of resin.
4. The power transmission device according to claim 1, further comprising: at least one intermediate member disposed between the first support member and the first gear.
5. The power transmission device according to claim 1, further comprising: a third gear supported by the second support member, the third gear configured to rotate about a third axis, the third axis keeping invariable a distance therefrom to each of the first and second axes; and a fourth gear supported by the second support member, the fourth gear configured to rotate about the second axis, the fourth gear meshed with the third gear.
6. The power transmission device according to claim 5, wherein the second axis is movable along a trajectory made in shape of a circular arc centered at the third axis.
7. The power transmission device according to claim 6, wherein the adjustment mechanism is further configured to adjust and fix a position of the second axis movable on the trajectory made in shape of the circular arc.
8. The power transmission device according to claim 7, wherein the second support member is a housing accommodating the second and third gears, the housing turnable along the trajectory made in shape of the circular arc centered at the third axis, and the adjustment mechanism is further configured to adjust and fix a turning position of the housing.
9. The power transmission device according to claim 1, wherein the first gear overlaps at least in part at an outer diameter thereof with a rim of the wheel as seen in a direction arranged along the first axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION
[0036]
[Entire Configuration]
[0037] The present power transmission device 1 is a device for transmitting a power, transmitted thereto from a motor 2, to a wheel 3 and is used in, for instance, an electric wheelchair. The power transmission device 1 includes a base member 5 (exemplary first support member), a housing 6 (exemplary second support member) and an adjustment mechanism 7. The housing 6 is capable of adjusting a position of the base member 5 attached to the base member 5 by the adjustment mechanism 7, although this will be explained below in detail.
[Base Member 5]
[0038] The base member 5 includes a motor attached portion 10 and a boss portion 11. The motor 2 is fixed to a first surface 10a (right-side surface in
[0039] The flange 14 includes a tubular portion 15 and a disc portion 16. The tubular portion 15 is rotatably supported at one end thereof by the boss portion 11 of the base member 5 through a bearing 17. The disc portion 16 is shaped to radially extend from the other end of the tubular portion 15. As shown in
[0040] A ring gear 20 (exemplary first gear), including a plurality of internal teeth on the inner peripheral surface thereof, is fixed to the groove 16d of the annular portion 16c. The ring gear 20 is rotatable, together with the flange 14, about a center axis C1 (exemplary first axis) of the hub shaft 12. The ring gear 20 is made of resin material. Additionally, as seen in a direction arranged along the hub shaft 12, the ring gear 20 overlaps in part at the pitch circle diameter thereof with a rim 3a of the wheel 3.
[Housing 6]
[0041] The housing 6 includes a body 22, opened on one end side, and a lid portion 23 attached to the opened part of the body 22. The housing 6 accommodates a drive shaft 25 and a counter shaft 25 in the interior thereof.
[0042] The drive shaft 25 is rotatably supported at one end portion thereof by the body 22 through a bearing 27. Additionally, an output shaft 2a of the motor 2 is coupled to the one end portion of the drive shaft 25. The drive shaft 25 is rotatably supported at the other end portion thereof by the lid portion 23 through a bearing 28. A drive gear 29 (exemplary third gear), including a plurality of teeth on the outer peripheral surface thereof, is integrated with the drive shaft 25. The drive gear 29 is provided on the other end-side portion of the drive shaft 25. Therefore, the drive gear 29 is rotatable, together with the drive shaft 25, about a center axis C3 (exemplary third axis) of the drive shaft 25.
[0043] The counter shaft 26 is disposed in parallel to the drive shaft 25. The counter shaft 26 is rotatably supported at one end portion thereof by the body 22 through a bearing 31. The counter shaft 26 is rotatably supported at the other end portion thereof by the lid portion 23 through a bearing 32. The distal end of the other end portion of the counter shaft 26 passes through the lid portion 23, and protrudes to the outside of the housing 6. Additionally, a counter gear 34 (exemplary fourth gear), including a plurality of teeth on the outer peripheral surface thereof, is fixed to the other end-side portion of the counter shaft 26. The counter gear 34 is meshed with the drive gear 29.
[0044] Additionally, a pinion gear 35, including a plurality of teeth on the outer peripheral surface thereof, is fixed to the distal end of the other end-side portion of the counter shaft 26, i.e., the portion protruding from the housing 6. Thus, the pinion gear 35 is rotatable, together with the counter gear 34, about a center axis C2 (exemplary second axis) of the counter shaft 26. Additionally, the pinion gear 35 is meshed with the ring gear 20.
[Attachment of the Housing 6 to the Base Member 5]
[0045] The housing 6 is attached to the base member 5 by a plurality of bolts 37 and a plurality of nuts 38. In more detail, a plurality of attachment portions 40, each provided with a through hole penetrating therethrough, are fixed to the outer periphery of the housing 6. On the other hand, the base member 5 is also provided with a plurality of through holes 5a in corresponding positions to the plurality of attachment portions 40. Thus, the housing 6 is fixed to the base member 5 by the bolts 37, which penetrate the through holes of the attachment portions 40 and the through holes 5a of the base member 5, respectively, and the nuts 38 that are screwed onto the bolts 37, respectively.
[0046] Now, as shown in
[0047] In the configuration described above, moving the housing 6 along the trajectory T enables change in distance between the center axis C1 of the hub shaft 12 (i.e., the rotational axis of the ring gear 20) and the center axis C2 of the counter shaft 26 (i.e., the rotational axis of the pinion gear 35) without changing distance between the center axis C3 of the drive shaft 25 and the center axis C2 of the counter shaft 26. Accordingly, a backlash can be adjusted between the ring gear 20 and the pinion gear 35.
[Adjustment Mechanism 7]
[0048] As shown in
[Action]
[0049] A power, transmitted from the motor 2, is inputted to the drive shaft 25, and is transmitted therefrom to the counter shaft 26 through meshing between the drive gear 29 and the counter gear 34. Then, the power, transmitted to the counter shaft 26, is transmitted from the flange 14 to the wheel 3 through meshing between the pinion gear 35, fixed to the counter shaft 26, and the ring gear 20.
[Adjustment of Distance Between Axes]
[0050] Now, the flange 14, to which the ring gear 20 is attached, is supported by the base member 5, whereas the counter shaft 26, to which the pinion gear 35 is attached, is supported by the housing 6. In other words, the ring gear 20 and the pinion gear 35 are supported by different members, respectively. Besides, the ring gear 20 is supported by the base member 5 through the flange 14. Furthermore, it is difficult to process the ring gear 20 with high accuracy, because the ring gear 20 is formed by resin molding. Therefore, it is difficult to manage, with high accuracy, a positional relation between the ring gear 20 and the pinion gear 35.
[0051] In view of this, as described above, the adjustment mechanism 7 is herein configured to be capable of adjusting the distance between the rotational center of the ring gear 20 and that of the pinion gear 35. With this adjustment, a backlash can be appropriately adjusted between the ring gear 20 and the pinion gear 35.
[0052] Because of this, even when processing errors and assemblage errors of the respective members are accumulated, the ring gear 20 and the pinion gear 35 can be smoothly meshed.
Application Example
[0053]
[0054] When the power transmission device 1 according to the present preferred embodiment is herein used as each of the left-side and right-side drive units 50L and 50R for the electric wheelchair 50, the base member 5 is provided with not only attachment through holes 5c common to the left-side and right-side drive units 50L and 50R but also elongated through holes 5L exclusive for the left-side drive unit 50L and elongated through holes 5R exclusive for the right-side drive unit 5R. The elongated through holes 5L exclusive for the left-side drive unit 50L and the elongated through holes 5R exclusive for the right-side drive unit 50R are provided in line symmetric positions with respect to a vertical line V passing through the center axis C3 of the drive shaft 25.
[0055] First, in the left-side drive unit 50L, the housing 6 is attached to the base member 5 in a left-side postural position shown in
[0056] Now as shown in
[0057] Here in the left-side drive unit 50L, the housing 6 is attached to the base member 5 in the left-side postural position, whereby the pinion gear 35 receives a force directed to increase a backlash between the pinion gear 35 and the ring gear 20. On the other hand, in the right-side drive unit 50R, the housing 6 is attached to the base member 5 in the right-side postural position, whereby the pinion gear 35 similarly receives a force directed to increase a backlash between the pinion gear 35 and the ring gear 20.
[0058] Therefore, in the left-side and right-side drive units 50L and 50R, the backlash between the ring gear 20 and the pinion gear 35 is reduced, whereby the teeth of the both gears 20 and 35 can be prevented from getting stuck with each other. Because of this, in transmitting a power, the power can be smoothly transmitted between the both gears.
Other Preferred Embodiments
[0059] The present invention is not limited to the preferred embodiment described above, and a variety of changes or modifications can be made without departing from the scope of the present invention.
[0060] (a) In the aforementioned preferred embodiment, the present invention has been applied to meshing between the ring gear with internal teeth and the pinion gear. However, the present invention is similarly applicable to meshing between gears with external teeth as well.
[0061] (b) In the aforementioned preferred embodiment, the present invention has been applied to the power transmission device with a three-axis configuration. However, the present invention is similarly applicable to a power transmission device with a two-axis configuration as well.
[0062] (c) The structure for supporting the ring gear is not limited to that in the aforementioned preferred embodiment. For example, the ring gear can be configured to be directly fixed to the hub shaft.
REFERENCE SIGNS LIST
[0063] 1 Power transmission device [0064] 2 Motor (drive source) [0065] 3 Wheel [0066] 3a Rim [0067] 5 Base member (first support member) [0068] 6 Housing (second support member) [0069] 7 Adjustment mechanism [0070] 14 Flange (intermediate member) [0071] 20 Ring gear (First gear) [0072] 29 Drive gear (third gear) [0073] 34 Counter gear (fourth gear) [0074] 35 Pinion gear (second gear)