Balance shaft structure
10890230 ยท 2021-01-12
Assignee
Inventors
Cpc classification
F16F15/283
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/265
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02B75/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A balance shaft structure includes a balance shaft including a balance weight, a driven gear to rotate the balance shaft by being engaged with a drive gear, a scissors mechanism, whose position in an axial direction is regulated, including a scissors gear to reduce backlash between the drive gear and the driven gear and an axially urging member to urge the scissors gear toward the driven gear in the axial direction, a first regulating portion to regulate an axially inner position of the scissors mechanism, and a second regulating portion fixed to the balance shaft on a side close to the shaft end part of the balance shaft beyond the first regulating portion and configured to regulate an axially outer position of the scissors mechanism.
Claims
1. A balance shaft structure, comprising: a balance shaft including a balance weight; a driven gear configured to rotate the balance shaft by being engaged with a drive gear; a scissors mechanism including a scissors gear configured to reduce backlash between the drive gear and the driven gear, and an axially urging member configured to urge the scissors gear toward the driven gear in an axial direction; a first regulating portion arranged on the balance shaft and configured to regulate an axially inner position of the scissors mechanism; and a second regulating portion concentrically fixed to the balance shaft on a side close to a shaft end part of the balance shaft beyond the first regulating portion and configured to regulate an axially outer position of the scissors mechanism, wherein the balance weight has an abutting face perpendicular to the balance shaft, and wherein a face of the axially urging member abuttingly contacts the abutting face of the balance weight.
2. The balance shaft structure according to claim 1, wherein both the balance weight and the driven gear are arranged on the balance shaft, the axially inner position or the axially outer position of the scissors mechanism is regulated by the first regulating portion or the second regulating portion via the balance weight, and the axially inner position or the axially outer position is regulated by the first regulating portion or the second regulating portion via the driven gear.
3. The balance shaft structure according to claim 2, wherein the axially urging member is a disc spring, and the balance shaft penetrates the disc spring.
4. The balance shaft structure according to claim 3, wherein the balance weight includes a concave portion, at an opposed face to the scissors gear, concaved from the abutting face in the axial direction as being apart from the scissors gear.
5. A balance shaft structure, comprising: a balance shaft including a balance weight; a driven gear configured to rotate the balance shaft by being engaged with a drive gear; a scissors mechanism including a scissors gear configured to reduce backlash between the drive gear and the driven gear, and an axially urging member configured to urge the scissors gear toward the driven gear in an axial direction; a first regulating portion arranged on the balance shaft and configured to regulate an axially inner position of the scissors mechanism; and a second regulating portion concentrically fixed to the balance shaft on a side close to a shaft end part of the balance shaft beyond the first regulating portion and configured to regulate an axially outer position of the scissors mechanism, wherein the second regulating portion is formed by a bolt that is fastened and fixed coaxially to the shaft end part of the balance shaft, and a distance between the first regulating portion and the second regulating portion is defined by fastening the bolt to the shaft end part of the balance shaft.
6. The balance shaft structure according to claim 1, wherein the second regulating portion is formed by an axially inner face of a bearing member arranged at an outer circumference of the shaft end part of the balance shaft.
7. The balance shaft structure according to claim 1, wherein the first regulating portion is formed by a flange portion integrally formed with the balance shaft on the inner side from the shaft end part of the balance shaft.
8. The balance shaft structure according to claim 2, wherein the second regulating portion is formed by a bolt that is fastened and fixed coaxially to the shaft end part of the balance shaft, and a distance between the first regulating portion and the second regulating portion is defined by fastening the bolt to the shaft end part of the balance shaft.
9. The balance shaft structure according to claim 3, wherein the second regulating portion is formed by a bolt that is fastened and fixed coaxially to the shaft end part of the balance shaft, and a distance between the first regulating portion and the second regulating portion is defined by fastening the bolt to the shaft end part of the balance shaft.
10. The balance shaft structure according to claim 4, wherein the second regulating portion is formed by a bolt that is fastened and fixed coaxially to the shaft end part of the balance shaft, and a distance between the first regulating portion and the second regulating portion is defined by fastening the bolt to the shaft end part of the balance shaft.
11. The balance shaft structure according to claim 2, wherein the second regulating portion is formed by an axially inner face of a bearing member arranged at an outer circumference of the shaft end part of the balance shaft.
12. The balance shaft structure according to claim 3, wherein the second regulating portion is formed by an axially inner face of a bearing member arranged at an outer circumference of the shaft end part of the balance shaft.
13. The balance shaft structure according to claim 4, wherein the second regulating portion is formed by an axially inner face of a bearing member arranged at an outer circumference of the shaft end part of the balance shaft.
14. The balance shaft structure according to claim 5, wherein the second regulating portion is formed by an axially inner face of a bearing member arranged at an outer circumference of the shaft end part of the balance shaft.
15. The balance shaft structure according to claim 2, wherein the first regulating portion is formed by a flange portion integrally formed with the balance shaft on the inner side from the shaft end part of the balance shaft.
16. The balance shaft structure according to claim 3, wherein the first regulating portion is formed by a flange portion integrally formed with the balance shaft on the inner side from the shaft end part of the balance shaft.
17. The balance shaft structure according to claim 4, wherein the first regulating portion is formed by a flange portion integrally formed with the balance shaft on the inner side from the shaft end part of the balance shaft.
18. The balance shaft structure according to claim 5, wherein the first regulating portion is formed by a flange portion integrally formed with the balance shaft on the inner side from the shaft end part of the balance shaft.
19. The balance shaft structure according to claim 6, wherein the first regulating portion is formed by a flange portion integrally formed with the balance shaft on the inner side from the shaft end part of the balance shaft.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
DETAILED DESCRIPTION
(3) In the following, description will be provided on embodiments of a balance shaft structure of the present invention with reference to the drawings. In each drawing, the same reference sign is given to the same or corresponding component.
(4) As illustrated in
(5) The scissors mechanism 30 is a mechanism, whose position in an axial direction is regulated, including a scissors gear 40 and an axially urging member 50 to urge the scissors gear 40 toward the driven gear 20 in the axial direction.
(6) The balance shaft structure of the present embodiment includes a first regulating portion 31 that regulates an axially inner position of the scissors mechanism 30, the first regulating portion 31 being arranged on the balance shaft 10 on the inner side (on the right side in
(7) The second regulating portion 32 regulates the axially outer position of the scissors mechanism 30 by being fixed concentrically with the balance shaft 10 on the side close to the shaft end part 12 beyond the first regulating portion 31 of the balance shaft 10.
(8) Here, as described above, in the present specification, the side close to the shaft end part 12 beyond the first regulating portion 31 of the balance shaft 10 includes the position at the shaft end part 12 of the balance shaft 10.
(9) According to the balance shaft structure, the axially inner position of the scissors mechanism 30 is regulated by the first regulating portion 31 arranged on the balance shaft 10 on the inner side from the shaft end part 12 of the balance shaft 10 with respect to the axial direction and the axially outer position of the scissors mechanism 30 is regulated by the second regulating portion 32 fixed to the balance shaft 10 on the side close to the shaft end part 12 beyond the first regulating portion 31.
(10) That is, according to the balance shaft structure, being performed by the pair of regulating portions (i.e., first and second regulating portions 31, 32) arranged on the balance shaft 10, regulating positions of the scissors mechanism 30 in the axial direction can be easily performed.
(11) Further, since the scissors mechanism 30 is arranged on the balance shaft 10 and the axially urging member 50 is urged by the second regulating portion 32 fixed concentrically with the balance shaft 10, urging force can be evenly exerted.
(12) The above is described below in detail.
(13) In the related art described above, the three bolts are arranged on a concentric circle with the balance shaft. However, since fastening force of the bolts is mainly exerted on portions around the bolts or on a triangle connecting the bolts as viewing in the axial direction, the axially urging member (disc spring) cannot be assumed to be urged concentrically and evenly.
(14) In contrast, according to the present embodiment, since the axially urging member 50 is urged concentrically by the second regulating portion 32 fixed concentrically with the balance shaft 10, urging force can be evenly exerted.
(15) Both the balance weight 11 and the driven gear 20 are arranged on the balance shaft 10. Regarding positions of the scissors mechanism 30 in the axial direction, the axially inner position is regulated by the first regulating portion 31 via the balance weight 11 and the axially outer position is regulated by the second regulating portion 32 via the driven gear 20.
(16) According to the above configuration, since positions of the scissors mechanism 30 in the axial direction can be regulated using the balance weight 11 and the driven gear 20 arranged on the balance shaft 10, upsizing in length in the axial direction can be suppressed.
(17) In the configuration illustrated in
(18) Further, in the configuration illustrated in
(19) That is, the first regulating portion 31 may regulate the axially inner position directly or indirectly via an intermediate member.
(20) The axially urging member 50 is a disc spring and the balance shaft 10 penetrates the disc spring 50. The balance weight 11 has an abutting face 11a perpendicular to the balance shaft 10. A face 51 of the disc spring 50 abuts to the abutting face 11a.
(21) According to the above configuration, owing to using the balance weight 11 on the balance shaft 10, urging force of the disc spring 50 can be generated without increasing the number of components.
(22) In the configuration illustrated in
(23) The balance weight 11 includes a concave portion 11h, at an opposed face 11c to the scissors gear 40, concaved from the abutting face 11a in the axial direction as being apart from the scissors gear 40.
(24) In other words, the balance weight 11 includes a swell portion 11b swelling in the axial direction toward the scissors gear 40 and the concave portion 11h is formed between the swell portion 11b and the abutting face 11a.
(25) With this configuration, the concave portion 11h can serve as an oil basin for supplying oil to the disc spring 50.
(26) The second regulating portion 32 is formed by a washer 82 interposed between the shaft end part 12 of the balance shaft 10 and a bolt 80 that is fastened and fixed coaxially to the shaft end part 12. A distance L1 between the first regulating portion 31 and the second regulating portion 32 is defined by fastening the bolt 80 to the shaft end part 12 of the balance shaft 10.
(27) With this configuration, accuracy of positions of the scissors mechanism 30 in the axial direction can be enhanced.
(28) In the configuration illustrated in
(29) That is, the second regulating portion 32 may be formed, directly or indirectly via an intermediate member, by the bolt 80 that is fastened and fixed coaxially to the shaft end part 12 of the balance shaft 10.
(30) In the configuration illustrated in
(31) The first regulating portion 31 is formed by a flange portion 11f integrally formed with the balance shaft 10 on the inner side from the shaft end part 12 of the balance shaft 10.
(32) With this configuration, the first regulating portion 31 can be formed easily and accurately.
(33)
(34) In this embodiment, the second regulating portion 32 is formed by an axially inner face 72 of a bearing member 71 arranged at an outer circumference of the shaft end part 12 of the balance shaft 10.
(35) With this configuration, since the second regulating portion 32 is formed by the bearing member 71 arranged on the balance shaft 10, upsizing in length in the axial direction can be suppressed.
(36) In the present embodiment, the driven gear 20, the scissors gear 40, the disc spring 50 as the axially urging member, the washer 60, and a spacer 62 are arranged sequentially from the first regulating portion 31 toward the second regulating portion 32. Accordingly, the disc spring 50 urges the scissors gear 40 toward the driven gear 20.
(37) The balance weight 11 is arranged on the inner side from the first regulating portion 31.
(38) A crank shaft 3 of an engine and a crank case 4 that rotatably supports the crank shaft 3 and the balance shaft 10 are illustrated in
(39) Similarly to the related art, a coil spring 35, which is an urging member, to urge the driven gear 20 and the scissors gear 40 relatively in a circumferential direction is arranged between the gears 20, 40 to reduce backlash.
(40) Not limited to the abovementioned embodiments, the present invention may be appropriately modified within the scope of the spirit of the present invention.
REFERENCE SIGNS LIST
(41) 1: Balance shaft structure 2: Drive gear 10: Balance shaft 11: Balance weight 11a: Abutting face 11f: Flange portion 11h: Concave portion 12: Shaft end part 20: Driven gear 30: Scissors mechanism 31: First regulating portion 32: Second regulating portion 40: Scissors gear 50: Axially urging member (Disc spring) 71: Bearing member 72: Axially inner face 80: Bolt