IP Library › Granted Patent US 8,932,142
Granted Patent B2
US 8,932,142 · App. 13/367,641 · Granted Jan 13, 2015

Damper device

Inventors: Yoshihiro Takikawa (Tsushima, JP); Yoichi Oi (Anjo, JP)
Assignee: Aisin AW Co., Ltd.
F16D3/66F16H45/02F16F15/12353F16F15/12346F16H2045/0205F16H2045/0231F16H2045/0294
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,932,142
App. No.
13/367,641
Granted
Jan 13, 2015
Kind
B2
Abstract

A damper device including an input element to which power from a motor is transmitted; a first elastic body to which power is transmitted from the input element; a first intermediate element to which power is transmitted from the first elastic body; a second elastic body to which power is transmitted from the first intermediate element; a second intermediate element to which power is transmitted from the second elastic body; a third elastic body to which power is transmitted from the second intermediate element; and an output element to which power is transmitted from the third elastic body. The first and second elastic bodies are coil springs, and the third elastic body is an arc spring that is arranged radially inward of the first and second elastic bodies.

Claims (64)

1. A damper device comprising:

an input element configured to transmit power from a motor to a first elastic body;

the first elastic body configured to transmit power from the input element to a first intermediate element;

the first intermediate element configured to transmit power from the first elastic body to a second elastic body;

the second elastic body configured to transmit power from the first intermediate element to a second intermediate element;

the second intermediate element configured to transmit power from the second elastic body to a third elastic body;

the third elastic body configured to transmit power from the second intermediate element to an output element; and

the output element to which power is transmitted from the third elastic body, wherein

the first and second elastic bodies are straight coil springs, and the third elastic body is an arc spring that is arranged radially inward of the first and second elastic bodies, and

the first intermediate element is formed as an annular member, an entire inner surface of the annular member supporting an outer surface of the first elastic body and an outer surface of the second elastic body, the inner surface of the annular member being formed as an annular shape.

2. The damper device according to claim 1 , wherein

the input element has a contact portion that contacts with one end of the first elastic body,

the first intermediate element has a contact portion that is arranged between the other end of the first elastic body and one end of the second elastic body adjacent to the first elastic body and that contacts with both,

the second intermediate element has a contact portion that contacts with the other end of the second elastic body and a contact portion that contacts with one end of the third elastic body, and

the output element has a contact portion that contacts with the other end of the third elastic body.

3. The damper device according to claim 2 , wherein

a stiffness of the first elastic body is higher than stiffnesses of the second and third elastic bodies.

4. The damper device according to claim 3 , wherein

the input element is connected via a lock-up clutch to an input member coupled to the motor, and the output element is coupled to an input shaft of a transmission.

5. The damper device according to claim 1 , wherein

a stiffness of the first elastic body is higher than stiffnesses of the second and third elastic bodies.

6. The damper device according to claim 1 , wherein

the input element is connected via a lock-up clutch to an input member coupled to the motor, and the output element is coupled to an input shaft of a transmission.

7. The damper device according to claim 1 , wherein the arc spring is configured to extend about 45 degrees or more of an inner circumference of the damper device.

8. The damper device according to claim 1 , wherein the arc spring is configured to extend about 90 degrees or more of an inner circumference of the damper device.

9. A damper device comprising:

an input element configured to transmit power from a motor to a first elastic body;

the first elastic body configured to transmit power from the input element to a first intermediate element;

the first intermediate element configured to transmit power from the first elastic body to a second elastic body;

the second elastic body configured to transmit power from the first intermediate element to a second intermediate element;

the second intermediate element configured to transmit power from the second elastic body to a third elastic body;

the third elastic body configured to transmit power from the second intermediate element to an output element; and

the output element to which power is transmitted from the third elastic body, wherein

the first and second elastic bodies are straight coil springs, and the third elastic body is an arc spring that is arranged radially inward of the first and second elastic bodies, and

the first intermediate element covers the first elastic body and the second elastic body,

the first intermediate element has a first cover member and a second cover member, the first cover member covering a first side part of the first and the second elastic bodies, and the second cover member covering a second side part of the first and the second elastic bodies, the first side part being substantially opposite from the second side part with respect to the first and the second elastic bodies in an axial direction of the damper device.

10. The damper device according to claim 9 , wherein

the input element has a contact portion that contacts with one end of the first elastic body,

the first intermediate element has a contact portion that is arranged between the other end of the first elastic body and one end of the second elastic body adjacent to the first elastic body and that contacts with both,

the second intermediate element has a contact portion that contacts with the other end of the second elastic body and a contact portion that contacts with one end of the third elastic body, and

the output element has a contact portion that contacts with the other end of the third elastic body.

11. The damper device according to claim 10 , wherein

a stiffness of the first elastic body is higher than stiffnesses of the second and third elastic bodies.

12. The damper device according to claim 11 , wherein

the input element is connected via a lock-up clutch to an input member coupled to the motor, and the output element is coupled to an input shaft of a transmission.

13. The damper device according to claim 9 , wherein

a stiffness of the first elastic body is higher than stiffnesses of the second and third elastic bodies.

14. The damper device according to claim 9 , wherein

the input element is connected via a lock-up clutch to an input member coupled to the motor, and the output element is coupled to an input shaft of a transmission.

15. The damper device according to claim 9 , wherein the arc spring is configured to extend about 45 degrees or more of an inner circumference of the damper device.

16. The damper device according to claim 9 , wherein the arc spring is configured to extend about 90 degrees or more of an inner circumference of the damper device.

17. A damper device comprising:

an input element configured to transmit power from a motor to a first elastic body;

the first elastic body configured to transmit power from the input element to a first intermediate element;

the first intermediate element configured to transmit power from the first elastic body to a second elastic body;

the second elastic body configured to transmit power from the first intermediate element to a second intermediate element;

the second intermediate element configured to transmit power from the second elastic body to a third elastic body;

the third elastic body configured to transmit power from the second intermediate element to an output element; and

the output element to which power is transmitted from the third elastic body, wherein

the first and second elastic bodies are straight coil springs, and the third elastic body is an arc spring that is arranged radially inward of the first and second elastic bodies, and

the first intermediate element covers the first elastic body and the second elastic body,

the first intermediate element has a first cover member and a second cover member, the first cover member extending substantially in parallel with an axial direction of the damper device and covering a first side part of the first and the second elastic bodies, and the second cover member extending substantially perpendicular to the axial direction of the damper device and covering a second side part of the first and the second elastic bodies.

18. The damper device according to claim 17 , wherein an end portion of the first cover member bends along a circumference direction of the first and the second elastic bodies, and

an end of the first cover member is located substantially opposite side of an end of the second cover member with respect to the first and the second elastic bodies.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2012
From: TAKIKAWA, YOSHIHIRO; OI, YOICHI
To: AISIN AW CO., LTD.
Reel/Frame 027689/0345 →
Priority Claims (1)
JP 2011-029714 · Feb 15, 2011 · national
Continuity (1)
Related Publication 20120208646A1 · Aug 16, 2012