IP Library › Granted Patent US 11,913,550
Granted Patent B2
US 11,913,550 · App. 17/660,063 · Granted Feb 27, 2024

Continuously variable transmission, utility vehicle and CVT case

Inventor: Yuki Nakamura (Akashi, JP)
Assignee: KAWASAKI MOTORS, LTD.
F16H9/14B60K17/08F16H57/035F16H57/0416F16H57/0489
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 11,913,550
App. No.
17/660,063
Granted
Feb 27, 2024
Kind
B2
Abstract

A continuously variable transmission includes: a CVT mechanism including a driving pulley, a driven pulley, an annular belt wound around the driving pulley and the driven pulley, and a centrifugal fan blade disposed at the driving pulley; and a CVT case that defines an internal space accommodating the CVT mechanism. An inner surface of the CVT case includes: a peripheral surface portion that covers the CVT mechanism from an outer side in a radial direction orthogonal to an axial direction of the driving pulley; and a guide surface portion that projects toward an inner side in the radial direction from the peripheral surface portion.

Claims (53)

1. A continuously variable transmission comprising:

a CVT mechanism including a driving pulley, a driven pulley, an annular belt wound around the driving pulley and the driven pulley, and a centrifugal fan blade disposed at the driving pulley; and

a CVT case that defines an internal space accommodating the CVT mechanism, wherein

an inner surface of the CVT case includes:

a peripheral surface portion that covers the CVT mechanism from an outer side in a radial direction orthogonal to an axial direction of the driving pulley; and

a guide surface portion that projects toward an inner side in the radial direction from the peripheral surface portion,

the driving pulley includes:

a fixed sheave at which the centrifugal fan blade is disposed; and

a movable sheave opposed to the fixed sheave from a first side in the axial direction, and

the guide surface portion is arranged at a second side in the axial direction beyond a radially outer end of the movable sheave when the movable sheave is located closest to the fixed sheave.

2. The continuously variable transmission according to claim 1 , wherein the guide surface portion is arranged at the first side in the axial direction beyond a position of a radially outer end of the fixed sheave.

3. The continuously variable transmission according to claim 1 , wherein:

the CVT case includes:

a case main body including an opening that is open toward the first side in the axial direction; and

a cover attached to the case main body from the first side in the axial direction to close the opening, and

an inner surface of the cover includes the guide surface portion.

4. The continuously variable transmission according to claim 3 , wherein

the case main body and the cover include respective contact surfaces that are in contact with each other, and

the contact surfaces are arranged at the second side in the axial direction beyond the radially outer end of the movable sheave when the moveable sheave is located closest to the fixed sheave.

5. The continuously variable transmission according to claim 1 , wherein

the peripheral surface portion is a first peripheral surface portion,

the guide surface portion is a first guide surface portion, and

the inner surface of the CVT case further includes:

a second peripheral surface portion that extends from a radially inner end of the first guide surface portion toward the first side in the axial direction and covers the CVT mechanism from the outer side in the radial direction; and

a second guide surface portion that is located at the first side of the second peripheral surface portion in the axial direction and projects toward the inner side in the radial direction from the second peripheral surface portion.

6. The continuously variable transmission according to claim 5 , wherein

the first guide surface portion is arranged at the second side in the axial direction beyond the radially outer end of the movable sheave when the moveable sheave is located closest to the fixed sheave, and

the second guide surface portion is arranged at the first side in the axial direction beyond the radially outer end of the movable sheave when the moveable sheave is located closest to the fixed sheave.

7. The continuously variable transmission according to claim 1 , wherein the inner surface of the CVT case further includes an extended guide surface portion which, when viewed from the axial direction, projects from the peripheral surface portion toward a virtual line connecting an axis of the driving pulley and an axis of the driven pulley and is continuous with the guide surface portion.

8. The continuously variable transmission according to claim 7 , wherein a projection amount of the extended guide surface portion decreases as the extended guide surface portion extends from the driving pulley toward the driven pulley.

9. A utility vehicle comprising:

a prime mover; and

a continuously variable transmission connected to the prime mover, wherein

the continuously variable transmission includes:

a CVT mechanism including a driving pulley, a driven pulley, an annular belt wound around the driving pulley and the driven pulley, and a centrifugal fan blade disposed at the driving pulley; and

a CVT case that defines an internal space accommodating the CVT mechanism,

an inner surface of the CVT case includes:

a peripheral surface portion that covers the CVT mechanism from an outer side in a radial direction orthogonal to an axial direction of the driving pulley; and

a guide surface portion that projects toward an inner side in the radial direction from the peripheral surface portion,

the driving pulley includes:

a fixed sheave at which the centrifugal fan blade is disposed; and

a movable sheave opposed to the fixed sheave from a first side in the axial direction, and

the guide surface portion is arranged at a second side in the axial direction beyond a radially outer end of the movable sheave when the movable sheave is located closest to the fixed sheave.

10. A CVT case that defines an internal space accommodating a CVT mechanism including a driving pulley, a driven pulley, an annular belt wound around the driving pulley and the driven pulley, and a centrifugal fan blade disposed at the driving pulley,

the CVT case comprising an inner surface that defines the internal space, wherein the inner surface includes:

a bottom surface portion that is opposed to the driving pulley in an axial direction;

a first peripheral surface portion that covers the CVT mechanism from an outer side in a radial direction orthogonal to the axial direction of the driving pulley;

a first guide surface portion that projects toward an inner side in the radial direction from the first peripheral surface portion;

a second peripheral surface portion that extends from a radially inner end of the first guide surface portion toward a first side in the axial direction and covers the CVT mechanism from the outer side in the radial direction; and

a second guide surface portion that is located at the first side of the second peripheral surface portion in the axial direction and projects toward the inner side in the radial direction from the second peripheral surface portion.

11. The continuously variable transmission according to claim 6 , wherein

the driving pulley further includes a sheave thruster mechanically moving the movable sheave relative to the fixed sheave in the axial direction in accordance with a rotational frequency of the driving pulley, and

the second guide surface portion is arranged at the second side in the axial direction beyond the sheave thruster when the movable sheave is located farthest away from the fixed sheave.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 28, 2022
From: NAKAMURA, YUKI
To: KAWASAKI MOTORS, LTD.
Reel/Frame 060327/0245 →
Continuity (1)
Related Publication 20230341029A1 · Oct 26, 2023