IP Library Granted Patent US 9,656,703
Granted Patent B2
US 9,656,703 · App. 13/170,697 · Granted May 23, 2017

All-terrain vehicle (ATV) propellable on wheels or endless tracks

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Quick Facts
Patent No.
US 9,656,703
App. No.
13/170,697
Granted
May 23, 2017
Kind
B2
Abstract

An all-terrain vehicle (ATV) equippable with a plurality of ground-engaging wheels or a plurality of ground-engaging track assemblies providing traction on the ground. The ATV is designed to facilitate its use whether it is equipped with the ground-engaging wheels or the ground-engaging track assemblies. A powertrain, a steering system, a suspension, a braking system, a body, and/or other components of the ATV have features which take into account that the ATV can be equipped with either the ground-engaging wheels or the ground-engaging track assemblies.

Claims (55)

1. An all-terrain vehicle (ATV), the ATV being equippable with a plurality of ground-engaging wheels or a plurality of ground-engaging track assemblies providing traction on the ground, each ground-engaging track assembly of the plurality of ground-engaging track assemblies comprising: a plurality of track-contacting wheels; and an endless track disposed around the plurality of track-contacting wheels, the plurality of track-contacting wheels including a drive wheel for driving the endless track, the endless track comprising an inner side for facing the plurality of track-contacting wheels and a ground-engaging outer side for engaging the ground, the ATV comprising:

a powertrain for delivering power to the ground-engaging wheels when the ATV is equipped with the ground-engaging wheels and to the drive wheels of the ground-engaging track assemblies when the ATV is equipped with the ground-engaging track assemblies, the drive wheels of the ground-engaging track assemblies being different from the ground-engaging wheels, the powertrain being operable in a wheel mode when delivering power to the ground-engaging wheels and in a track mode when delivering power to the drive wheels of the ground-engaging track assemblies; and

a mode selector for selecting a particular one of the wheel mode and the track mode to cause the powertrain to operate in the particular one of the wheel mode and the track mode.

2. The ATV claimed in claim 1 , wherein the powertrain comprises a prime mover for generating power, the prime mover operating differently in the track mode than in the wheel mode.

3. The ATV claimed in claim 2 , wherein the powertrain is configured to control a power output of the prime mover differently in the track mode than in the wheel mode.

4. The ATV claimed in claim 2 , comprising an accelerator for use by a user of the ATV, a response of the prime mover to input of the user at the accelerator being different in the track mode than in the wheel mode.

5. The ATV claimed in claim 2 , wherein at least one of (i) an idle speed of the prime mover and (ii) a maximum speed of the prime mover is different in the track mode than in the wheel mode.

6. The ATV claimed in claim 2 , wherein a torque curve or power curve of the prime mover is different in the track mode than in the wheel mode.

7. The ATV claimed in claim 2 , wherein an operational region of a torque curve or power curve of the prime mover is different in the track mode than in the wheel mode.

8. The ATV claimed in claim 7 , wherein the operational region of the torque curve or power curve of the prime mover in the track mode includes a lower range of speeds than the operational region of the torque curve or power curve of the prime mover in the wheel mode.

9. The ATV claimed in claim 2 , wherein the powertrain is configured to control a temperature of the prime mover differently in the track mode than in the wheel mode.

10. The ATV claimed in claim 2 , wherein an operational temperature range of the prime mover is different in the track mode than in the wheel mode.

11. The ATV claimed in claim 2 , comprising a cooling system for cooling the prime mover, a rate of cooling of the prime mover by the cooling system being different in the track mode than in the wheel mode.

12. The ATV claimed in claim 2 , wherein a warm-up process of the prime mover is different in the track mode than in the wheel mode.

13. The ATV claimed in claim 1 , wherein the powertrain comprises a prime mover for generating power and a transmission for transmitting power, the transmission operating differently in the track mode than in the wheel mode.

14. The ATV claimed in claim 13 , wherein the powertrain controls a transmission state of the transmission differently in the track mode than in the wheel mode.

15. The ATV claimed in claim 13 , wherein a shifting scheme of the transmission is different in the track mode than in the wheel mode.

16. The ATV claimed in claim 13 , wherein, for a given speed of the prime mover, a transmission ratio of the transmission is different in the track mode than in the wheel mode such that there is more torque at an output of the transmission in the track mode than in the wheel mode.

17. The ATV claimed in claim 13 , wherein a set of available transmission states of the transmission is different in the track mode than in the wheel mode.

18. The ATV claimed in claim 17 , wherein the set of available transmission states of the transmission in the track mode includes a transmission ratio that is lower than any transmission ratio of the set of available transmission states of the transmission in the wheel mode.

19. The ATV claimed in claim 13 , wherein the transmission has at least one of (i) a transmission ratio dedicated to the wheel mode and (ii) a transmission ratio dedicated to the track mode.

20. The ATV claimed in claim 13 , wherein the transmission has a greater number of transmission ratios in a reverse direction of the transmission in the track mode than in the wheel mode.

21. The ATV claimed in claim 1 , wherein the powertrain comprises a traction control system, the traction control system operating differently in the track mode than in the wheel mode.

22. The ATV claimed in claim 1 , wherein the powertrain is configured to control differently the power delivered to the drive wheels of the ground-engaging track assemblies in the track mode than the power delivered to the ground-engaging wheels in the wheel mode.

23. The ATV claimed in claim 1 , wherein the powertrain is configured to apply more torque to the drive wheels of the ground-engaging track assemblies in the track mode than to the ground-engaging wheels in the wheel mode.

24. The ATV claimed in claim 1 , wherein the powertrain comprises a powertrain controller for controlling the powertrain, the mode selector providing an indication of the particular one of the wheel mode and the track mode to the powertrain controller.

25. The ATV claimed in claim 1 , comprising a user interface for use by a user of the ATV, the mode selector comprising a mode selection control implemented by the user interface, the mode selection control allowing the user to select the particular one of the wheel mode and the track mode.

26. The ATV claimed in claim 25 , wherein the mode selection control comprises at least one of a button, a switch, a knob and a lever.

27. The ATV claimed in claim 1 , wherein the mode selector comprises a sensor for sensing whether the ATV is equipped with the ground-engaging wheels or the ground-engaging track assemblies.

28. The ATV claimed in claim 27 , wherein the sensor is a contact sensor for sensing whether the ATV is equipped with the ground-engaging wheels or the ground-engaging track assemblies based on physical contact with the contact sensor.

29. The ATV claimed in claim 27 , wherein the sensor is a contactless sensor for sensing whether the ATV is equipped with the ground-engaging wheels or the ground-engaging track assemblies without physical contact with the contactless sensor.

30. The ATV claimed in claim 29 , wherein the contactless sensor includes at least one of an optical sensor, an acoustic sensor, and a magnetic sensor.

31. The ATV claimed in claim 1 , wherein the mode selector comprises a mode controller configured to select the particular one of the wheel mode and the track mode based on input from the powertrain.

32. The ATV claimed in claim 1 , comprising a user interface for use by a user of the ATV, the user interface comprising a mode indicator indicating the particular one of the wheel mode and the track mode to the user.

33. The ATV claimed in claim 1 , wherein the mode selector is configured to select the particular one of the wheel mode and the track mode based at least in part on an input not received from a user interface of the ATV.

34. The ATV claimed in claim 33 , wherein the mode selector comprises a sensor for sensing whether the ATV is equipped with the ground-engaging wheels or the ground-engaging track assemblies; and wherein the input not received from the user interface of the ATV is received from the sensor.

35. The ATV claimed in claim 1 , wherein the drive wheels of the ground-engaging track assemblies are smaller in diameter than the ground-engaging wheels.

36. The ATV claimed in claim 1 , wherein the drive wheel of each of the ground-engaging track assemblies is spaced apart from a bottom run of the endless track.

37. The ATV claimed in claim 1 , wherein the drive wheel of each of the ground-engaging track assemblies comprises a sprocket.

38. The ATV claimed in claim 1 , wherein the plurality of track-contacting wheels includes a leading idler wheel and a trailing idler wheel spaced apart in a longitudinal direction of the ground-engaging track assembly.

39. The ATV claimed in claim 1 , wherein the powertrain comprises an electronic powertrain controller configured to implement operation of the powertrain in the particular one of the wheel mode and the track mode based at least in part on an indication of the particular one of the wheel mode and the track mode from the mode selector.

40. A controller for an all-terrain vehicle (ATV), the ATV being equippable with a plurality of ground-engaging wheels or a plurality of ground-engaging track assemblies providing traction on the ground, each ground-engaging track assembly of the plurality of ground-engaging track assemblies comprising: a plurality of track-contacting wheels; and an endless track disposed around the plurality of track-contacting wheels, the plurality of track-contacting wheels including a drive wheel for driving the endless track, the endless track comprising an inner side for facing the plurality of track-contacting wheels and a ground-engaging outer side for engaging the ground, the ATV comprising a powertrain for delivering power to the ground-engaging wheels when the ATV is equipped with the ground-engaging wheels and to the drive wheels of the ground-engaging track assemblies when the ATV is equipped with the ground-engaging track assemblies, the controller comprising:

a processing portion; and

a memory portion storing a program executable by the processing portion to control the powertrain such that the powertrain operates in a wheel mode when delivering power to the ground-engaging wheels and in a track mode when delivering power to the drive wheels of the ground-engaging track assemblies, the drive wheels of the ground-engaging track assemblies being different from the ground-engaging wheel.

41. Non-transitory computer-readable storage media storing a program executable by at least one processor to implement a controller for an all-terrain vehicle (ATV), the ATV being equippable with a plurality of ground-engaging wheels or a plurality of ground-engaging track assemblies providing traction on the ground, each ground-engaging track assembly of the plurality of ground-engaging track assemblies comprising: a plurality of track-contacting wheels; and an endless track disposed around the plurality of track-contacting wheels, the plurality of track-contacting wheels including a drive wheel for driving the endless track, the endless track comprising an inner side for facing the plurality of track-contacting wheels and a ground-engaging outer side for engaging the ground, the ATV comprising a powertrain for delivering power to the ground-engaging wheels when the ATV is equipped with the ground-engaging wheels and to the drive wheels of the ground-engaging track assemblies when the ATV is equipped with the ground-engaging track assemblies, the program when executed by the at least one processor causing the controller to control the powertrain such that the powertrain operates in a wheel mode when delivering power to the ground-engaging wheels and in a track mode when delivering power to the drive wheels of the ground-engaging track assemblies, the drive wheels of the ground-engaging track assemblies being different from the ground-engaging wheels.

42. An all-terrain vehicle (ATV), the ATV being equippable with a plurality of ground-engaging wheels or a plurality of ground-engaging track assemblies providing traction on the ground, each ground-engaging track assembly of the plurality of ground-engaging track assemblies comprising: a plurality of track-contacting wheels; and an endless track disposed around the plurality of track-contacting wheels, the plurality of track-contacting wheels including a drive wheel for driving the endless track, the endless track comprising an inner side for facing the plurality of track-contacting wheels and a ground-engaging outer side for engaging the ground, the ATV comprising:

a frame;

a powertrain for delivering power to the ground-engaging wheels when the ATV is equipped with the ground-engaging wheels and to the drive wheels of the ground-engaging track assemblies when the ATV is equipped with the ground-engaging track assemblies;

a steering system for steering the ATV on the ground;

a suspension for allowing relative motion between the frame and the ground-engaging wheels when the ATV is equipped with the ground-engaging wheels and relative motion between the frame and ground-engaging track assemblies when the ATV is equipped with the ground-engaging track assemblies, the drive wheels of the ground-engaging track assemblies being different from the ground-engaging wheels; and

a braking system for braking the ATV;

at least one of the powertrain, the steering system, the suspension, and the braking system being operable in a wheel mode when the powertrain delivers power to the ground-engaging wheels and in a track mode when the powertrain delivers power to the drive wheels of the ground-engaging track assemblies, the ATV comprising a mode selector for selecting a particular one of the wheel mode and the track mode to cause the at least one of the powertrain, the steering system, the suspension, and the braking system to operate in the particular one of the wheel mode and the track mode.

43. An all-terrain vehicle (ATV), the ATV being equippable with a plurality of ground-engaging wheels or a plurality of ground-engaging track assemblies providing traction on the ground, each ground-engaging track assembly of the plurality of ground-engaging track assemblies comprising: a plurality of track-contacting wheels; and an endless track disposed around the plurality of track-contacting wheels, the plurality of track-contacting wheels including a drive wheel for driving the endless track, the endless track comprising an inner side for facing the plurality of track-contacting wheels and a ground-engaging outer side for engaging the ground, the ATV comprising:

a powertrain for delivering power to the ground-engaging wheels when the ATV is equipped with the ground-engaging wheels and to the drive wheels of the ground-engaging track assemblies when the ATV is equipped with the ground-engaging track assemblies, the powertrain being operable in a wheel mode when the ATV is equipped with the ground-engaging wheels and in a track mode when the ATV is equipped with the ground-engaging track assemblies; and

a mode selector for selecting a particular one of the wheel mode and the track mode to cause the powertrain to operate in the particular one of the wheel mode and the track mode, the mode selector being configured to select the particular one of the wheel mode and the track mode based at least in part on an input not received from a user interface of the ATV.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jun 26, 2019
From: CANADIAN IMPERIAL BANK OF COMMERCE
To: CAMSO INC. (FORMERLY CAMOPLAST SOLIDEAL INC.)
Reel/Frame 050022/0767 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR NAME PREVIOUSLY RECORDED AT REEL: 042242 FRAME: 0813. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded May 22, 2017
From: CAMOPLAST SOLIDEAL INC.
To: CAMSO INC.
Reel/Frame 042521/0097 →
CHANGE OF NAME Recorded Apr 13, 2017
From: CAMSO INC.
To: CAMSO INC.
Reel/Frame 042242/0813 →
SECURITY AGREEMENT Recorded Aug 14, 2013
From: CAMOPLAST SOLIDEAL INC.
To: CANADIAN IMPERIAL BANK OF COMMERCE, AS AGENT
Reel/Frame 031006/0511 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2011
From: ZUCHOSKI, JEREMIE; BERNARD, JEAN
To: CAMOPLAST SOLIDEAL INC.
Reel/Frame 026886/0474 →