A variable speed mechanism for propelling an associated lawn mowing apparatus has a variable pitch pulley assembly, a belt which connects the variable pitch pulley assembly to a transmission, a control arm assembly for controlling the variable pitch pulley assembly, and a speed selector for selectively adjusting the control arm assembly. The speed selector is positioned corresponding to the desired lawn mowing apparatus ground speed. This creates tension in a cable which moves a control arm. When the control arm is moved, it rotates about a pivot shaft adjusting the position of a bearing cup which, in turn, adjusts the position of the moveable pulley half within variable pitch pulley assembly. Once the pulley assembly has been positioned, the effective belt diameter is set. If the effective belt diameter is increased, the speed supplied to the transmission is increased assuming a fixed pulley size on the transmission input. If the effective belt diameter is decreased, the speed supplied to the transmission is decreased.
|
0. 12. A control arm assembly for use with a lawn mowing apparatus having a variable speed mechanism which provides propulsion to the lawn mowing apparatus, the lawn mowing apparatus also having a body, a transmission which is operatively connected to a drive axle, a shaft, and rotating means for rotating the shaft, the variable speed mechanism having a variable pitch pulley assembly, pulley connecting means for operatively connecting the variable pitch pulley assembly to the transmission and, selective adjusting means for selectively adjusting the control arm assembly, the variable pitch pulley assembly having first and second pulley halves, the second pulley half being selectively movable along the length of the shaft, the pulley connecting means fitting between said first and second pulley halves, the control arm assembly for moving the second pulley half along the length of the shaft, the control arm assembly comprising:
a control arm having first and second ends and an opening, said second end of said control arm being pivotably connected to the body, said first end of said control arm being operatively connected to the selective adjusting means, the shaft rotatably received within said opening in said control arm.
0. 16. A control arm assembly for use with a lawn mowing apparatus having a variable speed mechanism which provides propulsion to the lawn mowing apparatus, the lawn mowing apparatus also having a body, a transmission which is operatively connected to a drive axle, a shaft, and rotating means for rotating the shaft, the variable speed mechanism having a variable pitch pulley assembly, pulley connecting means for operatively connecting the variable pitch pulley assembly to the transmission and, selective adjusting means for selectively adjusting the control arm assembly, the variable pitch pulley assembly having first and second pulley halves, the second pulley half being selectively movable along the length of the shaft, the pulley connecting means fitting between said first and second pulley halves, the control arm assembly for moving the second pulley half along the length of the shaft, the control arm assembly comprising:
a control arm having first and second ends and an opening, said second end of said control arm being connected to the body, said first end of said control arm being operatively connected to the selective adjusting means, the shaft rotatably received within said opening in said control arm; a pivot shaft, said pivot shaft being operatively connected to said second end of said control arm, said control arm pivoting about said pivot shaft; a pivot bracket, said pivot bracket being fixedly connected to the body, said pivot bracket supporting said pivot shaft, and, a torsion spring for biasing said control arm about said pivot shaft, said torsion spring having first and second ends, said second end of said torsion spring being operatively connected to said pivot bracket, said first end of said torsion spring being operatively connected to said control arm, said pivot shaft received within said torsion spring.
17. A method for selectively controlling the ground speed of a lawn mowing apparatus, the lawn mowing apparatus having a body, a transmission which is operatively connected to a drive axle, a shaft, and rotating means for rotating the shaft, the method using a variable speed mechanism, the variable speed mechanism including a variable pitch pulley assembly having first and second pulley halves and a control arm having first and second ends, the variable speed mechanism also including a pivot shaft operatively connected to the second end of the control arm, the method comprising the steps of:
positioning a speed selector to a position corresponding to the desired lawn mowing apparatus ground speed; applying tension to a cable; moving the first end of a control arm; pivoting the control arm about the pivot shaft; adjusting the position of a second pulley half along the length of the shaft; changing the effective belt diameter of a variable pitch pulley assembly; and, providing propulsion to the transmission.
1. A lawn mowing apparatus comprising:
a body; a drive axle; a transmission operatively connected to said drive axle; a shaft; a cutting blade operatively connected to said shaft; rotating means for rotating said shaft; and, a variable speed mechanism for propelling said lawn mowing apparatus, said variable speed mechanism including: A) a variable pitch pulley assembly, said variable pitch pulley assembly operatively connected to having first and second pulley halves being positioned between said rotating means and said cutting blade, said first and second pulley halves receiving said shaft, said second pulley half being selectively moveable along the length of said shaft; B) pulley connecting means for operatively connecting said variable pitch pulley assembly to said transmission, said pulley connecting means providing propulsion for said drive axle; C) a control arm assembly for controlling the position of said variable pitch pulley assembly, said control arm assembly operatively connected to said variable pitch pulley assembly, said control arm assembly also attached to said body second pulley half, said control arm assembly having a control arm positioned between said second pulley half and said cutting blade, said control arm having first and second ends and an opening that rotatably receives said shaft, said second end of said control arm being pivotably connected to said body; and, D) selective adjusting means for selectively adjusting said control arm assembly, said first end of said control arm being operatively connected to said selective adjusting means, said selective adjusting means being positioned corresponding to the desired ground speed of said lawn mowing apparatus. 11. A lawn mowing apparatus comprising:
a body; a drive axle; a transmission operatively connected to said drive axle; a shaft; rotating means for rotating said shaft; and, a variable speed mechanism for propelling said lawn mowing apparatus, said variable speed mechanism including, A) a variable pitch pulley assembly, said variable pitch pulley assembly operatively connected to said shaft; B) pulley connecting means for operatively connecting said variable pitch pulley assembly to said transmission, said pulley connecting means providing propulsion for said drive axle; C) a control arm assembly for controlling said variable pitch pulley assembly, said control arm assembly operatively connected to said variable pitch pulley assembly, said control arm assembly also attached to said body, said control arm assembly including, (1) a control arm having first and second ends and an opening, said first end of said control arm being connected to said body, said shaft rotatably received within said opening in said control arm; (2) a pivot shaft, said pivot shaft being operatively connected to said first second end of said control arm, said control arm pivoting about said pivot shaft; (3) a pivot bracket, said pivot bracket being fixedly connected to said body, said pivot bracket supporting said pivot shaft; and, (4) a torsion spring for biasing said control arm about said pivot shaft, said torsion spring having first and second ends, said second end of said torsion spring being operatively connected to said pivot bracket, said first end of said torsion spring being operatively connected to said control arm, said pivot shaft received within said torsion spring; and, D) selective adjusting means for selectively adjusting said control arm assembly, said second end of said control arm being operatively connected to said selective adjusting means. 2. The lawn mowing apparatus of
a first pulley half; a second pulley half, said second pulley half being selectively movable along the length of said shaft, said pulley connecting means fitting between said first and second pulley halves; a bearing, said bearing rotatably receiving said shaft, said bearing operatively associated with said second pulley half; and, a bearing cup for holding said bearing, said bearing cup contacting said control arm assembly.
3. The lawn mowing apparatus of
4. The lawn mowing apparatus of
0. 5. The lawn mowing apparatus of
a control arm having first and second ends and an opening, said second end of said control arm being pivotably connected to the body, said first end of said control arm being operatively connected to said selective adjusting means, said shaft rotatably received within said opening in said control arm.
6. The lawn mowing apparatus of claim 5 1 wherein said control arm assembly further comprises:
a pivot shaft, said pivot shaft being operatively connected to said first second end of said control arm, said control arm pivoting about said pivot shaft; and, a pivot bracket, said pivot bracket being fixedly connected to said body, said pivot bracket supporting said pivot shaft.
7. The lawn mowing apparatus of claim 5 1 wherein said control arm has a first side for contacting said variable pitch pulley assembly, said first side of said control arm having a contoured surface for even wear of said variable pitch pulley assembly.
8. The lawn mowing apparatus of
9. The lawn mowing apparatus of
a speed selector, said speed selector for selectively adjusting said control arm assembly; a cable having first and second ends, said first end of said cable being operatively connected to said speed selector, said second end of said cable being operatively connected to said control arm assembly; and, a cable guide bracket for guiding said cable, said cable guide bracket being fixedly connected to said body, said cable guide bracket having a free rolling roller, said free rolling roller having a cable channel around the circumference, said cable received within said cable channel.
10. The lawn mowing apparatus of
0. 13. The control arm assembly of
a pivot shaft, said pivot shaft being operatively connected to said second end of said control arm, said control arm pivoting about said pivot shaft; and, a pivot bracket, said pivot bracket being fixedly connected to the body, said pivot bracket supporting said pivot shaft.
0. 14. The control arm assembly of
0. 15. The control arm assembly of
0. 18. The method of
pivoting the control arm about the pivot shaft.
0. 19. The lawn mowing apparatus of
0. 20. The lawn mowing apparatus of
a belt connecting said variable pitch pulley assembly to said transmission, said belt being positioned below said body.
|
1. Field of Invention
This invention pertains to the art of methods and apparatuses for use in controlling the ground speed of a lawn mowing apparatuses, and more specifically to methods and apparatuses for use in controlling the ground speed of a walk-behind mower.
2. Description of the Related Art
It is well known to provide lawn mowing apparatuses, specifically lawn and garden lawn mowing apparatuses such as walk-behind lawn mowers, with apparatuses and methods for controlling their ground speed. One known method uses a spring loaded variable pitch pulley assembly attached to a rotating shaft. The variable pitch pulley assembly typically has two pulley halves forming a "V" shape for a belt connecting the pulley assembly to some type of transmission which is operatively connected to a drive axle. The belt tension is adjusted by any of various means known in the art. When the belt tension is increased, the two pulley halves are forced apart by the belt, allowing the belt to move inwardly toward the shaft. This movement decreases the effective belt diameter of the pulley assembly, supplying a slower speed to the transmission. When the belt tension is decreased, the spring causes the two pulley halves to move closer together, forcing the belt to move outwardly from the shaft. This movement increases the effective belt diameter of the pulley assembly, supplying a faster speed to the transmission.
Referring now to the drawings wherein the showings are for purposes of illustrating a preferred embodiment of the invention only and not for purposes of limiting the same,
As can be seen in
With reference to FIGS. 2 and 4-6, the control arm assembly 30 has a control arm 32, a pivot shaft 34, a pivot bracket 36, and torsion spring 38. The control arm 32 has a first end 31 which has a hole 51 for holding the cable 22, an opening 53 into which the shaft and the bearing cup 46 fits, and a second end 33 which attaches to the body 12. The second end 33 of the control arm 32 has connecting members 35 which hold the pivot shaft 34. The pivot shaft 34 also fits into openings 37 in the pivot bracket 36 which connects the control arm 32 to the body (not shown). Torsion spring 38, having a first end 55 and a second end 57, fits around pivot shaft 34. The first end 55 of the torsion spring 38 fits against the second end 33 of the control arm 32. The second end 57 of the torsion spring 38 fits against the pivot bracket 36. With this arrangement, the torsion spring 38 biases the control arm 32 such that the first end 31 of the control arm 32 puts tension on the cable 22. With reference now to
With reference now to
In the operation of the variable speed mechanism, with reference to
The preferred embodiments have been described, hereinabove. It will be apparent to those skilled in the art that the above methods may incorporate changes and modifications without departing from the general scope of this invention. It is intended to include all such modifications and alterations in so far as they come within the scope of the appended claims or the equivalents thereof.
Patent | Priority | Assignee | Title |
6892517, | Feb 12 2003 | Tecumseh Power Company | Blade and ground speed control system |
7275355, | Feb 12 2003 | Certified Parts Corporation | Blade and ground speed control system |
7594377, | Oct 27 2006 | Sauer-Danfoss Inc. | Means of adjusting ground speed of a vehicle based on load on blade assembly |
7867117, | Apr 29 2005 | MTD Products Inc | In-line belt driven tille drive clutch |
8312946, | Jul 02 2009 | Husqvarna Consumer Outdoor Products N.A., Inc. | Trigger controller |
9163707, | Sep 30 2011 | MTD Products Inc | Method for controlling the speed of a self-propelled walk-behind lawn mower |
9175756, | Sep 30 2011 | MTD Products Inc | Speed control assembly for a self-propelled walk behind lawn mower |
9185843, | Nov 15 2013 | Honda Motor Co., Ltd. | Variable speed control systems and methods for walk behind working machine |
9470305, | Jan 24 2014 | Honda Motor Co., Ltd. | Variable speed control systems and methods for walk-behind working machines |
9651138, | Sep 30 2011 | MTD Products Inc.; MTD Products Inc | Speed control assembly for a self-propelled walk-behind lawn mower |
9791037, | Sep 30 2011 | MTD Products Inc | Speed control assembly for a self-propelled walk-behind lawn mower |
Patent | Priority | Assignee | Title |
2205976, | |||
2740246, | |||
3190136, | |||
4117652, | Sep 30 1976 | DANA CORPORATION, 4500 DORR ST , A CORP OF VA | Transmission for self-propelled, walking lawn mowers |
4119326, | Jun 10 1977 | Variable speed bicycle | |
5236395, | Nov 27 1991 | Reliance Electric Industrial Company | Maintenance friendly variable speed drive and methods |
FR2210091, | |||
GB1379553, | |||
WO8707932, | |||
WO9311375, |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
May 24 2000 | MTD Products Inc | (assignment on the face of the patent) | / |
Date | Maintenance Fee Events |
Feb 14 2006 | M1552: Payment of Maintenance Fee, 8th Year, Large Entity. |
Apr 12 2010 | REM: Maintenance Fee Reminder Mailed. |
Sep 08 2010 | EXP: Patent Expired for Failure to Pay Maintenance Fees. |
Date | Maintenance Schedule |
Jun 04 2005 | 4 years fee payment window open |
Dec 04 2005 | 6 months grace period start (w surcharge) |
Jun 04 2006 | patent expiry (for year 4) |
Jun 04 2008 | 2 years to revive unintentionally abandoned end. (for year 4) |
Jun 04 2009 | 8 years fee payment window open |
Dec 04 2009 | 6 months grace period start (w surcharge) |
Jun 04 2010 | patent expiry (for year 8) |
Jun 04 2012 | 2 years to revive unintentionally abandoned end. (for year 8) |
Jun 04 2013 | 12 years fee payment window open |
Dec 04 2013 | 6 months grace period start (w surcharge) |
Jun 04 2014 | patent expiry (for year 12) |
Jun 04 2016 | 2 years to revive unintentionally abandoned end. (for year 12) |