1. Field of the Invention
This invention relates to a wheelbarrow and, in particular, to a wheelbarrow having a novel steering mechanism.
2. Discussion of the Prior Art
As described in the Bisaillon U.S. Pat. No. 5,924,708, issued Jul. 20, 1999, in general, conventional wheelbarrows are difficult to steer, particularly when filled with a heavy load. When using a single wheeled vehicle, tipping is a common occurrence when turning. The use of two wheels on a wheelbarrow makes the device move stable, but does not solve the turning problems. The second paragraph of the above-referenced Bisaillon US patent lists several references disclosing steering mechanisms for small carts and the like. The apparatus described by the Bisaillon patent provides a solution to the problem. However, in terms of structural simplicity the existing apparatus could use improvement, particularly if the steering mechanism is to be retrofitted to an existing vehicle.
The object of the present invention is to provide a wheelbarrow having a relatively simple steering mechanism, which facilitates construction of the wheelbarrow and retrofitting existing vehicles.
Accordingly, the invention relates to a wheelbarrow comprising:
a frame;
a container on the frame for carrying a load;
a pair of axles proximate a front end of the frame rotatable around vertical axes relative to the frame;
a pair of spaced apart handles extending rearwardly from and pivotally connected to the rear of the frame for independent rotation around a horizontal axis;
first levers extending downwardly from said handles;
second levers on said axles for rotating the axles around said vertical axes;
a pair of first linkages connecting said first and second levers; and
a second linkage interconnecting said pair of axles, whereby rotation of said handles in opposite directions around said horizontal axis results in rotation of both said axles around said vertical axes.
The invention is described below in greater detail with reference to the drawings, wherein:
With reference to the drawings, the wheelbarrow of the present invention includes a frame indicated generally at 1 supported by a pair of wheels 2 proximate the front end 3 and legs 4 at the rear end 5. A conventional container 7 is mounted on the frame 1 for carrying a load. A pair of handles 8 extend rearwardly from the frame 1 for lifting the rear end 5 of the frame. In the case of the present invention, the handles 8 are also used to steer the wheelbarrow.
As best shown in
A sleeve 18 extends downwardly from each of the sides 9 near the location of the crossbar 16 for rotatably receiving the vertical arm 19 of a generally L-shaped axle assembly 20 (
The wheelbarrow is steered using a steering mechanism, which includes the handles 8. As best shown in
Another, generally S-shaped lever 43, which is perpendicular to the lever 34, extends forwardly and upwardly from each axle assembly 20, i.e. towards the front end of the wheelbarrow. The levers 34 are interconnected by a second linkage 44 defined by a cross arm pivotally connected to the levers 43 by straight pins 45 and cotter pins 46. With this arrangement, rotation of the one axle assembly 20 around the longitudinal axis of the sleeve 18 results in a simultaneous corresponding rotation of the other axle assembly to cause turning of the wheels 2 in unison. The amount by which the wheels 2 can be turned is limited by stops in the form of a pair of spaced apart posts 48 mounted on a crossbar 49 extending between the bottom ends of the sleeves 18, and a pin 50 extending rearwardly from the center of the cross arm 44 between the posts 48. When the arm 44 moves sufficiently laterally with respect to the wheelbarrow frame 1, the pin 50 encounters one of the stop posts 48. The spacing between the posts 48 dictates the minimum turning radius of the wheelbarrow. The stop assembly reduces the likelihood of tipping during turning of the wheelbarrow.
In operation, with the handles 8 at the same level, the wheelbarrow will travel along a straight line. By lifting on one handle 8 and/or pushing down on the other handle 8, the arrangement of the levers 33, 34 and 43, and the linkages 36 and 44 cause the wheels 2 to rotate in unison around parallel horizontal axes so that the wheelbarrow turns smoothly. The use of levers and linkages directly connecting each handle 8 to one axle 25 makes turning of the wheelbarrow relatively easy. The stop posts 48 on the crossbar 49 and the pin 50 on the linkage 44 reduce the amount by which the wheels 2 can be turned to reduce the likelihood of tipping.
Number | Name | Date | Kind |
---|---|---|---|
2492157 | Riviere | Dec 1949 | A |
3066945 | Prescott | Dec 1962 | A |
4767128 | Terhune | Aug 1988 | A |
4854601 | Herndon | Aug 1989 | A |
4955625 | Herndon | Sep 1990 | A |
5924708 | Bisaillon et al. | Jul 1999 | A |
6446989 | Intengan | Sep 2002 | B1 |
Number | Date | Country | |
---|---|---|---|
20070096414 A1 | May 2007 | US |