The present invention relates to a sway block of a three-point implement hitch.
One drawback of currently used sway blocks for a three point hitch lies in their maneuvering and adjustment at the bottom of the implement hitch. When the implement is attached maneuvering the sway block may prove awkward and extremely dangerous to the operator. In fact, if adjusting the implement hitch by inserting a hand inside the space housing, any undesired lateral movement of the hitch could result in crushing of the operator's hand.
It is therefore an object of the present invention to provide a safe, easy-to-maneuver sway block designed to eliminate the aforementioned drawbacks as well as to provide a sway block for a three-point farm implement hitch, designed to eliminate the aforementioned drawbacks.
A further advantage of the invention lies in the sway block performing the dual function of supporting the tow hook and preventing sway of the bottom arms of a three-point farm implement hitch.
The main advantage of the present invention lies in enabling the adjustment of the sway block from above, or even from the driver's cab.
Another advantage of the invention lies in reducing the width of the sway block, which is extremely important for use with small tractors (for orchards, vineyards, etc.) which are narrower than multipurpose or standard tractors.
The invention will now be described further, by way of example, with reference to the accompanying drawings, in which:
Two levers 3, 4 are hinged to each right-angle plate 1a, 1b by respective pins 11, 12 (see
To permit rotation of levers 3, 4, two slots FS1, FS2 are formed in each right-angle plate 1a, 1b. The two levers 3, 4 of right-angle plate 1a are hinged to a respective lock member 2A by respective pins 7, 8.
Similarly, the two levers 3, 4 of right-angle plate 1b are hinged to a respective lock member 2B by respective pins 9, 10. Levers 3, 4 of right-angle plate 1a and lock member 2A combine to form a first articulated parallelogram PP1. Similarly, levers 3, 4 of right-angle-plate 1b and lock member 2B combine to form a second articulated parallelogram PP2.
By virtue of articulated parallelograms PP1 and PP2, lock members 2A and 2B move vertically up and down in the direction shown by a first two-way arrow R1, and move back and forth in the direction shown by a second two-way arrow R2.
As shown particularly in
In the embodiment shown in the attached drawings, an actuating mechanism MM comprises two screws 16 with a vertical axis (a). Each screw 16 is supported by a respective fixed drilled bush 17 integral with a respective right-angle plate 1a, 1b of supporting frame 1.
When the operator (not shown), working from above, tightens/loosens screws 16 (which react on fixed drilled bushes 17), slides 15 move as shown by arrow R1, thus also moving pins 14, about which respective levers 5A, 5B rotate and move, thus also moving respective articulated parallelograms PP1, PP2.
As they move vertically upwards (in one of the two directions indicated by arrow R1), lock members 2A, 2B also move outwards to lock the two bottom arms 20 of three-point implement hitch AT of a farm implement AA (not shown), thus achieving the desired effect, as shown in
Number | Date | Country | Kind |
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BO2007A0200 | Mar 2007 | IT | national |
Number | Name | Date | Kind |
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4116458 | Berg | Sep 1978 | A |
4640522 | Teich | Feb 1987 | A |
5201539 | Mayfield | Apr 1993 | A |
Number | Date | Country | |
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20080230241 A1 | Sep 2008 | US |