Clutch system for twin baler
11477944 · 2022-10-25
Inventors
Cpc classification
A01F2015/0866
HUMAN NECESSITIES
International classification
Abstract
A clutch system for use with an agricultural baler to create a single hay bale that is easily separable into two or more smaller, lighter bales that remain tied after separation is provided herein. The clutch system controls the center knotter of a three-tie baler to be activated every other time the other two knotters are activated to tie two 2′×2′ bales into a single 2′×4′ bale. The two 2′×2′ bales are individually tied so that if a user separates the 2′×′4 bale, the smaller bales remain intact.
Claims
1. A drive system for controlling a center knotter of a baler, the drive system comprising: a trigger switch is keyed to a motion of the baler electrically; an alternating relay configured to be triggered by the trigger switch; a taper tooth gear having drive teeth and brake teeth; a countershaft; a linear actuator connected to the alternating relay; a drive sprocket mounted on the countershaft; a center knotter sprocket mounted on the countershaft; and a brake sprocket mounted on the countershaft, wherein the linear actuator is configured to slide the taper tooth gear between a drive position and a braked position, where the drive position occurs when the drive teeth of the taper tooth gear are engaged with the drive sprocket and the braked position occurs when the brake teeth of the taper tooth gear are engaged with the brake sprocket, and wherein the center knotter sprocket is configured to engage the center knotter of the baler.
Description
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION OF THE INVENTION
(9) In the following detailed Description, reference is made to specific embodiments in which the invention may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the invention. It is to be understood that the various embodiments of the invention, although different, are not necessarily mutually exclusive.
(10) Furthermore, a particular feature, structure, or characteristic described herein in connection with one embodiment may be implemented within other embodiments without departing from the scope of the invention. In addition, it is to be understood that the location or arrangement of individual elements within each disclosed embodiment may be modified without departing from the scope of the invention. The following detailed Description is, therefore, not to be taken in a limiting sense.
(11) The word “exemplary” is used herein to mean “serving as an example, instance, or illustration.” Any embodiment described herein as “exemplary” is not necessarily to be construed as preferred or advantageous over other embodiments. Likewise, the terms “embodiment(s) of the invention”, “alternative embodiment(s)”, and “exemplary embodiment(s)” do not require that all embodiments of the method, system, and apparatus include the discussed feature, advantage or mode of operation. The following Description of the preferred embodiment is merely exemplary in nature and is in no way intended to limit the invention, its application, or use.
(12) There has thus been broadly outlined the more important features of the invention in order that the detailed Description thereof that follows may be better understood, and in order that the present contribution to the art may be better appreciated. There are, of course, additional features of the invention that will be described herein a footer and which will form additional subject matter. Those skilled in the art will appreciate that the conception upon which this disclosure is based may be readily utilized as a basis for the designing of other structures, methods and systems for carrying out the purposes of the present invention. It is important, therefore, that any embodiments of the present invention be regarded as including such equivalent constructions insofar as they do not depart from the spirit and scope of the present invention.
(13) Further, the purpose of the Abstract herein is to enable the U.S. Patent and Trademark Office and the public generally, and especially the scientists, engineers and practitioners in the art who are not familiar with patent or legal terms or phraseology, to determine quickly from a cursory inspection the nature and essence of the technical disclosure of the application. The Abstract is neither intended to define the invention of this application nor is it intended to be limiting as to the scope of the invention in any way.
(14) Referring now to
(15) An embodiment of the present invention provides a three-tie baler with two outside knotters and a center knotter. The center knotter is connected to a countershaft and clutch that cause the center knotter to be activated every other time the two outside knotters are activated.
(16) An embodiment of the present invention is designed to be installed on existing three-tie balers as an aftermarket kit. The invention adapts a baler that bales 2′×4′ bales to tie 2′×2′ bales. Generally, the 2′×4′ bales weigh about 100 lbs. and the 2′×2′ bales weigh about 50 lbs.
(17) Mechanical equipment then can be used to pick up bales out of the field in 3- or 4-ton block stacks. Then, loaded on trucks and transported to hay sheds or set off at retail markets for resale with no hand labor.
(18) The 2′×2′ bales would be tied with outside twine and then incorporated into 2′×4′ bale held by the center twine of the knotter with all bales tied together making a solid package. By cutting the center twine on the 2′×4′ bales would separate into 2′×2′ bales making it easier for users to manually handle the smaller bales.
(19) An embodiment of the present invention ties 2′×2′ bales into a 2′×4′ bale by a clutch mechanism 10 installed to operate the center knotter 11 on the three-tie baler. The clutch mechanism 10 is shown in
(20) Taper tooth gear 26 is capable of sliding between a sprocket position 27 and a brake position 28. Taper tooth gear 26 is mechanically linked to pivot fork 29, which pivots in response to movement by linear actuator 30 driven by motor 31.
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(22) Every other time the knotter ties a 2′×2′ bale, the center knotter 11 is energized by the clutch mechanism 10 to also tie the two 2′×2′ bales into one 2′×4′ foot bale. A twine lever or take-up spool (not shown) is installed on the center twine for a smooth twine feeding with no restrictions. The process does not affect the efficiency of baler.
(23) In operation, the needles of the outside knotters and the outside knotters tie with every rotation of the knotter shaft 12 to tie a 2′×2′ bale. The countershaft 20 and drive sprocket 24 cause the center needle and knotter (not shown) to be activated every other time a 2′×2′ bale is tied. When the center needle and knotter is activated, the center needle ties twine around two 2′×2′ bales causing them to be joined together into a single 2′×4′ bale. The 2′×4′ bale is eventually pushed out the ejection shoot for collection later. If a user desires, he or she can cut the center twine joining the two 2′×2′ bales into the 2′×4′ bales so that the 2′×2′ bales can be individually handled. However, if a user wishes to retain the 2′×4′ bale in its original configuration, then the center twine is left intact and the 2′×4′ bale can be manually or mechanically picked up or moved.
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(25) In an alternate embodiment, the invention is used on a high capacity baler that makes 3 tie 2×4 foot bales, up to 150 pounds. In handling these bales, normally it would be necessary to use all mechanical equipment for pick up out of field, stacking in 4 ton stacked blocks, transporting and unloading at a merchant for resale or at farm or stables, feeding livestock or bedding straw and final destination.
(26) Smaller bales that make a 2 tie bale under 75 pounds, are less ideal capacity and less efficient, as generally these bales are not the shape and size that can be cross tied into a tight stable stack preferable for transporting on the road or storage in larger hay barns.
(27) The 3 tie 2×4 foot baler can be adapted to make two 2×2 foot mini twin bales, which can be pressed together to make a 2×4 foot or used as a 2×2 foot bale. This is accomplished by using the outside twines to make 2×2 foot bales. When the second 2×2 foot bale is tying, the center string would also be tying the two 2×2 foot bale into one 2×4 foot 150 pound bale.
(28) As necessary, the center string on the 2×4 foot bales can be cut, allowing the two 2×2 foot bales to pop out for access for moving about small quantities and feeding.
(29) In a preferred embodiment taper tooth gear has 4 teeth, 2 on each end. The teeth are approximately wedge shape to enhance aligning in corresponding apertures in drive sprocket 24 or brake sprocket 25.
(30) In operation, the linear actuator would move the taper tooth gear approximately 3″ to the right engaging the drive sprocket 24 or back 3″ to the left engaging the brake sprocket 25. The brake sprocket would be attached solid to countershaft 20 to keep the center knotter in time from rotating when the main shaft and outside knotters are operating.
(31) Embodiments of the present invention can be retrofit on existing balers or constructed as part of a new baler depending on the particular implementation.
(32) In an alternate embodiment, there is provided a drive system for controlling a center knotter of a baler, including an alternating relay capable of being triggered by a trigger switch which is keyed to motion of a baler electrically and where the alternating relay is connected to a linear actuator which drives a taper tooth gear between a drive position and a braked position, where the drive position occurs when drive teeth of the taper tooth gear are engaged with a drive sprocket and braked position occurs when brake teeth of the taper tooth gear are engaged with a brake sprocket; a countershaft on which are mounted the brake sprocket, the drive sprocket, and a center knotter sprocket, where the center knotter sprocket is capable of engaging a center knotter of a baler; where the alternating relay is capable of being triggered by a trigger switch which is keyed to motion of the baler.
(33) In another embodiment, there is provided an agricultural baler, including a drive system for controlling a center knotter of the baler, including: an alternating relay triggered by movement of a needle of the center knotter or an outside knotter where such trigger drives a linear actuator to alternately engage a drive sprocket and a brake sprocket; the drive sprocket capable of driving a countershaft on which is mounted a center knotter sprocket, which center knotter sprocket carries a center knotter chain for driving a center knotter; and the brake sprocket capable of preventing rotation of the countershaft.
(34) In another embodiment, there is disclosed a method of creating double-sized bales from two single-sized bales, the method comprising engaging a three-tie knotter shaft with a center knotter to a countershaft capable of driving the center knotter on every-other rotation of the knotter shaft, where the countershaft rotates by engagement of a drive sprocket and brakes by engagement of a brake sprocket, and, when the countershaft rotates, a center knotter sprocket affixed thereto synchronously rotates to engage a center knotter.
(35) Therefore, the foregoing is considered as illustrative only of the principles of the present invention. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the present invention to the exact construction and operation described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the present invention. While the above Description describes various embodiments, it will be clear that the present invention may be otherwise easily adapted to fit any configuration as desired or required.
(36) As various changes could be made in the above embodiments without departing from the scope of the invention, it is intended that all matter contained in the above Description shall be interpreted as illustrative and not in a limiting sense.