N/A.
The present disclosure relates generally to a baler implement, and more particularly to a roller of the baler implement.
After an operator utilizes a cutting implement, such as but not limited to a windrower (swather) to cut small grain crops or hay, the operator may later, use another implement, such as a baler, to collect the windrow and form a bale. Normally, the baler has one or more rolls that directly or indirectly engage the crop materials during the bale formation process, which may include feeding and accumulating the crop materials, and wrapping and ejecting the bale.
A baler is provided. The baler includes a main frame and at least one roll. The main frame includes two side walls spaced apart and is operable to form a bale therebetween. The roll includes a roll body, at least one protrusion, and at least one crop stop apparatus. The roll body extends along a central longitudinal axis between a first roll end and a second roll end. Each of the first roll end and the second roll end is rotatably coupled to a respective one of the side walls. The roll body defines an exterior circumferential surface extending between the first roll end and the second roll end along the central longitudinal axis. The protrusion extends from the exterior circumferential surface of the roll body at least partially between the first roll end and the second roll end. The crop stop apparatus is disposed adjacent to one of the first roll end or the second roll end on the exterior circumferential surface of the roll body. The at crop stop apparatus is operable to limit crop movement axially along the central longitudinal axis beyond one of the first roll end or the second roll end relative to a center of the roll body.
In one aspect of the disclosure, the at least one crop stop apparatus includes at least one crop stop unit having a first stop portion and a second stop portion, with the first stop portion arranged to engage crop earlier than the second stop portion when the roll body rotates in a crop processing direction.
In one aspect of the disclosure, relative to one of the first roll end and the second roll end to which the at least one crop stop unit is closer, a first surface area of the first stop portion has narrower distance from one of the first roll end and the second roll end than does a second surface area of the second stop portion.
In one aspect of the disclosure, the crop stop apparatus includes a crop stop unit having a first stop portion and the second stop portion, and the first stop portion engages crop earlier than does the second stop portion when the roll body rotates in a crop processing direction.
In one aspect of the disclosure, the at least one protrusion is a helical pattern such that one end of the at least one protrusion engages with crop earlier than does the other end of the at least one protrusion when the roll body rotates in the crop processing direction.
In one aspect of the disclosure, the at least one protrusion includes multiple protrusions, and each crop stop apparatus includes a crop stop unit disposed between adjacent two of the protrusions.
In one aspect of the disclosure, each side wall includes a support plate, and the at least one roll includes two studs coupled to a respective one of the first roll end or second roll end and rotatably coupled to a respective one of the support plates.
In one aspect of the disclosure, the at least one of the side walls includes a side sheet having a clearance hole, and one of the first roll end or the second roll end is positioned through the clearance hole and between the support plate and the side sheet, and with the at least one crop stop apparatus operable to move the crop out of the clearance hole and toward the center of the roll body axially along the central longitudinal axis.
In one aspect of the disclosure, the at least one crop stop apparatus includes at least one crop stop unit having a first stop portion and a second stop portion and the first stop portion is engaged with the crop earlier than is the second stop portion. A first surface area of first stop portion extends through a clearance hole and is positioned between the support plate and the side sheet.
In one aspect of the disclosure, the at least one crop stop apparatus includes one crop stop apparatus positioned on a portion of the roll body adjacent to the first roll end and another one crop stop apparatus positioned on a portion of the roll body adjacent to the second roll end.
In one aspect of the disclosure, the at least one protrusion includes multiple protrusions, each crop stop apparatus includes a crop stop unit disposed between adjacent two of the protrusions.
In one aspect of the disclosure, each protrusion defines a helical pattern, such that between the same adjacent two of the protrusions, one crop stop unit positioned on the portion of the roll body adjacent to the second roll end engages crop earlier than does one crop stop unit positioned on the portion of the roll body adjacent to the first roll end.
In one aspect of the disclosure, the at least one crop stop apparatus includes a crop stop unit which is disk shaped.
A roll of a baler is provided. The roll includes a roll body, at least one protrusion, and at least one crop stop apparatus. The roll body extends along a central longitudinal axis between a first roll end and a second roll end. Each of the first roll end and the second roll end is operably rotatably coupled to a respective one of side walls of the baler. The roll body defines an exterior circumferential surface extending between the first roll end and the second roll end along the central longitudinal axis. The at least one protrusion extends from the exterior circumferential surface of the roll body at least partially between the first roll end and the second roll end. The at least one crop stop apparatus is disposed adjacent to one of the first roll end or the second roll end on the exterior circumferential surface of the roll body. The at least one crop stop apparatus is operable to limit crop movement axially along the central longitudinal axis beyond one of the first roll end or the second roll end relative to a center of the roll body.
In one aspect of the disclosure, the at least one crop stop apparatus includes at least one crop stop unit having a first stop portion and a second stop portion. The first stop portion engages with crop earlier than does the second stop portion when the roll body rotates in a crop processing direction.
In one aspect of the disclosure, relative to one of the first roll end and the second roll end to which the at least one crop stop unit is closer, a first surface area of the first stop portion has narrower distance from one of the first roll end and the second roll end than does a second surface area of the second stop portion.
In one aspect of the disclosure, the at least one protrusion defines a helical pattern such that one end of the at least one protrusion engages the crop prior to the other end of the at least one protrusion.
In one aspect of the disclosure, the at least one protrusion includes multiple protrusion. Each crop stop apparatus includes a crop stop unit disposed between adjacent two of the protrusions.
In one aspect of the disclosure, the at least one crop stop apparatus includes a crop stop unit which is disk shaped.
A baler is provided. The baler includes a main frame, at least one roll, and at least one crop stop apparatus. The main frame includes two side walls spaced apart and operable to form a bale therebetween. The at least one roll includes a roll body extending along a central longitudinal axis between a first roll end and a second roll end. Each of the first roll end and the second roll end is rotatably coupled to a respective one of the side walls. The roll body defines an exterior circumferential surface extending between the first roll end and the second roll end along the central longitudinal axis. At least one crop stop apparatus is disposed adjacent to one of the first roll end or the second roll end on the exterior circumferential surface of the roll body. The at least one crop stop apparatus is operable to limit crop movement axially along the central longitudinal axis beyond one of the first roll end or the second roll end relative to a center of the roll body.
Other features and aspects will become apparent by consideration of the detailed description and accompanying drawings.
The detailed description of the drawings refers to the accompanying figures.
The following describes one or more explanatory embodiments or implementations of the disclosed roll of baler, the baler, as shown in the accompanying figures of the drawings described briefly above. Modifications of the embodiments and implementations may be contemplated by a person of skill in the art. The disclosed roll(s), for example, may include a starter roll which is located at a bale forming chamber of the baler. The starter roll engages with crop and is configured to rotate crop. The crop is later rolled in spiral fashion into a cylindrical bale. The disclosed roll(s) may include one or more rolls other than the starter roll which also assist the bale forming process. The disclosed baler may include but is not limit to a variable baling chamber (round) baler and a fixed baling chamber (round) baler.
Referring to
The main frame 22 may include two side walls 24 in a forward region. The two side walls 24 are symmetrical and spaced apart. The main frame 22 may also include two side walls 26 in a rear region. The two side walls 26 are also symmetrical and spaced apart. The bale B is formed between the side walls 24, 26. The two sides walls 26 may be a part of a discharge gate, which is pivotally mounted on an upper rear portion of the side walls 24 via a horizontal pivot arrangement 30. Referring to
There are some rolls which do not engage with the bale forming belt 34 but directly engage with crop 90 during baling process. For example, in the first embodiment, roll 40, which is a starter roll driven by a chain drive (not shown) or other arrangement, may be located at a bale forming chamber inlet 362 for rolling crop 90. The roll 40 is equipped with at least one crop stop apparatus 60 (
Referring to
Referring to
As shown in
In the first embodiment, because the protrusions 52 include the helical pattern, it may have more area to engage with crop 90 than does protrusions having straight axial pattern. The helical pattern of the protrusions 52 allows the roll 40 to run smoothly against the bale B. With reference to
The crop stop unit 62 includes an engaging surface 64 configured to engage with the crop 90. The engaging surface 64 in the first embodiment is an inner surface. The engaging surface 64 has a first surface area 642 and a second surface area 644. As shown in
Because of the helical pattern of the protrusions 52, between the same adjacent two of the protrusions 52, one crop stop unit 62 positioned on the portion of the roll body 42 adjacent to the second roll end 48 engages crop 90 earlier than does one crop stop unit 62 positioned on the portion of the roll body 42 adjacent to the first roll end 46.
Referring to
It is noted that the crop stop apparatus 60 may be applied to another roll with non-helical protrusions, such as with straight axial protrusions or without protrusion.
Without in any way limiting the scope, interpretation, or application of the claims appearing below, a technical effect of one or more of the example embodiments disclosed herein is to provide at least one crop stop apparatus on the roll, so as to limit crop movement axially along the central longitudinal axis of the roll toward the end(s) of the roll.
While the above describes example embodiments of the present disclosure, these descriptions should not be viewed in a limiting sense. Rather, other variations and modifications may be made without departing from the scope and spirit of the present disclosure as defined in the appended claims.