A mower conditioner includes a rotary style cutter bed and a pair of laterally extending crop conditioning rolls spaced rearwardly from the cutter bed. crop flow is improved in the machine by a laterally extending conveying roller located between the cutter bed and the nip defined by the conditioning rolls. In particular, the conveying outer roller serves to lift cut crop up from the cutter bed and convey the crop rearwardly to the nip. This ensures that the cut crop moves in a steady stream from the cutter bed to the conditioning rolls, and thereby reduces the risk of cut crop being thrown forwardly by the cutters. A downwardly open area is preferably defined between the conveying roller and the cutter bed to provide a space through which dirt and debris can drop out of the machine. The conveying roller preferably has a rotational axis that is lower than the rotational axis of the lower conditioning roll and generally vertically aligned with the substantially planar cutting zone defined by the cutter bed.
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0. 40. A crop harvesting header configured for attachment to the mobile frame of a harvesting machine, said header comprising:
a crop cutting assembly comprising a series of rotary cutters that are rotatable about individual, upright axes and have knives that cooperatively define a laterally extending generally planar cutting zone along which crop material is severed from the ground by the cutting assembly;
a pair of laterally extending crop conditioning rolls cooperatively defining a nip therebetween that is spaced upwardly and rearwardly from the cutting zone,
said pair of conditioning rolls including a lower conditioning roll having a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the lower conditioning roll; and
a driveable crop conveying element having at least a portion thereof that moves upwardly and rearwardly between the cutting zone and the nip to convey crop cut by the cutting assembly toward the nip when the element is driven,
said conveying element comprising a laterally extending, rotatable conveying roller having an upper forward peripheral portion that moves rearwardly and upwardly generally away from the rotary cutters during rotation of the conveying roller,
said upper forward peripheral portion of the conveying roller being disposed in front of the lower forward peripheral portion of the lower conditioning roll and generally below the axis of rotation of the lower conditioning roll,
said conveying roller projecting downwardly below the plane of said cutting zone.
12. In a crop harvesting machine having a mobile frame, the improvement comprising:
a crop cutting assembly comprising a series of rotary cutters that are rotatable about individual, upright axes and have knives that cooperatively define a laterally extending generally planar cutting zone along which crop material is severed from the ground by the cutting assembly;
a pair of laterally extending crop conditioning rolls cooperatively defining a nip therebetween that is spaced upwardly and rearwardly from the cutting zone; and ,
said pair of conditioning rolls including a lower conditioning roll having a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the lower conditioning roll; and
a driveable crop conveying element having at least a portion thereof that moves upwardly and rearwardly between the cutting Zone zone and the nip to convey crop cut by the cutting assembly toward the nip when the element is driven,
said conveying element comprising a laterally extending, rotatable conveying roller having an upper forward peripheral portion that moves rearwardly and upwardly generally away from the rotary cutters during rotation of the conveying roller and a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the conveying roller,
said upper forward peripheral portion of the conveying roller being disposed in front of the lower forward peripheral portion of the lower conditioning roll, and most of the lower, forward peripheral portion of the conveying roller being disposed below the plane of said cutting zone.
1. A crop harvesting header configured for attachment to the mobile frame of a harvesting machine, said header comprising:
a crop cutting assembly comprising a series of rotary cutters that are rotatable about individual, upright axes and have knives that cooperatively define a laterally extending generally planar cutting zone along which crop material is severed from the ground by the cutting assembly;
a pair of laterally extending crop conditioning rolls cooperatively defining a nip therebetween that is spaced upwardly and rearwardly from the cutting zone,; and
said pair of conditioning rolls including a lower conditioning roll having a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the lower conditioning roll; and
a driveable crop conveying element having at least a portion thereof that moves upwardly and rearwardly between the cutting zone and the nip to convey crop cut by the cutting assembly toward the nip when the element is driven,
said conveying element comprising a laterally extending, rotatable conveying roller having an upper forward peripheral portion that moves rearwardly and upwardly generally away from the rotary cutters during rotation of the conveying roller and a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the conveying roller,
said upper forward peripheral portion of the conveying roller being disposed in front of the lower forward peripheral portion of the lower conditioning roll, and most of the lower, forward peripheral portion of the conveying roller being disposed below the plane of said cutting zone.
23. A crop harvesting machine comprising:
a mobile frame; and
a harvesting header supported on the frame for harvesting crop as the frame moves across a field, said header including
a cutter bed extending across the path of travel of the frame and including a series of rotary cutters that are rotatable about individual, upright axes and that have knives that cooperatively define a laterally extending generally planar cutting zone along which crop material is severed from the ground by the cutter bed,
header framework defining a laterally extending discharge opening spaced rearwardly from the cutter bed, with the opening being configured to receive cut crop from the series of cutters,
a pair of crop conditioning rolls spanning the discharge opening and defining a nip therebetween that is spaced upwardly and rearwardly from the other bed, and
said pair of conditioning rolls including a lower conditioning roll having a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the lower conditioning roll, and
a laterally extending crop conveying roller located between the cutter bed and the nip,
said conveying roller being rotatable in a direction to move crop from the cutter bed toward the nip,
said conveying roller having an upper forward peripheral portion that moves rearwardly and upwardly generally away from the rotary cutters during rotation of the conveying roller and a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the conveying roller,
said upper forward peripheral portion of the conveying roller being disposed in front of the lower forward peripheral portion of the lower conditioning roll, and most of the lower, forward peripheral portion of the conveying roller being disposed below the plane of said cutting zone.
0. 33. A crop harvesting machine comprising:
a mobile frame; and
a harvesting header supported on the frame for harvesting crop as the frame moves across a field, said header including
a cutter bed extending across the path of travel of the frame and including a series of rotary cutters rotatable about individual, upright axes,
said cutters having knives that cooperatively define a laterally extending generally planar cutting zone along which crop material is severed from the ground by the cutter bed,
header framework defining a laterally extending discharge opening spaced rearwardly from the cutter bed, with the opening being configured to receive cut crop from the series of cutters,
a pair of transversely extending, oppositely rotating crop conditioning rolls disposed within and spanning the discharge opening and defining a nip therebetween that is spaced upwardly and rearwardly from the cutter bed,
said pair of conditioning rolls including a lower conditioning roll having a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the lower conditioning roll,
said discharge opening having a pair of opposite ends,
said series of cutters including multiple pairs of oppositely rotating cutters positioned to direct severed material into the discharge opening,
said cutter bed projecting laterally outwardly beyond opposite ends of the discharge opening to present two sets of outboard cutters at opposite ends of the cutter bed that are disposed outboard of the discharge opening with the outboard cutters of each set rotating in the same direction generally inwardly toward the discharge opening,
a pair of crop conveying assemblies at opposite ends of the cutter bed for assisting in directing crop severed by the outboard cutters laterally inwardly generally toward the discharge opening,
each of said crop conveying assemblies comprising a plurality of laterally spaced impeller devices disposed higher than the outboard cutters and rotatable inwardly about individual, upright axes,
a laterally extending crop conveying roller located between the cutter bed and the nip,
said conveying roller being rotatable in a direction to move crop from the cutter bed toward the nip,
said conveying roller being disposed within said discharge opening and spanning the same,
said conveying roller having an upper forward peripheral portion that moves rearwardly and upwardly generally away from the rotary cutters during rotation of the conveying roller and a lower, forward peripheral portion that moves forwardly and upwardly generally toward the rotary cutters during rotation of the conveying roller,
said upper forward peripheral portion of the conveying roller being disposed in front of the lower forward peripheral portion of the lower conditioning roll, and most of the lower, forward peripheral portion of the conveying roller being disposed below the plane of said cutting zone.
2. A crop harvesting header as claimed in
header framework defining a laterally extending discharge opening spaced rearwardly from the cutting zone, with the opening being configured to receive cut crop from the series of cutters,
said cutting assembly projecting beyond the ends of the discharge opening to present a pair of outboard cutter sections; and
a pair of crop conveying assemblies, each disposed over a respective one of the outboard cutter sections for conveying crop cut by the respective one of the outboard cutter sections rearwardly and inwardly to the discharge opening.
3. A crop harvesting header as claimed in
each of said crop conveying assemblies including a plurality of laterally spaced impeller cages devices rotatable about individual, upright axes,
each of said impeller cages devices presenting a front moveable boundary that is spaced forwardly of the adjacent inwardly spaced impeller cage device.
4. A crop harvesting header as claimed in
each outboard cutter section including a first cutter and an inwardly spaced second cutter,
said plurality of impeller cages devices including a first impeller cage device mounted to the first cutter for rotational movement therewith, a second impeller cage device mounted to the second cutter for rotational movement therewith, and an intermediate impeller cage device suspended from the header framework between the first and second impeller cages devices.
5. A crop harvesting header as claimed in
said crop cutting assembly and said conveying element defining a downwardly open area therebetween.
said conveying roller having an outermost diameter that is smaller than the outermost diameter of the lower conditioning roll.
6. A crop harvesting header as claimed in claim 1 4,
said conveying element comprising a laterally extending, rotatable conveying roller having an outer periphery defining the upwardly and rearwardly moveable portion of the conveying element
each of said impeller devices comprising a cage.
7. A crop harvesting header as claimed in claim 6 1,
said conveying roller and said cutting assembly presenting a downwardly open area therebetween.
said conveying roller comprising a single roller, unaccompanied by an upper roller forming a nip therewith.
8. A crop harvesting header as claimed in claim 6 1,
said conveying roller including at least one helical rib extending along the roller periphery and having opposite inclination on either side of the midpoint of the conveying roller.
said series of cutters including multiple pairs of oppositely rotating cutters.
0. 9. A crop harvesting header as claimed in
said conveying roller having a relatively smaller diameter than the conditioning rolls.
0. 10. A crop harvesting header as claimed in
said conditioning rolls being in a stacked relationship to present an upper conditioning roll and a lower conditioning roll;
said lower conditioning roll being rotatable about a lower conditioning roll axis,
said conveying roller being rotatable about a conveying roller axis that is lower than the lower conditioning roll axis.
11. A crop harvesting header as claimed in claim 10 1,
said cutting zone being substantially planar and generally vertically aligned with the conveying roller axis conveying roller being rotatable about a conveying roller axis that is generally vertically aligned with the plane of said cutting zone.
13. In a crop harvesting machine as claimed in
framework defining a laterally extending discharge opening spaced rearwardly from the cutting zone, with the opening being configured to receive cut crop from the series of cutters,
said cutting assembly projecting beyond the ends of the discharge opening to present a pair of outboard cutter sections; and
a pair of crop conveying assemblies, each disposed over a respective one of the outboard cutter sections for conveying crop cut by the respective one of the outboard cutter sections respectively inwardly to the discharge opening.
14. In a crop harvesting machine as claimed in
each of said crop conveying assemblies including a plurality of laterally spaced impeller cages devices rotatable about individual, upright axes,
each of said impeller cages devices presenting a front moveable boundary that is spaced forwardly of the adjacent inwardly spaced impeller cage device.
15. In a crop harvesting machine as claimed in
each outboard cutter section including a first cutter and an inwardly spaced second cutter,
said plurality of impeller cages devices including a first impeller cage device mounted to the first cutter for rotational movement therewith, a second impeller cage device mounted to the second cutter for rotational movement therewith, and an intermediate impeller cage device suspended from the framework between the first and second impeller cages devices.
16. In a crop harvesting machine as claimed in
said crop cutting assembly and said conveying element defining a downwardly open area therebetween.
said conveying roller having an outermost diameter that is smaller than the outermost diameter of the lower conditioning roll.
17. In a crop harvesting machine as claimed in claim 12 14,
said conveying element comprising a laterally extending, rotatable conveying roller having an outer periphery defining the upwardly and rearwardly moveable portion of the conveying element.
each of said impeller devices comprising a cage.
18. In a crop harvesting machine as claimed in claim 17 12,
said conveying roller and said cutting assembly presenting a downwardly open area therebetween.
said conveying roller comprising a single roller, unaccompanied by an upper roller forming a nip therewith.
19. In a crop harvesting machine as claimed in claim 17 12,
said conveying roller including at least one helical rib extending along the roller periphery and having opposite inclination on either side of the midpoint of the conveying roller.
said series of cutters including multiple pairs of oppositely rotating cutters.
0. 20. In a crop harvesting machine as claimed in
said conveying roller having a relatively smaller diameter than the conditioning rolls.
0. 21. In a crop harvesting machine as claimed in
said conditioning rolls being in a stacked relationship to present an upper conditioning roll and a lower conditioning roll,
said lower conditioning roll being rotatable about a lower conditioning roll axis,
said conveying roller being rotatable about a conveying roller axis that is lower than the lower conditioning roll axis.
0. 22. In a crop harvesting machine as claimed in
said zone being substantially planar and generally vertically aligned with the conveying roller axis.
24. A crop harvesting machine as claimed in
said frame carrying a power source for propelling the frame across the field.
25. A crop harvesting machine as claimed in
said series of rotary cutters including two sets of outboard cutters, with each of the sets being located adjacent an end of the cutter bed and substantially outboard of the discharge opening; and
a pair of crop conveying assemblies, each disposed over a respective one of the sets of outboard cutters for conveying crop cut by the respective one of the sets of outboard cutters rearwardly and inwardly to the discharge opening.
26. A crop harvesting machine as claimed in
each of said crop conveying assemblies including a plurality of laterally spaced impeller cages devices rotatable about individual, upright axes,
each of said impeller cages devices presenting a front moveable boundary that is spaced forwardly of the adjacent inwardly spaced impeller cage device.
27. A crop harvesting machine as claimed in
each set of outboard cutters including a first cutter and an inwardly spaced second cutter,
said plurality of impeller cages devices including a first impeller cage device mounted to the first cutter for rotational movement therewith, a second impeller cage device mounted to the second cutter for rotational movement therewith, and an intermediate impeller cage device suspended from the framework between the first and second impeller cages devices.
28. A crop harvesting machine as claimed in claim 23 27,
said cutter bed and said conveying roller defining a downwardly open area therebetween.
each of said impeller devices comprising a cage.
29. A crop harvesting machine as claimed in claim 23 25,
said conveying roller including at least one helical rib extending along the roller periphery and having opposite inclination on either side of the midpoint of the conveying roller.
said series of rotary cutters including multiple pairs of oppositely rotating cutters disposed in forward alignment with said discharge opening.
30. A crop harvesting machine as claimed in
said conveying roller having a relatively smaller diameter than the conditioning rolls. an outermost diameter that is smaller than the outermost diameter of the lower conditioning roll.
31. A crop harvesting machine as claimed in
said conditioning rolls being in a stacked relationship to present an upper conditioning roll and a lower conditioning roll,
said lower conditioning roll being rotatable about a lower conditioning roll axis,
said conveying roller being rotatable about a conveying roller axis that is lower than the lower conditioning roll axis. generally vertically aligned with the plane of said cutting zone.
32. A crop harvesting machine as claimed in claim 31 23,
said cutter bed defining a substantially planar cutting zone,
said conveying roller having a conveying roller axis being that is generally vertically aligned with the plane of the cutting zone.
0. 34. A crop harvesting machine as claimed in
said conveying roller having an outermost diameter that is smaller than the outermost diameter of the lower conditioning roll.
0. 35. A crop harvesting machine as claimed in
said conveying roller being rotatable about a conveying roller axis that is generally vertically aligned with the plane of said cutting zone.
0. 36. A crop harvesting machine as claimed in
each plurality of impeller devices including an outer impeller device having a front inwardly movable boundary and an inner impeller device having a front inwardly movable boundary,
the inwardly movable boundary of each outer impeller device being spaced forwardly of the inwardly movable boundary of the corresponding inner impeller device.
0. 37. A crop harvesting machine as claimed in
each plurality of impeller devices further including an intermediate impeller device disposed generally between said outer impeller device and said inner impeller device,
each intermediate impeller device having a front inwardly movable boundary,
the inwardly movable boundary of each outer impeller device being spaced forwardly of the inwardly movable boundary of the corresponding intermediate impeller device.
0. 38. A crop harvesting machine as claimed in
each set of outboard cutters including an outer cutter and an inner cutter,
said plurality of impeller devices including an outer impeller device rotatable about the same axis of rotation as the corresponding outer cutter and an inner impeller device rotatable about the same axis of rotation as the corresponding inner cutter.
0. 39. A crop harvesting machine as claimed in
at least some of said impeller devices being generally cylindrical and comprising cages having a plurality of circumferentially spaced uprights.
0. 41. A crop harvesting header as claimed in
said conveying roller comprising a single roller, unaccompanied by an upper roller forming a nip therewith.
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1. Field of the Invention
The present invention relates generally to crop harvesting equipment. More particularly, the present invention concerns a mower/conditioner having structure for conveying cut crop from the cutter bed to the conditioning rolls, so as to improve crop flow through the machine.
2. Discussion of Prior Art
Those ordinarily skilled in the art will appreciate that smooth, even crop flow through the mower/conditioner is critical to proper, trouble-free harvesting operations. However, it has been determined that there is often a problem with crop flow in machines utilizing a pair of laterally extending crop conditioning rolls. Specifically, it is believed that the crop material has difficulty in moving from the cutter to the upwardly and rearwardly spaced nip defined between the conditioning rolls. This is particularly troublesome in machines utilizing a rotary style cutter bed, wherein crop material not adequately transferred to the nip is likely to be carried forwardly by the rotary cutters and ejected out the front of the machine. It will be appreciated that material thrown forward of the machine will have a tendency to known down standing crop, which is further detrimental to harvesting operations. In addition, crop material failing to move directly from the cutter bed to the conditioning rolls must recycle through the cutter bed and is consequently overly shredded/comminuted. These problems are magnified in machines having wide cutter beds with at least one cutter located outboard of the ends of the conditioning rolls, whereby crop material must also be gathered inwardly after severance before being directed through the shorter conditioning rolls.
Responsive to these and other problems, an important object of the present invention is to provide a mower/conditioner having, unimpeded even cut crop flow therethrough. In particular, an important object of the present invention is to provide a machine having laterally extending crop conditioning rolls with structure for conveying cut crop from the crop cutting assembly to the conditioning rolls, so as to improve crop flow through the machine. Another important object of the present invention is to provide a mower/conditioner having a rotary style cutter bed with a conveying element for transferring crop material cut by the rotary cutters upwardly and rearwardly to the nip defined between the crop conditioning rolls. It is also an object of the present invention to provide a mower/conditioner having a cutters located outboard of the crop conditioning rolls with structure for improving crop flow between the outboard cutters and the crop conditioning rolls.
In accordance with these and other objects evident from the following description of the preferred embodiment, the present invention concerns a harvesting machine including a crop cutting assembly defining a cutting zone, and a pair of laterally extending crop conditioning rolls defining a nip therebetween that is spaced upwardly and rearwardly from the cutting zone. Crop flow is improved in the machine by a conveying element having at least a portion thereof that is moveable upwardly and rearwardly between the cutting zone and the nip, so as to ensure smooth, even crop flow from the cutting assembly to the conditioning rolls. The conveying element preferably comprises a laterally extending, rotatable roller having an outer periphery that defines the upwardly and rearwardly moveable portion of the conveying element. The preferred embodiment includes a downwardly open area defined between the conveying roller and the cutting assembly to provide a space through which dirt and debris can drop out of the machine.
Other aspects and advantages of the present invention will be apparent from the following detailed description of the preferred embodiments and the accompanying drawing figures.
Preferred embodiments of the invention are described in detail below with reference to the attached drawing figures, wherein:
Turning initially to
The mower/conditioner 10 further includes a harvesting header 24 attached to the front end of the frame 12. Such attachment of the header 24 to the frame 12 is achieved in the traditional manner, with a pair of laterally spaced apart, lower arms (not shown) pivotally connected between the frame 12 and the side mounts 25 (only one side mount being shown in
The header 24 is preferably configured as a modular unit and consequently may be disconnected from the lower arms and central link 26 for removal from the frame 12. Accordingly, the frame 12 is not dedicated only to those harvesting operations provided by the header 24, but may carry other modular headers designed to perform different harvesting operations. Similarly, the header 24 may be removed from the frame 12 and installed on other variously constructed mobile frames, such as pull-type implement. In this respect, it will be appreciated that the principles of the present invention are equally applicable to pull-type harvesting machines and machines dedicated only to mowing and conditioning crop.
The header 24 has framework of its own which can be described as having a generally open, box-like construction in a rectangular configuration. Such framework is broadly denoted by the numeral 32 in
A laterally extending crop cutting assembly preferably in the form of a low profile, rotary style cutter bed 66 is located adjacent the front of the header framework 32 for severing crop from the ground as the harvester 10 moves across a field. The illustrated cutter board 66 includes a series of ten rotary cutters 68 spaced across the path of travel of the harvester 10 and each being rotatable about its own upright axis (see FIG. 3). For the sake of convenience, the ten cutters 68 will be denoted by the letters 68a-68j, beginning with the leftmost cutter in the series as viewed from the rear of the machine. The cutters 68a-68j are rotatably supported on an elongated, flat gear case 70 extending the full length of the cutter bed 66. The gear case 70 is hollow, as shown in
It will be appreciated that the cutters 68a-68j are nearly identical in construction. For the sake of brevity, only one of the cutters will be described in detail herein with the understanding that the remaining cutters are similarly constructed. As perhaps best shown in
As shown in
Those ordinarily skilled in the art will appreciate that the cutting action provided by the cutter bed 66 is not necessarily consistent from one plant to another, as the machine 10 moves across the field. For example, severance of the crop may occur directly in front of one of the cutters 68a-68j or within one of the front notches 88. Nonetheless, the rotating knives 74 of the cutters 68a-68j cooperatively present a substantially planar cutting zone, within which crop is severed from the ground.
It will be noted that the cutter bed 66 projects laterally outwardly beyond both ends of the discharge opening 52 to present left and light outboard cutter sections comprising cutters 68a,68b and 68i,68j, respectively. The spur gears in the case 70 are intermeshed in such a manner that the cutters 68a,68b and 68i,68j of each outboard section rotate in the same direction, as indicated by the arrows in FIG. 3. It will also be appreciated that the spur gears are arranged in such a manner that the inner cutters 68b-68i (excluding the outermost cutters 68a and 69j) are divided into cooperating pairs, with the two cutters of each pair rotating in opposite directions. In other words, the cutters 68b and 68c rotate toward one another across the front of the cutter bed 66, as do the cutters 68d and 68e, the cutters 68f and 68g, and the cutters 68h and 68i. The illustrated cutter bed 66 is of the same general arrangement as that disclosed in U.S. Pat. No. 5,463,852, entitled WIDE CUT HARVESTER HAVING ROTARY CUTTER BED, issued Nov. 7, 1995, assigned of record to the assignee of the present invention, which is hereby incorporated by reference herein as is necessary for a full and complete understanding of the present invention. However, it will be apparent that the illustrated cutter bed 66 has several unique features which are not disclosed in the '852 parent, as will subsequently be described.
Each of the outboard cutter sections 68a,68b and 68i,68j is associated with an improved overhead crop conveying assembly for facilitating movement of crop cut by the outboard cutter section inwardly and rearwardly to the discharge opening 52. Turning initially to the left outboard cutter section (see FIGS. 4B and 5B), an impeller cage 82 is fixed to the outermost cutter 68a for rotational movement therewith about a common axis. The impeller cage 82 is of the same general construction as the impeller cages disclosed in U.S. Pat. No. 5,421,45, entitled CUT CROP IMPELLER CAGE FOR ROTARY TYPE CUTTER BEDS, issued Jun. 6, 1995, assigned of record to the assignee of the present invention, which is hereby incorporated by reference herein as is necessary for a full and complete understanding of the present invention. It will be noted that a crop lifter 84 is fixed between the metal knife carrier of the outer cutter 68a and the impeller cage 82. As perhaps best shown in
An impeller cage 90 is similarly mounted to the cutter 68b for rotational movement therewith about a common axis. However, the impeller cage 90 is relatively shorter and smaller in overall diameter than the cage 82. In particular, the impeller cage 90 includes only one level of spacers 92 secured between an upper disk 94 and a lower impeller plate 96. The impeller plate is of the same construction as that disclosed in U.S. Pat. No. 5,345,752 entitled IMPELLER PLATES FOR ROTARY CUTTING UNITS OF A CROP HARVESTER, issued Sep. 13, 1994, assigned of record to the assignee of the present invention, which is hereby incorporated by reference herein as is necessary for a full and complete understanding of the present invention. It will be appreciated that the overall diameter of the impeller cage 90 is a dimension defined by each pair of spacers spaced in radially opposite directions from the rotational axis of the cage 90. Because the impeller cages 82 and 90 are rotatable about axis spaced along the same transverse axis, the front boundary of the inner cage 90 is spaced rearwardly from the front boundary of the outer cage 82.
An intermediate impeller cage 98 is located between the outer and inner cages 82 and 90 and is suspended from the partition wall 58. As perhaps best shown in
The impeller cage 98 rotates about an axis defined by the upright shaft 102, with the spacers 110,114 and disks 112, 116 moving through a circular path as the shaft rotates. As perhaps best shown in
It is believed that the illustrated arrangement of the cages 82,90,98 facilitates flow of crop materials cut outboard of the left end of the discharge opening 52. In particular, crop material engaged by the outer cage 82 is moved laterally inwardly across the front of the header and then passed slightly rearwardly to the intermediate cage 98. The intermediate cage 98 likewise conveys the crop material inwardly across the front of the header and rearwardly to the inner cage 90. The inner cage 90 in turn moves the crop material inwardly across the front of the header and then rearwardly to the discharge opening 52. Thus, the cages 82,98,90 cooperatively impart a rearwardly and inwardly directed converging influence on the cut crop as a result of the lateral and progressively rearward spacing of the cages. As previously noted, the lifter 84 associated with the outer cutter 68a serves to lift crop above the adjacent, inwardly spaced cutter 68b and into engagement with the cages 82,98,90. This prevents crop cut by the outer cutter 68a from being further shredded/comminuted by the adjacent, inwardly spaced cutter 68b.
The right outward cutter section (see
In the illustrated embodiment, driving power is provided to the various driven components of the header 24 by a pair of hydraulic motors 136 and 138. As perhaps best shown in
With the end cutters 68a and 68j being drivingly connected to the remaining cutters 68b and 68i via the spur gears in the gear case 70, driving power is supplied to the entire cutter bed 66 by the hydraulic motors 134,136. As shown in
As perhaps best shown in
An adjustable swath board 176 is swingably mounted between the side plates 38,40 for permitting the operator to control the direction of crop material discharged by the conditioning rolls 170,172. In the illustrated orientation, the swath board 176 has a negligible effect on crop flow from the conditioning rolls 170 and 172, such that the crop is formed into a windrow by the forming shields 46. However, if the swath board 176 is swung to a generally vertical orientation (not shown), the conditioned crop is directed immediately down to the ground without being guided by the forming shields 46 so as to form a wide swath.
As shown in
As previously indicated, one problem often associated with conventional mower/conditioner designs is impeded or uneven crop flow from the cutter to the conditioning rolls. The present invention specifically addresses this problem by providing structure for ensuring smooth, even crop flow from the cutter bed 66 to the upwardly and rearwardly spaced nip 174 defined between the conditioning rolls 170,172. In addition, the crop conditioning rolls 170,172 have been moved rearwardly with respect to their traditional location relative to the cutter, as will subsequently be described.
Turning first to the crop conveying structure, the illustrated embodiment includes a laterally extending, rotatable roller 186 located generally between the cutter bed 66 and the lower conditioning roll 172. The illustrated conveying roller 186 comprises a tubular, cylindrically-shaped body 188 carried by a pair of stub shafts 190 and 192 (see
Similar to the conditioning rolls 170 and 172, the stub shafts 190 and 192 are journaled for rotational movement on the supports 42 and 44 by suitable bearing assemblies. Additionally, the conveying roller is drivingly connected to the spur gear transmission housed within the case 180 by a drive shaft 194 (see particularly FIG. 4B). The drive shaft includes U-joint assemblies 196 and 198 at its opposite ends, with the outer U-joint assembly 196 being connected to an output shaft (not shown) of the transmission housed within the case 180, and the inner U-joint assembly 198 being connected to the stub shaft 190. In this respect, the conveying roller 186 is driven in a clockwise direction, when viewing
As perhaps best shown in
As shown in
The present invention eliminates the problem in the prior art of impeded or uneven crop flow between the cutter bed and conditioning rolls as illustrated in
In contrasting
It is also noted that the principles of the present invention are equally applicable to various other structure for conveying crop from the cutter bed 66 to the conditioning rolls 170,172. For example, the header 24 may be provided with a rubber-coated roller (not shown) having a textured outer surface that enhances the feeding action of the roller. The conveying element may alternatively be constructed in a manner similar to the illustrated impeller cages, with a generally open configuration including a plurality of longitudinally extending, spaced apart spacers located about the periphery of the conveying element. It is also entirely within the ambit of the present invention to utilize an endless conveying element, such as a belt, having a stretch that moves upwardly and rearwardly between the cutter bed 66 and the nip 174.
The operation of the machine should be apparent from the foregoing description. Thus, it shall be sufficient to explain that the cutter bed 66 serves crop the ground as the harvester 10 moves across a field. The cut crop thrown rearwardly by the cutter bed 66 engages the upper front quadrant of the conveying roller 186 and is thereby lifted gradually toward the nip 174 defined between the conditioning rolls 170,172. The impeller cages 82,90,98 and 126,130,134 cooperatively converge crop material cut by the outboard cutters 68a,68b and 68i,68j inwardly and rearwardly through the discharge opening 52. Such converged crop is probably directed to the upper conditioning roll 170, although any converged crop engaging the conveying roller 186 will be moved along the path 203. Conditioned crop material is discharged rearwardly by the rolls 170,172 and directed into a windrow or wide swath depending upon the orientation of the swatch board 176.
The preferred forms of the invention described above are to be used as illustration only, and should not be utilized in a limiting sense in interpreting the scope of the present invention. Obvious modifications to the exemplary embodiments, as hereinabove set forth, could be readily made by those skilled in the art without departing from the spirit of the present invention. For example, the principles of the present invention are equally applicable to other variously constructed crop cutting assemblies. If desired, the cutting assembly may comprise a pair of large rotating discs rather than the illustrated series of cutters. It is also not necessary to drivingly connect the cutters to one another through a common gear case, The cutters may also be independently supported and driven.
The inventors hereby state their intent to rely on the Doctrine of Equivalents to determine and assess the reasonably fair scope of the present invention as pertains to any apparatus not materially departing from but outside the literal scope of the invention as set forth in the following claims.
Pruitt, Martin E., Graber, Kurt, O'Halloran, Michael L., Case, Cecil L.
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