AU2006203464B2 - Conveyor feeder house chain slat - Google Patents

Conveyor feeder house chain slat Download PDF

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Publication number
AU2006203464B2
AU2006203464B2 AU2006203464A AU2006203464A AU2006203464B2 AU 2006203464 B2 AU2006203464 B2 AU 2006203464B2 AU 2006203464 A AU2006203464 A AU 2006203464A AU 2006203464 A AU2006203464 A AU 2006203464A AU 2006203464 B2 AU2006203464 B2 AU 2006203464B2
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AU
Australia
Prior art keywords
shaped
slat
feeder house
chains
conveyor
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Ceased
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AU2006203464A
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AU2006203464A1 (en
Inventor
Robert Lee Day
Ryan Patrick Mackin
Mark Edward Payne
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Deere and Co
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Deere and Co
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Description

AUSTRALIA PATENTS ACT 1990 COMPLETE SPECIFICATION NAME OF APPLICANT(S):: Deere & Company ADDRESS FOR SERVICE: DAVIES COLLISON CAVE Patent Attorneys 255 Elizabeth Street, Sydney, New South Wales, Australia, 2000 INVENTION TITLE: Conveyor feeder house chain slat The following statement is a full description of this invention, including the best method of performing it known to me/us: 5102 CONVEYOR FEEDER HOUSE CHAIN SLAT Cross Reference to Related Application [0001] This application claims priority to provisional US Patent Application 60/721,326 filed September 28, 2005, titled "Conveyor Feeder House Chain Slat" and having the same inventors as the current application. Field of the Invention [0002] This invention relates to a crop feeding conveyor for an agricultural harvesting machine, such as a combine or the like, and more particularly to a type of conveyor known as a chain-and-slat type conveyor. Background of the Invention [0003] Combines are large self-propelled vehicles used for harvesting and threshing agricultural crop in a field. A combine operates by cutting or gathering crop standing in a field, and feeding the cut crop to a separator by means of a conveyor mechanism. In the separator, grain is threshed, or beaten from the husk, stems, pods, or cobs, and then the threshed grain is separated from crop material other than grain. The cleaned grain is moved to a grain tank, and the crop material other than grain is generally distributed back out on the field behind the combine, or collected for use as animal feed or bedding. [0004] The conveyor mechanism typically moves crop material from the header where it is cut from the field, upwardly and rearwardly along a floor of a feeder house to the separator mechanism. Typically, the conveyors have a plurality of continuous chains that are arranged to revolve around a transverse drum at the front of the feeder house and transverse sprocket means at the rear of the feeder house, the chains rotating generally in the direction of the length of the combine. The chains are connected to each other by a plurality of transverse slats, which engage the crop and move it upwardly and rearwardly along the floor of the feeder house. Typically, the slats have an L-shape, and are riveted to the chains at each end of the slat. The transverse slats perform the function of taking the crop material from the header and pulling it up and under the chain towards the separator, along the feeder house C NRPrbl\DCC\CAB\3450191_ .DOC-32/2011 bottom floor. If the crop material is not fed to the separator mechanism in a timely and smooth manner, the crop material will back up and can spill out onto the ground, resulting in crop loss, and necessitating operating the combine at a slower speed to prevent additional crop loss. A heavy crop volume can also cause twisting or bending of the slats, which will result in inefficient operation and lead to increased wear, warpage and breakage of slats and/or chains. Additionally, excessive pressure on the slats and chains that occurs when there is a heavy crop load can cause increased friction and heat up the chains, resulting in loss of lubrication, leading to premature chain failure or the need to lubricate the chains more frequently. Therefore, what is needed is a slat that can maintain crop delivery speed to the separator in keeping with harvesting rates while not placing an excessive burden on the feeder chain or slats that would cause excessive or premature wear or failure. Summary of the Invention [0005] Accordingly, in one aspect the present invention seeks to provide an improved conveyor slat for a chain-and-slat type conveyor for feeding a crop in a harvesting machine such as a combine. More specifically, the improved conveyor slat comprises two "U-shaped" sections having the base of the U-shapes joined together along substantially the entire length. The shape of the slat provides for increased structure and rigidity over prior art slats, increasing crop-processing efficiency and reducing wear and breakage. One U-shaped section is longer than the other section, the longer piece being of a sufficient length that the feeder chains ride on the base, or back, of that extended U-shape, rather than on the feeder house floor, which reduces friction on the chain, which can lead to heating and consequent loss of lubrication, along with increased failures and wear. Additionally, the slats are bolted to the chain, rather than being riveted to the chain, making it easier to replace an individual slat if it should become worn or damaged. The ends of both U-shaped sections are tapered to reduce crop material wrapping around the edges thereof or the drum, which can also slow or stop processing, necessitating the combine be turned off and the clog cleared. In -2- C \NRPonbf\DCC\CAB\3450191 1DOC-3A)2/201I some arrangements of the present invention, the leading outer edge of the longer U-shaped section is serrated on the top to better pick up and pull in crop material being fed into the feeder. This improved processing of material reduces back-up of crop material from the header back into the feeder housing. [0005a] In another aspect there is provided a conveyor means for use with a combine for harvesting a crop bearing grain including a mechanism for conveying grain from a harvesting platform to a separator mechanism, the conveying mechanism comprising: a feeder house having a forward crop inlet for receiving crop from the harvesting platform, a feeder house bottom, a rear opening for transmitting crop to the separator mechanism; and a conveyor comprising a transverse drum at a front end of the feeder house; at least two sprocket drive means at a rear end of the feeder house; at least two continuous conveyor chains being entrained around the sprocket drive means and the transverse drum so as to move laterally in the feeder house, around the transverse drum and the sprocket drive means; and slats secured to the continuous conveyor chains, the slats formed from a first long U-shaped piece of sufficient length to span at least the width of adjacent conveyor chains, and a second shorter U-shaped piece of a length to fit between adjacent conveyor chains, bases of the long and short U shaped piece being joined together with the short U-shaped piece centered on the long U-shaped piece so open sides of the long and short U-shaped pieces face in opposite directions, and the slats being secured to the conveyor chains by securing means secured through the chains and through-material holes in the long U-shaped piece such that the crop material is drawn upwardly and rearwardly into the conveyor between the slats on an underside of the chain and the feeder house bottom and moved toward the separator mechanism. [0005b] In yet another aspect there is provided a slat for a chain and slat conveyor for a feeder house in a harvesting machine such as a combine, the slat comprising: a first U-shaped section having open ends; a second U-shaped section having open ends, the second U-shaped section being shorter than the first U-shaped section; the first and second U-shaped sections being joined together at bases thereof such that open top sides of the two U-shaped sections of -3 - C .4RPortbl\DCC\CAB\3450191 I DOC-3/02/2011 a slat are oppositely directed, the second, shorter U-shaped section being centered in length of the first, longer U-shaped section; and the longer U-shaped section having through-material holes at outer ends of the base for securing the slats to chains using securing means. [0005c] In yet another aspect there is provided a method of processing of crop material through a combine feeder house having a transverse mounted drum mounted on a shaft at a front thereof and drive sprockets at the rear thereof with chains positioned around and rotating around the transverse mounted drum and drive sprockets, with chain slats formed of two U- shaped channels joined at their bottom bases being mounted between the chains, the slats positioned parallel to the transverse drum, the method comprising: processing crop material through the combine feeder house between a bottom floor of the feeder house and the open top of a lower one of the two U-shaped channels of the slats running on an underside of the transverse mounted drum, the open top of the lower one of the two U-shape of the slat gripping the crop material and pulling it up and through the feeder house. Brief Description of the Drawings [0006] FIGURE 1 is a side view of a combine shown with chain-and-slat type feeder house mechanism; [0007] FIGURE 2 is a perspective view of a feeder mechanism of a combine utilizing the slats of the present invention; [0008] FIGURE 3 is a bottom perspective view of a slat mechanism of the present invention; and [0009] FIGURE 4 is a top perspective view of a slat mechanism of the present invention. Description of the Preferred Embodiment [0010] In the discussion of the FIGURES the same reference numerals will be used throughout to refer to the same or similar components. In the interest of conciseness, various other components known to the art, such as crops, storage - 3A - C \NRPorbl\DCC\CAB\3450j91_1 DOC-3/02/2011 mechanisms and the like necessary for the operation of the invention, have not been shown or discussed, or are shown in block form. [0011] In the following, numerous specific details are set forth to provide a thorough understanding of the present invention. However, it will be obvious to 5 those skilled in the art that the present invention may be practiced without such specific details. Additionally, for the most part, details concerning harvester combine operation and the like have been omitted inasmuch as such details are not considered necessary - 3B to obtain a complete understanding of the present invention, and are considered to be within the knowledge of persons of ordinary skill in the relevant art. [0012] FIG. 1 shows a combine 10 used for harvesting agricultural crops. The combine 10 comprises a supporting structure 12 having ground-engaging wheels 14 extending from the supporting structure 12. The operation of the combine 10 is controlled from the operator's cab 15. A harvesting platform 16 is used for harvesting a crop bearing grain. The cut crop is directed to a crop inlet 17 at a front of a feeder house 18. The crop is directed upwardly and rearwardly through the feeder house 18, then out a rear opening 19 in the feeder house 18 to the separator mechanism 20 which threshes the grain from the crop material. Once the grain has been separated from the crop material, it is fed into a grain tank 22, and is ultimately unloaded from the combine 10 by means of the unloading auger 24 into other transport or storage mechanisms. [0013] The feeder house 18 has an internal frame 30 which is used to provide support and structure to the feeder house mechanism 18. The feeder house 18 also has an upwardly and rearwardly inclined bottom floor 34. The chain-and-slat crop feeding conveyor 50 includes rear drive sprocket means 52 adjacent to the rear portion of the feeder house 18, near the separator mechanism 20, and a transverse drum 54 mounted on a shaft adjacent to the forward end of the feeder house 18. The rear drive sprockets 52 are mounted on a shaft 53 which is driven from a power source (not shown) on the combine 10. As shown in FIG. 2, conveyor chains 56 which run parallel to each other and are spaced equidistant from each other are entrained around the rear drive sprockets 52 and the front transverse drum 54. The chains are continuous chains 56 that move laterally in the feeder house 18, around the transverse drum 54 and the sprockets 52. The number of chains 56 used corresponds with the number of drive sprockets 52 affixed to the shaft 53. In the example shown in FIG. 2, three (3) chains 56a, 56 b, 56c are used, although it can be appreciated that the number can vary. A plurality of identical slats 60 have their opposite ends connected to adjacent chains 56 and are spaced at regular intervals 4 along the lengths of the chains 56. One end of each slat 60 is connected to the center chain 56b, while the outer ends of alternating slats 60 are attached to one of the outer chains 56a and the outer ends of the remaining slats 60 are attached to the other outer chain 56c, so that the slats 60 are staggered for increased crop processing efficiency. [0014] As can be seen in FIGS. 3 and 4, each slat 60 is comprised of two U-shaped channel portions: a longer portion 62, and a shorter portion 64, which are joined together at the base, or back of the U-shapes, with the open top sides of each U shaped portion facing in opposite directions, with the shorter U-shaped portion 64 being centered on the back of the longer 62 U-shaped portion. When viewed from an end, the slat 60 resembles a figure-8 that is open at the top and bottom thereof. The longer U-shaped portion 62 is the one that actually contacts the crop to pull it into the feeder house 18 between the slats 60 on the side of the chain 56 below the transverse drum 54 and sprocket 52 and the feeder house bottom 34, drawing the crop material upwardly and rearwardly into the feeder house 18. In the arrangement of the slat 60 shown in FIGS. 3 and 4, the front or leading edge 62a of the longer U shaped portion, which first makes contact with the crop material is serrated for greater ability to grip and pull the crop upwards and rearwards, although it can be appreciated that a non-serrated edge, or a different serration pattern can also be used. The shorter U-shaped portion 64, which is mounted to the center back of the longer U-shaped portion 62 serves the purpose of keeping the chains 56 properly spaced, and maintains additional rigidity and structure to the slat 60 so that the slats to do not bend or flex when drawing crop material into the feeder house 18. A tendency of the slats to bend or twist in the prior art, thus slowing down crop processing and causing difficulties and failures of various components of the feeder house 18 and/or feeding conveyor 50 is overcome by the structure of the slat 60 of the present invention. The shorter U-shaped portion 64 is about the same height as the chains 56 to provide smooth operation so the chains 56 feed properly over the drum 54 and sprockets 52, while still providing the necessary structural rigidity to the 5 slat 60. Additionally, the tapered ends of both the longer and shorter U-shaped portions 62, 64, serve to keep crop material from wrapping around the slats 60 and getting wrapped around the drum 54, which can further clog or slow crop processing, as was seen in the prior art. [0015] Because the outer ends of the short U-shaped portion 64 are tapered, they are less likely to contact the internal frame 30 of the feeder house 18. Additionally, in prior art conveyor mechanisms, the chain 56 would contact the feeder house floor 34 and other components of the feeder house 18, which would increase chain wear and could also cause increased friction on the chain 56, heating the chain and the lubricant, which would cause the lubricant to become more liquid and vacate the chain, requiring additional chain lubrication or more frequent chain failures. The present invention chain slat 60 is longer than previous slats, and the chain 56 is secured to the rear of the longer U-shaped portion 62, and so the outer edges of the open side of the larger U-shaped portion 62 of the present invention contacts the feeder house components, rather than the chain 56 being the contacting portion, thus reducing chain wear and lubrication loss. [0016] The slats 60 are connected to the chains 56 by securing means. In a preferred embodiment, the slats 60 are connected to the chains 56 with bolts 66 and nuts 68, which hold the slats 60 to the chain 56. Because bolts 66 and nuts 68 can be removed more easily than rivets typically used in the prior art, the individual slats 60 can be replaced more easily if a slat 60 is damaged or worn. Because the slat 60 contacts the feeder house 18 rather than the chain 56 contacting the feeder house 18, there is less chance of wear or breakage, and so bolts 66 and nuts 68 can be used to secure the slats 60 of the present invention, unlike in the prior art, where rivets typically had to be used. However, rivets or other securing means can also be used to secure the slats 60 of the present invention to the chains 56. [0017] In operation, the feeder house 18 has an crop inlet 17 at the front thereof to accept crop from the harvesting platform 16, with crop material being pulled upwardly and rearwardly through the feeder house 18 by being processed between 6 the slats 60 and chains 56 of the underside or lower run of the conveyor 50 and the bottom floor 34. The crop material is delivered to the separator mechanism 20 for processing of the crop through an opening 19 at the rear of the feeder house 18, and the chain 56 and slats 60 continue to rotate in the feeder house 18, now frontwardly and downwardly toward the front of the feeder house 18 to receive more crop material after rotating around the transverse drum 54 and once again moving upwardly and rearwardly toward the separator mechanism 20. The outer edges of the long U-shaped portion of the slats 60 slide along the feeder house bottom floor 34, the serving to pull the material upwardly and rearwardly between the slat 60 and the feeder house floor 34. [0018] Having described the preferred embodiment, it will become apparent that various modifications can be made without departing from the scope of the invention as defined in the accompanying claims. Throughout this specification and the claims which follow, unless the context requires otherwise the word "comprise", or variations such as "comprises" or "comprising", will be understood to imply the inclusion of a stated integer or step or group of integers or steps but not the exclusion of any other integer or step or group of integers or steps. The reference in this specification to any prior publication (or information derived from it), or to any matter which is known, is not, and should not be taken as an acknowledgment or admission or any form of suggestion that that prior publication (or information derived from it) or known matter forms part of the common general knowledge in the field of endeavour to which this specification relates. 7

Claims (20)

1. A conveyor means for use with a combine for harvesting a crop bearing grain including a mechanism for conveying grain from a harvesting platform to a separator mechanism, the conveying mechanism comprising: a feeder house having a forward crop inlet for receiving crop from the harvesting platform, a feeder house bottom, a rear opening for transmitting crop to the separator mechanism; and a conveyor comprising a transverse drum at a front end of the feeder house; at least two sprocket drive means at a rear end of the feeder house; at least two continuous conveyor chains being entrained around the sprocket drive means and the transverse drum so as to move laterally in the feeder house, around the transverse drum and the sprocket drive means; and slats secured to the continuous conveyor chains, the slats formed from a first long U-shaped piece of sufficient length to span at least the width of adjacent conveyor chains, and a second shorter U-shaped piece of a length to fit between adjacent conveyor chains, bases of the long and short U shaped piece being joined together with the short U-shaped piece centered on the long U-shaped piece so open sides of the long and short U-shaped pieces face in opposite directions, and the slats being secured to the conveyor chains by securing means secured through the chains and through-material holes in the long U-shaped piece such that the crop material is drawn upwardly and rearwardly into the conveyor between the slats on an underside of the chain and the feeder house bottom and moved toward the separator mechanism.
2. The conveyor means of claim 1 wherein the securing means comprise nuts and bolts. -8- C \NRPorthl\DCC\CAB\3450191 lDOC-3102/2011
3. The conveyor means of Claim 1 or Claim 2 wherein at least a portion of the leading outside edge of the long U-shaped piece is serrated for improved crop material processing.
4. The conveyor means of Claim 3 wherein at least a portion of the trailing outside edge of the long U-shaped portion is also serrated for improved crop material processing.
5. The conveyor means of any one of Claims 1 to 4 wherein more than two continuous conveyor chains are entrained around the mechanism, and the slats are secured to the chains in a staggered manner in respect to the position in which the slats are secured to adjacent chains for increased crop processing efficiency.
6. The conveyor means of any one of Claims 1 to 5 wherein the long and short U-shaped pieces each having tapered ends.
7. The conveyor means of any one of Claims 1 to 5 wherein the long U shaped pieces have tapered ends.
8. The conveyor means of any one of Claims 1 to 5 wherein the short U shaped pieces have tapered ends.
9. A slat for a chain and slat conveyor for a feeder house in a harvesting machine such as a combine, the slat comprising: a first U-shaped section having open ends; a second U-shaped section having open ends, the second U-shaped section being shorter than the first U-shaped section; the first and second U-shaped sections being joined together at bases thereof such that open top sides of the two U-shaped sections of a slat are oppositely directed, the second, shorter U-shaped section being centered in length of the first, longer U-shaped section; and -9- C \NRPrb\DCC\CABu345019L1 .DOC.3A)2/2O I the longer U-shaped section having through-material holes at outer ends of the base for securing the slats to chains using securing means.
10. The slat of Claim 9 wherein the ends of the first and second U-shaped sections are tapered.
11. The slat of Claim 9 wherein the ends of the first U-shaped section are tapered.
12. The slat of Claim 9 wherein the ends of the second U-shaped section are tapered.
13. The slat of any one of Claims 9 to 12 wherein at least a portion of a leading outside edge of the open top side of the first U-shaped piece is serrated.
14. The slat of Claim 13 wherein at least a portion of a trailing outside edge of the open top side of the first U-shaped portion is also serrated.
15. A method of processing of crop material through a combine feeder house having a transverse mounted drum mounted on a shaft at a front thereof and drive sprockets at the rear thereof with chains positioned around and rotating around the transverse mounted drum and drive sprockets, with chain slats formed of two U shaped channels joined at their bottom bases being mounted between the chains, the slats positioned parallel to the transverse drum, the method comprising: processing crop material through the combine feeder house between a bottom floor of the feeder house and the open top of a lower one of the two U shaped channels of the slats running on an underside of the transverse mounted drum, the open top of the lower one of the two U-shape of the slat gripping the crop material and pulling it up and through the feeder house. - 10- C :\RPorbl\DCC\CAB\3450191_I.DOC-3/02/O
16. The method of claim 15 wherein the open top of the lower one of the two U shaped channels of the slat is serrated along at least a portion of a leading edge thereof for increasing a volume of crop material processed through the combine feeder house.
17. The method of claim 16 wherein the lower one of the two U-shaped channels of the slat is also serrated along at least a portion of a trailing edge thereof for further increasing the volume of crop material processed through the combine feeder house.
18. A conveyor means as substantially described herein with reference to the drawings.
19. A slat as substantially described herein with reference to the drawings.
20. A method as substantially described herein with reference to the drawings. -11 -
AU2006203464A 2005-09-28 2006-08-11 Conveyor feeder house chain slat Ceased AU2006203464B2 (en)

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US72132605P 2005-09-28 2005-09-28
US60/721,326 2005-09-28

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* Cited by examiner, † Cited by third party
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US11447341B2 (en) * 2020-01-31 2022-09-20 Cnh Industrial America Llc Variable cross-section combine feeder slat

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3780851A (en) * 1972-06-29 1973-12-25 Deere & Co Crop feeding conveyor for a harvester
US4003191A (en) * 1976-03-29 1977-01-18 Sperry Rand Corporation Barrier means in a combine harvesting header
US5976013A (en) * 1997-07-17 1999-11-02 Claas Selbstfahrende Erntemaschinen Gmbh Device for preventing accumulation of grain in combine harvester

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3780851A (en) * 1972-06-29 1973-12-25 Deere & Co Crop feeding conveyor for a harvester
US4003191A (en) * 1976-03-29 1977-01-18 Sperry Rand Corporation Barrier means in a combine harvesting header
US5976013A (en) * 1997-07-17 1999-11-02 Claas Selbstfahrende Erntemaschinen Gmbh Device for preventing accumulation of grain in combine harvester

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AU2006203464A1 (en) 2007-04-19
BRPI0603924A (en) 2007-08-14
BRPI0603924B1 (en) 2015-09-22

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