A01F12/46

FEEDING SYSTEM FOR AN AGRICULTURAL IMPLEMENT

A feeding system for an agricultural implement includes a hopper configured to receive agricultural crop material. An auger extending across the hopper is configured to meter the agricultural crop material from the hopper into a tapered passageway. A movable belt is disposed along one side of the tapered passageway and is configured to urge the agricultural crop material through the tapered passageway toward an outlet of the tapered passageway to form the agricultural crop material into a mat having a thickness substantially equal to a width of the outlet.

FEEDING SYSTEM FOR AN AGRICULTURAL IMPLEMENT

A feeding system for an agricultural implement includes a hopper configured to receive agricultural crop material. An auger extending across the hopper is configured to meter the agricultural crop material from the hopper into a tapered passageway. A movable belt is disposed along one side of the tapered passageway and is configured to urge the agricultural crop material through the tapered passageway toward an outlet of the tapered passageway to form the agricultural crop material into a mat having a thickness substantially equal to a width of the outlet.

RESIDUE HANDLING SYSTEM FOR AN AGRICULTURAL HARVESTER

An agricultural harvester includes a chassis and a residue handling system carried by the chassis. The residue handling system includes a set of rotating knives disposed in a housing, a first set of counter-knives, and a residue pivoting platform and/or a second set of counter-knives. Crop residue travels through the system in a residue flow direction. The first set of counter-knives are configured to enter the housing proximate to the set of rotating knives. The residue pivoting platform is positioned proximate to the first set of counter-knives in an upstream direction relative to the crop residue flow direction. The second set of counter-knives are configured to enter the housing proximate to the set of rotating knives. The second set of counter-knives are in a downstream direction relative to the crop residue flow from at least one of the residue pivoting platform and the first set of counter-knives.

Feederhouse for a combine harvester having an axially movable floating bearing

A feederhouse (20) for a combine harvester (10) has a drivable inclined conveyor shaft (80), which is supported via a bearing arrangement (48), which is designed as an axially movable floating bearing, on the housing (76) of the feederhouse (20).

Feederhouse for a combine harvester having an axially movable floating bearing

A feederhouse (20) for a combine harvester (10) has a drivable inclined conveyor shaft (80), which is supported via a bearing arrangement (48), which is designed as an axially movable floating bearing, on the housing (76) of the feederhouse (20).

Harvesting Machine

A harvesting machine includes: a crop tank; a measuring device that measures an amount of crop that has been stored in the crop tank; an unloader apparatus that discharges crop that has been stored in the crop tank; a device control part that executes precise measurement oriented device setting processing; a measurement control part including a precise measurement execution part that performs, precise measurement which involves the precise measurement oriented device setting processing, and a simplified measurement execution part that executes, simplified measurement; an operational instruction processing part that outputs a precise measurement instruction and a simplified measurement instruction in response to an operation performed by a manual operation device; and a measurement result recording part that rewrites a simplified measurement result recorded based on a preceding simplified measurement instruction, with a precise measurement result that is based on a succeeding precise measurement instruction.

Harvesting Machine

A harvesting machine includes: a crop tank; a measuring device that measures an amount of crop that has been stored in the crop tank; an unloader apparatus that discharges crop that has been stored in the crop tank; a device control part that executes precise measurement oriented device setting processing; a measurement control part including a precise measurement execution part that performs, precise measurement which involves the precise measurement oriented device setting processing, and a simplified measurement execution part that executes, simplified measurement; an operational instruction processing part that outputs a precise measurement instruction and a simplified measurement instruction in response to an operation performed by a manual operation device; and a measurement result recording part that rewrites a simplified measurement result recorded based on a preceding simplified measurement instruction, with a precise measurement result that is based on a succeeding precise measurement instruction.

Producing High Yielding Seeds
20170188512 · 2017-07-06 ·

A single plant harvesting machine capable of harvesting 1 to 10 single plants concurrently wherein the seeds of each single plant are separately harvested, packaged, and stored. A large scale production system for producing high yield potential seeds from individually harvested plants is also provided.

KNIFE ROLLS WITH DIFFERING LENGTHS

Stalk rolls are used for a corn harvester or combine having a chassis, an engine, a cab mounted to the chassis with a head mounted at the front of the body. The head includes an auger, row separators, corn stalk gathering assemblies between the row separators and ear removal assemblies. Each ear removal device includes a pair of stalk rolls. Each stalk roll has a core and longitudinally extending flutes about a periphery of the corn extending along the core. Each stalk roll has a straight first section and a tapered second section. The flutes on each stalk roll have different lengths and end at different locations at the front of the stalk roll. The flutes of the stalk roll may also have notches and different shaped leading edges.

Yield monitoring apparatus, systems, and methods
09686914 · 2017-06-27 · ·

Apparatus, systems and methods are provided for monitoring yield while harvesting grain. Grain released from paddles on the clean grain elevator chain of a harvester contacts a flow sensor which reports the rate of grain flow through the clean grain elevator. In some embodiments a brush is mounted to the chain and disposed to clean the flow sensor surface. In other embodiments a bucket mounted to the clean grain elevator chain releases grain against the flow sensor at a rate dependent on a grain property.