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Auger drive coupler assembly having a friction clutch for a combine harvester

An unload auger assembly for a combine harvester includes a drive coupler configured between adjacent first and second auger segments. The coupler includes a driver component and associated driver cog coupled to the first auger segment. A driven component and associated driven cog is coupled to the second auger segment. The driven cog is rotationally engaged by the driver cog to transmit rotational drive from the first auger segment to the second auger segment. A friction clutch is configured in-line between the driver component and driven component and rotationally couples the driver component to the driven up to a release torque value wherein the friction clutch disengages the driver component from the driven component.




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Helical bar concave

A method of manufacturing a helical bar concave from a flat, rolled laser cut arrangement that provides a net helical concave functionality. Laser cutting a flat metal sheet to form helical cutouts defining a percent open area having a helical geometry in combination with configurable rub bars mounted in a helical fashion results in a configurable helical bar concave in which the number or aggressiveness of the threshing surface on the inside radius of the grate may be changed and/or the rub bars may be moved to the outside of the grate to change the percent open area and hence the separation characteristics of the concave.




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Harvested crop residue chopper and distribution arrangement for a combine with an impeller blower whose shape conforms to the contour of the straw chopper

The invention concerns a harvested crop residue chopper and distribution arrangement for a combine (10) with a straw chopper (60) with a rotor (74) that can be brought into rotation about a horizontal axis (98) with chopper blades (76) fastened thereto that define an outer envelope (96), and with at least one impeller blower (82) arranged downstream of the straw chopper (60) with impeller blades (84) that can rotate about an axis of rotation (88) that extends vertically, in which the impeller blades (84) are provided with outer edges (94) that conform to the envelope (96) of the chopper knives (76) and follow it very closely and are not in contact with it.




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Handheld harvester apparatus

The present disclosure is a handheld harvester apparatus including a threshing drum configured to rotate. The harvester may further include a plurality of teeth connected to the threshing drum and configured to strip seeds from a head of a plant. The harvester also includes a screening assembly coupled to the threshing drum. The screening assembly is configured to receive seeds and plant material from the threshing drum and to eject the plant material from the harvester and direct the seeds downward. The harvester further includes a first screen configured to receive the seeds from the screening assembly and to allow seeds sized below a predetermined threshold to pass through the first screen and to prevent plant material exceeding the predetermined threshold to pass through the first screen. The harvester may further include a collection chamber coupled to the first screen and configured to receive the seeds.




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Forage harvester with an arrangement for measuring the harvested material throughput

A forage harvester has an engine which is drivingly connected to a chopper cylinder via first drive belt, and to a first end of a drive shaft of a discharge accelerator. A second end of the drive shaft of the discharge accelerator is drivingly connected to a kernel processor via a second drive belt, is arranged, in the direction of harvested material flow, between the chopper cylinder and the discharge accelerator. The discharge accelerator comprises support disks which extend radially, and paddles. The support disks are attached to a hollow shaft enclosing the drive shaft, and, a sensor is arranged between the drive shaft and the discharge accelerator for the determination of the force transmitted by the drive shaft to the discharge accelerator.




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Harvester with a sensor mounted on an aircraft

A sensor for monitoring a plant population in front of a harvester and a transfer process of the crop from the harvester to a transport vehicle is arranged on an unmanned aircraft. The aircraft moves in the vicinity of the harvester in the harvesting mode and communicates in a wireless fashion with a control unit that controls an actuator for influencing an operating parameter of the harvester and/or the transport vehicle (in real time based on signals of the sensor in the harvesting mode.




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Apparatus for breaking up clumps of granular material in a storage bin

A granular material stirring apparatus for breaking up clumps of a granular material in an interior of a storage bin comprises a base assembly for resting on a floor of the bin, an agitation rotor rotatably mounted on the base assembly, and a rotation device connected to the rotatable agitation rotor to cause the agitation rotor to rotate with respect to the base assembly. The agitation rotor may include a central member rotatable about a substantially horizontal axis and a plurality of stirrer members extending substantially radially outwardly from the central member to rotate about the substantially horizontal axis.




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Intake feeder system for a combine harvester

An intake feeder system having a stone separator mounted between a crop elevator and the mouth of a threshing mechanism disposed longitudinally in a combine harvester. The stone separator includes a rotary feed beater and a sump disposed beneath the feed beater. The feed beater serves to advance crop raised by the elevator along a crop flow path towards the mouth of the threshing mechanism and to propel stones in the crop into the sump. A duct is provided in parallel with the crop flow path for connecting a space above the rotary feed beater to the mouth of the threshing mechanism.




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Biomass conveying and distributing system for a harvester

A biomass conveying and distributing system for separating and distributing lighter biomass residue from heavier or denser biomass, utilizing available air flow from the cleaning system of the harvester. The harvester will discharge a flow of heavier or denser biomass with an airborne flow of lighter biomass residue. The system includes a conveyor for receiving and conveying the heavier or denser biomass, and residue distributing apparatus disposed above the conveyor in a path of at least a portion of the airborne flow of lighter residue, including at least one deflector configured and operable for redirecting the airborne flow sidewardly away from the conveyor, above a passage through which the conveyor passes carrying the heavier biomass away from the harvester.




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Combine linear side-shake cleaning control system

A combine side-shaking control system includes a sieve for separating crop material from other materials and configured to move in a fore-aft direction. At least one side-shaking assembly includes a mounting device attached to a combine chassis, a lower plate configured to rotate about a lower plate axis and an upper plate configured to (i) have an upper plate rotational motion and rotate responsive to the rotation of the lower plate and (ii) have an upper plate substantially linear motion in a substantially linear direction. A fixed arm is rotatably coupled to the upper plate and attached to the sieve. An actuation device is configured to rotate the lower plate about the lower plate axis. Responsive to the rotation of the upper plate, the sieve is controlled to move diagonal to the fore-aft direction in the substantially linear direction of the upper plate substantially linear motion.




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Spreading arrangement and combine harvester with spreading arrangement

Example embodiments relate to a combine harvester including a straw chopper having an inlet for unchopped straw, an outlet for chopped straw in an essentially horizontal direction, and a spreader fan, connected downstream of the outlet of the straw chopper and having an essentially horizontal plane of rotation, for spreading the chopped straw over a ground surface. The combine harvester further includes a guide member, which is arranged to deflect at least a part of the stream of chopped straw material to an axial intake of the spreader fan such that a part of chopped straw material meets the blades of the spreader fan in the direction of transport of the chopped straw material through the spreader fan at an acute angle (α) relative to the plane of rotation of the spreader fan.




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Grain bin extension deployment apparatus for agricultural harvesting machine

A grain bin located atop a harvester includes upstanding walls having a substantially continuous upper edge defining an opening. A grain bin extension is deployable between extended and retracted positions to expand the capacity of the grain bin. The extension includes extension panels and a cap overlaying the opening. The cap is supported by a cap frame that is also deployable between extended and retracted positions. An extension deployment apparatus raises and lowers the extension panels. Extension deployment mechanisms located at opposing corners of the grain bin control the deployment of adjacent extension panels. Each extension deployment mechanism has a first rack and a trunnion to drive extension panels in a vertical direction and pivot the panels in an outward direction and a second rack mounted to the trunnion to drive the cap frame in a vertical direction, and a drive gear between the first and second racks.




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Systems for removing plant material from harvested crops

A system for removing plant material from harvested crops includes a pinch roller conveyor including pairs of rotatable pinch rollers whose longitudinal axes are aligned with a length of the conveyor, the pinch rollers forming nips in which plant material can be caught and pulled down through the conveyor as the pinch rollers rotate, wherein first ends of the pinch rollers are laterally displaceable so that the pinch rollers can laterally separate from each other to facilitate passage of plant material.




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Agricultural harvesting machine

An agricultural harvesting machine has a measurement device for investigating a crop flow conveyed through the harvesting machine. The measurement device includes at least one optical detection unit disposed at the crop flow for detecting light reflected by the crop and an evaluation unit for evaluating the spectrum of the detected light in order to derive properties of the crop. The evaluation unit is disposed at a position of the harvesting machine that is decoupled from mechanical loading by the crop flow to the greatest extent possible and is connected to the detection unit by way of at least one optical waveguide.




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System and method for controlling spreader output from a harvester

A system and method for controlling spreader output from a harvester includes a distribution chamber for receiving an agricultural material removed from a field. The harvester includes a spreader system configured to distribute the agricultural material onto the field, and an opening configured to receive the agricultural material from the distribution chamber. Moreover, the distribution chamber includes a first panel rotatably coupled to a first side of the distribution chamber, and a second panel rotatably coupled to a second side of the distribution chamber. The first and second panels are configured to direct the agricultural material toward the opening of the spreader system. An angle of the first panel is independently adjustable to control a first amount of agricultural material directed toward a first inlet portion. An angle of the second panel is independently adjustable to control a second amount of agricultural material directed toward a second inlet portion.




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Residue separating feed system for biomass including an impeller

A feed system for a biomass collection device uses a conveyor for dropping a flow comprising a mixture of denser or heavier biomass to be collected such as cobs, and less dense or lighter biomass residue such as leaf trash, through a space, and rotary feed apparatus below for receiving the flow, operable for propelling the received flow into a collection device, in combination with a fan configured and operable for directing a flow of air along a second path intersecting the first path in a manner to divert at least a substantial portion of the less dense or lighter biomass residue away from the feed apparatus, while allowing substantially all of the denser or heavier biomass to continue along the first path to the feed apparatus for feeding into the collection device. Distribution apparatus along the second path can then be used to spread the diverted biomass.




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Method and device for harvesting threshed crops

A method and device for harvesting threshed crops including a threshing assembly (3) arranged downstream of a cutting assembly (2) of a combine harvester (1) for separating the grain-chaff mixture (12) from the straw. A chaffing device (4) is arranged downstream of the threshing assembly (3) for separating the total straw fraction into a first and a second straw fraction (5.1, 5.2). A comminution device (8) is arranged downstream of the chaffing device (5) for comminuting the second straw fraction (5.2). A blower (10) having a suction pipe (9) draws in and mixes the grain-chaff mixture (12) and the second straw fraction (5.2) to form a mixture (18) of grain, chaff, and second straw fraction and conveys the mixture (18) into a silo (14).




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Agricultural combine harvester with harvesting and winnowing optimization control system

An agricultural combine has a threshing assembly for threshing a crop to produce chaff and grain, a cleaning assembly for removing the chaff from the grain, and a control system. The threshing assembly and the cleaning assembly operate at threshing and cleaning settings, respectively, for tending to produce a balance between a threshing load applied across the threshing assembly and a cleaning load applied across the cleaning assembly that tends to have a favorable influence on grain loss. The control system is for sensing an imbalance between the threshing load and the cleaning load tending to have an unfavorable influence on grain loss, and for concurrently adjusting the threshing and cleaning settings of the threshing and cleaning assemblies, respectively, for tending to convert the imbalance between the threshing and cleaning loads to a balance between the threshing and cleaning loads tending to have a favorable influence on grain loss.




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Combine harvester grain cleaning apparatus

A combine harvester comprises a separating apparatus arranged to receive a threshed crop stream and convey rearwardly. The separating apparatus comprises a grate for allowing grain and chaff to fall onto an underlying separator pan, the separator pan being driven in an oscillating manner to convey a grain/chaff stream forwardly for delivery to a cleaning unit. The separator pan comprises a first portion and a second portion disposed forwardly of the first portion. A rear edge of the second portion is releasably attached to a front edge of the first portion, the second portion being pivotable around a forward mounting around a transverse axis between an operating position in which the second portion is attached to the first portion forming a continuous pan surface, and a lowered position in which the second portion is detached from the first portion giving maintenance access to the underside of the separating apparatus.




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Harvester bin sensor

A harvester grain bin monitoring system is disclosed. The system includes a sensor that monitors the perimeter of the bin proximate to the top rim to provide a warning to an operator when the grain level reaches approaches the bin rim. The sensor may be optical or mechanical.




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Air diverter for a cleaning system of a combine harvester

A cleaning system for a combine harvester that includes a cleaning shoe having a sieve, a cleaning fan, an air plenum and a pair of air diverters is provided. The cleaning fan is rotatably driven for generating a flow of air and positioned within the air plenum. The air plenum extends across the entire length of the cleaning fan and includes an inlet for the intake of air, an outlet downstream the inlet for directing the flow of air in a first direction, lateral walls forming a portion of the outlet, and a bottom wall extending between the lateral walls. The pair of air diverters extends inwardly from the lateral walls. Each air diverter is configured substantially as a pyramid having a rounded corner that extends inwardly from the lateral wall and upwardly from the bottom wall.




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Transportation device with star wheels

The present invention relates to a transportation device for transporting sausage-shaped products with suspension elements from a clipping machine to a handling device. The transportation device comprises a conveying unit, a catching unit for catching the suspension element attached to one end of the sausage-shaped product, and a guide unit for guiding the suspension element caught by the catching unit to said handling device comprising a longitudinally extending guide element and supports for supporting the guide element, wherein the supports provide a passage way for the suspension element to be guided along the guide element. The supports include gear wheels arranged rotatably about an at least substantially horizontally aligned axis engaging the guide element. Moreover, there are provided ratchets for engaging the gear wheels adapted to position a gap between two subsequent teeth of said gear wheels in the passage way of said suspension element.




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Separation of the spinal column from a carcass middle part

A method and a system for separating the spinal column from a carcass middle part, comprising the steps of providing a digital representation of an outer surface of the carcass middle on the basis of, e.g., an optical scan, determining a cutting path (1c) for a cutting device for the separation of the spinal column from the carcass middle on the basis of digital processing of the scan, and subsequently separating the spinal column from the carcass middle by causing a relative movement between the middle and the cutting device and simultaneously causing the cutting device to engage the carcass middle, wherein the relative movement between the middle and the cutting device during the spinal column separation to achieve a cut along the predetermined cutting path (1c).




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Portable game carcass hanger

A portable portable game carcass hanger including two mounting strap with fastening devices to secure to a vertical support beam such as a tree trunk. A mounting bracket with a first leg, a second leg perpendicular to the first leg and support member are provided. A first hook is disposed on the second leg. There is a triangular hanger with an apex and a bottom end opposite the apex. The apex removably engages the second leg first hook. The bottom end of the triangular hanger has at least one second hook provided to hang at least one game carcass thereon.




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Method and apparatus for mechanically processing an organ or organs taken out from slaughtered poultry

Method and apparatus are provided for mechanically processing an organ or organs taken out from slaughtered poultry in a processing device or processing line, which organ or organs form part of an organ package and wherein the organ or organs are separated from the organ package. The organ package is spatially oriented by the processing device without notably breaking tissue connections in the package, and in a preselected order so as to cause the harvesting of organs from the package to occur in a preselected sequence that depends on the location of the organ package in the processing device or processing line.




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Transportation assembly with separation device

The present invention relates to a transportation assembly for transporting sausage shaped products out of a clipping machine for producing sausage-shaped products in a transportation direction to a rod-like storing element. Each sausage-shaped product comprises a filled tubular or bag-shaped packaging casing closed on at least one end by a closing means and a suspension element attached to the end closed by said closure means, the transportation assembly comprises a guiding device having a bar-shaped guiding element along which the sausage-shaped product is guided by its suspension element, and a transportation device for transporting the sausage-shaped product along the guiding element by engaging the suspension element of the sausage-shaped product. The suspension element is held in an open configuration by the weight of the filled tubular or bag-shaped packaging casing. A separation device is provided at the guide element, for removing a suspension element from the guiding element.




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Poultry front half processing apparatus and method

A poultry front half processing module is shown and described. The module includes a rotatable wing bracket for securely engaging the wings of the front half to allow more accurate processing and easier deboning and transfer operations.




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Device and method for processing meat, particularly fish

The invention concerns an apparatus for processing meat, in particular fish, comprising a processing tool, an actuating unit associated with the processing tool for moving the processing tool out of a starting position into a processing position and vice versa, and a control device which is operatively connected to the processing tool or actuating unit for control of the processing tool, which is distinguished in that the actuating unit comprises a cylinder unit having two pressure cylinders which are arranged one behind the other and connected to each other, wherein the processing tool is arranged on one of the two pressure cylinders of the cylinder unit and the two pressure cylinders can be controlled independently of each other. Furthermore, the invention concerns a corresponding method.




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Filleting device and method for harvesting fillets

A filleting device and method for harvesting fillets from poultry carcasses that are moved in a conveyer-line supported on carriers is provided. In one exemplary embodiment, the first guide rails are provided to guide at least a part of the fillets so as to increase this part's distance from the carcass and break the tissue connections that connect the fillet or fillets in their natural position to the keel-bone of the carcass. Flexible elements are provided that complete the harvesting of the fillets by peeling the fillets entirely loose from the keel-bone.




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***WITHDRAWN PATENT AS PER THE LATEST USPTO WITHDRAWN LIST***Work hanging apparatus and work hanging method for hanging work on hanger through movement of work under correction

A work hanging apparatus includes a hanger line continuously conveying hangers each having a hook, a robot that has a hand with which a work having a hole is held and transfers the held work to a hanging location set in the hanger line, a controller controlling a movement of the hand to catch the hook of one of the hangers with the hole of the held work at the hanging location, a hole deviation detector that detects a positional deviation of the hole of the work, an attitude deviation detector that detects an attitudinal deviation of the hanger, and a corrector that corrects the movement of the hand according to the positional and attitudinal deviations.




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Method and apparatus for processing poultry suspended by the feet from a conveyor hook

A method for processing poultry suspended by the feet from a conveyor hook is provided. The method and apparatus allow the quality of the poultry to be classified and graded in a simpler and more effective manner to realize higher yields or an extra added value. In one exemplary embodiment, a processing apparatus for a foot of the poultry is provided that includes a foot pad inspection apparatus.




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Picking row for a poultry defeathering apparatus and such an apparatus

The invention relates to a poultry defeathering apparatus and to a picking row for use in such an apparatus. The picking row comprises an elongate support part with a front side surface, a back side surface, a two interconnecting side surfaces interconnecting the front and back side surfaces. Said side surfaces extends in parallel to a length axis of the support part and a plurality of picking heads are arranged on the front side surface. At least one of the interconnecting side surfaces is convex, preferably being curved with a radius of curvature corresponding to half the height of the support part. In the apparatus, two or more picking rows are arranged side-by-side with the picking heads facing in substantially the same direction such that interconnecting side surfaces of neighboring picking rows face each other. In such a pair of interconnecting surfaces, at least one of them is convex.




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Method and an apparatus for removing fat from meat cuts

A method and apparatus for removing fat from one face of a meat cut, where a knife tool cuts a layer of fat and possibly skin from the face. The knife tool is adapted to cut across the entire width of said meat cut along a desired trimming interface. The knife tool includes at least two controllable blade parts, each having a cutting edge, the blade parts extending between the first face and a fat-to-lean interface without intersecting said first face. The position of said cutting edges and the angle of the blade parts are continuously adapted, by controlling the at least two controllable blade parts, to cut following the desired trimming interface, whereby the fat and possible skin is trimmed from the lean in one single piece of fat.




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Device and method for processing carcasses of livestock

The present invention relates to a device for processing carcasses of livestock such as cattle, pigs and sheep, comprising: at least two dressing tools for performing a dressing process on livestock carcasses, and a robot arm carrying the dressing tool. The invention also relates to a method for processing carcasses of livestock using such a device.




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Poultry processing apparatus having one or more transfer units

A processing apparatus for poultry is provided. In an exemplary embodiment, the apparatus includes one or more transfer units placed intermediate of, conveying poultry from, a first line to a subsequent second line, wherein both the first line and the second line are selected from the group including a slaughtering line, an evisceration line, a chilling line, a sorting line and a cutup line. Each transfer unit is embodied with a circulating support that includes material that is magnetically conductive and transfer devices are provided with at least one magnet so as to induce eddy currents in the circulating support that counteracts relative motion between the transfer devices and the circulating support.




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Method and apparatus for mechanically processing an organ or organs taken out from slaughtered poultry

Method and apparatus are provided for mechanically processing an organ or organs taken out from slaughtered poultry in a processing device or processing line, which organ or organs form part of an organ package and wherein said organ or organs are separated from the organ package. The organ package is spatially oriented by the processing device without notably breaking tissue connections in the package, and in a preselected order so as to cause harvesting of organs from the package to occur in a preselected sequence that depends on the location of the organ package in the processing device or processing line.




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System and method for processing slaughtered animals and/or parts thereof

A slaughtered pig leg parts conveyor device is provided for conveying individual pig leg parts, wherein an individual pig leg part includes at least a portion of a pig leg and the pig foot. The conveyor device includes a track and one or more pig leg part carriers movable along said track, each carrier being adapted to carry an individual pig leg part. Each carrier has one pig foot retaining assembly adapted to engage on a single pig foot so as to retain the pig leg part in a position suspended from the carrier. The retaining assembly includes a pig foot aperture adapted to receive the pig foot.




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Vacuum apparatus and product recovery method

A vacuum apparatus and method for recovering poultry breast sub-tenders or other trim products from poultry or meat carcass shells, or for recovering other materials. The apparatus has a cover which can be lowered on to a base to form a vacuum chamber. One or more vacuum hoses extend from the apparatus for suctioning the product into the vacuum chamber. A product container is removably positioned in the vacuum chamber such that the product suctioned into the vacuum chamber will fall into the product container by gravity.




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Device for securing animal carcass for butchering

A device for use in suspending an animal carcass in an elevated condition includes a device body having an upper section which is integral with a lower section by way of a compound bend. The upper section is formed with a protrusion and the lower section includes a plurality of arms. The animal carcass includes a pelvic bone and the device is constructed and arranged to be positionable within the animal carcass such that the protrusion engages the pelvic bone in order to suspend the animal carcass in the elevated condition.




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Method and apparatus for stunning poultry

A method for stunning poultry in a slaughterhouse by means of supplying a stunning gas into a closed chamber wherein the poultry is advanced through a plurality of successive ambients between an inlet, wherein the stunning gas concentration is at a minimum, and an outlet, at which the stunning gas concentration is at a maximum. The stunning gas concentration increases progressively from each ambient to the successive ambient, initially with a minimum increase rate and thereafter with a higher increase rate up to the maximum concentration.




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Deboning system and deboning method for arm part of bone-in meat

A deboning system for an arm part of bone-in meat includes: a clamp; at least one forearm-bone incision making device; an olecranon incision making device; and a forearm-bone separation device, wherein the at least one forearm-bone incision making device includes a robot arm and a forearm cutter attached to the robot arm, and the olecranon incision making device includes a pair of olecranon cutters.




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Portable and articulable feather plucking mechanism

A portable plucking mechanism for birds, comprising a rotating head with a plurality of flexible protrusions operably connected to a motor, a plurality of arm members, and an attachment mechanism optionally comprising a trailer hitch receiver and an electrical connection to a power source. These components are connected with a plurality of articulable joints, allowing for optimal positioning of the rotating head (at the distal end of an arm member) in space relative to the position of the attachment mechanism (at the proximal end of another arm member). Thus, the user has convenient access regardless of terrain or obstacles, the ability to easily reposition the head, and the ability to manipulate the body of the bird with both hands, to frictionally engage a plurality of feathers with the rotating flexible protrusions, while minimizing damage to the meat of the bird.




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Conveying apparatus comprising a conveying path and designed to supply a plurality of products for consumption having soft parts to a processing device, and processing machine comprising a conveying apparatus and a processing device

A conveying apparatus has a conveying path to supply a plurality of products for consumption having soft parts and intended for processing to a processing device. A conveying intermediate space has conveying surfaces that face one another and receive the products for consumption between them while applying pressure thereto. A first conveying surface comprises a flexible surface-deformable conveying cover and a row arrangement of pressure elements that are arranged next to one another in a row extending transverse to the conveying direction, each having a pressure-applying transverse profile extending transverse to the conveying direction, and are held to be displaceable in the height dimension direction of the conveying intermediate space against a restoring force such that each pressure element co-operates with the surface-deformable conveying cover during the passage of the products for consumption through the conveying path in order to form a variable conveyor cross-section.




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Diluter and discharge valve arrangement for a fuel cell system

Provided is fuel cell system capable of eliminating any failure caused by freezing of a discharge valve during a low temperature while preventing an increase in size of the system. A fuel cell system is provided, the system including: a fuel cell; a diluter that dilutes a fuel-off gas discharged from the fuel cell with an oxidant-off gas discharged from the fuel cell to discharge the resulting gas to the outside; a fuel-off gas flow path that connects the fuel cell and the diluter; and a discharge valve that is provided to the fuel-off gas flow path to discharge a fuel-off gas flowing through the fuel-off gas flow path to the outside during a valve opening operation. In the fuel cell system, the discharge valve is integrally attached to the diluter.




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Modular intrinsically-safe field device power module

A modular, intrinsically-safe power module assembly is provided. The assembly includes a rigid conduit adapter configured to mount to a conduit of a field device. A housing, having an interior, is operably coupled to the rigid conduit adapter and is physically supported by the rigid conduit adapter. At least one non-rechargeable battery is disposed within the housing. Intrinsic safety circuitry is coupled to the at least one non-rechargeable battery, and is coupled to a connector that mates with a cooperative connector in the rigid conduit adapter.




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Connecting structure for secondary battery and battery pack including the same

A connecting structure for a secondary battery for electrically connecting a core pack where two or more unit cells are electrically connected and a protection circuit module made of the unit cells of the core pack and a PCB substrate. The connecting structure includes a metal plate having an electrode connecting unit connected to an electrode of each unit cell of the core pack and a circuit connecting unit connected to the protection circuit module; and a circuit terminal unit electrically connected to the circuit connecting unit by being located in a connection hole formed in the PCB substrate of the protection circuit module so that the upper and lower portions of the PCB substrate communicate with each other. The circuit connecting unit is coupled and electrically connected to the circuit terminal unit by means of a connection method which allows selective connection and separation.




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Battery pack with cells of different capacities electrically coupled in parallel

The disclosed embodiments provide a battery pack for use with a portable electronic device. The battery pack includes a first set of cells with different capacities electrically coupled in a parallel configuration. Cells within the first set of cells may also have different thicknesses and/or dimensions. The first set of cells is arranged within the battery pack to facilitate efficient use of space within a portable electronic device. For example, the first set of cells may be arranged to accommodate components in the portable electronic device.




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Cable-type secondary battery and preparation thereof

The present disclosure provides a cable-type secondary battery, comprising: an inner electrode; and a sheet-form laminate of separation layer-outer electrode, spirally wound to surround the outer surface of the inner electrode, the laminate being formed by carrying out compression for the integration of a separation layer for preventing a short circuit, and an outer electrode. According to the present disclosure, the electrodes and the separation layer are compressed and integrated to minimize ununiform spaces between the separation layer and the outer electrode and reduce the thickness of a battery to be prepared, thereby decreasing resistance and improving ionic conductivity within the battery. Also, the separation layer coming into contact with the electrodes absorbs an electrolyte solution to induce the uniform supply of the electrolyte solution into the outer electrode active material layer, thereby enhancing the stability and performances of the cable-type secondary battery.




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Rechargeable battery

A rechargeable battery includes an electrode assembly, a case, a cap assembly, and a current collecting plate. The electrode assembly includes an anode, a cathode, and a separator interposed between the anode and the cathode. The case houses the electrode assembly and has an opening and has a closed end. The cap assembly is coupled to the opening of the case, and is electrically connected to the electrode assembly. The current collecting plate is electrically connected to the anode or the cathode, and has a guide portion. The guide portion bends toward the electrode assembly to be in contact with the electrode assembly.




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Lithium rechargeable battery

A lithium rechargeable battery including: a bare cell including an electrode assembly disposed in a pouch, the electrode assembly including two electrodes, a separator, and first and second electrode tabs that extend from the electrodes, through a first side of the bare cell; a protecting circuit board electrically connected to the first and second electrode tabs; a first lead plate connected to the protecting circuit board and the first electrode tab, and a second lead plate connected to the protecting circuit board and the second electrode tab. The protecting circuit board is provided on a second side of the bare cell, which is adjacent to the first side. The first and second lead plates are bent to extend along the first and second sides of the pouch.