Patent classifications
B01F27/92
Agricultural feed mixer transmission torque sensor assembly
Described herein is an exemplary torque sensing assembly for a feed mixer that includes, a frame of a feed mixer, the frame having a first frame portion and a second frame portion; a transmission having at least two speeds, a housing, an input shaft, and an output shaft, a load cell secured to a second frame portion of the frame; a mounting plate having a first side portion and a second side portion situated opposite the first side, the transmission secured by a plurality of fasteners to a top surface of the mounting plate, hinge rotatably connecting the first side portion to the first frame portion, and a load contact point situated in contact with the load cell, wherein a resultant torque is impartable to the housing to provide a downward force on the load cell, via the load contact point.
Stirring machine down auger protection system
An auger protection system used in a stirring system is disclosed. According to a first preferred embodiment, an auger protection system is provided which protects augers on a stirring machine from breaking or bending. Accordingly to this first preferred embodiment, the auger protection system includes a switch which is enclosed in a housing and connected to a timer which supplies power to a gear motor that propels the unit around a silo. Preferably, the housing for the holding switch is attached pivotally to the structure on which the down auger is connected. Additionally, the auger protection system preferably further includes a spring which is connected to a pivot assembly and which extends horizontally and comes in contact with the down auger at one end.
Systems for cell culture scaling
The present set of embodiments relate to a bioproduction system, method, and apparatus for creating a scalable bioreactor system. Specifically, the present set of embodiments enable the determination of bioreaction performance characteristics of a commercial scale by matching operational parameters between a small test scale bioreaction to that of a commercial scale bioreaction. The system and methods do not rely on simply making bioreactor apparatuses across scales the same dimensionally which would not account for differences in fluid dynamic properties between very small to very large volumes, but requires tuning of a variety of systems (mixing assembly, sparger system, and headspace airflow system) in conjunction with one another to achieve predictive outcomes.
Systems for cell culture scaling
The present set of embodiments relate to a bioproduction system, method, and apparatus for creating a scalable bioreactor system. Specifically, the present set of embodiments enable the determination of bioreaction performance characteristics of a commercial scale by matching operational parameters between a small test scale bioreaction to that of a commercial scale bioreaction. The system and methods do not rely on simply making bioreactor apparatuses across scales the same dimensionally which would not account for differences in fluid dynamic properties between very small to very large volumes, but requires tuning of a variety of systems (mixing assembly, sparger system, and headspace airflow system) in conjunction with one another to achieve predictive outcomes.
AGRICULTURAL FEED MIXER WITH TORQUE SENSING AUTOMATIC TRANSMISSION
Described herein is an exemplary feed mixer apparatus that includes a feed mixer apparatus that includes, a mixing chamber for receiving feed, and having a mixing element situated therein for mixing the feed, a transmission having a plurality of gears and connected with a mixing element, a drive system having a plurality of drive system components, including the transmission, a torque sensor interconnected with at least one drive system component, a control unit having a display and a plurality of user inputs, wherein the control unit is in at least indirect communication with the transmission and the torque sensor, and wherein the control unit receives a plurality of outputs from one or more of the transmission and torque sensor, and based at least in part on the plurality of outputs, provides an output command to effectuate a gear change in the transmission.
AGRICULTURAL FEED MIXER TRANSMISSION TORQUE SENSOR ASSEMBLY
Described herein is an exemplary torque sensing assembly for a feed mixer that includes, a frame of a feed mixer, the frame having a first frame portion and a second frame portion; a transmission having at least two speeds, a housing, an input shaft, and an output shaft, a load cell secured to a second frame portion of the frame; a mounting plate having a first side portion and a second side portion situated opposite the first side, the transmission secured by a plurality of fasteners to a top surface of the mounting plate, hinge rotatably connecting the first side portion to the first frame portion, and a load contact point situated in contact with the load cell, wherein a resultant torque is impartable to the housing to provide a downward force on the load cell, via the load contact point.
AGRICULTURAL FEED MIXER WITH INGREDIENT SENSING AUTOMATIC TRANSMISSION CONTROL
Described herein is an exemplary feed mixer apparatus that includes a mixing chamber for receiving feed material, and having a mixing element situated therein for mixing the feed material; a transmission having a plurality of gears and connected with a mixing element; a control unit having a display and a plurality of control panel inputs, wherein the control unit is in at least indirect communication with the transmission and the sensors, and wherein the control unit receives a plurality of outputs from one or more of the transmission and sensors, and based at least in part on the plurality of outputs, provides an output command to effectuate a gear change in the transmission, and wherein the control unit includes a processor, a memory, and a control program
AGRICULTURAL FEED MIXER WITH VOLUMETRIC RESPONSIVE AUTOMATIC TRANSMISSION
Described herein is an exemplary feed mixer apparatus that includes a mixing chamber for receiving feed material, and having a mixing element situated therein for mixing the feed material; a transmission having a plurality of gears and connected with a mixing element; a plurality of mixing chamber sensors positioned to sense at least one of the volume and the level of feed material in the mixing chamber; a control unit having a display and a plurality of user inputs, wherein the control unit is in at least indirect communication with the transmission and the sensors, and wherein the control unit receives a plurality of outputs from one or more of the transmission and sensors, and based at least in part on the plurality of outputs, provides an output command to effectuate a gear change in the transmission.
VERTICAL FEED MIXER
A feed mixer for mixing material. The feed mixer includes a tub that defines a tub interior. A rotatable screw assembly is located in the tub interior. A conveyor assembly is pivotably located along an outer surface of the tub at a discharge opening. The screw assembly moves material towards the conveyor assembly as the screw assembly rotates. The conveyor assembly includes a conveyor and a positioning system configured to move the conveyor between a conveying state, a stowed state, and a maintenance state.
VERTICAL FEED MIXER
A feed mixer for mixing material. The feed mixer includes a tub that defines a tub interior. A rotatable screw assembly is located in the tub interior. A conveyor assembly is pivotably located along an outer surface of the tub at a discharge opening. The screw assembly moves material towards the conveyor assembly as the screw assembly rotates. The conveyor assembly includes a conveyor and a positioning system configured to move the conveyor between a conveying state, a stowed state, and a maintenance state.