Abstract:
The present invention relates to a drive station for a device for conveying bulk material, the drive station comprising: - a housing, which has a base plate and side walls, at least one side wall having at least one opening for the passage of a conveying means for conveying the bulk material along a passage path; and — a drive for moving the conveying means, the drive being disposed in the housing. A preferably movable intermediate base having openings is disposed below the passage path and above the base plate in the vertical direction.
Abstract:
A cleaning pig assembly is provided for use on a tubular drag conveyor. The assembly is quickly and easily mounted anywhere along the cable, chain, or rope via slots in the assembly components. The components include a puck, a plate, a drag disc, and a cleaning member or tool sandwiched between the puck and the plate. The drag disc provides interference fit on the cable, chain, or rope holding the assembly on the cable, chain, or rope and prevents sliding of the assembly along the cable, chain, or rope during use. The cleaning assembly is installed without the use of tools or clamps. Multiple interchangeable cleaning members are provided depending on cleaning needs.
Abstract:
A cleaning pig assembly is provided for use on a tubular drag conveyor. The assembly is quickly and easily mounted anywhere along the cable, chain, or rope via slots in the assembly components. The components include a puck, a plate, a drag disc, and a cleaning member or tool sandwiched between the puck and the plate. The drag disc provides interference fit on the cable, chain, or rope holding the assembly on the cable, chain, or rope and prevents sliding of the assembly along the cable, chain, or rope during use. The cleaning assembly is installed without the use of tools or clamps. Multiple interchangeable cleaning members are provided depending on cleaning needs.
Abstract:
Disclosed is a chain disk corner. In certain embodiments, the chain disk corner includes a bi-directional orientation independent chain disk corner wheel. In particular, the wheel is molded and devoid of moving parts. In certain embodiments, the chain disk corner includes a window portion. In particular, a bottom housing subassembly includes a bottom body of an opaque material and a hingedly attached window portion. In certain embodiments, the chain disk corner includes a reinforcing washer. In particular, a top washer is attached by injection molding to an interior of the top body, and/or a bottom washer is attached by injection molding to an interior of the bottom body. In certain embodiments, the chain disk corner includes a top surface devoid of pockets. In particular, a top body includes a plurality of ribs positioned at an interior surface of the top body.
Abstract:
A corner unit for a feed conveying system includes a housing and a wheel. The housing defines a cavity and a track. The track is configured to receive a material conveying string. The wheel is disposed at least partially within the cavity of the housing and is configured to rotate within the cavity. The housing includes a plurality of ridges protruding into the cavity. The wheel includes a central hub, an outer rim, and one or more spokes extending from a first end coupled to the central hub to a second end coupled to the outer rim. At least one of the one or more spokes is swept such that, when the wheel is rotated in a first direction, the second end trails the first end such that rotation of the wheel in the first direction sweeps material that enters the cavity from the cavity and into the track.
Abstract:
A close tolerance disc for a flexible member conveyor including a disc body member and a movable resilient ring. The ring is preferably formed of a durable polymer interlocking ring where the ring outer periphery closely matches the inside surface of the conveyor tubing. The resilience of the ring biases it to conform to the inside surface of the conveyor tubing to provide 100% conveyance of the material in the system. The ring can move in place within a groove in the body member of the disc, as well as distort to self-align and conform to the irregularities that are present in the manufacturing of the conveyor tubular components. The ring is easily removeable for quick replacement and cleaning. The interlocking ends of the ring keep the ring ends in place and in line to prevent the ends from being misaligned while passing through a partially cutaway portion of the tube.
Abstract:
The conveying device (1) according to the invention has a conveying channel (4). The conveying channel (4) is formed in particular as a conveying pipe (5). At least one carrier (2) is arranged in the conveying channel (4). In particular, at least two carriers (2) are arranged in the conveying channel (4). The conveying device (1) has at least one drive (6) for driving the at least one carrier (2) in order to convey bulk goods along a conveying channel axis. The at least one carrier (2) is loosely arranged in the conveying channel (4) at least in some sections along the conveying channel axis.
Abstract:
A harvester is provided comprising a vessel for securing a crop therein and a crop delivery system. The crop delivery system has a first tube with a first angled orientation, a first end and an opposed second end, the first tube being configured to receive the crop from the vessel at the first end. A continuous belt is provided having a receiving region in close proximity to the first end of the first tube. A portion of the belt operable to carry the crop from the receiving region is structurally supported by and substantially covered by the first tube, while a portion of the belt operable to return to the receiving region after delivering the crop passes beneath the first tube.
Abstract:
A chip conveyer for a machine tool includes a casing including a chip introducing port and a chip discharging port, and a chip carrying mechanism arranged in the casing so as to extend from the chip introducing port to the chip discharging port. Chips dropped in the casing through the chip introducing port are carried to the chip discharging port by the chip carrying mechanism. A partition plate partitioning an inside of the casing up and down is arranged in the casing, and a portion of the partition plate below the chip introducing port is configured to be openable and closable. A carrying direction of the chip carrying mechanism when the partition plate is in an open state and a carrying direction of the chip carrying mechanism when the partition plate is in a closed state are set to be opposite directions.
Abstract:
The invention relates to a conveyor for material, comprising a circulating tube (64) circuit, a series of conveyor flights (63) placed so as to be movable in the circulating tube circuit, comprising one or more first conveyor flights comprising a component made of an electrically conductive and/or magnetic material, one or more spacers (62) for spacing apart the conveyor flights in the circulating tube circuit, and a drive mechanism comprising a number of coils (70) placed successively along a drive member of the circulating tube circuit, which coils generate a varying magnetic field within a drive path for driving the first conveyor flights situated within the drive path in a drive direction.