Abstract:
A conveyor system and method for cascaded accumulation on a series of in-line roller belts. An accumulation system comprises a series of roller belts that can be actuated in contiguous zones to accelerate conveyed articles forward at twice the belt speed. When articles start to accumulate on the accumulation conveyor, the belt rollers are deactuated downstream to upstream zone by zone. Then the belts are stopped as they fill with accumulated articles. The process is repeated in cascade for the upstream roller belts as articles continue to accumulate.
Abstract:
A double-chain conveyor is assembled of trough sections defining a bottom plate provided with lateral guiding walls for scraper elements and intermediate guides extending along the entire length of the conveyor and guidingly engaging lateral edges of flat chain elements arranged parallel to the bottom plate of the trough. The flat chain elements are provided with oblong holes extending in the direction of the chain and linking vertically directed ring-shaped chain elements with a play which permits shifting movements of all chain elements in the longitudinal direction. Intermediate drives are provided between superposed bottom plates of the trough and drive a chain wheel engaging the flat chain elements both in the upper and in the lower flight of the conveying chain.
Abstract:
A mounting element (1) for mounting a trolley (29) to a continuous conveyor means (30) of a conveyor device comprises at least two articulatedly connected articulated parts (2, 3), wherein a first of the articulated parts (2) is set-up for articulation of the mounting element (1) to the continuous conveyor means (30) and a second of the articulated parts (3) is set-up for connecting the mounting element (1) to the trolley (29).
Abstract:
A conveyor system may include a pipe conveyor with a head end, a tail end, and an inclined section. The conveyor system may also include a conveyor belt including a first portion and a second portion. The conveyor belt may form a pipe shape when the first and second portions of the conveyor belt are overlapped. The pipe shape may extend from a pipe closing point to a pipe opening point and may enclose two or more longitudinally spaced-apart centering structures. The centering structures may allow for self-bridging of a bulk material carried in a pipe volume above each centering structure. Means of implementing this material-transport principle within a pipe conveyor system are described.
Abstract:
A conveyor includes a frame having first and second spaced frame elements, first and second drive rollers between the frame elements, and a flexible belt mounted between the first and second drive rollers that has a load bearing portion and a return portion, the return portion extending between the first and second frame elements. The conveyor has a first end portion including the first drive roller, a second end portion including the second drive roller and a central portion including a midpoint between the first drive roller and the second drive roller, and the central portion of the conveyor includes a lift-table receiving space between the first drive roller and the second drive roller and between the first frame element and the second frame element, and the return portion of the belt extends between the load bearing portion and the lift-table-receiving space.
Abstract:
An overhead mounted friction drive conveyor assembly including a biasing section for biasing objects such as car doors. The conveyor assembly includes a conveying rail and a biasing rail extending in spaced and parallel relationship with the conveying rail. The conveyor assembly also includes at least three trolleys and at least two tow bars extending between and interconnecting the trolleys. A biasing mechanism allows at least two of the trolleys to remain on the conveying rail and guides at least one trolley onto the biasing rail so that one of the tow bars extends between the biasing rails. The object is disposed on the tow bar extending between the biasing rails. A plurality of friction drivers are disposed on the conveying rail for only driving the tow bar extending between the trolleys on the conveying rail.
Abstract:
A force transmission or transport device having a line of force transmitting elements (2), a guide (1) for guiding the line of force transmitting elements (2) along a predetermined course, and at least one drive. A tensioning drive (6) is provided at one end of a section (5) of the predetermined course. A further drive (3), or an intermitting stop (9), is provided at the other end of the section (5) for tensioning the line of force transmitting elements (2) by a tractive or a compressive load. The further drive (3) or stop (9) acts substantially without slippage on the force transmitting elements (2). The tensioning drive (6), via a friction clutch, starts slipping when the desired tension has built up.
Abstract:
A packing method of packing articles into a packing box comprises pre-grouping articles on a pre grouping surface provided by a pre grouping conveyor belt of a pre grouping conveyor, and providing the articles from the pre-grouping surface of the pre-grouping conveyor belt into the packing box. This is done consecutively by providing one of a cassette box and the packing box at a discharging end of the pre-grouping conveyer; moving downwards said one of the cassette box and the packing box while driving the pre grouping conveyor belt such that the pre-grouped articles on the pre-grouping conveyer-belt moves towards the discharging end of the pre-grouping conveyor and the opening of said one of the cassette box and the packing box, and that the articles of the pre-grouped articles are discharged from the pre-grouping conveyor belt into said one of the cassette box and the packing box and onto one another; and, in case the articles of the pre-grouped articles are provided into the cassette box, providing the articles from the cassette box into the packing box.
Abstract:
A conveyor includes a frame having first and second spaced frame elements, first and second drive rollers between the frame elements, and a flexible belt mounted between the first and second drive rollers that has a load bearing portion and a return portion, the return portion extending between the first and second frame elements. The conveyor has a first end portion including the first drive roller, a second end portion including the second drive roller and a central portion including a midpoint between the first drive roller and the second drive roller, and the central portion of the conveyor includes a lift-table receiving space between the first drive roller and the second drive roller and between the first frame element and the second frame element, and the return portion of the belt extends between the load bearing portion and the lift-table-receiving space.
Abstract:
A product collection apparatus which provides a product conveyed by a conveyance belt to a rotary table to collect the product includes a conveyance belt to be rotated; a rotary table supported rotatably, linkage unit which links a driving force input unit for conveyance belt which receives driving force to rotate the conveyance belt and a driving force input unit for rotary table which receives driving force to rotate the rotary table, and an actuator which transfers the driving force to the conveyance belt and the rotary table through the linkage unit.