Abstract:
A proppant discharge system has a container with an outlet formed at a bottom thereof and a gate slidably affixed at the outlet so as to be movable between a first position covering the outlet to a second position opening the outlet, and a support structure having an actuator thereon. The container is removably positioned on the top surface of the support structure. The actuator is engageable with gate so as to move the gate from the first position to the second position. A conveyor underlies the container so as to receive proppant as discharged from the container through the outlet. The container is a ten foot ISO container.
Abstract:
A proppant discharge system has a container with an outlet positioned in a bottom thereof and a gate affixed adjacent the outlet so as to be movable between a first position covering the outlet to a second position opening the outlet, and a support structure having an actuator thereon. The container is removably positioned on the top surface of the support structure. The actuator is engageable with gate so as to move the gate from the first position to the second position. A conveyor underlies the container so as to receive proppant as discharged from the container through the outlet. The container can be a ten foot ISO container.
Abstract:
A proppant discharge system has a container with an outlet formed at a bottom thereof and a gate slidably affixed at the outlet so as to be movable between a first position covering the outlet to second position opening the outlet, and a support structure having an actuator thereon. The container is removably positioned on the top surface of the support structure. The actuator is engageable with gate so as to move the gate from the first position to the second position. A conveyor underlies the container so as to receive proppant as discharged from the container through the outlet. The container is a ten foot ISO container.
Abstract:
A process for pneumatic delivery of water-absorbing polymer particles, the initial gas rate in the delivery being from 1 to 6 m/s and the delivery material loading being from 1 to 100 kg/kg.
Abstract:
Vibrational linear conveyor for conveying workpieces and powdery or granular materials with a useful mass and a counter mass, which are equal in magnitude, are mounted separately at a vibrating system and, for conveying, can be brought into an opposite oscillating or vibrating movement over an electromagnetic exciter element comprising a magnet coil and a magnet armature, both of which are parts of the useful or counter mass. The workpieces or materials are transported by means of the oscillating or vibrating movement on a trough-like conveying element, which is part of the useful mass, along the conveying element, the useful and counter masses of the same magnitude lying essentially one above the other and being built up symmetrically on either side of a vertical central plane, in which the centers of mass of the useful and counter masses are resting on a common line of action. Various conveying elements are fastened interchangeably, an element-specific additional mass being provided, which is disposed at or mounted and designed at a conveying element or another part of the useful mass in such a manner, that the total weight of the useful mass as well as the position of the centers of the useful mass remained essentially the same, the total weight of the useful mass corresponding to that of the counter mass.
Abstract:
A vacuum receiver for a pneumatic conveyor for conveying, e.g., plastic pellets, having a receiving vessel with a material inlet, a material outlet and a conveying gas outlet. A first valve member is provided for opening and closing the conveying gas outlet, and a second valve member is provided for opening and closing the material outlet. Both valve members are connected to a common valve shaft and actuated by a single actuator mounted on a vessel lid. The vacuum receiver of the invention has the advantage of affording positive control and sealing of the material discharge valve while at the same time being economical to manufacture and easily cleaned.
Abstract:
Replaceable intake section (14) of grain auger (10) includes fixed metal elongate support (22) secured to tubular casing (11) and extending beneath flexible intake end flight portion (17) which is connected by a clutch to the main flight of auger (10). Pliable, soft, rubber, safety guard or collar (27) is part-circular in section and extends around flight portion (17). Longitudinal edges on guard (27) normally engage with edges (34) of support (22). If an obstruction, such as an operator's foot, engages the auger intake, free end portions of guard (27) can disengage from edges (34) of elongate support (22) to minimise jamming or injury. Collar (27) may be attached to adjustable slide (25) to vary the length of flighting (17) exposed and thereby alter the rate of feed.
Abstract:
A plurality of laterally spaced apart, longitudinally extending, V-shaped upper conveyor slats (10) are provided. Each upper conveyor slat (10) has a crown and opposite side portions that slope laterally outwardly and downwardly from the crown. The side portions have lower surfaces. A plurality of laterally spaced apart, longitudinally extending, V-shaped lower conveyor slats (12) are provided. These lower conveyor slats (12) are positioned between the upper conveyor slats (10). Each lower conveyor slats includes a valley and side portions that slope laterally outwardly and upwardly from the valley. The side portions have upper and lower surfaces. The side portions of the upper conveyor slats (10) overhang the side portions of the lower conveyor slats (12). A plurality of slide bearings (14) are positioned vertically between the upper and lower conveyor slats (10, 12) where the side portions of the upper conveyor slats (10) overhang side portions of the lower conveyor slats (12). The slide bearings (14) have upper surfaces on which the lower surfaces of the side portions of the upper conveyor slats (10) slide. The slide bearings (14) also have spaces in which outer edge portions of the side portions of the lower conveyor slats (12) are received and slide. In use, the upper and lower conveyor slats (10, 12) reciprocate in a longitudinal direction and are supported for such movement by the slide bearings (14).
Abstract:
A grain conveyor chain for a harvesting vehicle includes a chain made of standard chain elements and multiple scoops. The scoops are fastened on the chain and the standard chain elements have inner plates, outer plates, pins, and/or sleeves, with each scoop being in direct contact with a standard chain element.
Abstract:
The invention provides a container manipulation device comprising a frame, two container engagement members, two pivoting mechanisms for pivoting the engagement members with respect to the frame, the pivoting mechanisms each include a coupler, pivotally connected with a first end to the engagement member at a first distance from the engagement member pivot axis, a rocker, pivotally connected with a first end to the frame and with a second end to a second end of the coupler, and an actuator for pivoting the rocker about the rocker pivot axis such that the engagement member pivots between the first and second orientation. The invention also provides a hoisting device comprising such a container manipulation device.