Abstract:
The invention relates to a connecting device (2) for connecting a container (F) containing a powder/granular product to an isolator (1) with a connecting opening (120), through which the container (F) is introduced into the isolator (1) for emptying as intended, wherein the connecting device (2) comprises:
a holding device (220) being configured to receive the container (F) and hold it during connecting and emptying; a transfer device (210, 230) for transferring the holding device (220); and a control device for controlling the transfer device (210, 230); wherein the control device is configured to control the transfer device (210, 230) in such a way that it transfers the holding device (220) together with the container (F) from an initial holding position in which the container (F) is received in the holding device (220) as intended, into an emptying position such that at least an opening of the container (F), via which the powder/granular product is removed for emptying the container (F) as intended, is introduced into the isolator (1) through the connecting opening (120).
Abstract:
A loading car for picking up, transporting onward and discharging bulk material has a car frame supported on on-track undercarriages and a distributing conveyor belt extending in a longitudinal direction of the car, for transporting the bulk material to discharge devices. The distributing conveyor belt is constructed to be displaceable in the longitudinal direction of the car for selectively charging the discharge devices. A first discharge device is constructed as a chute disposed above a track. A second as well as a third discharge device are constructed in each case as a conveyor belt pivotable about a vertical axis and each has a receiving end positioned in the region of the axes.
Abstract:
A weighing apparatus for the preparation of a mixture of granular components that comprise batches of material required by a plurality of processing machines in a plant for the manufacture of plastic products is described. The apparatus comprises a Multi-Channel Gravimetric Batch Blender (MCGBB) configured to weigh predetermined weights of the raw materials and to combine the weighed portions of raw materials into batches according to a predetermined recipe for each processing machine and a computer that controls the operation of all components of the MCGBB. The MCGBB comprises several weighing units arranged in a way that allows material weighed in each of the weighing units to fall through individual chutes via a common funnel into a manifold that distributes the weighed batches to several processing machines via a system of delivery pipes.
Abstract:
The present invention is directed to a conveyor belt cleaning apparatus comprising a frame having a front side, a rear side, two lateral sides and one or more openings located between the front side, the rear side and the lateral sides; a first scraping blade and a second scraping blade, wherein each of the scraping blades is positioned between the lateral sides of the frame, and wherein the second scraping blade is rearward of the first scraping blade; and means for securing the frame to the underside of a conveyor belt assembly such that the first scraping blade and the second scraping blade make contact with the conveyor belt of the conveyor belt assembly.
Abstract:
The various embodiments of the present invention are directed to valve devices, systems, and methods for controlling the distribution of materials to multiple locations. The improved valve devices, materials distribution systems, and materials distribution methods disclosed herein are particularly suitable for use in applications where the materials being distributed are, for example but not limited to, non-gaseous fluid materials (e.g., raw liquids, solutions, slurries, colloids, suspensions, and the like) and solid materials having some level of tackiness, moisture content, or like property. The valves, systems, and methods disclosed herein can be operated without having to stop the flow of materials therethrough in order to change the position of the valve from one outlet to another. Further, the valves and systems disclosed herein have few directional changes, therefore there are few, if any, points within the system where the material can get stuck and/or lodged.
Abstract:
The present report is about the patent of an innovative system utilized in the transportation, load and unload of grains or seeds for silos of storage, dryers and industrial units, being able to be installed directly in vertical silos and or adapted in the conventional principles of transportation as a group or independently, consisting of limits of change of direction and composed by driving and motor gears and points of load and unload respectively, generally established in the extremities of the assembly, hopper of load formed by an upper opening and double system of unload composed by floodgates arranged in the periphery of both intervals of the pipes and provided in transit or channels.
Abstract:
A device for dividing a flow of lumpy material into two sub-flows comprises a dividing mechanism which comprises a dividing edge for splitting the material flow into two sub-flows, an apparatus for directing the material to the dividing mechanism and an apparatus for diverting the two sub-flows away from the dividing mechanism. The dividing edge can be moved back and forth in its longitudinal direction following its own track. Embodiments of the device can permit the wear on the dividing edge to be more evenly distributed and the service life of the device may thereby be increased.
Abstract:
A grain distributor including a timer coupled to a distribution spout that generates a series of particular time values. The control processor is programmed with an algorithm to pivot the distribution spout and to receive and record signals from the sensor as the sensor confronts each of the code clusters and each of the proof windows. The control processor is programmed with the algorithm to associate each signal from each code cluster with a particular time value generated by the timer and to memorize the particular time value associated with each code cluster in a long term memory and the control processor being programmed with the algorithm to associate each signal from each of the proof windows in a long term memory. The grain distributor is also self programming.
Abstract:
An exemplary implementation of a powder product unloading and storage apparatus has a single, preferably sealed cabinet, such as a glove box, for holding, accessing, and unloading the contents of a drum into the cabinet, wherein the cabinet includes a system for minimizing, ameliorating or eliminating the release of dust to the atmosphere. A rotary spout dispenses and directs the product entering into the cabinet to a preselected storage hopper which has been selected from a plurality of storage hoppers. The plurality of storage hoppers are preferably all held within a closed or filtered environment such that release of product to the atmosphere is reduced, ameliorated, or eliminated.
Abstract:
The invention relates to a device for distributing hot feed into the feeding silos of a metallurgical furnace. The device comprises an inlet pipe for receiving the feed from the outlet of a previous process stage. A batching pipe is fitted to the inlet pipe for distributing the feed alternately into the feeding silos through feeding hoppers that are arranged below the inlet pipe and the batching pipe on the periphery of a circle. The inlet pipe and the batching pipe are arranged for rotation with respect to the center axis of the inlet pipe, whereby the feed is directed alternately into each feeding hopper. The batching pipe is arranged between a protective shield, which is insulated from the environment in a gas-tight manner. The distributor of hot feed according to the invention is especially well-suited to feeding homogeneous and free-flowing material, such as preheated and pre-reduced ilmenite into the feeding and batching silos. The invention provides an environmentally safe way to feed the hot feed.