Abstract:
An installation for treating mass-produced parts includes: a supporting structure with a supporting element, a basket carrier for at least two centrifuge baskets, a main drive device attached to the supporting structure and having a main drive and a longitudinal shaft, the longitudinal shaft being mounted rotatably about a main axis relative to the supporting element and being drivable rotatably about the main axis by the main drive, wherein the basket carrier is held suspended at the longitudinal shaft and is connected to the longitudinal shaft in a rotationally fixed manner, and a secondary drive device having at least one motor and, for each centrifuge basket, a drivetrain for rotating the centrifuge basket about a basket axis radially spaced from the main axis, wherein the at least one motor of the secondary drive device is arranged on the basket carrier.
Abstract:
A coating method for coating parts in a dip-spin process is provided. The parts to be coated are dipped into a coating liquid and then centrifuged in at least one planetary basket arrangement in a planetary centrifuge. The planetary centrifuge includes a main rotor rotating about a main rotor axis of rotation and at least one planetary basket arrangement rotates about its planetary axis of rotation. Also, the planetary axis of rotation is arranged eccentrically on the main rotor. The at least one planetary basket arrangement can include a plurality of planetary baskets rotatably arranged about the planetary rotation axis of the at least one planetary basket arrangement and the planetary basket arrangement is rotated during a centrifuging operation.
Abstract:
A reduced-scale drum motor roller drive is combined with a rotating enlarged-scale hard drum on the rotation axis of the hard drum. A source of electric power rotates the drum motor roller which thereby rotates the hard drum for tumbling and/or coating service in an automated and/or mechanized food process lines.
Abstract:
The food breading device is configured for use with a target foodstuff and a coating foodstuff. The coating foodstuff has a bulk solid phase. The food breading device coats the coating foodstuff on the target foodstuff. The food breading device includes a containment shell, a paddle structure, and a timing device. The timing device attaches to the containment shell. The paddle structure mounts in the containment shell. The target foodstuff is placed inside the containment shell. The paddle structure is a rotating structure. The paddle structure rotates such that the paddle structure changes the position of the target foodstuff within the containment shell. The rotation of the paddle structure further releases the coating foodstuff onto the target foodstuff.
Abstract:
A method for phlegmatizing an explosive in an aqueous suspension including a dispersed phlegmatizing agent. The phlegmatizing agent is deposited on a surface of the explosive at low temperature utilizing opposite electric charges of the phlegmatizing agent and the explosive. Also a device and a phlegmatized explosive.
Abstract:
The present invention relates to a device for coating and mixing granular products, in particular food products, more in particular peanuts, the device comprising a compartment defined by a rotary bottom part and a stationary circumferential side wall, the device further comprising: a product supply for supplying the products into the compartment, a substance supply for supplying a substance into the compartment, a drive for rotating the rotary bottom part about its substantially vertical axis, wherein the rotary bottom part and the stationary circumferential side wall comprise non-stick parts which define a substantial part of an inner surface of the compartment and which are manufactured from a non-stick material, wherein said non-stick parts are mechanically connected to the device via detachable connectors, allowing fast replacement of worn-out non-stick parts by new, same non-stick parts.
Abstract:
The invention relates to a device for manufacturing hot-mix coated materials, e.g. materials coated with bitumen, the device comprising: an oven (1) comprising an enclosure (2) provided towards its two opposite ends with a main inlet (3) designed to receive granular materials and with a main outlet; and heater means (10) defining a combustion section (5) inside the enclosure (2), said enclosure (2) starting with said combustion section (5) and continuing with a drying section (6), and then with a mixing section (7); the device being characterized in that it is provided with a bypass outlet (11) and with an external mixer (12) that is connected to said bypass outlet (11), which outlet is fitted with a blocking system (15) allowing granular materials to pass towards the inlet (13) of the external mixer (12) and a closed position allowing granular materials to pass towards the mixing section (7).
Abstract:
An apparatus and method are provided for coating a particulate material. A mixer defines a mixing chamber and receives a particulate material. An agitator includes a plurality of arms projecting radially outward from the shaft and a plurality of paddle blades positioned on the ends of the arms. The blades are formed such that the particulate material in the mixing chamber is directed in a rotational direction, a radially inward direction and an axial direction within the mixing chamber. A material feed system is provided for delivering a first coating material into the mixing chamber during rotation of the agitator, a polymer material during mixing of the coated particulate material and a reaction material for causing a reaction between the colorant feed and the polymer feed for creating an encapsulated particulate material.
Abstract:
A hybrid apparatus for applying coating to product is disclosed. In at least one embodiment, the apparatus includes a first vibratory frame assembly in communication with a first pan assembly, wherein the first pan assembly receives a product and a coating and applies the coating to the products using vibratory motion. The apparatus further includes, a drum assembly that having a drum, wherein products and coating are received from the first pan assembly and the coating is further applied to the products using a rotational motion of the drum, and a second vibratory frame assembly in communication with a second pan assembly, the second pan assembly having at least one of a separator tray assembly and an alignment tray assembly, wherein the second pan assembly receives the products and coating from the rotating drum and at least one of separates and aligns the products using vibratory motion.
Abstract:
The rotating drum 2 rotates around an axial line A that is inclined to the horizontal at a present angle θ. Process gas flows in the rotating a drum 2 from an air vent 7a of an air duct 7 through an air inlet 5 at one end of the rotating drum 2, passes through a layer of granules 11, and flows out into an air outlet duct 8 through an air vent 21a of a first disc plate 21 and a connection hole 22a in a second disc plate 22.