Abstract:
The device for surface coating of small parts is comprised essentially of a device (10) with sequentially arranged processing stations, namely a dip station (11), a drip station (12), a centrifuge station (13) and an emptying station (14). The drums (1) filled with small parts are conveyed from station to station via a longitudinal conveyor (27). Each station has its individual drive, with which the drums (1) can be brought into rotation. The drums are comprised of half shells (2) and (3), which are axially slideable relative to each other, which are opened for filling and closed during processing.
Abstract:
A machine for carrying out a process of treating small parts with a liquid treatment medium, especially for coating the small parts or for chemically deburring the small parts, has a closable container which includes a drum to receive the parts. The drum is rotatingly drivable and adjustable between an inclined axis position and a vertical axis position. The process includes filling the drum with small parts and evacuating the closed container. Filling the container with a treatment medium, with the internal pressure set to a value in excess of the steam pressure of the most liquid component of the treatment medium. Inclining the drum to its inclined axis position and rotatingly driving the drum at a low speed. Ventilating the container and setting the drum to its vertical position.
Abstract:
A stain machine including a rotatable drum enclosing a plurality of perforated splint-receiving chambers. The drum is selectively moveable from a soak, or stain-engaging position to a higher spin position, located above the level of the stain in a stain tank. The drum rotates at a first slower speed in its soak position and at a second higher speed in its spin position.
Abstract:
Apparatus for coating pharmaceutical tablets in which a drum having a perforated periphery is provided with an adjustable insert which divides the drum into an inactive zone and a coating zone, thus permitting a relatively small quantity of tablets to be coated under conditions equivalent to those used for coating a bed of particles in a completely loaded drum.
Abstract:
A coating system includes a plurality of liquid immersion workstations positioned along an arcuate path, the plurality of liquid immersion workstations defining a single complete coating process for a sequence of objects. A plurality of curing workstations are configured to independently receive objects of the sequence of objects exiting the plurality of liquid immersion workstations. An articulated robotic arm has a base positioned inside the arcuate path in top plan view such that the robotic arm is operable to carry each object of the sequence of objects through each of the plurality of liquid immersion workstations and to exactly one of the plurality of curing workstations. An articulated robotic hand is provided at a distal end of the robotic arm and configured to grasp and hold each of the objects and to oscillate the object while submerged in each of the plurality of liquid immersion workstations.
Abstract:
Automated cell staining systems and methods are disclosed herein. In particular, the staining systems disclosed herein provide low-volume, automated bench top staining systems for staining biological samples contained on a cytological slide.
Abstract:
A method of manufacturing core-shell particles comprises: filling a buffer into a rotor, which is extended in a longitudinal direction, and is accommodated so as to be spaced apart from an inner wall side of a non-rotational hollow cylinder extended in a longitudinal direction and then discharging air to outside; rotating the rotor after terminating the filling; forming a core-shell precursor by supplying raw materials from a first storage and a second storage, which comprise a material forming a core, into an interior of the cylinder in which the rotor rotates; supplying a shell material for coating the core to the interior of the cylinder in which a core-type precursor is formed; separating a liquid comprising core-shell particles formed through the supplying into a solid and a liquid; and drying the core-shell particles obtained through the separating.
Abstract:
A device for manufacturing hot-mix coated materials includes an oven (1) having 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 a heater (10) defining a combustion section (5) inside the enclosure (2). The enclosure (2) starting with the combustion section (5) and continuing with a drying section (6), and then with a mixing section (7). The device is further provided with a bypass outlet (11) and with an external mixer (12) that is connected to the 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:
A method for phlegmatising an explosive in an aqueous suspension including a dispersed phlegmatising agent. The phlegmatising agent is deposited on a surface of the explosive at low temperature utilizing opposite electric charges of the phlegmatising agent and the explosive. Also a device and a phlegmatised explosive.