Abstract:
A centrifugal processor includes an elongated inlet and outlet in fluid communication with a rotor housing having an eccentric bowl. A rotor having fan blades and adapted to hold flat media is rotatably disposed within the rotor housing. An intake gate is pivotably mounted to the rotor housing to swing about the rotor into a closed position during a rinse mode and into an open position during a drying mode. The gate has a wedge that is designed to almost contact the rotor when the gate is in the open position for drying. The geometry of the elongated inlet, outlet, and eccentric bowl, in combination with the design of the rotor and that of the intake gate, work together to create a cross flow fan having a flow path across the flat media and one that exposes the flat media to large volumes of incoming air only once.
Abstract:
A compact ultraviolet dryer adapted to be conveniently carried by a user and to enable a user to easily and quickly repair a spinning rod is disclosed. The compact ultraviolet dryer includes a chamber housing, made from material which does not allow ultraviolet rays to be transmitted therethrough, and shaped into a box form, the chamber housing including side walls having retaining cuts for holding a spinning rod, a cover plate openably attached to a front face of the chamber housing, an ultraviolet lamp provided in the chamber housing to irradiate ultraviolet rays to the spinning rod received in the chamber housing, and a ballast for supplying the ultraviolet lamp with stable current.
Abstract:
The present invention relates to a grain roasting apparatus in which a blower is installed at one side of a body having a support at a lower portion of the same, a heated air flow path is installed in the blower, a heater is provided, a peel collecting port and a discharge port are installed at the other side of the body, rotation portions are installed in an upper portion of the heated air flow path and an upper portion of the discharging port, respectively, a rotary drum is installed in the rotation portions, rotation members are rotated together with the rotary drum, the rotary drum is inserted into the rotation members, the rotary is installed eccentrically about a rotation center, support portions are installed opposite each other at both ends of the same, a heated air flow port having a net and connected with the heated air flow path is protruded from one side of the support, the heated air inlet is inserted into an insertion portion of the rotary port, respectively, and is supported therein, a ring gear is installed in an outer portion of the rotation member, and the ring gear is engaged with a worm gear of the driving motor installed in a lower portion of the body for thereby roasting the grains of coffee and grains in a state that the rotary drum is in a twisting state.
Abstract:
An apparatus and method for drying and de-wrinkling an article of clothing; including a housing having an upper compartment, a lower compartment, and a dividing wall separating the compartments. An exhaust hole is disposed through one side of the upper compartment of the housing, and an intake hole and an outflow hole are disposed through the dividing wall. A mechanical assembly is disposed within the upper compartment and includes a fan, heater, thermostat and humidity sensor. An exhaust fan is in fluid communication with the exhaust hole and is adapted to control a flow of air through the exhaust hole in the side of the housing. A control system is disposed within the upper compartment and accepts an input from a user, a temperature input, and a humidity input, and controls the heater, the fan and the exhaust fan based upon the temperature input and the humidity input.
Abstract:
A method and an appliance are disclosed for the non-thermal drying of articles, in particular motor vehicle bodies, freshly painted with a water-based paint. The articles to be dried are subjected to dry air by forced convection in a drying tunnel and the moisture-laden air is dried in an air drying device by condensation to a specific target value of absolute residual moisture. So that fluctuations in the incidence of moisture can be leveled out with a low degree of inertia, with the high condensation performance remaining unchanged, only a fraction of the circulated air which is adapted in size, as required, is dried in the air drying device to a residual moisture markedly below the circulating-air target moisture, and the remaining untreated part of the circulated air is led back into the drier housing after being intermixed with the dried part-air stream.
Abstract:
A metal plate (52) is connected to a wall (10). Plate (42) includes a vent opening (48) that communicates with vent ducting (18) with the wall (10). A magnetic sheet body (52) is connected to a vent tube (60) located at the back of a clothes dryer (64). The clothes dryer (64) is moved towards the wall (10) and the magretic sheet body (52) is moved against the metal plate (42). A vent opening (54) in the magnetic sheet body (52) is put into alignment with the vent opening (48) in the metal plate (42). The magretic sheet body (52) provides a seal between the two vent openings (54, 48).
Abstract:
A gas flow regulating surface portion 37a is the farthest from the front surface of a wafer W in the middle between a peripheral portion of the wafer W and a center portion of a sealing vessel. The gas flow regulating portion 37a protrudes to the front surface of the wafer W in the vicinity of a center portion that surrounds an exhausting opening 35a. In other words, a convex portion 37c is formed in a peripheral area of the gas flow regulating surface portion 37a that surrounds the exhausting opening 35a. Since treatment gas flows along the front surface of the gas flow regulating portion 37a, treatment gas equally contacts the wafer W in the radius direction of the wafer W. Thus, a film with equal thickness is formed.
Abstract:
The invention is a convective airflow dryer system for granular, crushed, and sliced fruit and other crops and materials of greater than one quarter inch in average diameter that includes a distributed airflow container. The container may be removable and stackable and has multiple interior airflow plates extending from one surface of said container to an opposing surface, connecting an inlet plenum to an outlet plenum. The airflow plates are parallel and uniformly spaced so as to form material holding bays and are configured to freely admit, and transfer air through the bays and out of the container. The dryer system and the containers are configured for directing the full airflow of the dryer system through the container or set of interconnected containers.
Abstract:
A garment drying apparatus (200) is disclosed having a frame (201), a porous net 204, slip proof pads (205,206), an adjustable width garment hanger (202) and a hook (203) to support said adjustable width garment hanger; the frame (201) rests at an acute angle from the floor to provide iron free drying effect.
Abstract:
An apparatus for performing contaminant sensitive processing on a substrate. A substrate load chamber receives the substrate from an ambient contaminant laden environment, and isolates the substrate from the ambient contaminant laden environment. The substrate load chamber further forms a first environment of intermediate cleanliness around the substrate. A substrate pass through chamber receives the substrate from the substrate load chamber, and isolates the substrate from the intermediate cleanliness of the first environment of the substrate load chamber. The substrate pass through chamber further forms a second environment of high cleanliness around the substrate. A substrate transfer chamber receives the substrate from the substrate pass through chamber, and isolates the substrate from the high cleanliness of the second environment of the substrate pass through chamber. The substrate transfer chamber maintains a third environment of high cleanliness around the substrate, and transfers the substrate into more than one substrate processing chambers, where the substrate is selectively transferred into and out of the more than one substrate processing chambers without leaving the high cleanliness of the third environment. The substrate transfer chamber also selectively passes the substrate to the substrate pass through chamber when the substrate pass through chamber has formed the high cleanliness of the second environment. The substrate pass through chamber also receives the substrate from the substrate transfer chamber, and selectively passes the substrate to the substrate load chamber when the substrate load chamber has formed the intermediate cleanliness of the first environment. The substrate load chamber receives the substrate from the substrate pass through chamber, and selectively passes the substrate out of the substrate load chamber and into the ambient contaminant laden environment when the substrate load chamber is not open to the substrate pass through chamber.