Abstract:
An air conditioning apparatus according to an aspect of the present invention includes a main body including a suction part through which air is suctioned and a discharge part through which the air suctioned through the suction part is discharged, a fan disposed in the main body to allow the air to flow, an electric charge device coupled to the main body outside the main body to charge dust in the air, and a filter device disposed between the suction part and the discharge part in the main body to collect the charged dust particles.
Abstract:
A chip collector body, 40, is provided including a coupled base, 46, and elongate member, 50. The base, 46, and elongate member, 50, have a substantially hollow interior, 52, extending from a first end to a second end, so as to form a shell. A collector element, 70, is positioned within the hollow interior, 52. The collector element, 70, has a magnetic element, 76, positioned adjacent the second end and a flange, 78, positioned near the first end. The collector element, 70, is configured to move between a first position and a second position to selectively demagnetize the chip collector body, 40. An axial biasing member, 64, is positioned between the flange, 78, of the collector element, 70, and a rigid surface, The axial biasing member, 64, is configured to biais the collector element, 70, into the first position.
Abstract:
The present invention relates to a method for mining or extraction of materials from a substrate, comprising earth, rock or ore, the method comprising steps for: -charging the materials present in the substrate, preferably by applying a triboelectric charge, -applying an electrostatic force to the charged materials for inducing transport of the charged materials through the substrate, -preferably repeating the above steps in an alternating manner.
Abstract:
A separator device for removing particles from suspension in a liquid comprises: a housing (12), having first (19) and second (40) chambers with apertures (98) for ingress and egress of liquid into the first chamber (19); means (100) for setting up a swirl of liquid within the first chamber (19); apertures enabling flow of liquid between the first chamber (19) and the second chamber (40); means for setting up a swirl of liquid within the second chamber (40),
the swirl in the second chamber (40) being in substantially the opposite direction to the swirl in the first chamber, and there being no substantial flow in the second chamber (40) which is in the same direction as the swirl in the first chamber (19).
Abstract:
Die Erfindung betriff eine Vorrichtung zum Konditionieren von Wasser zum Befüllen von wasserführenden Kreislaufsystemen mit wenigstens einem Zuleitungsanschluss (11) für das Befüllwasser, und einem Ableitungsanschluss (27) für das konditionierte Kreislaufwasser, einem Element (14) zur Einstellung der Leitfähigkeit des konditionierten Kreislaufwassers, und einem Steuerelement (28), dadurch gekennzeichnet, dass die Vorrichtung (10) so ausgeführt ist, dass ein Teilvolumenstrom des eingeleiteten Befüllwassers am Element (14) zur Einstellung der Leitfähigkeit vorbeiführbar ist, und mit dem in dem Element (14) zur Einstellung der Leitfähigkeit konditionierten Wasser verschneidbar ist, und dass der Teilvolumenstrom einstellbar ist.
Abstract:
A separator (10) comprises a housing (12) and a separator chamber (24) contained within the housing, an inlet (26) and outlet (28) to the separator chamber and a dividing member (34) for substantially dividing the separator chamber into a first chamber (30) and a second chamber (32). A flow path (38) is provided between the first and second chambers for allowing flow to circulate between the first and second chambers, and guide means (56) for creating opposing flow paths in the second chamber (32) for slowing flow through the second chamber (32).
Abstract:
A separator (10) comprises a housing (12) and a separator chamber (14) contained within the housing (12), an inlet (16) and outlet (18) to the separator chamber and a dividing member (20) for substantially dividing the separator chamber (14) into a first chamber (22) and a second chamber (24). A flow path is provided between the first and second chambers (22), (24) for allowing flow to circulate between the first and second chambers, and obstruction means (74) is provided in the second chamber (24) for slowing flow through the second chamber (24).
Abstract:
There is provided a flotage trapping device using electrostatic field. The flotage trapping device comprises a body including a power source portion and a boosting portion for boosting, fed from the power source portion, and a collector portion including a collector to which the plus and/or minus high voltage obtained from the boosting portion is applied. The collector portion is formed as a collector cassette by unitizing the collector portion in the form of cassette. A fixing mechanism is provided between the body and the collector cassette for connecting and disconnecting the body and the collector cassette through one-touch operation. The electric connecters for high voltage is provided between the body and the collector cassette for electrically connecting and disconnecting the body and the collector cassette through one-touch operation. As a result the collector cassette is detachably mounted on the body.
Abstract:
A magnetic filtration apparatus to separate ferrous contaminant material from a working fluid. The separation apparatus has a housing that is divided into a plurality of filtration chambers, each chamber having an elongate magnetic core to generate a magnetic field to entrap the contaminant material as it flows through the filter body. A fluid communication passageway is provided between the first and second chambers and is positioned such that the fluid exposure to the magnetic fields is maximised.