Abstract:
Die vorliegende Erfindung betrifft zunächst eine heizfähige Einrichtung. Weiterhin betrifft die Erfindung eine Heizeinrichtung sowie Verfahren zum Herstellen einer heizfähigen Einrichtung sowie einer Heizeinrichtung. Um eine flexible heizfähige Einrichtung bereitzustellen, die einfach herstellbar ist und insbesondere eine definierte Heizleistung aufweist, ist erfindungsgemäß vorgesehen, dass die heizbare Einrichtung ein Trägermateriai aufweist, welches von einer heizbaren Komponente durchsetzt, insbesondere mit dieser durchtränkt, ist.
Abstract:
According to the present invention, a heating cable has a complex configuration in which an optical cable sensor is coupled to the heating cable to achieve the function of a sensor for sensing both a target object and the temperature of the heating cable with the result that the heating cable may serve as an active heat supply source capable of adjusting the output of the heating cable in accordance with temperature variations. To this end, an intelligent heating cable provided with a smart function according to the present invention is a heating cable for a heat tracing system, the cable comprising: a heating element; and an insulating outer layer formed on an outer surface of the heating element, characterized by having a structure in which an optical cable serving as a temperature sensor is coupled to the heating cable.
Abstract:
Es wird ein Heizmodul (1) angegeben, das ein Gehäuse (3) mit einer Öffnung (31) und ein im Gehäuse (3) angeordnetes PTC-Keramik-Heizelement (2) umfasst. Das PTC-Keramik-Heizelement (2) weist eine der Öffnung (31) zugewandte Innenseite (21), eine der Öffnung (31) abgewandte Außenseite (22) und zwei die Innen- und Außenseite (21, 22) verbindende Stirnseiten (23, 24) auf. Die Innenseite (21) des PTC-Keramik-Heizelements (2) ist zumindest teilweise an die Öffnung (31) angepasst. Weiterhin wird eine Verdampfungsvorrichtung (10) mit einem Heizmodul (1) angegeben.
Abstract:
Systems and methods for PTC materials are described. In one example, a PTC constant wattage heater provides two or more self regulating heating modes. The PTC constant wattage heater may provide self regulating temperature and current control at lower expense.
Abstract:
Systems and methods for PTC materials are described. In one example, a PTC constant wattage heater provides two or more self regulating heating modes. The PTC constant wattage heater may provide self regulating temperature and current control at lower expense.
Abstract:
The present invention provides an oven range. In the present invention, a method for coating an oxidation protective layer for a carbon/carbon composite, comprising: dissolving a polymer resin in a solvent to form a solution of polymer resin; dispersing ceramic powders in the solution of polymer resin to form a mixed solution; coating the mixed solution on a carbon fiber; performing a first heat-treatment to treat the carbon fiber by heat in air; and performing a second heat-treatment to treat the carbon fiber by heat under an inert gas.
Abstract:
The invention regards a de-icing/anti-icing system comprising at least two conductive structures (3', 3") embedded in an article (2), which includes an outer surface (5) being designed as an aerodynamic surface, at least one of the conductive structures (3'f 3") is arranged adjacent the outer surface (5), a control unit (39) is adapted to control the energy supply to the conductive structures (3', 3") for generating heat to the outer surface (5) One conductive structure (31) comprises a first conductive nano structure (19'), the conductive structure's (3') conductive property differs from the conductive property of the other conductive structure (3") comprising a second conductive nano structure (19").