Made of high-alumina chamotte containing 65 to 72% Aluminum oxide. Sintered high-alumina ceramics' high thermal conductivity allows obtaining the most uniform temperature across the radiation surface, providing uniform and high-quality radiant heating. These elements are often used in thermoforming machines, drying chambers, infrared tunnels and panels, heating and drying equipment, and various commercial heaters. Estimated service life at least 8,000 - 10,000 hours of non-stop operation. Maximun temperature 750°C. Comply with all international standards and are interchangeable with all known brands (FTE/FSR/FSF/HTC/HTE).
Germany
The CS400 Kiln Shell Imaging System relies on the MP Linescanner, which provides continuous, accurate and real-time thermal images and temperature measurements for moving processes. With the ability to scan up to 1024 data points in a single scan, the MP Linescanner can provide a complete picture of even the highest speed manufacturing processes, ensuring an accurate temperature reading. Key Features: Multiple kiln support Added ThermoView TV40 Thermal Imager support (Additional hardware required) Added Pyrometer support – including Mi3 and Endurance units – for Burn Zone and Shadow monitoring (additional hardware required) Analog and Digital I/O (Wago) “One brick” resolution hot spot detection, even in shadowed areas CS400 System Software The CS400 Kiln Shell Imaging System features specially designed software, which relies on standard Ethernet ports. Because the graphic user interface is designed specifically for kiln applications
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Aramid fibers are suitable for very demanding applications and they are widely used in the firefighting industry (manufacturing of firefighters’ clothing) because of their flame retardant properties. Aramid is not only fireproof, the aramid fibers also have a high tensile strength, which is why they are often used for bulletproof vests (military and police) or for armoring selected emergency vehicles. A special property of aramid nonwovens is its good thermal insulation. The laid heating wire creates a very high heat output, which is insulated by the nonwoven. Aramid has a high heat resistance, which is an enormous advantage since laying the heating wire generates a very high heat output which is further enhanced by the insulation provided by the aramid nonwoven carrier. In addition, the nonwoven is either not combustible or flame retardant and can be used for a temperature ranges of up to 200°C.
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CSN® Explosionproof flange heaters are used for heating of various gases and liquids in hazardous areas. The devices are manufactured in various designs. As heating elements cartridge type or tubular heating elements are used depending on applications. Further information about our CSN® ExFlange heaters
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Metallic heaters made from ML or tungsten are made for very high temperatures between 1000 °C (1 832°F) and 2 800 °C (5 072 °F). Plansee supplies heating elements for all types of high-temperature furnace in the form of ribbon, sheets, rods, twisted wire, wire bundles and wire mesh heaters. Plansee's materials belong to the group of refractory metals. Molybdenum and tungsten are the two materials that are most commonly used in high-temperature thermal processes. Thanks to their high melting points, they do not soften even at very high temperatures. Refractory metals have a lower coefficient of thermal expansion and better thermal conductivity than steel.
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