Silicon Carbide Electric Heating Elements Spiral Sic Heater U Shaped For Furnace 1400°C

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August 25, 2025
Category Connection: Heating Elements
Brief: Need quick answers about practical use? This video highlights the essentials. Watch as we demonstrate the high-temperature performance of U-Shape Silicon Carbide (SiC) heating elements, showcasing their robust construction and reliable operation in industrial furnaces up to 1500°C. You'll see the different available types and learn how their optimized design ensures longevity and efficiency in demanding applications.
Related Product Features:
  • Engineered for extreme heat environments with a maximum operating temperature of 1500°C.
  • Made from high-purity green SiC powder for top-quality performance and durability.
  • Manufactured using a 500T press machine for a high-density, uniform structure that extends service life.
  • Features an optimized resistance gradient to prevent terminal overheating and protect furnace integrity.
  • Includes an advanced protective coating on the heating zone for enhanced oxidation resistance.
  • Available in customizable designs, including U-Shape, W-Shape, and various spiral types.
  • Offers multiple standard geometries like Straight Rod, Dumbbell, and Single/Double Spiral for diverse applications.
  • Customizable to specific dimensions, resistance requirements, and center distances for optimal fit.
Faqs:
  • What is the maximum operating temperature of these SiC heating elements?
    These U-Shape Silicon Carbide heating elements are designed for extreme heat environments and can operate at temperatures up to 1500°C, making them ideal for high-temperature industrial furnaces.
  • What types of SiC heating elements are available?
    We offer a range of types including Straight Rod (GD), Dumbbell (GC), U-Shape (U), W-Shape (W), Single Spiral (SD), and Double Spiral (SG), with full customization options to suit various industrial applications.
  • What information is needed when ordering these heating elements?
    To ensure optimal performance, please provide the Element Type, Outer Diameter (OD), Heating Zone Length (HZ), Cooling Zone Length (CZ), Overall Length (OL), any specific Resistance Requirements, and Center Distance for U-type or W-type elements.
  • How does the design prevent overheating at the terminals?
    The elements feature an optimized resistance gradient between the heating and cooling zones, which effectively prevents overheating at the terminals, thereby protecting the furnace structure and enhancing element lifespan.
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