SiC Heating Element
SGR Type SiC Heating Elements 1600°C 500-3000W Double Threaded Silicon Carbide Rod
SGR Type SiC heating elements offer high durability and precise temperature control up to 1600°C. Ideal for metallurgy, ceramics, glass, and semiconductor furnaces. Customizable resistance and power options available for batch or continuous processes.
G Type SiC Heating Elements 12mm Diameter 1500W 220V Silicon Carbide Rod
High-purity silicon carbide heating element rated for 1450°C with 1500W power. Features oxidation resistance, fast heating, and long service life up to 2000 hours. Ideal for industrial furnaces with automated temperature control.
G Type SiC Heating Elements 220V-480V Silicon Carbide Rods for Industrial Furnaces
G Type SiC heating elements offer high temperature resistance up to 1450°C, oxidation and corrosion resistance, and long service life up to 2000 hours. Custom shapes available. Ideal for industrial and laboratory furnaces.
G Type SiC Heating Elements 1600°C 3.5kW High Temperature Silicon Carbide Rod
G Type SiC heating elements offer high temperature resistance up to 1600°C, oxidation and corrosion resistance, and long lifespan up to 2000 hours. Ideal for industrial furnaces with automated temperature control and customizable diameters from 9mm to 20mm.
SGR Type SiC Heating Elements 8mm Diameter 220V for High Temperature Furnace
SGR Type SiC heating elements offer superior durability and high heating efficiency for demanding high-temperature applications. Double threaded design ensures longer service life and stable performance. Custom options available. Ideal for industrial furnaces.
SGR Type SiC Heating Elements 8mm-54mm Diameter 1600°C Max Temperature
SGR Type silicon carbide heating elements offer durable, high-efficiency performance for industrial heating up to 1600°C. Available in diameters 8mm-54mm and lengths 300mm-3000mm with customizable resistance and voltage options.
SGR Type Double Threaded SiC Heating Elements 1600°C 220V 380V for Industrial Furnaces
SGR Type double threaded SiC heating elements offer high heating efficiency, long service life up to 2000 hours at 1450°C, and enhanced heat dissipation. Ideal for high temperature and heat treatment furnaces. Available in multiple diameters and voltages with custom options.
G Type SiC Heating Elements 220V-480V 1.2Ω-10Ω for Industrial Furnaces
G Type SiC heating elements offer high thermal conductivity (120-200W/m*K) and load capacity up to 50W/cm². Custom shapes available. Ideal for metallurgical, chemical, and industrial furnace applications. Durable, efficient, and customizable.
G Type SiC Heating Elements 1800C 220V-480V for Industrial Furnaces
G Type SiC heating elements offer high temperature resistance up to 1800°C, excellent thermal conductivity, and corrosion resistance. Ideal for industrial and laboratory furnaces. Custom shapes available. Durable and efficient.
G Type SiC Heating Elements 12mm Diameter 220V 1500W Tubular Silicon Carbide Rod
High-purity green SiC heating element sintered at 2200°C. Offers high temperature resistance, oxidation and corrosion resistance, fast temperature rise, and long service life. Custom options available.
G Type SiC Heating Elements 220V-480V 30-50W/cm² for Industrial Furnaces
G Type SiC heating elements offer high thermal conductivity (120-200W/m*K) and durability up to 50W/cm². Ideal for glass bottle industry and material basin heating. Custom shapes and resistance options available. Certifiable for industrial furnaces.
M Type SiC Heating Element 12mm Diameter 300mm Length for High Temperature Furnace
M-type silicon carbide heating element with 12mm diameter and 300mm length. Offers 9 W/cm² watt density and 120 W/m·K thermal conductivity. Custom sizes and power ratings available for laboratory or industrial furnaces.
M Type SiC Heating Element 300-3000mm 1600°C Silicon Carbide Rod
M Type SiC heating element offers high temperature resistance up to 1600°C and corrosion resistance. Designed for reliable operation with thermal shock resistance and compliance with international safety standards. Custom lengths from 300 to 3000mm available.
M Type SiC Heating Element 1400°C 600-800 MPa Compressive Strength
M-type silicon carbide rod for easy installation and replacement. Standard dimensions ensure compatibility. Lightweight design saves time and labor. Tensile strength 150-200 MPa, flexural strength 400-500 MPa, purity ≥98.5%.
M Type SiC Heating Element 12mm Diameter 300mm Length for High Temperature Furnace
M Type silicon carbide heating element offers high efficiency and durability for high temperature furnaces. Features 9 W/cm² watt density, 120 W/m*K thermal conductivity, and 1.2 Ω resistance. Energy-saving design reduces operating costs and carbon emissions.
M Type SiC Heating Element 12mm Diameter 300mm Length for High Temperature Furnace
M-type silicon carbide rod with 9 W/cm² watt density and 1.2 Ω resistance. Offers precise temperature control and uniform heat distribution for ceramics, glass, and metal production. Improves product quality and process efficiency.
M Type SiC Heating Element 12mm Diameter 300mm Length for High Temperature Furnace
M Type SiC heating element with U-shaped design for large box furnaces. Operates up to 1450°C, offers 9 W/cm² watt density, and resists oxidation for up to 6000 hours. Ideal for special workpiece sintering.
M Type SiC Heating Element 1400°C 300mm Wide Gate Silicon Carbide Rod
M Type SiC heating element with widened gate over 300mm for narrow spaces. High purity ≥98.5%, max temp 1400°C, flexural strength 400-500 MPa. Ideal for special sintering applications.
M Type SiC Heating Element 300-3000mm 1600°C Silicon Carbide Rod
High-temperature SiC heating element with max 1600°C, corrosion resistance, and long service life. Available in 300-3000mm lengths with threaded or non-threaded terminals. Ideal for industrial furnaces.
SG Type SiC Heating Element 8mm Diameter 300mm Length 220V for High Temperature Furnaces
SG Type silicon carbide heating element with 8mm diameter and 300mm length. Operates up to 1600°C with 600MPa bending strength and 120W/m*K thermal conductivity. Durable oxide layer for oxidation resistance. Ideal for industrial furnaces.