Double-Threaded Silicon Carbide Rods for Industrial
High-Temperature Furnaces
As the core heating element for high-temperature working conditions
of 1200℃-1600℃, these rods are suited for mainstream processes such as ceramic sintering, metal heat treatment, and glass melting.
Crafted from high-purity silicon carbide via precision sintering,
the product’s core advantages stem from its double-threaded
structure: compared with traditional straight rods, it offers a 30%
larger heating area, higher heat exchange efficiency, and an accelerated heating rate of 15%-20%, enabling rapid attainment of process temperatures and
shortening production cycles. Meanwhile, its uniform heat
distribution reduces local temperature differences in the furnace
chamber, enhancing product yield.
Boasting stable and reliable performance, the rods can operate continuously for long periods in oxidizing
atmospheres. The cold ends feature a low-resistance, anti-oxidation coating
that reduces energy consumption while extending service life to
over 1.2 times that of traditional heating elements. With excellent
resistance to rapid temperature changes, they can withstand sudden
process temperature fluctuations without failure, minimizing
downtime and maintenance costs.
Installation is convenient: the double-threaded structure is compatible with most industrial
high-temperature furnace interfaces, allowing direct fixation
without equipment modification and lowering replacement thresholds.
Both standard and customized specifications are available to match various high-temperature furnace models,
making them widely applicable in metallurgy, building materials,
electronics, and new materials industries.
Each rod undergoes rigorous dimensional inspection and performance
testing. With its stable, efficient, and durable characteristics, it helps
reduce costs and improve efficiency in high-temperature production,
serving as a reliable choice for industrial heating applications.