logo

ZHENGZHOU SONGYU HIGH TEMPERATURE TECHNOLOGY CO.,LTD william@songyuht.com 86-0371-6289-6370

ZHENGZHOU SONGYU HIGH TEMPERATURE TECHNOLOGY CO.,LTD Hồ sơ công ty
các sản phẩm
Nhà > các sản phẩm > Yếu tố làm nóng cacbua silic > High-efficiency double-threaded silicon carbide rod for high-temperature furnaces

High-efficiency double-threaded silicon carbide rod for high-temperature furnaces

Chi tiết sản phẩm

Nguồn gốc: Trung Quốc

Hàng hiệu: SONGYU

Số mô hình: Ren đôi

Điều khoản thanh toán và vận chuyển

Số lượng đặt hàng tối thiểu: 10-100 chiếc

Giá bán: có thể đàm phán

chi tiết đóng gói: hộp gỗ

Thời gian giao hàng: 15 ngày làm việc

Điều khoản thanh toán: T/T, Công Đoàn Phương Tây

Khả năng cung cấp: 10-1000 chiếc

Nhận được giá tốt nhất
Làm nổi bật:
Mô tả sản phẩm

This product is made of high-purity recrystallized silicon carbide, formed into a double-threaded structure through sophisticated and advanced processes. Compared with traditional straight rods or single-threaded products, its effective heating area increases by more than 30% in the same installation space, with more uniform heat release. This not only shortens the furnace heating time but also reduces equipment operating energy consumption.


The product features high mechanical strength and excellent thermal shock resistance, enabling it to withstand frequent rapid heating and cooling conditions and extend service life under high-temperature operations. With a maximum working temperature of 1600°C, it is suitable for various industrial kilns, laboratory electric furnaces, and atmosphere protection furnaces, especially scenarios requiring rapid heating and precise temperature control.


Widely applicable to new material sintering, ceramic glazing, glass melting, metallurgical processing, and other processes, this product provides stable and reliable heat source support, helping users improve production efficiency and control overall costs. With stable performance and strong adaptability, it is a practical choice for high-temperature heating scenarios.