How Does Crimped-On Cartridge Heaters For 3D Glass Bending Machine?

Feb 14, 2025

Crimped-on cartridge heaters are commonly used in 3D glass bending machines to provide efficient, localized heating. These heaters are designed with a crimped connection, which ensures a secure, reliable electrical connection between the heating element and the power supply. The process typically involves the following steps:

 

Heating Functionality: The cartridge heaters generate heat through electrical resistance. They are placed in a cylindrical metal sheath, often made of stainless steel, which provides durability and resistance to high temperatures. The heating element is typically made from a coil or ribbon of resistance wire, surrounded by magnesium oxide (MgO) insulation to provide thermal efficiency and prevent short circuits.

Cartridge Heater Of Packaging Machine

 

Crimped Connection: The crimped-on design refers to the method of connecting the leads (wires) of the cartridge heater to the power source. In this setup, the leads are crimped into metal terminals, which securely hold them in place. This method is ideal for applications where high temperature and mechanical stresses are common, as it prevents the terminals from loosening.

Heating for Glass Bending: In 3D glass bending machines, the cartridge heaters are strategically placed along the mold or bending surface to provide even and consistent heating. This ensures that the glass reaches the optimal temperature for bending, which is critical for achieving the desired shape and finish. The crimped-on cartridge heaters can withstand the rigors of high-temperature environments and ensure consistent performance during long operational hours.

 

20*200mm Extruder Heating Element Cartridge Heater

Benefits:

Durability: The crimped connection ensures a strong, vibration-resistant electrical connection, which is essential for high-demand applications like glass bending.

Precision: The localized heat output from the cartridge heaters allows for precise control over the glass's heating, preventing overheating and ensuring uniformity.

Energy Efficiency: The design ensures that the heat is directed where it is needed most, minimizing energy wastage.

These heaters are a popular choice for glass bending applications because of their durability, reliability, and ability to deliver consistent performance under high temperatures.

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