Tianyi - Superalloy Metal Ceramic Vapor Chamber
Material: Superalloy Metal Ceramic
Dimensions: Customizable
Description
Tianyi - Superalloy Metal Ceramic Heat Distribution Plate
Material: Superalloy Metal Ceramic
Dimensions: Customizable
The heat distribution plate is a key component in the glass hot bending and pressing production process, mainly used to evenly transfer heat to the mold plate under high-temperature conditions, ensuring that the glass evenly distributes the temperature of the heating plate on the forming mold during the hot bending process, and providing the pressure required for hot bending forming, thereby ensuring the quality of the hot-bent glass.

Application Scenarios: The formed glass is mainly used in the 3C industry and the automotive industry, as 3D curved screens and back covers for mobile phones, front and back cover plates for laptops, smartwatches, Vision Pro and other intelligent wearable devices, as well as AR-HUD reflectors and other high-end products. These products have extremely high requirements for the shape precision, surface quality, and optical performance of the glass.
Tianyi's superalloy metal ceramic heat distribution plate is an important tool to help glass manufacturers solve these issues.

Advantages Description
Comparison with similar products of different materials:
1. Flatness deformation is less than 0.007mm
2. High oxidation resistance—no coating required.
3. Service life is ≥12 months.
The superalloy metal ceramic material plate is your best choice.
The precision of temperature and pressure control during the hot bending process determines the final shape and surface quality of the product.

Tianyi Superalloy Metal Ceramic Plate is a newly developed material specifically for high-temperature forming operations in 3D glass bending machines, aspherical precision press machines, and freeform (HUD) glass precision press machines.
Compared to traditional tungsten steel plates, Tianyi plates have higher hardness and excellent high-temperature oxidation resistance. Under high-temperature pressing conditions, they have minimal temperature deviation, more uniform heat conduction, and only slight deformation (<0.007mm), significantly extending their service life. They are particularly suitable for processing microcrystalline glass at 900 degrees during hot bending operations.



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