Mold Technology

A metal frame mold generally consists of templates and a support structure. The template uses machining processes to form the required mold surface, and it requires high smoothness and good sealing performance. The support structure is usually made by assembling and welding metal profiles, which is used to support and fix the template above it. Its interior has a hollow structure, which has a small heat capacity, facilitating heat conduction. Additionally, it is relatively light in weight, making transportation convenient. This structure is suitable for various processes such as autoclave molding, vacuum bag molding, and vacuum infusion molding.
Mold Technology

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Composite Mold Technology

With reference to mature cases, composite materials must undergo structural design to ensure strength and rigidity while facilitating ease of implementation in the manufacturing process. This approach aims to control costs and meet the requirements of batch production. The configuration of appropriate molds and tooling is a primary means to achieve this.
Metal molds require substantial initial investment, and their use involves high labor and energy consumption during the production process. In contrast, composite material molds can meet the demands of large-scale batch production. Molds replicated from the same core mold exhibit excellent consistency, match the material's expansion properties, allow for cost amortization across a large number of units, and feature high utilization rates. These characteristics are beneficial for optimizing production cycles, improving efficiency, and reducing energy consumption.
Composite Material Mold Technology


