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Rapid Injection Molding for Low-volume Production

Rapid Injection Mold

Rapid Injection Molding for Low-volume Production

Rapid molding technology facilitates swift iteration and modification of product designs, enabling quick response to market demands and customer feedback, thereby reducing product development cycles.

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    Application

    Acrylonitrile Butadiene Styrene (ABS) materials is commonly used in Rapid Tooling progress. Rapid Tooling offers a unique MUD-Rapid tooling system. A single master machinist is responsible for your tool from start to finish. Using modular mold bases and P20 tool steel, a machinist can produce a finished mold in as little as ten days from the approval of design drawings. These molds use standard plastic resins and fillers to make fully functional finished Consumer Electronics Black Shell parts in relatively limited quantities. 

    Parameters

    Parameters name Value
    Part Name Consumer Electronics Black Shell
    Material Acrylonitrile Butadiene Styrene (ABS)
    Color Black
    Size Length: 120 mm X Width:80mm X Thickness:25mm
    Surface finish Matte
    Features Lightweight, durable, scratch-resistant, chemical resistance
    Purpose Used for housing consumer electronic devices, providing protection and aesthetics
    Manufacturing processes Manufactured using rapid tooling technology, with injection molding processing, production cycle of 1 day

    PROPERTIES AND ADVANTAGES

    There are many advantages to rapid tooling. Finished parts can be used for prototypes, product testing and certification, and as bridge production towards higher volumes. Rapid tooling injection molding also helps our clients to limit their financial exposure to new designs.
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    DISADVANTAGES

    While rapid tooling offers advantages such as quick production, flexibility, and cost-effectiveness, it still presents certain disadvantages in terms of accuracy, durability, cost, and material selection. Therefore, when selecting rapid tooling, it is essential to consider the specific requirements of the product and the production environment to determine the most suitable manufacturing method.