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High Quality Rapid Tooling, Rapid Injection Moldings and Rapid Parts

Rapid Injection Mold

High Quality Rapid Tooling, Rapid Injection Moldings and Rapid Parts

At Rapid Tooling, we specialized in Rapid Prototype Manufacturing Services, to customers across the world. Our CNC prototype & Injection Moulding services, providing everything from prototype to production manufacturing solutions.

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    Application

    Nylon materials is commonly used in Rapid Tooling progress. We make things for you. Rapid Tooling parts delivered fast. Rapid tooling that delivers more parts than you are used to. First class prototypes that look like production parts. Fully functional parts that act like production parts. Flexible project solutions that fit your specific Power Adapter Housing project requirements. Our MOQ starts at 1 for prototypes and typically goes up to 100,000 parts (plastic, metal, composites), anywhere in this range is what we would consider low-volume manufacturing.

    Parameters

    Parameters name Value
    Part Name Mechanical Equipment Orange Component
    Material Nylon
    Color Orange
    Size Length: 150mm X Width: 100mm X Thickness: 50mm
    Surface finish Textured
    Tolerance +/-0.05mm
    Features Lightweight, heat-resistant, excellent transparency, chemical resistance, good mechanical properties
    Purpose Used for mechanical equipment components, providing structural support and functionality
    Manufacturing processes Manufactured using rapid tooling technology, with injection molding processing, production cycle of 3 days

    PROPERTIES AND ADVANTAGES

    Rapid tooling reduces product development time so you can start making a return on your investment fast. Lower prototyping and production costs also increase your overall ROI because once you begin selling your product, you can quickly recoup any upfront expenses you incurred.
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    DISADVANTAGES

    Although there are many advantages of rapid tooling, it’s not a perfect solution for every project. The main disadvantage of rapid tooling is that the prototypes or molded parts it produces may not be as precise as those created using conventional tooling methods (depending on the methodology used).