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China Suppliers Factory - Premium Heat-Shrinkable Bags for Industrial Packaging

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    Core functions and how they work

    1 Create a closed vacuum environment

    Wrap the vacuum bag tightly on a mold lined with reinforced fibers (such as carbon fiber, glass fiber) and resin flow media.

    2 Apply uniform pressure

    Air is pumped by a real air pump to create a negative pressure in the bag (usually -0.95 bar or higher). This negative pressure will generate a uniform pressure up to nearly 1 atmosphere, which will act on the workpiece.

    3 Resin immersion and compaction
    • Compacting fibres: Under vacuum pressure, multiple layers of fiber material are compacted to remove between layers of air to achieve the desired fiber volume content.
    • Drive resin flow: Under negative pressure, the resin is inhaled from the inlet, so that it completely saturates the dry fiber-reinforced material and expels bubbles.
    • Controlling resin content: The retention ratio of the resin is precisely controlled by vacuum pressure.
    4 Form a smooth surface

    The vacuum bag is pressed against the surface of the workpiece, which can reproduce the smoothness of the mold surface (the side of the mold contacting) or form a smooth "bag surface" (the side that contacts the vacuum bag).

    Main components (vacuum bag system)

    A complete industrial vacuum bag system typically includes:

    Vacuum bag film

    The core material. It requires high ductility, high toughness, resistance to puncture and resistance to a certain temperature. Commonly used nylon (PA) film (such as PA6). For high temperature curing (such as epoxy resin above 120 ° C), high temperature polyamide or polyimide films are used.

    Sealing Glue

    A highly viscous, creamy sealing grease used to form airtight seals at the edges of the mold so that vacuum bag membranes can adhere to them.

    De-molding cloth / isolation film

    Laid between the workpiece and the vacuum bag to prevent the resin from sticking to the vacuum bags or the flow network, facilitating de-molding. Usually porous polytetrafluoroethylene (PTFE) or silicone-coated glass cloth.

    The ducting net / ducting cloth

    Laid above the workpiece to provide a fast channel for the resin to flow under the vacuum bag to ensure that the resin is uniformly soaked.

    The airborne felt

    Absorbs excess resin and ensures the opening of the vacuum channel so that air and volatile gases can be effectively pumped out.

    Vacuum piping and joints

    Include spiral pipes, fast joints, vacuum meters, and three-way valves to connect vacuum pumps to inner bags.

    Vacuum pump

    Provides a stable and continuous vacuum source.

    Key features and requirements

    1. Excellent physical performance:
    • High tensile strength and elongation: it can cover complex shapes of molds without rupturing and can withstand volume changes and pressure during curing.
    • Anti-piercing: prevents puncture by mold edges or fibers.
    • Uniform thickness: Typically the thickness is between 50-150 microns to ensure that the pressure is uniform.
    2. Stable chemical and thermal properties:
    • Temperature resistance: must be able to withstand the highest temperature of the resin curing cycle (from room temperature to 180 ° C or higher).
    • Low permeability: Very low permeability for air and volatile organic compounds to maintain a stable vacuum.
    • Chemical resistance: does not react with resins or depolymerizers.
    3. Process suitability:

    It has good fit and can be laid manually or automatically.

    Main application industries

    1. Aerospace
    2. Wind energy
    3. Ship yachts
    4. Automotive industry
    5. Sports equipment
    6. Industrial products

    Frequently Asked Questions

    What is the primary function of a vacuum bag system?
    The primary function is to create a closed vacuum environment, apply uniform atmospheric pressure (up to nearly 1 bar) on the workpiece, compact the fiber layers, and drive resin flow to saturate the dry fibers while removing air bubbles.
    What material is typically used for vacuum bag films?
    Nylon (PA) film, such as PA6, is commonly used for standard processes. For high-temperature curing processes (such as epoxy resin above 120°C), high-temperature polyamide or polyimide films are preferred.
    Why does a vacuum bag film require high elongation and tensile strength?
    High elongation and tensile strength allow the film to tightly cover complex mold shapes without rupturing and to safely withstand volume changes and pressure variations during the resin curing cycle.
    What temperature range can a vacuum bag system withstand?
    A vacuum bag system must be thermally stable enough to withstand temperatures ranging from room temperature up to 180°C or higher, depending on the specific resin curing cycle requirements.
    Which industries heavily rely on vacuum bag molding processes?
    The process is widely used in aerospace (fuselage/wings), wind energy (turbine blades), ship yachts (hulls/decks), automotive (body parts/chassis), sports equipment (bicycle frames/helmets), and industrial storage tanks.

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