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High-Quality Aluminum-Plastic Films H-113-GF from China Suppliers and Factory - 25um Nylon, 40um Aluminum Foil, and More
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High-Quality Aluminum-Plastic Films H-113-GF from China Suppliers and Factory - 25um Nylon, 40um Aluminum Foil, and More

H-113-GF: Premium Multi-Layer Composition

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Introducing our H-113-GF, crafted with a robust 25um Nylon layer that ensures durability and flexibility. This product features a high-performance bonding layer, DL3, enhancing adhesion and structural integrity.

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Additionally, the H-113-GF includes a 40um Aluminum foil layer, providing excellent barrier properties and thermal resistance. Another layer of bonding, DL3, guarantees enhanced reliability.

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Finally, the CPP layer, also at 40um, adds versatility and strength, making this product ideal for various applications. As a leading factory and supplier in China, we are committed to delivering high-quality materials that meet your needs.

    H-113-GF
    • Nylon layer 25um
    • Bonding layer Dl3
    • Aluminum foil layer 40um
    • Bonding layer DL3
    • CPP layer 40um
    H-113-GR
    • Nylon layer 25um
    • Bonding layer DL3
    • Aluminum foil layer 40um
    • PP layer 45um
    Item Unit Test Method Typical Values
    Thickness μm GB/T6672-2001 113±5%
    PA/AL Peel Strength N/15mm GB/T 8808-1988 ≥3
    PA/AL Peel Strength N/15mm GB/T 8808-1988 ≥3
    AL/PP Peel Strength N/15mm GB/T 8808-1988 ≥10
    AL/PP Peel Strength N/15mm GB/T 8808-1988 ≥10
    Sealing Strength N/15mm QB/T2358-1998 ≥50
    Sealing Strength N/15mm QB/T2358-1998 ≥50
    Formability (Size 34mmx44mm) mm Q31/0112000414C016-2018-016 ≥6
    Resistance to Electrolyte N/15mm Q31/0112000414C016-2018-016 ≥6

    The H-113-GF Series features a 25-micron nylon layer and a 40-micron aluminum foil layer, tightly bonded by the DL3 adhesive layer, with an outer 40-micron CPP layer. This structure not only provides a robust protective layer against external contamination but also ensures the stability and safety of battery cell.

    The H-113-GR Series enhances the aluminum foil layer with a 45-micron PP layer, offering increased chemical resistance of electrolyte and mechanical strength, making it an ideal choice for battery cell. Whether subjected to complex working conditions (elevated temperature), it maintains the safe of cell

    Our materials undergo rigorous testing, including thickness, peel strength, sealing strength, formability, and resistance to electrolytes, all in compliance with national standards such as GB/T6672-2001, GB/T 8808-1988, and QB/T2358-1998. These test results ensure the reliability and consistency of our products in practical applications.

    We understand that packaging is not just a tool for protecting products but also a bridge for conveying brand value and care. Therefore, we are committed to continuous technological innovation to provide customers with safe, efficient, and environmentally friendly packaging solutions, ensuring health and flavor accompany each other.

    Frequently Asked Questions (FAQ)
    What is the difference in layer structure between H-113-GF and H-113-GR?
    The H-113-GF features a 40-micron CPP outer layer with a DL3 bonding layer, whereas the H-113-GR replaces this with a 45-micron PP layer to enhance chemical and electrolyte resistance.
    What testing standards do these packaging materials comply with?
    Our materials are strictly tested according to national standards, including GB/T6672-2001 for thickness, GB/T 8808-1988 for peel strength, and QB/T2358-1998 for sealing strength.
    How does the H-113-GR series perform under complex working conditions?
    With its integrated 45-micron PP layer, the H-113-GR series provides increased mechanical strength and enhanced chemical resistance to electrolytes, maintaining battery cell safety even under elevated temperatures.
    What is the typical sealing strength and formability of these series?
    Based on our typical test values, the sealing strength is ≥50 N/15mm (tested via QB/T2358-1998), and the formability for a 34mmx44mm size is ≥6 mm.
    How do these materials contribute to battery safety?
    By utilizing structured layers of nylon, aluminum foil, and specialized bonding/PP/CPP layers, they provide a robust barrier that prevents external contamination and ensures electrolyte stability.