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High-Efficiency Mould for Front Protection Plate from China Suppliers - Factory Designed for Automotive Parts
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High-Efficiency Mould for Front Protection Plate from China Suppliers - Factory Designed for Automotive Parts

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Our advanced front protective plate mold features a precision-engineered upper and lower mold matching system, designed specifically for high-efficiency production. Equipped with a state-of-the-art hot runner gating system and a dual-slant push rod core pulling mechanism, this mold achieves remarkable cycle times of ≤ 30 seconds. Ideal for manufacturers seeking to produce thin-walled plastic components such as automotive A-pillar upper protective plates, our factory in China stands out among top suppliers in the industry. Experience superior quality and efficiency with our innovative molding solutions.

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    Product Overview

    This mold is a large injection mold specifically designed for automotive front protective panels (such as A-pillar upper panels). By optimizing the gating system and core-pulling mechanism, it solves the problems of difficult filling of thin-walled parts and easy breakage of angled ejector pins. Both the mold cavity and core material are made of P20 steel, and the mold base is made of 45# steel. It is equipped with a water cooling system and a hot runner + side gate combination injection system to ensure high precision and durability.

    Product Features

    1

    High-efficiency Production

    ○ Molding cycle ≤ 30 seconds, hot runner system reduces waste and improves efficiency.

    2

    Structural Optimization

    ○ The double-slanted push rod core-pulling mechanism enhances demolding stability and reduces the risk of breakage.

    3

    Durable Material

    ○ P20 steel mold cavity/core material + 45# steel mold base, balancing hardness and impact resistance.

    4

    Precise Cooling

    ○ The water cooling system quickly controls the temperature, ensuring the dimensional stability of the plastic parts.

    5

    Multi-Alveolar Design

    ○ Two alveoli (right tooth + left tooth) to accommodate complex structures and reduce secondary processing.

    Use Cases

    Residences and courtyards

    Residences and Courtyards

    Decoration of gate towers for villas and rural residences to enhance the aesthetics of building entrances.

    Public buildings

    Public Buildings

    Landscape gate towers at the entrances of parks and scenic areas require complex patterns and high durability.

    Project facades

    Project Facades

    Decorative door frames for commercial projects and municipal engineering projects, combining practicality and aesthetics.

    Technical Parameters

    Cavity Material P20 steel
    Core Material P20 steel
    Mould Base Material 45#
    Ejection System Pin ejector and ejection plate
    Number of Cavity 2 cavities (right + left)
    Gate Hot runner system + Normal side gate
    Cooling System By water

    Conclusion

    Contact us now for a quote and experience the difference of working with the best in the business.

    Frequently Asked Questions

    What material is used for the mold cavity and core in this injection mold?
    Both the mold cavity and core are made of P20 steel, which provides an excellent balance of hardness, toughness, and polishability — ideal for high-volume automotive part production.
    What is the molding cycle time for this mold?
    The molding cycle is ≤ 30 seconds, enabled by the integrated hot runner system and water cooling circuit that work together to minimize cycle time and reduce material waste.
    How does the cooling system ensure dimensional stability?
    The mold features a dedicated water cooling system that rapidly and evenly controls mold temperature during each cycle. This prevents warping and shrinkage, ensuring consistent dimensional accuracy of the finished plastic parts.
    What is the gating system configuration for this mold?
    This mold uses a hot runner system combined with a normal side gate. This configuration optimizes material flow into thin-walled sections, reduces runner waste, and allows for better control of injection pressure and fill balance.
    Why is the double-slanted push rod core-pulling mechanism used?
    The double-slanted push rod core-pulling mechanism is specifically engineered to improve demolding stability for complex automotive panel geometries. It distributes ejection force more evenly, significantly reducing the risk of ejector pin breakage and part damage during ejection.
    Can this mold produce both left-hand and right-hand automotive panels simultaneously?
    Yes. The mold features a 2-cavity design — one cavity for the right tooth and one for the left tooth — allowing both mirror-image panel variants to be produced in a single injection cycle, reducing production time and tooling costs.