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High-Efficiency Dewatering Screen for Mineral Processing - China Suppliers & Factory Solutions

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Product Introduction

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The minjie Dewatering Screen is a top-tier solution specifically designed for high-efficiency dewatering in mineral processing applications. As one of the leading China Suppliers in the industry, we engineer our dewatering screens to deliver exceptional performance through a robust structure and advanced high-frequency vibration technology. This ensures rapid and effective water removal from slurry and fine materials.

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Our energy-saving design significantly reduces power consumption while maximizing output, resulting in lower moisture content in the final product. This improvement enhances drying efficiency and minimizes downstream processing costs, making it a sustainable choice for eco-friendly mining and mineral processing practices. Choose minjie, your trusted Factory partner for innovative dewatering solutions, to support your operational needs.

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Built for reliability and low maintenance, the minjie Dewatering Screen is designed for continuous operation with minimal downtime. It boasts excellent resistance to wear and corrosion, making it ideal for use in various industries, including sand, aggregates, coal, and iron ore processing.

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Select minjie for a dewatering solution that enhances productivity, reduces operating costs, and aligns your operations with environmental compliance standards—all while benefiting from the expertise of a premier China Supplier.

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    Product Features

    Premium Material
    The screen material is made of polymer polyurethane (UHMW-PE), which is resistant to impact, low temperature, wear and chemical corrosion.
    Efficient Vibration
    Vibration motor is easy to replace. Rubber spring of base is used for shock absorption, so that its amplitude is small. Slow vibration, the material can be removed cleanly.
    Custom Design
    Can be customized according to output and water content. Side plate of the body has a reinforcing plate, equipped bar in the bottom, and outlet is supported by triangular steel plate, which is thick.
    Robust Construction
    Vibration motor is fixed with high-strength bolts. Bottom affect the life of vibration motor. Sieve plate has a high fixed density and stiffenexs in it.
    Screen structure (preparation, punching, seam), mesh size, processing capacity, material granularity.

    Main Technical Parameters

    Model Screen Area
    (m²)
    Power
    (kW)
    Capacity
    (m/h)
    Feed Particle Size
    (mm)
    Weight
    (t)
    Dimension
    (mm)
    SYTS-0820 1.5 0.75×2 5-10 10 0.8 2300x1000x750
    SYTS-0920 1.8 1.1x2 10-20 10 1.2 2300x1200x750
    SYTS-1020 2.0 1.5x2 20-30 10 1.6 2300x1300x750
    SYTS-1225 3.0 2.2×2 50-80 10 2.1 2300x1500x750
    SYTS-1530 4.5 3.0x2 100-120 10 3.2 2300x1800x750

    Frequently Asked Questions

    What are the benefits of the UHMW-PE screen material?
    The screen is made of polymer polyurethane (UHMW-PE), which provides outstanding resistance to impacts, low temperatures, wear, and chemical corrosion, ensuring a longer service life.
    How does the vibration motor system minimize shock?
    The equipment utilizes a rubber spring base for shock absorption. This design keeps the vibration amplitude small and slow, allowing materials to be cleaned and removed effectively while making the motor easy to replace.
    Can these screening machines be customized?
    Yes, machines can be customized based on your specific output and water content requirements. Customizations include screen structure (preparation, punching, seam), mesh size, processing capacity, and material granularity.
    What structural reinforcements are built into the body?
    The body is designed with a reinforcing plate on the side, an equipped bar at the bottom, and a thick triangular steel plate supporting the outlet to enhance overall durability.
    How is the motor secured to prevent wear?
    The vibration motor is secured using high-strength bolts. A highly dense and stiff sieve plate is used to prevent bottom impact from affecting the operational lifespan of the vibration motor.

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