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Comprehensive Guide To High-Speed Mixers: Models, Usage, And Maintenance

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High-speed mixers are widely used across various industries, including plastics, rubber, dyes, food, and household chemicals, for mixing, blending, drying, and coloring materials. With their versatile applications, high-speed mixers have become indispensable in modern manufacturing processes.



cooling mixer

Cooling Mixer

high speed mixer

High Speed Mixer




Features and Heat Source of High-Speed Mixers



The heat source for a high-speed mixer comes from thermal oil, electric heating, or the frictional heat generated during the mixing process. This ensures the materials are mixed with excellent uniformity and dispersion, making it a highly adaptable and efficient piece of equipment.





High-Speed Mixer Models



The following are commonly available high-speed mixer models, with “A” indicating electric heating and “C” signifying frictional heating:

  • SHR-10A/C High-Speed Mixer

  • SHR-25A/C High-Speed Mixer

  • SHR-50A/C High-Speed Mixer

  • SHR-100A/C High-Speed Mixer

  • SHR-200A/C High-Speed Mixer

  • SHR-300A/C High-Speed Mixer

  • SHR-500A/C High-Speed Mixer

  • SHR-800A/C High-Speed Mixer


For larger capacities requiring higher material friction coefficients, frictional heating is preferred. Models include:

  • SHR-1000C High-Speed Mixer

  • SHR-1300C High-Speed Mixer

  • SHR-2000C High-Speed Mixer


Selecting the right model depends on production requirements, material type, and desired output capacity.





Manufacturing Process of High-Speed Mixers



The design and manufacturing of a high-speed mixer are tailored to meet industry-specific material requirements. Key steps in the production process include:

  1. Mixing Bowl and Discharge Port:

    • Made of aluminum alloy and precision-machined to meet diverse material needs.

    • Customizable stainless steel mixing bowl covers (with double layers) and large-diameter discharge ports are available.

  2. Discharge Port Improvements:

    • Employ spherical seals with O-rings and air-blowing devices to enhance sealing performance, addressing common issues like poor sealing after material discharge.

  3. Main Shaft Seal Structure:

    • Features multi-level framework and air-tight designs, effectively preventing material leakage and extending the lifespan of the main shaft.

  4. Blade Structure:

    • The blade design plays a crucial role in ensuring material uniformity and dispersion.

  5. Automatic Lid Operation:

    • Equipped with pneumatic cylinders for easy lid operation, along with safety limit switches to enhance operational security.


Internal Surface Customization:
Based on material properties, the interior of the high-speed mixer can undergo polishing or sandblasting to prevent material sticking. The angle of the deflector plate also affects the mixing efficiency.


Key Components:
Critical parts, such as motors, electrical components, and bearings, are carefully selected to ensure reliability. Copper-core motors are essential to align the rated power with actual performance.



Manufacturing Process of High-Speed Mixers


Manufacturing Process of High-Speed Mixers


Manufacturing Process of High-Speed Mixers





Usage Guidelines for High-Speed Mixers



Using a high-speed mixer effectively involves the following steps:

  1. Material Loading:

    • Load materials at 70% of the mixer’s volume capacity, based on the model specifications.

  2. Parameter Settings:

    • Set the mixing time and temperature according to the material requirements.

  3. Operation:

    • Press the start button to initiate the automated mixing process.

    • Once mixing is complete, the discharge valve will automatically open, triggered by pre-set conditions like time or temperature.



Maintenance of High-Speed Mixers


Proper maintenance of a high-speed mixer ensures optimal performance and extends its lifespan. Follow these guidelines:

  1. Adherence to Operating Instructions:

    • Operate the equipment according to the manufacturer’s instructions for the best maintenance practices.

  2. Material Loading Precautions:

    • Add materials in the specified sequence and at a steady pace.

  3. Regular Inspection of Key Components:

    • Pay attention to wear-prone parts, such as sealing rings, discharge port seals, main shaft sleeves, transmission belts, and bearings. Replace these components promptly when necessary.

  4. Routine Cleaning and Checks:

    • Periodically inspect and tighten fasteners, check the tension of V-belts, and clean the equipment to remove dirt and dust.



Additional Configurations


High-speed mixers can be paired with cooling mixers to form a mixer unit, depending on operational requirements. Two common configurations include:

  • Vertical mixer units (SRL-Z)

  • Horizontal mixer units (SRL-W)

SRL-Z Series Mixer

SRL-Z

SRL-W Series Mixer

SRL-W



Why Choose a High-Speed Mixer?


With its advanced design, exceptional durability, and reliable performance, a high-speed mixer is an essential tool for industries requiring consistent and high-quality mixing solutions. Whether it’s blending materials for plastics, rubber, or chemicals, the right high-speed mixer ensures efficiency, safety, and uniformity in every batch.

Optimize your production today with the perfect high-speed mixer to meet your business needs!




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