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Air Jet Mill | Low-Temperature Grinding System for Heat-Sensitive Materials - Guanjiang Manufacturer


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    Air jet mill system for low-temperature micronization of heat-sensitive powders - Guanjiang
    Air jet mill system for low-temperature micronization of heat-sensitive powders - Guanjiang

    Air jet mill system for low-temperature micronization of heat-sensitive powders - Guanjiang

    Air jet mill system for low-temperature micronization of heat-sensitive powders - Guanjiang

    Air Jet Mill | Low-Temperature Grinding System for Heat-Sensitive Materials

    Guanjiang‘s air jet mill provides low-temperature grinding (room temperature) for heat-sensitive materials. No media contamination, low wear, and 15-25% energy savings. For pharmaceuticals, chemicals, and food powders.
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    Products Description

    Need to grind heat-sensitive materials to micron sizes without thermal degradation?        

    Guanjiang's Air Jet Mill uses high-velocity compressed gas to create particle-on-particle impact — achieving 0.5-30μm fineness while maintaining room temperature operation. No grinding media means zero contamination, and the self-impact mechanism reduces equipment wear. With 15-25% energy savings compared to traditional mills and advanced automatic controls, it's the ideal solution for pharmaceuticals, chemicals, food powders, and heat-sensitive APIs.

    Key Features

    Low-Temperature Grinding

    Materials are ground under gas expansion, maintaining room temperature in the grinding chamber. Ideal for heat-sensitive materials like APIs, vitamins, and spices.

    No Contamination

    No additional grinding media introduced during process. Particle-on-particle impact eliminates media wear contamination — critical for high-purity pharmaceuticals and food.

    Low Equipment Wear

    Main grinding mechanism relies on mutual particle impact, not mechanical impact against chamber walls. Significantly reduces inner wall wear and maintenance costs.

    15-25% Energy Savings

    Higher energy efficiency compared to traditional grinding equipment. Saves 15-25% energy while achieving finer particle sizes (0.5-30μm).

    Easy to Control

    Modern jet mills are equipped with advanced automatic control systems — simple operation and real-time display of operating status. PLC integration available.

    Technical Specifications (GJQF Series)

    ModelGJQF-10GJQF-100GJQF-200GJQF-380GJQF-500GJQF-1000
    Capacity (kg/h)0.5-105-10050-20080-380200-500400-1000
    Gas Consumption (m³/min)236102040
    Pressure (MPa)0.70 - 0.90
    Particle Size (mesh)60 - 325
    Grinding Fineness (μm)0.5-300.5-300.5-300-300.5-300.5-30
    Motor Power (kW)20406095118376

    System Components

    Key Components:

    • 1. Materials feeder
    • 2. Classifier motor
    • 3. Classifier wheel
    • 4. Outlet / Container

    Process Components:

    • 5. Collection container
    • 6. Air distributor
    • 7. Jet nozzle
    • 8. Support structure

    Control Options:

    • PLC control with HMI
    • Real-time status display
    • Classifier speed control
    • Air pressure regulation

    Air Jet Mill FAQs

    Q1: How does the jet mill achieve low-temperature grinding?

    A: The grinding process uses gas expansion — as compressed gas expands through the jet nozzles, it absorbs heat (Joule-Thomson effect). This counteracts the frictional heat generated, keeping the grinding chamber at room temperature or below. No external cooling required for most heat-sensitive materials.

    Q2: What is the difference between jet milling and mechanical milling?

    A: Jet milling uses particle-on-particle impact with no moving parts in the grinding zone — produces finer particles (0.5-30μm), no media contamination, and low heat. Mechanical milling (hammer mills, pin mills) uses high-speed rotors and screens — generates more heat, higher wear, and potential metal contamination. Jet milling is superior for heat-sensitive and high-purity applications.

    Q3: What gases can be used for jet milling?

    A: Compressed air is most common for general applications. For oxygen-sensitive materials, we use compressed nitrogen. For explosive materials, inert gases like argon or CO₂ can be specified. The system is designed for gas recirculation to minimize operating costs.

    Q4: How is particle size controlled?

    A: The integrated classifier wheel separates fine particles from coarse ones. By adjusting the classifier speed, you can achieve different cut points (typically 0.5-30μm). Coarse particles are returned to the grinding chamber for further size reduction — ensuring narrow particle size distribution.

    Q5: What materials can be processed with this jet mill?

    A: Typical applications include: Pharmaceutical APIs (micronization for bioavailability), chemicals (pigments, dyes, agrochemicals), food (spices, fine powders), minerals (talc, mica), and battery materials (cathode/anode powders). Hardness up to Mohs 5 is recommended. Contact us for material testing.

    Need a low-temperature, contamination-free jet mill for your fine grinding application?

    Request a Quote →    Download Datasheet (PDF)

    * Please provide your target fineness (μm), capacity (kg/h), material type, and any gas preference (air/nitrogen) for a fast, accurate quotation.

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