• High Concerntrated Color Masterbatches Compounding Making Machine With Four Flights Screw

    High Concerntrated Color Masterbatches Compounding Making Machine With Four Flights Screw

    Description For Products Application For Co-kneader Output For Reference Layout for HFFR working process Output For Reference Model SKW-85 SKW-105 SKW-125 Co-kneader Screw Diameter 85 105 125 L/D Ratio 15-22 15-22 15-22 Max.Motor Power 600 600 600 Main Motor Power 110-160 200-280 350-450 Second-stage Screw Diameter 150 180 220 Second-stage Screw L/D Ratio 7 7 7 Max.Screw Speed 60 60 60 Second-stage Motor Power 55 75 110 Reference Output(KG) SKW-85 SKW-105 SKW-125 ...
  • Four Flights Co-Kneader Compound Extruder for HFFR or XLPE

    Four Flights Co-Kneader Compound Extruder for HFFR or XLPE

    XINDA develops latest new technology with 4 flights. The XINDA SKW Kneader each spiral is broken by four gaps per revolution to locate the kneading flights. Four rows of kneading pins, which are individually inserted in the barrel per 90 degree, are intermeshed with these flights. With the same L/D ratio, it achieves more mixing, but less friction heat. The reciprocating wobble-box synchronizes the shaft rotation and oscillation so that each revolution of the screw is accompanied by one full stroke forward and backwards. This ensures optimal distributive and dispersive mixing with minimal energy consumption.
  • SKW 4-flight co-kneader

    SKW 4-flight co-kneader

    Four-flight Compounding System
    Based on 3-flgiht compounding design, XINDA develops latest new technology with 4 flights. The XINDA SKW Kneader each spiral is broken by four gaps per revolution to locate the kneading flights. Four rows of kneading pins, which are individually inserted in the barrel per 90 degree, are intermeshed with these flights. With the same L/D ratio, it achieves more mixing, but less friction heat. The reciprocating wobble-box synchronizes the shaft rotation and oscillation so that each revolution of the screw is accompanied by one full stroke forward and backwards. This ensures optimal distributive and dispersive mixing with minimal energy consumption.

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