350KG/H Pvc Window Profile Extrusion Line SUS304 For Plastic

PVC Profile Extrusion
July 06, 2024
Category Connection: PVC Profile Extrusion Line
Brief: Curious about how the 350KG/H PVC Window Profile Extrusion Line performs in real-world applications? This video showcases its high-efficiency conical twin-screw extruder, advanced technologies, and versatile production capabilities for various PVC profiles. Watch as we demonstrate its operation and highlight key features designed for international B2B trade.
Related Product Features:
  • Conical twin-screw extruder ensures high output and efficiency for PVC profile production.
  • Advanced technologies include Omron temperature control and frequency speed control for precision.
  • World-famous brand auxiliary equipment like vacuum pumps and hauling motors ensure reliability.
  • Versatile production capabilities allow different products by simply changing molds.
  • Designed for various applications including door panels, window profiles, and PVC wall panels.
  • High production capacity up to 350KG/H, suitable for large-scale manufacturing.
  • Energy-efficient design reduces manufacturing costs significantly.
  • Proven track record with over 200 installations worldwide.
FAQs:
  • What types of PVC profiles can be produced with this extrusion line?
    This line is versatile and can produce various PVC profiles, including door panels, window profiles, technical profiles, and PVC wall panels, by simply changing the molds.
  • What advanced technologies are incorporated into this extrusion line?
    The line features Omron temperature control meters, frequency speed control, and high-quality auxiliary equipment from world-famous brands to ensure precision and reliability.
  • What is the production capacity of this extrusion line?
    The line has a high production capacity of up to 350KG/H, making it suitable for large-scale manufacturing needs.
  • How does this extrusion line reduce manufacturing costs?
    The conical twin-screw extruder enables higher calcium loading, which significantly reduces material costs, while the energy-efficient design lowers operational expenses.