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New Update | Oerlikon HRSflow Introduces Advanced End Ring EYEgate HRS
Specialized Plastic Compilation 2025-03-31 11:02:09

Oerlikon HRSflow has launched its new advanced nozzle tip, the EYEgate HRS. This product is specifically designed for the MULTIflow HRS multi-cavity series, aiming to provide optimal gate quality and extended service life. Additionally, this nozzle tip is suitable for a variety of applications and can significantly enhance performance.

The main features of EYEgate HRS:

  • Compact size: Diameter of 3.0 to 3.5 mm, enabling precise injection point positioning.
  • Advanced Needle Guidance System: Offers permanent needle-gate alignment and enhances the durability of the end ring.
  • Wide applicability: Suitable for products weighing up to 20 grams.
  • Strong compatibility: Suitable for Sp and Tp nozzle series.
  • Optimized internal flow channel design: A streamlined tip inner contour improves color change performance, ensures continuous material flow, and avoids stagnation points.
  • Diverse applications: suitable for fields such as beauty, personal care, beverages, household products, and medical applications.
  • Material Compatibility: Compatible with a variety of materials, including PC, PMMA, PP, PE, ABS, MABS, ASA, SMMA, SAN, thermoplastic elastomers, and most sustainable resins.

EYEgate HRS integrates the gate into the end ring, with its unique geometry helping to simplify the processing of the gate area and reduce the time required for mold manufacturing. This will enable mold manufacturers to benefit from a more efficient manufacturing process.

Additionally, the EYEgate HRS features easy maintenance. When the gate wears out, the end ring can be replaced effortlessly without the need to reprocess the cavity insert, thereby reducing maintenance and production downtime and ultimately enhancing user productivity and operational efficiency.

Science Popularization: End rings are key components used in the rotor of electric motors, typically found in squirrel-cage asynchronous motors or induction motors. Their main function is to connect the ends of the conductor bars in the rotor slots, forming a closed current loop. This design helps to induce current during the operation of the motor, thereby generating electromagnetic force that allows the motor to function properly.

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