Accouplement de paquet de double disque/accouplement flexible à grande vitesse pour des pompes

Type of Coupling
September 26, 2022
Brief: Découvrez le couplage à membrane et disque à arbre flexible à structure à double disque haute performance modèle JMIIJ, conçu pour les turbines et les applications à grande vitesse. Cet accouplement à membrane flexible à double disque compense le désalignement axial, radial et angulaire, garantissant une transmission de puissance précise avec un rendement allant jusqu'à 99,86 %. Idéal pour la transmission de puissance à moyenne et haute vitesse, il offre durabilité, flexibilité et installation facile sans lubrification.
Related Product Features:
  • Double disc structure for enhanced flexibility and misalignment compensation.
  • High transmission efficiency up to 99.86%, ideal for precision mechanical transmission.
  • Compensates for axial, radial, and angular displacement without rotation difference.
  • Lightweight, compact design with simple assembly and dismantling.
  • Operates in high-temperature environments (-80°C to +300°C) and under shock/vibration conditions.
  • No lubrication required, reducing maintenance needs.
  • Available in various materials including stainless steel, aluminum, and plastic.
  • Customizable surface finishes and precise CNC machining for optimal performance.
Faqs:
  • What types of misalignment can the JMIIJ Flexible Diaphragm Coupling compensate for?
    The JMIIJ Flexible Diaphragm Coupling compensates for axial, radial, and angular misalignment, making it versatile for various industrial applications.
  • What is the transmission efficiency of the JMIIJ Double Disc Flexible Diaphragm Coupling?
    The transmission efficiency of the JMIIJ Double Disc Flexible Diaphragm Coupling is up to 99.86%, ensuring minimal energy loss during operation.
  • Does the JMIIJ Flexible Diaphragm Coupling require lubrication?
    No, the JMIIJ Flexible Diaphragm Coupling operates without the need for lubrication, reducing maintenance requirements and enhancing reliability.