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flexible coupling / compact / misalignment correction / flange
CENTAX-SEC-B

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Characteristics

  • Type:

    flexible

  • Other characteristics:

    compact, misalignment correction

  • Installation system:

    flange

  • Torque:

    Max.: 280,000 Nm (206,517.4018 ft.lb)

    Min.: 5,500 Nm (4,056.5918 ft.lb)

  • Rotational speed:

    Max.: 2,900 rpm (18,221.24 rad.min-1)

    Min.: 1,000 rpm (6,283.19 rad.min-1)

Description

A coupling specifically designed for diesel-driven main- and auxiliary drives
A highly flexible, compact design for efficient and fast customized solutions
A coupling for diesel-driven drives should be as uncompromising regarding ease in mounting as it is economical.

The torsionally soft CENTAX-SEC couplings system allows for a constructive maximum of flexibility. The components of the series are perfectly matched. Multiple combinations allow for various features and easy control of any torsional situation. To ensure reliable compensation of axial misalignments optional components are available, emphasizing the CENTAX-SEC couplings as the most multifaceted portfolio in the market.

CENTAX-SEC-B
For drives with high axial misalignments.

Ring element featuring high torsional flexibility and radial capacity, combined with axial pins and bushes. Very reliable design, easy to install. With medium to high torsional flexibility. Available in various Shore hardness, ensuring optimum tuning of the torsional system. Dampens torsional vibrations and shocks and compensates considerable axial and radial misalignments. Effectively ventilated and with high allowable energy loss. Also available as segmented design.

Mounted axially or radially with minimum effort. Extreme easy maintainable and durable.

Why choose CENTAX-SEC couplings?
A highly flexible, compact design for quick installation

Flexible
Rubber elements are available in different degrees of Shore hardness. This enables the torsional flexibility of the couplings to be adapted with utmost variability to the specific application. Torsional vibrations and impacts are reliably dampened.

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