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Confirmado
  • Allowable Torque Range(N•m)
  • Shaft Bore Dia. 1 d1 (or d)(mm)
  • O.D. D(mm)
  • Overall Length(mm)
  • Max. Rotational Speed Range(r/min)
  • Allowable Torque(Nm)

    Calculation of the allowable torque (or the Safety Factor, etc.) differs depending on the manufacturer. For details, see the technical data provided by the relevant manufacturer.

  • Max. Rotational Speed(r/min)
  • Allowable Lateral Misalignment(mm)
  • Shaft Bore Shape
  • RDC(mm)
      [8-18/0.1mm unidades]
    • Type
    • CAD
    • Dias de envio estimados
      • Tudo
      • Dentro de 7 dias úteis

    Opções adicionais

    • LK
    • RK

    Servo couplings / hub clamping, feather key / 2 discs: steel / body: aluminium (MCSLC40-16-RDC17)

    Servo couplings / hub clamping, feather key / 2 discs: steel / body: aluminium MCSLC40-16-RDC17

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    Número da peça:

    MCSLC40-16-RDC17
    Limpar
    • Preço unitário (excl. IVA)
      63.23 €
    • Total (excl. IVA)
      63.23 €
      Preço, incluindo IVA: 75.24 €
    • Data de envio
      7 dias úteis
      Data de envio de referência: 01.07.2025
    Quantidade:
    Quantidade disponível para encomendar?30
    Quantidade 
    ?
    1 - 1920 - 3031+
    Preço unitário (excluindo IVA)
    (Preço unitário incluindo IVA)
    63.23 €
    (75.24 €)
    52.91 €
    (62.96 €)
    52.91 €
    (62.96 €)
    Shipping days7 days7 daysQuote

    Desenho de contorno e tabela de especificações

    Back to the Category Shaft Couplings

    Technical Drawing - Claw Couplings

    Couplings/High Torque Disc Clamping (Double Disc):Related Image
    Open the technical drawing in the new window

     

    Available dimensions and tolerances can be found under the tab More information.

    Basic Properties (e.g., material, hardness, coating, tolerance) - Claw Couplings

    TypePartsMaterialSurface TreatmentAccessory
    MCSLC
    MCSLCLK
    MCSLCRK
    MCSLCWK
    Main BodyAluminum DiecastElectroless Nickel PlatingHex Socket Head Cap Screw
    DiscStainless Steel-
    ScrewEN 1.7220 Equiv.Black Oxide

    Further specifications can be found under the tab More information.

    Composition of a Product Code - Claw Couplings

    Part Number-Shaft Bore Dia. d1-Shaft Bore Dia. d2
    MCSLC40-10-15
    MCSLCWK40-10-12

    Alterations - Claw Couplings

    Couplings/High Torque Disc Clamping (Double Disc):Related Image

    General Information - Claw Couplings

    Shaft coupling - compensation coupling - Oldham coupling - slit coupling - chain coupling - disc coupling - bellow coupling - product assortment

     

    Shaft Coupling Selection Details

    - Material: aluminum, aluminum alloy, steel, stainless steel, plastic

    - Coupling buffer material: polyacetal, polyurethane, nylon, aluminum bronze, carbon fibre reinforced polymer (CFRP)

    - Disc material: stainless steel, polyimide, carbon fibre (carbon)

    - Fastening: hub clamping, half shell clamping, threaded pin clamping, clamping sleeve, keyway

    - Design: slit coupling, disc coupling (servo coupling), Oldham coupling, dog coupling, jaw coupling, bellow coupling, metal bellow coupling, elastomer coupling

    - ISO tolerances: H8

    - Shaft diameter: 1 to 45 mm

    - Outer diameter: 6 to 95 mm

    - Length: 8.4 to 100 mm

    - Offset: angle offset, radial offset, axial offset

    Design Overview

     

    Description/Basics

    A shaft coupling, also called a compensating coupling, is generally used for the transmission of torque for mechanical engineering. Flexible shaft couplings (non-rigid) can compensate for lateral, axial and angular offsets (misalignment). Therefore, these are common connecting elements between motors and axles/shafts or even ball screws.

    There are various types of designs, such as the jaw couplings, disc couplings (servo couplings), slit couplings, bellow couplings, Oldham couplings and many others, which are selected depending on the type of misalignment. You can determine which design is the right one for transmission in your application with the Coupling Selection Method available as a PDF.

    When the shaft coupling is professionally installed, the transmission of rotational forces should be slip-free. To do this, the appropriate shaft coupling must be selected depending on the application. Here, it is important to observe the degree of misalignment, the maximum speed of rotation and the permissible torque of the compensation coupling and not to exceed these values during operation. If several misalignments occur at the same time, it is recommended to reduce the maximum value of the specified misalignment by approximately half.

    The most commonly used elastomer coupling is the jaw coupling, which consists of a plastic buffer with damping properties. As a result, shocks and vibrations in a drive system can be damped, which protects adjacent components in the transmission of force. Our product range offers you alternative materials for the elastomers. These include among others aluminum bronze and carbon fibre-reinforced plastic.

    The different shaft connections on the compensation couplings allow various connection variants for assembly. For this purpose, hub clamping, half shell clamping, slot clamping, threaded pin clamping, chip sleeve and keyways are available.
    If a keyway is selected for a MISUMI shaft coupling, it is recommended obtaining the MISUMI machine key, as it is best to combine these.

    A shaft coupling can be used for precise positioning. These are often combined together with slide screws or ball screws. A disc clutch (servo coupling) is suitable for this application, since it has a high torsional rigidity.

    In addition to the standardized diameter of the shaft bore, MISUMI offers the option LDC and RDC, which allows the drill diameter to be adjusted to the shaft end in 0.1 mm increments.

     

    Application Examples - Claw Couplings

    Application example: shaft coupling - disc coupling with servo motor - disc coupling with ball screw drive - shaft clutch with servo motor - shaft clutch with ball screw drive

    Shaft coupling with servo motor and ball screw
    (1) Servo motor, (2) disc coupling (servo coupling), (3) ball screw

    Application example: shaft coupling with encoder - shaft coupling with bearing housing - slit coupling with encoder - slit coupling with bearing housing -

    Slit coupling with encoder
    (1) Bearing with housing, (2) shaft coupling, (3) motor, (4) axles/shafts

    Application example - Performance test stand with shaft coupling - Oldham coupling with engine - test stand with Oldham coupling

    Engine test stand with Oldham coupling
    (1) X-axis positioning stage, (2) performance test station, (3) shaft coupling, (4) brackets, L-shaped

    Application example: synchronous pulley with shaft coupling - shaft coupling with motor and gearbox

    Shaft coupling with motor and gearbox
    (1) Motor, (2) Shaft coupling, (3) Conversion/Reducing gears, (4) Timing pulleys / Idlers

     

    Industrial Applications

    3D printer industry
    Automotive industry
    Pharmaceutical industry
    Packaging industry

    Lista de números de peça

    Número de itens
    Número da peça
    MCSLC40-16-RDC17

    Allowable Torque Range

    (N•m)

    Shaft Bore Dia. 1 d1 (or d)

    (mm)

    Shaft Bore Dia. 2 d2 (or d)

    (mm)

    O.D. D

    (mm)

    Overall Length

    (mm)

    Max. Rotational Speed Range

    (r/min)

    Allowable Torque

    (Nm)

    Max. Rotational Speed

    (r/min)

    Allowable Lateral Misalignment

    (mm)

    Allowable Axial Misalignment

    (mm)

    Moment of Inertia

    (kg・m2)

    Shaft Bore Shape

    LDC

    (mm)

    RDC

    (mm)

    RoHS?Quantidade mínima de encomenda
    5.01 to 10.00
    16
    -
    40
    47
    2001 to 4,000
    9
    3800
    0.2
    +0.5/-0.5
    1.9x10-5
    Standard Holes
    -
    17
    10
    1 unidades
    Preço unitário (excluindo IVA)(Preço unitário incluindo IVA)
    Data de envio standard
    -
    ( - )
    7 dias úteis

    Informações detalhadas

    Informações básicas

    Contorno e especificações

    Back to the Category Shaft Couplings

    Technical Drawing - Claw Couplings

    Couplings/High Torque Disc Clamping (Double Disc):Related Image
    Open the technical drawing in the new window

    Specification Tables - Claw Couplings

    Part Numberd1, d2 Selection (d1≤d2)
    Keywayed Bore Type is selectable for diameter 6 or larger
    d3LAFClamp ScrewUnit Price
    TypeDMTightening Torque (N • m)MCSLCMCSLCLK
    MCSLCRK
    MCSLCWK
    Clamping
    MCSLC
    MCSLCLK
    MCSLCRK
    MCSLCWK
    16*456              6.823.2753M2.51   
    20*4566.3578           8.1267.56.53.7   
    25 *566.35789.5310         10.430.298.54M31.7   
    32     89.5310111214      154112.4106M42.5   
    40     89.5310111214151618   19.54715.513.17.8M57   
    50          1415161820222425531816.79M612   
    When d1, d2 is *, use with load torque 50% or less than shown in the table to prevent slipping.

    ■Characteristic Values
    Part NumberAllowable Torque (N • m)Angular Misalignment (°)Lateral Misalignment (mm)Static Torsional Spring Constant
    (N • m/rad)
    Max. Rotational Speed (r/min)Moment of Inertia (kg • m2)Allowable Axial Misalignment (mm)Compensation FactorMass
    (g)
    TypeD
    MCSLC
    MCSLCLK
    MCSLCRK
    MCSLCWK
    160.920.1545060002.7x10-7±0.25~1010
    201.370055008.0x10-716
    252.895050002.5x10-6±0.330
    325110040006.6x10-6±0.462
    4090.2280038001.9x10-5±0.5110
    5016340035005.0x10-5±0.6220
    The lateral, angular, and axial misalignment values shown are for each occurring individually. When multiple misalignments are occurring simultaneously, the allowable maximum value of each will be reduced to 1/2.
    For the selection criteria and alignment procedures, see >>P.1061 • 1062.

     

    Alterations - Claw Couplings

    Couplings/High Torque Disc Clamping (Double Disc):Related Image

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