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ADVANCED Flexible Shaft Couplings(Allowable Torque Range:50.01~100.00)

ADVANCED offers products Flexible Shaft Couplings specified by Allowable Torque Range 50.01~100.00 from Automation Components product category. There are a total of 3 items. Search and select detailed specifications of parts for your machine with free CAD downloads. ADVANCED products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.

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    Oldham Coupling FJ/FJU

    Oldham Coupling FJ/FJU

    ADVANCED

    · A combination of aluminum hub and polyacetal slider
    · The high-precision slider groove provides zero backlash in light press fitting and also supports servo systems
    · Sliders can also be manufactured from chemical-resistant or heat-resistant grade materials

    Type Shaft Bore Dia. (machined) D1(Ø) Shaft Bore Dia. (machined) D2(Ø) Outer Dia. A(Ø) Overall Length W(mm) Application Allowable Torque Range(N•m) Features Allowable Misalignment Max. Rotational Speed Range(r/min) Body Material Allowable Torque(N•m) Allowable Angular Misalignment(deg) Allowable Lateral Misalignment(mm) Product Category Allowable Lateral Misalignment Range(mm) Max. Rotational Speed(r/min) Buffer Material Disc Material Bellows Material Cleaning Method Characteristics/Applications Environmentally friendly
    Oldham 22 ~ 38 22 ~ 38 69 77 Standard / Servo Motor 50.01~100.00 Clean Environment ~ Vibration Insulation Angular Misalignment / Eccentricity 4001~10000 Aluminum 72 ~ 80 1.5 1.2 Coupling Main Body 1.1~3.0 6000 ~ 8000 Polyacetal - - - - -
    From: ₹ 6,870.51
    Days to Ship: 9 Day(s) or more
    day to ship 9 Day(s) or more
  • You can add up to 6 items per a category to the compare list.

    Cushion Type Coupling QJ/QJU

    Cushion Type Coupling QJ/QJU

    ADVANCED

    · Zero Backlash
    · Absorbing Vibration and Noise
    · The cushion has a pipe shape, high flexibility and long life
    · A cushioning material with either high or low torsional rigidity selectable.
    · Hub uses an aluminum die cast material for low moment of inertia

    Type Shaft Bore Dia. (machined) D1(Ø) Shaft Bore Dia. (machined) D2(Ø) Outer Dia. A(Ø) Overall Length W(mm) Application Allowable Torque Range(N•m) Features Allowable Misalignment Max. Rotational Speed Range(r/min) Body Material Allowable Torque(N•m) Allowable Angular Misalignment(deg) Allowable Lateral Misalignment(mm) Product Category Allowable Lateral Misalignment Range(mm) Max. Rotational Speed(r/min) Buffer Material Disc Material Bellows Material Cleaning Method Characteristics/Applications Environmentally friendly
    Jaw 15 ~ 40 15 ~ 40 55 ~ 95 60 ~ 100 Standard 50.01~100.00 High Torsional Rigidity ~ Vibration Insulation Angular Misalignment / Eccentricity 2001~4000 ~ 4001~10000 Aluminum 60 ~ 100 1 ~ 2 0.1 ~ 0.4 Coupling Main Body 0.02~0.2 ~ 0.21~0.40 3000 ~ 6000 Polyurethane / Nylon - - - - -
    From: ₹ 5,256.55
    Days to Ship: 10 Day(s) or more
    day to ship 10 Day(s) or more
  • You can add up to 6 items per a category to the compare list.

    Oldham Coupling FSPJ/FSPJU

    Oldham Coupling FSPJ/FSPJU

    ADVANCED

    · The Strongest Oldham
    · Combination of stainless steel hubs and aluminum-bronze slider: All-metal Oldham coupling
    · The minimum clearance of the slider part is filled with ultra-high viscosity grease for preventing seizure and achieving zero backlash
    · Damage will not occur even with an impact torque that is 4 times greater than the allowable torque (FSPJU)

    Type Shaft Bore Dia. (machined) D1(Ø) Shaft Bore Dia. (machined) D2(Ø) Outer Dia. A(Ø) Overall Length W(mm) Application Allowable Torque Range(N•m) Features Allowable Misalignment Max. Rotational Speed Range(r/min) Body Material Allowable Torque(N•m) Allowable Angular Misalignment(deg) Allowable Lateral Misalignment(mm) Product Category Allowable Lateral Misalignment Range(mm) Max. Rotational Speed(r/min) Buffer Material Disc Material Bellows Material Cleaning Method Characteristics/Applications Environmentally friendly
    Oldham 15 ~ 28 15 ~ 28 45 ~ 55 43.6 ~ 57 Standard / Servo Motor 50.01~100.00 High Torsional Rigidity Angular Misalignment / Eccentricity / Axial Misalignment 4001~10000 Stainless Steel 60 ~ 90 0.2 ~ 0.5 1 ~ 1.2 Coupling Main Body 0.41~1.0 ~ 1.1~3.0 5000 ~ 10000 Aluminum Bronze - - - - -
    From: ₹ 16,183.33
    Days to Ship: 15 Day(s) or more
    day to ship 15 Day(s) or more
Brand
Product Series
From
Days to Ship
Type
Shaft Bore Dia. (machined) D1(Ø)
Shaft Bore Dia. (machined) D2(Ø)
Outer Dia. A(Ø)
Overall Length W(mm)
Application
Allowable Torque Range(N•m)
Features
Allowable Misalignment
Max. Rotational Speed Range(r/min)
Body Material
Allowable Torque(N•m)
Allowable Angular Misalignment(deg)
Allowable Lateral Misalignment(mm)
Product Category
Allowable Lateral Misalignment Range(mm)
Max. Rotational Speed(r/min)
Buffer Material
Disc Material
Bellows Material
Cleaning Method
Characteristics/Applications
Environmentally friendly

You can add up to 6 items per a category to the compare list.

Oldham Coupling FJ/FJU

    You can add up to 6 items per a category to the compare list.

    Cushion Type Coupling QJ/QJU

      You can add up to 6 items per a category to the compare list.

      Oldham Coupling FSPJ/FSPJU
        Brand

        ADVANCED

        ADVANCED

        ADVANCED

        Product Series

        Oldham Coupling FJ/FJU

        Cushion Type Coupling QJ/QJU

        Oldham Coupling FSPJ/FSPJU

        From

        ₹ 6,870.51-

        ₹ 5,256.55-

        ₹ 16,183.33-

        Days to Ship 9 Day(s) or more 10 Day(s) or more 15 Day(s) or more
        TypeOldhamJawOldham
        Shaft Bore Dia. (machined) D1(Ø)22 ~ 3815 ~ 4015 ~ 28
        Shaft Bore Dia. (machined) D2(Ø)22 ~ 3815 ~ 4015 ~ 28
        Outer Dia. A(Ø)6955 ~ 9545 ~ 55
        Overall Length W(mm)7760 ~ 10043.6 ~ 57
        ApplicationStandard / Servo MotorStandardStandard / Servo Motor
        Allowable Torque Range(N•m)50.01~100.0050.01~100.0050.01~100.00
        FeaturesClean Environment ~ Vibration InsulationHigh Torsional Rigidity ~ Vibration InsulationHigh Torsional Rigidity
        Allowable MisalignmentAngular Misalignment / EccentricityAngular Misalignment / EccentricityAngular Misalignment / Eccentricity / Axial Misalignment
        Max. Rotational Speed Range(r/min)4001~100002001~4000 ~ 4001~100004001~10000
        Body MaterialAluminumAluminumStainless Steel
        Allowable Torque(N•m)72 ~ 8060 ~ 10060 ~ 90
        Allowable Angular Misalignment(deg)1.51 ~ 20.2 ~ 0.5
        Allowable Lateral Misalignment(mm)1.20.1 ~ 0.41 ~ 1.2
        Product CategoryCoupling Main BodyCoupling Main BodyCoupling Main Body
        Allowable Lateral Misalignment Range(mm)1.1~3.00.02~0.2 ~ 0.21~0.400.41~1.0 ~ 1.1~3.0
        Max. Rotational Speed(r/min)6000 ~ 80003000 ~ 60005000 ~ 10000
        Buffer MaterialPolyacetalPolyurethane / NylonAluminum Bronze
        Disc Material---
        Bellows Material---
        Cleaning Method---
        Characteristics/Applications---
        Environmentally friendly---

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        Related Categories to Flexible Shaft Couplings

        FAQ Flexible Shaft Couplings

        Question: What are the different types of flexible Shaft Couplings?
        Answer: There are several types of flexible Shaft Couplings, including beam, bellows, jaw, Oldham, disc, diaphragm, and gear couplings. Each type has unique features and benefits that make them suitable for different applications and environments. Flexible Shaft Couplings are used to connect two shafts and allow for misalignment while transmitting torque between them.
        Question: What factors should be considered when selecting a flexible Shaft Couplings?
        Answer: The factor for selecting a flexible coupling, there are several factors that should be considered, including the required torque capacity, misalignment capability, operating speed, and environmental factors such as temperature and humidity. Other considerations include the required degree of axial and radial stiffness, the space available for the coupling, and the type of equipment being connected. It is also important to consider the potential for wear and tear, maintenance requirements, and the cost of the coupling.
        Question: How is a flexible Shaft Couplings installed and maintained?
        Answer: Shaft Couplings are installed by aligning the shafts and tightening the screws or bolts. Maintenance involves regular inspections for signs of wear, damage, or misalignment. Lubrication is important to prevent excessive wear and reduce friction. Cleaning and tightening of bolts and screws are also necessary to ensure proper operation.
        Question: What is the difference between a flexible coupling and a rigid coupling?
        Answer: A flexible coupling allows for some misalignment between two connected shafts while transmitting torque, while a rigid coupling does not allow for any misalignment. Flexible Shaft Couplings are designed to absorb shock and vibration, which can help reduce wear and tear on connected equipment. Rigid couplings, on the other hand, are used in applications where precise alignment between shafts is critical, such as in high-speed rotating equipment or precision machinery.
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