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MISUMI Bearings with Resin(Outer Ring Type:U Groove)

MISUMI offers products Bearings with Resin specified by Outer Ring Type U Groove from Automation Components product category. There are a total of 2 items. Search and select detailed specifications of parts for your machine with free CAD downloads. MISUMI products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.

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    Engineering Plastic Bearing, U Groove Type, Male Thread Type, Hex Socket Male Thread Type

    Engineering Plastic Bearing, U Groove Type, Male Thread Type, Hex Socket Male Thread Type

    MISUMI

    [Features]·The outer ring is a U-groove type. ·The surface material is polyacetal (standard).

    • Volume Discount
    CAD :
    2D / 3D
    Outer Ring Type Outer Dia. D(Ø) Outer Ring Material Mounting Type Width B(mm) Operating/Environmental Requirement Inner Dia. d1(Ø) Bearing Material Tightening Method Screw Nominal M(mm) Allowable Load Range(N) Allowable Load(N) Shaft Dia. d2(Ø)
    U Groove 22 ~ 35 Polyacetal Screw 7 ~ 9 Standard - Steel / Stainless Steel Hex Socket / Cross Slot 6 50.1~100.0 ~ 100.1~200.0 78.4 ~ 176 -
    From: ₹ 921.40
    Days to Ship: 6 Day(s) or more
    day to ship 6 Day(s) or more
  • You can add up to 6 items per a category to the compare list.

    Engineering Plastic Bearing, U Groove Type, No Thread Type

    Engineering Plastic Bearing, U Groove Type, No Thread Type

    MISUMI

    [Features]·The outer ring is a U-groove type. ·The surface material is polyacetal (standard).

    • Volume Discount
    CAD :
    2D / 3D
    Outer Ring Type Outer Dia. D(Ø) Outer Ring Material Mounting Type Width B(mm) Operating/Environmental Requirement Inner Dia. d1(Ø) Bearing Material Tightening Method Screw Nominal M(mm) Allowable Load Range(N) Allowable Load(N) Shaft Dia. d2(Ø)
    U Groove 22 ~ 35 Polyacetal Hole / Screw 7 ~ 9 Standard 6 ~ 8 Steel / Stainless Steel Straight Slot 6 50.1~100.0 ~ 100.1~200.0 78.4 ~ 176 -
    From: ₹ 824.98
    Days to Ship: 6 Day(s) or more
    day to ship 6 Day(s) or more
Brand
Product Series
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Days to Ship
Outer Ring Type
Outer Dia. D(Ø)
Outer Ring Material
Mounting Type
Width B(mm)
Operating/Environmental Requirement
Inner Dia. d1(Ø)
Bearing Material
Tightening Method
Screw Nominal M(mm)
Allowable Load Range(N)
Allowable Load(N)
Shaft Dia. d2(Ø)

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

Engineering Plastic Bearing, U Groove Type, Male Thread Type, Hex Socket Male Thread Type

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

    Engineering Plastic Bearing, U Groove Type, No Thread Type
      Brand

      MISUMI

      MISUMI

      Product Series

      Engineering Plastic Bearing, U Groove Type, Male Thread Type, Hex Socket Male Thread Type

      Engineering Plastic Bearing, U Groove Type, No Thread Type

      CAD
      • 2D / 3D
      • 2D / 3D
      From

      ₹ 921.40-

      ₹ 824.98-

      Days to Ship 6 Day(s) or more 6 Day(s) or more
      Outer Ring TypeU GrooveU Groove
      Outer Dia. D(Ø)22 ~ 3522 ~ 35
      Outer Ring MaterialPolyacetalPolyacetal
      Mounting TypeScrewHole / Screw
      Width B(mm)7 ~ 97 ~ 9
      Operating/Environmental RequirementStandardStandard
      Inner Dia. d1(Ø)-6 ~ 8
      Bearing MaterialSteel / Stainless SteelSteel / Stainless Steel
      Tightening MethodHex Socket / Cross SlotStraight Slot
      Screw Nominal M(mm)66
      Allowable Load Range(N)50.1~100.0 ~ 100.1~200.050.1~100.0 ~ 100.1~200.0
      Allowable Load(N)78.4 ~ 17678.4 ~ 176
      Shaft Dia. d2(Ø)--

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      1. 1

      Related Categories to Bearings with Resin

      FAQ about Conveyor Bearings (Bearings with Resin)

      Question: What is Maximum allowable load for Engineered Plastic Bearings?
      Answer: Please see more details at Maximum allowable load of Ball bearings.
      Question: Can I order single piece for thread part of Engineered Plastic Bearings?
      Answer: Thread part of Engineered Plastic Bearings is not available in single piece.
      Question: What are bearings with resin and how are they used in automation components?
      Answer: Bearings with resin are a type of bearing that incorporates engineered plastics, such as polyacetal (POM) or silicone rubber, in their construction. They are used in automation components for various such as transportation rollers, guide rollers, automatic sorting equipment (sorters), conveyance equipment, chain conveyor equipment and so on
      Question: What types of materials are typically used in the outer rings of resin bearings?
      Answer: The outer rings of resin bearings are typically made from various materials, including

      1. Acetal resin is a high-performance engineering thermoplastic known for its excellent mechanical properties, including high stiffness, low friction, and resistance to wear and tear.
      2. Polyacetal offers similar properties such as high stiffness, low friction, and wear resistance. Polyacetal resin bearings provide similar performance benefits as acetal resin bearings and are commonly used in automation components where these properties are required.
      3. Antistatic polyacetal bearings are suitable for use in automation components where electrostatic discharge (ESD) protection is necessary to prevent damage to sensitive electronic equipment
      Question: How do I determine the right outer diameter and width for a resin bearing?
      Answer: To determine the appropriate outer diameter and width for a resin bearing, several factors must be considered, including the load capacity, speed, and operating conditions of the application. The outer diameter of a resin bearing can be calculated using the formula D = d + 2B,

      D represents the outer diameter,
      d denotes the inner diameter,
      B stands for the width of the bearing.

      The width of the bearing can be determined based on the load capacity and speed of the application, ensuring it is adequate to support the load and prevent excessive wear. Additionally, the width of the bearing can be adjusted according to the operating conditions of the application, such as temperature, humidity, and exposure to chemicals.
      Question: What are the key features to look for in high-quality resin bearings?
      Answer: Bearings with resin require high-quality materials and low friction; moreover, they are known for durability in working environments. Precise manufacturing ensures accurate dimensions and proper fit, crucial for smooth operation. They must handle loads effectively, resist corrosion, and remain stable across temperature variations. Effective sealing guards against contamination, preserving performance integrity. Additionally, they should demand minimal maintenance, reducing downtime and costs.
      Question: How do resin bearings compare to traditional metal bearings in terms of performance?
      Answer: Bearings with resin and traditional metal bearings each offer distinct performance characteristics:

      1. Friction and Wear: Resin bearings typically have lower friction coefficients, reducing energy consumption and heat generation. Metal bearings may excel in wear resistance, especially under high-load or abrasive conditions.
      2. Corrosion Resistance: Resin bearings inherently resist corrosion, making them suitable for moist or chemically exposed environments. Metal bearings might require additional coatings for similar protection.
      3. Weight: Resin bearings are lighter than metal ones, advantageous in weight-sensitive applications. Metal bearings, though heavier, may offer higher load capacities.
      4. Load Capacity: Metal bearings generally have higher load capacities than resin bearings, making them preferable for heavy-duty applications.
      5. Temperature Range: Metal bearings often tolerate wider temperature ranges, while resin bearings may soften or degrade at high temperatures.
      Question: What are the advantages of using urethane or silicone in resin bearings?
      Answer: Using urethane or silicone in resin bearings provides several advantages. These materials offer excellent flexibility, resilience, and vibration absorption, reducing the risk of damage to bearings and components. They also exhibit low friction properties, ensuring smooth movement and minimal wear. Additionally, urethane and silicone contribute to noise reduction during operation. Their resistance to chemicals and stability across a wide temperature range enhance durability and reliability in diverse environments.
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