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Torsion Springs(Inner Dia. ID:Ø2)

Torsion springs are a type of wire spring. They are springs that receive a twisting moment around the coil. The shape of torsion spring ends is determined by the mounting location and method, enabling selection of 90-, 135- or 180-degree arm angles. Unlike compression springs and tension springs, torsion springs can reduce the design space and labor. Torsion springs can be classified primarily into close-wound and pitch-wound types. When selecting a torsion spring, it's important to carefully check the free length, average coil diameter and spring constant to select the right model for the usage environment or application. But when selecting models, note that different manufacturers define free length differently.
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    Torsion Springs, Arm Angle (90°/135°/180°)

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    MiSUMi Economy

    Torsion Springs, Arm Angle (90°/135°/180°)

    MiSUMi Economy

    MISUMI

    · Economy Torsion Springs Series -Arm angles of 90°/135°/180°.· The series includes C-UA90R, C-UA90L, C-UA135R, C-UA135L, C-UA180R and C-UA180R.· Material: Stainless Steel (SUS304-WPB)· Arm Angle: 90°/135°/180°.· Type of Arm Angle: Right Winding and Left Winding· Inner Diameter: 2, 3, 4, 5 and 6· Number of coil n: 3, 4 and 5.· Torsion springs are used in various applications such as automotive, aerospace, industrial machinery, and electrical devices.· Torsion springs are designed to generate torque or rotational force when twisted or subjected to angular deflection.

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    2D / 3D
    Free Angle θ Inner Dia. ID Helix Angle φd2(deg) Wire Dia. d(Ø) Number of Winding n Spring Constant k(N・mm/deg) Material
    90° Right Winding Coil / 135° Right Winding Coil / 180° Right Winding Coil / 90° Left Winding Coil / 135°Left Winding Coil / 180°Left Winding Coil Ø2 - 0.3 ~ 0.4 5 - Steel
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    Torsion Springs
    Torsion Springs
    Torsion Springs

    Torsion Springs

    MISUMI

    · Torsion Springs Arm angles of 90°/135°/180°.· The series includes UA90R, UA90L, UA135R, UA135L, UA180R and UA180R.· Material: Stainless Steel (SUS304-WPB)· Arm Angle: 90°/135°/180°.· Type of Arm Angle: Right Winding and Left Winding· Inner Diameter: 2, 3, 4, 5 and 6· Number of coil n: 2, 3, 4 and 5.· Torsion springs are used in various applications such as automotive, aerospace, industrial machinery, and electrical devices.· Torsion springs are designed to generate torque or rotational force when twisted or subjected to angular deflection.

    CAD :
    2D / 3D
    Free Angle θ Inner Dia. ID Helix Angle φd2(deg) Wire Dia. d(Ø) Number of Winding n Spring Constant k(N・mm/deg) Material
    90° Right Winding Coil / 135° Right Winding Coil / 180° Right Winding Coil / 90° Left Winding Coil / 135°Left Winding Coil / 180°Left Winding Coil Ø2 36 ~ 61 0.2 ~ 0.4 2 / 3 / 4 / 5 0.0088 ~ 0.0363 Stainless Steel
    Days to Ship: Số ngày giao hàng: 11 Day(s) or more
    day to ship 11 Day(s) or more
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Product SeriesDòng sản phẩm
CADCAD
From
Days to ShipSố ngày giao hàng
SpecificationsĐặc điểm kĩ thuật
Free Angle θ
Inner Dia. ID
Helix Angle φd2(deg)
Wire Dia. d(Ø)
Number of Winding n
Spring Constant k(N・mm/deg)
Material

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    Torsion Springs, Arm Angle (90°/135°/180°)

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

        Torsion Springs
          Torsion Springs
          Torsion Springs
          BrandNhãn hiệu

          MISUMI

          MiSUMi Economy

          MISUMI

          Product SeriesDòng sản phẩm

          Torsion Springs, Arm Angle (90°/135°/180°)

          Torsion Springs

          CADCAD
          • 2D / 3D
          • 2D / 3D
          From
          Days to ShipSố ngày giao hàng Same day or more 11 Day(s) or more
          SpecificationsĐặc điểm kĩ thuật
              Free Angle θ90° Right Winding Coil / 135° Right Winding Coil / 180° Right Winding Coil / 90° Left Winding Coil / 135°Left Winding Coil / 180°Left Winding Coil90° Right Winding Coil / 135° Right Winding Coil / 180° Right Winding Coil / 90° Left Winding Coil / 135°Left Winding Coil / 180°Left Winding Coil
              Inner Dia. IDØ2Ø2
              Helix Angle φd2(deg)-36 ~ 61
              Wire Dia. d(Ø)0.3 ~ 0.40.2 ~ 0.4
              Number of Winding n52 / 3 / 4 / 5
              Spring Constant k(N・mm/deg)-0.0088 ~ 0.0363
              MaterialSteelStainless Steel

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              Application example related to this categoryVí dụ ứng dụng liên quan đến danh mục này

              Related Categories to Torsion SpringsDanh mục liên quan đến Torsion Springs

              FAQ Torsion Springs

              Question: How do I know what torsion spring I need for my work?
              Answer: To determine the appropriate torsion spring for your work, you need to consider factors such as required torque, angular deflection, wire diameter, coil diameter, and leg length. Calculating these parameters using spring design equations or consulting with a mechanical engineer can help identify the specific torsion spring that meets your application's requirements.
              Question: How do you calculate the torque of a torsion spring?
              Answer: To calculate the torque of a torsion spring, you need to know the spring constant (k) and the angular deflection (θ). The torque (M) can be calculated using the formula: M = k * θ. The spring constant is determined by the material properties and spring geometry, while the angular deflection is the amount of twist applied to the spring.
              Question: What factors affect the lifespan of a torsion spring?
              Answer: The lifespan of a torsion spring is influenced by several factors. These include the quality of the spring material, the design and manufacturing process, the applied load and stress levels, the frequency and magnitude of cycles, environmental conditions (such as temperature and corrosive agents), proper installation and maintenance practices, and the avoidance of excessive overloading or fatigue conditions.
              Question: How do you install and maintain a torsion spring?
              Answer: To install a torsion spring, mount it securely on the shaft, ensuring proper alignment and balance. Apply appropriate lubrication to minimize friction and wear. Maintain the spring by regularly inspecting for signs of fatigue, wear, or damage. Replace worn or damaged springs promptly. Keep the spring clean and free from debris. Follow manufacturer guidelines and recommended maintenance practices for optimal performance and longevity.