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SAMINI Tension Springs(Hook Opposing Angle:90°)

SAMINI offers products Tension Springs specified by Hook Opposing Angle 90° 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. SAMINI products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.
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    Hanger Spring

    Hanger Spring

    SAMINI

    A tension spring recommended for anti-vibration isolator and buffering of tension and mooring ropes.
    [Features]
    · Used for supporting pipes and heavy cables. There are a total of 20 types of hanger springs.
    · A tension spring recommended for anti-vibration isolator and buffering of tension and mooring ropes.
    [Material]
    · Spring: SWP - A, SUP.
    · Hook: SS400.
    · Washer: S45C.
    · Anti-vibration: SUS304 - WPB.
    [Surface Treatment]
    · Diameter 5 mm or less: zinc plating.
    · Diameter over 5 mm: electroplating (Black).
    · Hook washer: zinc plating.
    [Applications]
    · A tension spring for anti-vibration isolator and buffering of tension and mooring ropes.
    From: ฿ 100.00
    Days to Ship: day to ship 3 Day(s)
    day to ship 3 Day(s)
  • You can add up to 6 items per a category to the compare list.
    Buffer Spring

    Buffer Spring

    SAMINI

    As the coil is a compression spring, it is structurally a tension spring that stops at the maximum structural elongation.
    [Features]
    · Can be used in anti-vibration devices, etc.
    · Total 5 types of tension springs.
    [Material]
    · Spring: SWP - A.
    · Hook: SW - B.
    [Surface Treatment]
    · Electro galvanizing (trivalent chromium product).
    [Applications]
    · Ideal for anti-vibration devices and as buffers.
    From: ฿ 100.00
    Days to Ship: day to ship 3 Day(s)
    day to ship 3 Day(s)
Brand
Product Series
From
Days to Ship
Free Length Lf(mm)
Coil Outer Dia. OD(Ø)
Allowable Load (Configurable Range)(N)
Wire Dia. d(Ø)
Material
Length L2 at Allowable Load(mm)
Hook Opposing Angle
Spring Constant k(N/mm)
Type
Allowable Load P2(N)
Initial Tension Pi(N)
Total Number of Winding N
Max. Deflection(mm)
You can add up to 6 items per a category to the compare list.
Hanger Spring
You can add up to 6 items per a category to the compare list.
Buffer Spring
Brand

SAMINI

SAMINI

Product Series

Hanger Spring

Buffer Spring

From

฿ 100.00

฿ 100.00

Days to Ship 3 Day(s) 3 Day(s)
Free Length Lf(mm)200 ~ 476120 ~ 280
Coil Outer Dia. OD(Ø)50 ~ 10016 ~ 40
Allowable Load (Configurable Range)(N)110.01~60.01~110.00 / 110.01~
Wire Dia. d(Ø)4.5 ~ 131.6 ~ 5
MaterialPiano WirePiano Wire
Length L2 at Allowable Load(mm)--
Hook Opposing Angle90°90°
Spring Constant k(N/mm)3.09 ~ 56.81.57 ~ 7.94
TypeStandard TypeStandard Type
Allowable Load P2(N)506 ~ 476386.3 ~ 816
Initial Tension Pi(N)--
Total Number of Winding N--
Max. Deflection(mm)249 ~ 65755.6 ~ 102

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FAQ Tension Springs

Question: For what purpose are tension springs utilized?
Answer: Tension springs are widely utilized in factory automation for various purposes, including maintaining tension and control in conveyor systems, balancing robotic arms for precise movements, ensuring the proper functioning of safety devices, providing force in assembly and packaging equipment, and enabling secure gripping in industrial tools. These springs play a crucial role in ensuring smooth operation, precise movement, and reliable performance in automated systems and equipment used in factory automation processes.
Question: What distinguishes tension springs from torsion springs?
Answer: Tension springs are designed to resist stretching forces, whereas torsion springs resist twisting or rotational forces. Tension springs extend when a force is applied, while torsion springs exert torque when twisted. Their distinct designs enable them to serve different purposes in different mechanical systems.
Question: How do you measure the strength of a tension spring?
Answer: Measuring the strength of a tension spring involves using a force gauge or a load cell. These tools help in gradually applying weights or loads to the suspended spring while measuring its extension. The spring rate, which represents the spring's strength, is calculated by dividing the change in force by the change in length when the spring is extended.
Question: What are the common materials used to make tension springs?
Answer: Tension springs are commonly made from materials like stainless steel, music wire (high-carbon steel), or various alloys. Stainless steel offers corrosion resistance, while music wire provides high strength. Alloy materials offer specific properties like heat resistance or conductivity, depending on the application requirements.
Question: Can a tension spring be adjusted or calibrated for a specific application?
Answer: Yes, tension springs can be adjusted or calibrated for specific applications. By altering factors like the wire diameter, numbers of turns, or length, the spring's characteristics such as force, tension, or extension can be modified. This allows for customization to match the requirements of a particular application. However, adjusting tension springs should be done carefully, considering the intended function and safety considerations.