Springs - Torsion

Image Part Number Description / PDF Quantity Rfq
TO-5081RCS

TO-5081RCS

Century Spring Corp.

TOR O=.359, W=.024

650

TO-5127RSCS

TO-5127RSCS

Century Spring Corp.

TOR O=.487, W=.038

266

TO-5013RSCS

TO-5013RSCS

Century Spring Corp.

TOR O=.167, W=.012

104

TO-5207LCS

TO-5207LCS

Century Spring Corp.

TOR O=.937, W=.095

525

TO-5168RSCS

TO-5168RSCS

Century Spring Corp.

TOR O=.657, W=.078

229

TO-5062LCS

TO-5062LCS

Century Spring Corp.

TOR O=.274, W=.020

159

TO-5110RCS

TO-5110RCS

Century Spring Corp.

TOR O=.430, W=.051

263

TO-5037RSCS

TO-5037RSCS

Century Spring Corp.

TOR O=.220, W=.025

200

TO-5079LCS

TO-5079LCS

Century Spring Corp.

TOR O=.355, W=.028

1000

TO-5089RCS

TO-5089RCS

Century Spring Corp.

TOR O=.366, W=.026

122

TO-5010RCS

TO-5010RCS

Century Spring Corp.

TOR, O=.160, W=.017

241

TO-5009LSCS

TO-5009LSCS

Century Spring Corp.

TOR O=0.16, W=0.017

216

TO-5059RSCS

TO-5059RSCS

Century Spring Corp.

TOR O=.272, W=.021

375

TO-5019RCS

TO-5019RCS

Century Spring Corp.

TOR O=.179, W=.020

416

TO-5015LCS

TO-5015LCS

Century Spring Corp.

TOR O=.172, W=.017

500

TO-5165RCS

TO-5165RCS

Century Spring Corp.

TOR O=.637, W=.075

141

TO-5002RCS

TO-5002RCS

Century Spring Corp.

TOR, O=.110, W=.012

261

TO-5188RSCS

TO-5188RSCS

Century Spring Corp.

TOR O=.784, W=.063

168

TO-5003LSCS

TO-5003LSCS

Century Spring Corp.

TOR, O=.111, W=.015

129

TO-5057LCS

TO-5057LCS

Century Spring Corp.

TOR O=.271, W=.023

495

Springs - Torsion

1. Overview

Torsion springs are elastic components designed to store and release angular energy or to statically hold a mechanism in a rotated position. They operate by twisting about their axis when torque is applied, generating a restoring force proportional to the rotation angle. These springs are critical in modern mechanical systems for precise motion control, vibration damping, and maintaining structural stability across industries.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Single Torque Torsion SpringSimple helical design with one direction of torque outputDoor hinges, clipboards, automotive latch mechanisms
Double Torque Torsion SpringBifilar winding for balanced torque in two directionsCounterbalance systems, robotic joints
Multi-Flex Torsion SpringSegmented coils for variable torque curvesIndustrial valves, precision instruments
Linear Torsion SpringConstant torque output through entire rotationCable reels, rotational actuators
Tapered Torsion SpringVariable pitch coils for progressive torque responseAerospace control surfaces, clutch mechanisms

3. Structure and Composition

Typical torsion springs feature helically wound wire with straight or shaped ends (legs) that transmit torque. Key components include:

  • Coiled body: Provides elastic deformation through torsional stress
  • Arms/legs: Transfer torque to mating components (straight, angular, or hooked configurations)
  • Material: High-carbon steel, stainless steel, phosphor bronze, or titanium alloys
  • Surface treatment: Zinc plating, powder coating, or nitriding for corrosion resistance

Design variations include cylindrical, conical, and barrel-shaped geometries to optimize space utilization.

4. Key Technical Parameters

ParameterDescriptionImportance
Spring Rate (Nm/deg)Torque per degree of angular deflectionDetermines stiffness and response characteristics
Max Torque CapacityUltimate torsional load before plastic deformationDefines operational safety limits
Number of CoilsImpacts spring index and stress distributionAffects fatigue life and space requirements
Leg OrientationAngle and offset between spring armsCritical for proper torque transmission
Material Shear ModulusDictates elastic properties under torsionKey factor in torque-rotation relationship
Operating Temperature RangeThermal limits affecting dimensional stabilityDetermines environmental compatibility

5. Application Fields

Major industries utilizing torsion springs include:

  • Automotive: Windshield wiper mechanisms, door check systems, transmission shifters
  • Industrial Equipment: Conveyors, packaging machines, robotic arms
  • Aerospace: Flight control actuators, landing gear mechanisms
  • Consumer Electronics: Laptop hinges, camera lens barrels, medical device triggers
  • Energy Systems: Circuit breaker mechanisms, renewable energy dampers

Example: Automotive seat recline systems use dual torsion springs to maintain position while allowing smooth adjustment.

6. Leading Manufacturers and Products

ManufacturerKey ProductsSpecialization
MISUMIVFS2- Series Precision Torsion SpringsHigh-volume industrial applications
Lee SpringCT Series Custom Torsion SpringsMiniature and medical-grade springs
Barnes Group Inc.Associated Spring RAFI LineAerospace and defense solutions
Smalley Steel RingWave Spring-Actuated Torsion DevicesSpace-saving wave spring technology
CrosbySwager Torsion SpringsHeavy-duty industrial applications

7. Selection Guidelines

Key considerations for torsion spring selection:

  1. Calculate required torque using: M = k (M=torque, k=spring rate, =angular displacement)
  2. Verify maximum stress levels against material endurance limits
  3. Account for installation space constraints (diameter, length, leg clearance)
  4. Specify corrosion resistance requirements based on environmental exposure
  5. Consider dynamic loading conditions and fatigue life expectations
  6. Validate rotational direction compatibility with handedness of coil winding

Recommend consulting manufacturer's load-deflection charts during specification.

8. Industry Trends

Current development trends include:

  • Advanced materials: Carbon fiber composites and shape-memory alloys
  • Miniaturization for micro-electromechanical systems (MEMS)
  • Smart integration with embedded strain sensors
  • Topology optimization via generative design algorithms
  • Environmentally friendly surface treatments replacing hexavalent chromium

Market growth driven by electric vehicle component demands and industrial automation expansion.

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