Elgiloy 2.0*1.2*0.1 Helical Springs

Elgiloy 2.0*1.2*0.1 helical springs represent a specialized configuration of Elgiloy springs, combining precise dimensional specifications with the superior properties of Elgiloy alloy. These springs are manufactured from a premium cobalt-chromium-nickel alloy that provides exceptional strength, corrosion resistance, and temperature stability.

Technical Specifications

PropertySpecification
– MaterialElgiloy®
– Dimensions2.0mm × 1.2mm × 0.1mm
– Temperature Range-184°C to 454°C (-300°F to 850°F)
– Density8.30 g/cm³ (0.300 lb/in³)
– Modulus of ElasticityUp to 32.0 × 10³ ksi (190 GPa)

Material Properties

  1. Mechanical Characteristics – High strength-to-weight ratio
  • Excellent fatigue life
  • Good formability
  • Non-magnetic properties
  1. Environmental Resistance – Virtually immune to crevice and stress corrosion in seawater
  • Excellent resistance to sulfide stress corrosion cracking
  • Superior pitting resistance

Applications

1.Primary Industries – Oil & gas wellbore environments

  • Marine applications
  • Aerospace systems
  • Medical devices

2.Specialized Uses – Satellite communications equipment

  • Defense systems
  • High-temperature applications
  • Chemical processing equipment
Elgiloy 2.0*1.2*0.1 Helical Springs-Handaspring

Manufacturing Capabilities

  • Continuous lengths from 100 feet to annual quantities exceeding 100,000 feet
  • Custom tooling development for specific requirements
  • Over 100 non-standard cross-section options available
  • Secondary finishing services available

Customization Options

1.Dimensional Modifications – Adjustable dimensions within tooling limits

  • Custom cross-section configurations
  • Special material options available

2.Material Selection – Various grades of Elgiloy®

  • Specialty materials for specific applications
  • Custom finishing services available
Elgiloy 2.0*1.2*0.1 Helical Springs-Handaspring

These springs combine the superior properties of Elgiloy alloy with precise dimensional specifications, making them ideal for applications requiring consistent performance and reliability in demanding environments.

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