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  • Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part
  • Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part
  • Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part
  • Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part
  • Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part
  • Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part
Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part

Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part

  • 1000 - 9999 Pieces
    $0.05
  • >= 10000 Pieces
    $0.01

Customization:

Customized logo(Min.Order: 1000 pieces)
Graphic customization(Min.Order: 1000 pieces)
Customized packaging(Min.Order: 1000 pieces)

Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Force Management: Designed to handle compression, torsion, and extension loads up to 90lb, ensuring precise force control in mechanical systems.
  • Multi-Purpose Application: Serves as a replacement spring for curling irons and critical components in new energy vehicles, combining durability with adaptability.

Key features

  • 1. Corrosion-Resistant Material Technology

  • With corrosion-resistant stainless steel and anodized surface treatment, ensure long-lasting durability in harsh environments. ~30% more corrosion-resistant than uncoated steel*, enabling reliable performance in automotive and beauty applications.

  • 2. Precision-Engineered Interactive Design

  • With U-shaped ends and uniform coiled structure, achieve seamless integration into devices like curling irons or automotive components. 2x easier to install than standard springs*, reducing downtime during replacements.

  • 3. High-Load Performance Parameters

  • With a 90lb load capacity and compatibility with compression/torsion/extension forces, handle heavy-duty applications. 50% higher load capacity than conventional springs*, ensuring stability in demanding scenarios like new energy vehicle systems.

  • 4. Versatile Scenario Solutions

  • Designed for both automotive and beauty industries, these springs provide precise tension for curling irons and robust support for automotive mechanisms. Suitable for continuous operation in commercial settings or precision use in home appliances*.

  • 5. Compliance with Certification Standards

  • With RoHS certification, meet strict environmental and safety regulations for global markets. Preferred by manufacturers prioritizing eco-friendly materials and compliance in automotive and consumer electronics sectors*.

Product details

Custom Curling Iron Replacement Spring/Stainless Steel Double Torsion Springs New Energy Vehicles Part

Custom Curling Iron Replacement Springs are precision-engineered stainless steel double torsion springs designed for new energy vehicles and high-performance mechanical systems. Built with corrosion-resistant materials and optimized load capacities, these springs ensure reliable performance in demanding environments.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialStainless Steel, Iron/Steel, MetalAutomotive parts, industrial machinery
Load Capacity90lb (adjustable)Tension/compression in door latches
Surface FinishAnodizing, PolishingEnhanced durability and aesthetics
CertificationRoHS ComplianceMeets global environmental standards
Load TypeCompression, Torsion, ExtensionMulti-functional mechanical systems
End TreatmentU-shaped polished endsSecure installation in tight spaces

Customization guide

Adjustable parameters include:

  • Material Grade: Opt for aerospace-grade stainless steel for high-temperature applications.
  • Load Capacity: Customize up to +50% for heavy-duty systems.
  • Surface Treatment: Combine anodizing and polishing for corrosion resistance and shine.

Get inspired

With stainless steel’s corrosion resistance, you can ensure longevity in humid environments. The U-shaped polished ends allow seamless integration into compact devices like curling irons. Pair anodizing with high-load specs to create springs that withstand repetitive stress in automotive systems.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Load Capacity90lb120lb (+33%)150lb (+66%)*
MaterialStandard SSAerospace-grade SSTitanium Alloy
Surface FinishPolishingAnodizingAnodizing + Polishing

Supplier's note

  1. Technical Breakthroughs:

    • Material Upgrades: The Pro Model’s titanium alloy offers 40% higher tensile strength than standard stainless steel.
    • Load Optimization: Advanced Model’s 120lb capacity outperforms industry benchmarks by 20% for moderate-duty applications.
    • Dual Surface Treatment: The Pro’s combined anodizing and polishing reduce friction by 30% in high-wear scenarios.
  2. Version Selection Guide:

    • Base Model: Ideal for standard automotive parts requiring RoHS compliance and basic load handling.
    • Advanced Model: Suited for industrial machinery needing corrosion resistance and enhanced load capacity (e.g., robotic arms).
    • Pro Model: Best for high-stress applications like new energy vehicle components, where extreme durability and precision are critical.

Example: The Pro version’s titanium alloy – 3x stronger than baseline stainless steel – enables safe operation in electric vehicle systems exposed to thermal cycling. Paired with dual surface treatments, it minimizes wear while maintaining structural integrity.

Frequently asked questions

  • Which stainless steel spring model suits new energy vehicles with heavy-duty requirements?

  • How to clean and maintain stainless steel springs for longevity in automotive parts?

  • Stainless steel vs iron springs: Which is better for vehicle components?

  • Can these springs be customized for specific load or size requirements?

  • Are these springs RoHS-certified for automotive compliance?

  • How do these springs handle high load capacities in vehicle systems?

  • What’s the difference between anodized and polished spring surfaces?

  • Are the U-shaped ends easy to install in vehicle components?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHarsh environments (e.g., automotive)Stainless Steel (ASTM A240) ▲
(vs Base: Steel ASTM A36)
Corrosion resistance, durabilityHigher cost than standard steel
Load CapacityHeavy machinery, industrial equipment90lb (ISO 376) ▲
(exceeds Base by 28.6%)
Handles high-stress applicationsOver-engineered for light-duty use
Surface TreatmentAesthetic/protective applicationsAnodizing + Polishing (MIL-A-8625) ▲
(vs Base: Polishing only)
Enhanced corrosion resistance and sleek finishAdds 20% to manufacturing cost
End TreatmentPrecision machinery (e.g., door latches)Polished U-shaped ends (ASME B18.001) ▲
(vs Base: Raw-cut ends)
Smooth operation and easy installationRequires specialized machining
CertificationRegulated markets (EU/US)RoHS Compliance (EN 50581) ▲
(vs Base: CE Certified)
Meets environmental safety standardsLimited to markets requiring RoHS certification
Spring TypeMulti-functional systemsTri-functional (compression/tension/extension) ▲
(vs Base: Dual-function)
Versatile for diverse load typesMay compromise performance in specialized single-use scenarios

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