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Extreme-Temperature Canted Coil Spring

    Extreme-Temperature Canted Coil Spring

    The Extreme-Temperature Canted Coil Spring is a precision-engineered elastic component designed to maintain stable mechanical performance under wide and rapidly changing temperature conditions. Its angled coil structure allows controlled elastic behavior while minimizing the effects of thermal expansion, contraction, and material fatigue.
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Product parameters

Spring contacts are applicable to:

★Centering / concentricity

★Holding / control

★Conducting

★Latching / locking device

★EMI / RFI shielding

★Tolerance compensation

★Grounding

★Sealing

Wire diameter: 0.10mm - 1.5mm

Material: Copper alloy, stainless steel, special alloy, etc.

Surface treatment: Gold plating, silver plating, nickel plating, tin plating; Plating Au/Ag/Ni/Sn



Product Introduction

The Extreme-Temperature canted coil spring is a precision-engineered elastic component designed to maintain stable mechanical performance under wide and rapidly changing temperature conditions. Its angled coil structure allows controlled elastic behavior while minimizing the effects of thermal expansion, contraction, and material fatigue.

Unlike conventional springs that may lose elasticity or deform when exposed to extreme heat or cold, this canted coil spring is optimized for thermal stability and long-term structural integrity. Developed by YFS Technology (SZ) Co., Ltd, it forms part of an advanced mechanical interface solution for aerospace and high-altitude systems, where reliability under temperature stress is non-negotiable.

This spring is particularly suitable for environments where temperature fluctuation, vacuum conditions, and long service cycles place exceptional demands on material performance.


Product Features

Wide Temperature Operating Capability

Designed to maintain consistent elastic behavior across extreme low and high temperature ranges.

Thermally Stable Load Characteristics

Angled coil geometry helps stabilize force output despite thermal expansion or contraction.

High-Integrity Material Selection

Manufactured using temperature-resistant alloys that retain mechanical strength under thermal stress.

Predictable Elastic Response

Ensures consistent deformation and recovery, even after prolonged exposure to extreme environments.

Compact Structural Design

Supports integration into lightweight and space-constrained aerospace assemblies.


Product Advantages

Reliability in Harsh Thermal Environments

Maintains functional stability where traditional springs may weaken, creep, or fracture.

Reduced Thermal Stress Impact

Absorbs dimensional changes caused by temperature variation, protecting adjacent components.

Long Service Life

Engineered for extended operational cycles without loss of elastic performance.

Lightweight Mechanical Solution

Supports weight-sensitive aerospace systems without compromising structural reliability.

Customizable Thermal Performance

Spring dimensions, materials, and coil geometry can be optimized for specific thermal profiles.


Product Applications

Aerospace Electronic Systems

Used in avionics housings, control units, and internal mechanical interfaces exposed to thermal cycling.

Spaceborne Equipment

Suitable for satellites, payload modules, and structural subsystems operating in vacuum and extreme temperatures.

High-Altitude Platforms

Applied in UAVs, stratospheric systems, and atmospheric research equipment.

Propulsion and Control Assemblies

Supports mechanical stability in components affected by temperature gradients.

Precision Aerospace Mechanisms

Ideal for systems requiring consistent elastic behavior under thermal stress.



FAQ – Extreme-Temperature Canted Coil Spring

Q1: How does this spring handle extreme temperature changes?
A: Its material selection and angled coil design help maintain stable elasticity despite thermal expansion or contraction.

Q2: Is it suitable for aerospace-grade requirements?
A: Yes. It is designed to meet the reliability expectations of aerospace and space system applications.

Q3: Can it operate in vacuum environments?
A: Yes. Metal-based construction ensures compatibility with vacuum and low-outgassing requirements.

Q4: Does temperature cycling affect spring life?
A: The spring is engineered to withstand repeated thermal cycles without significant fatigue.

Q5: Is customization available for specific thermal ranges?
A: Yes. Thermal performance can be tailored to match exact operating conditions.

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