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Vibration-Damping Canted Coil Spring

    Vibration-Damping Canted Coil Spring

    The Vibration-Damping Canted Coil Spring is a precision elastic component designed to manage micro shock, vibration, and dynamic load fluctuation in mechanically demanding environments. By utilizing the inherent flexibility and progressive response of its angled coil structure, this spring helps reduce the transmission of vibration and mechanical stress between connected components.
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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 Vibration-Damping canted coil spring is a precision elastic component designed to manage micro shock, vibration, and dynamic load fluctuation in mechanically demanding environments. By utilizing the inherent flexibility and progressive response of its angled coil structure, this spring helps reduce the transmission of vibration and mechanical stress between connected components.

Unlike conventional damping elements that rely on rigid buffers or elastomer materials, this canted coil spring provides a controlled elastic response that adapts to continuous vibration and intermittent shock. Developed by YFS Technology (SZ) Co., Ltd, it is engineered as part of an integrated mechanical interface solution for transportation and heavy-duty systems where durability and structural stability are critical.


Product Features

Progressive Elastic Response

The angled coil configuration allows gradual force build-up, helping absorb vibration without sudden rebound.

Micro Shock Mitigation

Effectively reduces the impact of small but repetitive shocks that can lead to fatigue damage.

Stable Performance Under Dynamic Load

Maintains elastic behavior under continuous vibration and cyclic loading conditions.

Compact Mechanical Profile

Provides vibration control within limited installation space, suitable for dense mechanical assemblies.

Fatigue-Resistant Construction

Designed to withstand long-term exposure to vibration without loss of mechanical integrity.



Product Advantages

Reduced Structural Stress

Helps minimize stress transfer between connected components, extending equipment service life.

Improved System Reliability

Enhances operational stability in environments subject to constant motion or vibration.

Alternative to Elastomer Dampers

Provides a metal-based damping solution suitable for temperature-sensitive or harsh environments.

Consistent Performance Over Time

Unlike rubber-based solutions, performance does not degrade due to aging or material hardening.

Customizable Dynamic Characteristics

Spring stiffness and geometry can be adjusted to match specific vibration profiles.


Product Applications

Rail Transit Systems

Applied in onboard electronic housings, control modules, and mechanical interfaces exposed to continuous vibration.

Heavy Machinery

Used in construction equipment, mining machinery, and industrial transport systems.

Transportation Equipment

Supports vibration control in vehicle-mounted systems and modular assemblies.

Infrastructure Monitoring Devices

Ideal for equipment installed in vibration-prone environments such as bridges and rail lines.

Mechanical Subsystems

Used wherever micro shock absorption and vibration reduction are required.



FAQ – Vibration-Damping Canted Coil Spring

Q1: How does this spring reduce vibration?
A: Its angled coil structure absorbs and redistributes dynamic loads, reducing vibration transmission.

Q2: Is it suitable for long-term vibration exposure?
A: Yes. It is designed for continuous cyclic loading without fatigue-related failure.

Q3: Can it replace rubber dampers?
A: In many applications, it offers a more durable alternative, especially in harsh environments.

Q4: Does temperature affect its performance?
A: Metal-based construction ensures stable performance across a wide temperature range.

Q5: Is customization available?
A: Yes. Spring characteristics can be tailored to specific vibration and load requirements.


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