Advanced railway spring testing systems

High-precision testing solutions for comprehensive spring verification and certification – ensuring optimal safety and performance.

Key Specifications

 

  • Two models: 100kN and 250kN force capacity
  • Modern 3D measuring technology
  • Fully automated testing sequence
  • Multiple spring type compatibility

Technical Specifications

Overview

Our spring testing systems provide comprehensive verification capabilities for all types of railway springs, ensuring optimal performance and safety through precise measurement and testing.

The system performs detailed and precise measurements of spring parameters for various spring elements, utilizing state-of-the-art 3D measuring technology.

Testing is conducted according to international standards with comprehensive documentation, enabling efficient quality control for new, overhauled, and in-service springs.

Features

Testing capabilities

Compatible spring types

Advanced technology

Safety & efficiency

Related Projects

 

O-Train Case Study

In 2015, the O-Train in Ottawa, Canada, sought a complete train maintenance facility for their new fleet. Railquip provided a fully customized underground lifting

FAQ’S

What types of springs can be tested?

Our systems can test a wide range of spring types including coil springs, spring packages, chevron springs, conical springs, leaf springs, air springs, and custom applications.

How does the system ensure accurate measurements?

The system uses modern 3D measuring technology combined with high-precision force measurement capabilities, ensuring accurate and reliable results for all spring parameters.

Is the system easy to install and operate?

Yes, the system features Plug & Play installation and fully automated test sequences with an intuitive interface for straightforward operation.

What safety features are included?

The system includes comprehensive safety features including emergency stop with secure hold, built-in operator protection, and requires no additional safety barriers.

How does this help reduce maintenance costs?

By enabling accurate testing of used springs, the system helps identify components that can be safely reused. Additionally, its energy-efficient design and low maintenance requirements help reduce operational costs.