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Suspension Spring Six-Component Force Testing Machine

Suspension Spring Six-Component Force Testing Machine

The Suspension Spring Six-Component Force Testing Machine is a specialized testing system designed for comprehensive performance evaluation of automotive suspension springs under axial and lateral loading conditions.

Application

The Suspension Spring Six-Component Force Testing Machine is mainly used to test the spatial force characteristics of suspension springs under lateral loading conditions. It can accurately measure key parameters such as axial test force, lateral test force, force application point coordinates, and force vector (magnitude and direction) at a specified deformation or spring height.

Standards

GB/T 1239.2 — Cold Coiled Helical Compression Springs — Technical Requirements

GB/T 19844 — Springs for Mechanical Applications — Technical Requirements

GB/T 1805 — Spring Terminology

GB/T 23935 — Helical Compression Springs — Technical Specifications

QC/T 484 — Automobile Suspension Spring Technical Conditions

QC/T 491 — Automotive Coil Spring Performance Requirements and Test Methods

ISO 26909 — Springs — Vocabulary

ISO 10243 — Tool Dies — Compression Springs — Specifications

ASTM A125 — Standard Specification for Steel Springs

JJG 139 — Verification Regulation of Tension, Compression and Universal Testing Machines

GB/T 16825.1 — Verification of Static Uniaxial Testing Machines

Technical Specifications

ItemTechnical Parameters
Maximum Axial Test Force10 kN / 20 kN
Maximum Radial Test ForceX Axis: 2 kN; Y Axis: 2 kN
Testing Machine Accuracy GradeGrade 1
Effective Force Measurement Range (Axial & Radial)1%–100% of Full Scale
Minimum Force Resolution0.05% of Full Scale for Each Range
Force Indication Error≤ ±1%
Minimum Displacement Resolution0.01 mm
Displacement Accuracy≤ ±(50 + 0.15λ) μm
Loading Speed Range0.05–500 mm/min
Effective Test Space>600 mm
Compression Plate DiameterØ300 mm
Motor Power1.5 kW

Structure and function

The machine consists of a main frame, six-component force measurement system, control system, software system, safety protection system, and auxiliary devices. It adopts a computer-controlled gantry structure, dual ball screw transmission, AC servo drive, and planetary gear reducer, providing high precision, stable operation, and reliable performance.

In addition to the functions of a conventional microcomputer-controlled spring tension and compression testing machine, it is equipped with a dedicated six-component force measurement and control system. The system can accurately measure the actual magnitude and direction of loads generated inside automotive suspension springs after axial compression, providing reliable data support for the design of vehicle safety, handling, and comfort performance.

The machine can precisely determine:

The coordinate values of the starting and ending points of the resultant force.

The magnitude and direction of the resultant force.

The lateral test force.

The force application position coordinates between the upper and lower compression plates.

By inputting the tolerance radius of the upper and lower loading points, the system can automatically determine whether the suspension spring meets the qualification requirements.

Features

Computer-controlled automatic testing system with high automation.

Gantry-type frame structure with excellent rigidity and stability.

Dual ball screw transmission and AC servo drive ensure accurate loading.

Dedicated six-component force measurement system for suspension spring testing.

Accurately measures axial force, lateral force, force direction, and force application coordinates.

Automatically calculates resultant force magnitude and direction.

Real-time display of upper and lower compression plate coordinates and force application points.

Equipped with automatic compression plate alignment function for convenient operation.

Supports sensor calibration and parameter storage functions.

Automatic alarm and shutdown protection when test parameters exceed preset limits.

Intelligent software system with simple interface and easy operation.

Suitable for research, development, quality inspection, and production control of automotive suspension springs.

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