• Servomechanical axial fatigue testing machine – capacity: 10 kN
  • Designed in compliance with ASTM E1942
  • Operating mechanism: electromechanical linear servo motors
  • High accuracy in applying dynamic loads with constant force amplitude, constant displacement, constant stress, and constant strain control mode
  • Capable of applying periodic load waveforms, including sinusoidal, square, triangular, saw-tooth, user-defined, and random/combined patterns; supports spectrum test definition and Quasi Static testing
  • Equipped with dedicated PID controller system for each control mode, ensuring precise waveform application via software
  • Equipped with a DSP-technology interface with external design; working frequency: 5 KHz; force measurement & control, extension, and strain (via extensometer) all with 5 KHz frequency response (closed-loop)
  • Low-profile dynamic load cell minimizes lateral force effects and measurement errors
  • Electronic linear encoder mounted on the jack across full stroke, accuracy: 1µm
  • Supports mounting of long-travel COD extensometers (Crack Opening Displacement) for accurate measurement of specimen displacement
  • Tensile, compression, and bend testing grips can be mounted
  • Enhanced SAF-Controller software with real-time control mode: define various test methods, simultaneous plotting Setpoint and Response graphs for performance evaluation
  • Equipped with PID (Proportional Integral Derivatives) coefficients adjustment for multiple test methods
  • Proper cooling system to extend the service life of critical machine components

SAF-10M is a servomechanical fatigue testing machine with a lower-table configuration and a capacity of 1 ton. It features a top-mounted actuator, with the load cell directly connected to the mechanical actuator.

The operating mechanisms of these machines are Electromechanical Dynamic or Electromechanical Linear Servo Motors. Power is transmitted through ball screws driven by an AC servo motor and driver. The machine is equipped with a hardware control system, and high-frequency DSP technology.

These low-capacity fatigue testing machines are designed for smaller load ranges and are capable of performing static and low-speed quasi-static tensile and compression tests, as well as dynamic fatigue tests within a limited frequency range.

Main advantages of servomechanical fatigue testing machines compared with servo hydraulic ones:

  • High accuracy in position and speed control due to the mechanism
  • Precise waveform generation, capable of producing various loading patterns (sinusoidal, square, saw-tooth, random, etc.) with high accuracy
  • Lower energy consumption compared to hydraulic systems, which require powerful hydraulic units
  • No use of hydraulic oil, resulting in reduced noise, improved cleanliness, and suitability for laboratory environments
  • Easy and cost-effective maintenance, with no need to replace oil filters or manage leakages

The machine is capable of performing fatigue and durability tests, as well as determining the service life of various specimens in compliance with international standards, including ASTM E1942 and ISO 14242. It can apply dynamic loads in multiple patterns such as sinusoidal, triangular, square, and saw-tooth with the additional capability of defining random tests based on the wave patterns. Furthermore, the system supports Spectrum Tests within specified range of force, extension, stress, and strain, at limited frequencies.

By applying high-quality electronic hardware with fast response and high data acquisition rates, precision sensors and transducers, ball screws with servo motor and driver, and a real-time controller, the SAF series machines ensure reliable performance. Combined with powerful software featuring optimized algorithms and advanced data processing for each control mode in long-term tests, enable the SAF series to simulate highly variable and realistic test conditions for practical fatigue testing.

The machine features a high-frequency response and a sampling rate of 5000 samples per second (one sample every 200 µs), enabling accurate measurement, rapid feedback and precise closed-loop control via a PID controller.

In addition to common fatigue tests, the SAF-10M can also perform crack initiation, crack growth, and static tests. The enhanced software (with Intranet connection via LAN port) provides the capability to apply periodic loads with specified amplitude and frequencies in various wave patterns, with additional features such as adding noise, applying offset, defining the number of applied cycles, and recording saved cycles. It also allows modification of all test parameters online during testing and generates comprehensive test reports.

Given its low capacity, the SAF-10M is suitable for fatigue, durability, and performance testing, as well as determining the service life of components in production, research, and quality control environments. Typical applications include:

  • Rubber components
  • Sport equipment
  • Springs, shock absorbers, and dampers
  • Biochemical components
  • Nanomaterials
  • University research projects
  • Composites
  • Orthopedic components
  • Medical engineering researches
  • Bitumen materials

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