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Anka Analitik » X-RAY SYSTEMS



* EN UNI 15305 and ASTM 915 compliant

StressX is the Residual Stress Analysis instrument, providing a non-destructive test of the samples. Anthropomorphic 6 axis robot has been mounted to the head of the diffratometer that allows to analyze samples of any dimensions and shapes.

StressX can be design as in a closed cabin or on a four wheel trolley for onsite or laboratory analysis.

Residual Stress could be caused by machining, grinding, rolling, deep drawing, and welding, thermal hardening and shot peening. The device ensures that the user cans easily measures quantification to prevent fatigue damage and to control material's durability and safety.

StressX provides a flexible solution to residual stress determination on samples of any dimensions by the original synergy between compact X ray diffractometer and 6-axis robot.

6-axis robots ensures positioning accuracy and repeatability as low as 20 μm and positioning range as high as 895 mm radius from robot center.

Measuring target is defined by a combination of a Video camera for X-Y pointing and a laser for Z positioning.

Laser accuracy can be less than 10 μm and measuring range can be as high as 300 mm from the goniometer center.

The 6 degree provides a freedom the measuring positions and robot size may limit angular ranges.


Some specific applications of the Stress-X are listed below:

  • Detection of Residual Stress on sprocket wheels
  • Detection of Residual Stress on car motor parts (cam axles, connecting rods, engine shafts, equalizers, ...)
  • Detection of Residual Stress induced by deep drawing (household appliances, structural parts, ...)
  • Detection of existing Operational Stress on gas conducts
  • Detection of Operational Stress on large tensioned structures
  • Measurement of efficiency of Shot-Peening and rolling of components subjected to Stress
  • Definition of the quantity of Retained Austenite on bearings and parts of diesel motor injectors
  • Detection of Residual Stress in castings (cast iron parts of tool machines and aluminum components)
  • Detection of Stress induced by welding (laser and electron)
  • Search for a correlation between residual stress and stress resistance of aluminum alloy car rims
  • Optimization of working parameters for swarf removal to improve the stress resistance of mechanical components
  • Detection of Residual Stress on helicoidal and leaf springs
  • Search for critical zones after applying workloads (arms and aeronautics)

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