Guidelines for in-service inspections for primary coolant circuit components of light water reactors - Mechanized ultrasonic testing

Guidelines for in-service inspections for primary coolant circuit components of light water reactors - Mechanized ultrasonic testing

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What is ISO 208901 about? 

ISO 208901 is the first part of the multi-series European standard that specifies guidelines for pre-service-inspections (PSI) and in-service inspections (ISI) with mechanized ultrasonic test (UT) devices on components of the reactor coolant circuit of light water reactors. ISO 208901 is also applicable to other components of nuclear installations. 

ISO 208901 is applicable for the detection of indications by UT using normal-beam probes and angle-beam probes both in contact technique. It is to be used for UT examination on ferritic and austenitic welds and base material as search techniques and comparison with acceptance criteria by the national referencing nuclear safety standards. 

Note: Unless otherwise specified in national nuclear safety standards the minimum requirements of this document are applicable. 

Note: ISO 208901 does not define: 

  • Extent of examination and scanning plans 
  • Acceptance criteria 
  • UT techniques for dissimilar metal welds and for sizing (have to be qualified separately); 
  • Immersion techniques 
  • Time-of-flight diffraction technique (TOFD) 

And Immersion techniques and techniques for sizing are not in the scope of ISO 208901 and are independent qualified. 

Who is ISO 208901 for? 

ISO 208901 on light water reactors is relevant to: 

  • Nuclear power plants 
  • Nuclear research organisations 
  • Mechanical Engineers 
  • Physicists 
  • Nuclear research scientists and researchers 
  • Nuclear regulatory authorities 

Why should you use ISO 208901? 

ISO 208901 provides guidelines on mechanized ultrasonic inspections of reactor coolant circuits of light water reactors, which are carried out to enable an evaluation in case of 

  • Fault indications (e.g. on austenitic weld seams or complex geometry) 
  • Indications due to geometry (e.g. in case of root concavity) 
  • Complex geometries (e.g. fitting weld seams) 
  • If a reduction in the radiation exposure of the test personnel can be attained in this way 

ISO 208901 provides mechanised ultrasonic test methods used to define the validation of discontinuities (volume or surface open), requirements for the ultrasonic test equipment, for the preparation of test and device systems, for the implementation of the test and the recording. 

Overall, ISO 20890-1 establishes guidelines for preservice and in-service inspection of reactor coolant circuits using automated ultrasonic testing devices which will benefit the users as they can inspect the components earlier than they will break down and therefore save from any accident conditions.