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ISO 16371-1:2011

Current
Current

The latest, up-to-date edition.

Non-destructive testing — Industrial computed radiography with storage phosphor imaging plates — Part 1: Classification of systems
Available format(s)

Hardcopy , PDF , PDF 3 Users , PDF 5 Users , PDF 9 Users

Language(s)

French, English

Published date

13-09-2011

ISO 16371-1:2011 specifies fundamental parameters of computed radiography systems with the aim of enabling satisfactory and repeatable results to be obtained economically. The techniques are based both on fundamental theory and test measurements. ISO 16371-1:2011 specifies the performance of computed radiography (CR) systems and the measurement of the corresponding parameters for the system scanner and storage phosphor imaging plate (IP). It describes the classification of these systems in combination with specified metal screens for industrial radiography. It is intended to ensure that the quality of images, as far as this is influenced by the scanner-IP system, is in conformity with the requirements of ISO 16371-2. ISO 16371-1:2011 relates to the requirements of film radiography defined in ISO 11699-1.

ISO 16371-1:2011 defines system tests at different levels. More complicated tests are described, which allow the determination of exact system parameters. They can be used to classify the systems of different suppliers and make them comparable for users. These tests are specified as manufacturer tests. Some of them require special tools, which are usually not available in user laboratories. Therefore, simpler user tests are also described, which are designed for a fast test of the quality of CR systems and long term stability.

There are several factors affecting the quality of a CR image including geometrical un-sharpness, signal/noise ratio, scatter and contrast sensitivity. There are several additional factors (e.g. scanning parameters), which affect the accurate reading of images on exposed IPs using an optical scanner.

The quality factors can be determined most accurately by the manufacturer tests as described in ISO 16371-1:2011. Individual test targets, which are recommended for practical user tests, are described for quality assurance. These tests can be carried out either separately or by the use of the CR Phantom (Annex B). This CR Phantom incorporates many of the basic quality assessment methods and those associated with the correct functioning of a CR system, including the scanner, for reading exposed plates and in correctly erasing IPs for future use of each plate.

The CR System classes in ISO 16371-1:2011 do not refer to any particular manufacturer's Imaging Plates. A CR system class results from the use of a particular imaging plate together with the exposure conditions (particularly total exposure), the scanner type and the scanning parameters.

Committee
ISO/TC 135/SC 5
DevelopmentNote
Supersedes ISO/DIS 16371-1. (09/2011)
DocumentType
Standard
Pages
27
PublisherName
International Organization for Standardization
Status
Current

PREN 12679 : DRAFT 2017 NON DESTRUCTIVE TESTING - DETERMINATION OF THE SIZE OF INDUSTRIAL RADIOGRAPHIC SOURCES - RADIOGRAPHIC METHOD
EN ISO 16371-2:2017 Non-destructive testing - Industrial computed radiography with storage phosphor imaging plates - Part 2: General principles for testing of metallic materials using X-rays and gamma rays (ISO 16371-2:2017, Corrected version 2018-05)
18/30368085 DC : 0 BS EN 12679 - NON DESTRUCTIVE TESTING - DETERMINATION OF THE SIZE OF INDUSTRIAL RADIOGRAPHIC SOURCES - RADIOGRAPHIC METHOD
EN 12681-2:2017 Founding - Radiographic testing - Part 2: Techniques with digital detectors
UNI EN ISO 17636-2 : 2013 NON-DESTRUCTIVE TESTING OF WELDS - RADIOGRAPHIC TESTING - PART 2: X- AND GAMMA-RAY TECHNIQUES WITH DIGITAL DETECTORS
I.S. EN ISO 16371-2:2017 NON-DESTRUCTIVE TESTING - INDUSTRIAL COMPUTED RADIOGRAPHY WITH STORAGE PHOSPHOR IMAGING PLATES - PART 2: GENERAL PRINCIPLES FOR TESTING OF METALLIC MATERIALS USING X-RAYS AND GAMMA RAYS (ISO 16371-2:2017)
UNE-EN ISO 17636-2:2013 Non-destructive testing of welds - Radiographic testing - Part 2: X- and gamma-ray techniques with digital detectors (ISO 17636-2:2013)
DIN EN ISO 17636-2:2013-05 Non-destructive testing of welds - Radiographic testing - Part 2: X- and gamma-ray techniques with digital detectors (ISO 17636-2:2013)
BS EN ISO 17636-2:2013 Non-destructive testing of welds. Radiographic testing X- and gamma-ray techniques with digital detectors
18/30338016 DC BS ISO 20890-6. In-service inspections for primary coolant circuit components of light water reactors Part 6. Radiographic testing
BS EN ISO 16371-2:2017 Non-destructive testing. Industrial computed radiography with storage phosphor imaging plates General principles for testing of metallic materials using X-rays and gamma rays
ISO 16371-2:2017 Non-destructive testing — Industrial computed radiography with storage phosphor imaging plates — Part 2: General principles for testing of metallic materials using X-rays and gamma rays
ISO 17636-2:2013 Non-destructive testing of welds — Radiographic testing — Part 2: X- and gamma-ray techniques with digital detectors
EN ISO 17636-2:2013 Non-destructive testing of welds - Radiographic testing - Part 2: X- and gamma-ray techniques with digital detectors (ISO 17636-2:2013)
BS EN 12681-2:2017 Founding. Radiographic testing Techniques with digital detectors
I.S. EN ISO 17636-2:2013 NON-DESTRUCTIVE TESTING OF WELDS - RADIOGRAPHIC TESTING - PART 2: X- AND GAMMA-RAY TECHNIQUES WITH DIGITAL DETECTORS (ISO 17636-2:2013)
I.S. EN 12681-2:2017 FOUNDING - RADIOGRAPHIC TESTING - PART 2: TECHNIQUES WITH DIGITAL DETECTORS

ISO 9712:2012 Non-destructive testing Qualification and certification of NDT personnel
ASTM E 1647 : 2016 : REDLINE Standard Practice for Determining Contrast Sensitivity in Radiology
ISO 5579:2013 Non-destructive testing Radiographic testing of metallic materials using film and X- or gamma rays Basic rules
ISO 11699-1:2008 Non-destructive testing — Industrial radiographic film — Part 1: Classification of film systems for industrial radiography
ISO 19232-5:2013 Non-destructive testing Image quality of radiographs Part 5: Determination of the image unsharpness value using duplex wire-type image quality indicators

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