ASTM F792 Standard Practice for Evaluating the Imaging Performance of Security X-Ray Systems
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- 19
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- 19.100
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- BSI BS EN 16016-2 Non destructive testing - Radiation methods - Computed tomography Part 2: Principle, equipment and samples
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- BSI BS EN 16016-3 Non destructive testing - Radiation methods - Computed Tomography Part 3: Operation and interpretation - CORR: February 29, 2012
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- ISO 15708-1 Non-Destructive Testing - Radiation Methods - Computed Tomography - Part 1: Principles - First Edition
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- VDI VDI/VDE 2630 BLATT 1.2 Computed tomography in dimensional measurement - Influencing variables on measurement results and recommendations for computed tomography dimensional measurements
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- DIN EN 12544-2 Non-destructive testing - Measurement and evaluation of the X-ray tube voltage - Part 2: Constancy check by the thick filter method; English version of DIN EN 12544-2
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- VDI VDI/VDE 2630 BLATT 1.4 Computed tomography in dimensional metrology - Measurement procedure and comparability
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- DIN EN 12543-2 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- DIN EN 16407-1 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 1: Tangential radiographic inspection
- ASTM E1000 Standard Guide for Radioscopy
- ASTM E2698 Standard Practice for Radiological Examination Using Digital Detector Arrays
- ASTM E1647 Standard Practice for Determining Contrast Sensitivity in Radiology
- BSI BS EN 16016-4 Non destructive testing - Radiation methods - Computed tomography Part 4: Qualification
- Картотека зарубежных и международных стандартов
ASTM International
Standard Practice for Evaluating the Imaging Performance of Security X-Ray Systems
N F792
Annotation
This practice applies to all X-ray based screening systems, with tunnel apertures up to 1 m wide X 1 m high, whether it is a conventional X-ray system or an explosives detection system (EDS) that provides a projection or projection/scatter image for an operator to interpret.
This practice applies to X-ray systems used for the screening for prohibited items such as weapons, explosives, and explosive devices in baggage, packages, cargo, or mail.
This practice establishes quantitative and qualitative methods for evaluating the systems. This practice does not establish minimum performance requirements for any particular application.
This practice relies upon the use of a standard test object (ASTM X-ray Test Object) to determine the applicable performance levels of the systems. The specific test object is subsequently described and referred to in this document as the "Test Object."
The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.
This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.2
2 Examples are Part 21 Code of Federal Regulations, Section 1020.40 in the United States and Health & Safety Regulation 1333 in the United Kingdom. If film safety, defined as <2.58310-7 C/kg (<1 mR) per screening, is of importance, refer to Test Method F 1039.



