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GB/T 19211-2015 English PDF

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GB/T 19211-2015: Cargo/vehicle radiographic inspection system
Status: Valid

GB/T 19211: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
GB/T 19211-2015English549 Add to Cart 5 days [Need to translate] Cargo/vehicle radiographic inspection system Valid GB/T 19211-2015
GB 19211-2003English599 Add to Cart 4 days [Need to translate] Cargo/vehicle radiographic inspection systems Obsolete GB 19211-2003

PDF similar to GB/T 19211-2015


Standard similar to GB/T 19211-2015

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Basic data

Standard ID GB/T 19211-2015 (GB/T19211-2015)
Description (Translated English) Cargo/vehicle radiographic inspection system
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard F84
Classification of International Standard 19.100
Word Count Estimation 26,214
Date of Issue 2015-07-03
Date of Implementation 2016-02-01
Older Standard (superseded by this standard) GB 19211-2003
Quoted Standard GB/T 191; GB/T 699-1999; GB/T 4960.6-2008; GB 5172; GB 5226.1-2008; GB/T 6543; GB 11806-2004; GB/T 12464; GB/T 17799.1-1999; GB 17799.3-2012; GB 18871-2002; GBZ 143
Regulation (derived from) National Standard Announcement 2015 No.22
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary This Standard specifies the type of radiation goods and (or) the composition of the vehicle inspection system, classification, technical requirements, test methods, inspection rules and packaging, transport and so on. This Standard applies to the radiation type of goods and (or) vehicle inspection system, ��-rays or X-ray energy which is equipped with more than 500 keV. This Standard does not apply to the use of neutron radiation source inspection, computer tomography (CT) or backscatter technology goods and (or) vehicle inspection system.

GB/T 19211-2015: Cargo/vehicle radiographic inspection system

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Cargo/vehicle radiographic inspection system ICS 19.100 F84 National Standards of People's Republic of China Replacing GB 19211-2003 Radiation type of goods and (or) Vehicle Inspection System Issued on. 2015-07-03 2016-02-01 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Table of Contents

Introduction Ⅴ 1 Scope 1 2 Normative references 1 3 Terms and definitions 4 system components and product classifications 3 4.1 System components 3 4.2 System Function 3 4.3 Categories 4 5 General characteristics 4 5.1 Structure and appearance 4 5.2 Emergency stop device 4 5.3 safety interlock device 4 5.4 Status Indicator 4 5.5 Monitoring System 5 6 5 General test methods 6.1 Reference conditions and standard test conditions 5 6.2 test equipment 5 6.3 Performance Test 6 6.4 Structure and Visual inspection 6.5 Emergency stop device 6 6.6 safety interlock 6 6.7 Status Indicator 6 6.8 Monitoring System 6 Scan speed 6 7 7.1 Requirements 6 7.2 Test Method 7 8 7 imaging performance test 8.1 penetration 7 8.2 Resolution 8 wire Contrast sensitivity 8.3 9 8.4 Spatial Resolution 10 8.5 substance Resolution 11 9 radiation safety test 13 9.1 Overview 13 9.2 ambient dose equivalent dose rate curve 13 Radiation levels in the workplace 13 9.3 9.4 the driver's seat through a single ambient dose equivalent 13 9.5 were seized by a single ambient dose equivalent 14 10 Electrical Safety 15 10.1 grounding protection device 15 10.2 Insulation resistance 15 10.3 Dielectric strength 15 10.4 anti-shock 15 11 16 Electromagnetic Compatibility 16 11.1 Requirements 11.2 Test Method 16 12 environmental requirements 16 16 12.1 Requirements 12.2 Test Method 16 13 16 Inspection Rules 16 13.1 Inspection classification 13.2 17 test items 17 13.3 Inspection 13.4 determine the rules 17 14 signs, packaging, transportation and storage 18 14.1 mark 18 18 14.2 Packaging 14.3 Transport 18 14.4 Storage 18 15 accompanying documents 18 References 20 1 penetration test schematic in Figure 8 Figure 2 resolution test schematic wire 9 Figure 3 a schematic view of contrast sensitivity test 10 Figure 4 schematic spatial resolution test 11 Figure 5 test sample substance Resolution 12 Figure 6 around the dose equivalent dose rate measurement schematic curve 14 Table 1 Reference conditions and standard test conditions 5 Table 2 Equipment name and technical requirements 5 Table 3 test device and sample 6 Table 4 scanning speed requirements Category 7 Table 5 penetration Category 7 Table 6 steel wire after the resolution of classification 8 Table 7 wire resolution in air classification 8 Table 8 contrast sensitivity classification 9 Table 9 Classification spatial resolution 10 The thickness of each substance in Table 10 12 Table 11 Substance Classification 12 range resolution Table 12 single dose equivalent by around 14 Table 13 inspection system under the condition of basic insulation test voltage 15 Table 14 Classification of environmental conditions inspection system 16 Table 15 Test item 17

Foreword

This standard was drafted in accordance with GB/T 1.1-2009 given rules. This standard replaces GB 19211-2003 "radiation type container inspection system." This standard compared with GB 19211-2003, the main technical Surgery changes are as follows. --- Standard name changed to "radiation type of goods and (or) vehicle inspection system"; --- Modify the normative references (see Chapter 2), the terms and definitions (see Chapter 3), by product category structure (see 4.3.2), according to inspection Charles object class (see 4.3.3), penetration requirements and test methods (see 8.1, 2003 edition of 5.2.1 and 6.4.2.1), wire points Requirements and test methods identified forces (see 8.2, 2003 edition of 5.2.2 and 6.4.2.2), a single classification by ambient dose equivalent (see Table 12, the 2003 edition of the Table 4), contrast sensitivity test methods (see 8.3 2, 2003 edition of 6.4.2.3), the system checks ring Classification of site condition (see Table 14, the 2003 edition of Table 5), the standard test conditions (see Table 1, 2003 edition of Table 7), radiation safety test Test (see Chapter 9, 2003 edition 6.6), were seized by a single Test Method for ambient dose equivalent (see 9.5.2, 2003 Version 6.4.3); --- An increase of some terms and definitions (see 3.1,3.8,3.11,3.12,3.16 ~ 3.18,3.20,3.21,3.23), the scanning speed is divided Class (see Table 4), after the steel wire resolution classification (see Table 6), wire resolution in air classification (see Table 7), the spatial resolution requirements And test methods (see 8.4), the emergency stop device characteristics and test methods (see 5.2 and 6.5), and the characteristics of the safety interlock device Characteristics and pilot test methods (see 5.3 and 6.6), characteristics and test methods status indicator (see 5.4 and 6.7), monitoring system Test method (see 5.5 and 6.8), material requirements and test methods resolution (see 8.5); --- Remove the "pass rate" "test pass rate," "salt spray test" "rain test", "transportation test" (see 2003 edition of 3.14,6.4.2.5, 6.5.2,6.5.3,6.5.4). This standard by the National Nuclear Instrument Standardization Technical Committee (SAC/TC30/SC3) centralized. This standard was drafted. Tongfang Weishi Technology Co., Ltd., Department of Engineering Physics. The main drafters of this standard. Li Jian Min, Liu agriculture, Yulan, Zhao natural Sunshang Min, Liu Yao Hong, Yu Weifeng, Zheng Juan, Deng Yanli, Chen Yan Min, Fruit benefits. Radiation type of goods and (or) Vehicle Inspection System

1 Scope

This standard specifies the composition of the radiation type of goods and (or) vehicle inspection system, classification, technical requirements, test methods, inspection rules and packaging Transportation and so on. This standard applies to the radiation type of goods and (or) vehicle inspection system, γ-rays or X-ray energy which is equipped with more than 500keV. This standard does not apply to the use of a neutron source radiation checks, computer tomography (CT) or backscatter technology goods and (or) vehicle inspection system.

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document. GB/T 191 Packaging - Pictorial signs GB/T 699-1999 quality carbon structural steel GB/T 4960.6-2008 nuclear science and technology - Part 6. Nuclear instrumentation GB 5172 particle accelerator radiation protection GB 5226.1-2008 Safety of machinery - Electrical machinery and electrical equipment - Part 1. General requirements GB/T 6543 transport packaging corrugated box with a single and double corrugated boxes GB 11806-2004 safe transport of radioactive materials regulations GB/T 12464 ordinary wooden box GB/T 17799.1-1999 Electromagnetic compatibility - Generic standards for residential, commercial and light industrial environment - Immunity GB 17799.3-2012 Electromagnetic compatibility - Generic standards for residential, commercial and light industrial environments Emission standard GB 18871-2002 ionizing radiation protection and safety of radiation sources basic standards Radiological protection requirements GB Z143 cargo/vehicle inspection system radiation

3 Terms and Definitions

GB/T 4960.6-2008 defined and the following terms and definitions apply to this document. 3.1 Transmission image transmissionimage X-rays or γ-rays passing through the object to be inspected, because the degree of attenuation of the projected image caused by the difference. 3.2 The use of X or γ radiation source and the radiation detector to obtain goods and (or) vehicle image transmission system. 3.3 X-ray Inspection System X-rayinspectionsystem The use of X-ray generator or accelerator bremsstrahlung as a radiation source for acquiring an image inspection system. 3.4 γ-ray inspection system gamma-rayinspectionsystem Use γ radionuclide sources as a radiation source for acquiring an image inspection system.

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