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GB/T 33343-2016 English PDF

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GB/T 33343-2016: Test methods of insulated electric wires for aerospace
Status: Valid
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GB/T 33343-20161799 Add to Cart 10 days Test methods of insulated electric wires for aerospace Valid

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Basic data

Standard ID: GB/T 33343-2016 (GB/T33343-2016)
Description (Translated English): Test methods of insulated electric wires for aerospace
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: K13
Classification of International Standard: 29.060.20
Word Count Estimation: 90,979
Date of Issue: 2016-12-13
Date of Implementation: 2017-07-01
Regulation (derived from): National Standard Notice No.208 of 2016
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

GB/T 33343-2016: Test methods of insulated electric wires for aerospace

---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.
Test methods of insulated electric wires for aerospace ICS 29.060.20 K13 National Standards of People's Republic of China Air - insulated wire test method 2016-12-13 released 2017-07-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Management Committee released Directory Preface Ⅴ 1 Scope 1 2 normative reference document 1 3 Terms and definitions 1 4 General requirements for testing 2 4.1 Test principle 2 4.2 Pretreatment 3 List of test items 3 6 installation, processing and maintenance test 5 6.1 Insulation thickness and concentricity 5 6.2 Adhesion of Insulation and Packaging Composites 6 6.3 Insulation stripping force 7 6.4 insulation stretching 8 6.5 Conductor solderability 9 6.6 Single-line heat/mechanical properties 10 Heat and mechanical properties of wire harnesses 13 6.8 Insulation shrinkage (molten solder method) 13 6.9 Insulation Winding Cap Cap 14 6.10 Outer insulation smoothness 15 6.11 wire mark contrast 16

7 Conductivity test

7.1 conductor diameter 19 7.2 Conductor mechanical properties 20 7.3 conductor resistance 20 7.4 Conductor Gyroscope Adhesion 21 7.5 Nickel layer adhesion 23 Electrical performance test 8.1 Dielectric constant 23 8.2 Pulse voltage 24 8.3 Insulation resistance 25 8.4 Insulation spark 26 8.5 Surface resistance 28 8.6 Smoke time/current 29 8.7 dry dry arc 30 8.8 Moisture resistant arc 35 8.9 Water immersion withstand voltage 39 8.10 Wire break time 40 8.11 smoke 41 Environmental performance test 9.1 Infusion 42 9.2 Forced hydrolysis 9.3 Moisture resistance 43 9.4 Mass loss under temperature and vacuum 9.5 Weatherability 44 9.6 Capillary test 45 9.7 Fluoride escape 46 9.8 resistant to nitric acid 48 Mechanical Performance Test 10.1 Low temperature bending 10.2 dynamic cut 49 10.3 Anti-flexing test 50 10.4 Insulation Mechanical Properties 10.5 Incision extension 52 10.6 Stiffness and rebound 53 High temperature winding and heating winding 10.8 wrinkle 56 10.9 Color or mark durability 10.10 bending 58 10.11 circumferential elongation 59 10.12 test rod winding 61 10.13 Scratch 62 Thermal performance test 11.1 Flammability 64 High temperature/high pressure air impact (burst) 11.3 Relative thermal life and temperature index 11.4 Temperature impact 71 11.5 Performance after thermal aging 71 Life Cycle 72 11.7 Adhesive 73 11.8 laminated frit seal 74 11.9 Coating Curing 75 11.10 Crosslinking Verification 75 11.11 Insulation Sintering State 76 11.12 High temperature durability 77 12 wire diameter and mass 80 12.1 Wire diameter 80 12.2 The length of the wire per unit length 80 Appendix A (informative) Conductor structure size 81 Figure 1 Solid conductor insulation minimum thickness and maximum thickness 6 Figure 2 stranded conductor insulation minimum thickness and maximum thickness 6 Figure 3 Thermal/mechanical performance test device 10 Figure 4 Two recommendations for limit switch and timer start-up installation Figure 5 resistance test test circuit 12 Figure 6 Schematic diagram of insulation wrapping Figure 7 Insulation wire cross section test 15 Figure 8 Lighting 17 Figure 9 Comparison test of wire specimen markings Figure 10 Typical pattern of seven conductors after birdcage formation (no stranded bond) Figure 11 Typical surface resistance test chamber with solid paraffin border Figure 12 Typical surface resistance test chamber with PTFE insulated connection sleeve Figure 13 Cutting blade 31 Figure 14 cutting blade fixing device 31 Figure 15 Fixing device 32 Figure 16 Dry arc test wire harness structure 32 Figure 17 Resistance to dry arc test Wire tie bar 33 Figure 18 Resistance to dry arc test circuit connection Figure 34 Figure 19 Ball Slide Blade Fixing Device 35 Figure 20 Moisture-resistant arc test wire harness structure 37 Figure 21 Resistance to wet arc test wire tie bar 37 Figure 22 Resistance to wet arc test circuit connection Figure 38 Figure 23 A single-core copper conductor in the air rated current 41 Figure 24 Standard Cutter 50 Figure 25 Anti-flex life test device 51 Figure 26 Cutter tool 53 Fig. 27 Test device for stiffness and rebound test Figure 28 Stiffness and rebound test device substrate 55 Figure 29 Schematic diagram of high temperature winding test Figure 30 Circumferential elongation test device and test test cone 60 Figure 31 Sample support device 61 Figure 32 Scratch test fixture and scraping needle 63 Figure 33 Electrical connection 65 Fig. 34 Connection method of wire sample and test rod Figure 35 Alenius model Figure 70 Figure 36 Sample placement method 73 Figure 37 PTFE insulation temperature curve 77 Figure 38 High temperature durability test Table 1 List of test items Table 2 Electrical connection 33 Table 3 Circuit Resistance 34 Table 4 Circuit Connections 38 Table 5 Circuit Resistance 38 Table 6 Weight of heavy and rebound tests Table 7 Wrinkle test with a test rod diameter of 57 Table 8 Bending test bar size and load 58 Table 9 Test rods for test rod winding test Table 10 Rod diameter and winding load Table 11 Other specifications of the wire rod diameter and winding load 67 Table 12 Requirements for aging test sample length 72 Table 13 Adhesive test tension and test rod diameter 74 Table 14 High temperature durability test Test current, bar size and load 78 Table A.1 Conductor structure dimensions 81

Foreword

This standard is drafted in accordance with the rules given in GB/T 1.1-2009. This standard is proposed by China Electrical Equipment Industry Association. This standard by the National Wire and Cable Standardization Technical Committee (SAC/TC213) centralized. This standard is responsible for drafting units. Shanghai Cable Research Institute. This standard participates in the drafting unit. Jiangsu Tongguang Electronic Cable Co., Ltd., Nanjing Zhongxin Transmission Technology Co., Ltd., Baoshengke Technology Innovation Co., Ltd., Tianjin 609 Cable Co., Ltd., Guangdong Product Quality Supervision and Inspection Research Institute, Guangzhou Kaiheng special wire Cable Co., Ltd., Wuhan Product Quality Supervision and Inspection Institute, China Electronics Technology Group Corporation, the twenty-third Institute, Shanghai cable Shenzhou cable Limited company, Sichuan Jiuzhou cable limited liability company, Shenzhen City Jiaxiang Technology Co., Ltd., Shanghai Cable Electric Technology Co., Ltd.. The main drafters of this standard. Guo Hanyang, Chen Hui, Li Feng, Fang Quan Sheng, Zhang Guochen, Lu Sheng rod, Huang Shuzhen, Jin Qun, Min Jun, Zhen Wuwang, Huang Donglian, Ji Caixi, Wu Min. Air - insulated wire test method

1 Scope

This standard specifies the general test method for aerial insulated wires. Including installation, processing and maintenance, conductor performance, electrical performance, environmental Energy, mechanical properties, thermal performance, wire diameter and quality. This standard applies to aviation insulated wires.

2 normative reference documents

The following documents are indispensable for the application of this document. For dated references, only the dated edition applies to this article Pieces. For undated references, the latest edition (including all modifications) applies to this document. Plastics - Determination of tensile properties - Part 1. General principles GB/T 1040.1-2006 GB/T 2951.11-2008 Cables and cables - Common test methods for insulating and sheathing materials - Part 11. General test methods - Thickness and dimensions measurement - Mechanical properties test GB/T 2951.12-2008 Cables and cables - Common test methods for insulating and sheathing materials - Part 11. General test methods - Thermal aging test method GB/T 3048.4-2007 Test methods for electrical performance of wire and cable - Part 4. Conductor DC resistance test Test methods for electrical properties of electric cables and wires - Part 5. Insulation resistance test GB/T Test methods for electrical properties of electric cables and wires - Part 8. AC voltage test GB/T GB/T 4074.7-2009 Winding wires - Test methods - Part 7. Test methods for determining the temperature index of enamel winding wires Test methods for bare wires - Part 2. Dimensions measurement GB/T 4909.2 Test methods for bare wires - Part 3. Tensile test GB/T 4909.3 Analysis of laboratory water specifications and test methods GB/T 6682-2008 GB/T 11026.1-2003 Heat insulation of electrical insulating materials - Part 1. Evaluation of aging procedures and test results GB/T 11026.3-2006 Heat insulation of electrical insulating materials - Part 3. Procedures for calculating heat resistance characteristics Electrical insulation materials - Heat resistance - Part 4. Aging oven Single chamber oven GB/T Test method for exposure of plastic laboratory light sources - Part 3. Fluorescent UV lamps GB/T 16422.3-2014

3 terms and definitions

The following terms and definitions apply to this document. 3.1 Environmental conditions of the sample. Enviromentalconditionsofspecification At a prescribed temperature, the sample is set in a predetermined relative humidity or immersed in water or other prescribed liquid for a specified period of time. 3.2 Standard reference environment referencestandardenviroment The value measured in any environment can be calculated to correct the value of a particular environment, this specific environmental conditions known as the standard parameters Test environment. Note. The atmospheric conditions of the standard reference environment are. temperature. t0 = 20 ℃; air pressure. b0 = 101.3kPa; absolute humidity. h0 = 11g/m3.
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