ARMY MIL-HDBK-733-1986 NONDESTRUCTIVE TESTING METHODS OF COMPOSITE MATERIALS - RADIOGRAPHY《复合材料的无损检测方法-射线探伤》.pdf
《ARMY MIL-HDBK-733-1986 NONDESTRUCTIVE TESTING METHODS OF COMPOSITE MATERIALS - RADIOGRAPHY《复合材料的无损检测方法-射线探伤》.pdf》由会员分享,可在线阅读,更多相关《ARMY MIL-HDBK-733-1986 NONDESTRUCTIVE TESTING METHODS OF COMPOSITE MATERIALS - RADIOGRAPHY《复合材料的无损检测方法-射线探伤》.pdf(43页珍藏版)》请在麦多课文档分享上搜索。
1、r MIL-HDBK-733 ND m 7777770 0038600 7 “ ! a l e 2 F- 2 8- 3 0 MIL-HDBK-733 27 JUNE 1986 MILITARY STANDARDIZATION HANDBOOK NONDESTRUCTIVE TESTING METHODS OF COMPOSITE MATERIALS - RADIOGRAPHY NO DELIVERABLE DATA REQUIRED BY THIS DOCUMENT I . THIS DOCUMENT CONTAINS PAGES AMSC NIA Approved for public re
2、lease; distribution unlimited. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-DEPARTMENT OF DEFENSE WASHINGTON, D.C. 20301 NIL-HDBK-733 141LITARY HANDBOOK FOR NONDESTRUCTIVE TESTING METHODS OF COMPOSITE MATERIALS - RADIOGRAPHY 1. This standardizatio
3、n handbook was developed by the Department of Defense with the assistance of the Amy Materials Technology Laboratory, and Dr. Frank P. Alberti of the University of Lowell, Lowell, Massachusetts, in accordance with established-procedure. It is approved for use by all Department.and Agencies of the De
4、partment of Defense. 3 i 2. It is the intent to review this handbook periodically to insure its completeness and currency. Users of this document are encouraged to report any errors discovered and any recommendations for changes or inclusions to Army Materials Technology Laboratory, ATTN: SLCNT-MSR-
5、ES, Arsenal Street, Watertown, MA 02172-2719. ii Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-_ MIL-HDBK-733 ND E 7777770 0038602 2 W MIL-HDBK-733 FOREWORD Radiography, A State-of-The-Art-Review Ultrasonics, A State-of-The-Art-Review Acoustic Emis
6、sion, A State-of-The-Art-Review Thermography, A State-of-The-Art-Review 2. Each chapter will be coordinated separately as the amount of materials to review at one time is large. After acceptance of the individual chapters as smaller handbooks, they will be incorporated into a single volume. 3. It is
7、 intended that this volume serve as a reference in which answers may be found to the more.genera1 questions concerning the technical aspects and applications of radiography to composites. iii Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TABLE OF C
8、ONTENTS (Continued) Scope General . Reference docuTnents . Government documents Other docuTnents . Definitions . Composite material investigations . Introduction Effect of scattered radiation on composites . Penetrmeters for composite materials Other penetrameter approaches . Types of defects Sampli
9、ng for an early study . Operating parameters Classification of composite defects . Type 1 defects Type 2 defects Type 3 defects.? Detection of discontinuities Detection of fiber fraction and orientation . Fiber failure of boron-epoxy laminates Technique . Identification of fiber breakage and matrix
10、cracking Examination of fiber damage . Performance of various classes of resin in carbon fiber Enhancement of small voids Examination of channel network pores Results . Conclusions . Microradiography General . Tech.que . Effects of low voltage radiation Effects of x-ray tube window Radiation attenua
11、tion below 20 KV . Measurement of fatigue damage in boron-epoxy composite laminates Type of analysis Operating parameters Relationship between damaged areas and intense heat . Development of damage . Analysis of effects of the stress state onefatigue behavior . Benefits of contact microradiography o
12、ver microphotography . Estimation of orientation of fibers to plane of the cut . composites . Page iii 1. 1 2 2 2 2 3 3 3 3 3 3 4 4 4 4 4 4 4 5 5 5 5 5 6 6 6. 6 6 6 6 7 7 7 8 8 9 10 10 10 10 10 10 iv Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Se
13、ction Page 4.11 Automatic computer-based radiographic image enhancement . 11 General 11 Electronic enhancement . 11 Electronic enhancement vs optical examination 11 Identification of artifacts 11 Value of video system 11 Further study in flaw detection 11 Improvement in interpretation and evaluation
14、 of data . 12 Signal processing techniques . 12 Method of automatic analysis . 12 Removal of unwanted features . 14 Thresholded image 14 Automatic analysis of film . 16 Enhanced images in carbon-fiber-reinforced epoxy Pressure vessel study 16 composite . 16 Ultrasonic C-Scan vs electronic image 16 A
15、dvantage of digital image analysis . 16 Another study - film image vs visual fluoroscopy 17 Conclusions of another study . 17 Results of study 17 Further study 17 Stereoradiography 17 Determination of depth of a defect . 17 Description of method - no depth perception . 17 Description of method - dep
16、th measurement 18 Results . 18 Opaque additives and image enhancement . 19 General 19 Difficulties of graphite examination . 19 Impregnation procedure . 19 Results 19 Graphite-epoxy composite investigation . 20 Experimental results . 20 Addition of TBE to slits in the specimen . 21 Study of the fail
17、ure mechanism . 22 Effect of TBE-enhanced inspection on fatigue life . 22 Effect of DIB on compression fatigue life 22 Comparisons of damage indications 22 Recommendations 22 Radiographic stereo-mode image. enhancement . 23 Technique 23 Results 23 Another image enhancement investigation 23 Use of bo
18、ron marker fi bers 24 Assessing internal features 24 Radiographic studies . 24 Types of discontinuites found with radiography . 24 Testing composite plate with boron fiber additions . 23 V D 7777770 0038bOLi b . MIL-HDBK-733 TABLE OF CONTENTS (Continued) Provided by IHSNot for ResaleNo reproduction
19、or networking permitted without license from IHS-,-,-MIL-HDBK-733 TABLE OF CONTENTS (Continued) Section Page 4.13.10.3 Types of discontinuities not found with radiog.raphy 24 4.13.10.4 Radiography using new techniques . 24 4.13.10.5 Use of tracer filaments 25 4.13.10.6 Establishing fiber orientation
20、 . 25 5-0 Neutron radiography 25 5.1 General 25 5.2 Use of converter foils . 25 5.3 Sources of neutrons . 25 5.4 Use of neutron radiography . 26 504.1 Other uses . 26 504.2 Checking structural integrity 26 5.5 Use of image enhancement additives . 27 505.1 505.2 5.6 5.6.1 5.6.2 5-6-3 5.7 5.7.1 5.792
21、5-8 5.8.1 5.8.2 Method . Results Study of penetrating radiation techniques Samples Comparison between doped and undoped samples . Results Feasibility of measuring resin content . Samples Results Inspection of fiberglass composites Method . Results 27 27 28 28 28 28 28 28 28 29 29 29 6.0 Notes . 29 6
22、.1 Conversion factors . 29 6.2 Subject term (key word) listing 29 Vi 5 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-HDBK-733 1.0 SCOPE 1.1 General This document is intended to provide information on radiographic techniques for examining discon
23、tinuities found in maw types of reinforced composites. The handbook contains varied information from the detection of discontinuities by enhancement methods to the various techniques used such as microradiography, stereoradiography and neutron radiography. The fundamentals of radiography are not inc
24、luded as this type of information is available in MIL-HDBK-728/5. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-HDBK-733 ND I 7997970 0038607 II m . MIL-HDBK-733 2.0 REFERENCED DOCUMENTS 2.1 Government documents. 2.1.1 Specifications, standards
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