
【国外标准】 Standard Practice for Examination of Gas-Filled Filament-Wound Composite Pressure Vessels Using Acoustic Emission
本网站 发布时间:
2024-02-28
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
5.1 Due to safety considerations, the Compressed Gas Association (CGA) and others have produced guidelines which address in-service inspection of NGV fuel containers (see 2.2 – 2.4). AE examination is listed as an alternative to the minimum three-year visual examination which generally requires that the container be removed from the vehicle to expose the entire container surface. The AE method allows “in-situ” examination of the container.5.1.1 Slow-fill pressurization must proceed at flow rates that do not produce background noise from flow of the pressurizing medium. Acoustic emission data are recorded throughout a pressurization range (that is, 50 % to 100 % of AE examination pressure).5.1.2 Fast-fill pressurization can be used if hold periods are provided. Acoustic emission data are recorded only during the hold periods.NOTE 1: Fast-fill pressurization is less appropriate for carbon (or graphite) composites due to the lower sensitivity of carbon fibers to stress rupture compared to other fibers.5.1.3 Background noise above the threshold will contaminate the AE data and render them useless. Users must be aware of the following common causes of background noise: high fill rate (measurable flow noise); mechanical contact with the vessel by objects; electromagnetic interference (EMI) and radio frequency interference (RFI) from nearby broadcasting facilities and from other sources; leaks at pipe or hose connections and airborne particles, insects, rain and snow. This practice should not be used if background noise cannot be eliminated or controlled.5.2 Sensitivity is influenced by factors that affect elastic wave propagation, sensor coupling and signal processor settings.5.3 It is possible to measure AE from AE sources that cannot be verified by other NDE methods.1.1 This practice provides guidelines for acoustic emission (AE) examination of filament-wound composite pressure vessels, for example, the type used for fuel tanks in vehicles which use natural gas fuel.1.2 This practice requires pressurization to a level equal to or greater than what is encountered in normal use. The tanks' pressurization history must be known in order to use this practice. Pressurization medium may be gas or liquid.1.3 This practice is limited to vessels designed for less than 275 bar [4,000 psi] maximum allowable working pressure and water volume less than 1 m3 or 1000 L [35.4 ft3].1.4 AE measurements are used to detect emission sources. Other nondestructive examination (NDE) methods may be used to gain additional insight into the emission source. Procedures for other NDE methods are beyond the scope of this practice.1.5 This practice applies to examination of new and in-service, Type II, filament-wound composite pressure vessels.1.6 This practice applies to examinations conducted at ambient temperatures above 20°C [70°F]. This practice may be used at ambient temperatures below 20°C [70°F] if provision has been made to fill to the tank's rated pressure at 20°C [70°F]. Also that the test temperature must not exceed the glass transition temperature of the matrix material.1.7 Units—The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the standard.1.8 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. Specific precautionary statements are given in Section 8.
标准号:
ASTM E2191/E2191M-16
标准名称:
Standard Practice for Examination of Gas-Filled Filament-Wound Composite Pressure Vessels Using Acoustic Emission
英文名称:
Standard Practice for Examination of Gas-Filled Filament-Wound Composite Pressure Vessels Using Acoustic Emission标准状态:
Active-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- ASTM E3104-17(2023) Standard Specification for Strippable and Removable Coatings to Mitigate Spread of Radioactive Contamination
- ASTM E3107/E3107M-23 Standard Test Method for Resistance to Penetration and Backface Deformation for Ballistic-resistant Torso Body Armor and Shoot Packs
- ASTM E3111/E3111M-22 Standard Test Methods for Ballistic Resistant Head Protection
- ASTM E3115-17(2023) Standard Guide for Capturing Facial Images for Use with Facial Recognition Systems
- ASTM E3116-23 Standard Test Method for Viscosity Measurement Validation of Rotational Viscometers
- ASTM E3118/E3118M-22 Standard Test Methods to Evaluate Seismic Performance of Suspended Ceiling Systems by Full-Scale Dynamic Testing
- ASTM E3119-19 Standard Test Method for Accelerated Aging of Environmentally Controlled Dynamic Glazing
- ASTM E3120-19 Standard Specification for Evaluating Accelerated Aging Performance of Environmentally Controlled Dynamic Glazings
- ASTM E3121/E3121M-17 Standard Test Methods for Field Testing of Anchors in Concrete or Masonry
- ASTM E3130-21 Standard Guide for Developing Cost-Effective Community Resilience Strategies
- ASTM E3131-17 Standard Specification for Nucleic Acid-Based Systems for Bacterial Pathogen Screening of Suspicious Visible Powders
- ASTM E3132/E3132M-17 Standard Practice for Evaluating Response Robot Logistics: System Configuration
- ASTM E3134-20 Standard Specification for Transportation Tunnel Structural Components and Passive Fire Protection Systems
- ASTM E3137/E3137M-18 Standard Specification for Heat Meter Instrumentation
- ASTM E314-16 Standard Test Methods for Determination of Manganese in Iron Ores by Pyrophosphate Potentiometry and Periodate Spectrophotometry Techniques