
【国外标准】 Standard Test Method for Tension-Tension Fatigue of Polymer Matrix Composite Materials
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 This test method is designed to yield tensile fatigue data for material specifications, research and development, quality assurance, and structural design and analysis. The primary test result is the fatigue life of the test specimen under a specific loading and environmental condition. Replicate tests may be used to obtain a distribution of fatigue life for specific material types, laminate stacking sequences, environments, and loading conditions. Guidance in statistical analysis of fatigue life data, such as determination of linearized stress life (S-N) or strain-life (ε-N) curves, can be found in Practice E739.5.2 This test method can be utilized in the study of fatigue damage in a polymer matrix composite such as the occurrence of microscopic cracks, fiber fractures, or delaminations.3 The specimen's residual strength or stiffness, or both, may change due to these damage mechanisms. The loss in stiffness may be quantified by discontinuing cyclic loading at selected cycle intervals to obtain the quasi-static axial stress-strain curve using modulus determination procedures found in Test Method D3039/D3039M. The loss in strength associated with fatigue damage may be determined by discontinuing cyclic loading to obtain the static strength using Test Method D3039/D3039M.NOTE 1: This test method may be used as a guide to conduct tension-tension variable amplitude loading. This information can be useful in the understanding of fatigue behavior of composite structures under spectrum loading conditions, but is not covered in this test method.1.1 This test method determines the fatigue behavior of polymer matrix composite materials subjected to tensile cyclic loading. The composite material forms are limited to continuous-fiber or discontinuous-fiber reinforced composites for which the elastic properties are specially orthotropic with respect to the test direction. This test method is limited to unnotched test specimens subjected to constant amplitude uniaxial in-plane loading where the loading is defined in terms of a test control parameter.1.2 This test method presents two procedures where each defines a different test control parameter.1.2.1 Procedure A—A system in which the test control parameter is the load (stress) and the machine is controlled so that the test specimen is subjected to repetitive constant amplitude load cycles. In this procedure, the test control parameter may be described using either engineering stress or applied load as a constant amplitude fatigue variable.1.2.2 Procedure B—A system in which the test control parameter is the strain in the loading direction and the machine is controlled so that the test specimen is subjected to repetitive constant amplitude strain cycles. In this procedure, the test control parameter may be described using engineering strain in the loading direction as a constant amplitude fatigue variable.1.3 The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system are not necessarily exact equivalents; therefore, to ensure conformance with the standard, each system shall be used independently of the other, and values from the two systems shall not be combined.1.3.1 Within the text the inch-pound units are shown in brackets.1.4 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.1.5 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
标准号:
ASTM D3479/D3479M-19(2023)
标准名称:
Standard Test Method for Tension-Tension Fatigue of Polymer Matrix Composite Materials
英文名称:
Standard Test Method for Tension-Tension Fatigue of Polymer Matrix Composite Materials标准状态:
Active-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- ASTM E423-71(2019) Standard Test Method for Normal Spectral Emittance at Elevated Temperatures of Nonconducting Specimens
- ASTM E424-71(2023) Standard Test Methods for Solar Energy Transmittance and Reflectance (Terrestrial) of Sheet Materials
- ASTM E431-96(2022) Standard Guide to Interpretation of Radiographs of Semiconductors and Related Devices
- ASTM E433-71(2023) Standard Reference Photographs for Liquid Penetrant Inspection
- ASTM E434-10(2020) Standard Test Method for Calorimetric Determination of Hemispherical Emittance and the Ratio of Solar Absorptance to Hemispherical Emittance Using Solar Simulation
- ASTM E436-03(2021) Standard Test Method for Drop-Weight Tear Tests of Ferritic Steels
- ASTM E438-92(2024) Standard Specification for Glasses in Laboratory Apparatus
- ASTM E439-23 Standard Test Methods for Chemical Analysis of Beryllium
- ASTM E445/E445M-15(2019) Standard Test Method for Stopping Distance on Paved Surfaces Using a Passenger Vehicle Equipped with Full-Scale Tires
- ASTM E446-20 Standard Reference Radiographs for Steel Castings Up to 2 in. (50.8 mm) in Thickness
- ASTM E45-18a(2023) Standard Test Methods for Determining the Inclusion Content of Steel
- ASTM E452-02(2023) Standard Test Method for Calibration of Refractory Metal Thermocouples Using a Radiation Thermometer
- ASTM E454-12(2021) Standard Specification for Industrial Perforated Plate and Screens (Square Opening Series)
- ASTM E455-19 Standard Test Method for Static Load Testing of Framed Floor or Roof Diaphragm Constructions for Buildings
- ASTM E457-08(2020) Standard Test Method for Measuring Heat-Transfer Rate Using a Thermal Capacitance (Slug) Calorimeter