ASTM E1876-22 PDF
Standard Test Method for Dynamic Young's Modulus, Shear Modulus, and Poisson's Ratio by Impulse Excitation of Vibration
Standard Test Method for Dynamic Young's Modulus, Shear Modulus, and Poisson's Ratio by Impulse Excitation of Vibration
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 19
- Дата публикации:
- 1 апреля 2022 г.
- Издание:
- E1876
- ICS:
- 81.060.20
SIGNIFICANCE AND USE 5.1 This test method may be used for material development, characterization, design data generation, and quality control purposes. 5.2 This test method is specifically appropriate for determining the dynamic elastic modulus of materials that are elastic, homogeneous, and isotropic (3). 5.3 This test method addresses the room temperature determination of dynamic elastic moduli of elasticity of slender bars (rectangular cross section) rods (cylindrical), and flat disks. Flat plates may also be measured similarly, but the required equations for determining the moduli are not presented. 5.4 This dynamic test method has several advantages and differences from static loading techniques and from resonant techniques requiring continuous excitation. 5.4.1 The test method is nondestructive in nature and can be used for specimens prepared for other tests. The specimens are subjected to minute strains; hence, the moduli are measured at or near the origin of the stress-strain curve, with the minimum possibility of fracture. 5.4.2 The impulse excitation test uses an impact tool and simple supports for the test specimen. There is no requirement for complex support systems that require elaborate setup or alignment. 5.5 This technique can be used to measure resonant frequencies alone for the purposes of quality control and acceptance of test specimens of both regular and complex shapes. A range of acceptable resonant frequencies is determined for a specimen with a particular geometry and mass. The technique is particularly suitable for testing specimens with complex geometries (other than parallelepipeds, cylinders/rods, or disks) that would not be suitable for testing by other procedures. Any specimen with a frequency response falling outside the prescribed frequency range is rejected. The actual dynamic elastic modulus of each specimen need not be determined as long as the limits of the selected frequency range are known to include the resonant frequency that the... SCOPE 1.1 This test method covers determination of the dynamic elastic properties of elastic materials at ambient temperatures. Specimens of these materials possess specific mechanical resonant frequencies that are determined by the elastic modulus, mass, and geometry of the test specimen. The dynamic elastic properties of a material can therefore be computed if the geometry, mass, and mechanical resonant frequencies of a suitable (rectangular or cylindrical geometry) test specimen of that material can be measured. Dynamic Young's modulus is determined using the resonant frequency in either the flexural or longitudinal mode of vibration. The dynamic shear modulus, or modulus of rigidity, is found using torsional resonant vibrations. Dynamic Young's modulus and dynamic shear modulus are used to compute Poisson's ratio. 1.2 Calculations are valid for materials that are elastic, homogeneous, and isotropic. Anisotropy can add additional calculation errors. See Appendix X1 for details. 1.3 The use of mixed numerical-experimental techniques (MNET) is outside the scope of this standard. 1.4 This test method may be used for determining dynamic Young’s modulus for materials of a composite character (particulate, whisker or fiber reinforced) or other anisotropic materials only after the effect of the reinforcement in the test specimen has been considered. Examples of the characteristics of the reinforcement that can affect the measured dynamic Young’s modulus are volume fraction, size, morphology, distribution, orientation, elastic properties, and interfacial bonding. 1.4.1 The effect of the character of the reinforcement shall be considered in interpreting the test results for these types of materials. Note 1: The properties of the reinforcement will directly affect measured elastic properties. Data shown in (1)2 indicates the possibility of underestimating the dynamic Young’s modulus by as much as 20 % due to anisotropy...
Abstract
Overview
ASTM E1876-22, "Standard Test Method for Dynamic Young's Modulus, Shear Modulus, and Poisson's Ratio by Impulse Excitation of Vibration," is an internationally recognized standard developed by ASTM International. This test method provides procedures for non-destructively determining the dynamic elastic properties of materials, specifically Young's modulus, shear modulus, and Poisson's ratio, through impulse excitation of vibration at ambient temperatures.
The method is applicable to elastic, homogeneous, and isotropic materials, using precise measurements of specimen geometry, mass, and mechanical resonant frequencies. These dynamic properties are crucial for material development, characterization, design data generation, and quality control.
Key Topics
- Dynamic Elastic Property Measurement: The standard describes how to determine mechanical properties such as Young’s modulus (elastic modulus), shear modulus, and Poisson’s ratio by analyzing the resonant vibration frequencies of a material specimen.
- Non-destructive Testing: ASTM E1876-22 emphasizes non-destructive evaluation, allowing for the assessment of mechanical properties without damaging the material.
- Specimen Requirements: The method applies to slender bars (rectangular or cylindrical), rods, and flat disks. Uniform geometry and precise measurement of dimensions and mass are essential for valid results.
- Impulse Excitation: The technique uses an impact tool and simple supports to excite the specimen, with responses measured using either contact or non-contact transducers. This allows for quick setup and repeatability.
- Material Suitability: The method is most accurate for elastic, homogeneous, isotropic materials but may be applied to composites and anisotropic materials with caution and proper interpretation.
- Resonant Frequency Analysis: Fundamental and higher-order resonant frequencies are measured and used in standard equations to calculate dynamic moduli.
Applications
- Material Development and Characterization: Provides fast, non-destructive evaluation of mechanical properties, supporting the development and optimization of metals, ceramics, polymers, and composites.
- Quality Control: Enables manufacturers to verify material integrity and uniformity by quickly measuring the dynamic modulus and identifying specimens that fall outside preset frequency ranges.
- Design Data Generation: Supplies reliable elastic property data for engineers in structural design, ensuring accurate modeling and prediction of material behavior under dynamic loads.
- Detecting Material Defects: Serves as a diagnostic tool to identify cracks, voids, or structural discontinuities by comparing measured frequencies against defect-free specimens.
- Testing Complex Geometries: Suitable for components with regular or irregular shapes that cannot be evaluated easily by other resonance or static test methods.
Related Standards
ASTM E1876-22 references several other ASTM standards relevant to dynamic elastic property measurement:
- ASTM C215: Test Method for Fundamental Transverse, Longitudinal, and Torsional Resonant Frequencies of Concrete Specimens
- ASTM C623: Test Method for Young’s Modulus, Shear Modulus, and Poisson’s Ratio for Glass and Glass-Ceramics by Resonance
- ASTM C747: Test Method for Moduli of Elasticity and Fundamental Frequencies of Carbon and Graphite Materials by Sonic Resonance
- ASTM C848: Test Method for Young’s Modulus, Shear Modulus, and Poisson’s Ratio For Ceramic Whitewares by Resonance
- ASTM C1198 & C1259: Related to dynamic elastic moduli determination in advanced ceramics
- ASTM E6 & E177: Terminology and practice standards for mechanical testing
ASTM E1876-22 plays a vital role in modern materials engineering, offering a reliable, non-destructive approach to determining dynamic elastic properties, supporting robust material evaluation for a wide range of industries.
Технические детали
- Технический комитет
- E28 - Mechanical Testing
- SKU
- ASTM E1876-22
Похожие стандарты
Другие стандарты ASTM
ASTM-TPT-47
Phase I & Phase II Environmental Site Assessment Processes
Phase I & Phase II Environmental Site Assessment Processes
ASTM-TPT-8
Phase I Environmental Site Assessment Practices For Commercial Real Estate: Phase I Site Assessment & Transac…
ASTM-TPT-1137
ASTM D975 Standard Specification for Diesel Fuel
ASTM D975 Standard Specification for Diesel Fuel
ASTM-TPT-1202
ASTM D8421 Standard Test Method for Determination of Per- and Polyfluoroalkyl Substances (PFAS) in Aqueous Ma…
ASTM D8421 Standard Test Method -- eLearning Course
ASTM-TPT-691
Microaprendizagem para D4057: Amostragem de ponto (PT)
D4057 Microlearning: Spot Sampling Portuguese
ASTM-TPT-1091
Metodo de prueba estandar D4052 de ASTM -- Curso de aprendizaje electrónico (ES)
Modulo eLearning para ASTM D4052 en espanol
ASTM ACEM20180086
Using Neutron Radiography to Quantify the Settlement of Fresh Concrete
Specifications have been implemented for concrete bridge decks in North America that restrict the use of higher slump concrete mixtures primarily because of concerns about differential settlement and…
ASTM ACEM20180041
Experimental Study of Competing Failure of Reinforced Concrete Based on the Weibull Distribution
To predict the failure lifetime of reinforced concrete, a current accelerating corrosion test was performed on concrete by simulating the environment in an area with saline soil. To study the concret…