ISO 6721-12:2022
Plastics — Determination of dynamic mechanical properties — Part 12: Compressive vibration — Non-resonance method
Plastics — Determination of dynamic mechanical properties — Part 12: Compressive vibration — Non-resonance method
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 8
- Дата публикации:
- 23 февраля 2022 г.
- Издание:
- ISO IS 6721 edition 2 version 1
- ICS:
- 83.080.01
This document describes a compressive vibration, non-resonance method for determining the components of the compressive complex modulus E* of polymers at frequencies typically in the range 0,01 Hz to 100 Hz. The method is applicable for measuring dynamic storage moduli of semi-rigid polymers in the range 1 MPa to 1 GPa. This method is particularly suited to the measurements of dynamic moduli and loss factors of semi‑rigid plastics in the shape of a right-angled prism, cylinder or tube and can be conveniently used to study the variation of dynamic properties with temperature and frequency through most of the glass‑rubber relaxation region (see ISO 6721-1).
Abstract
Overview
ISO 6721-12:2022 - "Plastics - Determination of dynamic mechanical properties - Part 12: Compressive vibration - Non-resonance method" specifies a laboratory method to measure the compressive complex modulus E* of polymers using a non‑resonance compressive vibration technique. The standard covers measurements typically from 0.01 Hz to 100 Hz and is applicable to semi‑rigid plastics with dynamic storage moduli in the range 1 MPa to 1 GPa. It is especially suited for right‑angled prisms, cylinders or tubes and for studying temperature‑ and frequency‑dependent viscoelastic behavior across the glass–rubber transition.
Key topics and technical requirements
- Principle: Apply a sinusoidal compressive force or displacement well below the specimen’s fundamental resonance; measure force, displacement and phase angle to calculate E′ (storage modulus), E″ (loss modulus) and tan δ (loss factor).
- Frequency & modulus ranges: Typical frequency 0.01–100 Hz; storage modulus measurement range 1 MPa–1 GPa.
- Test device & transducers:
- Loading assembly with vibrator, compression plates and force/displacement transducers.
- Compression plate finish: Ra = 0.25 µm, parallel surfaces.
- Transducer calibration traceable to national standards; calibration accuracy ±2% for minimum amplitudes.
- Data acquisition accuracy: amplitude ±0.5%, phase ±0.05°, frequency ±1%.
- Temperature control:
- Temperature‑controlled enclosure with recommended range (example) −100 °C to +250 °C; temperature measurement to ±0.5 °C.
- Tests can be run as temperature sweeps to capture relaxation behavior.
- Specimen geometry & preparation:
- Shapes: right prism, cylinder or tube; length/width (or diameter) ratio between 1 and 2 (preferably 1).
- Dimensional measurement accuracy ±0.5% or ±0.05 mm.
- Machined ends must be flat, parallel and perpendicular to the axis.
- Procedure, calculations & reporting: Steps for mounting, preloading, performing tests, computing E′, E″, tan δ, presentation vs temperature/frequency, precision and required test report items.
Practical applications
- Characterizing viscoelastic and damping properties of semi‑rigid polymers for product design and material selection.
- Studying glass‑rubber transition and temperature/frequency dependence of compressive moduli.
- Quality control and comparative testing for automotive, aerospace, electronics, consumer goods, vibration‑isolation components, and polymer R&D.
- Input data for finite element models where compressive dynamic properties and loss factors are needed.
Who uses this standard
- Materials testing laboratories and conformity assessment bodies
- Polymer R&D and formulation scientists
- Product designers and mechanical engineers working on vibration and damping
- Manufacturers needing standardized test methods for specifications and regulatory compliance
Related standards
- ISO 6721-1 (General principles for dynamic mechanical properties)
- Other parts of the ISO 6721 series and specimen preparation standards referenced (e.g., ISO 293, ISO 294-1, ISO 295, ISO 10724-1)
Keywords: ISO 6721-12:2022, compressive vibration, non-resonance method, dynamic mechanical properties, compressive complex modulus, storage modulus, loss factor, polymers, semi-rigid plastics.
Технические детали
- Технический комитет
- ISO/TC 61/SC 5 - Physical-chemical properties
- SKU
- ISO 6721-12:2022
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