ISO 6721-2:2019 PDF
Plastics — Determination of dynamic mechanical properties — Part 2: Torsion-pendulum method
Plastics — Determination of dynamic mechanical properties — Part 2: Torsion-pendulum method
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 13
- Дата публикации:
- 29 апреля 2019 г.
- Издание:
- ISO IS 6721 edition 3 version 1
- ICS:
- 83.080.01
This document specifies two methods (A and B) for determining the linear dynamic mechanical properties of plastics, i.e. the storage and loss components of the torsional modulus, as a function of temperature, for small deformations within the frequency range from 0,1 Hz to 10 Hz. NOTE The temperature dependence of these properties, measured over a sufficiently broad range of temperatures (for example from −50 °C to +150 °C for most commercially available plastics), gives information on the transition regions (for example the glass transition and the melting transition) of the polymer. It also provides information concerning the onset of plastic flow. The two methods described are not applicable to non-symmetrical laminates (see ISO 6721-3). The methods are not suitable for testing rubbers, for which the user is referred to ISO 4664-2.
Abstract
Overview
ISO 6721-2:2019 specifies the torsion-pendulum method for determining the linear dynamic mechanical properties of plastics. The standard defines two test methods (Method A and Method B) to measure the storage (G') and loss (G'') components of the torsional modulus as a function of temperature for small deformations within the frequency range 0.1 Hz to 10 Hz. Temperature-dependent measurements (for example −50 °C to +150 °C for many commercial plastics) reveal polymer transition regions such as the glass transition, melting transitions and the onset of plastic flow.
Key topics and requirements
- Test scope: Linear dynamic mechanical properties of plastics (not suitable for rubbers; see ISO 4664-2) and not for non‑symmetrical laminates (see ISO 6721-3).
- Two pendulum arrangements:
- Method A: inertial element suspended from specimen; lower end excited.
- Method B: inertial element suspended from a wire/counterweight; upper end excited (wire becomes part of the oscillating system).
- Frequency and temperature: Measurements over 0.1–10 Hz; temperature runs can use a single inertial element (frequency varies with temperature) or interchangeable inertial elements to keep frequency approximately constant.
- Apparatus essentials:
- Inertial element with recommended moment of inertia (≈ 3 × 10^−5 kg·m^2 for standard specimens; higher for filled polymers).
- Self-aligning clamps, thermally non‑conducting connecting rod, temperature‑controlled chamber, gas supply and accurate temperature measurement (per ISO 6721-1).
- Oscillation-inducing device limited to ~1.5° amplitude (3° for low‑modulus materials).
- Frequency and amplitude recording accurate to ±1% (±5% within transition region).
- Specimen geometry (recommended): free length 40–120 mm (preferably 50 mm); width 5–11 mm (preferably 10 mm); thickness 0.13–2 mm (preferably 1 mm).
- Results: Calculation of logarithmic decrement and conversion to torsional storage modulus G' and loss modulus G'' to characterize viscoelastic behavior.
Applications - who uses this standard
- Materials scientists and polymer engineers assessing temperature-dependent viscoelasticity of plastics.
- Quality control and R&D teams evaluating transition temperatures, damping properties and the onset of flow.
- Test laboratories performing standardized dynamic mechanical analysis (torsional mode) for material selection, product development and failure analysis.
- Manufacturers of plastics, composites and laboratory test equipment specifying apparatus and procedures to ensure reproducible torsional modulus data.
Related standards
- ISO 6721-1 - General principles for determination of dynamic mechanical properties
- ISO 6721-3 - Bending methods (non‑symmetrical laminate considerations)
- ISO 4664-2 - Methods for testing rubbers (when plastics methods are not applicable)
Keywords: ISO 6721-2, torsion-pendulum method, plastics dynamic mechanical properties, torsional modulus, storage modulus G', loss modulus G'', temperature dependence.
Технические детали
- Технический комитет
- ISO/TC 61/SC 5 - Physical-chemical properties
- SKU
- ISO 6721-2:2019
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