ISO 3219-2:2021 PDF
Rheology — Part 2: General principles of rotational and oscillatory rheometry
Rheology — Part 2: General principles of rotational and oscillatory rheometry
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 45
- Дата публикации:
- 13 мая 2021 г.
- Издание:
- ISO IS 3219 edition 1 version 1
- ICS:
- 83.080.01
This document specifies the general principles of rotational and oscillatory rheometry. Detailed information is presented in Annex A. Further background information is covered in subsequent parts of the ISO 3219 series, which are currently in preparation.
Abstract
Overview
ISO 3219-2:2021 - Rheology: Part 2 defines the general principles of rotational and oscillatory rheometry. It sets out measuring principles, symbols, terms and definitions, and the structure of measuring assemblies used to determine rheological properties such as shear viscosity, shear stress, shear rate, and viscoelastic parameters. Detailed practical information is provided in Annex A, and the document references ISO 3219-1 for general terms and definitions.
Key topics and technical requirements
- Measuring principles: Distinguishes rotational (steady or variable loading) and oscillatory tests (imposed oscillatory strain or stress) and explains controlled-deformation (CD), controlled-rate (CR) and controlled-stress (CS) test modes.
- Basic equations: Includes core relations for shear stress (τ = F/A), shear rate (γ̇ = v/h), and viscosity (η = τ/γ̇) using the two-plate model; defines sinusoidal strain and stress relationships in oscillatory tests and the loss angle δ.
- Rheological parameters: Defines elastic (storage) modulus G′, viscous (loss) modulus G′′, complex viscosity |η*| and loss factor tan δ for viscoelastic characterization.
- Measuring assembly requirements: Coverage of temperature control systems, measuring geometries and accessories. Geometries include absolute measuring geometries (where flow profiles and rheological parameters can be calculated exactly) and relative measuring geometries (where they cannot). Specific geometries addressed include cone‑plate, coaxial cylinders and plate‑plate configurations.
- Geometric and mechanical factors: Introduces symbols and factors such as the flow field coefficient (k), strain factor, shear stress factor, geometry compliance and torsional compliance.
- Practical influences: Terms and phenomena like no‑slip condition and wall slip are defined; measurement artefacts (bearing friction, transducer inertia, drive losses) are identified and quantified via defined symbols.
Applications and users
ISO 3219-2 is relevant for:
- Materials scientists and rheologists characterizing fluids and soft solids (paints, varnishes, polymers, coatings, pastes).
- QA/QC laboratories and test houses establishing reproducible rheological test methods.
- Instrument manufacturers (rotational/oscillatory rheometers) designing compliant measuring assemblies and reporting test performance.
- R&D teams optimizing formulations where viscosity and viscoelastic behavior (G′, G′′, tan δ) affect processing and end‑use performance.
Practical applications include formulation development, process control, quality acceptance testing, and comparative material evaluation using standardized rotational and oscillatory rheometry procedures.
Related standards
- ISO 3219-1: General terms and definitions for rotational and oscillatory rheometry (normative reference).
- Other parts of the ISO 3219 series (background and application‑specific parts) are in preparation and provide further guidance.
Keywords: ISO 3219-2, rheology, rotational rheometry, oscillatory rheometry, shear viscosity, shear stress, shear rate, G′ G′′, rheometer, measuring geometries, cone-plate, plate-plate, coaxial cylinders.
Технические детали
- Технический комитет
- ISO/TC 35/SC 9 - General test methods for paints and varnishes
- SKU
- ISO 3219-2:2021
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
BS EN ISO 3219-1:2021
ДействующийRheology. Vocabulary and symbols for rotational and oscillatory rheometry.
SIST EN ISO 3219-2:2021
ДействующийRheology - Part 2: General principles of rotational and oscillatory rheometry (ISO 3219-2:2021)
Overview SIST EN ISO 3219-2:2021 specifies the general principles of rotational and oscillatory rheometry, establishing a standardized approach for measuring the rheological properties of fluids and…
ISO 8689-1:2000
ДействующийWater quality — Biological classification of rivers — Part 1: Guidance on the interpretation of biological qu…
Overview ISO 8689-1:2000, titled Water quality - Biological classification of rivers - Part 1: Guidance on the interpretation of biological quality data from surveys of benthic macroinvertebrates, is…
ISO/ASTM51540-04(2012)
ОтменёнStandard Practice for Use of a Radiochromic Liquid Dosimetry System (Withdrawn 2020)
Significance and Use4.1 The radiochromic liquid dosimetry system provides a means of measuring absorbed dose in materials (5-7). Under the influence of ionizing radiation, chemical reactions take pla…
ISO/ASTM51204-04
ДействующийStandard Practice for Dosimetry in Gamma Irradiation Facilities for Food Processing (Withdrawn 2013)
Significance and Use4.1 Food products may be treated with ionizing radiation, such as gamma-rays from 60Co or 137Cs sources, for numerous purposes, including control of parasites and pathogenic micro…
ISO/ASTM51431-05
ОтменёнStandard Practice for Dosimetry in Electron Beam and X-Ray (Bremsstrahlung) Irradiation Facilities for Food P…
Significance and Use4.1 Food products may be treated with acceleratorgenerated radiation (electrons and X-rays) for numerous purposes, including control of parasites and pathogenic microorganisms, in…
ISO/ASTM52628-20e1
ДействующийStandard Practice for Dosimetry in Radiation Processing
1.1 This practice describes the basic requirements that apply when making absorbed dose measurements in accordance with the ASTM E61 series of dosimetry standards. In addition, it provides guidance o…
ISO/ASTM52921-13(2019)
ДействующийStandard Terminology for Additive Manufacturing—Coordinate Systems and Test Methodologies
Significance and Use 3.1 Although many additive manufacturing systems are based heavily upon the principles of Computer Numerical Control (CNC), the coordinate systems and nomenclature specific to CN…