ISO 11561:1999 PDF
Ageing of thermal insulation materials — Determination of the long-term change in thermal resistance of closed-cell plastics (accelerated laboratory test methods)
Ageing of thermal insulation materials — Determination of the long-term change in thermal resistance of closed-cell plastics (accelerated laboratory test methods)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 19
- Дата публикации:
- 22 июля 1999 г.
- Издание:
- ISO IS 11561 edition 1 version 1
- ICS:
- 91.100.60
This International Standard specifies two laboratory test methods, based on slicing and scaling techniques, to determine the long-term changes in the thermal resistance of closed-cell (normally 90 %) cellular plastic materials that contain gases which, through diffusion processes, affect the properties of a foam with time. Using standard methods for the measurement of thermal resistance, method A consists of periodic measurements performed over a short time interval on thin specimens conditioned in a controlled ambient temperature environment. The results of relative change with time are used in conjunction with a mathematical technique to derive the thermal resistance of greater thicknesses of the material as a function of time. Method B describes a simple test to determine a conservative design life-time value (25 years and longer) for an unfaced, closed-cell, cellular plastic product. This method is limited currently to unfaced homogeneous materials. For this method, multiple specimens of the core and surfaces of materials with variations in the slope of the primary stage thermal resistivity and a time relationship of less than 10 % within a sample are considered to be homogeneous. Generally, products with natural skins or with density deviations normally found with such products may be considered acceptable for test by this technique.
Abstract
Overview
ISO 11561:1999 - "Ageing of thermal insulation materials - Determination of the long‑term change in thermal resistance of closed‑cell plastics (accelerated laboratory test methods)" defines laboratory procedures to quantify how the thermal resistance of closed‑cell (≈90% closed) plastic insulation changes with time due to gas diffusion. The standard provides accelerated, slice‑based test techniques and scaling rules to predict long‑term thermal performance (including conservative design life‑time values of 25 years or more) without waiting decades for natural ageing.
Key topics and requirements
- Scope: Applies to closed‑cell cellular plastics containing blowing agents and gases whose diffusion alters foam properties over time.
- Two test methods:
- Method A (slicing & scaling): Periodic thermal resistance measurements on thin specimens (≈10 mm, not less than 6 mm) conditioned at controlled ambient conditions. Results are scaled mathematically to predict thermal resistance for greater thicknesses as a function of time.
- Method B (simplified design value): A conservative, shorter test to determine a long‑term design thermal resistance (≥25 years) for unfaced, homogeneous materials; suited for product‑level lifetime estimates.
- Conditioning and measurement: Specimens are conditioned at controlled temperature (recommended (23 ± 2) °C) and humidity (typically (50 ± 5) % RH). Thermal resistance testing uses standard heat flow meter or guarded hot‑plate methods (ISO 8301, ISO 8302).
- Ageing mechanics: Recognizes primary stage (thermal drift from fast N2/O2 diffusion) and secondary stage (slow outward diffusion of blowing agents). Includes factors such as damaged surface layers (TDSL), specimen preparation, and inhomogeneities.
- Reporting and precision: Specifies sampling, dimensional measurement tolerances, test intervals and requirements for test reports. Informative annexes provide the analytical model and an example for faced products.
Applications and users
ISO 11561 is practical for:
- Manufacturer R&D and quality control of closed‑cell foam insulation (XPS, PIR, PU foams).
- Independent test laboratories performing accelerated ageing and thermal performance verification.
- Building designers, energy modelers and specifiers who need reliable long‑term thermal resistance values for life‑cycle energy calculations and code compliance.
- Certification bodies and product assessors establishing design life‑time thermal performance.
Benefits include faster, reproducible prediction of long‑term insulation performance, improved energy‑use estimates, and defensible lifetime design values.
Related standards
- ISO 7345 (thermal insulation - quantities & definitions)
- ISO 8301 (heat flow meter apparatus)
- ISO 8302 (guarded hot plate apparatus)
- ISO 9346 (mass transfer - definitions)
Keywords: ISO 11561, ageing, thermal insulation, closed‑cell plastics, thermal resistance, accelerated laboratory test methods, slicing, scaling, Method A, Method B, design life‑time, diffusion, blowing agent.
Технические детали
- Технический комитет
- ISO/TC 163/SC 1 - Test and measurement methods
- SKU
- ISO 11561:1999
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