ISO 20274:2017
Vitreous and porcelain enamels — Preparation of samples and determination of thermal expansion coefficient
Vitreous and porcelain enamels — Preparation of samples and determination of thermal expansion coefficient
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 6
- Дата публикации:
- 18 июля 2017 г.
- Издание:
- ISO IS 20274 edition 1 version 1
- ICS:
- 25.220.50
ISO 20274:2017 specifies the procedures for the preparation of enamel samples for measurement of the thermal length change and calculation of the thermal expansion coefficient.
Abstract
Overview
ISO 20274:2017 - “Vitreous and porcelain enamels - Preparation of samples and determination of thermal expansion coefficient” - defines standardized procedures for preparing enamel specimens and for measuring thermal length change to calculate the coefficient of thermal expansion (CTE). The standard ensures reproducible specimen geometry, controlled sample production (casting, drawing, sintering), and measurement conditions so results are comparable across laboratories and suppliers.
Key topics and requirements
- Specimen geometry and tolerances: Straight rod specimens with either approximately circular or square cross-sections; dimensional tolerances are tight (diameter/side ±1 mm; end faces parallel and perpendicular to axis within ±3°; initial length ±0.5 mm) to fit dilatometer fixtures.
- Preparation methods: Three defined routes with identification codes - G (casting), Z (drawing/étirage), S (sintering/frittage). Procedures cover melting, mold types (ceramic or metal), preheating (ceramic molds ~500 °C), and finishing (cutting, polishing and stress relief).
- Stress relief (annealing): Specimens must be sufficiently detensioned by controlled annealing to avoid anomalies in expansion traces; the standard gives an example annealing cycle (e.g., ~30 °C above transformation temperature, slow controlled cooling).
- Apparatus and conditions: Typical equipment includes a dilatometer (contact or optical), furnace (approx. 800–1 100 °C), non-contaminating crucibles, and appropriate molds. Heating rate must be ≤10 °C/min (5 °C/min recommended); typical start temperature ~20 °C.
- Measurement and calibration: CTE measurement follows ISO 7991 procedures. Results must be corrected for fixture/reference responses and temperature non‑uniformity. Calibration materials (e.g., fused silica, alumina, platinum, copper) should have CTE within ±25% of the specimen’s CTE; inert atmosphere required when using copper.
- Reporting and results: Clause 9 requires a formal test report; include specimen identification, preparation route (G/Z/S), measurement method and conditions, calibration material and the reported linear or cubic CTE values.
Applications and users
- Who uses it: Materials scientists, enamel manufacturers, quality-control laboratories, testing labs, and coating/substrate engineers.
- Practical applications:
- Ensuring enamel-to-substrate CTE compatibility for porcelain enameled cookware, appliances, tanks and industrial components.
- R&D and formulation optimization to reduce thermal stress and cracking.
- Quality assurance and supplier verification of enamel batches.
Related standards
- ISO 7991 - Determination of linear thermal expansion coefficient (referenced for measurement/calculation)
- ISO 19496-1 - Terminology for vitreous enamels (definitions used)
Keywords: ISO 20274:2017, thermal expansion coefficient, coefficient of thermal expansion (CTE), vitreous enamels, porcelain enamels, specimen preparation, dilatometer, enamel testing, casting, sintering, annealing.
Технические детали
- Технический комитет
- ISO/TC 107 - Metallic and other inorganic coatings
- SKU
- ISO 20274:2017
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