ISO 7991:1987 PDF
Glass — Determination of coefficient of mean linear thermal expansion
Glass — Determination of coefficient of mean linear thermal expansion
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 7
- Дата публикации:
- 26 ноября 1987 г.
- Издание:
- ISO IS 7991 edition 1 version 1
- ICS:
- 81.040.01
The method deals with the measurement of the change of length of a glass fibre under specified conditions. The apparatus including the used dilatometers and the possibilities of corretion, the formulae for the final length and the expansion coefficient are specified. In the annex, devices for self-adjusting alignment of specimen and push-rod axis are described and illustrated.
Abstract
Overview
ISO 7991:1987 specifies a standardized laboratory method for determining the coefficient of mean linear thermal expansion of glass in its elastic, solid-like state (well below the transformation temperature). The nominal reference temperature is 20 °C, so expansion results are reported as a(20 °C; t). The method describes specimen preparation, dilatometer apparatus, furnace and temperature-measurement requirements, correction procedures and calculation formulae. An annex illustrates self-adjusting alignment devices for specimen and push‑rod axes.
Key topics and technical requirements
- Scope: Applies to common bulk-production glasses (excludes fused silica, glass-ceramics or very low-expansion glasses in normal cases).
- Specimen: Rod-shaped glass specimens (e.g., 5 mm diameter or 5×5 mm square, 25–100 mm length common). Two specimens are tested for reproducibility.
- Apparatus
- Push-rod dilatometer (simple or differential) with resolution ~2×10‑5 L (example: 2 μm per 100 mm).
- Length-measuring device accuracy ~0.1 %.
- Contact force of extensometer ≤ 1 N with spherical or planar contacts.
- Furnace compatible with dilatometer; maintain specimen temperature uniformity and repeatability ±0.5 mm position. Temperature stability ±2 °C over specimen length.
- Temperature sensing: thermocouples (type E, J or K) capable of ±2 °C accuracy per IEC.
- Test procedures
- Preferred measurement range: start ~20 °C and preferred final nominal temperatures: 100, 200, 300, 400 °C (preferred actual ranges given, e.g., 290–310 °C for 300 °C nominal).
- Heating and annealing programs specified (heating rate up to (5 ± 1) °C/min; annealing cooling ~2 ± 0.2 °C/min).
- Corrections: dilatometer blank correction (AzB), specimen‑holding assembly expansion (Az0) and thermocouple/specimen temperature lag corrections are required.
- Calculations & reporting
- Final length and a(20 °C; t) calculated using formulas in the standard with specified significant-figure rules.
- Performance checks with certified reference materials (e.g., annealed vitreous silica, sapphire, chemically pure platinum).
Applications and users
- Who uses it: Materials scientists, glass manufacturers, quality control labs, research institutes and calibration labs performing thermal property characterization of commercial glasses.
- Practical uses:
- Design and reliability assessment where dimensional changes with temperature matter (optical components, seals, display substrates).
- Material selection for assemblies requiring matched thermal expansion.
- Quality control and batch verification of production glass.
Related standards
- ISO 7884-8 - viscosity and transformation temperature references for glass.
- IEC Publication 584 (thermocouple reference tables) and IEC 584-11 (thermocouple types).
- Calibration and certified reference material guidance (REMCO/ISO).
Keywords: ISO 7991:1987, glass thermal expansion, coefficient of mean linear thermal expansion, dilatometer, push-rod dilatometer, thermocouple, annealing, glass testing.
Технические детали
- Технический комитет
- ISO/TC 48 - Laboratory equipment
- SKU
- ISO 7991:1987
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