Overview
SIST ISO 1772:1995 specifies international standards for laboratory crucibles made from porcelain and silica, widely used in general laboratory applications. The document defines three crucible types based on their height-to-diameter ratios, as well as two lid types designed to ensure optimal handling and stability. Materials, construction requirements, and dimensional specifications are clearly outlined to support consistency, safety, and compatibility in lab environments globally.
This standard caters to laboratories needing reliable crucibles for tasks involving high-temperature chemical analysis and sample processing. By adhering to ISO 1772 specifications, manufacturers and users benefit from standardized sizes, materials, and design features that ensure repeatability and reliability in experimental procedures.
Key Topics
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Crucible Types:
- Type 1 (Low form) with height/diameter ratio of 0.63
- Type 2 (Medium form) with height/diameter ratio of 0.8
- Type 3 (Tall form) with height/diameter ratio of 1.25
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Lid Types:
- Type D: Slightly domed lids with a central ring or protrusion for easy lifting by crucible tongs or wire supports
- Type R: Recessed lids with design optimizations for ease of removal
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Material Requirements:
- Porcelain crucibles must be glazed on the surface (excluding base and edges optionally) and conform to ISO/R 1775
- Silica crucibles must be made from vitrified glassy silica, either translucent or transparent
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Dimensional Specifications:
- Sizes are standardized with specific diameters and heights, allowing cross-compatibility
- Diameter increments are multiples of 10 mm, with height adjusted accordingly to meet the ratio
- Wall thickness varies depending on material but must ensure structural integrity and thermal stability
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Markings and Identification:
- Each crucible and lid must be clearly marked with the type and nominal diameter (e.g., "1/30" for Type 1, 30 mm diameter)
- Manufacturer’s name or trademark must also be displayed for traceability
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Stability and Construction:
- Crucibles must stand steady on flat surfaces without wobbling
- Lid designs facilitate safe handling and prevent contamination during heating processes
Applications
ISO 1772 laboratory crucibles are essential tools across many scientific and industrial fields, including:
- Chemical and petrochemical laboratories for melting, ashing, and calcination at high temperatures
- Environmental labs performing sample digestion and residue analysis
- Metallurgical applications requiring contamination-free, heat-resistant containers
- Educational laboratories requiring standardized equipment for reproducible experimental work
The standardization of crucible dimensions and materials assists labs in selecting compatible lids and accessories, reducing the risk of experimental errors due to mismatched equipment. Manufacturers can produce versatile crucibles knowing they meet internationally accepted quality and dimensional criteria.
Related Standards
- ISO 1775 - Laboratory Porcelain Apparatus: Specifications and Test Methods
- Other ISO standards related to laboratory glassware and ceramic materials may complement ISO 1772 to ensure comprehensive quality across lab equipment
Adherence to ISO 1772 combined with referencing complementary ISO material standards ensures maximum safety, durability, and usability for laboratory crucibles made of porcelain and silica. This contributes to enhanced laboratory efficiency and confidence in high-temperature experimental results.
Keywords: ISO 1772, laboratory crucibles, porcelain crucibles, silica crucibles, crucible dimensions, laboratory equipment, high-temperature crucibles, crucible lids, ISO porcelain standards, laboratory glassware standards.