ISO 6892-4:2015
Metallic materials — Tensile testing — Part 4: Method of test in liquid helium
Metallic materials — Tensile testing — Part 4: Method of test in liquid helium
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 13
- Дата публикации:
- 29 сентября 2015 г.
- Издание:
- ISO IS 6892 edition 1 version 1
- ICS:
- 77.040.10
ISO 6892-4:2015 specifies the method of tensile testing of metallic materials in liquid helium (the boiling point is ?269 °C or 4,2 K, designated as 4 K) and defines the mechanical properties that can be determined. This part of ISO 6892 may apply also to tensile testing at cryogenic temperatures (less than ?196 °C or 77 K), which requires special apparatus, smaller test pieces, and concern for serrated yielding, adiabatic heating, and strain-rate effects. To conduct a tensile test according to this part of ISO 6892 at 4 K, the test piece installed in a cryostat is fully submerged in liquid helium (He) and tested using displacement control at a nominal strain rate of 10−3 s−1 or less. NOTE The boiling point of the rare 3He isotope is 3,2 K. Usually, the tests are performed in 4He or a mixture of 3He and 4He with a high concentration of 4He. Therefore, the temperature is, as designated before, 4 K.
Abstract
Overview
ISO 6892-4:2015 - Metallic materials - Tensile testing - Part 4: Method of test in liquid helium - specifies a standardized method for performing tensile tests on metallic materials fully submerged in liquid helium (boiling point ≈ −269 °C or 4.2 K, designated as 4 K). The standard defines which mechanical properties can be measured, the required test environment (cryostat and dewar), and special procedural and apparatus requirements for reliable cryogenic tensile testing.
Key topics and technical requirements
- Test environment: Test pieces are fully submerged in liquid helium (typically 4He or a 3He/4He mix with high 4He concentration). Note: 3He has a boiling point of 3.2 K.
- Control mode and strain rate: Displacement control is specified for 4 K tests with a nominal strain rate ≤ 10−3 s−1. Strain-control is preferred where applicable.
- Measured properties: Tensile strength (Rm), 0.2% proof strength (Rp0.2), discontinuous yielding strength (Ri), elongation after fracture (A), and reduction of area (Z).
- Cryogenic effects: The standard addresses serrated (discontinuous) yielding, adiabatic heating, and strain‑rate sensitivity-phenomena common at liquid‑helium temperatures that affect measurements and interpretation.
- Apparatus and calibration: Machines must be verified per ISO 7500-1 (force measurement) and extensometer systems per ISO 9513. Compliance (system stiffness), alignment, and use of cryogenic‑tough materials for grips and load train are emphasized.
- Test pieces: Smaller or sub‑size specimens and special geometries may be required; sampling and gauge‑length definitions are provided.
- Procedure and reporting: Procedures for cooling, installation in a cryostat, determining original cross‑section, marking gauge length, and documenting measurement uncertainty are included.
Applications and users
- Who uses ISO 6892-4:2015: Materials scientists, mechanical and cryogenic engineers, testing laboratories, research institutions, and manufacturers of superconducting or cryogenic equipment.
- Practical applications:
- Qualification of materials for superconducting magnets, particle accelerators, and MRI systems.
- Material selection and QA for space hardware and cryogenic storage systems.
- R&D on alloys intended for extreme‑low‑temperature service.
- Comparative property data for engineering design at 4 K and other cryogenic temperatures.
Related standards
- ISO 6892-1 (tensile testing at room temperature)
- ISO 6892-3 (method of test at low temperature)
- ISO 7500-1 (calibration/verification of force‑measuring systems)
- ISO 9513 (extensometer calibration)
ISO 6892-4:2015 is essential for accurate, reproducible tensile testing in liquid helium and for interpreting cryogenic mechanical behavior where serrated yielding and adiabatic heating influence results.
Технические детали
- Технический комитет
- ISO/TC 164/SC 1 - Uniaxial testing
- SKU
- ISO 6892-4:2015
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