ISO 8065:2024
Composites and reinforcements fibres — Mechanoluminescent visualization method of crack propagation for joint evaluation
Composites and reinforcements fibres — Mechanoluminescent visualization method of crack propagation for joint evaluation
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 26
- Дата публикации:
- 22 мая 2024 г.
- Издание:
- ISO IS 8065 edition 1 version 1
- ICS:
- 83.120
This document applies to the measurement of crack tip position and crack propagation on the bonding surface of carbon fibre reinforced plastic (CFRPs) and metal assemblies bonded panels. This document does not apply to the visualization measurement of strain distribution or defects during load application to specimens. This document does not intend to: a) omit relevant field tests for CFRP related engineering; b) generally specify the dimensions of test specimen to represent CFRPs related bonded or fastened structures; c) superimpose test results for specific applications of the parameters that exceed the range of this document.
Abstract
Overview
ISO 8065:2024 - "Composites and reinforcement fibres - Mechanoluminescent visualization method of crack propagation for joint evaluation" specifies a standardized test method to visualize and measure crack tip position and crack propagation on the bonding surface of carbon fibre reinforced plastic (CFRP) to metal assemblies. The method uses mechanoluminescence (ML) - luminescence generated by mechanical stimulation - applied as an ML paint coating to reveal strain concentration at crack tips. ISO 8065:2024 is intended for laboratory evaluation of bonded CFRP‑metal panels and supports quantitative fracture toughness testing (e.g., DCB, ENF, ELS) but does not cover strain‑field mapping during loading or substitute required field tests or specimen dimensioning for specific applications.
Key topics and technical requirements
- Principle: ML intensity correlates with local strain energy; concentrated strain at crack tips produces bright ML signals enabling crack tip visualization.
- Specimens covered: DCB (double‑cantilever beam), ENF (end‑notch flexure), SLS (single lap shear), ELS, DLS, cross tension and similar bonded test pieces.
- Specimen preparation:
- Surface pre‑treatment options (solvent degreasing, sanding, plasma) are permitted if they do not alter bond performance.
- ML paint is prepared from ML materials mixed with a polymer resin (Annex A lists candidate ML materials).
- Apply ML paint by spraying, dipping or brushing; uniform film thickness preferred but not mandatory.
- Post‑curing (thermoset/UV/room temperature) must not affect bond integrity.
- Scale labelling: mark from initial crack at least every 10 mm to enable crack length measurement.
- Test equipment & recording:
- A multi‑camera setup (four‑way recommended) to capture crack tip from relevant faces; at minimum, camera must face the monitored crack tip.
- Recording parameters (fps, exposure, gain) are selected based on crack growth rate and ML material; examples are in Annex B.
- Data analysis:
- Determine crack tip as the point of highest ML luminance (rear edge of ML line); contour conversion aids identification.
- Use crack length data for fracture toughness calculations (DCB, ENF, c‑ELS).
- Documentation: standardized test report content specified (see Clause 8).
Practical applications
- Quantitative fracture toughness evaluation in opening (mode I) and shear (mode II) tests (DCB, ENF, ELS).
- Visual verification of adhesive bondline failure location and propagation during adhesive qualification (tensile shear, cross tension).
- Detection of asymmetric deformation or minor adherend damage in dissimilar‑material joints.
- Support for certification, maintenance/repair/overhaul (MRO) workflows and expanding CFRP–metal applications in aerospace and automotive.
Who should use this standard
- Materials and adhesives test laboratories
- Composite and structural engineers in aerospace, automotive, rail and marine sectors
- Quality assurance and certification bodies assessing bonded CFRP–metal joints
- MRO organizations evaluating repair procedures
Related standards
- ISO 10365 (Adhesives - Designation of main failure patterns) - normative reference.
- Test standards for joined structures referenced: ISO 22838, ISO 22841 (used for mechanical test conditions).
- Annexes (A–G) provide ML material guidance, recording condition examples, coating quality demonstrations and interlaboratory results for practical implementation.
Технические детали
- Технический комитет
- ISO/TC 61/SC 13 - Composites and reinforcement fibres
- SKU
- ISO 8065:2024
Похожие стандарты
Стандарты, упомянутые в описании
ISO 10365:1992
ОтменёнAdhesives — Designation of main failure patterns
BS ISO 22838:2020
ДействующийComposites and reinforcements fibres. Determination of the fracture energy of bonded plates of carbon fibre r…
ISO 22841:2021
ДействующийComposites and reinforcements fibres — Carbon fibre reinforced plastics(CFRPs) and metal assemblies — Determi…
Overview - ISO 22841:2021 (CFRP to metal lap‑shear testing) ISO 22841:2021 specifies a standardized method to determine the tensile lap‑shear strength of adhesive joints between carbon fibre‑reinforc…