ISO 6474-1:2019
Implants for surgery — Ceramic materials — Part 1: Ceramic materials based on high purity alumina
Implants for surgery — Ceramic materials — Part 1: Ceramic materials based on high purity alumina
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 9
- Дата публикации:
- 13 марта 2019 г.
- Издание:
- ISO IS 6474 edition 2 version 1
- ICS:
- 11.040.40
This document specifies the characteristics of, and corresponding test methods for bio-stable ceramic bone substitute material based on high purity alumina for use as bone spacers, bone replacements and components of orthopaedic joint prostheses. This document does not cover biocompatibility (see ISO 10993-1). It is the responsibility of the manufacturer to evaluate the biocompatibility of ceramic materials which are produced within the framework of this document.
Abstract
Overview
ISO 6474-1:2019 - Implants for surgery: Ceramic materials - Part 1: Ceramic materials based on high purity alumina specifies material characteristics and test methods for bio‑stable, high‑purity alumina ceramics used as bone spacers, bone replacements and components of orthopaedic joint prostheses. The standard defines classification, production‑equivalent specimen preparation, mandatory tests for production control and material qualification, and quantitative property limits. Biocompatibility is excluded and must be addressed separately (see ISO 10993-1).
Key topics and requirements
- Material classification: two types - Type A (high‑load implants, e.g. joint bearing surfaces) and Type B (low‑load implants, e.g. maxillofacial, middle‑ear).
- Test categories:
- Category 1 (periodic production control): bulk density, chemical composition, microstructure, strength.
- Category 2 (material qualification/specification): adds Young’s modulus, fracture toughness, hardness, wear and cyclic fatigue.
- Principal material properties and limits (examples from the standard):
- Al2O3 content: high‑purity alumina (Type A ≥ 99.7%, Type B ≥ 99.5%).
- Grain size: linear intercept grain size limits (Type A ≤ 2.5 µm, Type B ≤ 3.5 µm).
- Strength: mean biaxial or 4‑point flexural strength thresholds and Weibull modulus ≥ 8.
- Mechanical: Young’s modulus, fracture toughness (≥ 2.5), Vickers hardness (Type A ≥ 18 GPa), wear and cyclic fatigue (e.g. endurance criteria for Type A).
- Specified test methods and preparation: references to established ISO/CEN/ASTM methods for density, XRF chemical analysis, microstructure, flexural strength, fracture toughness (SEVNB, SEPB, SCF), Weibull statistics, sonic resonance, hardness, wear and cyclic fatigue. Specimens must be produced using production‑equivalent feedstock and processing.
Practical applications
- Ensures consistent material performance and reliability for ceramic implants in orthopaedics, maxillofacial and middle‑ear devices.
- Supports product development, qualification, quality control, and regulatory submissions by providing standardized test methods and pass/fail criteria for material properties.
- Helps manufacturers select and validate high‑purity alumina grades for bearing surfaces, spacers, and load‑bearing components.
Who should use this standard
- Orthopaedic and medical‑device manufacturers
- Materials and process engineers (ceramics)
- Testing and certification labs
- Regulatory and quality assurance teams specifying implant materials
- Procurement professionals sourcing implant ceramics
Related standards
- ISO 10993-1 (biocompatibility evaluation)
- ISO 18754, ISO 12677, ISO 13383-1, ISO 14704, ISO 17561, ISO 23146, ISO 15732, ISO 20501 and other referenced ISO/CEN/ASTM test methods for density, composition, microstructure, mechanical testing and statistics.
Keywords: ISO 6474-1:2019, high purity alumina, ceramic implants, bone spacers, orthopaedic joint prostheses, implant materials, test methods, material specification, fracture toughness, Weibull modulus.
Технические детали
- Технический комитет
- ISO/TC 150/SC 1 - Materials
- SKU
- ISO 6474-1:2019
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