NBR ISO 6474-2 : 2013
Superseded
Superseded
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IMPLANTS FOR SURGERY - CERAMIC MATERIALS - PART 2: COMPOSITE MATERIALS BASED ON A HIGH PURITY MATRIX WITH ZIRCONIA REINFORCEMENT
Published date
08-08-2013
Publisher
Superseded date
08-07-2013
Superseded by
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| Committee |
CB-26
|
| DocumentType |
Standard
|
| PublisherName |
Brazilian Standards
|
| Status |
Superseded
|
| SupersededBy |
| Standards | Relationship |
| ISO 6474-2:2012 | Identical |
| NBR 15697 : 2016 | ORTHOPEDICS IMPLANTS - TOTAL REPLACEMENT WRIST-JOINT PROSTHESIS |
| NBR 15719 : 2016 | IMPLANTS FOR ORTHOPEDICS - HIP JOINT PROSTHESES - SPECIFICATION FOR ACETABULAR PROSTHESES |
| ISO 23146:2012 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Test methods for fracture toughness of monolithic ceramics — Single-edge V-notch beam (SEVNB) method |
| EN 843-2:2006 | Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Part 2: Determination of Young's modulus, shear modulus and Poisson's ratio |
| ISO 20501:2003 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Weibull statistics for strength data |
| EN 843-1:2006 | Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Part 1: Determination of flexural strength |
| ISO 18754:2013 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Determination of density and apparent porosity |
| ISO 12677:2011 | Chemical analysis of refractory products by X-ray fluorescence (XRF) — Fused cast-bead method |
| EN 843-5:2006 | Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Part 5: Statistical analysis |
| ASTM C 1327 : 2015 : REDLINE | TEST METHOD FOR VICKERS INDENTATION HARDNESS OF ADVANCED CERAMICS |
| ISO 22214:2006 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for cyclic bending fatigue of monolithic ceramics at room temperature |
| ASTM C 1259 : 2015 : REDLINE | Standard Test Method for Dynamic Young’s Modulus, Shear Modulus, and Poisson’s Ratio for Advanced Ceramics by Impulse Excitation of Vibration |
| ISO 14705:2016 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for hardness of monolithic ceramics at room temperature |
| EN 623-2:1993 | Advanced technical ceramics - Monolithic ceramics - General and textural properties - Part 2: Determination of density and porosity |
| ISO 14704:2016 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for flexural strength of monolithic ceramics at room temperature |
| ISO 18756:2003 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Determination of fracture toughness of monolithic ceramics at room temperature by the surface crack in flexure (SCF) method |
| CEN/TS 14425-5 : 2004 | ADVANCED TECHNICAL CERAMICS - TEST METHODS FOR DETERMINATION OF FRACTURE TOUGHNESS OF MONOLITIC CERAMICS - PART 5: SINGLE-EDGE VEE-NOTCH BEAM (SEVNB) METHOD |
| EN 843-4:2005 | Advanced technical ceramics - Mechanical properties of monolithic ceramics at room temperature - Part 4: Vickers, Knoop and Rockwell superficial hardness |
| EN 623-3:2001 | Advanced technical ceramics - Monolithic ceramics - General and textural properties - Part 3: Determination of grain size and size distribution (characterized by the Linear Intercept Method) |
| ASTM C 1499 : 2015 : REDLINE | TEST METHOD FOR MONOTONIC EQUIBIAXIAL FLEXURAL STRENGTH OF ADVANCED CERAMICS AT AMBIENT TEMPERATURE |
| ISO 17561:2016 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for elastic moduli of monolithic ceramics at room temperature by sonic resonance |
| NBR ISO 14242-1 : 2016 | IMPLANTS FOR SURGERY - WEAR OF TOTAL HIP-JOINT PROSTHESES - PART 1: LOADING AND DISPLACEMENT PARAMETERS FOR WEAR-TESTING MACHINES AND CORRESPONDING ENVIRONMENTAL CONDITIONS FOR TEST |
| ISO 15732:2003 | Fine ceramics (advanced ceramics, advanced technical ceramics) — Test method for fracture toughness of monolithic ceramics at room temperature by single edge precracked beam (SEPB) method |
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