ISO 4965-1:2012
Current
The latest, up-to-date edition.
Metallic materials — Dynamic force calibration for uniaxial fatigue testing — Part 1: Testing systems
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French, English
06-07-2012
ISO 4965-1:2012 describes two methods for determining the relationship between the dynamic force range applied to a test-piece in a uniaxial, sinusoidal, constant amplitude test and the force range indicated by the testing system.
These methods are applicable to dynamic testing systems operating away from system resonant frequencies and are relevant to testing systems where the dynamic force measurement errors are either unknown or where they are expected to exceed 1 % of the applied force range.
The dynamic force measurement errors are determined by comparison of the peak forces indicated by the dynamic testing system with those measured by the strain gauged dynamic calibration device (DCD). This DCD has previously undergone static calibration against the testing system indicator.
For Method A (Replica test-piece method), the dynamic calibration is applicable over the validated range of frequencies for that type of test-piece only. A frequency-dependent correction factor is applicable for the correction of dynamic force measurement errors of up to 10 % of dynamic force range. By using such a correction factor, the actual test specimen dynamic force measurement error will be reduced to less than 1 % of the dynamic force range.
For Method B (Compliance envelope method), the dynamic calibration is applicable over the range of test frequencies validated for test-pieces whose compliance lies between those of the two DCDs. No correction factor is applicable, as Method B does not permit dynamic force measurement errors above 1 % of the dynamic force range.
Committee |
ISO/TC 164/SC 4
|
DevelopmentNote |
Supersedes ISO/DIS 4965-1. Together with ISO 4965-2, supersedes ISO 4965. (07/2012)
|
DocumentType |
Standard
|
Pages |
14
|
PublisherName |
International Organization for Standardization
|
Status |
Current
|
Supersedes |
Standards | Relationship |
NF ISO 4965-1:2022 | Identical |
BS ISO 4965-1:2012 | Identical |
NEN ISO 4965-1 : 2012 | Identical |
17/30352962 DC : 0 | BS EN ISO 15630-1 - STEEL FOR THE REINFORCEMENT AND PRESTRESSING OF CONCRETE - TEST METHODS - PART 1: REINFORCING BARS, WIRE ROD AND WIRE |
ISO 12108:2012 | Metallic materials Fatigue testing Fatigue crack growth method |
ISO 12106:2017 | Metallic materials — Fatigue testing — Axial-strain-controlled method |
15/30319527 DC : DRAFT DEC 2015 | BS ISO 18192-3 - IMPLANTS FOR SURGERY - WEAR OF TOTAL INTERVERTEBRAL SPINAL DISC PROSTHESES - PART 3: LOADING AND DISPLACEMENT PARAMETERS FOR IMPINGEMENT-WEAR TESTING AND CORRESPONDING ENVIRONMENTAL CONDITIONS FOR TEST OF LUMBAR PROSTHESES UNDER ADVERSE KINEMATIC CONDITIONS |
BS ISO 1099:2017 | Metallic materials. Fatigue testing. Axial force-controlled method |
ISO 1099:2017 | Metallic materials — Fatigue testing — Axial force-controlled method |
15/30323943 DC : 0 | BS ISO 12106 - METALLIC MATERIALS - FATIGUE TESTING - AXIAL-STRAIN-CONTROLLED METHOD |
BS ISO 18192-3:2017 | Implants for surgery. Wear of total intervertebral spinal disc prostheses Impingement-wear testing and corresponding environmental conditions for test of lumbar prostheses under adverse kinematic conditions |
17/30352970 DC : 0 | BS EN ISO 15630-3 - STEEL FOR THE REINFORCEMENT AND PRESTRESSING OF CONCRETE - TEST METHODS - PART 3: PRESTRESSING STEEL |
17/30352966 DC : 0 | BS EN ISO 15630-2 - STEEL FOR THE REINFORCEMENT AND PRESTRESSING OF CONCRETE - TEST METHODS - PART 2: WELDED FABRIC AND LATTICE GIRDER |
BS ISO 12108:2012 | Metallic materials. Fatigue testing. Fatigue crack growth method |
17/30361445 DC : DRAFT SEP 2017 | BS ISO 12108 - METALLIC MATERIALS - FATIGUE TESTING - FATIGUE CRACK GROWTH METHOD |
ISO 7206-6:2013 | Implants for surgery — Partial and total hip joint prostheses — Part 6: Endurance properties testing and performance requirements of neck region of stemmed femoral components |
BS ISO 12106:2017 | Metallic materials. Fatigue testing. Axial-strain-controlled method |
BS ISO 7206-6:2013 | Implants for surgery. Partial and total hip joint prostheses Endurance properties testing and performance requirements of neck region of stemmed femoral components |
15/30328599 DC : 0 | BS ISO 1099 - METALLIC MATERIALS - FATIGUE TESTING - AXIAL FORCE-CONTROLLED METHOD |
ASTM F 2777 : 2016 : REDLINE | Standard Test Method for Evaluating Knee Bearing (Tibial Insert) Endurance and Deformation Under High Flexion |
ISO 18192-3:2017 | Implants for surgery — Wear of total intervertebral spinal disc prostheses — Part 3: Impingement-wear testing and corresponding environmental conditions for test of lumbar prostheses under adverse kinematic conditions |
ISO 7500-1:2015 | Metallic materials Calibration and verification of static uniaxial testing machines Part 1: Tension/compression testing machines Calibration and verification of the force-measuring system |
ISO 4965-2:2012 | Metallic materials — Dynamic force calibration for uniaxial fatigue testing — Part 2: Dynamic calibration device (DCD) instrumentation |
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