BS ISO 12110-1:2013
Current
The latest, up-to-date edition.
Metallic materials. Fatigue testing. Variable amplitude fatigue testing General principles, test method and reporting requirements
Hardcopy , PDF
English
31-07-2013
Foreword
1 Scope
2 Normative references
3 Terms and definitions
4 Principle of test
5 Original loading time history
6 Loading time history description
7 Programmed blocks
8 Transition matrix and generation of control signal
from the matrix
9 Conducting fatigue testing under variable
amplitude conditions
10 Test report for each individual specimen
Annex A (informative) - Standard loading time histories
Annex B (informative) - Example of loading signal
reconstruction by random draw in the
transition matrix
Annex C (informative) - Preliminary analysis of test
data on a single specimen
Bibliography
Describes general principles for fatigue testing of laboratory specimens under a sequence of cycles the amplitude of which varies from cycle to cycle.
Committee |
ISE/101/6
|
DocumentType |
Standard
|
Pages |
34
|
PublisherName |
British Standards Institution
|
Status |
Current
|
This part of ISO12110 establishes general principles for fatigue testing of laboratory specimens under a sequence of cycles the amplitude of which varies from cycle to cycle.
This sequence of cycles is called loading time history (see 3.7) and is usually derived from loading measurements performed on components or structures submitted to true service loadings.
Detailed description of service loads recording is relevant to each laboratory or industrial sector and is therefore outside the scope of this part of ISO12110.
The aim of the two parts of ISO12110 is to set requirements and give some guidance on how to perform a variable amplitude fatigue test in order to produce consistent results for comparison purposes taking into account the typical scatter of fatigue data. Achieving this should help designers to correlate models and experimental data obtained from various sources.
Since this part of ISO12110 involves mainly loading time histories and control signal generation, one expects it might be applied to strain or fatigue crack growth rate controlled loading conditions as well as to force-controlled loading conditions. This is theoretically true but precautions may be taken when applying this part of ISO12110 to loading modes other than force-controlled loading mode.
This part of ISO12110 relates to variable amplitude loading under force control mode which corresponds to most of the variable amplitude fatigue tests performed worldwide at the date of publication of this part of ISO12110.
This part of ISO12110 applies to the single actuator loading mode which corresponds to uniaxial loading in many cases.
The variable amplitude loading time histories referred in this part of ISO12110 are deterministic; that is why this part of ISO12110 deals with variable amplitude loading instead of random loading.
The following issues are not within the scope of this part of ISO12110 and therefore will not be addressed.
constant amplitude tests with isolated overloads or underloads;
tests on large components or structures;
environmental effects like corrosion, creep linked to temperature/time interactions leading to frequency and waveform effects;
multiaxial loading.
Standards | Relationship |
ISO 12110-1:2013 | Identical |
ISO 23788:2012 | Metallic materials — Verification of the alignment of fatigue testing machines |
ISO 12106:2017 | Metallic materials — Fatigue testing — Axial-strain-controlled method |
NFA 03 406 : 1993 FD | METAL PRODUCTS - FATIGUE UNDER VARIABLE AMPLITUDE LOADING - THE RAINFLOW METHOD OF CYCLE COUNTING |
ISO 12108:2012 | Metallic materials Fatigue testing Fatigue crack growth method |
ISO 1099:2017 | Metallic materials — Fatigue testing — Axial force-controlled method |
ISO 12110-2:2013 | Metallic materials — Fatigue testing — Variable amplitude fatigue testing — Part 2: Cycle counting and related data reduction methods |
ISO 12107:2012 | Metallic materials — Fatigue testing — Statistical planning and analysis of data |
ISO 4965:1979 | Axial load fatigue testing machines Dynamic force calibration Strain gauge technique |
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