Execution and evaluation of cyclic tests at constant load amplitudes – DIN 50100:2016 Dedicated to Professor Dr.-Ing. Harald Zenner on the occasion of his eightieth birthday
Tests with constant load amplitudes are used to characterize the fatigue strength behavior of material specimens and components. The S-N curve derived from these test results describes the relationship between the load amplitude and the corresponding cycles to failure. Different concepts for carryin...
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Published in | Materialprüfung Vol. 60; no. 10; pp. 961 - 968 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
01.10.2018
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Abstract | Tests with constant load amplitudes are used to characterize the fatigue strength behavior of material specimens and components. The S-N curve derived from these test results describes the relationship between the load amplitude and the corresponding cycles to failure. Different concepts for carrying out and evaluating fatigue tests make it difficult to compare the results from different research institutes. The aim of the new version of the German standard DIN 50100:2016 is to define a procedure for determining an S-N curve for metallic alloys that does not allow any scope for interpretation. It is assumed that the test results are subject to logarithmic normal distributions in both load and cycle direction. It is further assumed that the S-N curve in the high-cycle fatigue regime and the long-life fatigue regime can be approximated by a bilinear function. For the determination of the straight line of finite life, the pearl string method and the load level method are available for determining the position parameter and the slope of the power function according to Basquin. Long-life fatigue strength is determined using the staircase method and forms the knee point of the S-N curve on average with the straight line of finite life. For the long-life fatigue regime, a horizontal course or a decrease with low inclination, depending on the material group examined, is assumed. In addition, DIN 50100:2016 contains information on the accuracy of the estimation of the mean values and the scatter of the characteristic values according to the sample size. The goal of achieving comparability of S-N curves is supported by extensive examples. An English translation of DIN 50100:2016 is available also. |
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AbstractList | Tests with constant load amplitudes are used to characterize the fatigue strength behavior of material specimens and components. The S-N curve derived from these test results describes the relationship between the load amplitude and the corresponding cycles to failure. Different concepts for carrying out and evaluating fatigue tests make it difficult to compare the results from different research institutes. The aim of the new version of the German standard DIN 50100:2016 is to define a procedure for determining an S-N curve for metallic alloys that does not allow any scope for interpretation. It is assumed that the test results are subject to logarithmic normal distributions in both load and cycle direction. It is further assumed that the S-N curve in the high-cycle fatigue regime and the long-life fatigue regime can be approximated by a bilinear function. For the determination of the straight line of finite life, the pearl string method and the load level method are available for determining the position parameter and the slope of the power function according to Basquin. Long-life fatigue strength is determined using the staircase method and forms the knee point of the S-N curve on average with the straight line of finite life. For the long-life fatigue regime, a horizontal course or a decrease with low inclination, depending on the material group examined, is assumed. In addition, DIN 50100:2016 contains information on the accuracy of the estimation of the mean values and the scatter of the characteristic values according to the sample size. The goal of achieving comparability of S-N curves is supported by extensive examples. An English translation of DIN 50100:2016 is available also. |
Author | Müller, Christian Masendorf, Rainer |
Author_xml | – sequence: 1 givenname: Rainer surname: Masendorf fullname: Masendorf, Rainer organization: Clausthal – sequence: 2 givenname: Christian surname: Müller fullname: Müller, Christian organization: Ingolstadt , Germany |
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CitedBy_id | crossref_primary_10_1016_j_procir_2024_05_053 crossref_primary_10_3390_ma17030729 crossref_primary_10_1016_j_ijimpeng_2022_104155 crossref_primary_10_3390_jcs7010023 crossref_primary_10_1016_j_procs_2025_01_095 crossref_primary_10_1515_mt_2020_0118 crossref_primary_10_1007_s40964_024_00577_1 crossref_primary_10_1088_1742_6596_2018_1_012014 crossref_primary_10_1007_s11668_020_00863_4 crossref_primary_10_1515_mt_2020_0115 crossref_primary_10_1007_s00107_021_01699_x crossref_primary_10_1016_j_ijfatigue_2021_106555 crossref_primary_10_1515_mt_2024_0300 crossref_primary_10_1515_mt_2022_0405 crossref_primary_10_1016_j_msea_2022_144079 |
Cites_doi | 10.3139/120.111053 10.1016/j.ijfatigue.2017.03.030 10.3139/120.110256 10.1016/j.ijfatigue.2006.11.015 |
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References | (2025052116394141573_j_120.111238_ref_011_w2aab3b7c18b1b6b1ab1ac11Aa) 2007; 29 DIN 50100 (2025052116394141573_j_120.111238_ref_003_w2aab3b7c18b1b6b1ab1ab3Aa) 1953 (2025052116394141573_j_120.111238_ref_015_w2aab3b7c18b1b6b1ab1ac15Aa) 1983; 14 (2025052116394141573_j_120.111238_ref_009_w2aab3b7c18b1b6b1ab1ab9Aa) 1967 DIN 50100 (2025052116394141573_j_120.111238_ref_007_w2aab3b7c18b1b6b1ab1ab7Aa) (2025052116394141573_j_120.111238_ref_013_w2aab3b7c18b1b6b1ab1ac13Aa) 2011; 53 DIN 50100 pre-standard (2025052116394141573_j_120.111238_ref_002_w2aab3b7c18b1b6b1ab1ab2Aa) 1942 (2025052116394141573_j_120.111238_ref_008_w2aab3b7c18b1b6b1ab1ab8Aa) 2017 (2025052116394141573_j_120.111238_ref_010_w2aab3b7c18b1b6b1ab1ac10Aa) 1910; 10 (2025052116394141573_j_120.111238_ref_017_w2aab3b7c18b1b6b1ab1ac17Aa) 2001 DIN 50100 (2025052116394141573_j_120.111238_ref_006_w2aab3b7c18b1b6b1ab1ab6Aa) 2016 (2025052116394141573_j_120.111238_ref_014_w2aab3b7c18b1b6b1ab1ac14Aa) 2017; 100 (2025052116394141573_j_120.111238_ref_016_w2aab3b7c18b1b6b1ab1ac16Aa) 2015 (2025052116394141573_j_120.111238_ref_012_w2aab3b7c18b1b6b1ab1ac12Aa) 2017; 59 (2025052116394141573_j_120.111238_ref_005_w2aab3b7c18b1b6b1ab1ab5Aa) 1976 DIN 50100 (2025052116394141573_j_120.111238_ref_004_w2aab3b7c18b1b6b1ab1ab4Aa) 1978 DVM 4001 (2025052116394141573_j_120.111238_ref_001_w2aab3b7c18b1b6b1ab1ab1Aa) 1936; 28 |
References_xml | – volume-title: Load controlled fatigue testing — Execution and evaluation of cyclic tests at constant load amplitudes on metallic specimens and components ident: 2025052116394141573_j_120.111238_ref_007_w2aab3b7c18b1b6b1ab1ab7Aa – volume: 59 start-page: 625 issue: 7–8 year: 2017 ident: 2025052116394141573_j_120.111238_ref_012_w2aab3b7c18b1b6b1ab1ac12Aa article-title: Distribution functions for the linear region of the S-N curve publication-title: Materials Testing doi: 10.3139/120.111053 – volume: 100 start-page: 296 year: 2017 ident: 2025052116394141573_j_120.111238_ref_014_w2aab3b7c18b1b6b1ab1ac14Aa publication-title: Accuracy of fatigue limits estimated by the staircase method using different evaluation techniques. International Journal of Fatigue doi: 10.1016/j.ijfatigue.2017.03.030 – start-page: 149 volume-title: Fatigue S/N Data in relation to variability in predicted life, Proc year: 1976 ident: 2025052116394141573_j_120.111238_ref_005_w2aab3b7c18b1b6b1ab1ab5Aa – volume-title: On the statistical evaluation of S-N curves (in German) year: 2015 ident: 2025052116394141573_j_120.111238_ref_016_w2aab3b7c18b1b6b1ab1ac16Aa – volume: 28 start-page: 102 issue: 4 year: 1936 ident: 2025052116394141573_j_120.111238_ref_001_w2aab3b7c18b1b6b1ab1ab1Aa article-title: Fatigue testing; definitions and symbols (in German), 2nd draft DVM, Berlin publication-title: Zeitschrift für Metallkunde – volume-title: Fatigue test (Woehler test); definitions, symbols, execution, evaluation (in German) year: 1978 ident: 2025052116394141573_j_120.111238_ref_004_w2aab3b7c18b1b6b1ab1ab4Aa – volume-title: Fatigue test (Woehler test); definitions, symbols, execution, evaluation (in German) year: 1953 ident: 2025052116394141573_j_120.111238_ref_003_w2aab3b7c18b1b6b1ab1ab3Aa – volume-title: Scatter of fatigue strength (in German) year: 2001 ident: 2025052116394141573_j_120.111238_ref_017_w2aab3b7c18b1b6b1ab1ac17Aa – volume-title: Load controlled fatigue testing — Execution and evaluation of cyclic tests at constant load amplitudes on metallic specimens and components (in German) year: 2016 ident: 2025052116394141573_j_120.111238_ref_006_w2aab3b7c18b1b6b1ab1ab6Aa – volume: 53 start-page: 513 year: 2011 ident: 2025052116394141573_j_120.111238_ref_013_w2aab3b7c18b1b6b1ab1ac13Aa article-title: On the analysis of fatigue tests in the finite life strength regions – Part 2 (in German) publication-title: Materials Testing doi: 10.3139/120.110256 – volume: 29 start-page: 2246 issue: 12 year: 2007 ident: 2025052116394141573_j_120.111238_ref_011_w2aab3b7c18b1b6b1ab1ac11Aa article-title: Course of SN-curves especially in the high-cycle fatigue regime with regard to component design and safety publication-title: International Journal of Fatigue doi: 10.1016/j.ijfatigue.2006.11.015 – volume-title: Test for fatigue strength; definitions, symbols, execution (in German) year: 1942 ident: 2025052116394141573_j_120.111238_ref_002_w2aab3b7c18b1b6b1ab1ab2Aa – volume: 10 start-page: 625 year: 1910 ident: 2025052116394141573_j_120.111238_ref_010_w2aab3b7c18b1b6b1ab1ac10Aa article-title: The exponential law of endurance tests publication-title: Proc. ASTM – volume-title: Fatigue of Components-August Wöhler (1819–1914) A Historical Review year: 2017 ident: 2025052116394141573_j_120.111238_ref_008_w2aab3b7c18b1b6b1ab1ab8Aa – volume: 14 start-page: 406 year: 1983 ident: 2025052116394141573_j_120.111238_ref_015_w2aab3b7c18b1b6b1ab1ac15Aa article-title: An improved Method for the evaluation of staircase tests (in German) publication-title: Zeitschrift für Werkstofftechnik – volume-title: Investigations for the planning and evaluation of fatigue tests on steel in the areas of finite life and long life fatigue (in German), Dissertation TU Berlin, Fortschrittberichte VDI Zeitschrift, Reihe 5, Nr year: 1967 ident: 2025052116394141573_j_120.111238_ref_009_w2aab3b7c18b1b6b1ab1ab9Aa |
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Title | Execution and evaluation of cyclic tests at constant load amplitudes – DIN 50100:2016 |
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