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About this book
Materials Data for Cyclic Loading, Part B: Low-Alloy Steels presents materials data for cyclic loading which provide the basis for materials assessment by direct comparison of data or characteristic values and for estimating the crack initiation lives of low-alloy steels under constant and variable amplitude loading. The data include stress-strain curves, strain life curves, and mean stress parameter life curves for cyclic loading. Each data sheet takes up a maximum of four pages. The first page gives a description of the material and testing procedure. The chemical composition is always given in weight percent and corresponds to the values given in the literature referred to. The second and third pages show the diagrams for: stress-strain curves for monotonic and cyclic loading; strain life curve;, and mean stress (damage) parameter life curve according to the parameter of Smith, Watson and Topper. Unless indicated otherwise in the plots, the experiments were carried out at room temperature in laboratory air. The diagrams for the stress-strain relationships contain at the most three curves, one for monotonic loading and two for cyclic loading, the latter being evaluated from incremental step tests and constant amplitude tests. All three curves can be described approximately by an analytical function. This book will be of interest to materials scientists.
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Information
Table of contents
- Front Cover
- Materials Data for Cyclic Loading
- Copyright Page
- Table of Contents
- Introduction
- Literature
- Nomenclature
- Indexes
- Introduction
- Nomenclature
- Data sheets:
- TTStE 32
- StE 460
- StE 460 coldformed
- StE 460 rolled skin
- WStE 460
- StE 590 (HT 60)
- StE 590 (A302B)
- StE 690
- StE 690 prestrained
- StE 690 rolled skin
- 17 MnCrMo 3 3 (N-A-Xtra 70)
- 17 MnCrMo 3 3 (N-A-Xtra 70) em= 0
- 17 MnCrMo~3 3 (N-A-Xtra 70) elevated temperature
- 11 NiMnCrMo 5 5 (HSB 77 V)
- StE 790 (HT 80, HY 80, AISI 1080)
- HY–130
- BHW 25
- 17 MnNiMo 5 3 4 (BHW 38)
- 17 MnNiMo 5 3 4 (BHW 38) elevated temperature
- 15 MnMoNiV 5 3
- 15 MnMoNiV 5 3 elevated temperature
- 17 MnMoV 6 4 (WB 35)
- 17 MnMoV 6 4 (WB 35) elevated temperature
- 2 MnCr 7 8
- 2 MnCr 7 8 low temperature
- 4 MnMo 7
- 4 MnMo 7 low temperature
- 8 Mn 6
- 12 MnMo 5 (SPV 50)
- 14 Mn 5 (Van–80)
- 14 Mn 5 (Van–80) prestrained
- 19 Mn 5 elevated temperature
- 20 Mn 3 (RQC 100)
- 20 Mn 3 (RQC 100) prestrained
- 22 MnCrNi 3 (AISI 8620H)
- 22 MnCrNi 3 (AISI 8620H) carburized
- 23 Mn 4 (AOS 1122 B)
- 25 Mn 3 (A36)
- 25 Mn 4 (A-516 Gr 70, AOS 1122 A)
- 28 MnCu 6 (Man–Ten)
- 28 MnCu 6 (Man–Ten) prestrained
- 30 MnCr 5 (C30MB)
- 41 MnCr 34 (41CrM4B)
- 49 MnVS 3
- 49 MnVS 3 Em=0
- 80 Mn 4 (ASTM Al)
- 10 CrMo 9 10 (SCMV4)
- 10 CrMo 9 10 elevated temperature
- 12 CrMo 8 (2 1/4 Cr 1 Mo)
- 13 CrMo 44
- 13 CrMo 44 elevated temperature
- 13 CrMo 44 rough surface
- 14 CrMo 9 10 elevated temperature
- 16 CrMo 5 4 (SCMV3)
- 16 CrMo 5 4 (SCMV3) elevated temperature
- 28 CrMoNiV 4 9
- 28 CrMoNiV 4 9 elevated temperature
- 30 CrNiMo 8
- 34 CrNiMo 6
- 30 CrMo 2 (AISI 4130)
- 37 CrMo 2 (SCM435)
- 40 CrMo 4
- 42 CrMo 4
- 42 CrMo 4 effi^ 0
- 55 Cr 3
- 100 Cr 6 (AISI 52100)
- 14 MoV 6 3
- 14 MoV 6 3 elevated temperature
- 15 Mo 3
- 15 Mo 3 elevated temperature
- NiCrMo 10 (EN 25)
- 4 NiCrMn 4 (IN 787)
- 16 NiCrMo 3 2 (A 514)
- 23 NiCr 4 (USST–1)
- 23 NiCr 4 (USST–1) prestrained
- 28 NiCrMo 7 4
- 40 NiCrMo 7 (AISI 4340)
- 43 NiCr 7 9 (SAE 4340)
- 43 NiCr 7 9 (SAE 4340) prestrained
- CuNiMo
- CuNiMo elevated temperature