Publications

Detailed Information

Evaluation of Non-equal Biaxial Residual Stress Using Modified Berkovich Indenter in Nano Scale : 나노 스케일에서 Modified Berkovich 압입자를 활용한 2축 잔류응력 평가

DC Field Value Language
dc.contributor.advisor권동일-
dc.contributor.authorXU HUIWEN-
dc.date.accessioned2017-07-14T03:14:25Z-
dc.date.available2017-07-14T03:14:25Z-
dc.date.issued2017-02-
dc.identifier.other000000141901-
dc.identifier.urihttps://hdl.handle.net/10371/123406-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 재료공학부, 2017. 2. 권동일.-
dc.description.abstractResidual stress is generated by manufacturing processes and thermochemical treatments. These residual stresses combines with external loads to influence deformation and fracture properties. At nanoscale, thin films which have already undergone roll-to-roll processing, have non-equal biaxial residual stress, and this will reduce the reliability of materials. Conventional methods of measuring residual stress, like the x-ray diffraction and curvature methods, have stringent requirements on specimen microstructure or can evaluate only the surface mean residual stress. However, instrumented indentation testing is a non-destructive, simple method that can evaluate local residual stress quantitatively.
On macroscale, the Vickers indenter is used to measure the magnitude of residual stress and the Knoop indenter to evaluate stress directionality. At nanoscale, the Berkovich indenter is widely used to measure the residual stress magnitude. But no research has been done on evaluating the stress ratio of residual stress using instrumented indentation testing.
In this research, in order to measure biaxial residual stress, a Modified Berkovich indenter was designed that is based on the Berkovich indenter but is extended along one direction to yield different load sensitivity. Before manufacture, we used FEA to verify the validity of this new indenter. Since the Modified Berkovich indenter had geometrical self-similarity, conversion factor ratios were measured for the unstressed and stressed states at a given indentation depth. Moreover, by applying various biaxial stresses to cruciform specimens, the non-equal biaxial residual stress was evaluated by analyzing the load-depth curves. The model was verified by comparing the measured stress with applied stress.
-
dc.description.tableofcontentsChapter 1. Introduction 1
1.1 Objective of the Thesis 1
1.2 Outline of the Thesis 4
Chapter 2. Research Background 7
2.1 About Residual Stress 7
2.1.1 Definition of Residual Stress 7
2.1.2 Origins of Residual Stress on Nanoscale 8
2.2 Measuring Methods of Nano Residual Stress 9
2.2.1 X-ray Diffraction Method 10
2.2.2 Curvature Method 11
2.2.3 Instrumented Indentation Testing 12
2.3 Stress Assessment using Indentation Test 15
2.3.1 Vickers Indentation Model 15
2.3.2. Knoop Indentation Model 17
Chapter 3. Modified Berkovich Indenter 25
3.1 Limitations of Conventional Indenters 25
3.2 Knoop Indenter on Nanoscales 27
3.3 New Indenter Modified Berkovich Indenter 29
3.3.1 Design of a New Indenter 29
3.3.2 Verification of Modified Berkovich Indenter by FEA 31
3.3.3 Checking the Shape of Modified Berkovich Indenter 32
Chapter 4. Evaluation of Biaxial Residual Stress using Modified Berkovich Indenter 41
4.1 Determination of Conversion Factor Ratio 41
4.2 Experimental Details Conversion Factor Ratio 42
4.2.1 Testing Equipment, Specimens and Jig 42
4.2.2 Applying Stress 43
4.2.3 Experimental Process 44
4.3 Evaluation of Biaxial Residual Stress 45
4.4 Experimental Details Biaxial Residual Stress 46
4.4.1 Testing Equipment, Specimens and Jig 46
4.4.2 Experimental Process 47
Chapter 5. Results and Discussion 56
5.1 Determination of Conversion Factor Ratio 56
5.2 Comparison of Measured Stress Ratio with Applied Stress Ratio 57
5.3 Evaluation of Biaxial Residual Stress using Modified Berkovich Indenter and Berkovich Indenter 58
Chapter 6. Conclusion 68
References 69
초 록 71
-
dc.formatapplication/pdf-
dc.format.extent3650287 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectInstrumented indentation test-
dc.subjectModified Berkovich indenter-
dc.subjectResidual stress-
dc.subjectStress ratio-
dc.subjectConversion factor ratio-
dc.subject.ddc620-
dc.titleEvaluation of Non-equal Biaxial Residual Stress Using Modified Berkovich Indenter in Nano Scale-
dc.title.alternative나노 스케일에서 Modified Berkovich 압입자를 활용한 2축 잔류응력 평가-
dc.typeThesis-
dc.contributor.AlternativeAuthor허혜문-
dc.description.degreeMaster-
dc.citation.pages72-
dc.contributor.affiliation공과대학 재료공학부-
dc.date.awarded2017-02-
Appears in Collections:
Files in This Item:

Altmetrics

Item View & Download Count

  • mendeley

Items in S-Space are protected by copyright, with all rights reserved, unless otherwise indicated.

Share