Developments of concept of the separated dynamic J integral and numerical simulation methods for dynamic interfacial fracture 動的界面破壊に対する分離動的J積分の概念および数値シミュレーション法の開発

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著者

    • 艾尼瓦尓亜森 アイニワル ヤセン

書誌事項

タイトル

Developments of concept of the separated dynamic J integral and numerical simulation methods for dynamic interfacial fracture

タイトル別名

動的界面破壊に対する分離動的J積分の概念および数値シミュレーション法の開発

著者名

艾尼瓦尓亜森

著者別名

アイニワル ヤセン

学位授与大学

神戸商船大学

取得学位

博士 (工学)

学位授与番号

甲第5号

学位授与年月日

2000-03-31

注記・抄録

博士論文

目次

  1. Contents / p1 (0004.jp2)
  2. Acknowledgments / p4 (0006.jp2)
  3. Abstract / p5 (0007.jp2)
  4. List of symbols / p6 (0008.jp2)
  5. List of Captions of Figures and Tables / p8 (0009.jp2)
  6. 1.INTRODUCTION / p1 (0009.jp2)
  7. 1.1 THE FORE VELOCITY REGIMES OF DYNAMIC INTERFACIAL CRACK PROPAGATION / p1 (0009.jp2)
  8. 1.2 BACKGROUND OF THE STUDY / p2 (0010.jp2)
  9. 1.3 INTRODUCTION / p3 (0010.jp2)
  10. 2.Basic Concepts in Dynamic Fracture Mechanics and Static Interfacial Fracture Mechanics / p5 (0011.jp2)
  11. 2.1 INTRODUCTION / p5 (0011.jp2)
  12. 2.2 DYNAMIC FRACTURE MECHANICS / p5 (0011.jp2)
  13. 2.3 STATIC INTERFACIAL FRACTURE MECHANICS / p11 (0014.jp2)
  14. 3.The Separated Dynamic J Integrals for Interfacial Cracks and the Moving Finite Isoparametric Element Method / p15 (0016.jp2)
  15. 3.1 INTRODUCTION / p15 (0016.jp2)
  16. 3.2 THE SEPARATED DYNAMIC J INTEGRALS FOR A DYNAMICALLY PROPAGATING INTERFACIAL CRACK / p15 (0016.jp2)
  17. 3.3 ENERGY FLOWS FROM BOTH MATERIAL SIDES TO A DYNAMICALLY PROPAGATING INTERFACIAL CRACK TIP / p18 (0018.jp2)
  18. 3.4 MOVING FINITE ELEMENT METHOD FOR PROPAGATING INTERFACIAL CRACKS / p21 (0019.jp2)
  19. 4.Impact Response of Stationary Interfacial Cracks / p25 (0021.jp2)
  20. 4.1 INTRODUCTION / p25 (0021.jp2)
  21. 4.2 IMPACT RESPONSE OF A CRACK IN HOMOGENEOUS MATERIAL / p25 (0021.jp2)
  22. 4.3 IMPACT RESPONSE OF STATIONARY INTERFACIAL CRACKS / p31 (0024.jp2)
  23. 4.4 CONCLUSIONS / p43 (0030.jp2)
  24. 5.Numerical Simulation of High-Speed Interfacial Cracks under Tension-Dominated Loading Condition / p45 (0031.jp2)
  25. 5.1 INTRODUCTION / p45 (0031.jp2)
  26. 5.2 SUBSONICALLY,TRANSONICALLY AND SUPERSONICALLY PROPAGATING INTERFACIAL CRACKS UNDER TENSION-DOMINATED LOADING CONDITION / p46 (0032.jp2)
  27. 5.3 DISCUSSION / p63 (0040.jp2)
  28. 5.4 CONCLUSIONS / p66 (0042.jp2)
  29. 6.Numerical Simulation of High-Speed Interfacial Cracks under Shear-Dominated Loading Condition / p69 (0043.jp2)
  30. 6.1 INTRODUCTION / p69 (0043.jp2)
  31. 6.2 SIMULATION MODEL / p70 (0044.jp2)
  32. 6.3 SIMULATIONS OF SUBSONICALLY,TRANSONICALLY AND SUPERSONICALLY PROPAGATING INTERFACIAL CRACKS / p73 (0045.jp2)
  33. 6.4 SIMULATIONS OF SUBSONICALLY,TRANSONICALLY AND SUPERSONICALLY PROPAGATING INTERFACIAL CRACKS / p77 (0047.jp2)
  34. 6.5 CONCLUSIONS / p78 (0048.jp2)
  35. 7.Numerical Simulation of Interfacial Cracks Considering Crack Face Contact / p81 (0049.jp2)
  36. 7.1 INTRODUCTION / p81 (0049.jp2)
  37. 7.2 MODELING OF THE CONTACT CONDITION / p82 (0050.jp2)
  38. 7.3 INTERFACIAL CRACK PROBLEM CONSIDERING CRACK FACE CONTACT / p90 (0054.jp2)
  39. 7.4 CONCLUSION / p93 (0055.jp2)
  40. 8.Conclusions / p95 (0056.jp2)
  41. Appendix A / p97 (0057.jp2)
  42. A.1 Near-tip Field of a Stationary Crack / p97 (0057.jp2)
  43. A.2 Near-tip Field of a Steady State Crack / p98 (0058.jp2)
  44. Appendix B / p99 (0058.jp2)
  45. B.1 The Stress Intensity Factor for Static Interfacial Cracks / p99 (0058.jp2)
  46. B.2 Near-tip Field of a Transonically Propagating Interfacial Crack / p100 (0059.jp2)
  47. Appendix C / p101 (0059.jp2)
  48. C.1 Source code list of the main procedure for solving asymmetric problem / p101 (0059.jp2)
  49. C.2 Source code list of a solver for symmetrical linear equations / p102 (0060.jp2)
  50. C.3 References / p108 (0063.jp2)
  51. C.4 Publications / p113 (0065.jp2)
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各種コード

  • NII論文ID(NAID)
    500000189157
  • NII著者ID(NRID)
    • 8000000189440
  • DOI(NDL)
  • NDL書誌ID
    • 000000353471
  • データ提供元
    • NDL ONLINE
    • NDLデジタルコレクション
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