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Udemy - Structural Engineering Abaqus Tutorials 2020

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Udemy - Structural Engineering Abaqus Tutorials 2020

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种子哈希:9de6464a7cd3c7fb4a3888a0ba0a09438f8e4e7b
文件大小: 8.16G
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收录时间:2025-04-30
最近下载:2025-08-06

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文件列表

  • 2. Three point bending/3. Concrete beam.mp4 467.7 MB
  • 11. XFEM/4. 3D-Concrete beam with pre-crack under 4 point bending.mp4 447.4 MB
  • 4. Sequential load analysis/1. Reinforcing damaged column with CFRP under sequential load.mp4 423.5 MB
  • 7. High velocity Impact/8. Example-2.mp4 419.8 MB
  • 2. Three point bending/5. Concrete beam with CFRP reinforcement.mp4 397.6 MB
  • 2. Three point bending/6. Concrete beam with steel bars and strips reinforcement.mp4 349.4 MB
  • 5. Cyclic Loading/1. Modelling reinforced beam and column.mp4 342.3 MB
  • 10. Repetitive low velocity impact/1. Steel beam under repetitive low velocity impact.mp4 334.9 MB
  • 6. Tensile Loading/6. Single-Lap joint (Part-1).mp4 333.5 MB
  • 8. Impact loading by considering thermal effect/4. Example-1 (Part-2).mp4 330.1 MB
  • 7. High velocity Impact/4. Example-1 (Part-1).mp4 328.1 MB
  • 6. Tensile Loading/4. Aluminium Specimen using ductile damage model.mp4 317.3 MB
  • 9. Low velocity Impact/1. Drop test on phone.mp4 311.4 MB
  • 3. Compressive Loading/2. Concrete column.mp4 300.8 MB
  • 6. Tensile Loading/7. Single-lap joint (Part-2).mp4 291.7 MB
  • 3. Compressive Loading/3. Concrete column strengthen with bars and strips.mp4 285.1 MB
  • 6. Tensile Loading/2. Concrete Specimen using CDP model.mp4 249.1 MB
  • 3. Compressive Loading/4. Concrete column Strengthen with bars, strips and CFRP.mp4 248.8 MB
  • 7. High velocity Impact/10. Example-3 (Part-1).mp4 227.8 MB
  • 5. Cyclic Loading/2. Applying load and boundary condition and results.mp4 223.5 MB
  • 11. XFEM/2. 2D-Concrete beam with pre-crack under 3 point bending.mp4 214.6 MB
  • 6. Tensile Loading/5. Adaptive mesh.mp4 209.0 MB
  • 2. Three point bending/8. Concrete beam with metal foam reinforcement.mp4 208.3 MB
  • 8. Impact loading by considering thermal effect/3. Example-1 (Part-1).mp4 190.3 MB
  • 7. High velocity Impact/11. Example-3 (Part-2).mp4 180.2 MB
  • 11. XFEM/3. Implicit Solver.mp4 175.9 MB
  • 7. High velocity Impact/5. Example-1 (Part-2).mp4 152.0 MB
  • 2. Three point bending/2. Concrete damaged plasticity (CDP).mp4 58.7 MB
  • 12. Only Theory/1. Concrete damaged plasticity (CDP model).mp4 58.6 MB
  • 12. Only Theory/2. Hashin damage model.mp4 49.2 MB
  • 2. Three point bending/4. Hashin damage model for composite material.mp4 49.2 MB
  • 1. Introduction/1. Introduction.mp4 46.6 MB
  • 8. Impact loading by considering thermal effect/2. Thermal Parameters.mp4 43.3 MB
  • 12. Only Theory/7. Thermal Properties.mp4 43.3 MB
  • 12. Only Theory/4. Johnson-Holmquist damge model.mp4 40.4 MB
  • 7. High velocity Impact/2. Johnson-Holmquist model.mp4 40.4 MB
  • 11. XFEM/1. Introduction.mp4 33.9 MB
  • 12. Only Theory/3. Ductile and shear damage.mp4 30.8 MB
  • 6. Tensile Loading/3. Ductile and shear damage.mp4 30.8 MB
  • 2. Three point bending/1. Introduction.mp4 25.6 MB
  • 3. Compressive Loading/1. Introduction.mp4 24.1 MB
  • 12. Only Theory/5. Johnson Cook damage model.mp4 22.7 MB
  • 7. High velocity Impact/7. Johnson Cook damage model.mp4 22.7 MB
  • 2. Three point bending/7. Crushable foam plastic model.mp4 22.2 MB
  • 12. Only Theory/6. Crushable foam plasticity.mp4 22.2 MB
  • 7. High velocity Impact/9. Crushable Foam under impact loading.mp4 18.9 MB
  • 8. Impact loading by considering thermal effect/1. Introduction.mp4 15.5 MB
  • 7. High velocity Impact/3. Reinforced Concrete block under impact loading using rigid projectile(Example-1).mp4 13.9 MB
  • 7. High velocity Impact/1. Overview.mp4 13.6 MB
  • 6. Tensile Loading/6.2 bolted-joint.zip 10.2 MB
  • 6. Tensile Loading/7.2 bolted-joint.zip 10.2 MB
  • 7. High velocity Impact/6. Concrete block under impact loading using steel projectile (Example-2).mp4 9.4 MB
  • 6. Tensile Loading/1. Introduction.mp4 7.1 MB
  • 7. High velocity Impact/8.1 Imapct-EXAMPLE-2.zip 4.3 MB
  • 7. High velocity Impact/4.2 Imapct.zip 4.0 MB
  • 7. High velocity Impact/5.3 Imapct.zip 4.0 MB
  • 2. Three point bending/6.1 Concrete-with-foam.zip 3.5 MB
  • 2. Three point bending/8.2 Concrete-with-foam.zip 3.5 MB
  • 6. Tensile Loading/5.2 adaptive-mesh.zip 3.2 MB
  • 2. Three point bending/6.3 Concrete-with-stripsandbars.zip 2.8 MB
  • 7. High velocity Impact/9.1 crushable-impact-student.zip 1.3 MB
  • 6. Tensile Loading/4.2 al-tensile.zip 1.2 MB
  • 8. Impact loading by considering thermal effect/3.1 heat-impact-for-student.zip 1.2 MB
  • 8. Impact loading by considering thermal effect/4.3 heat-impact-for-student.zip 1.2 MB
  • 3. Compressive Loading/3.1 2-concrete-with-stripsandbars.zip 1.1 MB
  • 9. Low velocity Impact/1.4 drop test.zip 896.1 kB
  • 2. Three point bending/2.1 CDP.pdf 894.0 kB
  • 3. Compressive Loading/4.1 3-CC-RC-CFRP.zip 813.0 kB
  • 2. Three point bending/3.2 Concrete-only.zip 799.5 kB
  • 2. Three point bending/5.2 Concrete-with-CFRP.zip 744.6 kB
  • 4. Sequential load analysis/1.2 seq load.zip 460.4 kB
  • 11. XFEM/3.2 impilcit-student.zip 435.6 kB
  • 10. Repetitive low velocity impact/1.1 impact-for-student.zip 414.4 kB
  • 5. Cyclic Loading/2.3 part-2.zip 389.4 kB
  • 3. Compressive Loading/2.1 1-concrete-only.zip 334.3 kB
  • 5. Cyclic Loading/1.2 part-1.zip 301.2 kB
  • 11. XFEM/4.2 3d-student-file.zip 254.7 kB
  • 11. XFEM/2.2 Concrete-beam-with-crack.zip 253.6 kB
  • 6. Tensile Loading/2.1 Concrete-specimen-for-student.zip 182.4 kB
  • 9. Low velocity Impact/1.3 cad-files.zip 106.7 kB
  • 11. XFEM/4.1 concrete beam under 4-point bending .zip 104.4 kB
  • 4. Sequential load analysis/1. Reinforcing damaged column with CFRP under sequential load.srt 52.3 kB
  • 2. Three point bending/3. Concrete beam.srt 50.5 kB
  • 2. Three point bending/2.2 Material property .xlsx 50.2 kB
  • 2. Three point bending/3.1 Material property .xlsx 50.2 kB
  • 2. Three point bending/4.1 Material property .xlsx 50.2 kB
  • 2. Three point bending/5.1 Material property .xlsx 50.2 kB
  • 2. Three point bending/6.2 Material property .xlsx 50.2 kB
  • 2. Three point bending/7.1 Material property .xlsx 50.2 kB
  • 2. Three point bending/8.1 Material property .xlsx 50.2 kB
  • 3. Compressive Loading/2.2 Material property .xlsx 50.2 kB
  • 3. Compressive Loading/3.2 Material property .xlsx 50.2 kB
  • 3. Compressive Loading/4.2 Material property .xlsx 50.2 kB
  • 4. Sequential load analysis/1.1 Material property .xlsx 50.2 kB
  • 5. Cyclic Loading/1.1 Material property .xlsx 50.2 kB
  • 5. Cyclic Loading/2.2 Material property .xlsx 50.2 kB
  • 6. Tensile Loading/2.2 Material property .xlsx 50.2 kB
  • 6. Tensile Loading/4.1 Material property .xlsx 50.2 kB
  • 6. Tensile Loading/5.1 Material property .xlsx 50.2 kB
  • 6. Tensile Loading/6.1 Material property .xlsx 50.2 kB
  • 6. Tensile Loading/7.1 Material property .xlsx 50.2 kB
  • 7. High velocity Impact/3.2 Material property .xlsx 50.2 kB
  • 7. High velocity Impact/4.3 Material property .xlsx 50.2 kB
  • 7. High velocity Impact/5.2 Material property .xlsx 50.2 kB
  • 7. High velocity Impact/8.2 Material property .xlsx 50.2 kB
  • 7. High velocity Impact/10.1 Material property .xlsx 50.2 kB
  • 7. High velocity Impact/11.1 Material property .xlsx 50.2 kB
  • 8. Impact loading by considering thermal effect/2.1 Material property .xlsx 50.2 kB
  • 8. Impact loading by considering thermal effect/3.2 Material property .xlsx 50.2 kB
  • 8. Impact loading by considering thermal effect/4.1 Material property .xlsx 50.2 kB
  • 9. Low velocity Impact/1.2 Material property .xlsx 50.2 kB
  • 10. Repetitive low velocity impact/1.2 Material property .xlsx 50.2 kB
  • 11. XFEM/2.1 Material property .xlsx 50.2 kB
  • 11. XFEM/3.1 Material property .xlsx 50.2 kB
  • 11. XFEM/4.3 Material property .xlsx 50.2 kB
  • 12. Only Theory/1.1 Material+property+.xlsx 50.2 kB
  • 11. XFEM/4. 3D-Concrete beam with pre-crack under 4 point bending.srt 48.8 kB
  • 7. High velocity Impact/8. Example-2.srt 44.5 kB
  • 6. Tensile Loading/6. Single-Lap joint (Part-1).srt 42.0 kB
  • 6. Tensile Loading/4. Aluminium Specimen using ductile damage model.srt 40.9 kB
  • 2. Three point bending/5. Concrete beam with CFRP reinforcement.srt 39.0 kB
  • 9. Low velocity Impact/1. Drop test on phone.srt 38.3 kB
  • 5. Cyclic Loading/1. Modelling reinforced beam and column.srt 36.0 kB
  • 8. Impact loading by considering thermal effect/4. Example-1 (Part-2).srt 35.7 kB
  • 7. High velocity Impact/4. Example-1 (Part-1).srt 35.3 kB
  • 10. Repetitive low velocity impact/1. Steel beam under repetitive low velocity impact.srt 34.2 kB
  • 3. Compressive Loading/2. Concrete column.srt 33.0 kB
  • 2. Three point bending/6. Concrete beam with steel bars and strips reinforcement.srt 33.0 kB
  • 3. Compressive Loading/3. Concrete column strengthen with bars and strips.srt 30.8 kB
  • 6. Tensile Loading/7. Single-lap joint (Part-2).srt 30.5 kB
  • 6. Tensile Loading/2. Concrete Specimen using CDP model.srt 29.4 kB
  • 11. XFEM/2. 2D-Concrete beam with pre-crack under 3 point bending.srt 28.7 kB
  • 7. High velocity Impact/10. Example-3 (Part-1).srt 27.6 kB
  • 8. Impact loading by considering thermal effect/3. Example-1 (Part-1).srt 26.6 kB
  • 3. Compressive Loading/4. Concrete column Strengthen with bars, strips and CFRP.srt 26.5 kB
  • 6. Tensile Loading/5. Adaptive mesh.srt 23.8 kB
  • 2. Three point bending/8. Concrete beam with metal foam reinforcement.srt 22.9 kB
  • 5. Cyclic Loading/2. Applying load and boundary condition and results.srt 21.0 kB
  • 11. XFEM/3. Implicit Solver.srt 20.1 kB
  • 7. High velocity Impact/11. Example-3 (Part-2).srt 16.1 kB
  • 7. High velocity Impact/5. Example-1 (Part-2).srt 13.6 kB
  • 5. Cyclic Loading/1.3 cyclic loading.xlsx 12.6 kB
  • 5. Cyclic Loading/2.1 cyclic loading.xlsx 12.6 kB
  • 1. Introduction/1. Introduction.srt 10.8 kB
  • 2. Three point bending/2. Concrete damaged plasticity (CDP).srt 9.7 kB
  • 12. Only Theory/1. Concrete damaged plasticity (CDP model).srt 9.7 kB
  • 2. Three point bending/4. Hashin damage model for composite material.srt 8.4 kB
  • 12. Only Theory/2. Hashin damage model.srt 8.4 kB
  • 7. High velocity Impact/2. Johnson-Holmquist model.srt 8.3 kB
  • 12. Only Theory/4. Johnson-Holmquist damge model.srt 8.3 kB
  • 8. Impact loading by considering thermal effect/2. Thermal Parameters.srt 7.9 kB
  • 12. Only Theory/7. Thermal Properties.srt 7.9 kB
  • 11. XFEM/1. Introduction.srt 6.8 kB
  • 2. Three point bending/1. Introduction.srt 6.1 kB
  • 6. Tensile Loading/3. Ductile and shear damage.srt 6.1 kB
  • 12. Only Theory/3. Ductile and shear damage.srt 6.1 kB
  • 3. Compressive Loading/1. Introduction.srt 6.0 kB
  • 7. High velocity Impact/7. Johnson Cook damage model.srt 4.9 kB
  • 12. Only Theory/5. Johnson Cook damage model.srt 4.9 kB
  • 2. Three point bending/7. Crushable foam plastic model.srt 4.5 kB
  • 12. Only Theory/6. Crushable foam plasticity.srt 4.5 kB
  • 8. Impact loading by considering thermal effect/1. Introduction.srt 4.3 kB
  • 7. High velocity Impact/3. Reinforced Concrete block under impact loading using rigid projectile(Example-1).srt 3.7 kB
  • 7. High velocity Impact/9. Crushable Foam under impact loading.srt 2.9 kB
  • 7. High velocity Impact/1. Overview.srt 2.7 kB
  • 7. High velocity Impact/6. Concrete block under impact loading using steel projectile (Example-2).srt 2.3 kB
  • 6. Tensile Loading/1. Introduction.srt 1.8 kB
  • 9. Low velocity Impact/1.1 Input-parameters-glass.txt 1.6 kB
  • 7. High velocity Impact/2.1 Input-parameters.txt 1.6 kB
  • 7. High velocity Impact/3.1 Input-parameters.txt 1.6 kB
  • 7. High velocity Impact/4.1 Input-parameters.txt 1.6 kB
  • 7. High velocity Impact/5.1 Input-parameters.txt 1.6 kB
  • 7. High velocity Impact/6.1 Input-parameters.txt 1.6 kB
  • 7. High velocity Impact/9.2 Input-parameters.txt 1.6 kB
  • 8. Impact loading by considering thermal effect/3.3 Input-parameters.txt 1.6 kB
  • 8. Impact loading by considering thermal effect/4.2 Input-parameters.txt 1.6 kB
  • Readme.txt 129 Bytes

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