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10 Finite element method investigation on delamination of 3D printed hybrid composites during the drilling operation

  • Pankaj Kumar , Sayed Shah Hussain , Ajay Kumar , Ashish Kumar Srivastava , Manowar Hussain and Purushottam Kumar Singh
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3D Printing Technologies
This chapter is in the book 3D Printing Technologies

Abstract

Composite materials are mostly employed in structural components but offer several other uses. One of the crucial activities in composite structures is drilling, which is usually the last one performed during assembly. Delamination in the drilling of the composite structure is a significant issue that can result in refusal and cause a substantial loss. Delamination can lead to poor assembly tolerance and longterm performance degradation, in addition to lowering the laminate’s structural integrity. The current work focuses on composite material drilling-related delamination. Spindle speed, feed, and interactions will be studied for their impact on drilling’s cutting characteristics. From the results, it can be observed that the quality of drilled hole and interlaminar bonding is improving with the increase in spindle speed.

Abstract

Composite materials are mostly employed in structural components but offer several other uses. One of the crucial activities in composite structures is drilling, which is usually the last one performed during assembly. Delamination in the drilling of the composite structure is a significant issue that can result in refusal and cause a substantial loss. Delamination can lead to poor assembly tolerance and longterm performance degradation, in addition to lowering the laminate’s structural integrity. The current work focuses on composite material drilling-related delamination. Spindle speed, feed, and interactions will be studied for their impact on drilling’s cutting characteristics. From the results, it can be observed that the quality of drilled hole and interlaminar bonding is improving with the increase in spindle speed.

Chapters in this book

  1. Frontmatter I
  2. Acknowledgments V
  3. Preface VII
  4. Contents XI
  5. List of contributors XV
  6. 1 3D-printed antennas 1
  7. 2 The recent developments in 3D bioprinting: a general bibliometric study and thematic investigation 39
  8. 3 Additive manufacturing of compositionally complex alloys: trends, challenges, and future perspectives 61
  9. 4 Adoptability of additive manufacturing process: design perceptive 77
  10. 5 Advanced bioprinting processes using additive manufacturing technologies: revolutionizing tissue engineering 95
  11. 6 Comparative analysis of thermal characteristics and optimizing laminar flow within medical-grade 3D printers for fabrication of sterile patientspecific implants (PSIs) using computational fluid dynamics 119
  12. 7 Review of 4D printing and materials enabling Industry 4.0 for implementation in manufacturing: an Indian context 143
  13. 8 Processing of smart materials by additive manufacturing and 4D printing 181
  14. 9 A comprehensive review on effect of DMLS process parameters and post-processing on quality of product in biomedical field 197
  15. 10 Finite element method investigation on delamination of 3D printed hybrid composites during the drilling operation 223
  16. 11 Analyzing the dimensional stability in direct ink written composite ink: a machine learning approach 235
  17. 12 Recent applications of rapid prototyping with 3D printing: a review 245
  18. 13 3D printing insight: techniques, application, and transformation 259
  19. 14 Additive manufacturing and 4D printing applications for Industry 4.0-enabled digital biomedical and pharmaceutical sectors 289
  20. 15 Application of three-dimensional printing in medical, agriculture, engineering, and other sectors 311
  21. 16 Recent developments in 3D printing: a critical analysis and deep dive into innovative real-world applications 335
  22. 17 Exploring design strategies for enhanced 3D printing performance 353
  23. Biographies 371
  24. Index 375
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