Language:
English
繁體中文
Help
圖資館首頁
Login
Back
Switch To:
Labeled
|
MARC Mode
|
ISBD
Fused deposition modeling based 3D p...
~
Dave, Harshit K.
Fused deposition modeling based 3D printing
Record Type:
Electronic resources : Monograph/item
Title/Author:
Fused deposition modeling based 3D printingedited by Harshit K. Dave, J. Paulo Davim.
other author:
Dave, Harshit K.
Published:
Cham :Springer International Publishing :2021.
Description:
ix, 515 p. :ill. (some col.), digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Three-dimensional printing.
Online resource:
https://doi.org/10.1007/978-3-030-68024-4
ISBN:
9783030680244$q(electronic bk.)
Fused deposition modeling based 3D printing
Fused deposition modeling based 3D printing
[electronic resource] /edited by Harshit K. Dave, J. Paulo Davim. - Cham :Springer International Publishing :2021. - ix, 515 p. :ill. (some col.), digital ;24 cm. - Materials forming, machining and tribology,2195-0911. - Materials forming, machining and tribology..
Chapter 1. Introduction to Fused Deposition Modeling based 3D Printing Process -- Chapter 2. Fused Deposition Modeling Based 3D printing: Design, Ideas, Simulations -- Chapter 3. Calorimetry, structure and morphology of printed samples from biodegradable materials using FDM 3D printing technology -- Chapter 4. Experimental investigation on FDM fabricated tetra chiral auxetic structures under uniaxial compressive loading -- Chapter 5. Experimental Study of Drilling 3D Printed Polylactic Acid (PLA) in FDM Process -- Chapter 6. Mechanical Properties of 3D-Printed Elastomers Produced by Fused Deposition Modeling -- Chapter 7. Mechanical Characterization of Fused Deposition Modeling (FDM) 3D Printed Parts -- Chapter 8. Mechanical and Tribological Characteristics of Polymer Composites Developed by Fused Filament Fabrication -- Chapter 9. The Surface Quality Improvement Methods for FDM Printed Parts: A Review -- Chapter 10. An overview on joining as post-processing techniques to overcome the build volume limitation of an FDM-3D printer -- Chapter 11. Post-Processing of FDM 3D-Printed Polylactic Acid Parts by CNC Trimming -- Chapter 12. Sustainable Product development by Fused Deposition Modelling Process -- Chapter 13. Sustainability Analysis of Fused Deposition Modelling Process -- Chapter 14. Fabrication of Composite Structures via 3D Printing -- Chapter 15. Use of FDM technology in healthcare applications: recent advances -- Chapter 16. Fused Filament Fabrication for External Medical Devices -- Chapter 17. Potential advanced drug delivery systems based on hydrogels in 3D printing technology for cancer treatment -- Chapter 18. 3D Printed Personalized Orthotic Inserts Using Photogrammetry and FDM Technology -- Chapter 19. Manufacturing of watertight housing for electronic equipment by fused deposition modeling -- Chapter 20. 4D Printing by Fused Deposition Modeling (FDM) -- Chapter 21. Computational Models: 3D Printing, Materials and Structures -- Chapter 22. Multi-Objective Optimization for FDM Process Parameters with Evolutionary Algorithms -- Chapter 23. Application of Machine Learning in Fused Deposition Modeling: A Review -- Chapter 24. Tool-path Optimization in Material Extrusion Additive Manufacturing -- Chapter 25. Metaheuristic Approaches for Modeling and Optimization of FDM Process -- Chapter 26. Layout optimization for FDM process by multi-objective optimization using RSM and GRA.
This book covers 3D printing activities by fused deposition modeling process. The two introductory chapters discuss the principle, types of machines and raw materials, process parameters, defects, design variations and simulation methods. Six chapters are devoted to experimental work related to process improvement, mechanical testing and characterization of the process, followed by three chapters on post-processing of 3D printed components and two chapters addressing sustainability concerns. Seven chapters discuss various applications including composites, external medical devices, drug delivery system, orthotic inserts, watertight components and 4D printing using FDM process. Finally, six chapters are dedicated to the study on modeling and optimization of FDM process using computational models, evolutionary algorithms, machine learning, metaheuristic approaches and optimization of layout and tool path.
ISBN: 9783030680244$q(electronic bk.)
Standard No.: 10.1007/978-3-030-68024-4doiSubjects--Topical Terms:
577142
Three-dimensional printing.
LC Class. No.: TS171.95 / .F874 2021
Dewey Class. No.: 621.988
Fused deposition modeling based 3D printing
LDR
:04411nmm a2200337 a 4500
001
597798
003
DE-He213
005
20210728115832.0
006
m d
007
cr nn 008maaau
008
211019s2021 sz s 0 eng d
020
$a
9783030680244$q(electronic bk.)
020
$a
9783030680237$q(paper)
024
7
$a
10.1007/978-3-030-68024-4
$2
doi
035
$a
978-3-030-68024-4
040
$a
GP
$c
GP
041
0
$a
eng
050
4
$a
TS171.95
$b
.F874 2021
072
7
$a
TGP
$2
bicssc
072
7
$a
TEC009060
$2
bisacsh
072
7
$a
TGP
$2
thema
082
0 4
$a
621.988
$2
23
090
$a
TS171.95
$b
.F993 2021
245
0 0
$a
Fused deposition modeling based 3D printing
$h
[electronic resource] /
$c
edited by Harshit K. Dave, J. Paulo Davim.
260
$a
Cham :
$b
Springer International Publishing :
$b
Imprint: Springer,
$c
2021.
300
$a
ix, 515 p. :
$b
ill. (some col.), digital ;
$c
24 cm.
490
1
$a
Materials forming, machining and tribology,
$x
2195-0911
505
0
$a
Chapter 1. Introduction to Fused Deposition Modeling based 3D Printing Process -- Chapter 2. Fused Deposition Modeling Based 3D printing: Design, Ideas, Simulations -- Chapter 3. Calorimetry, structure and morphology of printed samples from biodegradable materials using FDM 3D printing technology -- Chapter 4. Experimental investigation on FDM fabricated tetra chiral auxetic structures under uniaxial compressive loading -- Chapter 5. Experimental Study of Drilling 3D Printed Polylactic Acid (PLA) in FDM Process -- Chapter 6. Mechanical Properties of 3D-Printed Elastomers Produced by Fused Deposition Modeling -- Chapter 7. Mechanical Characterization of Fused Deposition Modeling (FDM) 3D Printed Parts -- Chapter 8. Mechanical and Tribological Characteristics of Polymer Composites Developed by Fused Filament Fabrication -- Chapter 9. The Surface Quality Improvement Methods for FDM Printed Parts: A Review -- Chapter 10. An overview on joining as post-processing techniques to overcome the build volume limitation of an FDM-3D printer -- Chapter 11. Post-Processing of FDM 3D-Printed Polylactic Acid Parts by CNC Trimming -- Chapter 12. Sustainable Product development by Fused Deposition Modelling Process -- Chapter 13. Sustainability Analysis of Fused Deposition Modelling Process -- Chapter 14. Fabrication of Composite Structures via 3D Printing -- Chapter 15. Use of FDM technology in healthcare applications: recent advances -- Chapter 16. Fused Filament Fabrication for External Medical Devices -- Chapter 17. Potential advanced drug delivery systems based on hydrogels in 3D printing technology for cancer treatment -- Chapter 18. 3D Printed Personalized Orthotic Inserts Using Photogrammetry and FDM Technology -- Chapter 19. Manufacturing of watertight housing for electronic equipment by fused deposition modeling -- Chapter 20. 4D Printing by Fused Deposition Modeling (FDM) -- Chapter 21. Computational Models: 3D Printing, Materials and Structures -- Chapter 22. Multi-Objective Optimization for FDM Process Parameters with Evolutionary Algorithms -- Chapter 23. Application of Machine Learning in Fused Deposition Modeling: A Review -- Chapter 24. Tool-path Optimization in Material Extrusion Additive Manufacturing -- Chapter 25. Metaheuristic Approaches for Modeling and Optimization of FDM Process -- Chapter 26. Layout optimization for FDM process by multi-objective optimization using RSM and GRA.
520
$a
This book covers 3D printing activities by fused deposition modeling process. The two introductory chapters discuss the principle, types of machines and raw materials, process parameters, defects, design variations and simulation methods. Six chapters are devoted to experimental work related to process improvement, mechanical testing and characterization of the process, followed by three chapters on post-processing of 3D printed components and two chapters addressing sustainability concerns. Seven chapters discuss various applications including composites, external medical devices, drug delivery system, orthotic inserts, watertight components and 4D printing using FDM process. Finally, six chapters are dedicated to the study on modeling and optimization of FDM process using computational models, evolutionary algorithms, machine learning, metaheuristic approaches and optimization of layout and tool path.
650
0
$a
Three-dimensional printing.
$3
577142
650
0
$a
Additive manufacturing.
$3
858773
650
1 4
$a
Industrial and Production Engineering.
$3
273753
700
1
$a
Dave, Harshit K.
$3
888513
700
1
$a
Davim, J. Paulo.
$3
285883
710
2
$a
SpringerLink (Online service)
$3
273601
773
0
$t
Springer Nature eBook
830
0
$a
Materials forming, machining and tribology.
$3
674563
856
4 0
$u
https://doi.org/10.1007/978-3-030-68024-4
950
$a
Engineering (SpringerNature-11647)
based on 0 review(s)
ALL
電子館藏
Items
1 records • Pages 1 •
1
Inventory Number
Location Name
Item Class
Material type
Call number
Usage Class
Loan Status
No. of reservations
Opac note
Attachments
000000196528
電子館藏
1圖書
電子書
EB TS171.95 .F993 2021 2021
一般使用(Normal)
On shelf
0
1 records • Pages 1 •
1
Multimedia
Multimedia file
https://doi.org/10.1007/978-3-030-68024-4
Reviews
Add a review
and share your thoughts with other readers
Export
pickup library
Processing
...
Change password
Login