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2024 | OriginalPaper | Buchkapitel

2. Challenges in Additive Manufacturing Technology: Post Processing, Design and Material’s Selection

verfasst von : Hamaid Mahmood Khan, Saad Waqar

Erschienen in: Practical Implementations of Additive Manufacturing Technologies

Verlag: Springer Nature Singapore

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Abstract

It is important to bear in mind that additive manufacturing (AM) did not emerge in isolation but rather built upon earlier technologies. The rapid adoption of 3D printing technology across industries serves as a testament to its effective evolution from a specialized method primarily used for prototyping to a viable industrial production technique. As the trend continues to gain momentum, an increasing number of companies will inevitably embrace AM techniques to manufacture components using diverse materials. This chapter explores significant milestones in the history of additive manufacturing, illustrating the advancements 3D printing has made over the past decade while considering the widespread growth of applications and technology in the mainstream. The transformative journey of 3D printing is examined, shedding light on its profound impact on various industries and its potential for further development and innovation in the future. By examining the historical context and current landscape, this chapter aims to provide a comprehensive understanding of the progressive nature of additive manufacturing and its continued role in shaping the manufacturing industry. In Sect. 1, a brief introduction is given regarding the historical and future trends in additive manufacturing. Sections 26 discuss different additive manufacturing techniques, their working principles, and the suitable materials for each of these techniques. In Sect. 7, the concept of 4D printing is briefly discussed, including its applicability and future trends.

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Literatur
1.
Zurück zum Zitat Majeed A, Zhang Y, Ren S, Lv J, Peng T, Waqar S, Yin E (2021) A big data-driven framework for sustainable and smart additive manufacturing. Robot Comput-Integr Manuf 67:102026CrossRef Majeed A, Zhang Y, Ren S, Lv J, Peng T, Waqar S, Yin E (2021) A big data-driven framework for sustainable and smart additive manufacturing. Robot Comput-Integr Manuf 67:102026CrossRef
7.
Zurück zum Zitat Gibson I, Rosen DW, Stucker B (2010) Photopolymerization processes. In: Additive manufacturing technologies. Springer, pp 78–119 Gibson I, Rosen DW, Stucker B (2010) Photopolymerization processes. In: Additive manufacturing technologies. Springer, pp 78–119
8.
Zurück zum Zitat Wang M, Li W, Mille LS, Ching T, Luo Z, Tang G, Zhang YS et al (2022) Digital light processing based bioprinting with composable gradients. Adv Mater 34(1):2107038 Wang M, Li W, Mille LS, Ching T, Luo Z, Tang G, Zhang YS et al (2022) Digital light processing based bioprinting with composable gradients. Adv Mater 34(1):2107038
9.
Zurück zum Zitat Guerra Silva R, Torres MJ, Zahr Viñuela J (2021) A comparison of miniature lattice structures produced by material extrusion and vat photopolymerization additive manufacturing. Polymers 13(13):2163 Guerra Silva R, Torres MJ, Zahr Viñuela J (2021) A comparison of miniature lattice structures produced by material extrusion and vat photopolymerization additive manufacturing. Polymers 13(13):2163
12.
Zurück zum Zitat Betancourt N, Chen X (2022) Review of extrusion-based multi-material bioprinting processes. Bioprinting, e00189 Betancourt N, Chen X (2022) Review of extrusion-based multi-material bioprinting processes. Bioprinting, e00189
13.
Zurück zum Zitat Gokuldoss PK, Kolla S, Eckert J (2017) Additive manufacturing processes: selective laser melting, electron beam melting and binder jetting—selection guidelines. Materials 10(6):672 Gokuldoss PK, Kolla S, Eckert J (2017) Additive manufacturing processes: selective laser melting, electron beam melting and binder jetting—selection guidelines. Materials 10(6):672
14.
Zurück zum Zitat Balogun HA, Sulaiman R, Marzouk SS, Giwa A, Hasan SW (2019) 3D printing and surface imprinting technologies for water treatment: a review. J Water Process Eng 31:100786CrossRef Balogun HA, Sulaiman R, Marzouk SS, Giwa A, Hasan SW (2019) 3D printing and surface imprinting technologies for water treatment: a review. J Water Process Eng 31:100786CrossRef
15.
Zurück zum Zitat Mirzababaei S, Pasebani S (2019) A review on binder jet additive manufacturing of 316L stainless steel. J Manuf Mater Process 3(3):82 Mirzababaei S, Pasebani S (2019) A review on binder jet additive manufacturing of 316L stainless steel. J Manuf Mater Process 3(3):82
16.
Zurück zum Zitat Lv X, Ye F, Cheng L, Fan S, Liu Y (2019) Binder jetting of ceramics: powders, binders, printing parameters, equipment, and post-treatment. Ceram Int 45(10):12609–12624CrossRef Lv X, Ye F, Cheng L, Fan S, Liu Y (2019) Binder jetting of ceramics: powders, binders, printing parameters, equipment, and post-treatment. Ceram Int 45(10):12609–12624CrossRef
17.
Zurück zum Zitat Li M, Du W, Elwany A, Pei Z, Ma C (2020) Metal binder jetting additive manufacturing: a literature review. J Manuf Sci Eng 142(9) Li M, Du W, Elwany A, Pei Z, Ma C (2020) Metal binder jetting additive manufacturing: a literature review. J Manuf Sci Eng 142(9)
20.
Zurück zum Zitat Saboori A, Gallo D, Biamino S, Fino P, Lombardi M (2017) An overview of additive manufacturing of titanium components by directed energy deposition: microstructure and mechanical properties. Appl Sci 7(9):883CrossRef Saboori A, Gallo D, Biamino S, Fino P, Lombardi M (2017) An overview of additive manufacturing of titanium components by directed energy deposition: microstructure and mechanical properties. Appl Sci 7(9):883CrossRef
21.
Zurück zum Zitat Dass A, Moridi A (2019) State of the art in directed energy deposition: from additive manufacturing to materials design. Coatings 9(7):418CrossRef Dass A, Moridi A (2019) State of the art in directed energy deposition: from additive manufacturing to materials design. Coatings 9(7):418CrossRef
23.
Zurück zum Zitat Tamanna N, Crouch R, Naher S (2019) Progress in numerical simulation of the laser cladding process. Opt Lasers Eng 122:151–163CrossRef Tamanna N, Crouch R, Naher S (2019) Progress in numerical simulation of the laser cladding process. Opt Lasers Eng 122:151–163CrossRef
24.
Zurück zum Zitat Luo X, Cao J, Meng G, Chuan Y, Yao Z, Xie H (2020) Systematical investigation on the microstructures and tribological properties of Fe–Al laser cladding coatings. Appl Surf Sci 516:146121CrossRef Luo X, Cao J, Meng G, Chuan Y, Yao Z, Xie H (2020) Systematical investigation on the microstructures and tribological properties of Fe–Al laser cladding coatings. Appl Surf Sci 516:146121CrossRef
25.
Zurück zum Zitat Svetlizky D, Das M, Zheng B, Vyatskikh AL, Bose S, Bandyopadhyay A, Eliaz N et al (2021) Directed energy deposition (DED) additive manufacturing: physical characteristics, defects, challenges and applications. Mater Today 49:271–295 Svetlizky D, Das M, Zheng B, Vyatskikh AL, Bose S, Bandyopadhyay A, Eliaz N et al (2021) Directed energy deposition (DED) additive manufacturing: physical characteristics, defects, challenges and applications. Mater Today 49:271–295
26.
Zurück zum Zitat Srivastava M, Rathee S, Maheshwari S, Noor Siddiquee A, Kundra TK (2019) A review on recent progress in solid state friction based metal additive manufacturing: friction stir additive techniques. Crit Rev Solid State Mater Sci 44(5):345–377CrossRef Srivastava M, Rathee S, Maheshwari S, Noor Siddiquee A, Kundra TK (2019) A review on recent progress in solid state friction based metal additive manufacturing: friction stir additive techniques. Crit Rev Solid State Mater Sci 44(5):345–377CrossRef
30.
Zurück zum Zitat Parandoush P, Lin D (2017) A review on additive manufacturing of polymer-fiber composites. Compos Struct 182:36–53CrossRef Parandoush P, Lin D (2017) A review on additive manufacturing of polymer-fiber composites. Compos Struct 182:36–53CrossRef
34.
Zurück zum Zitat Kempen K, Thijs L, Yasa E, Badrossamay M, Verheecke W, Kruth JP (2011) Process optimization and micostructural analysis for selective laser melting of AlSi10Mg. In: Solid freeform fabrication, pp 484–495 Kempen K, Thijs L, Yasa E, Badrossamay M, Verheecke W, Kruth JP (2011) Process optimization and micostructural analysis for selective laser melting of AlSi10Mg. In: Solid freeform fabrication, pp 484–495
37.
Zurück zum Zitat Sun W, Starly B, Daly AC, Burdick JA, Groll J, Skeldon G, Nishikawa M et al (2020) The bioprinting roadmap. Biofabrication 12(2):22002 Sun W, Starly B, Daly AC, Burdick JA, Groll J, Skeldon G, Nishikawa M et al (2020) The bioprinting roadmap. Biofabrication 12(2):22002
38.
Zurück zum Zitat Jacobsen M (2016) Clearing the way for pivotal 21st-century innovation. In: Giftedness and talent in the 21st century. Springer, pp 163–179 Jacobsen M (2016) Clearing the way for pivotal 21st-century innovation. In: Giftedness and talent in the 21st century. Springer, pp 163–179
40.
Zurück zum Zitat Bruni A, Serra FG, Deregibus A, Castroflorio T (2019) Shape-memory polymers in dentistry: systematic review and patent landscape report. Materials 12(14):2216CrossRef Bruni A, Serra FG, Deregibus A, Castroflorio T (2019) Shape-memory polymers in dentistry: systematic review and patent landscape report. Materials 12(14):2216CrossRef
42.
Zurück zum Zitat Anas S, Khan MY, Rafey M, Faheem K (2022) Concept of 5D printing technology and its applicability in the healthcare industry. Mater Today Proc 56:1726–1732CrossRef Anas S, Khan MY, Rafey M, Faheem K (2022) Concept of 5D printing technology and its applicability in the healthcare industry. Mater Today Proc 56:1726–1732CrossRef
44.
Zurück zum Zitat Ashima R, Haleem A, Bahl S, Javaid M, Mahla SK, Singh S (2021) Automation and manufacturing of smart materials in additive manufacturing technologies using internet of things towards the adoption of Industry 4.0. Mater Today Proc 45:5081–5088CrossRef Ashima R, Haleem A, Bahl S, Javaid M, Mahla SK, Singh S (2021) Automation and manufacturing of smart materials in additive manufacturing technologies using internet of things towards the adoption of Industry 4.0. Mater Today Proc 45:5081–5088CrossRef
Metadaten
Titel
Challenges in Additive Manufacturing Technology: Post Processing, Design and Material’s Selection
verfasst von
Hamaid Mahmood Khan
Saad Waqar
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-5949-5_2

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