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Research Article

Effect of chemical and heat treatment on 3D printed parts: nanoparticles embedment approach

, ORCID Icon, ORCID Icon, , &
Pages 2277-2288 | Accepted 31 Jan 2022, Published online: 16 Feb 2022

References

  • Chua CK, Leong KF, Lim CS. Rapid prototyping: principles and applications. Rapid Prototyping J. 2003.
  • Guo N, Leu MC. Additive manufacturing: technology, applications and research needs. Front Mech Eng. 2013;8(3):215–243.
  • Taufik M, Jain PK. A study of build edge profile for prediction of surface roughness in fused deposition modeling. J Manuf Sci Eng. 2016;138(6):61002.
  • Chohan JS, Singh R. Enhancing dimensional accuracy of FDM based biomedical implant replicas by statistically controlled vapor smoothing process. Progress Add Manuf. 2016;1(1–2):105–113.
  • Galantucci LM, Lavecchia F, Percoco G. Quantitative analysis of a chemical treatment to reduce roughness of parts fabricated using fused deposition modelling. CIRP Ann Manuf Technol. 2010;59(1):247–250.
  • Garg A, Bhattacharya A, Batish A. On surface finish and dimensional accuracy of FDM parts after cold vapor treatment. Mater Manuf Process. 2016;31(4):522–529.
  • Garg A, Bhattacharya A, Batish A. Chemical vapor treatment of ABS parts built by FDM: analysis of surface finish and mechanical strength. Int J Adv Manuf Technol. 2017;89(5–8):2175–2191.
  • Singh R, Singh S, and Singh IP, et al. Investigation for surface finish improvement of FDM parts by vapor smoothing process. Compos Part B. 2017;111:228–234.
  • Cunico MWM, Cunico MM, Cavalheiro PM, et al. Investigation of additive manufacturing surface smoothing process. Rapid Prototyping J. 2017;23(1):201–208.
  • Singh R, Singh S, Singh IP. Effect of hot vapor smoothing process on surface hardness of fused deposition modeling parts.3D print. Add Manuf. 2016;3:128–133.
  • Valerga AP, Batista M, Fernandez-Vidal SR, et al. Impact of chemical post-processing in Fused Deposition Modelling (FDM) on Polylactic Acid (PLA) surface quality and structure. Polymers. 2019;11(3):566.
  • Sharma SP, and Lakkad SC. Comparative study of the effect of fiber surface treatments on the flexural and interlaminar shear strength of carbon fiber-reinforced composites. Mater Today Commun. 2020;24(15):24.
  • Pandey A, Singh G, Singh S, et al. 3D printed biodegradable functional temperature-stimuli shape memory polymer for customized scaffoldings. J Mech Behav Biomed Mater. 2020;108.
  • Kotia A, Chowdary K, Srivastava I, et al. Carbon nanomaterials as friction modifiers in automotive engines: recent progress and perspectives. J Mol Liq. 2020;310.
  • Singh S, Singh G, Prakash C, et al. Current status and future directions of fused filament fabrication. J Manuf Processes. 2020;55.
  • Singh G, Singh RP, Jolly SS. Customized hydroxyapatites for bone-tissue engineering and drug delivery applications: a review. J Sol Gel Sci Techn. 2020;94(3):3.
  • Zahin N, Anwar R, Tewari D, et al. Nanoparticles and its biomedical applications in health and diseases: special focus on drug delivery. Environ Sci Pollut Res. 2020;27(16):19151–19168.
  • Zubar T, Fedosyuk V, Tishkevich D, et al. The effect of heat treatment on the microstructure and mechanical properties of 2d nanostructured au/nife system. Nanomaterials. 2020;10(6):1077.
  • Phull GS, Kumar S, Walia RS, et al. Copper electroforming optimization for fused deposition modeling produced ABS components for indirect tooling applications. J Adv Manuf Syst. 2020;19(1):15–29.
  • Darwish MA, Trukhanov AV, Senatov OS, et al. Investigation of AC-measurements of epoxy/ferrite composites. Nanomaterials. 2020;10(3):492.
  • Prasher P, Sharma M, Mudila H, et al. Emerging trends in clinical implications of bio-conjugated silver nanoparticles in drug delivery. Colloids Interface Sci Commun. 2020;35.
  • Singh S, Singh R. Mechanical characterization and comparison of additive manufactured ABS, Polyflex™ and ABS/Polyflex™ blended functional prototypes. Rapid Prototyping J. 2020;26(2):225–237.
  • Pham T-D, Van NN, Sharma AK, et al. Advanced nanomaterials for green growth. J Chem. 2020;2020:1–2.
  • Nandi D, Sharma A, Prabhakar PK. Nanoparticle-assisted therapeutic strategies for effective cancer management. Curr Nanosci. 2020;16(1):42–50.
  • Singh H, Kumar A, Thakur A, et al. One-pot synthesis of magnetite-ZnO nanocomposite and its photocatalytic activity. Topics Catal. 2020;63(11–14):1097–1108.
  • Prakash C, Singh S, Sharma S, et al. Fabrication of aluminium carbon nano tube silicon carbide particles based hybrid nano-composite by spark plasma sintering. Mater Today Proc. 2020;21.
  • Kumar D, Agarwal G, Tripathi B, et al. Characterization of PbS nanoparticles synthesized by chemical bath deposition. J Alloys Compd. 2020;484:1–2.
  • Pallavi MCM, Srivastava R, Arora S, et al. Impact assessment of silver nanoparticles on plant growth and soil bacterial diversity. 3 Biotech. 2020;6(2).
  • Mahesh KV, Singh SK, Gulati M. A comparative study of top-down and bottom-up approaches for the preparation of nanosuspensions of glipizide. Powder Technol. 2020;256.
  • Srivastava G, Das CK, and Das A, et al. Seed treatment with iron pyrite (FeS&#x003C;inf>2</inf>) nanoparticles increases the production of spinach. RSC Adv. 2020;4(102):58495–58504.
  • Mishra V, Bansal KK, and Verma A, et al. Solid lipid nanoparticles: emerging colloidal nano drug delivery systems. Pharmaceutics. 2020;10(4):191.
  • Chauhan CC, Kagdi AR, and Jotania RB, et al. Structural, magnetic and dielectric properties of Co-Zr substituted M-type calcium hexagonal ferrite nanoparticles in the presence of α-Fe&#x003C;inf>2</inf>O3 phase. Ceram Int. 2020;44(15):2411–2502.
  • Kumar V, Pitale SS, Mishra V, et al. Luminescence investigations of Ce3+ doped CaS nanophosphors. J Alloys Compd. 2020;492:1–2.
  • Kaur T, Kumar S, and Bhat BH, et al. Effect on dielectric, magnetic, optical and structural properties of Nd–Co substituted barium hexaferrite nanoparticles. Appl Phys A: Mater Sci Process. 2020;119 (4):1531–1540.
  • Sahai N, Kuldeep K. Saxena, Nakul Gupta, et al. Designing & simulation of a lightweight hip implant stem: an FEM based approach. Adv Mater Process Technol. 2021;1–9.
  • Chilakala M, Samyal R, Garg S, et al. Numerical simulation of cracks in automotive coatings under mechanical and thermal loading using element free galerkin method. Adv Mater Process Technol. 2021;1–19.
  • Singh L, Singh B, Saxena KK. Manufacturing techniques for metal matrix composites (MMC): an overview. Adv Mater Process Technol. 2020;6(2):457.
  • Rocha DP, Rocha RG, Castro SVF, et al. Electrochem Sci Adv. 2021;e2100136.
  • Francis V, Jain PK. Experimental investigations on fused deposition modelling of polymer layered silicate nanocomposite. Virtual Phys Prototyping. 2016;11(2):109–121.
  • Pourabas B, Raeesi V. Preparation of ABS/montmorillonite nanocomposite using a solvent/non solvent method. Polymer. 2005;46(15):5533–5540.
  • Francis V, Jain PK. 3D printed polymer dielectric substrates with enhanced permittivity by nanoclay inclusion. Virtual Phys Prototyp. 2017;12(2):107–115.
  • Lam CK, Cheung HY, Lau KT, et al. Cluster size effect in hardness of nanoclay/epoxy composites. Compos Part B Eng. 2005;36(3):263–269.
  • Pavlidou S, Papaspyrides CD. A review on polymer-layered silicate nanocomposites. Progress Polym Sci. 2008;33:1119–1198.
  • Wang Z, Wang J, Li M, et al. Three-dimensional printed acrylonitrile butadiene styrene framework coated with Cu-BTC metal-organic frameworks for the removal of methylene blue. Sci Rep. 2014;4(5939):1–7.

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