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  • Thermoplastic Polyurethane (TPU)/Halloysite Nanotube (HNT) Nanocomposites: Additively Manufactured Using Fused Deposition Modelling (FDM)

    Thermoplastic Polyurethane (TPU)/Halloysite Nanotube (HNT) Nanocomposites by Nugroho, Wendy Triadji; Dong, Yu; Pramanik, Alokesh;

    Additively Manufactured Using Fused Deposition Modelling (FDM)

    Series: Engineering Materials;

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      • Publisher's listprice EUR 171.19
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        71 001 Ft (67 620 Ft + 5% VAT)
      • Discount 12% (cc. 8 520 Ft off)
      • Discounted price 62 481 Ft (59 506 Ft + 5% VAT)

    71 001 Ft

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    Product details:

    • Publisher Springer Nature Singapore
    • Date of Publication 9 January 2026
    • Number of Volumes 1 pieces, Book

    • ISBN 9789819505401
    • Binding Hardback
    • No. of pages228 pages
    • Size 235x155 mm
    • Language English
    • Illustrations XIV, 228 p. 130 illus., 104 illus. in color. Illustrations, black & white
    • 700

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    Long description:

    "

    This book highlights the novel development of additively manufactured polyurethane (PU)/halloysite nanotube (HNT) nanocomposites with the optimisation of 3D printing parameters in fused deposition modelling (FDM) and nanofiller contents to influence dimensional accuracy, surface roughness, mechanical and thermal properties, as well as shape memory behaviour for potential widespread applications in biomedical engineering, electronics, antistatic materials, thermal insulation, sports equipment, garments, etc.

    "

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    Table of Contents:

    Popular additive manufacturing forpolymers and composites.- Fundamental Steps in AdditiveManufacturing.- 3D printing of PU composites.- 3D printing of re-entrantstructures.- 4D printing of shape memory PUcomposites.- Methodologies and analyticaltechniques.- Optimization of printing parameters for dimensional accuracy and surface finish of 3Dprinted PU.- Optimization of nanofiller contentand 3D printing parameters of SMPU/ HNT nanocomposites inresponse todimensional accuracy and surface roughness.- Effect of HNT content and 3Dprinting parameters on mechanical and thermal properties of SMPU/HNTnanocomposites.- Influence of HNT content and 3Dprinting parameters on shape memory behavior and compressive properties ofSMPU/HNT nanocomposites.- Applications.- References.

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