Nugroho / Hatmanto / Umemura | Additive Manufacturing Technologies and Advanced Materials | Buch | 978-3-0364-0366-3 | sack.de

Buch, Englisch, 212 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 500 g

Nugroho / Hatmanto / Umemura

Additive Manufacturing Technologies and Advanced Materials


Erscheinungsjahr 2023
ISBN: 978-3-0364-0366-3
Verlag: Trans Tech Publications

Buch, Englisch, 212 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 500 g

ISBN: 978-3-0364-0366-3
Verlag: Trans Tech Publications


This special edition contains articles on the latest research results and technological solutions in materials science and industrial manufacturing. The special collection will be helpful for specialists from applied materials science, machinery, electronic industry and chemical production.
Nugroho / Hatmanto / Umemura Additive Manufacturing Technologies and Advanced Materials jetzt bestellen!

Weitere Infos & Material


Preface
Chapter 1: Properties of Steel and Alloys
The Effect Addition of (Silicon and Silver) and Heat Treatments to the Alloy Properties (Copper - Nickel - Tin)
The Effect of Heat Treatment for Alloys (Aluminum - Copper) on some Mechanical Properties
Chapter 2: Additive Manufacturing Technologies
Tensile Strength Evaluation of FDM 3D-Printed Polymer Using Taguchi Methodology and Range Analysis
InkJet-Printed Supercapacitor Electrodes of Graphene-Carboxymethyl Cellulose Biocomposite Ink
High Temperature Heat Treatment and Severe Shot Peening of PBF-LB Manufactured 316L Stainless Steel
Chapter 3: Materials with Magnetic and Superconducting Properties
Magnetic Susceptibility Study of Hole-Doped Organic Metal -(ET)4Hg3-dCl8, d=22% and -(ET)4Hg3-dBr8, d=11%
Magnetic and Superconducting Phase Diagram of Electron-Doped Eu2-xCexCuO4+a-d
The Synthesis of (1-x-y)BiFeO3-xBaTiO3-yKVO3 (x=0.33, 0.38, y=0.01) Composition and its Effect on the Electrical Properties
Effect of Chromium Substitution on Microstructure and Magnetic Properties of La0.7Sr0.2Ba0.1Mn1-xCrxO3 (x = 0, 0.03, 0.05, 0.07, 0.1)
Characterization of Barium Hexaferrite (BaFe12O19) from NitrateCompound with Sol-Gel Method for Barium Hexaferrite MagneticMaterials
Study of Crystal Structure and Magnetics Properties in the Normal State of Electron-Doped Eu2-xCexCu0.97Zn0.03O4+a-d in Overdoped Regime
Microstructure, Magnetic and Electrical Transport Properties of Sol-Gel Synthesized La0.7Sr0.2Ca0.1MnO3:TiO2 Composite
Investigation of Dependence of Magnetic Properties on Sintering Temperature of Eu1.85Ce0.15CuO4+a-d Prepared by Sol-Gel Method
Chapter 4: Materials for Electronics and Energy Storage
Study of Zinc Oxide Films Growth on Aluminum Nitride and Silicon Substrates: Structural, Optical and Electrical Properties
PANI/Porous Carbon Palm Kernel Shell via In Situ Polymerization Method for Supercapacitor Electrode
Relaxation of the Distorted Lattice of 4H-SiC (0001) Surface by Post-Oxidation Annealing
Chapter 5: Physical Chemistry
Atomic Vibrational Effect on Vacancy Concentration of Gray Tin (a-Sn): Computation Based on Density Functional Theory
First Principle Calculations of Magnetic Proximity Effect Induced Valley Splitting on Heterointerface WS2/CoO(111)
Synthesis of Reduced Graphene Oxide from Cellulose and its Applications for Methylene Blue Adsorption
Modelling of Nano Silica Formation from Geothermal Silica Using Co-Precipitation Method
Chapter 6: Materials Failure and Defects Analysis
Prediction of Wafer Handling-Induced Point Defects in 300 mm Silicon Wafer Manufacturing from Edge Geometric Data
Failure Analysis of AISI H13 Shafts Used in Twin Screw Extruders during Fluoropolymer Compounding


Ihre Fragen, Wünsche oder Anmerkungen
Vorname*
Nachname*
Ihre E-Mail-Adresse*
Kundennr.
Ihre Nachricht*
Lediglich mit * gekennzeichnete Felder sind Pflichtfelder.
Wenn Sie die im Kontaktformular eingegebenen Daten durch Klick auf den nachfolgenden Button übersenden, erklären Sie sich damit einverstanden, dass wir Ihr Angaben für die Beantwortung Ihrer Anfrage verwenden. Selbstverständlich werden Ihre Daten vertraulich behandelt und nicht an Dritte weitergegeben. Sie können der Verwendung Ihrer Daten jederzeit widersprechen. Das Datenhandling bei Sack Fachmedien erklären wir Ihnen in unserer Datenschutzerklärung.