
Engineering Materials: Properties and Processing Technologies
Trans Tech Publications Ltd (Publisher)
Published on 28. April 2023
Book
Paperback/Softback
318 pages
978-3-0364-0274-1 (ISBN)
Description
This special topic edition is devoted to current issues in materials science and materials processing technologies. The publication will be helpful to materials science, machine building and construction specialists.
This special topic edition is devoted to current issues in materials science and materials processing technologies. The publication will be helpful to materials science, machine building and construction specialists.
More details
Series
Language
English
Place of publication
Zurich
Switzerland
Target group
Professional and scholarly
Illustrations
Illustrations, unspecified
Dimensions
Height: 240 mm
Width: 170 mm
Thickness: 16 mm
Weight
670 gr
ISBN-13
978-3-0364-0274-1 (9783036402741)
DOI
10.4028/b-JRx28X
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Denis B. Solovev | Thangaprakash Sengodan | Peter Hornak
Engineering Materials: Properties and Processing Technologies
E-Book
03/2023
Trans Tech Publications Ltd
€211.86
Available for download
Content
<ul><li>Preface</li><li>Chapter 1: Composites, Polymers and Ceramics</li><li>Analysis of the Upshot of Heat Treatment on Properties of Magnesium Hybrid Composites</li><li>A Comparative Study of the Effect of Natural Fillers Embedded in Jute/Basalt Hybrid Composite</li><li>Performance and Mechanical Characterization of Tufted and Untufted Woven Pine Apple Leaf Fibre Reinforced with Poly Lactic Acid Green Composites</li><li>Effect of Electrical Poling on the Structural, Dielectric, and Photoluminescence Properties of Eu<sup>3+</sup> Substituted Eco-Friendly Ferroelectric Material Na<sub>0.5</sub>Bi<sub>0.5</sub>TiO<sub>3</sub></li><li>Impetus Yield of Acrylic Top Cover Pyramid Solar still due to Furthered Thermal Conductivity of MnO<sub>2</sub> and PANI-MnO<sub>2</sub> Nanocomposite Materials</li><li>MWCNT Filled Banana-Rice Husk Epoxy Hybrid Natural Fiber Polymer Composites</li><li>Macrostructure and Fracture Behaviour of Rice Husk and MWCNT Dispersion Strengthened Alkali Treated Banana Fiber Matrix Hybrid Composites</li><li>Experimental Study of Fiber Orientation on the Mechanical Properties of Glass Fiber Reinforced Thermoplastic Composites</li><li>Processing and Mechanical Properties of (Hf-Ta-Zr-Nb-Ti)C</li><li>A Study of the Relationship between the Rate of Return Strain of Polytetrafluoroethylene on Time, Mechanical Stress and Dose of Electron Irradiation</li><li>Predicting the Climatic Resistance of the Material and the Durability of the Structural Elements of the Composite Tower of the Power Line</li><li>Development of Digital Models of Physical and Mechanical Characteristics of Biodegradable Polymers Using the Example of Compositions Based on Low Density Polyethylene with Natural Rubber</li><li>Mathematical Modeling in Studying the Electrophysical Properties of Syndiotactic 1,2-Polybutadiene</li><li>Research of Moisture Sorption by Laminated Composite Materials</li><li>Influence of Filler Concentration on the Mechanical Properties of a Polymer Composite</li><li>Materials for the Needs of Agriculture Based on Biopolymers: A Comparative Analysis of Physical and Mechanical Properties</li><li>Study of Thermal Aging of the PCM Using Acoustic Emission and Optical Microscopy</li><li>Development of Heat-Resistant Composite Foam Material</li><li>Studies of Dielectric Characteristics of Polymer Films in a High-Frequency Electromagnetic Field</li><li>Material Parameter Assessment for Noise-Absorbing Devices in Shoe Heels</li><li>Chapter 2: Microstructure, Properties and Processing of Structural Metals</li><li>Microstructure Analysis of Progressive Secondary AlSi7Mg0.6 Alloy with Higher Fe Content Using Electron Metallography Techniques</li><li>Comparison of Microstructure and Properties of Nickel-Copper Alloy Prepared by Casting and Laser Powder Bed Fusion Process</li><li>Formation of Sulphides in As-Cast GOES Thin Strips</li><li>Characterisation of a San Mai Steel Composite for the Manufacture of Knives</li><li>Numerical Simulation of the Welding Process during the Main Circulation Pump Impeller Repair</li><li>A Study of Cut Surface after the Abrasive Water Jet Application on the MS1 Material Prepared by DMLS Method</li><li>The Influence of Progressive Cladding Technologies on Layers Quality</li><li>Chapter 3: Building Materials</li><li>Creep of Foam Concrete from the Position of the Hereditary Theory of Aging</li><li>Durability of Asphalt Concrete with Mineral Fillers Made of Non-Carbonate Raw Materials</li><li>The Effect of the Dispersion Nickel Slag Additive on the Strength of Ceramic Bricks</li><li>Mechanical Properties of Sand-Cement Mortar with Different Water/Cement Ratio under Thermal Gradient Conditions</li><li>Aging of Structural Materials Modified with Polymer Additives in Cold Climate Conditions</li><li>Analysis and Development of Innovative Concrete Compositions in the Republic of Bashkortostan</li><li>Nonlinear Modeling of Heat Distribution during a Concreting Beam, Using a Heating Electric Wire</li><li>Mineral Fillers Influence on Structure Formation and Properties of Asphalt Concrete</li><li>Increasing Sedimentation Stability of Cement-Mineral Suspensions by Adding the Hydroxyl-Containing Water-Soluble Polymers</li><li>Development of Acoustic and Thermal Insulation Materials from Pantyhose Waste</li><li>Flattening of Bamboo Culm while Softening in Palm Oil and Subsequent Mechanical Characterization</li><li>Potential Construction Applications of Sustainable 3D Printed Elements Made from Plastic Waste</li><li>Thermal and Flammability Properties of Flame Retardant Phase Change Material for Buildings Applications</li><li>Additive Manufacturing with Environmentally Sustainable Materials for Shell Envelop System</li><li>Green Building Materials: Mechanical Performance and Environmental Sustainability</li></ul>