Agarwal / Krbat'a | Engineering Tribology and Waste Treatment | Buch | 978-3-0364-0844-6 | www.sack.de

Buch, Englisch, 136 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 370 g

Agarwal / Krbat'a

Engineering Tribology and Waste Treatment


Erscheinungsjahr 2025
ISBN: 978-3-0364-0844-6
Verlag: Trans Tech Publications

Buch, Englisch, 136 Seiten, Format (B × H): 170 mm x 240 mm, Gewicht: 370 g

ISBN: 978-3-0364-0844-6
Verlag: Trans Tech Publications


This special edition presents research results in two specific engineering areas: tribology and waste treatment. It is intended for researchers and engineers seeking technical insights and practical problem-solving solutions in these fields. We hope the presented results foster further research, collaboration, and real-world impact across academia and industry.

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Weitere Infos & Material


Preface
Chapter 1: Engineering Tribology
Experimental Comparison of the Material Properties of Original and Aftermarket Gears
Mathematical Model of Friction
Examination of the Internal Surface of a Firing Chamber of Armament Elements
Research on the Characteristics of Steels Essential for Increasing the Durability of Selected Special Equipment Structures
Tribological Analysis of Manganese Phosphate Coating on Steel Pistons for Internal Combustion Engines
Degradation of Hydraulic Oil in Operating Conditions
Chapter 2: Waste Treatment
Synthesis of Epoxidized Waste Cooking Oil as Plasticizer in the Production of Xyloglucan-Chitosan Films
Economic Assessment of Tamarind Kernel Powder Edible Film Production
A Comparative Analysis of Zn2+ Adsorption from Simulated Mining Wastewater Using Unmodified and NaClO-Modified Sugarcane Bagasse-Derived Biochar
Physical and Functional Properties of Spent Coffee Ground after Various Drying Techniques
Optimized Adsorption of Aqueous Cu (II) Ions Using Novel Microwave-Extracted Sodium Alginate from Brown Seaweed (Sargassum sp.)
Cleaner Bio-Based Plasticizer Synthesis from Waste Cooking Oil to Substitute Toxic Dioctyl Phthalate in PVC Film
Morphology, Thermal Properties and Rheological Behavior of Acrylate-Styrene-Acrylonitrile-Based Composites Filled with Waste Non-Metallic Printed Circuit Boards
A Comparative Study on Mechanical Properties and Morphology of PP/Waste Cement Composites with Using PP-g-MA as Compatibilizer and 3-Aminopropyl Triethoxysilane as Coupling Agent



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