Development and Performance Evaluation of Silicon Carbide Coated Aluminum Hybrid Composite Gears (Paperback)
Langue : anglais
Edité par Pippet Sky, 2026
- Livre broché
- Neuf

Vendeur : Grand Eagle Retail, Bensenville, IL, Etats-UnisGrand Eagle Retail
Vendeur AbeBooks depuis 12 octobre 2005
Etat: Neuf
EUR 24,85
Quantité disponible : 1 disponible(s)
Ajouter au panierItem description from seller
Paperback. The development of lightweight, durable, and high-performance gear materials is an important area of modern mechanical and materials engineering. Development and Performance Evaluation of Silicon Carbide Coated Aluminum Hybrid Composite Gears provides a focused introduction to the design, material characteristics, surface engineering, processing considerations, and performance evaluation of aluminum-based hybrid composite gears incorporating silicon carbide coatings. The book brings together concepts from mechanical engineering, materials science, tribology, manufacturing, composite materials, and surface engineering within a structured technical framework.The book introduces the fundamental principles of gear systems and the engineering requirements associated with gear materials. Readers are introduced to concepts such as gear geometry, mechanical loading, contact stresses, friction, wear, hardness, surface durability, and dimensional stability. These foundations provide the necessary context for understanding why material selection and surface modification are important when developing gears for demanding mechanical applications.A central focus is placed on aluminum-based hybrid composite materials and the role of silicon carbide as a reinforcing and surface-engineering material. The text examines the characteristics of aluminum matrices, hybrid reinforcement, silicon carbide, and coated surfaces, with attention to material structure, hardness, wear resistance, thermal behavior, and mechanical response. The discussion considers how material composition and surface characteristics can influence the functional performance of gears.The book further explores the development and evaluation of silicon carbide coated aluminum hybrid composite gears. Topics such as coating formation, surface characteristics, adhesion, hardness, friction, wear, load-bearing behavior, and surface integrity are considered within the broader context of gear engineering. Readers gain an understanding of how surface modification and composite material design can be evaluated through measurable engineering parameters.Tribological performance is an important component of gear reliability, and the book considers the relationship between friction, wear, contact conditions, lubrication, and surface properties. The discussion introduces general approaches for evaluating wear behavior and frictional response while examining how silicon carbide-based surface protection can influence the interaction between contacting surfaces. These concepts are presented as general engineering principles rather than unsupported claims about specific industrial performance.The book also addresses mechanical and structural evaluation of composite gears. Considerations such as tensile and compressive behavior of constituent materials, hardness, dimensional characteristics, surface morphology, gear tooth integrity, and resistance to mechanical degradation are discussed in relation to material and processing variables. Characterization methods provide a basis for connecting material structure and surface condition with measurable gear performance.Manufacturing and materials-processing considerations are also introduced. The relationship between composite formulation, reinforcement, coating characteristics, processing conditions, and final component performance is examined from a general engineering perspective. Attention is given to the importance of controlling surface quality, coating integrity, material uniformity, and dimensional characteristics when developing advanced gear components. Development and Performance Evaluation of Silicon Carbide Coated Aluminum Hybrid Composite Gears explores aluminum-based hybrid composite gears and silicon carbide surface coatings, with emphasis on material development. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.…
N° de réf. du vendeur 9798256294830
- Titre
- Development and Performance Evaluation of Silicon Carbide Coated Aluminum Hybrid Composite Gears (Paperback)
- Auteur
- Belva
- Éditeur
- Pippet Sky
- Année de publication
- 2026
- État de l'article
- new
- Reliure
- Paperback
- Langue
- anglais
- ISBN à 13 chiffres
- 9798256294830
The development of lightweight, durable, and high-performance gear materials is an important area of modern mechanical and materials engineering. Development and Performance Evaluation of Silicon Carbide Coated Aluminum Hybrid Composite Gears provides a focused introduction to the design, material characteristics, surface engineering, processing considerations, and performance evaluation of aluminum-based hybrid composite gears incorporating silicon carbide coatings. The book brings together concepts from mechanical engineering, materials science, tribology, manufacturing, composite materials, and surface engineering within a structured technical framework.
The book introduces the fundamental principles of gear systems and the engineering requirements associated with gear materials. Readers are introduced to concepts such as gear geometry, mechanical loading, contact stresses, friction, wear, hardness, surface durability, and dimensional stability. These foundations provide the necessary context for understanding why material selection and surface modification are important when developing gears for demanding mechanical applications.
A central focus is placed on aluminum-based hybrid composite materials and the role of silicon carbide as a reinforcing and surface-engineering material. The text examines the characteristics of aluminum matrices, hybrid reinforcement, silicon carbide, and coated surfaces, with attention to material structure, hardness, wear resistance, thermal behavior, and mechanical response. The discussion considers how material composition and surface characteristics can influence the functional performance of gears.
The book further explores the development and evaluation of silicon carbide coated aluminum hybrid composite gears. Topics such as coating formation, surface characteristics, adhesion, hardness, friction, wear, load-bearing behavior, and surface integrity are considered within the broader context of gear engineering. Readers gain an understanding of how surface modification and composite material design can be evaluated through measurable engineering parameters.
Tribological performance is an important component of gear reliability, and the book considers the relationship between friction, wear, contact conditions, lubrication, and surface properties. The discussion introduces general approaches for evaluating wear behavior and frictional response while examining how silicon carbide-based surface protection can influence the interaction between contacting surfaces. These concepts are presented as general engineering principles rather than unsupported claims about specific industrial performance.
The book also addresses mechanical and structural evaluation of composite gears. Considerations such as tensile and compressive behavior of constituent materials, hardness, dimensional characteristics, surface morphology, gear tooth integrity, and resistance to mechanical degradation are discussed in relation to material and processing variables. Characterization methods provide a basis for connecting material structure and surface condition with measurable gear performance.
Manufacturing and materials-processing considerations are also introduced. The relationship between composite formulation, reinforcement, coating characteristics, processing conditions, and final component performance is examined from a general engineering perspective. Attention is given to the importance of controlling surface quality, coating integrity, material uniformity, and dimensional characteristics when developing advanced gear components.
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