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Set includes:Arduino UNO R3 (equivalent) board with ATmega328...
Data logger dedicated to Feather plates. Equipped with RTC clock,...
Pin expander designed for Feather plates. It is equipped with three sets...
HAT module with RFM95W 433 MHz system for LoRa / LoRaWAN...
HAT module with the PCA9685 server driver designed for Raspberry Pi...
LCD TFT 1.14" display with a resolution of 135x240 pixels. Equipped with...
Module with sensor TMP117. It enables measurement in the range from...
The board is equipped with a STM32F405 microcontroller with an ARM...
Sujeet K. Sinha
The surface characterizations of scratch / abrasion wear.
Scratching of Materials and Applications has chapters devoted to direct industrial application. Scratch testing of minerals according to their relative scratch resistance. This test has been used on metals, ceramics, glasses, polymers and coatings of various types and thicknesses.
The chapters are grouped according to the type of the engineering materials used. The beginning chapters relate mostly to bulk polymers, which are followed by different types of coatings and finally, scratching book. Thus, the book covers a fairly wide range of engineering.
* Balances theoretical science with practical application
* Demonstrates real-life applications within industry
* Written experts in the fields of materials, tribology and surface mechanics
Chapter 1. Mechanical Analysis of the Scratching Properties of Coated Polymers (C. Gauthier et al .).
Chapter 2. Mechanical Analysis of the Scratching of Metals and Polymers at Moderate and Large Strains (E. Felder, JL Bucaille).
Chapter 3. Friction, Damage and Stick-Slip in the Scratching of Polymers (SL Zhang).
Chapter 4. Nanoscratch and Interfacial Friction of Poly (Amide) Fibers (J. Cayer-Barrioz et al .).
Chapter 5. Metrology for Characterizing the
Scratch Resistance of Polymeric Coatings Throughoptical Scattering (Li-Piin Sung et al .).
Chapter 6. Scratching of Polymers: Deformation Mapping and Wear Modeling (SK Sinha).
Chapter 7. An Overview of the Potential of Quantitative Coating Adhesion Measurement by Scratch Testing (SJ Bull, EG-Berasetegui).
Chapter 8. Characterization of Mar / Scratch Resistance of Coatings with a Nano-Indenter and a Scanning Probe Microscope (Weidian Shen et al .).
Chapter 9. Evaluating the Cohesive Strength of a Surface Material by Controlled Scratching (Yongsong Xie, HM Hawthorne).
Chapter 10. Mechanical Characterization of Nanostructured TiB2 Coatings using Microscratch Techniques (N. Panich, Y. Sun).
Chapter 11. Damage Identification of Dlc Coating by Microscratch Test (A. Djamai et al .).
Chapter 12. Correlation between Adhesion and Wear Behavior of Commercial Carbon Based Coating (KH Lau, KY Li).
Chapter 13. The Study of the Adhesion of TiN Coating on Steel and Titanium Alloy Substrates Using a Multi-Mode Scratch Tester (J. Stallard et al .).
Chapter 14. Studies on Friction and Transfer Layer using Inclined Scratch (PL Menezes).
Chapter 15. Scratch Resistance of High Nitrogen Austenitic Stainless Steels (AP Tschiptschin et al .).
Chapter 16. Abrasion of Engineering Ceramics, AlMgB 14 -tiB 2 Composite and other Hard Materials (S. Bahadur, A. Ahmed).