Tribological applications

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  • Bài viết này trình bày nghiên cứu về hình thái học, cơ khí và các tài sản tribological của hydro kim cương như carbon (DLC) lớp phủ gửi qua magnetron thổi theo điện áp thiên vị khác nhau. Kính hiển vi lực nguyên tử (AFM), kính hiển vi điện tử truyền qua (TEM), quang phổ Raman, thụt đầu dòng nano và bóng-ondisc tribotest được sử dụng để mô tả các lớp phủ gửi.

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  • increasingly important role played by tribology at the design stage in engineering. It shows how algorithms developed from the basic principles of tribology can be used in a range of practical applications. The book is planned as a comprehensive reference and source book that will not only be useful to practising designers, researchers and postgraduate

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  • Sintering refers to the science and technology of production objects from fines or powders. Being a very complex phenomenon, sintering covers a broad subject field and combines chemistry, physics and mechanics. Sintering deals with various material systems such as metals, non-metals, ceramics, polymers, and their combinations. Processes of sintering may occur in a wide temperature range - in a solid state as well as with participation of a liquid phase.

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  • In order to be suitable for tribological applications, polymeric materials, which can usually exhibit mechanical strength, lightness, ease of processing, versatility and low cost, together with acceptable thermal and environmental resistances, have to show good abrasion and wear resistance. This target is not easy to achieve, since the viscoelasticity of polymeric materials makes the analysis of the tribological features and the processes involved in such phenomena quite complicated.

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  • Magnetic recording is the most common technology used to store many different types of signals. Analog recording of sound was the first and is still a major application. Digital recording of encoded computer data on disk and tape recorders has

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  • Micro/nanotribological studies are needed to develop fundamental understanding of interfacial phenomena on a small scale and to study interfacial phenomena in micro- and nanostructures used in magnetic storage systems, microelectromechanical systems (MEMS), and other industrial applications (Bhushan, 1992, 1993, 1994, 1995a,b, 1996a, 1997, 1998b).

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  • Mechanical properties are of critical importance to any material that is used for transmission of forces or moments, or just for sustaining loads. The gradual introduction of microcomponents in practical © 1999 by CRC Press LLC applications within microstructure technology (MST) has instigated an increasing demand for insight into the fundamental factors that determine the mechanical integrity of such elements, for instance, their long-term reliability or how to choose proper safety limits in design and use....

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  • Other titles of interest Ashby Ashby and Jones Brydson Charles and Crane Crawford Hull and Bacon Jones Neale Shreir et al. Smallman and Bishop Smith Materials Selection in Mechanical Design Engineering Materials 2 Plastics Materials, 6th Edition Selection and Use of Engineering Materials, 2nd Edition Plastics Engineering, 2nd Edition Introduction to Dislocations, 3rd Edition Engineering Materials 3 Tribology Handbook, 2nd Edition Corrosion, 3rd Edition Metals and Materials The Language of Rubber...

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  • Volume II of the Handbook of Lubrication (Tribology) provides coverage of basic theory involved in friction, wear, and lubrication; characteristics and application practices for lubricants; and design principles for lubricated machine elements such as bearings, gears, couplings, and seals.

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  • Summary. In this introductory chapter, the definition and history of tribology and their industrial significance and origins and significance of an emerging field of micro/nanotribology are described. Next, various measurement techniques used in micro/nanotribological and micro/nanomechanical studies are described. The interest in micro/nanotribology field grew from magnetic storage devices and latter the applicability to emerging field micro/nanoelectromechanical systems (MEMS/NEMS) became clear.

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  • Bhushan, B. “Introduction - Measurement Techniques and Applications” Handbook of Micro/Nanotribology. Ed. Bharat Bhushan Boca Raton: CRC Press LLC, 1999 Part I Basic Studies © 1999 by CRC Press LLC Introduction — Measurement Techniques and Applications Bharat Bhushan 1.1 1.2 1.3 History of Tribology and Its Significance to Industry Origins and Significance of Micro/Nanotribology Measurement Techniques Scanning Tunneling Microscope • Atomic Force Microscope • Friction Force Microscope • Surface Force Apparatus • Vibration Isolation 1 1.4 1.

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  • After mechanical manufacturing, heat treatment is mainly applied in one of the final steps of production, to adjust the workpiece properties to the later mechanical, tribological, and corrosive load. The lifetime of these components is defined through the raw material used, the construction geometries, and the quality of heat treatment. The great demands for quality control and the documentation of process parameters have led to the increasing importance of sensor applications in heat treatment.

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  • In the last two decades, many books have been published on ion implantation and ion-beam processing. Why this one now? After all, the advantages of using an energetic ion beam to modify surfaces with a view to enhancing their tribological, electrochemical, optical and magnetic properties have been known for some time. The aim of this volume is to review the basics of previous work on ion-beam modification of materials and to include enough new material on novel applications to bring newcomers “up to speed” in this exciting area....

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  • (BQ) The book "Mechanical engineering series" presents modern developments in mechanical engineering and its innovative applications in applied mechanics, bioengineering, dynamic systems and control, energy, energy conversion and energy systems, fluid mechanics and fluid machinery, heat and mass transfer, manufacturing science and technology, mechanical design, mechanics of materials, micro- and nano-science technology, thermal physics, tribology, and vibration and acoustics.

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