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Multiaxial fatigue of machine elements and construction is still a remarkable problem in everyday life.
Damage detection by means of non-destructive testing plays an important role in ensuring the integrity of machine elements and structures.
Machine elements and mechanical components have often surfaces with anisotropic roughness, which may result from the machining processes, e.g. grinding, or from wear.
The aim of this chapter is to introduce the scope of machine elements and aspects of their integration in machine design and mechanical engineering.
In this paper, the design for an ultraprecision machine tool is introduced by describing its key machine elements and machine tool design procedures.
Especially it is important for elastic machine elements and nanocoatings, which are used for friction surfaces, contacting parts, corrosion surfaces, conducting films etc.
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Expansion changes the size of any machine element and can thus generate severe stress or distortion failures during its operation if this phenomenon is not taken into account during the design process.
The range of physical, chemical, mechanical, electrical, and optical properties offered by these films is also exceptional and can meet the increasingly multifunctional application needs of machine elements, microelectronics, and biological systems.
Some exemplary machine elements, tool structures and components are introduced and the technical potentials, requirements and challenges are discussed.
The use of coatings to improve the tribological properties of components such as tools for metal cutting and forming, and machine elements e.g. sliding bearings, seals and valves is constantly increasing.
Machine elements, properly selected and specified, can be used as building blocks within more sophisticated machine designs enabling concentration of effort on the machine, rather than developing each and every machine element from scratch.
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