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Many vintage airplanes, aerobatic planes, cropdusters, and ultralights are taildraggers, which means there are a large number of pilots who need to learn these particular skills and techniques. Written in plain language with many clear illustrations to explain the dynamics and techniques, Conventional Gear provides a thorough foundation of knowledge for the pilot seeking a tailwheel endorsement. It presents the combined experience of thousands of flight hours by civilian and military pilots who grew up flying airplanes with conventional gear. The original configuration of an airplane's landing gear was tail wheel. Only during World War II did the nose wheel become common, when longer runways were required for takeoff with heavy loads. After the war, the tricycle landing gear layout became standard, but the traditional arrangement has always been known as "conventional" gear. The tail wheel configuration is lighter, simpler and offers less drag. It is also better for rough-field operations. Therefore many crop dusters, aerobatic airplanes and ultralights are taildraggers. However, conventional gear does introduce more demands on the pilot, especially during takeoff and landing, and in strong winds. A taildragger is more difficult to operate on the ground because the center of gravity is behind the main wheels; it therefore tends to deviate from a straight path during taxi, takeoff and landing. Because taildraggers demand more piloting skill, flying one well is a sign of a good pilot. If you want to fly a warbird, antique or a modern airplane with conventional gear, this book tells you how in a simple, clearly illustrated manner. It begins with the theory and dynamics of a tail wheel airplane, then describes the piloting techniques needed to safely fly a taildragger. The book concludes with a fascinating collection of stories about what it is like to fly some of the common and not so common airplanes with conventional gear...stories by old hands that otherwise could only be found in a good session of hangar flying.
This revised, expanded, edition covers the theory, design, geometry and manufacture of all types of gears and gear drives. This is an invaluable reference for designers, theoreticians, students, and manufacturers. This edition includes advances in gear theory, gear manufacturing, and computer simulation. Among the new topics are: 1. New geometry for modified spur and helical gears, face-gear drives, and cycloidal pumps. 2. New design approaches for one stage planetary gear trains and spiral bevel gear drives. 3. An enhanced approach for stress analysis of gear drives with FEM. 4. New methods of grinding face gear drives, generating double crowned pinions, and improved helical gear shaving. 5. Broad application of simulation of meshing and TCA. 6. New theories on the simulation of meshing for multi-body systems, detection of cases wherein the contact line on generating surfaces may have its own envelope, and detection and avoidance of singularities of generated surfaces.
This is a comprehensive text and reference book for students and teachers of mechanical engineering, for design and research engineers, and for manufacturers and users of gear trains for the transmission of power in industry and transportation.
Advanced Gear Manufacturing and Finishing offers detailed coverage of advanced manufacturing technologies used in the production of gears, including new methods such as spark erosion machining, abrasive water jet machining, additive layer manufacturing, laser shaping, and sustainable manufacturing of gears. The industry in this area is constantly producing new settings where gears must endure ever increasing stresses, strains, and temperatures. Advanced methods in manufacturing, finishing, and surface property enhancement have emerged in recent years to meet these challenges. This unique book takes a critical look at the state-of-the-art research into these new methods, and the latest improvements to classic technologies in both gear manufacturing and finishing. This book is essential reading for researchers and engineers working in the fields of powertrain manufacturing, gear technology, and advanced manufacturing technologies. Describes the machining systems, main components, and working procedures with the help of diagrams and photos. Demonstrates the mechanisms and capabilities of new methods. Shows improvements to a range of gear manufacturing and finishing technologies. Provides a critical review of recent research in a range of fields relevant to gear manufacturing technologies.
This is the only book available today that covers military and commercial aircraft landing gear design. It is a comprehensive text that will lead students and engineers from the initial concepts of landing gear design through final detail design. The book provides a vital link in landing gear design technology from historical practices to modern design trends, and it considers the necessary airfield interface with landing gear design. The text is backed up by calculations, specifications, references, working examples.
This book sheds light on the development of Pulsed-Electrochemical Honing (PECH), a unique hybrid finishing process, which has capabilities of finishing intricate shaped components (especially gears). The text covers the fundamentals of the process, and details all parameters of PECH in the finishing of straight bevel gears. It discusses all important aspects of electrochemical honing, and details recent developments in tools, technologies, controls and operations.

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