Mechanics of Threaded Fasteners and Bolted Joints for Engineering and Design (e-bog) af Fukuoka, Toshimichi
Fukuoka, Toshimichi (forfatter)

Mechanics of Threaded Fasteners and Bolted Joints for Engineering and Design e-bog

2190,77 DKK (inkl. moms 2738,46 DKK)
The Mechanics of Threaded Fasteners and Bolted Joints outlines how threaded fasteners and bolted joints fail, how these failures can be remedied, and ultimately how to avoid them altogether through tightening methods, material strength, and avoiding loosening. The book demonstrates how to select the appropriate tightening method and determine the optimal tightening procedure for varying nominal...
E-bog 2190,77 DKK
Forfattere Fukuoka, Toshimichi (forfatter)
Forlag Elsevier
Udgivet 22 oktober 2022
Længde 382 sider
Genrer Thermodynamics and heat
Sprog English
Format pdf
Beskyttelse LCP
ISBN 9780323953580
The Mechanics of Threaded Fasteners and Bolted Joints outlines how threaded fasteners and bolted joints fail, how these failures can be remedied, and ultimately how to avoid them altogether through tightening methods, material strength, and avoiding loosening. The book demonstrates how to select the appropriate tightening method and determine the optimal tightening procedure for varying nominal diameters. Using the finite element method, it discusses characteristics of stress concentration and fatigue strength and covers bolt force variation due to elastic interaction. The separation of the plate interface via increased external force as the primary cause of fatigue failure in threaded fasteners is discussed, with effective countermeasures provided. Empirical equations of thermal contact coefficient and apparent thermal contact coefficient in simple form are included as well.?? Outlines various tightening methods such as torque control, angle control, direct tension, and thermal expansion Demonstrates methods for preventing fatigue failure Discusses the effect of high and low temperature thermal loads on the strength of bolted joints by looking at thermal contact resistance at the interface