Design System for Fastened Joints: Key Principles of Designing Durable Products Learned from Accidents
ISBN978-4-86043-688-9
A comprehensive guide essential for all machine designers who prevent accidents, as well as those involved in related production technology, maintenance technology, and quality assurance departments!
A single bolt trouble can trigger a serious accident! Many accidents occur due to a lack of fundamental mechanical analysis techniques such as internal force coefficients, equivalent stiffness, and slip behavior!
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basic information
"Design Principles of Screw Fastening Systems: Key Points for Designing Durable Products Learned from Accidents" ■Format: B5 size, 368 pages ■Price: 55,000 yen (including 10% tax) ■Supervisors: Toshio Hattori, Tomohiro Naruse ■Published by: NTS Chapter 1: Learning from Accidents - The Mechanics of Screw Fastening Systems Chapter 2: Fundamentals of Mechanical Analysis, Initial Tightening Techniques, and Design Techniques for Screw Fastening Systems Chapter 3: Mechanical Analysis and Strength Design under Axial and Bending Loads Chapter 4: Mechanical Analysis, Loosening Analysis, and Strength Design under Perpendicular Axial Loads Chapter 5: Mechanical Analysis, Loosening Analysis, and Strength Design under Torsional Loads Chapter 6: Rotational and Non-Rotational Loosening and Loosening Prevention Techniques Chapter 7: Mechanisms and Countermeasures for Delayed Fracture Chapter 8: Fretting Fatigue and Its Countermeasures Chapter 9: Mechanical Analysis and Strength Design of the Joined Components Chapter 10: New Technologies Related to Fastening Chapter 11: Overview of International Standards Related to Screw Fastening
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Price: 55,000 yen (including 10% tax)
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Applications/Examples of results
Screw fastening body Shinkansen motor mounting bolt Japan Airlines jumbo passenger aircraft partition damage accident Roller coaster axle bolt fatigue Superconducting linear motor car ground coil screw fastening KLM Royal Dutch Airlines panel drop accident Trailer hub Yurikamome hub fatigue Roller coaster fastening bolt fretting fatigue failure Titanic brittle fracture accident Wind turbine high-tension bolt delayed failure Sasago Tunnel ceiling panel collapse accident Mechanical analysis of screw fastening bodies Initial tightening technology Bolt dimensions Strength design of screw fastening bodies Axial load Under bending load Eccentric tightening Finite element method Slipping behavior Rotational loosening mechanism Bolt head Nut bearing surface Stretch bolt Rotational loosening Non-rotational loosening Loosening prevention technology Delayed failure Fretting fatigue Mechanical analysis of the joined body Around the screw hole Plastic region tightening Screw fastening and adhesive combined joint Lock washer loosening prevention Implanting and screwing bolt fastening body International standards related to screw fastening JIS standards VDI2230
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