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http://dx.doi.org/10.9725/kstle.2003.19.5.259

Design of Energy Absorption Device Using the Axial Crushing Behavior of Truncated Cone Type Cylinder  

김지철 (국방과학연구소)
이학렬 (국방과학연구소)
김일수 (국방과학연구소)
심우전 (국방과학연구소)
박동화 (대우종합기계 특수사업본부)
Publication Information
Tribology and Lubricants / v.19, no.5, 2003 , pp. 259-267 More about this Journal
Abstract
A brake device for the high-speed impacting object is designed using an axial crushing of thin-walled metal cylinder. Thickness of the cylinder is increased smoothly from the impacting end to the fixed end, resulting in the truncated cone shape. Truncated cone shape minimizes the imperfection-sensitivity of the structure and ensures that plastic hinges are formed sequentially from impacting end. This prevents the undesirable sudden rise in the first peak-crushing load. Several specimens with different conic angles, mean thickness of the wall, and materials were designed and quasi-static compression tests were performed on them. Results indicate that adoption of appropriate conic angle prevents simultaneous wrinkles generation and sudden rise of crushing load and that appropriate conic angle differs in each case, depending on the geometry and material property of the cylinder. Finite element analysis was performed for static compression of the cylinder and its accuracy was checked for the future application.
Keywords
energy absorption device; axial crushing; truncated cone type cylinder; plastic deformation;
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