Session Details
疲労・衝撃
Wed. Sep 2, 2026 10:30 AM - 11:50 AM JST
Wed. Sep 2, 2026 1:30 AM - 2:50 AM UTC
Wed. Sep 2, 2026 1:30 AM - 2:50 AM UTC
Room D31, 3rd Floor, Building 7 (Hokkai-Gakuen University)
[V-55]Numerical Study on Impact Wheel Loads Induced by Wheel Flats and the Dynamic Response of PC Sleepers
*Keiichi Goto1, Tsutomu Watanabe1, Hiroki Tamai2, Reiji Yoshida2 (1. Railway Technical Reaearh Institute, 2. Kyushu University)
[V-56]Evaluation of Cyclic Thermal Fatigue Effects Using Restrained Ring Specimens
*Ayaka Kawanabe1, Yudai Shoji1, Kosuke Yokozeki1 (1. Toyo University Faculty of Science and Engineering Department of Civil and Environmental Engineering)
[V-57]Assessment of Fatigue Durability of Slabs Reinforced with Bidirectional Aramid Fiber Sheets Incorporating Drainage Holes
*Daichi Nakamura1, Nobukatsu Suzuki1, Watanabe Kota1, Kazunori Miyanaga2, Kento Noguchi2, Yuhi Suzuki2 (1. Nagoya Expressway Public Corporation, 2. SHO-BOND CORPORATION)
[V-58]Reproduction analysis of underwater shear fatigue experiments on RC beams using the finite element method.
*Koichiro Hara1, Daisuke Hayashi1 (1. Shimizu Corporation)
[V-59]Reproduction Analysis of Underwater Fatigue Effects in Concrete Floating Structures
*Naoki Inami1, Hiroki Arakawa1, Tomohiko Takahashi1 (1. Tokyo Electric Power Company Holdings, Inc.)
[V-60]Study on Wet Fatigue Characteristics of High-Strength Concrete through Underwater Fatigue Tests on Small RC Beams
*Keisuke Matsumoto1, Yanyue Qin1, Yuya Takahashi1, Yuto Fujikawa2, Yoshikazu Ohara2, Tatsuki Takahashi3, Kazunori Miyanaga3, Hideto Kida3 (1. Graduate School, The University of Tokyo, 2. Graduate School, Tohoku University, 3. SHO-BOND Corporation)
[V-61]Analytical Study on the Dynamic Load-Carrying Behavior of Prestressed Concrete Sleepers Subjected to Impact Loads Induced by Wheel Flats
*Reiji Yoshida Yoshida1, Hiroki Tamai1, Keiichi Goto2 (1. Kyushu University, 2. Railway Technical Research Institute)
[V-62]Evaluation of the Impact Failure Behavior of Fiber-Reinforced Mortar Beams Based on an RBSM Incorporating a Smeared fiber model
*Ryo Makabe1, Kanto Kimura1, Mitsuki Shiraishi1, Yoshihito Yamamoto1 (1. Hosei University)
