What was Timoshenko’s Small-Increment Method? With an Application to Low-Velocity Impact of a Wood Beam

Author:

Polocoşer Tiberiu,Kasal Bohumil,Hallermann Aljoscha,Li Xinyi

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,Materials Science (miscellaneous)

Reference36 articles.

1. ISO (2002) Plastics-determination of fracture toughness (GIC and KIC) at moderately high loading rates (1 m/s). International Organization for Standardization. Geneva (17281)

2. Polocoşer, T, Stöckel, F, and Kasal, B (2016). Low-velocity transverse impact of small, clear spruce and pine specimens with additional energy absorbing treatments. J Mater Civil Eng. doi: 10.1061/(ASCE)MT.1943-5533.0001545 , 04016048.

3. Saint-Venant B (1857) Choc transversal et de la résistance vive des barres élastiques appuyées aux extrémités. Bulletin de la Société Philomathique de Paris 1(5):1–11

4. Jansson B (1992) Impact loading of timber beams. Masters Thesis, The University of British Columbia. Vancouver, British Columbia, Canada

5. Timoshenko SP (1913) Zur Frage nach der Wirkung eines Stosses auf einen Balken. Z Angew Math Phys 62(1–4):198–209

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1. Indentation and Fragmentation of Wood Under Low-Speed Impact;Journal of Dynamic Behavior of Materials;2023-01-26

2. Elastic impact of a spherical particle with a long, stationary, fixed Timoshenko beam;Journal of Sound and Vibration;2021-03

3. Dynamic material properties of wood subjected to low-velocity impact;Materials and Structures;2018-05-19

4. Design of Experiment and Pitfalls of Low-Velocity Pendulum Impact Testing;Journal of Dynamic Behavior of Materials;2017-07-05

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