References
- Kim, J. G. and Park, Y. K., 2004, "Experimental Verification of Drop/Impact Simulation for a Cellular Phone," Experimental Mechanics, Vol. 44, No. 4, pp. 375-380. https://doi.org/10.1007/BF02428090
- Joung, J.H., Kim, H. B. R., Seong, Y. H. and Choi, H. H., 2007, "A Study on Strength Evaluation of LCD Glass for Drop Test," J. Korean Soc. Precision Engineering, Vol. 24, No. 10, pp. 99-108.
- Samgeeth, R., Tho, C. H. and Smith, M. R., 2009, “Rotorcraft Fuel System Drop Test Simulation Methodology,” American Helicopter Society 65th Annual Forum, Grapevine, Texas, pp. 1478-1487.
- Kim, K. S., Chung, S. H., Kim, J. S., Choi, K. S. and Yun, H. D., 2010, "Demonstration of Structural Performance of IP-2 Packages by Advanced Analytical Simulation and Full-Scale Drop Test," Nuclear Engineering and Design, Vol. 240, No. 3, pp. 639-655. https://doi.org/10.1016/j.nucengdes.2009.11.035
- Diehl, T., Carroll, D. and Nagaraj, B., 2000, "Applications of DSP to Explicit Dynamic FEA Simulations of Elastically-Dominated Impact Problems," Shock and Vibration,Vol. 7, No. 3, pp. 167-177. https://doi.org/10.1155/2000/931351
- Diehl, T., 2008, “Integrating Theory, Experiment, and FEA to Solve Challenging Nonlinear Mechanics Problems,” 2008 Abaqus Users’ Conference, pp. 1-17.
- Varpasuo, P., 1999, "Development of the Floor Response Spectra Using Large 3D Model." Nuclear Engineering and Design,Vol. 192, No. 2, pp. 229-241. https://doi.org/10.1016/S0029-5493(99)00131-4
- Paskalov, A. and Reese, S., 2003, "Deterministic and Probabilistic Floor Response Spectra," Soil Dynamics and Earthquake Engineering, Vo. 23, No.7, pp. 605-618. https://doi.org/10.1016/S0267-7261(03)00064-2
- Park, M. S., 2007, "Assessment of Floor Response Spectrum by Parametric Error Estimation and Its Application to a Spring-Mounted Reactor Vessel Assembly," Journal of Mechanical Science and Technology, Vo. 21, No.12, pp. 2091-2100. https://doi.org/10.1007/BF03177468
- DOD, 1989, MIL-STD-810F, Test Method Standard for Environmental Engineering Considerations and Laboratory Tests, USA.
- IEC, 2008, Environmental Testing Part 2-27: Shock.
- Abu Al-Rub, R. K. and Voyiadjis, G. Z., 2004, “Analytical and Experimental Determination of the Material Intrinsic Length Scale of Strain Gradient Plasticity Theory from Micro- and Nano-Indentation Experiments,” International Journal of Plasticity, Vol. 20, No. 6, pp. 1139-1182. https://doi.org/10.1016/j.ijplas.2003.10.007
- Guo, Y., Huang, Y., Gao, H., Zhuang, Z. and Hwang, K. C., 2001, “Taylor-Based Nonlocal Theory of Plasticity: Numerical Studies of the Micro-Indentation Experiments and Crack Tip Fields,” International Journal of Solids and Structures, Vo. 38, No.42-43, pp. 7447-7460. https://doi.org/10.1016/S0020-7683(01)00047-6
- Dassault Systèmes Simulia, Inc., 2010, Abaqus v. 6.9, Providence, U.S.A.
- Kang, B. S. and Park, M. S., 2010, “A Protector Design and Shock Analysis for a Launch Reconnaissance Robot,” Proceedings of the KSME 2010 Fall Annual Meeting, Jeju, Korea, pp. 1061-1064.
- Parametric Technology Corporation, Inc., 2010, Mathcad R14, Massachusetts, U.S.A.
Cited by
- Hardness estimation for pile-up materials by strain gradient plasticity incorporating the geometrically necessary dislocation density vol.27, pp.2, 2013, https://doi.org/10.1007/s12206-012-1243-4
- Protector Design and Shock Analysis for a Launch-Reconnaissance Robot vol.35, pp.8, 2011, https://doi.org/10.3795/KSME-A.2011.35.8.971