A Comparative Study on Indentation and Flattening Contacts
Author:
Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-15-9893-7_4
Reference42 articles.
1. Borodich FM, Keer LM (2004) Contact problems and depth-sensing nanoindentation for frictionless and frictional boundary conditions. Int J Solids Struct 41(9–10):2479–2499
2. Mccarthy B et al (2002) A dynamic model, including contact bounce, of an electrostatically actuated microswitch. Microelectromec Syst J 11(3):276–283
3. Pal RK, Awasthi AP, Geubelle PH (2013) Wave propagation in elasto-plastic granular systems. Granular Matter 15(6):747–758
4. Komvopoulos K (2000) Head–disk interface contact mechanics for ultrahigh density magnetic recording. Wear 238(1):1–11
5. Cowles BA (1996) High cycle fatigue in aircraft gas turbines—an industry perspective. Int J Fract 80(2–3):147–163
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