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2021 | OriginalPaper | Buchkapitel

16. Dynamic Fracture-Toughness Testing of a Hierarchically Nano-Structured Solid

verfasst von : Kyung-Suk Kim, Hanxun Jin, Tong Jiao, Rodney J. Clifton

Erschienen in: Fracture, Fatigue, Failure and Damage Evolution , Volume 3

Verlag: Springer International Publishing

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Abstract

The polyurea coating is found very useful in strengthening structures ranging from helmets to concrete structures under impact or blast loading. We believe that the hierarchical architecture of nano and microstructures is the bases of the strengthening mechanism, which provides scale-dependent stress laxation and energy dissipation. Here, a challenge is to characterize the strengthening mechanisms not only in the bulk of the copolymer but also at the coating/substrate interface. To this end, we have found that the tapping-mode images of an atomic-force-microscope (AFM) are ideal markers for digital image correlation (DIC) analysis of nano/micro-scale deformation. The tapping-mode images typically exhibit clustered hierarchical structures of hard and soft domains that can trace multiscale deformation mechanisms. To study the role of the hierarchical deformation mechanisms in dynamic toughening, we have developed a line-image shearing interferometer (L-ISI) for plate impact experiments of dynamic fracture testing. The L-ISI measures the variation of the normal-displacement-gradient over time along a line on the back surface of a pre-cracked specimen loaded by plate impact. The time history of the displacement gradient forms fringes on the streak-camera image, and the fringes are inverted to determine the time history of the crack speed and the dynamic toughness.

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Literatur
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Zurück zum Zitat Grujicic, M., et al.: Experimental and computational study of the shearing resistance of polyurea at high pressures and high strain rates. J. Mater. Eng. Perform. 24(2), 778–798 (2014)CrossRef Grujicic, M., et al.: Experimental and computational study of the shearing resistance of polyurea at high pressures and high strain rates. J. Mater. Eng. Perform. 24(2), 778–798 (2014)CrossRef
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Zurück zum Zitat Kim, K.-S.: Pressure- and rate-dependent plastic flow of nano-phase segregated polyurea copolymer (IMECE Paper # -13559). Drucker Medal Symposium, ASME 2019 IMECE (November 2019) Kim, K.-S.: Pressure- and rate-dependent plastic flow of nano-phase segregated polyurea copolymer (IMECE Paper # -13559). Drucker Medal Symposium, ASME 2019 IMECE (November 2019)
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Zurück zum Zitat Jiao, T., et al.: Pressure-Sensitivity and Tensile Strength of an Elastomer at High Strain Rates. In: Elert, M., Furnish, M.D., Chau, R., Holmes, N., Nguyen, J. (eds.) Shock Compression of Condensed Matter, pp. 707–710 (2007) Jiao, T., et al.: Pressure-Sensitivity and Tensile Strength of an Elastomer at High Strain Rates. In: Elert, M., Furnish, M.D., Chau, R., Holmes, N., Nguyen, J. (eds.) Shock Compression of Condensed Matter, pp. 707–710 (2007)
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Zurück zum Zitat Ravichandran, G., Clifton, R.J.: Dynamic fracture under plane wave loading. Int. J. Fracture. 40, 157–201 (1989)CrossRef Ravichandran, G., Clifton, R.J.: Dynamic fracture under plane wave loading. Int. J. Fracture. 40, 157–201 (1989)CrossRef
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Zurück zum Zitat Bolton, W., Higgins, R.A.: Materials for Engineers and Technicians. Newnes, London (2010) Bolton, W., Higgins, R.A.: Materials for Engineers and Technicians. Newnes, London (2010)
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Zurück zum Zitat Kim, K.-S.: Digital Image Correlation at a Small World of Nano Science and Technology (Plenary). iDICs Annual Conference, October 2019 Kim, K.-S.: Digital Image Correlation at a Small World of Nano Science and Technology (Plenary). iDICs Annual Conference, October 2019
Metadaten
Titel
Dynamic Fracture-Toughness Testing of a Hierarchically Nano-Structured Solid
verfasst von
Kyung-Suk Kim
Hanxun Jin
Tong Jiao
Rodney J. Clifton
Copyright-Jahr
2021
DOI
https://doi.org/10.1007/978-3-030-60959-7_16

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