Effect of interphase parameters on elastic modulus prediction for cellulose nanocrystal fiber reinforced polymer composite
Erratum to: Joong Yeon Lim, Han-Wool Kim, Min-Wook Park, (2020), Effect of interphase parameters on elastic modulus prediction for cellulose nanocrystal fiber reinforced polymer composite. Science and Engineering of Composite Materials, 27(1), pp. 226-235. Retrieved 04 Mar. 2020
Authors would like to change order of Authors to: Han-Wool Kim, Min-Wook Park, Joong Yeon Lim, paper titled: “Effect of interphase parameters on elastic modulus prediction for cellulose nanocrystal fiber reinforced polymer composite”, Science and Engineering of Composite Materials, 27(1), pp. 226-235. Retrieved 04 Mar. 2020 DOI: https://doi.org/10.1515/secm-2020-0024
© 2020 H.-W. Kim et al., published by De Gruyter
This work is licensed under the Creative Commons Attribution 4.0 International License.
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- Al3Ti/ADC12 Composite Synthesized by Ultrasonic Chemistry in Situ Reaction
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- Novel multi-zone self-heated composites tool for out-of-autoclave aerospace components manufacturing
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- Finite element model of laminate construction element with multi-phase microstructure
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- Calculation Model for the Mixing Amount of Internal Curing Materials in High-strength Concrete based on Modified MULTIMOORA
- Electric degradation in PZT piezoelectric ceramics under a DC bias
- Cushioning energy absorption of regular polygonal paper corrugation tubes under axial drop impact
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- Effect of interphase parameters on elastic modulus prediction for cellulose nanocrystal fiber reinforced polymer composite
- Statistical Law and Predictive Analysis of Compressive Strength of Cemented Sand and Gravel
- Retraction
- Assessment of nano-TiO2 and class F fly ash effects on flexural fracture and microstructure of binary blended concrete