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A Review of the Radio Frequency Non-destructive Testing for Carbon-fibre Composites

References [1] Soutis, C. (2005). Carbon fiber reinforced plastics in aircraft construction. Materials Science and Engineering A, 412 (1-2), 171-176. [2] Zhang, J., Shi, C., Ma, Y., Han, X., Li, W., Chang, T., Wei, D., Du, C., Cui, H.L. (2015). Spectroscopic study of terahertz reflection and transmission properties of carbon-fiber-reinforced plastic composites. Optical Engineering, 54 (5), 054106. [3] Pozar, D.M. (2009). Microwave Engineering. John Wiley & Sons. [4] Tse, K.W., Moyer, C.A., Arajs

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Ultrasonic Quality Assessment of Polymer-Cement Concrete with Pet Waste as the Aggregate

References 1. Czarnecki L., Sokołowska J. Optimization of polymer-cement coating composition using material model, Key Engineering Materials, 466, 2011, 191-199; 2. Iroh J.O., Poly(ethylene terephthalate) in James E. Mark: Polymer Data Handbook. Oxford University Press, 1999, s. 558-560; 3. Wilinski D., Łukowki P., Rokicki G., Application of fibres from recycled PET bottles for concrete reinforcements, Journal of Building Chemistry, 1, 2016, 1-9; 4. Dipta I.A., Rahat M., Alam A., Islam M.J., A

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A Method for Optimizing Lightweight-Gypsum Design Based on Sequential Measurements of Physical Parameters

., Raether, F. (1996). Optimization of gypsum plaster composition supported by experimental design. ConChem Journal, 1996 (4), 64-71. [5] Gencel, O., del Coz Diaz, J.J., Sutcu, M., Koksal, F., Alvarez Rabanal, F.P., Martinez-Barrera, G., Brostow, W. (2014). Properties of gypsum composites containing vermiculite and polypropylene fibers: Numerical and experimental results. Energy and Buildings, 70, 135-144. [6] Jinzhi, W., Guili, L., Xinjun, X., Chunyan, X., Wenjing, D., Jun, X. (2014). Simplex optimization for aloe-emodin separation and purification using

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RFID Tag as a Sensor - A Review on the Innovative Designs and Applications

monitoring of carbon fiber composites. Composites Part A: Applied Science and Manufacturing, 42 (9), 1263-1274. [7] Zhang, Y., Bai, L. (2015). Rapid structural condition assessment using radio frequency identification (RFID) based wireless strain sensor. Automation in Construction, 54, 1-11. [8] Sunny, A.I., Tian, G.Y., Zhang, J., Pal, M. (2016). Low frequency (LF) RFID sensors and selective transient feature extraction for corrosion characterisation. Sensors and Actuators A: Physical, 241, 34-43. [9] Leon-Salas, W.D., Halmen

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Gas–liquid Flow Pattern Recognition Based on Wavelet Packet Energy Entropy of Vortex-induced Pressure Fluctuation

fluctuations. Chemical Engineering and Processing , 22 (1), 45-52. [7] Lin, S., Kew, P.A. (2001). Pressure fluctuation and flow regimes of air-water flow in a small tube. Experimental Heat Transfer , 14 (2), 135-144. [8] Xie, T., Ghiaasiaan, S.M., Karrilab, S. (2004). Artificial neural network approach for flow regime classification in gas-liquid-fiber flows based on frequency domain analysis of pressure signals. Chemical Engineering Science , 59 (11), 2241-2251. [9] Ding, H., Huang, Z.Y., Song, Z.H., Yan, Y. (2007). Hilbert

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Numerical and Analytical Investigation of Aluminium Bracket Strengthening

, Juni 1976. 8. J. L. C. G. De Kanter, “Energy absorption of monolithic and fibre reinforcement aluminium cylinders” PhD thesis, Delft University of Technology, Netherlands, 2006. 9. EN 1993-1-8 Eurocode 3 - Design of steel structures - Part 1-8: Design of joints, 2012. 10. EN 1999-1-1 Eurocode 9 - Design of aluminium structures - Part 1-1: General structures rules, 2011. 11. EN 755-2, Aluminium and aluminium alloys. Extruded rod/bar, tube and profiles. Mechanical properties, 2016. 12. W

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Industrial Application Of Psyllium: An Overview

, 1992; Vol. 4, p 969. 11 Martinez-Lirola, M. J.; Gonzalez-Tejero, M. R.; Molero-Mesa, J. Ethnobotanical resources in the province of Almeria, Spain:Campos de Nijar. Econ Bot 1996, (1) (50), 40-56. 12 Jewvachdamrongkul, Y.; Dechatiwongtse, T.; Pecharaply, D.; Bansiddhi, J.; Kanchanapee, P. Identification of some Thai medicinal plants. Mahidol Univ. J. Pharm. Sci 1982, 3 (9), 65-73. 13 Solà, R.; Godàs, G.; Ribalta, J.; Vallvé, J. C.; Girona, J.; Anguera, A.; Ostos, M. A.; Recalde, D.; Salazar, J.; Caslake, M.; Martín-Luj án, F.; Sal s-Salvadó, J

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Effects of Raster Orientation, Infill Rate and Infill Pattern on the Mechanical Properties of 3D Printed Materials

References 1. Ziemian, C., M. Sharma, and S. Ziemian, Anisotropic mechanical properties of ABS parts fabricated by fused deposition modelling, in Mechanical engineering. 2012, InTech. 2. Melenka, G.W., et al., Evaluation and prediction of the tensile properties of continuous fiber-reinforced 3D printed structures. Composite Structures, 2016. 153: p. 866-875. 3. Zou, R., et al., Isotropic and anisotropic elasticity and yielding of 3D printed material. Composites Part B: Engineering, 2016. 99: p. 506

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