International Journal of Materials Engineering

The International Journal of Materials Engineering strives to publish articles related to fundamental properties of engineering materials, mechanical characterisation, how they are controlled by processing, formed, joined and finished, and how all of these factors influence the selection and design of materials in real-world engineering applications.


Chensong Dong

Editorial Board Member of International Journal of Materials Engineering

Assistant Professor, Curtin University, Australia

Research Areas

Composites and Nano-Composites, Design and Manufacturing, Advanced Materials Processing

Education

2003Ph.DIndustrial & Manufacturing Engineering, The Florida State University, Tallahassee, FL
1997M.S.Precision Instrument Engineering, Tianjin University, Tianjin, China
1994B.S.Precision Instrument Engineering, Tianjin University, Tianjin, China

Experience

2007Curtin Research Fellow, Department of Mechanical Engineering, Curtin University of Technology, Perth, Australia
2004-2007Process Engineer, Rakon, Ltd., Auckland, New Zealand
1999-2003Research Assistant, Department of Industrial and Manufacturing Engineering, Florida State University, Tallahassee

Publications: Journals

[1]  Dong, C.S., 2011, "Influence of meshing on the numerical simulation of liquid composite molding processes," International Journal of Mechanics and Materials in Design, Vol. 7, No. 2, pp. 141-148.
[2]  Dong, C.S., 2011, "model development for the formation of resin-rich zones in composites processing," Composites Part A, Vol. 42, No. 4, pp. 419-424.
[3]  Dong, C.S. and Kang, L., 2010, "Assembly deformation and stresses of compliant structures," Advanced Materials Research, Vol. 275, pp. 69-72.
[4]  Dong, C.S., 2010, "Experimental study on strengthening of steel structures with fiber reinforced plastic," Advanced Materials Research, Vol. 275, pp. 239-242.
[5]  Dong, C.S., Lynch, S. and Li, J., 2010, "Mold development for resin transfer molding with dimension variation and deformation compensation," Advanced Materials Research, Vol. 123-125, pp. 491-494.
[6]  Dong, C.S. and Tang, T.Y., 2010, "a generic model for predicting the permeability of fiber mats," Advanced Materials Research, Vol. 123-125, pp. 515-518.
[7]  Dong, C.S. and Tsai, T.C., 2010, "Formation of resin-rich zones in composites processing," Advanced Materials Research, Vol. 123-125, pp. 543-546.
[8]  Li, Y., Hu, N., Yamatoto, G., Wang, Z., Hashida, T., Asanuma, H., Dong, C.S., Okabe, T., Arai, M. and Fukunaga, H., 2010, "Molecular mechanics simulation of the sliding behavior between nested walls in a multi-walled carbon nanotube," Carbon, Vol. 48, pp. 2934-2940.
[9]  Dong, C.S., 2010, "A parametric study on the process-induced deformation of composite T-stiffener structures," Composites Part A, Vol. 41, No. 4, pp. 515-520.
[10]  Dong, C.S., 2010, "Process-induced deformation of composite T-stiffener structures," Composite Structures, Vol. 92, No. 7, pp. 1614-1619.
[11]  Dong, C.S., 2009, "Modeling the dimensional variations of composites using effective coefficients of thermal expansion," Journal of Composite Materials, Vol. 43, No. 22, pp. 2639-2652.
[12]  Li, J., Dong, C.S. and Chen, S.S., 2009, "Consolidation and warpage deformation finite element analysis of filament wound tubes," Applied Composite Materials, Vol. 16, No. 5, pp. 307-320.
[13]  Dong, C.S., 2009, "Modeling the process-induced dimensional variations of general curved composite components and assemblies," Composites Part A, Vol. 40, No. 8, pp. 1210-1216.
[14]  Dong, C.S., 2009, "Development of an engineering model for predicting the transverse coefficients of thermal expansion of unidirectional fibre reinforced composites," Transactions of the ASME, Journal of Engineering Materials and Technology, Vol. 131, No. 3, pp. 1-7.
[15]  Dong, C.S., 2008, "Development of a model for predicting the transverse coefficients of thermal expansion of unidirectional carbon fibre reinforced composites," Applied Composite Materials, Vol. 15, No. 3, pp. 171-182.
[16]  Dong, C.S., 2008, "Dimensional variations of general curved composite parts," Advanced Materials Research, Vols. 41-42, pp. 377-383.
[17]  Dong, C.S., 2008, "A modified rule of mixture for the vacuum-assisted resin transfer moulding process simulation," Composites Science and Technology, Vol. 68, No. 9, pp. 2125-2133.
[18]  Dong, C.S., 2007, "Fuzzy utility theory based failure mode and effects analysis," International Journal of Quality & Reliability Management, Vol. 24, No. 9, pp. 958-971.
[19]  Dong, C.S., 2007, "Injection gate definition for improving the accuracy of liquid composite molding process simulation," Journal of Composite Materials, Vol. 41, No. 15, pp. 1851-1870.
[20]  Dong, C.S., 2006, "Development of a process model for the vacuum assisted resin transfer molding simulation by the response surface method," Composites Part A, Vol. 37, No. 9, pp. 1316-1324.
[21]  Dong, C.S., 2006, "An equivalent medium method for the vacuum assisted resin transfer molding process simulation," Journal of Composite Materials, Vol. 40, No. 13, pp. 1193-1213.
[22]  Dong, C.S., 2005, "Uncertainty analysis in fiber permeability measurement," Transactions of the ASME, Journal of Manufacturing Science & Engineering, Vol. 127, No. 4, pp. 907-911.
[23]  Dong, C.S., 2005, "A fast permeability measurement method based on hybrid fiber preforms," Transactions of the ASME, Journal of Manufacturing Science & Engineering, Vol. 127, No. 3, pp. 670-676.
[24]  Dong, C.S., Zhang, C., Liang, Z.Y. and Wang, B., 2005, "Dimensional variation analysis and synthesis for composite components and assemblies," Transactions of the ASME, Journal of Manufacturing Science & Engineering, Vol. 127, No. 3, pp. 635-646.
[25]  Dong, C.S., Zhang, C., Liang, Z.Y. and Wang, B., 2004, "Dimension variation prediction for composites with finite element analysis and regression modeling," Composites, Part A, Vol. 35, No. 6, pp. 735-746.
[26]  Dong, C.S., Zhang, C., Liang, Z.Y. and Wang, B., 2004, "Assembly dimensional variation modeling and optimization for resin transfer molding process," Modeling and Simulation in Materials Science and Engineering, Vol. 12, No. 3, pp. S221-S237.
[27]  Chen, R.L., Dong, C.S., Liang, Z.Y., Zhang, C. and Wang, B., 2004, "Flow modeling and simulation for vacuum assisted resin transfer molding process with the equivalent permeability method," Polymer Composites, Vol. 25, No. 2, pp. 146-164.
[28]  Dong, C.S., Zhang, C., Wang, B. and Zhang, G.X., 2003, "Reducing the dynamic errors of coordinate measuring machines," Transactions of the ASME, Journal of Mechanical Design, Vol. 125, No. 4, pp. 831-839.
[29]  Dong, C.S., Zhang, C. and Wang, B., 2003, "Integration of green quality function deployment and fuzzy multi-attribute utility theory-based cost estimation for environmentally conscious product development," International Journal of Environmentally Conscious Design & Manufacturing, Vol. 11, No. 1, pp. 12-28.
[30]  Dong, C.S., Zhang, C., Wang, B. and Zhang, G.X., 2002, "Prediction and compensation of dynamic errors for coordinate measuring machines," Transactions of the ASME, Journal of Manufacturing Science & Engineering, Vol. 124, No. 3, pp. 509-514.
[31]  Fan, C., Dong, C.S., Zhang, C. and Wang, B., 2001, "Detection of machine tool contouring errors using wavelet transforms and neural networks," Journal of Manufacturing Systems, Vol. 20, No. 2, pp. 98-112.
[32]  Dong, C.S., Zhang, G.X., Ji, G.J., Zhu, X.J., Li, H.Q. and Wang, J., 1999, "Modeling of the dynamic errors of coordinate measuring machines," China Mechanical Engineering, Vol. 10, No. 7, pp. 733-735.
[33]  Dong, C.S., Zhang, G.X. and Mu, Y.H., 1998, "Assessing the dynamic errors of coordinate measuring machines for fast probing," Chinese Journal of Mechanical Engineering (English Edition), Vol. 11, No. 4, pp. 305-311.
[34]  Dong, C.S., Zhang, G.X. and Mu, Y.H., 1998, "Assessing the dynamic errors of coordinate measuring machines," China Mechanical Engineering, Vol. 9, No. 7, pp. 34-36.
[35]  Dong, C.S. and Zhang, G.X., 1998, "Analysis and measurement for the dynamic errors of coordinate measuring machines," Transactions of Tianjin University, Vol. 4, No. 2, pp. 171-175.
[36]  Dong, C.S., Mu, Y.H. and Zhang, G.X., 1998, "Assessing the dynamic characteristics of CMMs with a laser interferometer," Journal of Tianjin University, Vol. 31, No. 5, pp. 621-626.
[37]  Dong, C.S., Qu, J., Wang, J.X., Zhang, G.X. and Mu, Y.H., 1998, "Describing the motion accuracy of 3-d coordinate measuring machines," Aviation Precision Manufacturing Technology, Vol. 34, No. 1, pp. 32-34.
[38]  Dong, C.S., Zhang, G.X. and Mu, Y.H., 1998, "The dynamic error of the z axis of a bridge-type 3-d coordinate measuring machine," Aviation Metrology & Measurement Technology, Vol. 18, No. 2, pp. 3-5, 21.
[39]  Dong, C.S., 1998, "Modeling the dynamic errors for a coordinate measuring machine," Measurement Technique, February, pp. 11-13.

Publications: Books/Book Chapters

[1]  Dong, C.S., 2009, "Liquid resin, polymer solution and latex processing," in Advances in Polymer Processing: Macro-to Nano-Scales, ed. Sabu Thomas and Weimin Yang, Woodhead publishing Ltd., Cambridge, UK.