Composite Materials Research Laboratory



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    Cement-matrix composites
    1.D.D.L. Chung, "Strain Sensors Based on the Electrical Resistance Change Accompanying the Reversible Pull-Out of Conducting Short Fibers in a Less Conducting Matrix",
    Smart Mater. Struct. 4, 59-61 (1995).
    2.D.D.L. Chung, "Carbon Fiber Cement-Matrix Composites", TANSO No. 190, 300-312 (1999).
    3.D.D.L. Chung, "Cement Reinforced with Short Carbon Fibers: a Multifunctional Material", Composites: Part B 31(6-7), 511-526 (2000).
    4.D.D.L. Chung, "Cement-Matrix Composites for Smart Structures", Smart Mater. Struct. 9(4), 389-401 (2000).
    5.D.D.L. Chung, "Corrosion Control of Steel Reinforced Concrete", J. Mater. Eng. Perf. 9(5), 585-588 (2000).
    6.D.D.L. Chung, "Cement-Based Electronics", J. Electroceramics 6(1), 75-88 (2001).
    7.D.D.L. Chung, "Functional Properties of Cement-Matrix Composites", J. Mater. Sci. 36, 1315-1324 (2001).
    8.D.D.L. Chung, "Cement-Matrix Composites for Thermal Engineering", Appl. Thermal Eng. 21(ER16), 1607-1619 (2001).
    9.D.D.L. Chung, "Interface Engineering for Cement-Matrix Composites", Composite Interfaces 8(1), 67-82 (2001).
    10.D.D.L. Chung, "Improving Cement-Based Materials by Using Silica Fume", J. Mater. Sci. 37(4), 673-682 (2002).
    11.D.D.L. Chung, "Electrical Conduction Behavior of Cement-Matrix Composites", J. Mater. Eng. Perf. 11(2), 194-204 (2002).
    12.D.D.L. Chung, "Piezoresistive Cement-Based Materials for Strain Sensing", J. Intelligent Material Systems and Structures 13(9), 599-609 (2002).
    13.D.D.L. Chung, "Structural Composite Materials Tailored for Damping", J. Alloys Compounds 355(1-2), 216-223 (2003).
    14.D.D.L. Chung, "Damage in Cement-Based Materials, Studied by Electrical Resistance Measurement", Mater. Sci. Eng. R 52(1), 1-40 (2003).
    15.D.D.L. Chung, "Electrically Conductive Cement-Based Materials", Adv. Cem. Res. 16(4), 167-176 (2004).
    16.D.D.L. Chung, "Dispersion of Short Fibers in Cement", J. Mater. Civil Eng.17(4), 379-383 (2005).
    Metal-matrix composites
    1.D.D.L. Chung, "Acid Aluminum Phosphate for the Binding and Coating of Materials", J. Mater. Sci. 38(13), 2785-2791 (2003).
    Polymer-matrix composites
    1.D.D.L. Chung, "Polymer-Matrix Composites for Microelectronics", Polym. Polym. Compos. 8(4), 219-229 (2000).
    2.D.D.L. Chung, "Continuous Carbon Fiber Polymer-Matrix Composites and Their Joints, Studied by Electrical Measurements", Polym. Compos. 22(2), 250-270 (2001).
    3.D.D.L. Chung, "Thermal Analysis of Carbon Fiber Polymer-Matrix Composites by Electrical Resistance Measurement", Thermochim. Acta 364(1-2), 121-132 (2000).
    4.D.D.L. Chung, "Thermal Analysis by Electrical Resistivity Measurement", J. Thermal Analysis and Calorimetry 65, 153-165 (2001).
    Carbon
    1.D.D.L. Chung, "Structural Studies of Graphite Intercalation Compounds", J. Electron. Mater. 7, 89 (1978).
    2.D.D.L. Chung, "Nomenclature of Graphite Intercalation Compounds", Mater. Sci. Eng. 39, 283 (1979).
    3.D.D.L. Chung, "Graphite-Halogens as Temperature Calibration Standards for Transmission Electron Microscopy", Rev. Sci. Instrum. 51, 932 (1980).
    4.D.D.L. Chung, "Exfoliation of Graphite", Therm. Expans., [Proc. Int. Therm. Expans. Symp.], 7th 1979 (Pub. 1982), 37-44. Edited by D.C. Larsen. Plenum: New York, NY.
    5.D.D.L. Chung, "Structure and Phase Transitions of Graphite Intercalated with Bromine", Phase Transitions 8, 35-57 (1986).
    6.D.D.L. Chung and Lan W. Wong, "Effect of Exfoliation on the Electrical Resistivity of Intercalated Graphite", Synth. Met. 12, 533-538 (1985).
    7.D.D.L. Chung, "Intercalate Vaporization During the Exfoliation of Graphite Intercalated with Bromine", Carbon 25(3), 361-365 (1987).
    8.D.D.L. Chung, "Exfoliation of Graphite", J. Mater. Sci. 22(12), 4190-4198 (1987).
    9.D.D.L. Chung, "Intercalated Graphite as a Smart Materials for High-Stress, High-Strain, Low-Electric-Field Electromechanical Switching", Smart Mater. Struct. 1, 233-236 (1992).
    10.D.D.L. Chung, "Self-Monitoring Structural Materials", Mater. Sci. Eng. Rev. R22(2), 57-78 (1998).
    11.D.D.L. Chung, "Flexible Graphite for Gasketing, Adsorption, Electromagnetic Interference Shielding, Vibration Damping, Electrochemcial Applications, and Stress Sensing", J. Mater. Eng. Perf.
    9(2), 161-163 (2000).
    12.D.D.L. Chung, "Electromagnetic Interference Shielding Effectiveness of Carbon Materials", Carbon 39(2), 279-285 (2001).
    13.D.D.L. Chung, "Comparison of Submicron Diameter Carbon Filaments and Conventional Carbon Fibers as Fillers in Composite Materials", Carbon 39(8), 1119-1125 (2001).
    14.D.D.L. Chung, "Fibrous Composite Interfaces Studied by Electrical Resistance Measurement", Adv. Eng. Mater. 2(12), 788-796 (2000).
    15.D.D.L. Chung, "Structural Health Monitoring by Electrical Resistance Measurement", Smart Mater. Struct. 10(4), 624-636 (2001).
    16.D.D.L. Chung, "Graphite", J. Mater. Sci. 37(8), 1475-1489 (2002).
    17. D.D.L. Chung, "Carbon Materials for Structural Self-Sensing, Electromagnetic Shielding and Thermal Interfacing", Carbon 50, 3342-3353 (2012).
    Other Composites and related materials
    1.D.D.L. Chung, "Electrical Behavior of Solids", J. Educational Modules for Mat. Sci. Eng. 2, 747 (1980).
    2.D.D.L. Chung, "Materials for Electromagnetic Interference Shielding", J. Mater. Eng. Perf. 9(3), 350-354 (2000).
    3.D.D.L. Chung, "Thermal Interface Materials", J. Mater. Eng. Perf. 10(1), 56-59 (2001).
    4.D.D.L. Chung, "Materials for Thermal Conduction", Appl. Thermal Eng. 21(ER16), 1593-1605 (2001).
    5.D.D.L. Chung, "Joints Obtained by Soldering, Adhesion, Autohesion and Fastening, Studied by Electrical Resistance Measurement", J. Mater. Sci. 36(11), 2591-2596 (2001).
    6.D.D.L. Chung, "Materials for Vibration Damping", J. Mater. Sci. 36(24), 5733-5737 (2001).
    7.D.D.L. Chung, "Intrinsically Smart Structural Composites", Materials Today Jan. 2002, p. 30-35.
    8. D.D.L. Chung, “Advances in Thermal Interface Materials”, Advancing Microelectronics 33(4), 8-11 (2006).