Polymer personalities



New materials: Plastics - Making the Modern World online exhibit, Science Museum, London.
        Making the Modern World - New science, new materials, new power

Plastics Historical Society
        Plastics Historical Society

Parkesine
        Parkesine

Alexander Parkes
        Parkes

Bakelite: The Material of a Thousand Uses
        Bakelit-Museum

Charles Goodyear article in the Scientific American Supplement, No. 787, January 31, 1891
        The Project Gutenberg eBook of Scientific American Supplement, January 31, 1891

Raw Deal goodyear
        Blast Books

The Time 100: Leo Baekeland time time scientist profile
        TIME 100: Leo Baekeland

Chemical Achievers: Leo Hendrik Baekeland pop lhb
        Leo Hendrik Baekeland

"A constitutive analysis of uniaxial elongational flow data of low-density polyethylene melt, [[Journal of Non-Newtonian Fluid Mechanics ], 4:39-55 (1978)"]
        

"The Irreversibility Assumption of Network Disentanglement in Flowing Polymer Melts and its Effects on Elastic Recoil Predictions, with S. E. Stephenson [[Journal of Rheology ], 23:489-504(1979)"]
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"Constant force elongational flow of a low-density polyethylene melt—experiment and theory, [[Journal of Non-Newtonian Fluid Mechanics ], with T. Raible, S. E. Stephenson and J. Meissner11:239-256 (1982)"]
        

"A constitutive analysis of extensional flows of polyisobutylene, with A. Demarmels [[Journal of Rheology ], 34:943-958(1990)"]
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"Nonlinear strain measures for general biaxial extension of polymer melts, with J. Schaeffer [[Journal of Rheology ], 36:1-26(1992)"]
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"Rubbers and polymer melts: Universal aspects of nonlinear stress–strain relations, with J. Schaeffer [[Journal of Rheology ], 37:643-661(1993)"]
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"The origin of the C2 term in rubber elasticit, [[Journal of Rheology ], 38:655-679(1994)"]
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"Damping functions and nonlinear viscoelasticity—a review, [[Journal of Non-Newtonian Fluid Mechanics ], 68:169-171 (1997)"]
        

"A note on the melt strength of liquid crystalline polymer, with Th. Ixner and K. Geiger [[Journal of Rheology ], 41:1087-1093(1997)"]
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"Nonlinear viscoelastic characterization of a linear polyethylene (HDPE) melt in rotational and irrotational flows, [[Journal of Non-Newtonian Fluid Mechanics ], 79:283-296 (1998)"]
        

"Dynamics of polymer melts in reversing shear flows, with P. Ehrecke [[Journal of Non-Newtonian Fluid Mechanics ], 76:183-197 (1998)"]
        

"The rheology of the rheotens test, with A. Bernnat and V. Schulze [[Journal of Rheology ], 42:917-928(1998)"]
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"A constitutive analysis of uniaxial, equibiaxial and planar extension of a commercial linear high-density polyethylene melt, with P. Ehrecke, P. Hachmann and J. Meissner [[Journal of Rheology ], 42:621-638(1998)"]
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"LDPE melt rheology and the pom–pom model, with P. Rubio [[Journal of Non-Newtonian Fluid Mechanics ], 92:245-259 (2000)"]
        

"The strain-hardening behaviour of linear and long-chain-branched polyolefin melts in extensional flows, with H. Bastian, P. Hachmann, J. Meissner, S. Kurzbeck, H. Münstedt and F. Langouche, [[Rheologica Acta ], 39:97-109 (2000)"]
        

"Determination of elongational viscosity of polymer melts by RME and Rheotens experiments, [[Journal of Rheology ], 41:316-325(2002) "]
        

"The molecular stress function model for polydisperse polymer melts with dissipative convective constraint release, with P. Rubio and H. Bastian, [[Journal of Rheology ], 45:1387-1412(2003)"]
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"Quantitative assessment of strain hardening of low-density polyethylene melts by the molecular stress function model, with M. Yamaguchi and M. Takahsahi [[Journal of Rheology ], 47:779-793(2003)"]
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"Relating rheology and molecular structure of model branched polystyrene melts by molecular stress function theory, with J. Hepperle and H. Münstedt [[Journal of Rheology ], 48:489-503(2004)"]
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"Quantitative analysis of melt elongational behavior of LLDPE/LDPE blends, with S. Kheirandish and M. Yamaguchi[[Rheologica Acta ], 44:198-218 (2005)"]
        

"Modeling strain hardening of polydisperse polystyrene melts by molecular stress function theory, with S. Kheirandish, K. Koyama, A. Nishioka, A. Minegishi and T. Takahsahi, [[Rheologica Acta ], 44:235-243 (2005)"]
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