نتایج جستجو برای: organic polymer

تعداد نتایج: 276334  

2015
Kenji Nozawa Yasunori Iwao Shuji Noguchi Shigeru Itai

2006
Manfred H. Wagner

A b s t r a c t M e a s u r e m e n t s b y L u a p e t a l .

2011
Shawn A. Chester

In this Part I, of a two-part paper, we present a detailed continuum-mechanical development of a thermomechanically coupled elasto-viscoplasticity theory to model the strain rate and temperature dependent largedeformation response of amorphous polymeric materials. Such a theory, when further specialized (Part II) should be useful for modeling and simulation of the thermo-mechanical response of ...

Journal: :Microelectronics Journal 2006
A. Albina P. L. Taberna J. P. Cambronne P. Simon E. Flahaut Thierry Lebey

A new hybrid approach consists to use the advantages of both systems namely the high geometric aspects of the electrodes of the ultracapacitor and the high dielectric strength of polymer materials used in dielectric capacitors. The surface roughness of the electrodes of the ultracapacitor is manufactured with nano-porous materials; activated carbon and carbon nanotubes (CNTs). Many compositions...

2005
M. Silva-Lopez A. Fender W. N. MacPherson J. S. Barton J.D.C. Jones D. Zhao D. J. Webb L. Zhang I. Bennion

We report experimental measurements of the strain and temperature sensitivity of the optical phase in a singlemode polymer optical fibre. These values were obtained by measuring optical path length change using a Mach-Zender interferometer.

2015
Dan Liang Derek Sekora Eva Schubert Mathias Schubert

Optical anisotropy of porous polymer film with inverse slanted nanocolumnar structure revealed via generalized spectroscopic ellipsometry" (2015).

2016
A. Semenov

A mean-field theory of inhomogeneous polymer systems is developed in order to include the finite molecular weight effects. A general analytical expression for the conformational

2006
Erik Van der Straeten Jan Naudts

In this paper we compare two polymer stretching experiments. The outcome of both experiments is a force-extension relation. We use a onedimensional model to show that in general the two quantities are not equal. In certain limits, however, both force-extension relations coincide.

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