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1.
Sci Rep ; 6: 35763, 2016 10 21.
Article in English | MEDLINE | ID: mdl-27767184

ABSTRACT

Influences of process conditions on microstructure and dielectric properties of ceramic-polymer composites are systematically studied using CaCu3Ti4O12 (CCTO) as filler and P(VDF-TrFE) 55/45 mol.% copolymer as the matrix by combining solution-cast and hot-pressing processes. It is found that the dielectric constant of the composites can be significantly enhanced-up to about 10 times - by using proper processing conditions. The dielectric constant of the composites can reach more than 1,000 over a wide temperature range with a low loss (tan δ ~ 10-1). It is concluded that besides the dense structure of composites, the uniform distribution of the CCTO particles in the matrix plays a key role on the dielectric enhancement. Due to the influence of the CCTO on the microstructure of the polymer matrix, the composites exhibit a weaker temperature dependence of the dielectric constant than the polymer matrix. Based on the results, it is also found that the loss of the composites at low temperatures, including room temperature, is determined by the real dielectric relaxation processes including the relaxation process induced by the mixing.

2.
Ann N Y Acad Sci ; 1027: 129-37, 2004 Nov.
Article in English | MEDLINE | ID: mdl-15644351

ABSTRACT

The effects of gravity on the crystallization of ZrF(4)-BaF(2)-LaF(3)-AlF(3)-NaF glasses have been studied using the NASA KC-135 and a sounding rocket. Fibers and cylinders of ZBLAN glass were heated to the crystallization temperature in unit and reduced gravity. When processed in unit gravity the glass crystallized, but when processed in reduced gravity, crystallization was suppressed. A possible explanation involving shear thinning is presented to explain these results.


Subject(s)
Gravitation , Space Flight , Crystallization , Glass , Hot Temperature , Macromolecular Substances , Microscopy, Electron, Scanning , Models, Statistical , Oxides/chemistry , Spacecraft , Surface Properties , Temperature , United States , United States National Aeronautics and Space Administration , Weightlessness
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