laser-interference dilatometer lix-2 (ULVAC)
90
Structured Review
ULVAC
laser-interference dilatometer lix-2
Laser Interference Dilatometer Lix 2, supplied by ULVAC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/laser-interference+dilatometer+lix-2/laser+interference+dilatometer+lix+2/10__1111_slash_jace__16931-55-6-9
Average 90 stars, based on 1 article reviews
Laser Interference Dilatometer Lix 2, supplied by ULVAC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/laser-interference+dilatometer+lix-2/laser+interference+dilatometer+lix+2/10__1111_slash_jace__16931-55-6-9
Average 90 stars, based on 1 article reviews
laser-interference dilatometer lix-2 - by Bioz Stars,
2026-09
90/100 stars
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other:Article Title: Thermal expansion adjustable polymer matrix composites with giant negative thermal expansion filler Article Snippet: Polymer matrix composites filled with giant negative thermal expansion (NTE) materials were formed by injection moulding.. Antiperovskite manganese nitrides, thermal expansion compensating filler of the composites, exhibit NTE greater than 30 ppm K 1 in a (coefficient of linear thermal expansion).. This gigantic NTE, several to ten times as large as that of conventional NTE materials, can compensate large thermal expansion of polyamide-imide polymer and thermal expansion of the composites is adjustable in a wide range of a value from positive to even negative. Article Title: Microstructural effects on negative thermal expansion extending over a wide temperature range in β-Cu1.8Zn0.2V2O7 Article Snippet: Reuse of AIP Publishing content is subject to the terms at: https://publishing.aip.org/authors/rightsand-permissions.. Downloaded to: 193.22.14.192 on 01 November 2018, At: 20:51 Microstructural effects on negative thermal expansion extending over a wide temperature range in β-Cu1.8Zn0.2V2O7 N. Katayama, K. Otsuka, M. Mitamura, Y. Yokoyama, Y. Okamoto, and K. Takenaka Citation: Appl.. Phys. Article Title: Extended operating temperature window of giant negative thermal expansion in Sn-doped Ca2RuO4 Article Snippet: Extended operating temperature window of giant negative thermal expansion in Sndoped Ca2RuO4 K. Takenaka, N. Inoue, Y. Mizuno, Y. Okamoto, N. Katayama, Y. Sakai, T. Nishikubo, and M. Azuma Citation: Appl.. Phys.. Lett. Article Title: Colossal negative thermal expansion in reduced layered ruthenate Article Snippet: Linear thermal expansion Δ L ( T )/ L along with the horizontal direction was measured using a Article Title: Giant isotropic negative thermal expansion in Y-doped samarium monosulfides by intra-atomic charge transfer Article Snippet: Linear thermal expansion Δ L ( T )/ L was measured using a Article Title: Matrix-filler interfaces and physical properties of metal matrix composites with negative thermal expansion manganese nitride Article Snippet: Matrix-filler interfaces and physical properties of metal matrix composites with negative thermal expansion manganese nitride Koshi Takenaka, , Kota Kuzuoka, and Norihiro Sugimoto Citation: J. Appl.. Phys.. 118, 084902 (2015); doi: 10.1063/1.4929363 View online: http://dx.doi.org/10.1063/1.4929363 View Table of Contents: http://aip.scitation.org/toc/jap/118/8 Published by the American Institute of Physics Matrix-filler interfaces and physical properties of metal matrix composites with negative thermal expansion manganese nitride Koshi Takenaka,1,2,a) Kota Kuzuoka,1 and Norihiro Sugimoto2 1Department of Applied Physics, Nagoya University, Nagoya 464-8603, Japan 2Department of Crystalline Materials Science, Nagoya University, Nagoya 464-8603, Japan (Received 7 June 2015; accepted 11 August 2015; published online 24 August 2015) Copper matrix composites containing antiperovskite manganese nitrides with negative thermal expansion (NTE) were formed using pulsed electric current sintering. Article Title: Spray‐dry synthesis of <i>β</i>‐Cu<sub>1.8</sub>Zn<sub>0.2</sub>V<sub>2</sub>O<sub>7</sub> ceramic fine particles showing giant negative thermal expansion Article Snippet: Rapid advances in modern technology have led to increasing demands for precise control of the dimensions and shapes of elements.. To satisfy those demands, control of thermal expansion has emerged as an important issue in all industries.1 Recently, it has become necessary to control thermal expansion in local regions of specific components at the micrometer level, especially in the field of electronic devices.2 To meet this demand, micrometer or submicrometer scale fine particles are necessary for use as thermal expansion compensators.. Commercially available nanoparticles used for this purpose today are of silica (SiO2). |