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对夹杂附近次表面的应力之估算
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作者 J.W.Kannel T.L.Merriman 鄂吉胜 《固体润滑》 CSCD 北大核心 1989年第2期127-132,共6页
作者提出了一个预测在夹杂附近次表面应力的理论模型。该模型包括允许体系中杨氏模量变化的弹性方程的数值解。起决定性作用的方程是用标准行列式反演方法求解变形的二次椭圆微分方程。将软材料基体中硬质夹杂的计算值与参照的实验数据... 作者提出了一个预测在夹杂附近次表面应力的理论模型。该模型包括允许体系中杨氏模量变化的弹性方程的数值解。起决定性作用的方程是用标准行列式反演方法求解变形的二次椭圆微分方程。将软材料基体中硬质夹杂的计算值与参照的实验数据进行了比较。在夹杂周围存在着巨大的应力升值,这由应力等值线来表示。在表面上涂覆厚的硬质涂层能够大幅度地降低这些应力的升值。 展开更多
关键词 应力计算 滚动轴承 表面应力
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Electroosmotic Water Vapor Transport across Novel, Smart, Functionalized Conducting Polymer Microporous Membranes in Active Mode at Very High Rates, with Concomitant Chemical Warfare (CW) Agent Blocking
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作者 Prasanna Chandrasekhar Petar Pirgov +6 位作者 Brian J. Zay David Lawrence Sean Morefield Tilghman L. Rittenhouse Salvatore G. Clementi Quoc Truong Russell R. Greene 《Advances in Materials Physics and Chemistry》 2013年第4期217-237,共21页
Electroosmotic water vapor transport (WVT) across very thin, flexible, functionalized conducting polymer (CP) microporous (μP) membranes at a very high rate is reported. Both passive and active (6 VDC applied) WVT ar... Electroosmotic water vapor transport (WVT) across very thin, flexible, functionalized conducting polymer (CP) microporous (μP) membranes at a very high rate is reported. Both passive and active (6 VDC applied) WVT are reported, the latter for the first time ever. WVT occurs with concomitant, effective blocking of chemical warfare (CW) agents, again demonstrated for the first time ever. Initial active liquid||membrane||liquid interface studies demonstrated WVT rates of >1.7 × 10-5g .mm-2s-1, >3 × the highest prior reported values of 5 × 10-6g.mm-2s-1. Subsequent vapor||membrane|| vapor interface studies using industry-standard methods (including ASTM E96B Upright Cup (“WVT”), ASTM F2298 (“Dynamic Moisture Permeation Cell”) and ASTM F1868 (“Sweating Guard Hotplate”) were done at independent, external labs for independent corroboration. These yielded, e.g., WVT values of2564.4 g.m2.d-1 (passive) and3706.7 g.m2d-1 (active), to be compared with the highest (passive) value ever reported previously,984.8 g.m2.d-1 for a μP-Nylon membrane. More than 15 different membrane configurations, porosities and types were studied, including membranes with CP + organophosphate hydrolase (OPH), an enzyme reactive to CW agents. Efficient blocking of the actual CW agents GB, HD, VX is also reported, using the TOP-8-2-501standard. Membranes also passed all Industry-standard durability tests, e.g. ASTM D2261 (Tearing), ASTM D5034 (Breaking), ASTM D3886 (Abrasion), ASTM F392 (Gelbo Flex). Incorporation into smart soldiers’ garments was demonstrated;power consumption was -2. Mechanisms of enhanced WVT and CW agent blocking in the membranes are discussed. 展开更多
关键词 ELECTROOSMOTIC Transport SMART MICROPOROUS Membrane Conducting Polymer FUNCTIONALIZED
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