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1)  capillary pressure effect
毛细压力效应
2)  capillary effect
毛细效应
1.
The comfortability of hemp fabric is thoroughly studied with the experiments of air and moisture permeability and capillary effect by comparing them with ramie and flax fabrics.
通过织物的透气、透湿及毛细效应等实验对大麻织物的舒适性能进行研究并与苎麻、亚麻织物进行比较,认为大麻织物在透湿性和毛细效应等方面有较大优势,在易出汗的夏季,大麻面料着装比较舒适。
2.
In this paper, the condition of capillary effect producing is analyzed in theory; the capillary' s models of five cross-sectional fibers are set up ,their capillary's sizes are calculated,and whether easy or not capillary effects happen in these capillaries is analyzed.
从理论上分析了毛细效应发生的条件:建立了5种不同截面纤维形成毛细管的模型,推导出了不同截面纤维形成的毛细管的大小,分析了发生毛细效应的难易程度;统计了不同截面纤维根数与形成毛细管根数的关系;总结出了不同截面纤维形成毛细管液态水毛细运输的流量;从而评价了不同截面纤维的湿传导能力,提出了优化方法。
3.
A physical model is presented to research how the capillary effect affects the fractal nature of viscous fingering in porous media.
建立了考虑毛细效应时多孔介质中二相流驱替的物理模型及动力学方程,提出了一种求解此类方程的近似方法,通过计算机模拟,得到了相应驱替前沿的分形生长图形,与未考虑毛细效应时的图形比较,发现其孔隙尺寸范围的分枝结构变弱,其表面相对光滑,分维值减少,从而证实了毛细效应的孔隙尺寸范围抑制指进型分枝结构的结论。
3)  wicking [英]['wikiŋ]  [美]['wɪkɪŋ]
毛细效应
1.
Conventional comparative experiments such as air permeability,cold sensation,moisture permeability experiment and wicking were performed on eleven kinds of knitted fabric like pure pearl fiber,pearl fiber/cotton,casein protein fiber/wool/cotton,modal,modal/cotton,viscose,etc.
通过透气性、瞬间冷感、透湿性和毛细效应常规对比试验,对珍珠纤维、珍珠纤维/棉、牛奶纤维/羊毛/棉、莫代尔、莫代尔/棉、粘胶纤维等11种针织面料进行了测试,研究了珍珠纤维针织物的热湿舒适性。
4)  wicking effect
毛细效应
1.
The effect of treating time on the surface modification and its aging were studied through the measurements of wicking effect.
采用不同工作气体的冷等离子体及不同工作压力,对涤棉进行表面改性,同时测试改性前后涤棉表面的毛细效应,分析其毛细效应的变化程度和趋势。
2.
It was shown from the experimental results that the wicking effect was increased and the surface energy was improved significantly after the oxygen low_temperature and Ar low_temperature treatment.
 利用低温等离子体对涤棉织物表面进行改性,测试改性前后涤棉织物表面的毛细效应,分析其毛细效应的变化程度和趋势。
3.
It is shown from the experimental results that the wicking effect is increased and surface energy is improved significantly after the treatment, and the wettability is enhanced.
利用空气等离子体对棉布、涤棉表面改性 ,测试改性前后表面的相关指数———毛细效应 。
5)  capillary pressure
毛细压力
1.
Influence of a nonionic surfactant on the relationships between capillary pressure and saturation in two-phase system;
非离子表面活性剂对两相系统毛细压力和饱和度关系的影响
2.
Experimental study of relationship between capillary pressure and saturation in two-phase system in porous media;
多孔介质两相系统毛细压力与饱和度关系试验研究
3.
Experimental study of capillary pressure-saturation relationships for immiscible liquids in porous media;
多孔介质不溶混流体毛细压力与饱和度关系实验研究
6)  Thermocapillarity effect
热毛细效应
补充资料:压力效应(pressureeffect)
压力效应(pressureeffect)

压力对超导性质的影响称压力效应,主要体现在对超导体的临界温度Tc和临界磁场的影响上。压力效应有二种:一是在加压下对超导体性质的影响,其二对一些非超导物质在加压下可呈现超导体性质。前者例如对超导元素Nb在常压下的Tc=9.2K,而在4.5×109Pa压强下则Tc=9.7K;后者例如在常压下的非超导元素Ge,但在1.15×1010Pa高压下成为超导物质,其Tc=5.35K,后者压力效应又称加压下的超导电性。实验结果显示,一般地对非过渡元素超导体加压后Tc可降低,对一些过渡族元素及其合金超导体加压后Tc可增高。

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