surface wettability 中文意思是什麼

surface wettability 解釋
表面潤濕性能
  • surface : n 1 表面;地面;水面;廣場,空地。2 外觀,外表,皮毛。3 【幾】面;切口;【航空】翼面。adj 表面的...
  • wettability : n. 1. 可濕性。2. 【化、物】可濕度。
  1. Influence of typical poultry feather structure and surface lipoid on wettability

    禽羽結構及羽表脂質對其潤濕性能的影響
  2. Wettability is the potential of a surface to interact with liquids with specified characteristics.

    潤濕性則是表面同特定性能的液體,相互作用的勢能。
  3. Test method for surface wettability of paper angle - of - contact method

    紙表面潤濕性的試驗方法
  4. As a super refractory, nature flaky graphite has many advantages such as high thermal conductivity, high thermal shock resistance, excellent high - temperature strength, excellent machinability, high sublimation temperature and low thermal expansion coefficient. unfortunately, the poor water wettability, low density and flaky structure of graphite surface limit its application with large quantity

    天然鱗片石墨以其熱膨脹小,導熱性、抗熱震性和化學穩定性好等諸多優點而成為適應鋼鐵冶煉苛刻環境耐火材料的原料,但石墨在水中的潤濕性、分散性差以及在空氣中易氧化等缺點限制了它的進一步應用。
  5. Abstract : in this paper, the adherent properties of pet fabric treated by corona - discharge were studied through esca and wettability, the application of two mechanisms in terms of weak boundary layer and chemical structure on fabric surface was discussed

    文摘:本文通過光電子能譜和表面潤濕實驗來研究經電暈放電處理后的滌綸織物的表面性能,探討了弱界面層和化學結構兩種理論在粘合中的應用。
  6. The interface behavior between essence and ethylene - vinyl acetate copolymer pallets was studied so that necessary data were obtained to guide the preparation of fragrant masterbatch. the adsorption type and wettability between essence and the copolymer pallets were analysed by measurements of fourier transform infrared spectrum, surface tension, contact angle and specific surface area. the technical factors affecting absorptivity such as the charge ratio, temperature, pressure and stirring speed were studied by series of adsorption experiments. the results showed that the adsorption of essence on the surface of ethylene - vinyl acetate copolymer pallets is physical in nature. essence couldn ' t moisten the surface of ethylene - vinyl acetate copolymer pallets absolutely, but it could be soaked into the surface of the pallets partly. adsorptivity could be increased by enhancing the temperature, pressure and stirring speed, but the extension of adsorption time had little influence on adsorptivity

    研究了香精與乙烯/醋酸乙烯共聚物粒子之間的界面行為,以便為香型母粒的制備提供必要的理論依據.利用傅立葉變換紅外光譜、表面張力、接觸角及比表面面積等測定手段,分析了香精與載體之間的吸附類型和潤濕作用.並通過一系列吸附實驗,討論了配料比、溫度、壓力、攪拌等工藝條件對吸附量的影響.結果表明,香精在乙烯/醋酸乙烯共聚物粒子表面的吸附為物理吸附;香精無法完全潤濕載體粒子表面,但可以對其形成部分浸潤;提高溫度、壓力、攪拌速度可以增加吸附量,而延長吸附時間對增加吸附量貢獻不大
  7. Abstract : the interface behavior between essence and ethylene - vinyl acetate copolymer pallets was studied so that necessary data were obtained to guide the preparation of fragrant masterbatch. the adsorption type and wettability between essence and the copolymer pallets were analysed by measurements of fourier transform infrared spectrum, surface tension, contact angle and specific surface area. the technical factors affecting absorptivity such as the charge ratio, temperature, pressure and stirring speed were studied by series of adsorption experiments. the results showed that the adsorption of essence on the surface of ethylene - vinyl acetate copolymer pallets is physical in nature. essence couldn ' t moisten the surface of ethylene - vinyl acetate copolymer pallets absolutely, but it could be soaked into the surface of the pallets partly. adsorptivity could be increased by enhancing the temperature, pressure and stirring speed, but the extension of adsorption time had little influence on adsorptivity

    文摘:研究了香精與乙烯/醋酸乙烯共聚物粒子之間的界面行為,以便為香型母粒的制備提供必要的理論依據.利用傅立葉變換紅外光譜、表面張力、接觸角及比表面面積等測定手段,分析了香精與載體之間的吸附類型和潤濕作用.並通過一系列吸附實驗,討論了配料比、溫度、壓力、攪拌等工藝條件對吸附量的影響.結果表明,香精在乙烯/醋酸乙烯共聚物粒子表面的吸附為物理吸附;香精無法完全潤濕載體粒子表面,但可以對其形成部分浸潤;提高溫度、壓力、攪拌速度可以增加吸附量,而延長吸附時間對增加吸附量貢獻不大
  8. The effects of meor include as follows : being favorable to oil - gas percolation, changing wettability of rocks, improving hydrocarbon migration, reducing surface tension of emulsified oil, decreasing crude viscosity and improving sweep efficiency, etc

    採油微生物具有自身的優勢,有利於油氣滲流及提高採收率,尤其是微生物能改變巖石潤濕性、改善油氣運移、乳化原油降低表面張力,微生物及代謝產物還對原油具有降粘作用,對地層水產生有利影響,提高波及系數。
  9. Adhesives - wettability - determination by measurement of contact angle and critical surface tension of solid surface

    膠粘劑.濕潤度.通過固體表面接觸角和臨界表面張力的測量確定濕潤度
  10. Standard test method for surface wettability and absorbency of sheeted materials using an automated contact angle tester

    使用自動接觸角測試儀測定覆蓋材料表面濕潤度和吸收性的標準試驗方法
  11. Test method for surface wettability and absorbency of sheeted materials using an automated contact angle tester

    利用自動接觸角測試儀測定薄板材料的表面濕潤性和吸水性的試驗方法
  12. Adhesives - wettability - determination by measurement of contact angle and critical surface tension of solid surface ; german version en 828 : 1997

    粘合劑.可濕性.固體表面接觸角度和臨界表面張力測量
  13. The maximal power outputs of 37. 0 mw / cm2 and 30. 0 mw / cm2 for the p - and n - type laminated materials respectively at the temperature difference 490 have been experimentally obtained, which are about 2. 5 and 3. 0 times those of - fesi2. chemical analyses show that the interface failure between the bridge alloy and the semiconductor bi2te3 results mainly from the eutectic mixtures with low melting point and brittle compounds formed during welding and long time annealing at 190. it is found that the electrical properties of a laminated structure are mainly controlled by the wettability of the bridge alloy on the semiconductor surface

    發現: 1 )疊層材料具有明顯優于均質材料的熱電性能,在490溫差下, p -型和n -型疊層材料的最大輸出功率分別達到37 . 0和30 . 0 ( mw / cm ~ 2 ) ,是同類型均質- fesi _ 2的2 . 5和3倍; 2 )在焊接過程和190長時間退火處理過程中,焊接過渡層合金和基體半導體(特別是bi _ 2te _ 3 )之間存在明顯的元素相互擴散,從而在過渡層中形成一些低熔點共晶體和脆性化合物,這是導致疊層材料破壞的主要原因; 3 )焊接過渡層合金與半導體基體之間的潤濕性是影響界面層電性能的主要因素。
  14. Wettability of stainless steel surface with micrometer order ball crown lattice

    不銹鋼微米級球冠形表面的潤濕性能
  15. The results showed that it was fibronectin which increased cell attachment so that cells could not be detached, and albumin did n ' t influent the cell detachment, but influented the adsorption of fibronectin, surface analysis demonstrated that the coated protein would not affact the wettability of azphpia. the function of azphpia could not resist the function of fibronectin so that the application of thermoresponsine biomaterial in serum cell culture system is limited. in section two, it was also first time to systhesis phycocyanin ( pc ) anti - tumor polymer

    在第三章中,首次成功將具有抗腫瘤活性的藻藍蛋白、藻總蛋白、硒化藻藍蛋白,通過光化學固定法,共價接枝到聚苯乙烯膜上,製成新的光固定化抑癌生物材料,接著華南師范大學博土學位論文中文摘要研究藻藍蛋白光固定化聚苯乙烯膜對肝癌細胞7402生長的體外抑制作用及硒和螺旋藻中其它蛋白質對藻藍蛋白活性的影響。
  16. The wettability of solid surfaces is a very important property, which is governed by both the chemical composition and the geometrical microstructure of the surface

    潤濕性能是固體表面的重要特徵之一,它是由表面的化學組成和微觀幾何結構共同決定的。
  17. Interestingly the complicated surface is much like the microstructure of nature lotus leaf, which has never reported in a - c films ; via ca tests on the a - c films with different surface features indicated that the wettability of a - c films can be controlled in large scale, ranging from very hydrophilicity ( 40o ) to super - hydrophobicity ( 152o ) by only adjusting the surface morphology ; 2

    對具有不同表面特徵薄膜的潤濕性能測試表明:僅僅通過工藝的調控,形貌的改變就可以使非晶碳薄膜的表面從非常親水(接觸角為40o )到超疏水(接觸角為152o )大范圍的浮動。 2 .通過計盒分維法將不同形貌的薄膜定量描述。
  18. Combined with special wettability properties, a - c films may have greater potential applications. in present thesis, a series of a - c films were prepared by magnetron sputtering technique on substrates as si ( 100 ) and glass, and the deposited processes were controlled to adjust the morphology of the surfaces of a - c films. to further obtain the desired wettability, surface chemistry compound of the lotus - like surfaces were plasma modified by optimized processes

    本文採用磁控濺射系統在普通玻璃和單晶硅上獲得了具有不同表面形貌特徵的非晶碳薄膜,此外利用等離子體表面處理系統,通過改進工藝方法,優化工藝條件,對非晶碳薄膜表面化學組成進行調控,獲得了潤濕性能從超親水到超疏水范圍變化的表面。
  19. Standard test method for surface wettability of paper angle - of - contact method

    紙表面可濕性的測試方法
  20. Surface wettability transition by mechanochemical treatment on polycrystalline titanium dioxide thin film

    植物葉表面非光滑形態及其疏水特性的研究
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