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1)  epoxy mortar coating
环氧砂浆涂层
1.
The interaction and adhesion failure mechanism of the interface between an epoxy mortar coating and a concrete base are also discussed in the paper.
环氧砂浆涂层在水利水电工程中的应用已有 40年历史。
2)  epoxy mortar
环氧砂浆
1.
Analyzing the quality of the elastical epoxy mortar influenced from mixing proportion and construction;
材料配比及施工因素对弹性环氧砂浆性能的影响分析
2.
Abrasion resistance tests on "sea island structure" epoxy mortar;
“海岛结构”环氧砂浆抗冲磨性能试验研究
3.
Crack checking and analysis of epoxy mortar facing on the spillway of Xin′anjiang Power Plant;
新安江厂房溢流面老环氧砂浆护面开裂状况的考察与分析
3)  epoxy coating
环氧涂层
1.
Influence of graphite flake on the strength and water absorption of epoxy coating;
鳞片石墨对环氧涂层强度和吸水性能的影响
2.
Application of silane soakage and epoxy coating in Huanghai Bridge
硅烷浸渍和环氧涂层工艺在黄海大桥中的应用
3.
To improve the bonding strength between the titanium alloy substrate and epoxy coating filled with the absorbent Fe,TiO2 films with a certain thickness are prepared on the titanium substrate by constant current micro-arc oxidation.
为了提高钛合金基体与Fe(吸波剂)/环氧涂层的结合强度,采用微弧氧化在钛合金表面制备一定厚度的二氧化钛多孔膜,之后浸涂Fe/环氧树脂涂料。
4)  epoxy coatings
环氧涂层
1.
Electrochemical impedance spectroscopy of multi-layer epoxy coatings in NaCl solution;
多道环氧涂层在NaCl溶液中的电化学阻抗谱
2.
The influence of size of mica fillers(124 μm, 38 μm and 19 μm) on diffusion of water in epoxy coatings was studied by use of electrochemical impedance spectroscopy and weightings methods.
以3种不同尺寸(124μm、38μm和19μm)的片状云母粉为填料,应用质量法和电化学阻抗法(EIS)研究云母填料尺寸效应对水在环氧涂层中的扩散行为的影响。
3.
The diffusing behavior of water through epoxy coatings with different pigment volume concentration(PVC) has been studied by electrochemical impedance spectroscopy(EIS).
利用电化学阻抗谱技术 ,研究了H2 O在不同颜料体积浓度 (PVC)环氧涂层中的传输行为 ,计算出H2 O在不同PVC环氧涂层中的扩散系数 ,并分析了PVC对H2 O在环氧涂层中传输行为的影响 。
5)  NE epoxy mortar
NE环氧砂浆
6)  aluminum-oxide-coated sand
氧化铝涂层砂
补充资料:双(2,3-环氧环戊基)醚玻璃布层合板
分子式:
CAS号:

性质:以双(2,3-环氧环戊基)醚为基料的层合板。马丁耐热270℃。拉伸强度371MPa。弯曲强度487MPa。冲击强度125kJ/m2。体积电阻率l.18×1015Ω·cm。将双(2,3-环氧环戊基)醚与固化剂等制成胶液或B阶树脂后,充分浸渍玻璃布,再叠层并层合即得。主要用作航空航天器材、电子元件和体育器材等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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