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您的位置:首页 -> 词典 -> 尼龙1010/纳米SiO2复合涂层
1)  nylon-1010/nanometer SiO_(2) composite coating
尼龙1010/纳米SiO2复合涂层
2)  PA1010 composite
尼龙1010复合材料
3)  Nylon Composite Coating
复合尼龙涂层
1.
The Corrosion-erosion Wear Characteristics of Nylon Composite Coatings;
复合尼龙涂层的腐蚀—冲蚀磨损特性
4)  nanocomposite coatings
纳米复合涂层
1.
Microwave absorbing properties of nanocomposite coatings containing surface modified powders within polymer;
化学沉积改性粉体/环氧树脂纳米复合涂层材料的微波吸收性能
2.
Acrylic based polyurethane/silica nanocomposite coatings with different structure or morphology were prepared by sol-gel process using tetraethoxysilane(TEOS) as the main precursor.
以四乙氧基硅烷(TEOS)作为主要前驱体,通过改变溶胶-凝胶工艺参数制得了结构和形态各异的丙烯酸酯聚氨酯/SiO2纳米复合涂层,利用TEM、SAXS等手段表征涂层的结构与形态,由洗刷前后涂层的失光率来表征耐刮伤性,详细探讨了纳米复合涂层耐刮伤性与SiO2相特征、有机无机相作用力及SiO2质量分数之间的关系。
3.
However,the hydrophobic nanocomposite coatings showed the best cor.
利用电化学阻抗谱法考察了普通涂层、纳米复合涂层和憎水纳米复合涂层的防腐性能 。
5)  nanocomposite coating
纳米复合涂层
1.
Effect of nitrogen protective atmosphere on microstructure and property of nanocomposite coating;
氮气保护对纳米复合涂层组织与性能的影响
2.
The pores of the nanocomposite coating (NCC) appeared to be generally equal-sized and showed a very homogeneous distribution, while the conventional microcomposite coating (MCC) appears an inhomo-geneous pore distribution.
研究了纳米复合涂层(NCC)和传统涂层(MCC)的微观结构及纳米压痕力学性能。
3.
After sintering, the nanocomposite coatings of polyphenylene salfide (PPS) and SiO2 with grain size less than 200nm were prepared.
通过烧结的方法在试样表面制备了PPS/SiO2纳米复合涂层,涂层中SiO2的粒度在200nm以下。
6)  Nano-composite coatings
纳米复合涂层
1.
Comparison tests of specimens painted with IMR series of nano-composite coatings and the typical coatings applied presently for aircraft structures were conduced by an accelerated aging test method with UV radiation.
采用紫外线照射加速老化实验方法对喷涂IMR纳米复合涂层与现役飞机结构典型涂层的试件进行了对比实验,定量地描述了涂层色差随着老化时间的变化。
补充资料:尼龙1010

  [-NH(CH210-NHCO(CH2)8CO]n
    白色或微黄色半透明均匀颗粒,半透明结晶形热塑性聚合物。密度1.058/cm3。吸水率1.5%。脆化温度-60℃。热分解温度大于350℃。易溶于苯酚、甲酚、硫酸等极性溶剂。对于烃、脂、低级醇等大部分非极性溶剂稳定。具有自润滑性、高耐磨性及良好的消音性。吸水性小,介电稳定性好。

密度(g/cm3)  1.03-1.05
拉伸强度  (MPa)  >50
断裂强度  (%)  >100
弯曲强度  (MPa) >70
冲击强度(kJ/m2) >250
熔点    (℃)   195-210
      应用领域  代替金属及有色金属广泛用于机械、汽车、化工等领域,可制作各种机械零件、衬垫、管道,如齿轮、轴承保持架、轴套、汽车十字节衬套底盘、涡杆、涡轮、高压阀衬垫、油箱衬里、输油管等。亦可用作电缆保护层、医用薄膜、乳胶管、容器、滤布、筛网、毛刷、金属表面防腐涂层、耐磨涂层等。还可加入其他树脂中作改性剂。

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