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高分子基底
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  polymer substrates
     Preparation, Structure and Properties of Sputtered Fluorocarbon Film on Polymer Substrates
     高分子基底上氟碳膜的制备、结构和性能
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  相似匹配句对
     Polymer Allors
     高分子合金
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     Polymer Liquid Crystals
     高分子液晶
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     a.
     a基底
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     Preparation, Structure and Properties of Sputtered Fluorocarbon Film on Polymer Substrates
     高分子基底上氟碳膜的制备、结构和性能
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     ON THE BASEMENT OF JUNGGAR BASIN
     试论准噶尔盆地的基底
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  polymer substrates
This agrees with the results of scanning near-field optical microscopy experiments revealing distinct spiral patterns in the in-plane near-field intensity distribution for metallized nanostructured polymer substrates.
      
Structure and optical properties of C60 films on polymer substrates
      
The ionic electrodes were created on polymer substrates in a xerographic regime.
      
The maximal degree of azolation is achieved via the interaction of polymer substrates with the sodium salt of 4-nitro-1,2,3-triazole.
      
The diffusion of chlorinated polypropylene (CPO) into polymer substrates was quantified by using radiolabelled CPO and monitoring its dissolution subsequent to its application.
      
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Bionic acicular nano hydroxyapatite(n HA) was used to make composites with medical grade polyamide (Poly hexamethylene adipamide) by solution blend. The morphology, phase composition and crystal structure of n HA in composites are similar to those of apatites in human bone and the stable interfacial bonding was found between HA and polymer phase. Mechanical tests indicate that the tensile strength, bending strength, impact strength and the elasticity modulus of the composite are almost equivalent to those...

Bionic acicular nano hydroxyapatite(n HA) was used to make composites with medical grade polyamide (Poly hexamethylene adipamide) by solution blend. The morphology, phase composition and crystal structure of n HA in composites are similar to those of apatites in human bone and the stable interfacial bonding was found between HA and polymer phase. Mechanical tests indicate that the tensile strength, bending strength, impact strength and the elasticity modulus of the composite are almost equivalent to those of cortical bone. The composite, thus, is bone like and has high strength, as well as excellent biocompatibility, which shows promising prospect for bone repair, orthopedics and tissue engineering.

通过溶液共混法制备了羟基磷灰石纳米针晶与聚己二酰己二胺生物医用复合材料。用透射电镜、红外光谱仪和转靶X 射线衍射仪对复合材料的形态、组成和结构进行了分析 ,证明纳米复合材料中羟基磷灰石针晶与高分子基底之间产生了键合 ,具有稳定的界面。各种分析表明 ,这是一种类骨的高强柔韧复合材料 ,充分发挥了羟基磷灰石优良的生物相容性 ,在骨修复和组织工程方面具有广阔的应用前景。

 
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