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Silica film deposited on diamond-structured polymer microlattices by dip coating

机译:通过浸涂沉积在金刚石结构的聚合物微图中的二氧化硅膜

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摘要

The specific strength of lightweight cellular materials mainly depends on their structure and composition. In this study, polymer microlattices with diamond structures were fabricated by 3D printing. Then, silica materials with high strength were covered on the polymer microlattices using a dip-coating method, and we obtained polymer/SiO2 microlattices, which had the properties of low density, high compressive strength, and good thermostability. Moreover, three types of silica films with different thickness, i.e., 10.1 mm, 18.3 mm, and 23.6 mm, were deposited on the microlattices. The compressive strength of the polymer/SiO2 microlattices can be improved upon increasing the thickness of the silica coating. The thermostability of the polymer can be enhanced after coating with the silica materials and was improved more dramatically with a thicker coating. Light hollow-tube SiO2 microlattices with a density of 14.7 kg m(-3) were also fabricated by calcining the polymer template at high temperatures.
机译:轻质细胞材料的具体强度主要取决于它们的结构和组成。在该研究中,通过3D印刷制造具有金刚石结构的聚合物微图。然后,使用浸涂法在聚合物微图中覆盖具有高强度的二氧化硅材料,我们得到了聚合物/ SiO2微图,其具有低密度,抗压强度高,热稳定性的性能。此外,在微图中沉积了具有不同厚度,即10.1mm,18.3mm和23.6mm的三种二氧化硅膜。在增加二氧化硅涂层的厚度时,可以改善聚合物/ SiO2微图的抗压强度。在用二氧化硅材料涂覆后,可以提高聚合物的热稳定性,并且用厚度较厚的涂层更大地改善。通过在高温下煅烧聚合物模板,还通过煅烧聚合物模板来制造密度为14.7kg m(-3)的光空心管SiO2微图。

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  • 来源
    《RSC Advances》 |2017年第86期|共6页
  • 作者单位

    Minist Educ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Peoples R China;

    Minist Educ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Peoples R China;

    Minist Educ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Peoples R China;

    Minist Educ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Peoples R China;

    Minist Educ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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