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耐熱型微膠囊的研究進展

Progress in the study of heat-resistant microcapsules

  • 摘要: 在高溫、高壓和機械混合等苛刻的條件下,微膠囊化材料應足夠堅固耐久,而這些條件在設計過程中常常被忽略🤡。介紹了幾種常見的高溫微膠囊,在高溫條件下正常工作。指出不同壁材對芯材進行包埋時存在的問題,如兩者相容性🧝🏼‍♀️🚬、芯材的釋放方面。重點對復合壁材微膠囊進行介紹😲,歸納總結了納米復合材料的耐熱機製,並簡述了耐熱機製的研究手段,歸納可知無機納米材料的加入會對分子鏈或其他方面產生影響,從而提高基體材料的耐熱性能🕸。指出了目前微膠囊在耐熱領域中應用缺陷,並對未來發展進行展望。

     

    Abstract: Microencapsulated materials should be strong enough to withstand harsh conditions such as high temperature, high pressure and mechanical mixing, which were often neglected during the design process. In this review several common high-temperature microcapsules that could work well under high temperature conditions were introduced. Problems of encapsulating the core materials with different shell materials were identified, such as their compatibility and release of core materials. Composite wall microcapsules were introduced in detail, the heat resistance mechanism of nanocomposites was summarized, and the research methods of heat resistance mechanism were described. It can be concluded that the addition of inorganic nanomaterials affected the molecular chain or other aspects, thus improving the heat resistance of matrix materials. The defects of microcapsules in the field of heat resistance application were examined and the future development was prospected.

     

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