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Cardanol based benzoxazine blends and bio-silica reinforced composites: thermal and dielectric properties

机译:基于Cardanol的苯并恶嗪共混物和生物二氧化硅增强复合材料:热和介电性能

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摘要

In the present work, a novel cardanol based benzoxazine was synthesised by reacting three different amines (aniline (CrAb), N,N-dimethylaminopropylamine (CrDb) and caprolactam modified N,N-dimethylaminopropylamine (CrCb)) with cardanol in the presence of formaldehyde under appropriate experimental conditions. The resulting benzoxazines were characterised for their molecular structure and thermal behaviour using different analytical methods. Among the different systems studied, the tertiary amine derivatives were found to reduce the curing temperature efficiently (CrAb-275 degrees C CrDb-265 degrees C CrCb-251 degrees C) and were confirmed by DSC analysis. These cardanol based CrAb benzoxazines were blended with conventional benzoxazines (Bzs) and bismaleimides (BMIs) as binary and ternary systems and their thermal properties were studied. Three different catalysts (4-hydroxy acetophenone, 4-aminophenol, and 4-hydroxyphenyl maleimide) were used to study the effect of lowering the curing temperature. Further, the prepared benzoxazines were reinforced with varying weight percentages (1, 3, 5 and 10 wt%) of bio-silica derived from rice husk to obtain hybrid composites. The dielectric studies of bio-silica reinforced cardanol benzoxazines infer that the values of dielectric constant decreased with increasing wt% of bio-silica. It was further observed that 10 wt% bio-silica reinforced cardanol benzoxazines show the lowest value of dielectric constant of 1.9 at 1 MHz. From the data obtained from the different studies, it is concluded that the blends of cardanol based benzoxazines can be used in the form of sealants, encapsulants, adhesives and matrices in the fields of microelectronics and automobile applications for better performance.
机译:在本作本作中,通过在甲醛存在下使三种不同的胺(苯胺(Crab),N,N-二甲基氨基丙胺(CRDB)和己内酰胺改性N,N-二甲基氨基丙胺(CRCB)和己内酰胺改性N,N-二甲基氨基丙胺(CRCB))在甲醛中与甲醇反应合成了一种新的新氨基苯并恶嗪在适当的实验条件下。使用不同的分析方法的分子结构和热行为表征得到的苯并恶嗪。在研究的不同系统中,发现叔胺衍生物有效地降低固化温度(Crab-275℃C> CRCB-251摄氏度C)并通过DSC分析证实。将这些基于糖醇基的蟹苯并恶嗪与常规的苯并恶嗪(BZS)和双聚烯烃(BMIs)混合为二元和三元体系,研究其热性质。使用三种不同的催化剂(4-羟基苯乙酮,4-氨基苯酚和4-羟基苯基马来酰亚胺)研究降低固化温度的效果。此外,通过不同的重量百分比(1,3,5和10wt%)的生物二氧化硅增强制备的苯并恶嗪以获得杂种复合材料。生物二氧化硅增强碳糖苯并恶嗪的介电研究推断推断介电常数的值随着生物二氧化硅的wt%而降低。进一步观察到,10wt%的生物二氧化硅增强碳酸苯并苯并苯并噻嗪显示出介电常数为1.9的最低值为1MHz。从从不同的研究获得的数据中,得出结论是,基于心肌基酚的苯并恶嗪的共混物可以以微电子和汽车应用领域的密封剂,密封剂,粘合剂和矩阵的形式使用,以实现更好的性能。

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  • 来源
    《New Journal of Chemistry 》 |2018年第6期| 共14页
  • 作者单位

    Vignans Univ Ctr Excellence Adv Mat Mfg Proc &

    Characterizat C Vadlamudi 522213 Guntur India;

    Vignans Univ Ctr Excellence Adv Mat Mfg Proc &

    Characterizat C Vadlamudi 522213 Guntur India;

    Vignans Univ Ctr Excellence Adv Mat Mfg Proc &

    Characterizat C Vadlamudi 522213 Guntur India;

    Vignans Univ Ctr Excellence Adv Mat Mfg Proc &

    Characterizat C Vadlamudi 522213 Guntur India;

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  • 正文语种 eng
  • 中图分类 化学 ;
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