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Evaluation of thermal, morphological and flame-retardant properties of thermoplastic polyurethane/polyphosphazene blends

机译:热塑性聚氨酯/多磷腈共混物热,形态和阻燃性能的评价

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A polydichlorophosphazene was prepared by thermal ring-opening polymerization of hexachlorophosphonitrile (trimer). The functionalization of polydichlorophosphazene was done via substituting the chlorine groups with sodium salt of trifluroethanol and furfuryl alcohol and then structural properties of functionalized polyphosphazene (PPZ) was confirmed by GPC, FT-IR and NMR spectroscopic analysis. The PPZ was further blended with thermoplastic polyurethane (TPU) using solution casting method in anhydrous tetrahydrofuran solvent. The miscibility behavior of TPU/PPZ blends was observed via FTIR spectroscopy which unfolded the reason of compatibility of the blends due to intermolecular Hydrogen bonding interaction between the TPU and PPZ. Further, the thermal properties of the casted films were analyzed using thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) which revealed the increase in onset of degradation temperature of TPU with the increase of PPZ content. Also the char yields of TPU blends at 600 degrees C were increased upon increasing the amount of polyphosphazene from 5 to 20 wt%. The appearance of crystallinity in the TPU/PPZ blend due to heteronucleation effect by PPZ was analyzed by X-ray diffractometer. Besides this, the morphological changes of the TPU/PPZ blended films were investigated by scanning electron microscopy which exposed the homogeneity in the blend (d). The flame-retardant properties were evaluated using limiting oxygen index (LOI) analyzer and UL-94 (vertical burning test) showing the rating of V0 with achieved LOI value of 31.4% for the blend (d). Moreover, the films were characterized in terms of mechanical properties (as per relevant ASTM standards) using UTM which demonstrated that the addition of 20 wt% PPZ in the blend enhanced the tensile strength by about 110% and decreased the elongation at break by nearly 13%.
机译:通过六氯膦腈(三聚体)的热开环聚合制备聚二氯化物。通过用三氟乙醇钠盐用氯基团用三氟乙醇和糠醇代替氯基团进行的官能化,然后通过GPC,FT-IR和NMR光谱分析证实了官能化多磷腈(PPZ)的结构性。使用在无水四氢呋喃溶剂中使用溶液浇铸方法将PPZ与热塑性聚氨酯(TPU)一起混合。通过FTIR光谱观察TPU / PPZ共混物的混溶性行为,其展开由于TPU和PPZ之间的分子间氢键相互作用而展开共混物的相容性。此外,使用热重分析(TGA)和差示扫描量热法(DSC)分析浇铸膜的热性质,该热量扫描量热法(DSC)显示TPU的降解温度的发作增加随着PPZ含量的增加而增加。在增加5至20wt%的多磷脂量增加时,也增加了600℃的TPU共混物的炭产量。通过X射线衍射仪分析由于PPZ引起的TPU / PPZ混合物中的结晶度的出现。除此之外,通过扫描电子显微镜研究了TPU / PPZ混合膜的形态变化,所述电子显微镜暴露于所述混合物(D)中的均匀性。使用限制氧指数(LOI)分析仪和UL-94(垂直燃烧试验)来评估阻燃性能,显示V0的额定值,为共混物(D)的LOI值为31.4%。此外,薄膜的特征在于使用UTM的机械性能(根据相关ASTM标准),表明混合物中加入20wt%PPZ增强了抗拉强度约110%并减少了近13的断裂伸长率%。

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