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首页> 外文期刊>Journal of coatings technology and research >Effect of cardanol diol on the synthesis, characterization, and film properties of aqueous polyurethane dispersions
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Effect of cardanol diol on the synthesis, characterization, and film properties of aqueous polyurethane dispersions

机译:腰果酚二醇对水性聚氨酯分散体合成,表征和薄膜性能的影响

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摘要

This article reports on the effect of a diol prepared from a renewable resource, cardanol, on the synthesis, film formation and film properties of aqueous polyurethane dispersions. The PU dispersions were prepared by the acetone process from poly(tetrameth-ylene ether)glycol (PTMEG) and isophorone diisocy-anate (IPDI) prepolymer at constant NCO/OH ratio of 1:1.1. Dispersions with two different concentrations of cardanol diol (OH value 140 mg KOH/g) were prepared through chain extension and characterized for solid content, particle size, and particle-size distribution (PSD). Free films were prepared by casting and were studied for their thermal, mechanical, viscoelas-tic, and hydrophobic properties. Due to the broad PSD, the dispersions containing cardanol diol exhibit better film formation property in comparison to the butane diol chain-extended PU. Soft and flexible films were obtained using cardanol diol as chain extender, whereas brittle film was obtained with butane diol chain extender. Morphological characterization using atomic force microscopy (AFM) and scanning electron microscopy (SEM) suggests a heterogeneous and amorphous nature of the polyurethanes-containing cardanol diol. The thermomechanical and viscoelastic properties show that incorporation of cardanol diol decreases the glass transition temperature and modulus of the films but enhances the properties like thermal stability, hydrophobicity, elongation, etc., of the polyurethane films.
机译:本文报道了由可再生资源腰果酚制得的二醇对水性聚氨酯分散体的合成,成膜和膜性能的影响。 PU分散体是通过丙酮工艺以恒定NCO / OH比为1:1.1的方式由聚四甲撑乙二醇醚(PTMEG)和异佛尔酮二异氰酸酯(IPDI)预聚物制备的。通过扩链制备具有两种不同浓度腰果酚二醇(OH值为140 mg KOH / g)的分散体,并对其固体含量,粒度和粒度分布(PSD)进行表征。通过流延制备自由膜,并研究其热,机械,粘弹性和疏水性。由于宽的PSD,与丁二醇二醇扩链的PU相比,含有腰果酚二醇的分散体表现出更好的成膜性能。使用腰果酚二醇作为增链剂获得了柔软而柔软的薄膜,而使用丁二醇二醇增链剂获得了脆性薄膜。使用原子力显微镜(AFM)和扫描电子显微镜(SEM)的形态表征表明,含聚氨酯的腰果酚二醇具有非均质和无定形性质。热力学和粘弹性性质表明,腰果酚二醇的加入降低了膜的玻璃化转变温度和模量,但是增强了聚氨酯膜的性质,例如热稳定性,疏水性,伸长率等。

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