• 本发明芳香聚酰胺具有加工耐热温度优点

    The semi-aromatic polyamide containing oxazole ring of the invention has the advantages of easy processing and high heat-resistant temperature.

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  • 每种膜吸附绝对量顺序为芳香聚酰胺>聚砜酰胺>聚苯并咪唑酮。

    The amount of absorbed water per amide group varied in the order. polysulfone amide (PSA)> poly(benzimidazolone) (PBIL) > aromatic polyamid

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  • 以聚间苯二甲酰间苯二胺为原料,采用相转化法制备了芳香聚酰胺纳滤

    Aromatic polyamide nanofiltration membrane is prepared by the solution of aromatic polyamide fiber via immersion precipitation phase inversion process.

    youdao

  • 芳香聚酰胺及其合成方法,它涉及一种半芳香尼龙及其合成方法。

    Disclosed is a semi-aromatic polyamide containing oxazole ring and the related synthesis method, relating to a semi-aromatic nylon and the synthesis method.

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  • 10多年来芳香聚酰胺类反渗透膜制备改性等方面研究进行综合评述

    The studies on preparation and modification of aromatic polyamide membranes in recent 10 years were reviewed in detail.

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  • 实验结果表明芳香聚酰胺无机盐小分子有机物具有较好的选择分离性能

    The results showed that the prepared aromatic polyamide NF membrane had better performance of selection and

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  • 研究表明芳香聚酰胺为基质复合材料表面弥散伴随分子级水平反应过程

    It has been found that the surface dispersion of aromatic polyamide and its composites was accompanied with reaction of the molecular level.

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  • 结果表明芳香聚酰胺纤维强度断裂伸长捻度增加而下降

    The tests show that the strength and breaking extension of aramid fibres decrease with twisting.

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  • 同时介绍原液着色方法制备间位芳香聚酰胺有色纤维工艺条件

    In addition, the processing conditions and technologies of dope dyeing method for the colored meta-aramid fibers produced were introduced in detail.

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  • 发明涉及一种芳香聚酰胺电磁屏蔽织物制备方法

    The invention relates to a process for preparing aromatic polyamide electromagnetic shielding fabric.

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  • 采用低温溶液法共缩聚反应合成了苯二甲酰氯(TPC摩尔分数为0.05~0.15改性间位芳香聚酰胺( PMIA共聚物

    Modified meta-aramid(PMIA) copolymer with TPC mole fraction of 0.05~0.15 was prepared by low-temperature-solution polycondensation in DMAc.

    youdao

  • 采用低温溶液法共缩聚反应合成了苯二甲酰氯(TPC摩尔分数为0.05~0.15改性间位芳香聚酰胺( PMIA共聚物

    Modified meta-aramid(PMIA) copolymer with TPC mole fraction of 0.05~0.15 was prepared by low-temperature-solution polycondensation in DMAc.

    youdao

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