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1.
PPEKK/PEI共混物的相容性及拉伸性能   总被引:3,自引:0,他引:3  
作为相容体系 ,聚芳醚酮与聚醚酰亚胺 (PEI)共混物体系的研究受到了研究者的重视[1~ 4] .由于现在已商品化的聚芳醚酮基本上都是半结晶型聚合物 ,所以有有关无定型聚芳醚酮与聚醚酰亚胺共混物的研究鲜见报道 .含二氮杂萘酮结构聚芳醚酮酮 (PPEKK)是一种新型耐高温聚合物 ,相比于已经商品化的各种聚芳醚酮 ,PPEKK除具有优异的综合性能外 ,它最大的特点表现在以下两方面 ,PPEKK耐热性突出 ,玻璃化转变温度 (Tg)为 2 4 5℃左右 ,远高于各种商品化的聚芳醚酮 ;PPEKK为无定型聚合物 ,易溶于多种有机极性溶剂 ,大大的扩…  相似文献   

2.
由自制的二甲基取代类双酚4-(3,5-二甲基-4-羟基苯基)-2,3-二氮杂萘-1-酮(DM-HPPZ)单体和4,4'-二氟二苯酮、4,4'-二氯二苯砜进行亲核缩聚反应,制备了一类新型的二甲基取代聚芳醚酮、聚芳醚砜及其共聚物聚芳醚砜酮树脂材料.在适宜的聚合条件下,获得了高分子量的聚合物,其特性粘度为0.44~0.75DL·g-1.利用DSC和TGA研究了聚合物的耐热性能,结果表明,新型聚芳醚玻璃化温度高(568~595K),耐热稳定性好(5%热失重温度大于416℃);拉伸强度为45.4~85.0MPa,力学性能优良.新型聚芳醚在氯仿、DMAc等极性有机溶剂中可溶解并浇铸得到透明、韧性高的薄膜.共聚物结合了聚醚酮好的力学性能和聚醚砜高的耐热性的特点,因此综合性能更佳.  相似文献   

3.
分子结构对聚芳醚酮薄膜透气性的影响   总被引:1,自引:0,他引:1  
分子结构对聚芳醚酮薄膜透气性的影响王忠刚,陈天禄,徐纪平(中国科学院长春应用化学研究所长春130022)关键词聚芳醚酮,气体分离膜,结构-性能关系为了改善聚合物薄膜的透气性能,开发具有高透气性和高选择性的膜材料,人们对膜分子结构与透气性能间的关系进行...  相似文献   

4.
低温溶液缩聚合成聚芳醚酮酮的研究   总被引:42,自引:3,他引:42  
低温溶液缩聚合成聚芳醚酮酮的研究宋才生,蔡明中,周丽云(江西师范大学化学系南昌330027)关键词低温溶液缩聚,付一克或化反应,聚芳醚酮酮,二苯醚聚芳醚酮酮(PEKK)是一种新型的热塑性耐热高分子材料,具有优异的机械力学性能,耐溶剂抗化学腐蚀性能,抗...  相似文献   

5.
含二氮杂萘酮联苯结构聚芳醚是一类综合性能优异的耐高温热塑性树脂,可采用多种方式加工成型。与传统聚芳醚相比,具有低成本、优异的高温力学性能和良好的溶解性等优势,可作为基体树脂应用于制备复合材料。本文主要介绍了近几年在含二氮杂萘酮联苯结构热塑性聚芳醚树脂基复合材料方面的研究进展,包括玻璃纤维增强复合材料、碳纤维增强复合材料...  相似文献   

6.
含硫醚和二氮杂萘酮结构聚芳醚酮的合成与性能   总被引:6,自引:0,他引:6  
通过 4 ,4′ 硫代二酚 (TBP)、4 (4 羟基苯基 ) 2 ,3 二氮杂萘 1 酮 (DHPZ)与 4 ,4′ 二氟二苯酮 (DFK)反应合成出不同组分的高分子量共聚芳醚酮 .对聚芳醚酮的结构进行了FT IR、1 H NMR和1 3C NMR表征 ,表明共聚酮为无规结构 .对共聚芳醚酮的热性能、结晶性能、拉伸性能、溶解性能进行了测试 ,结果表明随硫醚结构含量的增加 ,共聚醚酮的玻璃化转变温度降低 ,材料韧性增强 ,溶解性能变差 ,所得的共聚物为无定型态 ,但由TBP和DFK制得的均聚醚酮为半结晶性  相似文献   

7.
聚芳醚酮类高聚物的合成与热性能研究   总被引:2,自引:0,他引:2  
利用合成的新型单体,采用亲核取代法制备了5类聚芳醚酮.用DSC和WAXD对聚合物的研究表明:新型聚芳醚酮与聚醚醚酮的结晶结构相同,其熔点及玻璃化转变温度均随聚合物结构单元中酮基含量的增加而升高.  相似文献   

8.
以5种含杂萘联苯结构的单体与2,6-二氯苯腈、1,4-二(4-氟代苯甲酰基)苯为原料进行亲核缩聚反应,制备了一系列含有杂萘联苯结构的新型聚芳醚腈酮酮树脂.其特性粘度在0.51~1.15 dL.g-1之间.采用FT-IR,示差扫描量热仪(DSC),热重分析仪(TGA)对聚合物的结构和性能进行了表征,结果表明,聚芳醚腈酮酮的玻璃化转变温度(Tg)在252~294℃之间,10%热失重温度(Td)在457℃以上,具有优异的耐热性能.聚芳醚腈酮酮均可溶解于N-甲基吡咯烷酮(NMP)、N,N-二甲基乙酰胺(DMAc)、和氯仿等极性非质子型有机溶剂中,聚合物均可溶解于NMP后浇铸得到透明的、韧性好的薄膜.  相似文献   

9.
通过酚酞啉和二氟二苯酮的SN2亲核缩聚反应合成侧链含有羧基的聚芳醚酮(PEKL),再经与丙烯酸羟乙酯(HEA)的酯化反应得到了含有烯丙基侧基的聚芳醚酮树脂(PEK—L-A),通过改变反应物单体的加入量可调整烯丙基的接枝率。用FT—IR、^1H—NMR、DSC等手段表征和测试了聚合产物的结构与性能。结果表明:以该功能性聚芳醚酮为基体树脂配制的溶液涂层经紫外光固化后其涂层的耐热温度可达300℃,冲击强度高于100kg·cm。  相似文献   

10.
含氟侧基聚芳醚酮的合成与表征   总被引:15,自引:2,他引:13  
聚芳醚酮具有优异的化学、物理和机械性能 ,被广泛用于结构材料、高分子膜、航空航天和电子工业中所需的涂敷材料 [1,2 ] .传统的聚芳醚酮由于主链的规整性和刚性 ,使其难熔难溶 ,给加工和应用带来一定的困难 .许多研究者对其进行了大量的改性研究 [3,4 ] .氟元素具有较强的电负性 ,尺寸较小 ,可以形成强化学键和具有较好的电性能等 ,使其在化学物质的分子设计中成为极有价值的取代基 .含氟聚合物可以影响聚合物的溶解性、阻燃性、热稳定性、玻璃化转变温度、颜色、结晶性、介电常数和吸水性等性能 [5,6 ] .为了改善聚芳醚酮的溶解性、结晶…  相似文献   

11.
Two series of novel amorphous poly(aryl ether phthalazine)s have been prepared via an intramolecular ring closure reaction of poly(aryl ether ketone)s (PAEKs) with hydrazine monohydrate. Fluorinated PAEKs, which display solubility in solvents incorporating a ketone functionality such as acetone or ethyl acetate, were converted to poly(aryl ether phthalazine)s to observe if these polymers would display similar solubility characteristics. The poly(aryl ether phthalazine)s have glass transition temperatures in the range of 278–320°C and show 5% weight loss points greater than 500°C in air and nitrogen atmospheres. The fluorinated poly(aryl ether phthalazine)s were not soluble in ketonic solvents. A series of poly(aryl ether phthalazine)s incorporating pendant 2-naphthalenyl moieties has been prepared in an attempt to produce amorphous, thermally stable polymers with high glass transition temperatures. The polymers have glass transition temperatures in the range of 287–334°C and show 5% weight loss points greater than 500°C in air and nitrogen atmospheres. Poly(aryl ether phthalazine)s undergo an exothermic reaction above the glass transition temperature. The major product of this reaction is a rearrangement of the phthalazine moieties to quiazoline moieties, however some crosslinking of the polymers occurs. Cured samples of the poly(aryl ether phthalazine)s show a small increase in the polymer Tg and are insoluble in all solvents tested. © 1996 John Wiley & Sons, Inc. J Polym Sci A: Polym Chem 34:1897–1905, 1996  相似文献   

12.
通过傅克酰基化反应合成4,4'-二(4-氟苯甲酰基)二苯醚、4,4'-二(五氟苯甲酰基)二苯醚、4,4'-二(4-氟苯甲酰基)二苯硫醚以及4,4'-二(五氟苯甲酰基)二苯醚4种长链双卤单体,并进一步制备了含二氮杂萘酮聚芳醚酮聚合物.通过多氟取代双卤单体在含二氮杂萘酮聚芳醚酮聚合物主链中引入氟原子.多氟取代双卤单体具有多...  相似文献   

13.
Five kinds of poly(aryl ether ketone)s (PAEKs) having para-substituted linear molecular chains were synthesized via nucleophilic substitution reaction of the corresponding difluoro- and dihydroxy-compounds. The glass transition temperature and melting temperature of the PAEKs measured through differential scanning calorimetry in addition to those of other PAEKs reported are approximately proportional to the logarithm of the ratio of the mole fractions of ketone and ether groups in the repeating unit of the PEAKs. On the other hand, this ratio does not affect the crystal structure of the PAEKs.  相似文献   

14.
Blends of poly(aryl ether ketones) (PAEKs) and an amorphous poly(ether imide) (PEI) were used as model systems to study the broadening of the glass transition due to crystallization and the resulting depletion of PAEK from the amorphous phase. Two different PAEKs were studied, which are completely miscible with PEI in the amorphous state; poly(aryl ether ether ketone) (PEEK) and a slower crystallizing poly(aryl ether ketone ketone)(PEKK). Relatively rapid crystallization conditions were chosen in order to trap a significant fraction of PEI between the PAEK crystal lamellae or between bundles of lamellae. The broad glass transitions are apparently a result of the nonuniform nature of this process. The breadth of the glass transition was quantified by thermally stimulated currents (TSC) applied in the thermal sampling (TS) mode. The results compared favorably with DSC data. The magnitude of the apparent activation energy obtained by the TS method allows one to assign the relaxations as cooperative (glass transition-like) or non-cooperative and to define the limits of the glass transition with a higher degree of precision than other techniques. Cooperative relaxations can be resolved with this technique, even if they are only a small fraction of the overall relaxing species at a given temperature. In some cases the glass transition region was found to broaden to ca. 60°C after crystallization. © 1993 John Wiley & Sons, Inc.  相似文献   

15.
聚芳醚酮由于熔融粘度大和加工温度高而影响了其进一步工业化,因此降低熔融粘度和加工温度是研究聚芳醚酮的新课题[1].目前在工程塑料中热致液晶高分子是一种具有低熔融粘度而性能优异的材料,其熔融粘度比一般高分子材料低得多,并且具有优异的机械性能[2]本文采用无现...  相似文献   

16.
The relationships among glass transition, crystallization, melting, and crystal morphology of poly(aryl ether ketone) (PAEK)/poly(other imide) (PEI) blends was studied by thermal, optical and small-angle x-ray scattering (SAXS) methods. Two types of PAEK were chosen for this work: poly(aryl ether ether ketone), PEEK, and poly(aryl ether ketone ketone), PEKK, which have distinctly different crystallization rates. Both PAEKs show complete miscibility with PEI in the amorphous phase. As PAEK crystallizes, the noncrystallizable PEI component is rejected from the crystalline region, resulting in a broad amorphous population, which was indicated by the broadening and the increase of Tg over that of the purely amorphous mixture. The presence of the PEI component significantly decreases the bulk crystallization and crystal growth rate of PAEK, but the equilibrium melting temperature and crystal surface free energies are not affected. The morphology of the PEI segregation was investigated by SAXS measurements. The results indicated that the inter(lamellar-bundle) PEI trapping morphology was dominant in the PEEK/PEI blends under rapid crystallization conditions, whereas the interspherulitic morphology was dominant in the slow crystallizing PEKK/PEI blends. These morphologies were qualitatively explained by the expression δ=D/G, where G was the crystal growth rate and D was the mutual diffusion coefficient. © 1993 John Wiley & Sons, Inc.  相似文献   

17.
从分子结构设计出发 ,以价廉易得的苯酚、苯酐为原料 ,经温和的工艺合成了结构全新的 4 ( 4′ 羟基苯基 ) 2 ,3 二氮杂萘 1 酮 (DHPZ) ,对其合成反应路线、合成反应动力学、反应机理进行了深入研究 .在大量实验研究基础上 ,结合分子立体结构的计算机模拟 ,确认其具有非共平面扭曲结构特征 ,其N—H键和O—H键具有类似的反应活性 ,是一种类似双酚的新单体 .以DHPZ与多种市售双卤单体如二氟二苯酮 (DFK)、二氯二苯砜 (DCS)、二氯二苯双酮 (DCKK)、二氯二苯腈 (DCBN)等经溶液亲核取代逐步聚合反应制得一系列含二氮杂萘酮结构的新型高性能聚醚砜 (PPES)、聚醚酮 (PPEK)、聚醚砜酮 (PPESK)、聚醚酮酮 (PPEKK)、聚醚砜酮酮(PPESKK)、聚醚腈酮 (PPENK)、聚醚腈砜 (PPENS)、聚醚腈砜酮 (PPENSK)等 ,对其结构进行了谱学表征 ,对其性能进行了全面测试 ,研究了其结构与性能关系 .谱学数据证明皆为无定型高聚物 .其玻璃化温度Tg 在 2 5 0~370℃之间 ,可以通过取代基团结构或主链上砜 酮基团比例进行调控 .在大量实验研究基础上 ,创造性提出“引入全芳环非共平面扭曲分子链结构赋予高聚物既耐高温又可溶解的优异综合性能”的分子结构设计理论 .在此分子设计理论指导下 ,设计并合成了含联苯二氮杂萘酮结构的新型二  相似文献   

18.
1 Introduction High performance polymers have received con-siderable attention over the past decade owing to their increased demands as replacements for metals or  相似文献   

19.
在无水三氯化铝(AlCl3)和N,N-二甲基乙酰胺(DMAc)存在下,以1,2-二氯乙烷(DCE)为溶剂,1,3-二(4-氯甲酰基苯甲酰基)苯(DMBC)分别与4,4′-二苯氧基二苯砜(DPODPS)、1,3-二(4-苯氧基苯甲酰基)苯(i-DPOPKK)、1,4-二(4-苯氧基苯甲酰基)苯(p-DPOPKK)进行低温溶液共缩聚反应,合成了3种主链含多羰基结构单元的聚芳醚酮聚合物.用FT-IR1、H-NMR、DSC、TGA、WAXD等技术对聚合物进行结构和性能表征.结果表明:增加聚合物主链中羰基的含量可提高其耐热等级;同时,由于聚合物中羰基比例的增大,其聚集态晶体结构也产生相应的变化,较易产生多晶型.  相似文献   

20.
tert-Butyl substituted poly (aryl ether ketone)s with relatively high molecular weights were prepared by the Ni-catalyzed polymerization of tert-butyl substituted aromatic dichlorides containing ether ketone unit. These polymers were amorphous and soluble in common organic solvents, such as THF, dichloromethane, and chloroform. De-tert-butylation of the polymer by the treatment of trifluoromethanesulfonic acid in the presence of toluene proceeded smoothly and produced crystalline poly (aryl ether ketone). © 1994 John Wiley & Sons, Inc.  相似文献   

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