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1、Study on Phenolphthalein Poly(ether sulfone)-Modified Cyanate Ester Resin and Epoxy Resin Blends 关于酚酞聚醚砜改性氰酸酯树脂和环氧树脂混合物的研究In this work,the phenolphthalein poly(ether sulfone)(PES-C)-modified cyanate ester(CE)and epoxy(EP)blends were prepared.在本文中,制备了用酚酞聚醚砜(PES-C)改性的氰酸酯树脂(CE)和环氧树脂(EP)的混合物。This work m
2、ainly discusses the curing behaviors,fracture toughness,dynamic mechanical properties,and thermal and mechanical properties of the blends.主要探讨了体系的固化行为,断裂韧性,动态机械性能,以及其热的和机械韧性。The Fourier transform infrared and differential scanning calorimetric analyses are used to confirm the curing behaviors,demons
3、trating that the main reaction pathways are not varied with the addition of PES-C,but the reaction rate could be evidently accelerated.用傅里叶红外光谱仪和差示扫描量热仪来确定体系的固化行为,证明主要反应的途径不会随着 PES-C的增加而变化,但是反应速度会明显地改变。The fracture morphologies of the blends are observed by Scanning electron microscope(SEM)and the f
4、racture causes of the failed surface are also analyzed.用 SEM来分析混合物的断口形貌和有缺陷表面的断裂原因。With the addition of PES-C,the modified blends display higher fracture toughness(KIc)and impact strength when compared with neat CE.随着 PES-C的增加,与纯 CE比较,改性混合物展示出了更高的断裂韧性(KIc)和冲击强度。Domain sizes of the blends first incre
5、ase then decrease with the addition of PES-C.随着 PES-C含量的增加,晶体大小也会随之增加。The results of dynamic mechanical analysis and thermogravimetric anal-ysis show that the Tg,storage modulus,and thermal sta-bility of the crosslink network slightly decreases with the addition of PES-C.根据 DMA,TG 的测试结果,随着PES-C的增加,混
6、合物的 Tg,储能模量以及热稳定性可以明显地增加。The mechanical strength of blends with the addition of PES-C is far better than that of the blends without PES-C both at ambient temperature and elevated temperature.在室温和高温下,含有PES-C混合物的机械性能都远远高与不含改性物混合物的。POLYM.ENG.SCI.,55:2591 2602,2015.VC 2015 Society of Plastics Engineers
7、INTRODUCTION 简介Cyanate ester resins(CE,Tg:255 262C)are recently used as matrices for high-performance composites and as adhesive materials for advanced random structures in aerospace field because of their high-temperature resistance,good dielectric properties,outstanding mechanical properties,and l
8、ow-volume shrinkage 1,2.氰酸酯树脂(CE,Tg,255-262)近年来因为它的高温稳定性、好的介电性能、杰出的机械特性和低的体积收缩率,被用作高性能复合材料的基体和航空领域先进结构的粘结剂。The excellent properties arise from the special crosslink ring structure of cured CE.这些杰出性能和CE 固化物中的特殊交联环状结构有关。A practical disadvantage of the highly crosslinked materials is poor resistance to
9、 crack propagation.这种高交联材料的实际缺点是在裂纹扩展时的低抵抗性。These materials cannot be used for damage-tolerant applications and need to be suitably modified before serving structural functions.这些材料不能用于损伤容限应用或者需要在使用前对其结构功能进行适当的改性。Several methods have been proposed to modify the CE resins 3 6.多种方法被用来改性CE树脂。The most c
10、ommon method is to incorporate rubber into CE resins.最常用的方式是向CE树脂中添加橡胶。Various reactive-functionalized butadiene acrylonitrile rubbers like carboxyl-terminated butadiene acrylonitrile and amine-terminated butadiene acrylonitrile were widely used for CE resins,which are advantageous to improve the to
11、ughness due to the dispersed rubber particles as a result of phase separation on curing 7 10.各种活性的丁二烯丙烯腈橡胶像端羧基丁二烯丙烯腈橡胶和端氨基丁二烯丙烯腈橡胶被广泛地用于CE树脂,由于在相固化的过程中分散橡胶颗粒的形成,使得加入的橡胶可以提高体系的韧性。Even though rubber toughening is effective in CE,it significantly decreases modulus and thermal stability of CE matrix and
12、 limits scopes of the application of modified CE resin at elevated temperature 11.尽管橡胶增韧对于CE是很有效的,它大幅度地提高了CE基体的模量和热稳定性,但是也限制了 CE树脂在高温下的使用范围。Additionally,epoxy(EP)resins are also used to modify CE resins for matrix of high-performance composites and adhesives applications 12.此外,环氧树脂(EP)也被用来 CE树脂基体的高性
13、能复合材料和粘结应用来改性。Grenier-Loustalot and Lartigau 13 found that the initial reaction temperature of CE and EP co-curing was lower than that of neat CE.Grenier-Loustalot 和 Lartigau 13 发现 CE和EP共固化的初始反应温度比纯CE的低。Qi et al.14 have reported that the mechanical properties of EP-modified CE networks are improved.
14、Qi et al.14发现 EP改性后的 CE的机械性能会提高。Although the addition of EP can improve the processability and impact strength of CE,they are still deficient in toughness.尽管随着 EP的增加,可以提高CE的加工性能和冲击强度,但其在韧性上仍显不足。Meanwhile,the thermal properties of CE matrix are also influenced.并且,CE基体的热稳定性仍然被影响了。To get improved tough
15、ness without losing thermal and mechanical properties of CE resins,high-performance thermo-plastics are often used.为了在提高 CE树脂的韧性的同时不损失其热学和机械特性,高性能的热塑性塑料被用来改性CE。The advantage of thermoplastic is that the mechanical and thermal properties of CE resin may be most retained even after blending 15.使用热塑性塑料
16、的优点是就算在混合后CE树脂的机械和热学性能也能被保留。The high-performance thermoplastics such as polysulfone(Tg:190 2008C)and poly(ether imide)(Tg:2152278C)are usually used 16 19.通常用的高性能热塑性树脂有PSF(Tg:190-200)和 PEI(Tg:215-227)。However the toughened CE networks by the above manners would still suffer the setback in use tempera
17、ture.然而,通过上述方法增韧过的CE体系依然存在使用温度的限制。Hence,it is most interesting to research the addition of a suitable thermoplastic which must have high Tg corresponding to neat CE and good fracture toughness to the uncured CE 20.因此,寻找一种合适的热塑性材料,使得其与纯 CE树脂的 Tg 相一致,并且使固化CE树脂的断裂韧性更好,就变得很重要了。Phenolphthalein-based poly
18、(ether sulfone)(PES-C)has drawn increasing attention because of its excellent thermal stability(Tg=262C)and good fracture toughness.酚酞基 PES-C以其杰出的热稳定性(Tg=262)和高的断裂韧性受到越来越多的重视。Srinivasan and McGrath21,22 reported that CE networks can be effectively toughened by introducing PES-C.Srinivasan and McGrat
19、h21,22 报道用 PES-C可以有效地增韧CE树脂体系。In their researches,the blends exhibited enhanced toughness depending on the formation of microphase-separated structure.在他们的研究中,因为宏观相分离结构的形成,混合物展示出了很好的韧性。Toughened multiphase networks of CE and PES-C were generated without sacrificing the Tg of polycyanurate;however,th
20、e cured blends needed to undergo a process at 2508C.CE 和 PES-C增韧多相体系的形成没有以聚氰酸酯的Tg 为代价;然而,混合体系需要在250下才能固化。They reported that the Tg of PES-C-modified CE is about 2608C and that the maximum value of fracture toughness(KIc)is 2.0(M N m23/2).他们报道 PES-C改性 CE的 Tg 大约为 260,并且其断裂韧性(KIc)达到了最大值 2.0(M N m-3/2)。
21、However,the above-modified blends show a negative impact on processability because of rigor cure temperature,and the fields of application were limited.Meanwhile,the toughness effect of single PES-C-modified CE was deficient.然而,因为严苛的固化温度,上述改性混合物的加工性能不是很好,并且其应用领域也得到了限制。同时,只用PES-C改性的 CE的韧性尚有不足。The abo
22、ve questions led us to investigate the feasibility of tailoring methods to improve the rigor cure conditions and further satisfied requirements in manufacturing,the premise being that the thermal stability and strength are not substantially deteriorated and that the toughness is further increased.上述
23、的问题引导我们探索另外的方法来提高严苛的固化条件和在工业生产中更好的需求品。这个的前提是体系的热稳定性和强度不会大幅下降和其韧性可以大幅度提高。It was well known that the polyether chains of EP introduced into CE can improve the ability of plastic deformation in crosslink network and enhance toughness of CE resins.我们都知道在 CE中加入 EP聚醚链可以提高交联结构的塑性应变和CE树脂的韧性。This study is de
24、voted to developing hybrid composites of CE/EP modified with PES-C for decreasing the postcured temperature of CE resins and further enhancing toughness.这个理论被用来发展PES-C改性的CE/EP混杂复合材料,可以降低CE树脂的后固化温度以及大幅度提高其韧性。Consequently,it is aimed to develop a high-performance material for the aerospace structural
25、applications under the continuous high temperature(200 2508C).因此,现在的目的是发展一种能在持续高温下(200-250)航天结构应用的高性能材料。The prime objective of this investigation is to find out the effect of content of PES-C on cure behavior,morphology,toughness,and thermal mechanical properties of CE/EP blends.本次研究的主要目的就是想找出CE/EP混
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