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1.
应用偏光显微镜、扫描电子显微镜及蚀刻的方法,研究了聚苯硫醚及其与聚砜共混物的结晶形态与织构。结果表明,经固相空气热处理的聚苯硫醚,其本体与表面区域的结晶形态有显著的不同;蚀刻择优发生于球晶的晶界上;随着聚砜组份的增加,共混物的织构从聚苯硫醚为连续相逐渐转变为聚砜为连续相,聚苯硫醚的球晶形态也逐渐变得不规整。  相似文献   

2.
聚苯硫醚及其聚醚砜共混物结晶动力学的研究   总被引:1,自引:0,他引:1  
本文采用DSC方法,研究了聚苯硫醚及其聚醚砜共混物的等温结晶动力学。结果表明,经α-氯代萘处理后的聚苯硫醚原粉结晶速率常数有明显提高;聚苯硫醚/聚醚砜共混物的Avrami指数较纯聚苯硫醚低,共混物的结晶速率常数随共混组成变化出现最低值;共混物存在明显的二次结晶现象,t_(?)与t_(max)之间存在线性关系。  相似文献   

3.
使用扫描电镜和化学蚀刻的方法研究了聚丙烯(PP)和聚对苯二甲酸乙二酯(PET)共混物(PP:PET:9:1)在不同温度结晶时的形态结构,并与在相应条件下结晶的纯PP样品作比较。结果表明:(1)纯PP在0℃结晶时没有观察到明显的球晶,部分区域呈树枝晶,在30℃以上结晶时呈三类不同形态球晶;在0—140℃范围结晶的PP—PET共混物中都没有观察到第三类球晶和树枝晶。(2)在0—140℃温度下结晶的共混物中两组份互不相溶,PET都是以直径为1—5μ的小球分散在PP连续相的球晶内和球晶之间;PET的加入使PP球晶的尺寸比在相应条件结晶的纯PP球晶小,同时球晶的大小也随结晶温度降低而变小;PET小球与PP连续相之间存在着易受蚀刻的界面层。  相似文献   

4.
研究了以5-降冰片烯-2,3-二羧酸单甲酯为端基的PMR型聚酰亚胺(POI)作为界面介质对部分相容的聚醚砜/聚苯硫醚(PES/PPS)、聚醚醚酮/聚醚砜(PEEK/PES)共混体系的界面性质、形态结构及结晶行为的影响.结果表明,POI可以有效地增强两相间的界面粘结,显著降低PPS/PES共混物中PPS分散区的尺寸,改善两组分间的相容性.在熔融共混过程中,POI从本体向界面扩散并同PPS,PES产生交联和/或接枝,POI同PPS的反应活性远高于PES,但POI与PES发生反应.POI是PPS结晶的有效成核剂.  相似文献   

5.
从注射制品形态控制和结构表征的角度探讨高分子材料加工-形态-性能之间的关系.研究中采用动态保压成型方法来制备注射样品,在注射成型过程中引入剪切应力场的作用,制得的样品表现出明显的多层次结构,从外向里分别为皮层、剪切层、芯层,表现出不同的相形态、结晶形貌以及取向行为.研究发现,剪切应力对聚烯烃的形态发展和结构变化具有重要影响.在剪切应力的作用下,聚烯烃共混物中分散相会发生变形、取向,从而导致共混物的相转变点发生移动;结晶形态从球晶转变为shish-kebab结构;聚烯烃共混物在高剪切应力下相容,低剪切下发生相分离;HDPE/PP共混物的注射制品中出现附生结晶等现象.  相似文献   

6.
聚酰胺/聚醚砜共混物双连续相的形成*卜文胜曾继军何嘉松**(中国科学院化学研究所工程塑料国家重点实验室北京100080)关键词共混物,两相共连续两相共连续指组成二元不相容聚合物共混物的两相完全连续,是一种特殊的形态结构。这种结构对共混物的物理机械性能...  相似文献   

7.
本文通过研究含氯侧基液晶聚芳醚酮/含甲基苯侧基聚芳醚酮共混体系(结晶/非晶)环带球晶的形态演变和发展过程; 利用选择性溶剂刻蚀方法确定共混体系环带球晶的相组成和相结构, 探讨了环带球晶的形成机理.  相似文献   

8.
聚乳酸/羧基化聚丙烯共混物的形态与热性能研究   总被引:1,自引:0,他引:1  
以扫描电子显微镜、热重分析仪、差示扫描量热仪、热台偏光显微镜分别研究了聚乳酸/羧基化聚丙烯共混体系的相形态、热性能和结晶形态.结果显示,共混物熔体冷却时,聚乳酸和羧基化聚丙烯均形成球晶,但羧基化聚丙烯球晶较大而十字消光较暗,聚乳酸球晶尺寸较小而十字消光较亮,且聚乳酸球晶产生规则的、不连续的同心环线——裂纹,裂纹厚度约为1~2μm,且裂纹内部有微纤存在.当聚乳酸含量≤50%时,由于聚丙烯上羧基的存在而使共混体系具有较好的相容性.共混物的热分解过程分为三个阶段,热分解温度的变化是聚丙烯上的羧基、聚乳酸和聚丙烯骨架分解三种机制共同作用的结果,少量聚乳酸能够明显提高共混物中聚丙烯上羧基的热稳定性.共混物中的羧基化聚丙烯组分可以发挥稀释剂的作用,大幅度降低了聚乳酸的冷结晶温度.聚乳酸含量≥50%时,共混熔体降温时DSC谱图中聚乳酸和羧基化聚丙烯分别结晶,而聚乳酸含量<50%时,只观察到羧基化聚丙烯的结晶行为.  相似文献   

9.
通过溶液共混法制备了不同重量比的相对分子质量为10000g/mol(10k)和200000g/mol(200k)的聚环氧乙烷(PEO)的共混物,并利用偏光显微镜(POM)、广角X光衍射(XRD)、原子力显微镜(AFM)研究了PEO及其共混物的冷结晶现象。结果表明,PEO共混物在冷结晶的过程中,偏光显微镜图中同一球晶的内外部分亮度不同,即形成内外双折射明显的球晶,研究发现这种现象并不是因为晶型变化引起的,推断是由于共混物在淬冷后升温至20℃的过程中就开始结晶,低温形成的片晶较薄,在20℃等温结晶时形成的片晶较厚,厚度的差别导致了双折射现象。共混物中分子量为200k的PEO提供了结晶成核点,10kPEO起到了溶剂化作用,有利于晶体的成核与生长,所以共混物中大球晶出现的比例比纯物质高。而且随着共混物中10kPEO含量的增加,升温过程中样品结晶的比例增大,球晶中暗处的半径增大。  相似文献   

10.
尼龙6,6(PA_(6,6)及其共混物结晶性能的研究   总被引:3,自引:0,他引:3  
<正> 尼龙6,6(PA_(6,6))是一种典型的结晶性工程塑料,被广泛应用于纺织、机械制造等行业,但其加工温度范围较窄,耐热性差。聚醚砜(PES)具有较高的玻璃化转变温度,是非晶聚合物,可以诱发某些结晶聚合物结晶。PES与PA_(6,6)共混体系的研究报道较少,本文用熔融法将PES与PA_(6,6)制成共混物,企图改善PA_(6,6)的结晶性,以提高其耐热性,取得了较理想的结果。  相似文献   

11.
Thermal and dynamic mechanical properties of PES/PPS blends   总被引:1,自引:0,他引:1  
Blends of poly(ether-sulfone) (PES) and poly(phenylene sulfide) (PPS) with various compositions were prepared using an internal mixer at 290°C and 50 rpm for 10 min. The thermal and dynamic mechanical properties of PES/PPS blends have been investigated by means of DSC and DMA. The blends showed two glass transition temperatures corresponding to PPS-rich and PES-rich phases. Both of them decreased obviously for the blends with PES matrix. On the other hand, Tg of PPS and PES phase decreased a little when PPS is the continuous phase. In the blends quenched from molten state the cold crystallization temperature of PPS was detected in the blends of PES/PPS with mass ratio 50/50 and 60/40. The melting point, crystallization temperature and the crystallinity of blended PPS were nearly unaffected when the mass ratio of PES was less than 60%, however, when the amount of PES is over 60% in the blends, the crystallization of PPS chains was hindered. The thermal and the dynamic mechanical properties of the PPS/PES blends were mainly controlled by the continued phase. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

12.
采用光学显微镜、光散射和扫描电镜等技术对聚醚砜(PES)/环氧树脂/二(2,6-二甲基苯胺基)甲烷体系的相分离过程进行了研究. 实验结果表明在该体系的相分离的演化过程中存在着明显的慢动态相的粘弹性效应, 同时对于PES含量较低的体系(PES-13.2 wt%和15.9 wt%), 在120和140 ℃固化时均观察到二次相分离现象, 而PES含量较高的体系(PES-18.5 wt%), 在同样温度下固化时仅观察到一次相分离过程.  相似文献   

13.
Dynamic rheological measurements were carried out on blends of poly(ether ether ketone) (PEEK)/poly(aryl ether sulfone) (PES) in the melt state in the oscillatory shear mode. The data were analyzed for the fundamental rheological behavior to yield insight into the microstructure of PEEK/PES blends. A variation of complex viscosity with composition exhibited positive–negative deviations from the log‐additivity rule and was typical for a continuous‐discrete type of morphology with weak interaction among droplets. The point of transition showed that phase inversion takes place at composition with a 0.6 weight fraction of PEEK, which agreed with the actual morphology of these blends observed by scanning electron microscopy. Activation energy for flow, for blend compositions followed additive behavior, which indicated that PEEK/PES blends may have had some compatibility in the melt. Variation of the elastic modulus (G′) with composition showed a trend similar to that observed for complex viscosity. A three‐zone model used for understanding the dynamic moduli behavior of polymers demonstrated that PEEK follows plateau‐zone behavior, whereas PES exhibits only terminal‐zone behavior in the frequency range studied. The blends of these two polymers showed an intermediate behavior, and the crossover frequency shifted to the low‐frequency region as the PEEK content in PES increased. This revealed the shift of terminal‐zone behavior to low frequency with an increased PEEK percentage in the blend. Variation of relaxation time with composition suggested that slow relaxation of PEEK retards the relaxation process of PES as the PEEK concentration in the blend is increased because of the partial miscibility of the blend, which affects the constraint release process of pure components in the blend. A temperature‐independent correlation observed in the log–log plots of G′ versus loss modulus (G″) for different blend systems fulfilled the necessary condition for their rheological simplicity. Further, the composition‐dependent correlations of PEEK/PES blends observed in a log–log plot of G′ versus G″ showed that the blends are either partially miscible or immiscible and form a discrete‐continuous phase morphology. © 2004 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 42: 1548–1563, 2004  相似文献   

14.
In this study, styrene–maleic anhydride (SMA) copolymer was modified by ring opening reaction of its anhydride groups with diethanolamine (DEA). The modified SMA copolymer was blended in different concentrations (2.5, 4 and 5.5 %) with Polyethersulfone (PES) to improve the hydrophilicity of PES membranes and the corresponding blend membrane was prepared through phase inversion. The influence of SMA copolymer on morphology, mechanical properties, water flux, rejection and anti-fouling properties of blend membrane were investigated. The modified SMA and their composition were confirmed by FT-IR and 1HNMR techniques. The asymmetric structure of membrane was revealed by SEM. The water flux and contact angle results show that the hydrophilicity of membrane surface was increased by addition of SMA copolymer. The better anti-fouling properties of the PES/modified SMA blend membranes in comparison with the PES membrane also confirmed that the hydrophilicity of blend membrane enhances.  相似文献   

15.
Poly(phenylene sulfide) (PPS)/poly(butylene terephthalate) (PBT) (60/40 w/w) blend nanocomposites (PPS/PBTs) were prepared by direct melt compounding of PPS, PBT, and organoclay. The morphology and rheology of PPS/PBTs were investigated using scanning electron microscope and transmission electron microscope as well as parallel plate rheometer. The intercalated clay tactoids are selectively located in the continuous PBT phase due to their nice affinity. A novel morphology evolution of the immiscible blend matrices is observed with increase of clay loadings. Small addition of clay increases the discrete PPS spherulite domain size. With increasing loading levels, the PPS phase transform to the fibrous structure and finally, to the partial laminar structure at the high loading levels, in which shows a characteristic of large‐scaled phase separation. The presence of clay, however, does not impede the coalescence of the PPS phase because the phase size increases with increasing clay loadings. The elasticity and blend ratio of two matrices are proposed as the important roles on the morphological evolution. Moreover, the laminar structure of PPS phase is very sensitive to the steady shear flow and is easy to be broken down to spherulite droplet at the low shear rate. However, high shear level is likely to facilitate the coalescence of those PPS phase and finally to phase inversion, both contributing to increases of the dynamic modulus after steady shear flow. In conclusion, the morphology of the immiscible polymer blend nanocomposites depends strongly on both the clay loadings and shear history. © 2008 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 46: 1265–1279, 2008  相似文献   

16.
应用耗散粒子动力学(DPD)模拟方法研究了PA6/PPS共混物的介观形貌及动力学演变过程.详细分析了不同比例下PA6/PPS共混物的介观形貌、密度、扩散系数以及界面张力等变化情况,同时还考察了不同剪切速率对体系介观形貌的影响.结果表明,PA6/PPS共混物中随PA6含量的增加,PA6的介观形貌依次出现球状、柱状、层状以及连续相等结构,PA6的扩散系数大于PPS,说明PA6的加入可以改善共混物的加工流动性,这与文献报道的实验结果相一致.同时剪切速率的大小对PA6/PPS体系形貌有着重要影响.  相似文献   

17.
To improve surface protein-adsorption-resistant property of polyethersulfone (PES) membranes, soybean phosphatidylcholine (SPC) was added to PES casting solution. The blend membranes were prepared by a phase inversion method in a wet process. The surface of PES/SPC blend membranes was characterized by X-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM). XPS data revealed that the phosphorylcholine (PC) groups were concentrated at the surface by changing the composition of coagulation bath. Addition of N,N-dimethylformamide (DMF) in coagulation bath could prolong coagulation time and facilitate the migration of SPC from polymer bulk to membrane surface. The PES/SPC blend membranes dramatically reduced BSA and fibrinogen adsorption compared to PES control membrane due to effective immobilization of PC groups at the surface of PES/SPC blend membranes.  相似文献   

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