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1.
阎寿科  林健 《应用化学》1993,10(5):81-83
附生结晶(epitaxy)是指结晶物质在结晶基质上的取向成核和生长。聚合物-聚合物的附生结晶揭示了聚合物间新的结构关系,在高分子物理领域引起了极大兴趣和广泛关注。根据结构关系,聚合物附生结晶主要分为两类,即均相附生结晶(homoepitaxy)和异相附生结晶(het-eroepitaxy)。在异相附生体系中,大多数研究工作集中在全同立构聚丙烯(iPP)与一些锯齿链  相似文献   

2.
LLDPE/IPP共混物高取向薄膜的附生结晶   总被引:1,自引:0,他引:1  
本文用透射电子显微术、电子衍射等方法研究了线性低密度聚乙烯(LLDPE)和等规聚丙烯(IPP)共混物高取向薄膜的形态结构.在熔体拉伸薄膜中统组分的LLDPE与IPP均以高取向的片晶形式存在,片晶生长方向垂直手拉伸方向.当共混物中LLDPE含量较低(小于40%)时,作为分散相的LLDPE在IPP上附生结晶.两种片晶的c轴成45°交角,附生结晶的接触面为LLDPE的(100)和IPP的(010).而在LLDPE含量大于50%时,LLDPE形成独立的相区,则不存在附生结晶现象,结果两种片晶的生长方向均垂直于拉伸方向.在135℃热处理15min,然后自然冷却的LLDPE/IPP共混物薄膜中,当LLDPE含量≤50%时,LLDPE仍然在IPP上附生生长,二者的结构关系与热处理前的相同.  相似文献   

3.
热处理对HDPE/iPP共混物中附生结晶的影响   总被引:1,自引:1,他引:1  
申宇  杨德才 《应用化学》1990,7(3):33-38
木工作用透射电子显微术研究不同热处理温度对HDPE/iPP共混物溶液浇铸薄膜中附生结晶的影响。经热处理的共混物薄膜HDPE片晶尺寸明显增加,但其长轴仍与iPP成约50°夹角。电子衍射和暗场的实验结果及样品倾斜技术的利用证明了在iPP的两种结构区域中HDPE均在iPP上异相附生生长,两者的接触面为iPP的(010)和HDPE的(100)。在194℃热处理20min,然后自然冷却的HDPE/iPP共混物薄膜中的HDPE仍然在iPP上附生生长。  相似文献   

4.
张杰  阮杰  闫寿科 《高分子学报》2017,(9):1524-1530
利用电子显微镜结合电子衍射研究了左旋聚乳酸/聚(ε-己内酯)(PLLA/PCL)共混物在取向聚乙烯(PE)基底上的结晶行为.纯PLLA在取向PE基底上能够附生结晶,主要形成分子链相互垂直的片晶结构.PCL在PE基质上也能发生附生结晶,导致两者分子链平行.PLLA/PCL共混物在取向PE基底上结晶的形态结构依赖于共混组成.在PLLA含量大于95 wt%时,PCL不影响PLLA与PE的附生结晶行为.当PCL含量增加至10 wt%时,PLLA在PE上的附生结晶行为受到了一定程度的影响.当PCL含量超过40 wt%时,PLLA在PE上的附生结晶被抑制,取而代之是PCL在PE取向基质上附生结晶,产生两者分子链平行的取向片晶.另外,在PLLA含量在50 wt%~30 wt%之间时,体系产生明显的微相分离,微相分离并不影响PCL与PE的附生结晶,在PCL的富集区仍然发生平行链附生结晶,而PLLA的富集区结构变得模糊.当PLLA含量少于20 wt%时,微相分离不明显,少量PLLA应该分散在PCL片晶间的非晶区.  相似文献   

5.
HDPE/iPP共混物中的附生结晶   总被引:1,自引:0,他引:1  
本文用透射电子显微术、电子衍射和重金属投影等方法研究了溶液浇铸的HDPE/iPP共混物超薄膜中奇特的结晶形态,这种奇特的结晶形态是由于HDPE在iPP上异相附生生长造成的,二者的接触面为(010)_(ipp)和(100)_(HDPE),链轴间的夹角为iPP单斜角的一半(约50°),HDPE在iPP的两种结构(十字交叉结构和单晶型结构)区域中的生长方式有很大差别,依据结构分析提出两种片晶附生生长模型。  相似文献   

6.
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   

7.
超临界CO2辅助制备聚苯乙烯/尼龙1010共混物及其结晶形态   总被引:1,自引:0,他引:1  
超临界CO2辅助制备聚苯乙烯/尼龙1010共混物及其结晶形态;超临界CO2;插嵌;共混;尼龙1010;苯乙烯;附生结晶  相似文献   

8.
通过示差扫描量热仪(DSC)对含氟聚合物与聚醚醚酮(PEEK)共混物的非等温结晶熔融行为和等温结晶熔融行为进行了研究.研究表明:不同的含氟聚合物以及具有不同端基的同种含氟聚合物对PEEK的结晶行为有不同的影响.端基为酰氟(COF)的乙烯-四氟乙烯共聚物(ETFE)能促进PEEK结晶时的成核,加快PEEK的等温结晶速率,而聚四氟乙烯(PTFE)则会减慢PEEK的等温结晶速率.  相似文献   

9.
利用配备热台的偏光显微镜(POM)、红外光谱仪(FTIR)和示差扫描量热器(DSC)等实验方法研究了高氯酸锂(LiClO4)与聚氧化乙烯(PEO)之间的络合作用对PEO结晶行为和结晶形态的影响.DSC测试结果表明在LiClO4/PEO二元共混体系中,PEO的熔融温度、结晶温度随着锂盐含量的增加出现先增加后降低的现象;而结晶度则是先不变后降低.FTIR结果表明LiClO4影响聚合物结晶性能的原因是Li+能和PEO中的醚基的络合作用.POM观察结果发现LiClO4/PEO共混体系中存在聚合物的球晶,共混体系中聚合物的球晶生长速率都随着结晶温度的升高而下降,并且球晶生长速率还随着体系中随LiClO4含量的增加而减小.  相似文献   

10.
马来酸酐接枝热塑性弹性体在PP/PA6共混物中的作用   总被引:10,自引:0,他引:10  
研究了马来酸酐接枝热塑性弹性体 (TPEg )作为增容剂对聚丙烯 (PP) 尼龙 6 (PA6 )共混体系的相容性、相态以及物理力学性能的影响 .研究结果表明TPEg的加入大大改善了PP PA6共混体系的相容性 ,且随TPEg含量的增大分散相粒径明显降低 ,共混物的韧性以及延展性大大提高 ,同时拉伸强度及模量仍保持较好的水平 .TPEg增容的PP PA6共混物的非等温结晶行为的研究表明 ,共混物中PP和PA6的结晶行为不同于各自纯的聚合物 ,PA6作为成核剂使PP的结晶温度提高 ;而PA6由于TPEg的加入 ,出现分级结晶现象 ,一级结晶温度略低于纯PA6的结晶温度 ,且随TPEg含量增大结晶受阻 ,二级结晶温度与PP的接近 .由于PP、PA 6以及TPEg之间存在较强的相互作用 ,三元共混物中PP及PA6的玻璃化转变温度分别较其纯聚合物升高 .基于上述结果 ,提出了本共混体系的结构模型  相似文献   

11.
In this article, epitaxial structures have been successfully obtained in the isotactic polypropylene (iPP)/polyethylene (PE) blends by an accessible injection molding methods. By studying a series of iPP/PE blends, the evolution of the epitaxial growth of PE lamellae on the oriented iPP lamellae has been detailedly discussed via wide‐angle X‐ray diffraction, small‐angle X‐ray scattering, scanning electron microscopy and differential scanning calorimetry. Unexpectedly, the exactly epitaxial angles between peculiarly arranged PE lamellae and oriented PP lamellae are all larger than the classical epitaxy theory value of 50°, and it even increases gradually with increasing PP content. It is inferred that the special crystallization of PE is the consequence of joint construction of the oriented PP crystals and the continuous intense shear field provided by pressure vibration injection molding. The epitaxial structures play a positive role in the interfacial connection between two components; thus, the mechanical properties of the blends are improved. This work provides an insight understanding on the formation mechanism of the epitaxy crystallization under shear field. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   

12.
The epitaxial crystallization behavior of high-density polyethylene on the boundary of highly oriented isotactic polypropylene (iPP) substrates has been investigated by means of atomic force microscopy (AFM) and transmission electron microscopy (TEM). The results obtained from AFM and TEM indicate that the epitaxial nucleation of HDPE on the highly oriented iPP substrates occurs earlier than that in the pure HDPE phase, i.e., homogeneous nucleation. Therefore the epitaxially grown HDPE lamellae can grow across the boundary of the iPP substrate into the HDPE spherulitic phase with the epitaxial orientation relationship remaining.  相似文献   

13.
The annealing behavior of amorphous i-PMMA thin films on highly oriented HDPE substrates was studied by transmission infrared spectroscopy and electron diffraction. The i-PMMA thin film on highly oriented HDPE exhibits a much faster crystallization rate than usual, providing not only a good method for the preparation of crystalline i-PMMA thin and ultrathin film, but also the convenience to observe the crystallization process by infrared spectroscopy in situ. The overall crystallization kinetics of the i-PMMA thin film on the highly oriented HDPE layer was also explored in this work, and an Avrami exponent of about 2 was obtained. The accelerated crystallization behavior indicates a special interaction between HDPE and i-PMMA, which favors the nucleation and crystallization of i-PMMA. This special interaction leads also to an oriented alignment of i-PMMA on the HDPE substrate with both polymer chains parallel, i.e., the occurrence of heteroepitaxy, which could be verified by the polarized infrared spectra and electron diffraction pattern. Electron diffraction analysis further demonstrated that the contact planes of this epitaxial system are (100) lattice planes of both polymers. This can be explained in terms of a two-dimensional lattice matching.  相似文献   

14.
he morphology and properties of highly oriented films of blends ofHDPE/ UHMWPE were investigated by electron microscope, DSC and mechnicalproperty measurements. The as-drawn films of HDPE consist of highly oriented lamellar structure.The lamellar growing direchon is vertical to the drawing direction. AddingUHMWPE into HDPE results in formation of fibrous crystals with their fibrousaxis directions parallel to the drawing direction. The number of the fibers in thefilms of the blends increases with the increase of the content of UHMWPE. The presence of ultra - high molecular weight component in as - drawn blends films results in the increase of tensile modulus considerably.  相似文献   

15.
本文采用电子显微镜和小角X-射线散射(SAXS)技术研究了含有串晶结构(Shish—kebab)的高密度聚乙烯(HDPE)/超高分子量聚乙烯(UHMWPE)共混物高取向膜在单轴拉伸过程中的微结构变化.深入探讨了拉伸温度对聚乙烯在形变过程中微结构变化的影响.室温拉伸时,聚乙烯串晶结构主要发生了解结晶过程;高温(115℃)形变时,主要表现为折叠链片晶直接转变为伸展链纤维晶的应变诱导结晶过程.  相似文献   

16.
木工作用透射电子显微术及电子衍射技术研究3种PE(HDPE,LLDPE或LDPE)均聚物高取向薄膜的微结构。定量测定了它们的结晶尺寸。通过倾斜样品电子显微学研究确定了不同种PE纤维结构的对称性。  相似文献   

17.
高密度聚乙烯/超高分子量聚乙烯共混物高取向薄膜形态结构与力学性能的研究张伟广,赵勇,杨德才中国科学院长春应用化学研究所,高分子物理开放实验室,长春,130022)关键词HDPE、UHMWPE、共混物、形态结构、力学性能如何提高高分子材料抗张强度和模量...  相似文献   

18.
Although under normal conditions only the crystallization behavior of PE on oriented iPP substrates can be studied due to the higher melting point of iPP, the faster crystallization rate of a molten, oriented HDPE film compared to a nonoriented iPP layer was used to study the crystallization of iPP on the oriented HDPE film by means of transmission electron microscopy (TEM) and electron diffraction (ED). Besides the known epitaxial relationship of HDPE/iPP with their chains 50° apart, two new orientation relationships with (a) chains of both polymers parallel and (hk0)iPP in contact with the HDPE substrate, and (b) the a‐axis of iPP crystals parallel to the chain direction of HDPE but (001)iPP in contact with the HDPE substrate were observed. Both orientations are assumed as graphoepitaxy. © 1999 John Wiley & Sons, Inc. J Polym Sci B: Polym Phys 37: 1893–1898, 1999  相似文献   

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