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1.
低温等离子体对超高分子聚乙烯纤维表面改性研究   总被引:1,自引:0,他引:1  
介绍了低温等离子放电技术的概念、原理、实施方法及其在超高分子量聚乙烯(UHMWPE)纤维表面改性方面的应用。综述了国内外低温等离子体对UHMWPE纤维表面改性的最新研究成果,阐述了气体等离子体种类、处理功率和处理时间等因素对UHMWPE纤维表面改性效果的影响机理,以及低温等离子设备对UHMWPE纤维表面改性连续化的初步...  相似文献   

2.
聚乙烯-葡萄糖氧化酶膜的制备和性能研究朱如瑾,殷弘浩,刘永盛,黄家湛(成都高分子材料国家重点实验室成都科技大学高分子研究所成都610065)关键词聚乙烯,等离子体,固定化酶,葡萄糖氧化酶固定化酶是60年代发展起来的生物工程技术I‘].酶的固定化方法主...  相似文献   

3.
聚乙烯-葡萄糖氧化酶膜的制备和性能研究   总被引:1,自引:0,他引:1  
聚乙烯-葡萄糖氧化酶膜的制备和性能研究朱如瑾,殷弘浩,刘永盛,黄家湛(成都高分子材料国家重点实验室成都科技大学高分子研究所成都610065)关键词聚乙烯,等离子体,固定化酶,葡萄糖氧化酶固定化酶是60年代发展起来的生物工程技术I‘].酶的固定化方法主...  相似文献   

4.
采用异相氯磺化的方法,使聚乙烯(PE)中空纤维膜进行氯磺化反应,并将反应产物进一步水解和离子交换,可获得具有离子交换功能的磺化聚乙烯(SPE)中空纤维离子交换膜。应用渗透蒸发膜分离方法,研究磺化聚乙烯中空纤维离子交换膜对水/乙二醇混合物的分离效果。讨论了反离子的种类、渗透蒸发分离温度和水/乙二醇混合液的组成等对磺化聚乙烯中空纤维离子交换膜的分离效果的影响。  相似文献   

5.
任煜  张银  王晓娜  臧传锋  张伟 《高分子学报》2016,(10):1439-1446
利用空气介质阻挡放电(DBD)等离子体对超高分子量聚乙烯(UHMWPE)纤维进行表面改性处理研究以提高纤维表面的润湿和粘结性能.分别研究了等离子体处理时间及电压对UHMWPE纤维拉伸断裂强力、接触角、表面形貌、表面化学成分和粘结性能等的影响规律.SEM分析结果表明,空气DBD等离子体处理后UHMWPE纤维表面出现垂直于纤维轴向分布的凹坑和裂纹,使得纤维表面粗糙度显著增加.XPS分析表明空气DBD处理后纤维表面碳元素含量显著下降;同时氧元素和氮元素的含量均较处理前增加,但氧元素含量增加的幅度显著高于氮元素.XPS分峰结果表明等离子体处理后UHMWPE纤维纤维表面C—O/C—N基团含量显著增加,同时出现了C O和O—C O这2种新的含氧官能团.同时,接触角及和与环氧树脂之间的界面剪切力(IFSS)测试结果表明DBD等离子体处理后UHMWPE纤维表面润湿性能和粘结力均产生显著提高,且随着等离子体处理时间或电压的增加,UHMWPE纤维的表面润湿性能和粘结力均呈现先上升后下降的趋势.空气DBD等离子体处理对UHMWPE纤维的力学性能影响较小,当处理电压低于200 V,处理时间小于100 s,纤维强力下降比率小于5.2%.  相似文献   

6.
微波等离子体诱导聚乙烯表面接枝甲基丙烯酸甲酯   总被引:5,自引:0,他引:5  
聚乙烯(PE)通常作为性能优良的薄膜材料被广泛使用,但由于其表面能低,导致表面亲水性差,粘结性弱,染色性能、印刷性能等很不理想[1,2].在高分子材料的各种表面改性方法中,接枝共聚是一种很有效的途径[3~5].本文探讨了用微波冷等离子体激活聚乙烯表面...  相似文献   

7.
超延伸高分子量聚乙烯力学性能的研究王维泮,张凤英(北京化工大学高分子系北京100029)关键词超高分子量聚乙烯,冷拉伸,超延伸,延伸比随着高科技的发展,对材料性能的要求越来越高.目前一些发达国家正在致力于高机能、超强力的塑料.使高分子高度取向是获得高...  相似文献   

8.
高密度聚乙烯/天然橡胶共混体系的流变性能研究方征平,许承威(杭州大学化学系杭州310028)关键词高密度聚乙烯,天然橡胶,共混物,流变,改性用橡胶与聚乙烯共混是提高后者的物理机械性能,尤其是耐环境应力开裂性能(ESCR)的主要方法之一“-“.然而,由...  相似文献   

9.
超高分子量聚乙烯(UHMWPE)纤维具有诸多优异性能,因此被广泛应用于纤维增强复合材料(FRP)。但是由于UHMWPE纤维表面光滑且无极性基团,与树脂基体粘接性差,可通过纤维表面改性有效提高FRP的界面强度,进而提升材料性能。本文总结了近几年基于化学处理、等离子体处理、电晕放电和辐射引发表面接枝等方法对UHMWPE纤维表面改性的研究进展,并对改性方法的发展进行了展望。  相似文献   

10.
本文对木纤维作增强填料填充低密度聚乙烯(LDPE)所获得的生物降解复合材料力学性能进行了研究.分别用四种不同的偶联剂:改性钛酸酯类偶联剂TC-POT、TC-PBT和硅烷类偶联剂γ-(2,3环氧丙氧基)丙基三甲基硅烷(KH-560)、甲基乙烯基硅烷(205-Silane)处理水纤维,经实验发现用改性钛酸酯类偶联剂TC-POT、TC-PBT处理的木纤维对低密度聚乙烯(LDPE)具有较好增强作用,所组成的复合材料具有较好的力学性能.本文也研究了不同偶联刘含量处理木纤维对复合材料力学性能的影响。  相似文献   

11.
In this work, ozone modification method and air‐oxidationwere used for the surface treatment of polyacrylonitrile(PAN)‐based carbon fiber. The surface characteristics of carbon fibers were characterized by XPS. The interfacial properties of carbon fiber‐reinforced (polyetheretherketone) PEEK (CF/PEEK) composites were investigated by means of the single fiber pull‐out tests. As a result, it was found that IFSS (interfacial shear strength) values of the composites with ozone‐treated carbon fiber are increased by 60% compared to that without treatment. XPS results show that ozone treatment increases the amount of carboxyl groups on carbon fiber surface, thus the interfacial adhesion between carbon fiber and PEEK matrix is effectively promoted. The effect of surface treatment of carbon fibers on the tribological properties of CF/PEEKcomposites was comparativelyinvestigated. Experimental results revealed that surface treatment can effectively improve the interfacial adhesion between carbon fiber and PEEK matrix. Thus the wear resistance was significantly improved. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

12.
Interfacial adhesion between the fiber and the matrix in a composite is a primary factor for stress transfer from the matrix to the fiber. In this study, oxygen plasma treatment method was applied to modify the fiber surface for improving interfacial adhesion of aramid fiber‐reinforced poly(phthalazinone ether sulfone ketone) (PPESK) composite. Composite interfacial adhesion properties were determined by interlaminar shear strength (ILSS) using a short‐beam bending test. The composite interfacial adhesion mechanism was discussed by SEM. The changes of chemical composition and wettability for plasma‐treated fiber surfaces stored in air as long as 10 days were investigated by XPS and dynamic contact angle analysis (DCAA), respectively. Results indicated that oxygen plasma treatment was an effective method for improving interfacial adhesion; plasma‐treated fiber surface suffered aging effects during storage in air. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

13.
利用射频感性耦合冷等离子体(ICP)处理技术改性连续纤维表面,分别采用X射线光电子能谱(XPS)、原子力显微镜(AFM)及动态接触角分析(DCA)系统研究了等离子体处理时间、放电气压、放电功率等工艺参数对连续碳纤维、芳纶纤维和对亚苯基苯并二噁唑(PBO)纤维的表面化学成分、表面形貌、表面粗糙度及表面自由能的影响.研究结...  相似文献   

14.
Flax fiber was treated with acetic anhydride or with ethylene plasma to improve adhesion with poly(3-hydroxybutyrate) (PHB). The flax fiber surface became hydrophobic by the surface treatments. The ethylene plasma treated flax fiber has better thermal resistance and shows higher interfacial adhesion strength in flax/PHB biocomposite than the chemically modified flax fiber with acetic anhydride. Optimum conditions of the ethylene plasma treatment were found to be 0.5 cm3/sec of the ethylene flow rate and 50 W of the plasma power with 5 min of the treatment time.  相似文献   

15.
The oxidation-reduction and pre-irradiation induced methods were employed to study the effect of acrylic acid modification on the wetting and adsorption ability of carbon fiber (CF) in epoxy solution and the interfacial properties of CF/epoxy. Systematic experimental work was conducted to determine the surface topography, surface energy, surface chemical composition, absorbability and tensile strength of carbon fibers and interfacial adhesion of CF/epoxy before and after modification. The roughness, surface energy, amount of containing-oxygen functional groups and wetting ability were all found to increase significantly after modifications. The tensile strength of carbon fibers was improved marginally by γ-ray pre-irradiation while was decreased little by oxidation-reduction modification. Consequently, the surface modifications of carbon fibers via both oxidation-reduction and pre-irradiation led to an improvement (more than 15%) of the interlaminar shear strength of CF/epoxy composites. The mechanisms of interfacial improvement of modified CF/epoxy composites are proposed.  相似文献   

16.
提高PBO纤维/环氧树脂复合材料界面结合的研究   总被引:2,自引:0,他引:2  
本文采用表面化学蚀刻与溶胀法结合、化学偶联法与氩气低温等离子体表面处理技术结合的方法对聚苯撑苯并二。唑(PBO)纤维进行表面改性。探讨了不同改性方法对纤维表面性能的影响。同时,采用FTIR和SEM等方法对处理前后纤维表面化学结构及形态进行了表征。  相似文献   

17.
High performance continuous fiber surface modification by inductively coupled RF plasma (ICP) and dielectric barrier discharge (DBD) low temperature plasma were conducted. X-ray photoelectron spectroscopy (XPS) and other analytical testing methods systematically studied plasma treatment time, discharge power, discharge pressure, etc, on fiber surface state, surface composition, and surface shape changes in the appearance and wetting properties. The results show that after plasma treatment the surface of the fiber is grafted with a large number of polar functional groups such as carboxyl groups and hydroxyl groups. The surface roughness increases, the surface free energy increases, and the fiber wetting property is significantly improved, resulting in improvement in interlaminar shear strength (ILSS) between the fiber and the resin matrix. Finally, the surfaces of the fibers and its relationship with interfacial properties of fiber reinforced bismaleimide composites are also discussed.  相似文献   

18.
The interface of fibrous composites is a key factor to the whole properties of the composites. In this study, the effects of air dielectric barrier discharge (DBD) plasma discharge power density on surface properties of poly(p‐phenylene benzobisoxazole) (PBO) fiber and the interfacial adhesion of PBO fiber reinforced poly(phthalazinone ether sulfone ketone) (PPESK) composite were investigated by several characterization methods, including XPS, SEM, signal fiber tensile strength, interlaminar shear strength, and water absorption. After the air DBD plasma treatment at a power density of 41.4 W/cm3, XPS analysis showed that some polar functional groups were introduced on the PBO fiber surface, especially the emergence of a new oxygen‐containing group (?O–C = O group). SEM observations revealed that the air DBD plasma treatment had a great influence on surface morphologies of the PBO fiber, while the signal fiber tensile strength results showed only a small decline of 5.9% for the plasma‐treated fiber. Meanwhile, interlaminar shear strength value of PBO/PPESK composite was increased to 44.71 MPa by 34.5% and water absorption of the composite decreased from 0.46% for the untreated specimen to 0.27%. The results showed that the air DBD plasma treatment can effectively improve the properties of the PBO fiber surface and the PBO/PPESK composite interface. Results obtained from the above analyses also showed that both the fiber surface and the composite interface performance would be reduced when an undue plasma discharge power density was applied. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

19.
选用形状记忆聚氨酯(SMPU)和正硅酸乙酯(TEOS)为前驱体,固体酸对甲基苯磺酸(PTSA)为催化剂,利用空气中的水分为水解水源,通过溶胶-凝胶法原位制备了形状记忆聚氨酯与二氧化硅( SMPU-SiO2)杂化材料,并将杂化材料应用于芳纶纤维增强的柔性复合材料中,以期改善芳纶纤维与基体的界面性能.同时,针对芳纶纤维表面...  相似文献   

20.
Mitigated membrane fouling in an SMBR by surface modification   总被引:1,自引:0,他引:1  
Fouling is a major obstacle in membrane processes applied in membrane bioreactor. To improve the antifouling characteristics of polypropylene hollow fiber microporous membranes (PPHFMMs) in a submerged membrane bioreactor (SMBR), the PPHFMMs were surface modified by NH3, CO2 plasma treatment, photoinduced graft polymerization of acrylamide and acrylic acid. The structural and morphological changes on the membrane surface were characterized by X-ray photoelectron spectroscopy (XPS), attenuated total reflection-Fourier transform infrared spectroscopy (FT-IR/ATR) and field emission scanning electron microscopy (FE-SEM). The change of surface wettability was monitored by contact angle measurements. The results of XPS and FT-IR/ATR clearly indicated the successful modification on the membrane surface. The static water contact angle of the modified membrane reduced obviously. The antifouling characteristics of the modified membranes in an SMBR were evaluated. The modified membranes showed better filtration performances in the submerged membrane bioreactor than the unmodified one, and the acrylic acid-grafted membrane presented the best antifouling characteristics. The results demonstrated that (1) the surface carboxyl-containing membranes were better than the surface amido-containing membranes; (2) surface-grafted membranes were better than the plasma-treated membranes.  相似文献   

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