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1.
合成了不同类型聚醚聚氨酯/环氧树脂(PU/EP)互穿网络聚合物(IPN),通过改变PU中聚乙二醇分子量、3OH/2OH及NCO/OH比值等,研究IPN组份间分子混合程度,采用电镜、动态力学分析及应力应变等测试方法表征。结果表明:聚乙二醇分子量降低及3OH/2OH、NCO/OH比的提高,可使相容性提高,材料力学性能增强。  相似文献   

2.
以ε-己内酯、乙交酯和D,L-丙交酯为单体,丙三醇为起始剂,辛酸亚锡为催化剂,合成了不同分子量的聚酯三元醇。随后将合成的聚酯三元醇引入到聚氨酯(PU)体系中,得到聚氨酯骨胶黏剂。利用核磁共振氢谱和红外光谱表征了聚酯三元醇和聚氨酯胶黏剂的结构。用扫描电子显微镜、万能拉力试验机、差示扫描量热分析仪及恒温震荡箱等研究了不同分子量聚酯三元醇及填料的加入对胶黏剂表面形貌、压缩性能、玻璃化转变温度(T_g)、黏接强度及降解性能的影响。结果表明:含有理论数均分子量为400的聚酯三元醇并添加填料的聚氨酯胶黏剂(PU-6C400-F)显示出较好的综合性能,黏接强度为0.93 MPa,压缩强度与模量分别为12.5 MPa与128.0 MPa,该体系有望取代聚甲基丙烯酸甲酯(PMMA)作为骨胶黏剂使用。  相似文献   

3.
采用"碱-酸-碱"合成工艺,在各阶段将OMMT(有机蒙脱土)投入反应体系,制备有机蒙脱土改性脲醛树脂胶黏剂,测试胶黏剂的各项性能,用XRD(X射线衍射仪)、FTIR(傅里叶变换红外光谱)、SEM(扫描电镜)、TG(热重分析)对改性胶黏剂结构进行表征.实验结果表明,随着OMMT的加入,胶黏剂的游离甲醛含量降低,胶合强度增加.第一阶段投入OMMT,降醛效果明显,第二阶段投入OMMT,补强效果明显.SEM图显示,改性胶黏剂中被剥离成片层状的OMMT因受基体的包覆或挤压,呈现出蜷曲的形状;XRD图谱显示,OMMT/UF胶黏剂的结晶度低于UF胶黏剂的结晶度,有机蒙脱土的加入,破坏了脲醛树脂中羰基和氨基的规整性排列;FTIR图谱表明,改性脲醛树脂胶黏剂中存在大量游离的尿素,胶黏剂的游离甲醛含量低;TG分析得出,改性胶黏剂的TG曲线移向高温方向,材料的热分解温度提高.  相似文献   

4.
聚氨酯/聚甲基丙烯酸甲酯互穿聚合物网络的研究   总被引:2,自引:0,他引:2  
本文对(蓖麻油-聚乙二醇)聚氨酯/聚甲基丙烯酸甲酯(PU/PMMA)互穿聚合物网络(IPN)体系进行了研究.实验结果表明:IPN的力学性能受网络化学构型控制.在PU/PMMA为25/75时,应力-应变曲线出现屈服点,产生类似皮革行为,并在此点抗张强度最高,表现明显的协同效应.动态力学性能及电镜均证明该体系相分离十分严重,通过加入扩链剂及网间交联剂能显著改善两组分相容性,其中网间交联剂效果最好。  相似文献   

5.
赖欣  侯毅  李玉宝  黄敏  任欣  张利 《无机化学学报》2017,33(8):1403-1410
分别以2,2-双羟基丙酸(DMPA)和N-甲基二乙醇胺(MDEA)作扩链剂,采用自乳化法成功制备出带有正、负电荷的阳、阴离子聚氨酯/羟基磷灰石(PU/HA)微球,并考察HA的复合比例对微球形貌、理化性能的影响。在此基础上,通过微球间的静电作用力,将制备出的阴、阳离子复合微球自组装形成凝胶体系,并对其力学性能进行探究。SEM、ζ电位和激光粒度结果显示成功制备出具有一定形貌的带电微球,其中当扩链剂含量为15%(n/n)、HA含量为10%(w/w)时,微球形貌较佳且粒度分布均匀;X射线衍射、热分析结果表明,微球确为一定比例的HA与PU复合产物;自组装体系的流变学测试结果表明,微球组装后的产物呈类凝胶状态,具有较高的弹性模量,并有一定的可注射性。同时,骨髓间充质干细胞(BMSCs)可在组装材料表面粘附、铺展,生长良好。  相似文献   

6.
考察了以牛乳清蛋白(BSA)为模型药物,通过相平衡分配法制备载药瓜胶(GG)/聚丙烯酸(PAA)互穿聚合物网络(IPN)水凝胶的工艺条件.借助紫外可见光谱仪研究了载药水凝胶在结肠酶存在下的控制释放行为.结果表明:载药容量(CM)随瓜胶、丙烯酸用量的增加而下降,半IPN水凝胶的Cm较全IPN的略大;结肠酶能明显提高半IPN与全IPN中的BSA释放速率,且提高幅度随GG含量的增加而加快,GG/PAA IPN水凝胶具有结肠定位降解的特性,有望成为靶向结肠给药的理想载体材料.  相似文献   

7.
窦东友  王贵友  胡春圃 《化学学报》2001,59(9):1476-1483
分别以双酚-A型环氧树脂E-51和聚醚型环氧树脂E-46为原料合成了两种二乙胺-环氧树脂和加成多元醇(分别命名为AE-51,AE-46),将其和甲基丙烯酸一起用于合成聚氨酯/接枝乙烯基酯树脂(PU/接枝VER)互穿聚合物网络(IPN),使之在两个网络间形成离子键。实验结果表明,这类新型的IPN材料中两个网络间的互穿程度与相容性进一步提高,从而导致刚性的接枝VER对弹性的PU网络有更好的增强效果。DSC和FTIR的测定结果表明,在含AE-51的IPN中,由于离子键的作用使PU网络硬段的有序结构遭到很大程度的破坏,与AE-51和PU网络中的硬段以及VER网络有较好的相容性有关,因此这类IPN材料具有较好的力学性能。  相似文献   

8.
通过柠檬酸、1,8-辛二醇和多巴胺的一步熔融缩聚反应,以高碘酸钠(NaIO4)作为氧化交联剂,得到含有多巴胺的组织胶黏剂。探索了制备胶黏剂的最佳反应时间和多巴胺的最佳添加量,并利用凝胶渗透色谱(GPC)、红外光谱(FT-IR)、核磁共振氢谱(1 H-NMR)、紫外-可见分光光度法(UV-Vis)和黏结强度测试对胶黏剂的结构和性能进行了表征。结果表明:当反应时间为105min,柠檬酸、1,8-辛二醇和多巴胺的投料的物质的量之比为1.1∶1.0∶0.5时,可以得到黏结强度为99.3kPa的组织胶黏剂,达到商品α-氰基丙烯酸酯医用胶强度的40%。  相似文献   

9.
聚氨酯环氧树脂乳液互穿聚合物网络结构与性能研究   总被引:2,自引:0,他引:2  
分别以聚四氢呋喃(PTMG)和聚己二酸丁二酯(PBA)为聚氨酯(PU)软段,制备了高环氧树脂(EP)含量的PU/EP乳液互穿聚合物网络(LIPN).通过红外光谱,动态力学分析,原子力显微镜等研究了不同类型软段对LIPN结构与性能的影响.结果表明,LIPN结构已经形成,PU与EP间无化学键结合.以PBA为PU软段制备的LIPN中PU与EP相容性更好,分相程度相对低,互穿程度高,导致EP对PBA软段运动的限制作用较强,EP含量的变化对LIPN的玻璃化转变温度影响更大.研究样品的力学性能和溶剂溶胀性能发现,PBA为软段制备的LIPN均优于以PTMG为软段制备的LIPN,水溶胀率等有大幅减小,表现出明显的互穿协同效应.  相似文献   

10.
建立了通过溶解-沉淀法进行样品预处理,结合气相色谱-电子轰击源质谱仪(GC-EI/MS)检测5种不同类型胶黏剂中得克隆(DP,含syn-DP和anti-DP同分异构体)含量的分析方法。前处理结果表明,以乙酸丁酯溶解胶黏剂后定量加入甲醇或异辛烷,胶黏剂中的高聚物在混合液中析出而形成相分离,经离心后高聚物的去除率在85.3%~96.2%范围内,具有较好的净化效果。通过优化仪器检测参数,syn-DP和anti-DP的质量浓度在0.60~18.0 mg·L-1范围内与响应值有良好线性关系,相关系数r2>0.998。syn-DP和anti-DP的检出限分别为0.056 mg·L-1、0.043 mg·L-1,3个浓度添加水平的回收率在87.5%~102.4%范围内,变异系数在2.2%~6.5%范围内,满足胶黏剂中DP含量检测的分析需求。利用该方法测定市售的14款胶黏剂样品,其中在汽车电路板胶黏剂中检出DP。  相似文献   

11.
聚氨酯/环氧树脂互穿网络(PU/EPIPN)硬泡中异氰酸根的消耗速度较纯PU硬泡高,是由于环氧树脂的固化荆同时也是异氰酸根反应的催化荆。而PU/EP IPN硬泡中环氧基的反应速度和反应程度均较纯EP网络低,归因于互穿网络对基团扩散的阻碍。在互穿网络硬泡形成过程中,存在环氧开环中所新产生的羟基与异氰酸根的反应、大分子多元醇中羟基与环氧基的反应以及异氰酸根与环氧基形成嗯唑烷酮的反应三种形成网络间的化学键的途径。同时由于PU/EPIPN硬泡高度的交联,使得IPN硬泡中两个网络具有良好的相容性。动态力学性能表明所有IPN样品都只有一个玻璃化温度。透射电镜表明IPN样品无明显的相界面。  相似文献   

12.
A series of epoxy resin nanocomposites modified by polyurethane and organically modified montmorillonite was prepared by effectively dispersing the organically modified montmorillonite in interpenetrating polymer networks (IPNs) of epoxy and polyurethane via the sequential polymeric technique and in situ polymerization. The tribological performance of the resultant EP/PU nanocomposites was investigated by a pin‐on‐disc tester, and the results showed that adding polyurethane and organically modified clay to the EP matrix had a synergistic effect on improving tribological performance of EP/PU nanocomposites. The morphologies of the worn surface were studied by scanning electron microscopy (SEM) observations, and the results indicated that the mechanism of improving tribological performance of EP/PU nanocomposites was different from that of pure EP or pure EP/PU IPNs. The thermal behavior of these nanocomposites was also investigated by thermogravimeric analysis (TGA), and the results indicated that adding organically modified clay to the matrix remedied the deterioration of the thermal degradation temperature of the interpenetrating networks. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

13.
A series of interpenetrating polymer networks (IPNs) based on epoxy (EP) resin and polyurethane (PU) prepolymer derived from soybean oil-based polyols with different mass ratios were synthesized. The structure, thermal properties, damping properties, tensile properties, and morphology of soybean oil-based PU/EP IPNs were characterized by Fourier-transform infrared spectroscopy, differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), universal test machine, and scanning electron microscopy (SEM). DSC and DMA results show that the glass transition temperature of the soybean oil-based PU/EP IPN decreases with the increase of PU prepolymer contents. Soybean oil-based PU/EP IPNs have better damping properties than that of the pure epoxy resin. The tensile strength and modulus of PU/EP IPNs decrease, while elongation at break increases with the increase of PU prepolymer contents. SEM observations reveal that phase separation appears in PU/EP IPNs with higher PU prepolymer contents.  相似文献   

14.
The high cost and difficulty in sustainability have hindered the wide application of the general synthetic resins in the controlled-release fertilizers (CRF). Here, the degradable castor oil-based polyurethane (PU) was filled by the natural pyrophyllite (PY) powders, which were pre-modified with few amount (≤0.5 %) of NDZ-201 coupling agent though a simple and economic mechanochemical method. Furthermore, the composite materials of PU and the modified PY (MPY/PU) with enhanced comprehensive properties were prepared and applied in CRF. Moreover, the release behaviors of the coated fertilizers were investigated while tuning the addition amount of modifier or the filling amount of MPY, and it was confirmed that the release performance was highly depended on the hydrophobic and mechanical properties of the composite coating. As a result, the best optimized MPY/PU coating exhibited significantly superior performance to the pure PU materials, and the duration of 80 % nitrogen release was more than 40 days. This confirms that the MPY/PU composite is a promising coating material for the CRF granules.  相似文献   

15.
Epoxy resin nanocomposites containing organophilic montmorillonite (oM) and polyurethane were prepared by adding oM to interpenetrating polymer networks (IPNs) of epoxy resin and polyurethane (EP/PU). The dispersion degree of oM in EP/PU matrix was characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). Fourier transform infrared spectrometry (FT-IR) showed that strong interactions existed between oM and EP/PU matrix, and oM had some effect on hydrogen bonding of these EP/PU IPNs nanocomposites. Positron annihilation spectroscopy (PALS) and differential scanning calorimetry (DSC) measurements were used to investigate the effect of oM and PU contents on free volume and glass transition temperature (Tg) of these nanocomposites. The PALS and DSC results clearly showed that the presence of oM led to a decrease in the total fractional free volume, which was consistent with increasing Tg upon addition of oM, ascribed to increasing hydrogen bonding in interfacial regions of oM and EP/PU matrix and enhancing the miscibility between EP phase and PU phase. In addition, with increasing PU content, the total fractional free volume increased, corresponding to decreasing Tg.  相似文献   

16.
The flexible polyurethane (PU) foam‐filled composite sandwiches are constructed using three types of needle‐punched fabrics (upper layer), PU foam (core layer), and nylon (bottom layer). Different contents of deionized water were used to adjust the pore size and bulk density of PU foam by free‐foaming. Effects of needle‐punched fabric components, cell structure, and fabric‐foam interface on sound absorption and compressive property of the composite sandwiches were investigated. Fabric‐foam interface contributes to improve high‐frequency sound absorption efficiency. When containing 0.5 wt% water in the core and nylon‐glass grid needle‐punched composite fabric (NPUN‐G) in the upper face, the composite sandwiches exhibited optimal sound absorption of 0.78 at low frequency of 450 Hz, and optimal compressive strength of 14.4 kPa. Combination of needle‐punched composite fabric improved the sound absorption coefficient and compressive strength, as high as 223% and 121%, respectively, compared with pure PU foam. This study provided an important basis for the preparation of high‐strength composite sandwiches with low‐frequency sound absorption.  相似文献   

17.

Soybean oil-based polyurethane (PU)/epoxy (EP) interpenetrating polymer network (IPN) nanocomposites were prepared with natural attapulgite (N-ATT) and acid-treated attapulgite (A-ATT). The structure, glass transition, damping properties, thermal stability, mechanical properties and morphology of PU/EP IPN/ATT nanocomposites were characterized by X-ray diffraction (XRD), dynamic mechanical analysis (DMA), thermogravimetric analyzer, universal test machine and scanning electronic microscope (SEM). XRD showed that interaction with PU did not change the crystal structures of ATT. DMA results revealed the addition of ATT improved the glass transition temperature of the soybean oil-based PU/EP IPN, especially for A-ATT. However, the incorporation of ATT slightly decreased the damping properties of the soybean oil-based PU/EP IPN. Tensile tests confirmed that A-ATT had a significant reinforcement effect on the soybean oil-based PU/EP IPN. The tensile strength of the soybean oil-based PU/EP IPN increased by 56% with the addition of 4 mass% A-ATT. SEM demonstrated the relatively uniform dispersion of both N-ATT and A-ATT in the soybean oil-based PU/EP IPN matrix.

  相似文献   

18.
Summary: Biodegradable porous polyurethane (PU) scaffolds were used in a tissue engineering approach to create new bone. Two groups of elastomeric bioresorbable PU disks were seeded with osteoblasts and implanted into nude mice. One group had disks of pure PU while the other group had disks of PU- hydroxyapatite composite (PU-HA). After 5 weeks both groups showed radiographic and histologic evidence of significant bone formation. As the new bone formed it replaced the PU scaffolds. Although not statistically significant, there was a trend toward more bone formation in the PU-HA group. Bioresorbable PU shows promise for use in bone tissue engineering.  相似文献   

19.
聚氨酯互穿聚合物网络阻尼性能研究进展   总被引:18,自引:0,他引:18  
介绍了聚氨酯互穿聚合物网络(PU IPN)作为阻尼材料的研究进展,分别讨论了聚氨酯(PU)/环氧树脂(EP)IPN和PU/乙烯基聚合物IPN的阻尼性,以及影响阻尼性能的因素,并比较了不同类型的PU IPN的优缺点及新的可能的探讨方向。  相似文献   

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