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1.
通过两步熔融缩聚法合成了一系列基于碳酸二苯酯、1,4-丁二醇、异山梨醇和螺二醇的三元共聚碳酸酯(PBISC),其结构和组成经1H NMR和13C NMR表征,并采用GPC、 TGA、 DSC、 WXRD和拉伸试验分别对PBISC的性能进行研究。结果表明:PBISC共聚物的玻璃化转变温度为63~72 ℃,Td,max值接近350 ℃, PBISC共聚物具有较低的结晶性能。  相似文献   

2.
利用TiO2-SiO2(PVP)凝胶基催化剂(TSP),无溶剂条件下,以碳酸二苯酯与1,4-丁二醇为单体,采用常压预聚和真空缩聚两步熔融酯交换法合成了聚(对亚丁基)碳酸酯(PBC),考察了工艺条件,并对PBC的结构及物理性质进行了表征.实验结果表明,最佳工艺条件如下:预聚时间为2 h,预聚温度为220~230℃(N2保护),缩聚温度为220℃,缩聚压力300 Pa,催化剂用量为0.15 wt%.优化条件下,PBC的特性黏数为1.12dL/g,Mn为49000,Mw为101000,PDI为2.07,Tg为-32.32℃,端羟基含量为6.2×10-4mol/g,苯酚残留量为5.26 wt%.在此工艺条件下,通过控制副产物苯酚的蒸出速率及其量,可以实现产品聚合度的可控,且苯酚几乎能够完全回收.  相似文献   

3.
研究了室温条件下聚丙撑碳酸酯(PPC)在钴-60和电子加速器辐照过程中的响应行为。结果表明,聚丙撑碳酸酯是一种辐射裂解型聚合物,其分子量随着辐射剂量的增加而减小。1mm厚PPC片材在室温和N2气保护条件下,其裂解G值为Gs,γ-ray=10.81;Gs,EB=4.9。不同的裂解G值表明,O2气在聚丙撑碳酸酯的辐射裂解过程中有重要影响。红外光谱研究表明,辐射后聚丙撑碳酸酯在3474cm-1处的峰宽峰高增加,表明其裂解后端—OH基增加。由于裂解作用,辐射后聚丙撑碳酸酯的抗张强度和断裂伸长率均下降。在通常的辐射消毒剂量范围内(25~50kGy),PPC的保留抗张强度大于23MPa,断裂伸长率大于4%,裂解后试样的力学性能依然能够满足实际应用需要,因此PPC可以经受辐射消毒。  相似文献   

4.
以L型丙交酯(LLA)、乙交酯(GA)和三亚甲基碳酸酯(TMC)为原料,辛酸亚锡为催化剂,通过开环聚合制备了丙交酯-三亚甲基碳酸酯二元共聚物(PLT)和丙交酯-三亚甲基碳酸酯-乙交脂(PLTG)三元共聚物。采用核磁共振氢谱、傅里叶红外光谱、体积排阻色谱、差热扫描、力学性能测试、血液相容性实验表征了产物的结构与性能,研究了共聚物组成对其结晶能力、热性能和力学性能的的影响。结果表明:所得聚合物的数均分子量均在8×10~4以上,多分散系数在2.0以下。共聚物中的TMC和GA链段使其结晶能力、玻璃化转变温度和拉伸强度与L型聚丙交酯相比均有所下降。三元共聚物PLTG的拉伸强度可达到22.3 MPa,断裂伸长率达到168.7%。另外,共聚物的血液相容性优良。  相似文献   

5.
利用二氨酯二醇氨酯交换的非异氰酸酯法合成高分子量的脂肪族热塑性聚氨酯.以己二氨酯二醇(BHCH)的自缩聚,合成了Mn为29200的聚己二氨酯(PBHCH),其熔点为154.31℃,拉伸强度为28.41MPa,断裂伸长率为3.91%;利用己内酰胺与乙醇胺的共聚合成了同时带有端氨基及端羟基的尼龙-6低聚物,并与己内酯反应转化为端羟基尼龙-6低聚体,经与BHCH在170℃常压反应4 h及180℃减压反应6.5 h,获得了数种带有短尼龙-6段的酰胺型聚氨酯(s-PAUs),红外、核磁、GPC、广角X-射线衍射、DSC、TGA和力学性能表征表明,此类s-PAUs的Mn在26000以上、熔点在123.85~170.89℃之间、拉伸强度达28.53 MPa、断裂伸长率达299.0%.  相似文献   

6.
研究了几种中性天然氨基酸存在下2,2-二甲基-三亚甲基环碳酸酯(DTC)的开环聚合反应。1H-NMR和端基滴定分析表明,在聚合反应过程中,DTC上的酰氧键断裂,氨基酸通过氨基接在聚(2,2-二甲基-三亚甲基碳酸酯)链上。3-氨基丙酸、4-氨基丁酸、6-氨基己酸等存在时,DTC的聚合反应也可以发生,但单体的转化率和聚合物的分子量低于天然氨基酸引发的聚合反应。  相似文献   

7.
以镁铝水滑石为催化剂,碳酸二甲酯与二甘醇为原料,控制合成了二[2-(甲基-3-氧杂亚戊基碳酸酯)]碳酸酯,优化反应工艺条件,在油浴温度100℃,碳酸二甲酯与二甘醇摩尔比15,催化剂用量1.2 wt%的条件下,采用两段工艺,目标产物收率达51%。提纯产物,通过核磁与高分辨质谱证实了其结构。以反应体系中产物分布变化为依据,提出了目标产物的两条生成路径。  相似文献   

8.
以辛酸亚锡催化L-丙交酯(L-LA)和ε-己内酯(ε-CL)通过酯交换反应完成本体开环聚合制得可降解的生物医用材料聚(L-丙交酯-co-ε-己内酯)(PLLCA),其结构和热性能经1H NMR,高效凝胶色谱和差示扫描量热分析表征。研究了酯交换反应条件对PLLCA力学性能的影响,结果表明,提高聚合温度有利于酯交换反应进行,L-LA和ε-CL的平均嵌段长度减小,PLLCA的玻璃化转变温度(Tg)和拉伸强度也随之减小,断裂伸长率则单调增大;增大ε-CL的投料摩尔分数同样有利于酯交换反应的进行,L-LA的平均嵌段长度随之减小而ε-CL的平均嵌段长度则增大,Tg和拉伸强度均随之减小。  相似文献   

9.
聚乳酸与聚丙撑碳酸酯共混体系的性能   总被引:2,自引:0,他引:2  
采用熔融共混的方法制备了聚乳酸(PLA)/聚丙撑碳酸酯(PPC)共混物。DSC测试结果表明,纯PLA和PPC的玻璃化转变温度分别为54和37℃,不同组成的PLA/PPC共混物有2个明显的玻璃化转变温度,且与纯PLA和PPC的玻璃化转变温度相对应,说明二者是不相容体系。力学测试结果表明,当PPC质量分数超过20%时,可以看到明显的屈服点。共混物在拉伸过程中也有明显的颈缩、应力发白现象,表明随着PPC含量增加,PLA/PPC共混物由典型的脆性断裂向韧性转变。随着PPC含量的增加,共混物模量降低,断裂伸长率增加,当PPC质量分数为50%时,共混物的断裂伸长率达到最大值62%。共混物的粘度可在很宽的范围内予以调控,以满足不同加工的需要。  相似文献   

10.
粘合剂在现代生活和生产中广泛应用,具有可生物降解、可再生、可逆粘接性能的粘合剂是该领域的研究热点。本文利用相对分子质量为2000左右,碳酸酯含量(CU)分别为28%、33%、45%、51%和66%的聚(碳酸酯-醚)二元醇和乙基纤维素为原料,通过羟基与2-脲基-4[1H]-嘧啶酮异氰酸酯(UPy-NCO)的偶联反应,分别合成了UPy封端的聚(碳酸酯-醚)(UPPC)和UPy侧链官能化的乙基纤维素(UEC)。进一步,通过溶液共混制备了基于四重氢键作用的UPPC/UEC超分子复合物并研究了UPPC的序列结构和含量对超分子复合物粘接性能的影响。当UPPC的质量分数为70%,碳酸酯含量为33%时,超分子复合物(UPPC33%7/UEC3)对钢片的粘接强度最高可达7.4 MPa,是单组分UPPC33%粘接强度的3倍。此外,UPPC33%7/UEC3对钢片表现出良好的热可逆粘接特性,重复使用6次后粘接强度仅下降10%。  相似文献   

11.
Poly(butylene carbonateXPBC) has significantly promising applications as a degradable material in the field of polymers, while its poor thermal performance and low crystallization rate are its main defects. To overcome these shortcomings, a series of poly(butylene carbonate-co-spirocyclic carbonateXPBSC) copolymers were synthesized from diphenyl carbonate, 1,4-butanediol and spiroglycol via two-step polycondensation reactions, using magnesium oxide as a catalyst. Differential scanning calorimetry(DSC) results indicated that the glass transition temperature(Tg) values of PBSC copolymers were enhanced from -19℃ to 56℃ with rising the spiroacetal moiety content. Thermogravimetric analysis(TGA) results showed that the resulting PBSCs have a higher thermal stability than that of poly(butylene carbonate). Wide angle X-ray diflraction(WXRD) patterns were characterized to investigate the crystallization behaviour of PBSCs. Tensile testing demonstrated that copolymerization of spiroacetal moieties into PBC chains imparted PBSC with favourable mechanical performance. Typically, PBSC 30 had a tensile modulus of (1735±430) MPa, a tensile strength of (42±5) MPa and an elongation of 504%±36%.  相似文献   

12.
采用马来酸酐封端聚碳酸1,2-环己二酯(PCHC),使其末端羟基转变为端羧基(MA-PCHC),并以2,2'-双-(2-噁唑啉)(BOZ)为扩链剂进行扩链反应.研究发现,BOZ与MA-PCHC中的羧基等摩尔情况下,扩链效果最佳.扩链后的PCHC的数均分子量从扩链前的5.6×104增长到12.4×104.扩链后的PCHC...  相似文献   

13.
张会良 《高分子科学》2015,33(3):444-455
Poly(propylene carbonate)(PPC) was melt blended in a batch mixer with poly(butylene carbonate)(PBC) in an effort to improve the toughness of the PPC without compromising its biodegradability and biocompatibility. DMA results showed that the PPC/PBC blends were an immiscible two-phase system. With the increase in PBC content, the PPC/PBC blends showed decreased tensile strength, however, the elongation at break was increased to 230% for the 50/50 PPC/PBC blend. From the tensile strength experiments, the Pukanszky model gave credit to the modest interfacial adhesion between PPC and PBC, although PPC/PBC was immscible. The impact strength increased significantly which indicated the toughening effects of the PBC on PPC. SEM examination showed that cavitation and shear yielding were the major toughening mechanisms in the blends subjected the impact tests. TGA measurements showed that the thermal stability of PPC decreased with the incorporation of PBC. Rheological investigation demonstrated that the addition of PBC reduced the value of storage modulus, loss modulus and complex viscosity of the PPC/PBC blends to some extent. Moreover, the addition of PBC was found to increase the processability of PPC in extrusion. The introduction of PBC provided an efficient and novel toughened method to extend the application area of PPC.  相似文献   

14.
Poly(carbonate‐urethane‐urea)s (PCUU) based on oligocarbonate diols (Mn ≈ 2000) with different length of the hydrocarbon chain as soft segments were synthesized and investigated. Carbonate oligomerols were obtained in a two‐step method from dimethyl carbonate (DMC) and linear α,ω‐diols (1,4‐butanediol, 1,5‐pentanediol, 1,6‐hexanediol, 1,9‐nonanediol, 1,10‐dekanediol and 1,12‐dodecanediol). Oligo(trimethylene carbonate) diol was synthesized using ring‐opening polymerization of trimethylence carbonate. PCUUs were obtained by prepolymer method using isophorone diisocyanate (IPDI) and water as a chain extender. Changes in polymers properties with increase of methylene group number between carbonate linkages were investigated by differential scanning calorimetry (DSC), dynamic mechanical thermal analysis (DMTA), tensile strength and hardness measurements. The thermal stability was also analyzed by means of thermogravimetric analysis (TGA). Based on FTIR analysis influence of methylene groups number between carbonate linkages on phase separation and concentration of allophanate and biuret groups in the samples were investigated. The obtained poly(carbonate‐urethane‐urea)s exhibited very good mechanical properties. Tensile strength and elongation at break were 40 MPa and 400–600%, respectively, depending on the oligocarbonate used. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

15.
制备了新型可溶性含氟聚芳醚酮高性能材料, 使该材料结合了含氟聚合物与聚芳醚酮两种材料的优点, 既具有很好的热稳定性、溶解性和阻燃性, 又有较低的介电常数和吸湿性[5,9,10]. 对于提高聚芳醚酮类材料的性能, 拓展其使用范围和加工方法具有很大的开发前景和实用价值.  相似文献   

16.
A novel imide modified vinyl‐containing fluorosilicone resin (MP‐VFS) was firstly prepared from maleopimaric acid (MPA), and characterized by 1H NMR and 13C NMR. Containing MPA based imide heterocycle (MPABI), MP‐VFS was further used as a novel cross‐linker to prepare MPA modified fluorosilicone rubber (MP‐FSR). Morphology, mechanical and oil‐resistance properties, thermal properties, and low temperature resistance of MP‐FSR had been studied. Microphase separation was observed in MP‐FSR. Although the tensile strength of fluorosilicone rubber was not significantly enhanced, the tearing strength, breaking elongation, rebound resilience and hardness were effectively improved. When the MP‐VFS content was 2.0 wt %, the tearing strength of MP‐FSR was increased by 23.5%, breaking elongation by 18.6% and rebound resilience by 9.7%. The thermal stability was enhanced due to the incorporation of MPABI. © 2015 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2015 , 53, 1769–1776  相似文献   

17.
以间氯过氧苯甲酸(mCPBA)为氧化剂对降解法制备的端羟基聚丁二烯(DHTPB)中的部分双键进行环氧化改性,通过控制mCPBA和双键的比例制得具有不同环氧率的环氧化端羟基聚丁二烯(EHTPB),经1H-NMR分析测试表明EHTPB的环氧率分别为5%、10%和15%,与设计值基本一致.进一步以EHTPB为多元醇、4,4'-二苯基甲烷二异氰酸酯(MDI)为异氰酸酯、1,4-丁二醇为扩链剂制备了环氧丁羟型聚氨酯弹性体(EPU),并对其性能进行了测试,研究结果表明:丁羟胶的环氧化改性对聚氨酯弹性体的力学性有着一定的提升作用,其杨氏模量和拉伸强度随环氧率的上升而提高,而断裂伸长率则随环氧率的上升有所下降;环氧丁羟型聚氨酯弹性具有优异的弹性恢复能力;环氧化改性后,聚氨酯弹性体的热稳定性有一定程度的提高;聚氨酯弹性体的玻璃化转变温度随环氧率的上升而升高.  相似文献   

18.
二氧化碳-环氧乙烷-氧化环己烯三元共聚物的制备与性能   总被引:2,自引:0,他引:2  
采用稀土三元催化剂实现了二氧化碳、氧化环己烯与环氧乙烷的三元共聚,当环氧乙烷和氧化环己烯等摩尔投料时催化活性达到690 g/(mol Zn h),所得三元共聚物的数均分子量达到7.9×104,远程异核多量子相关核磁谱证明所得共聚物主要是无规三元共聚物,其中环氧乙烷-二氧化碳结构单元与氧化环己烯-二氧化碳结构单元相连的全交替结构占26.9%.二氧化碳-氧化环己烯共聚物的脆性导致其熔体加工十分困难,引入环氧乙烷为第三单体进行三元共聚,实现了二氧化碳-氧化环己烯共聚物的增韧,解决了其熔体加工难题,而且改变环氧单体比率能够调节三元共聚物的耐温性能和力学性能,当环氧乙烷与氧化环己烯等摩尔投料时,所得三元共聚物在20℃下的杨氏模量达到(900±17)MPa,拉伸强度为(38±2)MPa,断裂伸长率为(26.3±9.2)%.  相似文献   

19.
In this paper, the black liquor lignin (BL) from pulp and paper industry was chemically modified using formaldehyde to adjust its aggregation structure and dispersion behavior. The properties of the formaldehyde-modified black liquor lignin (BLF) were measured by Fourier transform infrared spectroscopy, transmission electron microscopy, and differential scanning calorimetry. Results indicated that the BLF had better dispersion ability than BL. Therefore, the BLF as reinforcing fillers was incorporated into poly(propylene carbonate) (PPC) by melt compounding to prepare biodegradable BLF/PPC composites. The tensile properties, microstructure, thermal decomposition properties, and rheological properties of the BLF/PPC composites were investigated. Results showed that the performance of composites was depend on the dispersion of BLF. After adding a small amount of BLF into PPC, the tensile strength, tensile modulus, thermal stability, and processing stability of the composite were significantly improved.  相似文献   

20.
以双酚A(BPA),碳酸乙二酯(EC)和碳酸二甲酯(DMC)为原料,制备双酚A二元醇(Ⅰ)和双酚A碳酸酯(Ⅱ),并用红外光谱与核磁共振波谱对其结构进行表征.通过Ⅰ与Ⅱ的共缩聚反应及Ⅱ的自聚实现了主链中含有—CH2CH2—单元的双酚A型聚碳酸酯(PC)的非光气法合成,用凝胶渗透色谱法(GPC)和TGA-DSC对PC的分子量和热性质进行分析.结果表明,Ⅱ在240℃自聚6h后产物的Mn可达17.6×103,主链中—CH2CH2—单元的引入,可以降低聚合物的Tg,提高其结晶性,所得聚合物具有良好的热稳定性.  相似文献   

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