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1.
PS/SBS/CaCO_3共混物体系脆韧转变   总被引:8,自引:0,他引:8  
研究了不同组成的聚苯乙烯 (PS)基三元共混物体系的缺口冲击性能、拉伸性能和断面形貌以及相形态 .实验结果表明 ,微米级碳酸钙的增韧改性效果稍好于纳米级碳酸钙 ,但增强效果却相反 .随着分散相含量的增加 ,3种共混物韧性皆明显提高 ,拉伸曲线向右下方移动 ,应变软化减弱 ,应变硬化增强 .研究发现了随分散相含量的增加 ,PS共混物出现了脆韧转变 ,而且脆韧转变以不同的形式表现了出来 ,即冲击强度、断面形貌以及拉伸曲线在同一区间同时出现了转变  相似文献   

2.
采用熔融挤出法制备了不同相容剂含量的PP/POE共混体系,测试了不同体系的脆韧转变温度、热性能和力学性能.结果表明,乙烯-丙烯多嵌段共聚物相容剂的加入降低了PP/POE共混物的脆韧转变温度,提高了共混物的韧性.AFM和STEM照片显示相容剂的加入减小了橡胶分散相的临界粒子间距,PP和POE在两相界面结合处相互扩散或渗透,实现了POE弹性体在PP树脂中合适的尺度分布以及良好的形态分散.当相容剂含量达到10%时,POE分散相尺寸细小均匀,分散相粒子粒径为0.54μm,粒子间距为0.1 μm,PP结晶链段更多地插入到弹性体内部,弹性体POE分散相形成明显的“硬核-软壳”结构.DSC曲线中结晶峰和熔融峰的变化说明适量的相容剂对于材料结晶度的提高具有一定的促进作用.力学性能测试结果可以看出相容剂的加入在提高材料韧性,降低其脆韧转变温度的同时也保持了材料的刚性性能.  相似文献   

3.
研究了马来酸酐接枝的聚乙烯辛烯弹性体 /半结晶性塑料共混物 (TPEg)对热塑性共聚聚酯(PETG) /聚乙烯辛烯弹性体 (TPE)共混体系增容增韧作用的影响 .马来酸酐接枝物显著地改善了PETG与TPE之间的相容性 ,导致TPE分散相颗粒细化 ,并促使分散相颗粒面间距等于甚至小于实现脆韧转变所需的临界面间距 .在固定PETG基体含量为 85wt %的前提下 ,当TPEg在 15 %分散相中的含量由 2 0 %增加到30 %时 ,即TPEg在共混体系中的含量由 3 %增加到 4 5 %时 ,共混体系出现了由脆性到韧性的转变 ,冲击强度急剧升高  相似文献   

4.
根据作者已建立的准网络形态模型和推导出的基体层厚度公式,从实验上研究了橡胶粒子的分布对聚氯乙烯/丁氰橡胶共混物脆韧转变的影响。结果表明,不仅无规形态PVC/NBR共混物存在脆韧转变主曲线,而且准网络形态PVC/NBR共混物也存在脆韧转变主曲线,但是条主曲线明显不重合,表明橡胶粒子分布对PVC/NBR共混物脆韧转变有显著影响,而且准网络形态PVC/NBR共混物的临界基体层厚度比无规形态PVC/NBR  相似文献   

5.
在双螺杆挤出机中制备了环氧官能化的二元乙丙橡胶(gEPR) ,采用红外光谱工作曲线法测量了EPR的接枝率.将环氧官能化的EPR与尼龙6 (Nylon- 6 )熔融共混,并对共混体系的相形态、断裂形貌、增韧机理、力学性能进行了研究.结果表明,gEPR的环氧官能团与Nylon- 6的端羧基和(或)端氨基发生了化学反应生成Nylon -6 co EPR共聚物,该共聚物作为界面改性剂降低了Nylon -6与EPR之间的界面张力,使EPR在Nylon -6基体中均匀、稳定地分散,而且随着EPR接枝率的增加,EPR的粒径尺寸逐渐减小.断面形貌观察发现,与Nylon -6 EPR体系相比,Nyon -6 gEPR共混体系呈现明显的韧性断裂特征.通过对Nylon -6 gEPR共混体系缺口冲击形变区的研究得出EPR增韧Nylon -6的机理是橡胶粒子的空洞化和塑料基体的剪切屈服.力学性能测试表明gEPR的引入显著提高了Nylon -6的缺口冲击强度.  相似文献   

6.
聚合物/橡胶共混物脆韧转变机理的定量化研究   总被引:1,自引:0,他引:1  
由于聚丙烯(PP)、聚酰胺(PA)类准韧性聚合物在室温低速拉伸时为韧性破坏,因此Bucknall提出的室温下拉伸蠕变试验体积应变方法、不能用于表征这类共混物的脆韧转变机制.应用时温等效原理,可使低速低温拉伸试验和室温冲击试验相关等效.由此提出在聚合物的脆化温度下拉伸蠕变体积应变方法适用于所有的聚合物共混物的增韧机理的定量化研究.结果给出,当体积应变-轴向应变曲线的斜率用K表示时:室温冲击脆性PP的K=0.76,主要是空洞-银纹化损伤机制;超高韧性PP/EPDM(V_(?)=0.30)的K≈0,主要是微剪切损伤机制.从而定量化的确认了这种损伤机制的转化是准韧性聚合物PP/橡胶共混物产生脆韧转变的根本原因.  相似文献   

7.
根据作者已建立的准网络形态模型和推导出的基体层厚度计算公式,从实验上研究了橡胶粒子的分布对聚氯乙烯(PVC)/丁氰橡胶(NBR)共混物脆韧转变的影响.结果表明,不仅无规形态PVC/NBR共混物存在脆韧转变主曲线,而且准网络形态PVC/NBR共混物也存在脆韧转变主曲线.但是两条主曲线明显不重合,表明橡胶粒子的分布对PVC/NBR共混物脆韧转变有显著影响.而且准网络形态PVC/NBR共混物的临界基体层厚度比无规形态PVC/NBR共混物的临界基体层厚度大得多,表明准网络形态比无规形态明显有利于增韧.因此临界基体层厚度不仅是基体的特征参数,还是界面粘结和橡胶粒子分布的函数.  相似文献   

8.
《高分子学报》2021,52(7):734-740
通过酰氯接枝反应在淀粉大分子链上引入长烷基链和碳碳双键,使淀粉具有自乳化性能并增加反应位点,采用无皂乳液聚合将丙烯酸乙酯(EA)与酯化改性淀粉接枝共聚制备以淀粉为核的核壳粒子,即核壳粒子为硬核软壳的结构,通过添加甲基丙烯酸缩水甘油醚(GMA)进一步制备环氧化核壳粒子.将环氧化核壳粒子与聚乳酸(PLA)进行熔融共混改性,研究不同环氧化程度的核壳粒子对PLA性能的影响.结果表明,环氧化淀粉核壳粒子粒径约250 nm,与PLA共混改性后,环氧化核壳粒子能够明显提高PLA的韧性,而且其拉伸强度维持在较高水平,共混物缺口冲击强度提高至纯PLA的17倍.进一步研究表明环氧官能团的引入提高了核壳粒子与PLA的相容性同时增加了界面相互作用.  相似文献   

9.
ACR-g-PVC复合粒子结构与对PVC的增韧效率   总被引:8,自引:0,他引:8  
采用丙烯酸丁酯 (BA)和丙烯酸 2 乙基己酯 (EHA)交联共聚物为核 ,BA与EHA或甲基丙烯酸甲酯(MMA)与苯乙烯 (St)或MMA与丙烯酸乙酯 (EA)交联共聚物为壳 ,合成了 3种聚丙烯酸酯 (ACR) [P(BA EHA)、ACRⅠ、ACRⅡ ]胶乳 .以 3种ACR胶乳为种子 ,分别与氯乙烯 (VC)进行乳液接枝共聚 ,制备了相应 3种复合粒子 (ACR g PVC) .借助动态光散射法和透射电镜考察了ACR与复合乳胶粒的粒径与结构 ,表征了所研制材料的形态和冲击韧性 .研究结果表明 ,3种ACR g PVC材料的常温缺口冲击强度随ACR含量增加而显著提高 ,其突跃点的发生具有等橡胶量效应 ,其临界橡胶含量约为 4 % ,并采用脆 韧转变的临界粒子间距模型对其进行了解释 ;P(BA EHA)比核 壳ACRⅠ或ACRⅡ具有更高的增韧效率 ,依据复合粒子的两种理想结构模型对其增韧效率进行了分析 .  相似文献   

10.
聚合物共混体脆韧转变的判据   总被引:1,自引:0,他引:1  
本文从应力分析的角度出发,提出了一个新的判据来表征共混体的脆韧转变,即A判据,A=V_(fc)~2/d_c=常数,V_(fc),d_c分别为共混体中分散相粒子的临界体积分数及临界粒径。对于给定的基体,A与分散相的形态无关,仅是基体的特征参数。以A判据来处理不同共混体的脆韧转变,包括极性的N 6/EPDM共混体系、非极性的PP/EPDM共混体系及填充的PE/CaCO_3共混体系等均取得了满意的结果。此外,本文还首次得到了共混体的冲击韧性(G)与V_f~2/d关系的主曲线。研究表明:在处理共混体的脆韧转变时,A判据较T_c判据具有更好的适用性。  相似文献   

11.
The brittle-ductile transition is a very important phenomenon for polymer toughening. Polypropylene (PP) is often toughened by using rubbers, e.g., ethylene-propylene diene monomer (EPDM) has often been used as a modifier. In this article, the toughening of PP by using a new kind of rubber, known as elastomeric nano-particle (ENP), and the brittleductile transition of PP/EPDM/ENP was studied. Compared to PP/EPDM binary blends, the brittle-ductile transition of PP/EPDM/ENP ternary blends occurred at lower EPDM contents. SEM experiment was carried out to investigate the etched and impact-fractured surfaces. ENP alone had no effect on the impact strength of PP, however, with the same EPDM content, PP/EPDM/ENP ternary blends had smaller particle size, better dispersion and smaller interparticle distance in contrary to PP/EPDM binary blends, which promoted the brittle-ductile transition to occur earlier.  相似文献   

12.
三元乙丙橡胶环氧化增韧聚对苯二甲酸丁二酯的研究   总被引:1,自引:0,他引:1  
三元乙丙橡胶环氧化增韧聚对苯二甲酸丁二酯的研究王学会,张会轩,王新华,王志刚,蒋俊光,姜炳政(吉林工学院化工系,长春,130012)(中国科学院长春应用化学研究所)关键词三元乙丙橡胶,环氧化,PBT,增韧作用,共混物聚对苯二甲酸丁二酯(PBT)具有优...  相似文献   

13.
于杰 《高分子科学》2009,(5):719-728
The toughness of blends composed of nylon 6 and acrylonitrile-butadiene-styrene(ABS) compatibilized by using styrene-maleic anhydride(SMA) as a compatibilizer was measured over a wide temperature region.Results reveal that the combining effects of particle size and volume fraction of ABS on the toughness of nylon 6/ABS/SMA blends can be described through plotting brittle-ductile transition of the impact strength versus the interparticle distance(ID) on the assumption that ABS domains relieve the triaxial...  相似文献   

14.
To study the brittle–ductile transition (BDT) of polypropylene (PP)/ethylene–propylene–diene monomer (EPDM) blends induced by size, temperature, and time, the toughness of the PP/EPDM blends was investigated over wide ranges of EPDM content, temperature, and strain rate. The toughness of the blends was determined from the tensile fracture energy of the side‐edge notched samples. The concept of interparticle distance (ID) was introduced into this study to probe the size effect on the BDT of PP/EPDM blends, whereas the effect of time corresponded to that of strain rate. The BDT induced by size, temperature, and time was observed in the fracture energy versus ID, temperature, and strain rate. The critical BDT temperatures for various EPDM contents at different initial strain rates were obtained from these transitions. The critical interparticle distance (IDc) increased nonlinearly with increasing temperature, and when the initial strain rate was lower, the IDc was larger. Moreover, the variation of the reciprocal of the initial strain rate with the reciprocal of temperature followed different straight lines for various EPDM contents. These straight lines were with the same slope. Furthermore, a diagram at critical BDT points in three dimensions (ID, T, and initial strain rate) was given for the PP/EPDM blends. The brittle and ductile zones are clearly shown in this diagram. © 2004 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 42: 1433–1440, 2004  相似文献   

15.
Damage zones of brittle-ductile (B-D) transition in PP/EPDM blends are studied in this paper. The contribution of crazing and shear yielding zones in damage zones to energy dissipation of blends was measured with computer image analysis (CIA) and the transition of shear yielding zone (A_(sh)) with rubber volume fraction (V_f) was also manipulated. Results showed that the B-D transition of impact strength of blends corresponded to the fracture mechanism in PP/EPDM blends, from matrix crazing to matrix shear yielding. In addition, two new parameters, density of energy dissipation for crazing zone (F_(cz)) and for shear yielding zone (F_(sh)), are first obtained in this paper. The value of F_(sh) is about four times larger than that of F_(cz) for PP/EPDM blends, which confirmed that the matrix shear yielding is a more effective way of energy dissipation in blends.  相似文献   

16.
The T_c criterion was first used by S. Wu for characterizing the brittleductile (B-D) transition of N6/EPDM blends. But in this paper, a new criterion which is based on the stress analysis of blends is proposed to characterize the B-D transitions of blends, namely, A criterionV_(fc) and d_c are the critical volume fractions and particle size of dispersed particles in blends, respectively. For given blends, A is independent of the morphology of dispersed phase and is only the characteristic parameter of matrix. The B-D transitions of different blends, including polar N6/EPDM blends, nonpolar PP/EPDM blends and PE/CaCO_3 composites, were manipulated with A criterion and satisfactory results were obtained. In addition, a new master curve for the impact strength of PP/EPDM blends versus V_f~2/d was obtained. The results showed that A criterion is more suitable than T_c criterion for characterizing the B-D transition of blends.  相似文献   

17.
研究了非晶的聚氯乙烯(PVC)/丁腈橡胶(NBR)共混物脆韧转变特性,主要包括形态参数─—分散相粒径(d)、体积分数()、特别是分散相粒径分布(б)对其脆动转变性能的影响.结果表明,当d<临界值(d)或>临界值()时,PVC/NBR产生脆韧转变.而且dC随。的增大而减小;随б的增大而增大。增大不利于增韧和脆韧转变的发生。也是影响聚合物共混物脆韧转变的重要形态参数,理论预示与实验结果很好相符.结果并给出PVC/NBR共混物的冲击韧性也是分散相粒间基体层厚度(T)的单参数函数.当T>T时,共混物为脆性;当T≤T时,共混物韧性剧增成为超韧合金.虽然,以分子链结构参数分类,PVC介于准韧性和脆性聚合物之间.结果证实,准韧性聚合物共混物脆韧转变的Tc判据仍然适用于PVC/NBR共混物.  相似文献   

18.
For a more complete understanding of the toughening mechanism of polypropylene (PP)/ethylene‐propylene‐diene rubber (EPDM) blends, dynamic packing injection molding was used to control the phase morphology and rubber particle orientation in the matrix. The relative impact strength of the blends increased at low EPDM contents, and then a definite ductile–brittle (D–B) transition was observed when the EPDM content reached 25 wt %, at which point blends should fail in the ductile mode with conventional molding. Wide‐angle X‐ray diffraction (WAXD), differential scanning calorimetry (DSC), and scanning electron microscopy (SEM) were used to investigate the shear‐induced crystal structure, morphology, orientation, and phase separation of the blends. WAXD results showed that the observed D–B transition took place mainly for a constant crystal structure (α form). Also, no remarkable changes in the crystallinity and melting point of PP were observed by DSC. The highly oriented and elongated rubber particles were seen via SEM at high EPDM contents. Our results suggest that Wu's criterion is no longer valid when dispersed rubber particles are elongated and oriented. The possible fracture mechanism is discussed on the basis of the stress concentration in a filler‐dispersed matrix. It can be concluded that not only the interparticle distance but also the stress fields around individual particles play an important role in polymer toughening. © 2002 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 40: 2086–2097, 2002  相似文献   

19.
在同向双螺杆挤出机中通过熔融接枝反应制备了EPM g GMA ,将其与PBT在转矩流变仪中熔融共混可以获得增韧的PBT工程塑料 .实验中EPM g GMA接枝率的测定采用红外工作曲线法 ,选用CCl4 做溶剂以避免溶剂对样品吸收峰的干扰 .随着EPM g GMA接枝率的增加 ,PBT EPM g GMA的缺口冲击强度相应提高 ,共混物中EPM g GMA的粒径尺寸减小 ,当EPM g GMA的接枝率为 4 7mL 1 0 0gEPM时 ,EPM g GMA的粒径尺寸可达 0 5 μm ,PBT EPM g GMA的缺口冲击强度达到 5 1 6kJ m2 ,是纯PBT的 3 1倍  相似文献   

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