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1.
二季戊四醇磷酸酯的合成、表征及阻燃性能测试   总被引:1,自引:1,他引:0  
以磷酸和季戊四醇为原料,采用直接酯化法合成阻燃剂二季戊四醇磷酸酯,对样品进行了表征,并对合成工艺及其在聚烯烃中的阻燃性能进行了研究.确定最佳合成条件:二甲苯为带水剂;反应温度180-200℃;反应时间6-7h.将此阻燃剂与聚磷酸铵按40/60(质量比)复配添加到聚烯烃中,样品比重30%时阻燃级别可达UL94V-0级.  相似文献   

2.
采用两种不同的方法即重量法和杂质减除法对自行研制的二季戊四醇(简称二季或双季,DPE)进行了定值.重量法测得二季戊四醇的含量为98.97%,SD为0.078%;杂质减除法测得二季戊四醇的含量为98.79%,SD为0.092%;并进行了不等精度数据分析;结果表明这两种方法测得的结果是一致的.  相似文献   

3.
建立了分离测定季戊四醇和二季戊四醇的反相高效液相色谱法。在C18烷基键合相分离柱上,以乙腈∶水[5∶95(V/V)]为流动相,流速为1.0ml·min-1。紫外检测波长为196nm,方法的相对标准偏差季戊四醇和二季戊四醇分别为2.4%和4.5%。加标回收率分别为96.36%和95.78%。方法用于二季戊四醇生产工艺条件的选择和反应液浓度的控制分析。  相似文献   

4.
磷酸酯双三聚氰胺盐阻燃环氧树脂的燃烧性能和阻燃机理   总被引:2,自引:0,他引:2  
以季戊四醇、三氯氧磷、三聚氰胺为原料合成了[1-氧-4-亚甲基-2,6,7-三氧-1-磷杂双环(2,2,2)辛烷]磷酸酯双三聚氰胺盐阻燃剂,将该阻燃剂加入到环氧树脂中制成阻燃环氧树脂。用TG、SEM、EDS和FT-IR进行表征,并采用极限氧指数法和垂直燃烧法测试材料的燃烧性能,结果表明,极限氧指数和垂直燃烧性能随阻燃剂含量的增加而提高,当阻燃剂含量达到30%时,氧指数达到36,垂直燃烧性能达到V-0级;阻燃剂对材料的成炭量影响不大,但改变了炭层的组成和物理性质,燃烧过程中形成的含有P、O、N的粘性高聚物将炭层连接在一起,起到了隔热、隔氧作用,发挥了凝聚相阻燃作用。此外,阻燃环氧树脂在燃烧过程中有NH3等不燃气体逸出,有效地稀释了气相中的氧气浓度,发挥了气相阻燃作用,对材料的阻燃有协同作用。  相似文献   

5.
以1-氧代-1-磷杂-2,6,7-三氧杂双环[2.2.2]-4-氯甲酰基辛烷3和胺反应,合成了8个双环笼状磷酸酯酰胺类化合物4a-4h。通过元素分析、OR、1HNMR和MS确定了其结构。将所合成的化合物应用于了环氧树脂(E—44)中的阻燃试验。  相似文献   

6.
以三氯氧磷和乙二醇为原料,合成了一种反应型无卤阻燃剂三(2-羟乙基)磷酸酯(1),其结构和性能经1H NMR, 13C NMR, 31P NMR, IR和TGA表征。利用 THEPP制备了含磷本质阻燃硬质聚氨酯泡沫塑料(2n, n为1的加量)并研究了其阻燃性能。结果表明:1的初始分解温度为164.8 ℃, 700 ℃时的残炭率约23.8%。以20份1替代聚醚多元醇,220的极限氧指数由18.6%提高至22.5%,水平燃烧测试达到HB级并能够离火自熄。  相似文献   

7.
三聚氰胺磷酸盐阻燃剂的合成及性能表征   总被引:7,自引:0,他引:7  
以新方法合成了三聚氯胺磷酸盐自膨胀阻燃剂(MP),其结构经元素分析、XRD,TG,DSC,IR等表征。测定了含MP阻燃材料的阻燃性能,讨论了其阻燃机理及特点。用MP对聚丙烯进行阻燃处理后其氧指数可达27.1;徐覆含MP自膨胀防火涂料的五层板在模拟火灾中的耐火极限达39min,发泡倍数为90倍-100倍。  相似文献   

8.
以双季戊四醇、三季戊四醇、多聚磷酸、五氧化二磷和三聚氰胺为原料,合成了膨胀型环状类磷酸酯蜜胺盐阻燃剂,并与聚丙烯共混制成阻燃聚丙烯.红外分析表明该阻燃剂具有环状结构.通过扫描电镜和X射线衍射对阻燃聚丙烯进行了结构分析和表面纹理的表征.实验结果表明:该阻燃剂阻燃性能良好,但在聚丙烯中的分散性较差;用甲基纤维素对该阻燃剂进行表面化学修饰以后,该阻燃剂在聚丙烯中的分散性及阻燃材料的机械性能得到了明显的改善.  相似文献   

9.
三聚氰胺焦磷酸盐阻燃剂的合成及性能表征   总被引:2,自引:1,他引:2  
三聚氰胺焦磷酸盐自膨胀阻燃剂[1]无卤、低烟、低毒,其热解温度与被阻燃材料的降解温度的匹配,效果很好。本文合成了三聚氰胺焦磷酸盐(MPP)[2],用元素分析,XRD、TG、DSC、IR等表征,并对其阻燃性能进行了测定,讨论了阻燃机理。1 实验部分1.1 仪器与试剂三聚氰胺(化学纯,含量不少于98.5%,北京化工厂);焦磷酸钠(Na4P2O7·10H2O,分析纯,含量不少于99.0%,上海科昌精细化学品公司);浓硫酸(分析纯,成都新都金牛王化工厂);硝酸(分析纯,成都有机化学试剂厂)。岛津TG 50H热重分析仪和DSC 50H差热分析仪;PerKin Eimer240C元素分析仪;…  相似文献   

10.
以氯化螺环磷酸酯(1)和对甲苯胺(2)为原料,经亲核取代反应合成了三源一体的新型单分子磷-氮膨胀型阻燃剂——季戊四醇螺环磷酰对甲苯胺(3),其结构经1H NMR和IR表征。考察了溶剂、原料配比、反应温度、反应时间和缚酸剂对3产率的影响。合成3的最佳反应条件为:乙腈为溶剂,三乙胺为缚酸剂,1 10mmol,n(1)∶n(2)=1∶3,于80℃反应4 h,产率79.3%。阻燃性能研究结果表明,3的初始分解温度为220℃,500℃成炭率达43.3%。  相似文献   

11.
Poly(vinyl alcohol)/melamine phosphate composites (PVA/MP) as a novel halogen‐free, flame‐retardant foam matrix were prepared through thermal processing, and then their thermal stability and flame retardancy were investigated by thermo‐gravimetric analysis, micro‐scale combustion calorimeter, cone calorimeter, vertical burning test, and limiting oxygen index (LOI) test. It was found that the thermal stability and combustion properties of the PVA/MP composites could be influenced by the addition of MP. Compared with the control PVA sample (B‐PVA), in the PVA/MP (75/25) composites, the temperature at 5% mass loss (T5%) decreased about 10°C, the residual chars at 600°C increased by nearly 27%, the temperature at the maximum peak heat release rate (TP) shifted from 292°C to 452°C, and the total heat released and the heat release capacity (HRC) decreased by 28% and 14%, respectively. Moreover, the PVA/MP composites could reach LOI value up to 35% and UL94 classification V‐0, showing good flame retardancy. At the same time, both Fourier transform infrared and X‐ray photoelectron spectroscopy spectra of the residual chars from the PVA/MP composites demonstrated that the catalytic effect of MP on the dehydration and decarboxylation reactions of PVA, and the chemical reactivity of MP during the chars‐forming reactions could be used to account for the changed thermal stability and flame retardancy of the PVA/MP composites. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

12.
The performances of the novel intumescent flame retardant (IFR) polypropylene (PP) composites containing melamine phosphate (MP) and tris(1‐oxo‐2,6,7‐trioxa‐1‐phosphabicyclo[2,2,2]methylene‐4)phosphate (TPMP) were investigated. The flame retardancy of IFR‐PP system was characterized by limiting oxygen index (LOI) and UL 94 and cone calorimeter. The morphology of the char obtained after cone calorimeter testing was studied by scanning electron microscopy (SEM). The thermal oxidative degradation (TOD) of the composites was investigated by using thermogravimetric analysis (TGA) and real‐time Fourier transform infrared spectroscopy (RT‐FTIR). Compared with the PP/ TPMP or PP/ MP binary composite, at the same addition level, the LOI values of the PP/MP/TPMP ternary composites increase and reach V‐0 at the suitable MP/TPMP ratio. The results of TGA and RT‐FTIR showed the existence of the interaction between IFR and PP. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

13.
A comparison of melamine salt of pentaerythritol phosphate (MPP), and a synergistic agents, iron–graphene (IG) was performed in thermoplastic polyurethane (TPU) by masterbatch‐melt blending on thermal and flame retardant properties. The flame retardant properties of TPU composites were characterized by limiting oxygen index (LOI), UL 94 and cone calorimeter test (CCT). The CCT results revealed that IG can significantly enhance flame retardant properties of MPP in TPU. The peak heat release rate of neat TPU and flame retardant TPU/MPP composites decreased from 2192.6 and 226.7 to 187.2 kW/m2 compared with that of TPU containing 0.25 wt% IG. The thermal stability and thermal decomposition of TPU composites were characterized by thermogravimetric analysis (TGA) and thermogravimetric/Fourier infrared spectrum analysis (TG‐IR). The results indicated IG and MPP can improve the thermal stability of TPU. The formation of thermal conductive network by IG can promote the decomposition of MPP into nonflammable melt, which can play the role of heat barrier and restrict the diffusion of fuels into combustion zone and access of oxygen to the unburned fuels. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

14.
Melamine salt of pentaerythritol phosphate kaolin (MPPK) was synthesized by the reaction of pentaerythritol phosphate with kaolin (K) and melamine. The structure of MPPK was confirmed by EDXS, 1H NMR, FTIR, and XRD. MPPK was blended with polypropylene (PP) at different loading levels. Thermogravimetric analysis (TGA) results showed that MPPK improved the thermal stability of PP at high temperatures in all PP composites. Vertical burning rate test manifested that PP composites can achieve V0 at 20% and 25% MPPK loading levels. Cone calorimeter data exhibited that addition of 25% MPPK to PP reduced peak of heat release rate (pHRR) and total heat release (THR) by 86% and 76% and increased the char residue after test to 67%. The results of PP/25% MPPK composite were compared with the data obtained from PP containing 25% K and 25% of traditional intumescent flame retardant composed of melamine phosphate (MP), pentaerythritol (PE), and K. The outcomes indicated that MPPK was more efficient in flame retardancy than the other systems. The digital photographs and SEM images for char residue demonstrated that MPPK succeeded in forming cellular and coherent char layer on the PP surface. The main advantage of adding 25% MPPK to PP was its ability to preserve nearly the inner half of the sample without burning after cone calorimeter test.  相似文献   

15.
The flame retardancy and thermal degradation properties of polypropylene (PP) containing intumescent flame retardant additives, i.e. melamine pyrophosphate (MPyP) and charring‐foaming agent (CFA) were characterized by limiting oxygen index (LOI), UL 94, cone calorimeter, microscale combustion calorimetry, and thermogravimetric analysis (TGA). It has been found that the PP material containing only MPyP does not show good flame retardancy even at 30% additive level. Compared with the PP/MPyP binary system, the LOI values of the PP/MPyP/CFA ternary materials at the same additive loading are all increased, and UL 94 rating is raised to V‐0 from no rating (PP/MPyP). The cone calorimeter results show that the heat release rate and mass loss rate of some ternary materials decrease in comparison with the binary material. The microscale combustion calorimetry results indicate that the sample containing 22.5 wt% MPyP and 7.5 wt% CFA has the lowest heat release rate among all samples. The TGA results show that the thermal stability of the materials increases with the addition of MPyP, while decreases with the addition of CFA. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

16.
A type of trialkoxysilane‐containing naphtholoxazine compound (Naph‐boz) was successfully synthesized and combined with ammonium polyphosphate/melamine (APP/ME) as an intumescent flame retardant (IFR) to improve the flame‐retardant efficiency of polyoxymethylene (POM). The Underwriters Laboratories 94 (UL94) vertical burning test, limiting oxygen index (LOI), cone calorimeter, thermogravimetric analysis (TGA), scanning electron microscopy (SEM), and Raman spectral analysis were used to study the flame‐retardant properties and related mechanism. The results showed that the formulation with 20 wt.% of APP, 6 wt.% of ME, and 4 wt.% of Naph‐boz passed UL94 V‐1 rating, and the LOI value was improved to 40.3%. Compared with pure POM, the IFR with Naph‐boz had greater reduction in peak heat release rate (lower 74.9%) and total heat release (lower 40.2%). SEM images showed that compact and reinforcing charred layer was formed during the POM/IFR/4Naph‐boz samples combustion, which was beneficial at reducing and maintaining low combustion parameters throughout the cone calorimeter test. The synergistic flame‐retardant effect between Naph‐boz and APP/ME was considered as the reason for the improvement in flame retardancy POM. Furthermore, because of the Naph‐boz was conducive to the compatibility between the flame retardants and matrix, the notched Izod impact strength of POM/IFR/4Naph‐boz composite was higher than that of POM/IFR system.  相似文献   

17.
Due to being halogen‐free, non‐toxic, non‐erosive and environmentally friendly, melamine‐based flame retardants are attracting more and more attention. As a melamine‐based intumescent flame retardant, in this study the melamine salt of pentaerythritol phosphate (MPP) was prepared from melamine phosphate (MP) and pentaerythritol (PER). The reaction of MP with PER was then systematically investigated. The reaction product MPP was utilized to flame‐retard polypropylene (PP). FT‐IR, TGA and DSC were used to characterize MPP and also to investigate the reaction of MP and PER in depth. The experimental results show that MPP has good thermal stability and matched decomposition temperature with that of PP, making it suitable for flame retarding of PP. Also, MPP is melting‐blendable due to its softening during the heating process. The structure of MPP at a MP:PER molar ratio of 2.0 was confirmed as the same to that of the product synthesized from phosphorus oxychloride, pentaerythritol and melamine. The reaction of MP with PER was greatly influenced by the MP:PER proportion, reaction temperature and reaction time, rather than the physical state of PER, and the reaction mechanism of MP with PER was proposed. The prepared flame‐retarded polypropylene composite with 35 wt% intumescent flame‐retardant MPP has a flame retarding level of 3.2 mm UL 94 V‐0, tensile strength 27.0 MPa, Young's modulus 2442 MPa and Izod notched impact strength 3.8 kJ/m2. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

18.
A solid acid, phospho-tungstic acid (PTA), has been used to catalyze the pentaerythritol-melamine phosphate (PER-MP) reaction to synthesize intumescent flame retardant, melamine salt of pentaerythritol phosphate (MPP) used in flame retardant polypropylene (PP). This novel and environmentally friendly synthesis technology well solves the problems of conventional preparation methods. PTA plays a double-role: on one hand, it remarkably enhances the conversion of the above reaction and decreases the reaction temperature; on the other hand, it acts as an effective synergist with MPP and greatly improves the flame retardancy; accordingly, no additional process is needed to remove PTA after the reaction, and the products of the catalyzed reaction were directly incorporated with PP to prepare high-performance flame retardant materials. The catalytic and synergistic effects of PTA, as well as the flame retardancy and mechanical properties of the corresponding flame retardant PP were investigated.  相似文献   

19.
膨胀型类磷酸酯蜜胺盐阻燃剂的合成及应用研究   总被引:11,自引:0,他引:11  
以双季戊四醇(DPE)、五氧化二磷、水和三聚氰胺为原料,合成了膨胀型环状类磷酸酯蜜胺盐阻燃剂。通过实验提出了合成该阻燃剂的最佳反应条件为:双季戊四醇(DPE)、五氧化二磷、水和三聚氰胺反应物料摩尔配比为1/2.5/2.0/3.45、反应时间4h和反应温度120℃。红外吸收图谱分析表明该阻燃剂具有环状结构,在热重分析和差热分析中该阻燃剂显示出优异的热稳定性和很高的成碳性。以该阻燃剂掺入聚丙烯中,阻燃效果显著,经测试阻燃聚丙烯的极限氧指数(LOI)为33.6,烟密度等级(SDR)为44.25,通过了UL94V-0级。  相似文献   

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