利用锥形量热仪研究了表面处理剂对膨胀阻燃体系的影响;
The influence of surface preparation agents on intumescent flame retardant system was researched by cone calorimeter.
就近年来国内外P - N型膨胀阻燃剂的合成及应用进展情况作简要综述。
The synthesis and application of the P-N intumescent flame retardant in the world in recent year have been summarized in this paper.
采用水热合成的方法制备多种多孔金属磷酸盐,并将其与膨胀阻燃剂组成新型聚丙烯协效阻燃体系。
Some porous metal phosphates were prepared by hydrothermal synthesis, and were used in the intumescent flame retardant PP.
扫描电子显微镜观测发现,经IFR阻燃的ABS在燃烧时形成了由无数封闭孔洞构成的蓬松焦化炭层,表明IFR对ABS具有良好的膨胀阻燃效果。
SEM observation revealed that puffy coking charred layers were formed by lots of closed bubbles in ABS specimen filled with IFR after burning.
磷氮类膨胀型阻燃剂(ifr)阻燃塑料存在着吸湿性大、热稳定性和相容性差等缺点,通过对ifr的表面处理、微胶囊化、协同阻燃以及使用“三位一体”型ifr可以减低上述缺点,提高膨胀阻燃塑料的综合性能。
The comprehensive performance of the flame retardant plastics can be improved through surface treatment, microcapsule and synergistic flame retardant of IFR as well as applied using trinity-IFR.
新型毛毡阻燃剂以红磷为基础,配以膨胀石墨、螯合剂、促进剂合成。
A new type of flame retardant for felt was synthesized using red phosphorus, expanded graphite, chelating agent and accelerating agent.
考察了分子筛在自制膨胀型阻燃体系(IFR)中的协效催化作用。
The synergism of zeolite in selfmade intumescent flame retardant(IFR) was studied.
通过对复合材料的氧指数测定表明,添加了可膨胀石墨的复合材料具有良好的阻燃特性,但膨胀石墨对于复合材料的阻燃效应贡献甚微。
By means of the test of LOI (limited oxygen index), it is showed that composites have good flame-retardant characteristics and expanded graphite has less contribution to the flame -retardant effect.
燃烧过程中有发泡膨胀现象,样品离火后迅速炭化自熄,无熔融、滴落现象,发烟量小,是一类较好的膨胀型阻燃剂。
The samples foam and expand during the combustion process, and they carbonize and extinguish right after being deviated from fire, without melting and dropping and with low smoking.
制备新型的单分子磷-氮类膨胀型阻燃剂(TPA),采用微胶囊化红磷(mrp)与TPA复配阻燃剂,制备具有良好阻燃性能的无卤阻燃abs。
Novel intumescent flame retardant (TPA) was prepared, and halogen-free retardant ABS composites were prepared by microencapsulated red phosphorus (MRP) and TPA as flame retardants.
采用热重分析(TGA)、红外光谱分析(FTIR)、氧指数测定和垂直燃烧实验,研究了所合成的膨胀型阻燃剂对聚丙烯的阻燃作用。
Thermal gravimetric analysis(TGA), FTIR, Limited oxygen index(LOI) and vertical firing test are used to research the flame retardancy of the intumescent flame retardant on PP.
结果表明,与传统的化学膨胀型防火涂料相比,可膨胀石墨防火涂料在热降解、阻燃性、耐老化性、耐候性能等方面具有突出的优点。
Experimental data show that the physical flame retardant coatings possess more advantages over the chemical coatings as to the aging resistance, water resistance and flame retardancy.
本研究采用膨胀蛭石作为阻燃剂,在实验室试制出了用作防火门芯层材料的三明治结构阻燃刨花板。
A sandwich structure fire-retardant particleboard, which aimed for the core material of fireproofing doors, was prepared in laboratory using heat-expanded vermiculite as a fire-retardant material.
综述了三聚氰胺用于膨胀型阻燃剂中的最新进展;论述了三聚氰胺在阻燃塑料中的应用。
The recent advances in the application of melamine to intumescent flame retardant are summarized, and the applications of melamine in flame retardant plastics are discussed.
实验证明涂料的防火性能与树脂基体、阻燃体系、可膨胀石墨、颜填料的用量密切相关。
The experiments indicate that the fire-endurance effect was consanguineously correlative with dosages of the matrix resins, flame-retardant system, expandable graphite and pigment-fillers.
研制出一种以乙醇改性共混树脂为基料,磷酸和淀粉为阻燃剂的膨胀型透明耐水阻燃涂料。
An expandable transparent, waterproof and flame retarding coating has been developed with ethanol-modified mixed resin as basic material and phosphoric acid and starch as flame retardant.
聚磷酸铵(APP)是一种重要的无机阻燃剂,是膨胀型阻燃剂的主要成分之一。
Ammonium polyphosphate (APP) is an important inorganic flame retardant, which is used as one of the main ingredients of intumescent flame retardants.
由该涂料制得的涂层遇火发泡膨胀,形成具有一定厚度的密实微孔状阻燃层,从而提高了钢结构的耐火极限。
The coatings film will be dilatated when contacted to fire, forming a high dense and micro-porous fire proofing layer to prolong the fire retardant limit of steel structures.
用锥形量热法研究了膨胀型阻燃剂对低密度聚乙烯燃烧和发烟性能的影响。
The effect of intumescent flame retardant(IFR)on the combustion and smoke of low-density polyethylene(LDPE)was studied by cone calorimeter.
研究了螺环磷酸酯阻燃剂、齐聚物型磷酸酯阻燃剂和有机磷膨胀型阻燃剂在PP、PVC、PU利PET无纺布中的应用。
The application of spirocyclic phosphates, phosphate oligomers and organophosphorous intumescent fire-proofing agents in PP, PVC, PU and nonwoven fabrics of PET were studied.
前言:以改性脲醛树脂为基料,磷酸和淀粉为阻燃剂制得膨胀型透明防火涂料。
A transparent dilatant fireproof coating was prepared, based on a modified urea-formaldehyde resin as binder, and phosphoric acid and starch as fire retardant.
以对塑料有较好粘接力的复合树脂为基料,配以阻燃剂,制成用于塑料的膨胀型防火罩面剂。
This paper adopts mix resin with good adhesive to plastic for base material, match anti flammability agent, made expand anti_fire cover agent used to plastic.
通过焦磷酸与三聚氰胺在溶剂中直接作用合成了膨胀型阻燃剂焦磷酸三聚氰胺。
The intumescent flame retardant melamine pyrophosphate was prepared by melamine and pyrophosphoric acid in solvent.
实验中分别用它与膨胀石墨来阻燃高回弹聚氨酯软泡并进行了二者协同阻燃聚氨酯软泡的研究。
In this paper, RDP was used as a single flame retardant of resilience polyurethane foam, and used together with exfoliated graphite (EG) as synergistic flame retardant.
粒径和可膨胀倍数较大的EG具有更好的阻燃增效作用。
The EG with bigger particle size and higher expansion ratio usually has better flame-retardant synergistic effect.
以改性脲醛树脂为基料,磷酸和淀粉为阻燃剂制得膨胀型透明防火涂料。
A transparent dilatant fireproof coating was prepared, based on a modified urea-formaldehyde resin as binder, and phosphoric acid and starch as fire retardant.
通过微胶囊化技术合成了新型磷氮体系无卤膨胀型阻燃剂( IFR),采用IFR提高聚丙烯(PP)的阻燃性能。
The novel intumescent flame retardant, which was prepared by microencapsulation, was used for the preparation of expansion flame retardant polypropylene(PP).
近年来膨胀型阻燃剂(ifr)的研究受到普遍关注,在IFR的合成、应用以及热分解动力学等方面取得了一定进展。
Intumescent flame retardant (IFR) has attracted more interest recently. The late progress the synthesis, application of pyrolysis dynamics of IFR has been reported frequently.
计算得到聚乙烯的火灾危险指数为63.24,添加膨胀型阻燃剂聚乙烯火灾危险指数为58.00,pbt火灾危险指数为90.91。
The calculated fire-safety indexes for PE, fire-retardant PE, and PBT were 63. 24, 58. 00 and 90. 91, respectively.
研究了三聚氰胺磷酸盐(M P)和季戊四醇(PER)作为膨胀型阻燃剂(ifr)在乙烯-醋酸乙烯酯共聚物(EVA)中的阻燃作用。
Flame retardation of EVA copolymer using melamine phosphate (MP) and pentaerythritol (PER) as intumescent flame retardants (IFR) was investigated.
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