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氯化聚乙烯的氯分布与阻燃性质的研究
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作者 王利生 李世军 王丽杰 《高分子材料科学与工程》 EI CAS CSCD 北大核心 1998年第1期126-127,共2页
分别采用热失重分析、差示扫描量热分析、残余结晶度分析等方法研究相同含氯量不同氯分布的氯化聚乙烯(CPE)的燃烧性质(氧指数)的变化,所得结果对CPE作为阻燃材料用途时(如采用CPE制造阻燃电缆料等)的选择原则首次提供... 分别采用热失重分析、差示扫描量热分析、残余结晶度分析等方法研究相同含氯量不同氯分布的氯化聚乙烯(CPE)的燃烧性质(氧指数)的变化,所得结果对CPE作为阻燃材料用途时(如采用CPE制造阻燃电缆料等)的选择原则首次提供了实验依据。 展开更多
关键词 氯化聚乙烯 氯分布 热分析 阻燃性质 聚乙烯
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Ems-Chemie推出新型Nexylon FR阻燃纤维
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《工程塑料应用》 CAS CSCD 北大核心 2013年第10期114-114,共1页
不久前,特殊化学品供应商Ems-Chemie公司成功推出一款新型NexylonFR阻燃纤维。据悉,NexylonFR是一种具有阻燃性质的尼龙(PA)纤维,其拥有与普通PA66纤维相似的力学性能。该PA纤维与棉混合制成的织物强度极高。NexylonFR织物的限氧... 不久前,特殊化学品供应商Ems-Chemie公司成功推出一款新型NexylonFR阻燃纤维。据悉,NexylonFR是一种具有阻燃性质的尼龙(PA)纤维,其拥有与普通PA66纤维相似的力学性能。该PA纤维与棉混合制成的织物强度极高。NexylonFR织物的限氧指数为28%,属于不可燃型物质。该新型NexylonFR阻燃纤维的染色率和强度与传统PA纤维类似,然而以该纤维制作而成的衣物却有极好的耐磨性。当织物中NexylonFR纤维质量分数为30%~45%时,其耐磨性可得以有效提高,使用时间也相应延长。 展开更多
关键词 阻燃纤维 织物强度 PA纤维 阻燃性质 力学性能 PA66 限氧指数 质量分数
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含有机粘土的阻燃聚烯烃
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《化工矿物与加工》 CAS 北大核心 2002年第12期43-43,共1页
关键词 有机粘土 阻燃聚烯烃 纳米材料 阻燃性质
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新型Nexylon FR聚酰胺阻燃纤维
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《毛麻科技信息》 2013年第11期5-6,共2页
瑞士特殊化学品供应商Ems-Chemie公司成功推出一款新型Nexylon FR阻燃纤维、该纤维是一种具有阻燃性质的聚酰胺纤维.具有以下特点:
关键词 聚酰胺纤维 阻燃纤维 阻燃性质 供应商 化学品
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技术开发
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《印染》 北大核心 2013年第19期57-58,共2页
新型NexylonFR聚酰胺阻燃纤维 瑞士特殊化学品供应商Ems—Chemie公司成功推出一款新型NexylonFR阻燃纤维。该纤维是一种具有阻燃性质的聚酰胺纤维,具有以下特点:
关键词 技术开发 聚酰胺纤维 阻燃纤维 CHEMIE 阻燃性质 EMS 供应商 化学品
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Effect of dosage of expandable graphite,dimethyl methylphosphonate,triethanolamine,and isocyanate on fluidity,mechanical,and flame retardant properties of polyurethane materials in coal reinforcement 被引量:5
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作者 Hu Xiangming Wang Deming Cheng Weimin 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第2期345-352,共8页
In this study,orthogonal experiments were conducted to investigate the influence of expandable graphite(EG),dimethyl methylphosphonate(DMMP),triethanolamine(TEA),and isocyanate content on the compressive and bonding s... In this study,orthogonal experiments were conducted to investigate the influence of expandable graphite(EG),dimethyl methylphosphonate(DMMP),triethanolamine(TEA),and isocyanate content on the compressive and bonding strengths,oxygen index,and fluidity of rigid polyurethane foam(RPUF).The results revealed that EG significantly increased the oxygen index of RPUF,enlarged the diameter of foam cells,and decreased the cell-closed content in foam;thus,leading to a pressure drop in RPUF.However,excessive EG was capable of reducing the fluidity of polyurethane slurry.TEA exhibited significant influence on the compressive strength of RPUF,which dropped initially,and then increased.DMMP had a remarkable effect on the flame retardant property and compressive strength of RPUF.Compressive strength of RPUF initially displayed an increase followed by a decrease with increasing dosage of DMMP,and achieved the maximum value at DMMP dosage of 4%.DMMP could effectively reduce the diameter of RPUF cells leading to an increase in the percentage of close area in foam.DMMP displayed the flame-retardation effects mainly in the gas phase leading to a significant enhancement in the oxygen index of RPUF.Moreover,the compressive strength and bonding strength of RPUF decrease significantly with the increase of isocyanate content due to the increased blowing efficiency by the CO_2.The oxygen index and flowing length of foam increased with the increase in isocyanate dosage. 展开更多
关键词 Rigid polyurethane foam Expandable graphite Compressive strength Flame retardant Scanning electron microscopy(SEM) Microstructure
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An Improved Heat Transfer Model for Flame Resistant Fabric Used in Thermal Protective Clothing
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作者 朱方龙 张渭源 孙晓锋 《Journal of Donghua University(English Edition)》 EI CAS 2008年第6期664-669,共6页
An improved numerical heat transfer model considering pyrolysis effect is proposed to predict thermal performance of heat-resistant fabric subjected to radiant heat flux. The model incorporates the heat-induced change... An improved numerical heat transfer model considering pyrolysis effect is proposed to predict thermal performance of heat-resistant fabric subjected to radiant heat flux. The model incorporates the heat-induced changes in fabric thermophysical properties. The new model has been validated with data from modified Radiant Protective Performance (RPP) tests of flame-resistant cotton fabrics. Comparison with experimental data shows that the predictions of mass loss rates and temperature profiles within the charring material and skin simulant are in reasonably good agreement with the experiments. Results from the numerical model contribute to a better understanding of the heat transfer process within flame-resistant fabrics under high heat flux conditions, and also to establish a systematic method for analyzing heat transfer in other fibrous materials applications. 展开更多
关键词 heat transfer model flame resistant fabric PYROLYSIS
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一种不加阻燃剂的阻燃聚氨酯泡沫塑料
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作者 《精细与专用化学品》 CAS 1996年第4期11-11,共1页
日本Asahi Glass公司开发成功一种聚氨酯泡沫塑料用阻燃级接枝聚合多元醇,并开始在市场上销售。采用这种阻燃级多元醇制聚氨酯泡沫塑料无须再往聚氨酯中添加阻燃剂,从而降低了这种泡沫塑料的生产成本。
关键词 阻燃聚氨酯泡沫塑料 卤素阻燃 聚合多元醇 接枝聚合物 生产成本 阻燃 Glass公司 泡沫材料 阻燃性质 氨基塑料
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