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Radiative Coupled Evaporation Cooling Hydrogel for Above-Ambient Heat Dissipation and Flame Retardancy
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作者 Qin Ye Yimou Huang +4 位作者 Baojian Yao Zhuo Chen Changming Shi Brian WSheldon Meijie Chen 《Nano-Micro Letters》 2026年第2期368-382,共15页
By combining the merits of radiative cooling(RC)and evaporation cooling(EC),radiative coupled evaporative cooling(REC)has attracted considerable attention for sub-ambient cooling purposes.However,for outdoor devices,t... By combining the merits of radiative cooling(RC)and evaporation cooling(EC),radiative coupled evaporative cooling(REC)has attracted considerable attention for sub-ambient cooling purposes.However,for outdoor devices,the interior heating power would increase the working temperature and fire risk,which would suppress their above-ambient heat dissipation capabilities and passive water cycle properties.In this work,we introduced a REC design based on an all-in-one photonic hydrogel for above-ambient heat dissipation and flame retardancy.Unlike conventional design RC film for heat dissipation with limited cooling power and fire risk,REC hydrogel can greatly improve the heat dissipation performance in the daytime with a high workload,indicating a 12.0℃lower temperature than the RC film under the same conditions in the outdoor experiment.In the nighttime with a low workload,RC-assisted adsorption can improve atmospheric water harvesting to ensure EC in the daytime.In addition,our REC hydrogel significantly enhanced flame retardancy by absorbing heat without a corresponding temperature rise,thus mitigating fire risks.Thus,our design shows a promising solution for the thermal management of outdoor devices,delivering outstanding performance in both heat dissipation and flame retardancy. 展开更多
关键词 Radiative cooling Evaporation cooling Heat dissipation Photonic hydrogel Flame retardancy
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Tailored Phosphate Glass Powders for Augmented Flame Retardancy and Ceramicization in Silicone Rubber 被引量:1
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作者 Yanbei Hou Xu Chang +6 位作者 Shuming Liu Huimin Zhang Jianwei Fu Jianbin Wu Zhiyong Li Guoqiang Tang Weizhao Hu 《Journal of Polymer Materials》 2025年第2期531-548,共18页
Silicone rubber(SR)exhibits superior breathability and high-temperature resistance.However,SR is prone to degradation under extreme heat or combustion,limiting its effectiveness in mitigating secondary hazards.In this... Silicone rubber(SR)exhibits superior breathability and high-temperature resistance.However,SR is prone to degradation under extreme heat or combustion,limiting its effectiveness in mitigating secondary hazards.In this study,phosphate glass powder was used to calcinate zinc borate,lanthanum oxide,and cerium oxide.Methylphenyl polysiloxane was then grafted onto the surface of the glass powder,resulting in the modified pow-ders designated as Methylphenyl polysiloxane-grafted zinc borate-modified phosphate glass powder(GF-ZnBM),Methylphenyl polysiloxane-grafted lanthanum oxide-modified phosphate glass powder(GF-LaM),and Methylphenyl polysiloxane-grafted cerium oxide-modified phosphate glass powder(GF-CeM).The modified powders were sub-sequently incorporated into silicone rubber composites to enhance the ceramicization capability of silicone rubber at high temperatures.Specifically,GF-CeM and GF-LaM significantly increased the limiting oxygen index(LOI)to 33%and reduced the tendency for combustion propagation.Additionally,GF-CeM notably contributed to enhancing ceramicization strength.The presence of cerium oxide helps in the melting of the glass powder and enhances its adhesion to the silicone rubber matrix.SR/ZnB-GF exhibited the lowest activation energy among the tested composites,along with the best protective capability.The inclusion of modified glass powder has a minor impact on the rheological properties,indicating that the composite retains its ability to flow and deform under stress.This confirms that the material remains flexible under normal conditions and forms a ceramic structure when heated,thereby exhibiting self-supporting properties.This study provides a practical methodology for the targeted modification of glass powders,thereby further enhancing the fire safety of silicone-based composites. 展开更多
关键词 Silicone rubber phosphate glass powder rare earth metal oxides flame retardancy ceramicization
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Design of efficient microstructured path by magnetic orientation boron nitride nanosheets/MnFe_(2)O_(4) enabling waterborne polyurethane with high thermal conductivity and flame retardancy
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作者 Hao Jiang Jindao Li +6 位作者 Yuhui Xie Hua Guo Mukun He Xuetao Shi Yi Mei Xinxin Sheng Delong Xie 《Journal of Materials Science & Technology》 2025年第6期207-218,共12页
The miniaturization and high-power density of electronic devices presents new challenges in thermal management.The precise control of microstructure arrangement,particularly in boron nitride nanosheets(BNNS),is essent... The miniaturization and high-power density of electronic devices presents new challenges in thermal management.The precise control of microstructure arrangement,particularly in boron nitride nanosheets(BNNS),is essential for achieving efficient heat dissipation in highly thermally conductive composites within electrically insulating package.In this work,manganese ferrite was hydrothermally synthesized on BNNS,creating a layered structure in a magnetically responsive nanohybrid material named BNNS@M.This material was then integrated into a waterborne polyurethane(WPU)solution and shaped under a magnetic field to produce thermally conductive film.By altering the magnetic field direction,the mi-crostructure orientation of BNNS@M was controlled,resulting in anisotropic thermally conductive com-posite films with horizontal and vertical orientations.Specifically,under a vertical magnetic field,the film 30-Ve-BNNS@WPU,containing 30 wt.%BNNS@M,achieved a through-plane thermal conductivity of 8.5 W m^(−1)K^(−1)and an in-plane thermal conductivity of 1.8 W m^(−1)K^(−1),showcasing significant anisotropic thermal conductivity.Meanwhile,these films demonstrated excellent thermal stability,mechanical per-formance,and flame retardancy.Furthermore,employing Foygel’s theory elucidated the impact of filler arrangement on thermal conductivity mechanisms and the actual application of 5 G device chips and LED lamps emphasizing the potential of these thermally conductive films in thermal management appli-cations.This investigation contributes valuable design concepts and foundations for the development of anisotropic thermally conductive composites suitable for electron thermal management. 展开更多
关键词 Magnetic response Boron nitride nanosheets Orientation arrangement Thermal conductivity Flame retardancy
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Ultralight and Anisotropic Heterocyclic Para-aramid Nanofiber/Reduced Graphene Oxide Composite Aerogel for Efficient Thermal Insulation and Flame Retardancy
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作者 Wen-Wen Wu Jian-Xun Shang +3 位作者 Na Li Yan Wang Jun-Rong Yu Zu-Ming Hu 《Chinese Journal of Polymer Science》 2025年第1期141-152,I0011,共13页
The demand for anisotropic aerogels with excellent comprehensive properties in cutting-edge fields such as aerospace is growing.Based on the above background,a novel heterocyclic para-aramid nanofiber/reduced graphene... The demand for anisotropic aerogels with excellent comprehensive properties in cutting-edge fields such as aerospace is growing.Based on the above background,a novel heterocyclic para-aramid nanofiber/reduced graphene oxide(HPAN/rGO)composite aerogel was prepared by combining electrospinning and unidirectional freeze-drying.The anisotropic HPAN/rGO composite aerogel exhibited a honeycomb morphology in the direction perpendicular to the growth of ice crystals,and a through-well structure of directed microchannels in the direction parallel to the temperature gradient.By varying the mass ratio of HPAN/rGO,a composite aerogel with an ultra-low density of 5.34-7.81 mg·cm^(-3) and an ultra-high porosity of 98%-99%was obtained.Benefiting from the anisotropic structure,the radial and axial thermal conductivities of HPAN/rGO-3 composite aerogel were 29.37 and 44.35 mW·m^(-1)·K^(-1),respectively.A combination of software simulation and experiments was used to analyze the effect of anisotropic structures on the thermal insulation properties of aerogels.Moreover,due to the intrinsic self-extinguishing properties of heterocyclic para-aramid and the protection of the graphene carbon layer,the composite aerogel also exhibits excellent flame retardancy properties,and its total heat release rate(THR)was only 5.8 kJ·g^(-1),which is far superior to many reported aerogels.Therefore,ultralight anisotropic HPAN/rGO composite aerogels with excellent high-temperature thermal insulation and flame retardancy properties have broad application prospects in complex environments such as aerospace. 展开更多
关键词 Heterocyclic para-aramid nanofiber Reduced graphene oxide ANISOTROPY Thermal insulation Flame retardancy
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Robust ambient-stable 2D heterostructure of copper oxides intercalating black phosphorus for flame retardancy and catalytic removal of carbon monoxide
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作者 Xiaoyang Yu Huan Li +3 位作者 Xuyang Miao Ning Kang Wenbin Yao Mingjun Xu 《Green Energy & Environment》 2025年第11期2297-2310,共14页
Two-dimensional black phosphorus(2D BP)utilized in flame retardant applications frequently encounters significant challenges,including inadequate ambient stability and elevated carbon monoxide(CO)release rates.To miti... Two-dimensional black phosphorus(2D BP)utilized in flame retardant applications frequently encounters significant challenges,including inadequate ambient stability and elevated carbon monoxide(CO)release rates.To mitigate these issues,an effective approach was proposed for the fabrication of 2D heterostructures comprising copper oxide intercalated with BP in this work.This methodology takes into account both thermodynamic and kinetic factors,resulting in substantial enhancements in the ambient stability of BP and the catalytic performance for CO elimination,achieved through the synergistic interactions between 2D BP and copper oxide,all while preserving the structural integrity of 2D BP.The incorporation of gelatin and kosmotropic anions facilitated the efficient adhesion of the multifunctional heterostructures to the flammable flexible polyurethane foam(FPUF),which not only scavenged free radicals in the gas phase but also catalyzed the formation of a dense carbon layer in the condensed phase.Kosmotropic anions induce a salting-out effect that fosters the development of a chain bundle,a hydrophobic interaction domain,and a potential microphase separation region within the gelatin chains,leading to a marked improvement in the mechanical strength of the heterostructure coatings.The modified FPUF exhibited a high limiting oxygen index(LOI)value of 34%,alongside significantly improved flame resistance:the peak CO release rate was reduced by 78%,the peak heat release rate decreased by 57%,and the fire performance index(FPI)was increased by 40 times compared to untreated FPUF.The 2D heterostructure coatings demonstrated better CO catalytic removal performance relative to previously reported flame retardant products.This research offers a promising design principle for the development of next-generation high-performance flame retardant coatings aimed at enhancing fire protection. 展开更多
关键词 Harmful gas elimination Flame retardancy CO catalytic removal 2D materials
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Synergistic Effect of Silicone Macromolecular Charring Agent and Ammonium Polyphosphate on Improving Flame Retardancy and Mechanical Properties of Ethylene-Butyl Acrylate Copolymer Composites
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作者 Xuan Huo Bingchen Wu +6 位作者 Yuanmeng Lou Junlin Zhu Cui Li Lili Ma Ye-Tang Pan Chuncheng Hao Xin Wen 《Journal of Polymer Materials》 2025年第2期517-530,共14页
Power cables are important pieces of equipment for energy transmission,but achieving a good balance between flame retardancy and mechanical properties of cable sheaths remains a challenge.In this work,a novel intumesc... Power cables are important pieces of equipment for energy transmission,but achieving a good balance between flame retardancy and mechanical properties of cable sheaths remains a challenge.In this work,a novel intumescent flame retardant(IFR)system containing silicone-containing macromolecular charring agent(Si-MCA)and ammonium polyphosphate(APP)was designed to synergistically improve the flame retardancy and mechanical properties of ethylene-butyl acrylate copolymer(EBA)composites.The optimal mass ratio of APP/Si-MCA was 3/1 in EBA composites(EBA/APP-Si-31),corresponding to the best flame retardancy with 31.2% of limited oxygen index(LOI),V-0 rating in UL-94 vertical burning test,and 76.4%reduction on the peak of heat release rate(PHRR)in cone calorimeter test.The enhancement mechanism was attributed to the synergistic effect of APP/Si-MCA during combustion,including the radical-trapping effect,the dilution effect of non-flammable gases,and the barrier effect of the intumescent char layer.Meanwhile,the tensile results indicated that EBA/APP-Si-31 also exhibited good mechanical properties with the addition of maleic anhydride-grafted polyethylene(PE-g-MA)as the compatibilizer.Thus,the APP/Si-MCA combination is an effective IFRs system for preparing high-performance EBA composites,and it will promote their applications as cable sheath materials. 展开更多
关键词 Ethylene-butyl acrylate copolymer intumescent flame retardants polymer composites synergistic effect cable sheath
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工业副产物CaSO_(4)用于绿色改性环氧树脂阻燃性能
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作者 张青海 陈汝盼 +1 位作者 陈俊荣 王小君 《中国塑料》 北大核心 2026年第1期120-125,共6页
针对工业副产物硫酸钙(CaSO_(4))处理难题及环氧树脂(EP)高可燃性带来的安全隐患,提出了一种将CaSO_(4)应用于EP阻燃改性的绿色解决方案。通过将CaSO_(4)与焦磷酸哌嗪(PAPP)和三聚氰胺(MEL)复配,引入EP中制备复合材料,并对其力学性能和... 针对工业副产物硫酸钙(CaSO_(4))处理难题及环氧树脂(EP)高可燃性带来的安全隐患,提出了一种将CaSO_(4)应用于EP阻燃改性的绿色解决方案。通过将CaSO_(4)与焦磷酸哌嗪(PAPP)和三聚氰胺(MEL)复配,引入EP中制备复合材料,并对其力学性能和阻燃性能进行了系统评估。结果表明,CaSO_(4)的引入对复合材料的拉伸和弯曲强度无显著影响。同时,CaSO_(4)显著提升了阻燃性能,EP/30CaSO_(4)的峰值热释放速率(pHRR)和总热释放量(THR)分别降低至322.5 kW/m^(2)和44.0 MJ/m^(2),较纯EP分别下降66.6%和49.5%;峰值烟雾释放速率(pSPR)和总烟雾释放量(TSP)分别下降53.9%和40.1%;有害气体CO和CO_(2)的释放量也分别减少71.4%和72.2%。此外,CaSO_(4)的引入显著改善了残炭结构,形成了连续致密的炭层。本研究为工业副产物的高效利用及EP阻燃改性提供了一种绿色、高效的策略,具有重要的应用价值。 展开更多
关键词 硫酸钙 环氧树脂 阻燃 绿色处理
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阻燃剂PA-TPS的制备及其对LDPE性能的影响
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作者 高岩磊 赵海洋 +3 位作者 田晓威 杨启航 张栋科 崔文广 《塑料工业》 北大核心 2026年第1期159-164,共6页
以植酸(PA)作为磷源、三苯硅醇(TPS)作为硅源,合成了一种新型阻燃剂C_(6)H_(6)O_(24)P_(6)[Si(C_(6)H_(5))_(3)]_(6)(PA-TPS),将其用于低密度聚乙烯(LDPE)的阻燃。采用红外光谱(FTIR)和X射线能量色散谱(EDS)表征了PA-TPS的结构,通过垂... 以植酸(PA)作为磷源、三苯硅醇(TPS)作为硅源,合成了一种新型阻燃剂C_(6)H_(6)O_(24)P_(6)[Si(C_(6)H_(5))_(3)]_(6)(PA-TPS),将其用于低密度聚乙烯(LDPE)的阻燃。采用红外光谱(FTIR)和X射线能量色散谱(EDS)表征了PA-TPS的结构,通过垂直燃烧、极限氧指数和锥形量热分析了LDPE及其复合材料的阻燃性,利用热失重分析了PA-TPS、LDPE及其复合材料的热稳定性,同时研究了LDPE及其复合材料的力学性能。结果表明,PA-TPS能抑制LDPE的燃烧滴落与烟雾产生,在气相和凝聚相中发挥阻燃作用。当阻燃剂PA-TPS的质量分数为20%时,LDPE的极限氧指数从18%提高到28.5%,垂直燃烧达到V-0级,峰值热释放速率(PHRR)、总热释放(THR)、峰值烟雾释放速率(SPR)、总烟雾释放(TSR)及有效燃烧热(MEHC)分别降低了52.2%、49.1%、7.1%、4.4%和41.5%,残炭率从小于1%提高到15.8%,LDPE的拉伸强度稍有增加,断裂伸长率有所下降。 展开更多
关键词 植酸 三苯硅醇 低密度聚乙烯 阻燃
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不同有机膦酸对水泥浆体缓凝效果的影响与机理
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作者 孔德玉 张蔚 +3 位作者 付雄 朱蓬莱 聂海波 张皓 《浙江工业大学学报》 北大核心 2026年第1期47-53,共7页
研究对比了有机膦酸ATMP和HEDP对水泥浆体的缓凝作用,测定并分析了两者在水泥净浆颗料表面的吸附行为和络合作用,探讨了这两种有机膦酸影响水泥浆体缓凝作用的机理。研究结果表明:有机膦酸显著延长了水泥水化的诱导期,且ATMP的缓凝效果... 研究对比了有机膦酸ATMP和HEDP对水泥浆体的缓凝作用,测定并分析了两者在水泥净浆颗料表面的吸附行为和络合作用,探讨了这两种有机膦酸影响水泥浆体缓凝作用的机理。研究结果表明:有机膦酸显著延长了水泥水化的诱导期,且ATMP的缓凝效果优于HEDP。有机膦酸对水泥浆体的缓凝效果与其在液相中的持续吸附时间有关,持续吸附时间越长,缓凝效果越好;与水泥颗粒相比,C—S—H凝胶对有机膦酸的吸附能力更强。膦酸根离子对钙离子具有络合作用,一方面与熟料表面已溶出钙离子形成络合物沉淀,另一方面与未溶出的钙离子络合而吸附在颗粒表面,形成有机膦酸络合物膜层,该膜阻碍了熟料颗粒的进一步水化,从而产生缓凝作用。 展开更多
关键词 水泥水化 有机膦酸 缓凝作用 络合作用
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绿色生物基P/N阻燃剂的制备及其环氧树脂阻燃性能研究
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作者 张青海 陈汝盼 +1 位作者 王育玲 王小君 《中国塑料》 北大核心 2026年第2期76-81,共6页
以植酸(PA)和烟酰胺(NA)为原料,制备了一种绿色环保的磷系生物基阻燃剂(PN),并将其应用于环氧树脂(EP)复合材料中。结果表明,PN的引入显著降低了EP复合材料的峰值热释放速率(pHRR)和总热释放量(THR),分别减少了41.9%和34.5%,并有效抑制... 以植酸(PA)和烟酰胺(NA)为原料,制备了一种绿色环保的磷系生物基阻燃剂(PN),并将其应用于环氧树脂(EP)复合材料中。结果表明,PN的引入显著降低了EP复合材料的峰值热释放速率(pHRR)和总热释放量(THR),分别减少了41.9%和34.5%,并有效抑制了烟雾和有害气体的释放,同时提高了残炭量;阻燃机理分析表明,PN通过固相催化形成致密炭层及气相自由基捕获和稀释作用协同实现阻燃效果;PN展现出作为高效生物基绿色阻燃剂的巨大潜力,为开发环保阻燃材料提供了新思路。 展开更多
关键词 生物基 环氧树脂 阻燃 植酸
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钼尾矿复合硬质聚氨酯泡沫的阻燃及抗老化性能研究
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作者 王亚超 冯少卿 赵江平 《消防科学与技术》 北大核心 2026年第1期175-181,共7页
为提高硬质聚氨酯泡沫(RPUF)的阻燃性和抗老化性,采用甲基膦酸二甲酯(DMMP)、壳聚糖基含9,10-二氢-9-氧杂-10-磷杂菲-10-氧化物(DOPO)阻燃剂(CS-L)与KH-550改性钼尾矿(MT)构建阻燃体系,制备了复合RPUF。通过红外光谱(FT-IR)、色差、水... 为提高硬质聚氨酯泡沫(RPUF)的阻燃性和抗老化性,采用甲基膦酸二甲酯(DMMP)、壳聚糖基含9,10-二氢-9-氧杂-10-磷杂菲-10-氧化物(DOPO)阻燃剂(CS-L)与KH-550改性钼尾矿(MT)构建阻燃体系,制备了复合RPUF。通过红外光谱(FT-IR)、色差、水接触角(WCA)、抗压强度、导热系数、极限氧指数(LOI)、垂直燃烧(UL-94)、锥形量热仪(CC)以及热重(TG)等测试方法,研究了含有不同阻燃成分的复合泡沫在老化前后的性能变化。通过计算老化前后泡沫的火灾性能指数(FPI)和火灾增长指数(FGI),评定了材料在老化后的火灾危险性。研究结果表明:DMMP/CS-L/MT复合RPUF的阻燃性和抗老化性能最好。复合泡沫的光老化和水解老化现象减弱、色差变化减小、疏水性增加、抗压性能提升、阻燃性能损失降低。 展开更多
关键词 硬质聚氨酯泡沫 固体废弃物 钼尾矿 阻燃性 抗老化性
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阻燃左旋聚乳酸/季戊四醇磷酸酯纤维及织物的制备与性能
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作者 董振峰 张安莹 +2 位作者 魏建斐 朱志国 王锐 《纺织学报》 北大核心 2026年第1期63-71,共9页
为提高可生物降解左旋聚乳酸(PLLA)材料及其织物的阻燃性能,依据PLLA和季戊四醇磷酸酯(PEPA)的特性设计了PLLA/PEPA体系,采用双螺杆熔融共混制备含40%PEPA的PLLA/PEPA母粒,通过注塑机制备含不同质量分数PEPA的PLLA/PEPA复合物,采用极限... 为提高可生物降解左旋聚乳酸(PLLA)材料及其织物的阻燃性能,依据PLLA和季戊四醇磷酸酯(PEPA)的特性设计了PLLA/PEPA体系,采用双螺杆熔融共混制备含40%PEPA的PLLA/PEPA母粒,通过注塑机制备含不同质量分数PEPA的PLLA/PEPA复合物,采用极限氧指数仪、垂直燃烧仪、锥形量热仪和万能试验机等手段研究PEPA质量分数对PLLA阻燃性能和力学性能的影响,并对综合性能最佳复合物的可纺性及纤维的力学性能和织物的阻燃性能进行评价。结果表明:当PEPA质量分数为5%时,复合物的极限氧指数(LOI值)达到32%,UL-94等级为V-0级,引燃时间延长约25 s,且经工业生产线纺丝实验证实该复合物具有良好的可纺性,纤维的断裂强度为2.38 cN/dtex,将其织成153 g/m^(2)的缎纹织物进行性能检测,织物的LOI值约33%,垂直燃烧测试无熔滴且水洗30次后阻燃性能未降低,表明该体系获得的织物具有良好的阻燃耐水洗性。阻燃机制研究表明,PEPA提高PLLA阻燃性能是捕捉自由基机制、凝聚相阻燃机制和交联致熔体增黏三者共同作用的结果。 展开更多
关键词 聚乳酸 季戊四醇磷酸酯 阻燃性能 可纺性 极限氧指数 引燃时间
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重复经颅磁联合头皮针治疗小儿精神发育迟滞肝肾不足型40例临床观察
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作者 邓莹 胡继红 +3 位作者 张玲 王艳 漆带丽 刘月余 《中医儿科杂志》 2026年第1期68-73,共6页
目的观察重复经颅磁联合头皮针治疗小儿精神发育迟滞(MR)肝肾不足型的临床疗效。方法选取2023年4月至2024年4月湖南省儿童医院康复中心电子病例信息数据库中6~15岁的MR肝肾不足型患儿150例,根据治疗方法不同分为颅磁组39例,头皮针组42例... 目的观察重复经颅磁联合头皮针治疗小儿精神发育迟滞(MR)肝肾不足型的临床疗效。方法选取2023年4月至2024年4月湖南省儿童医院康复中心电子病例信息数据库中6~15岁的MR肝肾不足型患儿150例,根据治疗方法不同分为颅磁组39例,头皮针组42例,联合组69例,使用倾向得分匹配法(PSM)对3组的一般资料进行匹配,匹配成功20对,颅磁组和头皮针组各20例,联合组40例。头皮针组予头皮针治疗,颅磁组予重复经颅磁治疗,联合组给予头皮针及重复经颅磁联合治疗,3组均30 d为1个疗程,治疗3个疗程后统计疗效。结果治疗前3组的发育商(DQ)评分比较,差异无统计学意义(P>0.05),具有可比性;治疗后3组的精细动作、大动作、语言、社交、适应性评分均显著升高,与同组治疗前比较,差异均有统计学意义(P<0.05),联合组显著高于颅磁组和头皮针组(P<0.05),颅磁组与头皮针组比较,差异无统计学意义(P>0.05)。治疗前3组的社会适应能力评分比较,差异无统计学意义(P>0.05),具有可比性;治疗后3组的独立生活、交往、自我管理、作业、运动评分均显著升高,与同组治疗前比较,差异均有统计学意义(P<0.05),联合组显著高于颅磁组和头皮针组(P<0.05),颅磁组与头皮针组比较,差异无统计学意义(P>0.05)。治疗前3组的血气指标水平比较,差异无统计学意义(P>0.05),具有可比性;治疗后3组的酸碱度(pH)值、二氧化碳分压(PCO_(2))、剩余碱(BE)、碳酸氢根(HCO_(3)^(-))水平均显著升高,与同组治疗前比较,差异均有统计学意义(P<0.05),联合组显著高于颅磁组和头皮针组(P<0.05),颅磁组与头皮针组比较,差异无统计学意义(P>0.05)。联合组的总有效率为95.00%(38/40),显著高于颅磁组的75.00%(15/20)和头皮针组的70.00%(14/20),差异均有统计学意义(P<0.05),颅磁组与头皮针组比较,差异无统计学意义(P>0.05)。结论重复经颅磁联合头皮针治疗小儿MR肝肾不足型疗效显著,可显著促进患儿智力发育,改善神经功能,提高社会适应能力,值得临床推广应用。 展开更多
关键词 精神发育迟滞 小儿 肝肾不足型 重复经颅磁 头皮针 临床观察
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DISPERSION OF GRAPHENE OXIDE AND ITS FLAME RETARDANCY EFFECT ON EPOXY NANOCOMPOSITES 被引量:2
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作者 于中振 宋怀河 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2011年第3期368-376,共9页
Graphene oxide was prepared by ultrasonication of completely oxidized graphite and used to improve the flame retardancy of epoxy. The epoxy/graphene oxide nanocomposite was studied in terms of exfoliation/dispersion, ... Graphene oxide was prepared by ultrasonication of completely oxidized graphite and used to improve the flame retardancy of epoxy. The epoxy/graphene oxide nanocomposite was studied in terms of exfoliation/dispersion, thermal stability and flame retardancy. X-ray diffraction and transmission electron microscopy confirmed the exfoliation of the graphene oxide nanosheets in epoxy matrix. Cone calorimeter measurements showed that the time to ignition of the epoxy/graphene oxide nanocomposite was longer than that of neat epoxy. The heat release rate curve of the nanocomposite was broadened compared to that of neat epoxy and the peak heat release rate decreased as well. 展开更多
关键词 Graphene oxide EPOXY NANOCOMPOSITE Flame retardancy.
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Synthesis, Characterization of Phosphorus Containing Diamide-diimide-tetraamines Based on L-Tryptophan Amino Acid and Their Effect on Flame Retardancy of Epoxy Resins 被引量:1
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作者 Seema Agrawal Anudeep Kumar Narula 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2014年第2期197-208,共12页
The curing behavior of diglycidyl ether of bisphenol-A (DGEBA) with different phosphorus containing diamidediimide-tetraamines (DADITAs) was studied by DSC. Eight DADITAs of varying structures were synthesized by ... The curing behavior of diglycidyl ether of bisphenol-A (DGEBA) with different phosphorus containing diamidediimide-tetraamines (DADITAs) was studied by DSC. Eight DADITAs of varying structures were synthesized by reacting 1 mole of pyromellitic anhydride (PMDA)/3,3'-benzophenone tetracarboxylic dianhydride (BTDA)/1,4,5,8-naphthalene tetraearboxylic dianhydride (NTDA)/4,4'-oxydiphthalic anhydride (ODPA) with 2 mole of L-tryptophan (T) in a mixture of acetic acid and pyridine (3:2 V/V) followed by activaton with thionyl chloride and then condensation with excess of phosphorus containing triamines tris(3-aminophenyl) phosphine (TAP) and tris(3-aminophenyl) phosphine oxide (TAPO). DADITAs obtained by reacting PMDA/BTDA/NTDA/ODPA with L-tryptophan followed by condensation with TAP/TAPO were designated as PTAP, PTAPO, BTAP, BTAPO, NTAP, NTAPO, OTAP and OTAPO respectively. The structural characterization of synthesized DADITAs was done by FTIR, ~H-NMR, I3C-NMR, 31p-NMR spectroscopic techniques and elemental analysis. Thermal stability of the isothermally cured epoxy was investigated using dynamic thermogravimetry analysis. The glass transition temperature (Tg) was highest in DGEBA cured using PTAP. All epoxy thermosets exhibited excellent flame retardancy, moderate changes in Tg and thermal stability. Due to presence of phosphorus in curing agents, all epoxy resin systems met the UL-94 V-0 classification and the limiting oxygen index (LOI) reached up to 38.5, probably because of the nitrogen-phosphorus synergistic effect. 展开更多
关键词 Diamide-diimide-tetraamines DGEBA Curing behavior Thermal stability Flame retardancy.
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AN EVA/UNMODIFIED NANO-MAGNESIUM HYDROXIDE/SILICONE RUBBER NANOCOMPOSITE WITH SYNERGISTIC FLAME RETARDANCY 被引量:1
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作者 乔金樑 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2007年第5期437-440,共4页
A novel EVA/unmodified nano-magnesium hydroxide (NMH)/silicone rubber ternary nanocomposite was prepared by using a special compound flame retardant of NMH and silicone rubber (CFR). The flammability of the ternar... A novel EVA/unmodified nano-magnesium hydroxide (NMH)/silicone rubber ternary nanocomposite was prepared by using a special compound flame retardant of NMH and silicone rubber (CFR). The flammability of the ternary composite was studied by cone calorimeter test (CCT). Synergistic effect on flame retardancy was found between silicone rubber and NMH. EVA/CFR ternary nanocomposite showed the lowest peak heat release rate (PHRR) and mass loss rate (MLR) among the samples of virgin EVA, EVA composites. The synergistic flame retardancy of silicone rubber and NMH in EVA system is attributed to the enhanced char layers in the condensed phase that prevents the heat and mass transfer in the fire. 展开更多
关键词 EVA Nano-magnesium hydroxide Silicone rubber Flame retardancy.
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改性聚磷酸铵协同THEIC阻燃LDPE性能研究
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作者 杨帅 王固霞 +5 位作者 丁立洋 董庭轩 李依鹏 兰亚坤 李丹 郭生伟 《塑料科技》 北大核心 2026年第1期20-26,共7页
为提高低密度聚乙烯(LDPE)的阻燃性能,研究采用多级包覆改性技术,采用脲醛树脂(UF)、异辛酸三(2-羟乙基)酯(THEIC)、正硅酸四乙酯(TEOS)和乙烯基三乙氧基硅烷(A-151)对聚磷酸铵(APP)进行改性,制备改性APP(UFT@Si-APP)。然后,将UFT@Si-AP... 为提高低密度聚乙烯(LDPE)的阻燃性能,研究采用多级包覆改性技术,采用脲醛树脂(UF)、异辛酸三(2-羟乙基)酯(THEIC)、正硅酸四乙酯(TEOS)和乙烯基三乙氧基硅烷(A-151)对聚磷酸铵(APP)进行改性,制备改性APP(UFT@Si-APP)。然后,将UFT@Si-APP与THEIC复配,获得一种膨胀型阻燃剂(IFR),用于LDPE中。结果表明:添加UFT@Si-APP后,LDPE复合材料的阻燃性能得到显著改善,特别是在引入质量分数20.0%UFT@Si-APP和质量分数10.0%THEIC,LDPE复合材料的极限氧指数(LOI)达到29.8%,通过垂直燃烧(UL-94)V-0等级测试。此外,LDPE/UFT@Si-APP/THEIC复合材料的拉伸强度达到12.0 MPa,断裂伸长率为284.0%,创新性地解决了阻燃剂添加与力学性能衰减的技术矛盾。 展开更多
关键词 低密度聚乙烯 膨胀型阻燃剂 聚磷酸铵 改性 阻燃性能
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An Approach to the Flame Retardancy of EVA Copolymer by Plasma Treatmentc2
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作者 施来顺 王建祺 《Journal of Beijing Institute of Technology》 EI CAS 1997年第4期17-24,共8页
An attempt was made in the paper aiming at imparting flame retardancy to polymers by plasma grafting technique Based on EVA copolymers with different VA contents the author tried to use the Ar plasma followed by graf... An attempt was made in the paper aiming at imparting flame retardancy to polymers by plasma grafting technique Based on EVA copolymers with different VA contents the author tried to use the Ar plasma followed by grafting with/without subsequent saponification and metal ion exchange expediting the charring of polymers upon heationg Characterization of the flammability of the plasma treated EVA copolymers grafted with acrylic monomers(MAA,AA and AAm)indicates that this approach turns out to be a promising way and worthy doing whatever in research and/or applications 展开更多
关键词 flame retardancy surface grafting plasma EVA copolymer methylacrylic acid acrylic acid ACRYLAMIDE
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P/N/B协效阻燃剂的合成及在水性丙烯酸涂料中的应用
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作者 兰昊 张强 +3 位作者 唐凌君 胡英元 谢凤鸣 赵鑫 《材料导报》 北大核心 2026年第4期248-253,共6页
本工作设计合成了一种新型的P/N/B协效阻燃剂PBPO,在表征其结构的基础上,研究了其在水性丙烯酸涂料中的阻燃性能和阻燃机理。研究表明,PBPO加入量为15%(质量分数)时制得的A/PBPO 15涂层的极限氧指数(LOI)达28.7%,与空白样相比,其LOI提高... 本工作设计合成了一种新型的P/N/B协效阻燃剂PBPO,在表征其结构的基础上,研究了其在水性丙烯酸涂料中的阻燃性能和阻燃机理。研究表明,PBPO加入量为15%(质量分数)时制得的A/PBPO 15涂层的极限氧指数(LOI)达28.7%,与空白样相比,其LOI提高36.7%,热释放速率(HRR)降低26.1%,总热释放量(THR)从73.34 MJ/m^(2)降至65.42 MJ/m^(2)。阻燃机理研究表明,PBPO在热解后会生成大量的酸性物质和不燃性气体,促进了脱水炭化和炭层膨胀,同时硼酸热解生成的氧化硼在熔融后会增加炭层厚度和致密性,从而使PBPO表现出优良的协同阻燃性能。 展开更多
关键词 协效阻燃剂 合成 阻燃性能 水性丙烯酸涂料
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间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺织物的制备及其性能
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作者 康青青 尉霞 +1 位作者 吴磊 宋红 《毛纺科技》 北大核心 2026年第1期15-22,共8页
为改善含间位芳纶织物的吸湿速干性和服用性,通过混纺设计,以间位芳纶、吸湿排汗涤纶以及阻燃Lyocell纤维为原料,制备不同混纺比的纱线及其织物,并对其综合性能进行测试评估。结果表明:间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺比为90... 为改善含间位芳纶织物的吸湿速干性和服用性,通过混纺设计,以间位芳纶、吸湿排汗涤纶以及阻燃Lyocell纤维为原料,制备不同混纺比的纱线及其织物,并对其综合性能进行测试评估。结果表明:间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺比为90/5/5、75/15/10、60/25/15的织物具有阻燃性能,混纺比为45/35/20、30/45/25的织物不具有阻燃性能;除渗透面吸水速率外,混纺比为90/5/5、75/15/10、60/25/15的3种阻燃织物吸湿速干性的浸水面和渗透面浸湿时间、浸水面吸水速率、渗透面最大浸湿半径、渗透面液态水扩散速度均≥3级;在3种阻燃织物中,混纺比为75/15/10织物的透气率、抗弯刚度、芯吸高度和透湿率分别为2602.4 mm/s、0.776 mN·cm、220.0 mm、3930.86 g/(d·m^(2)),明显高于另外2种混纺比例下的织物,混纺比为75/15/10织物的回潮率为6.25%,起毛起球等级为3,综合服用性能最好;与经面缎纹、经重平2种变化组织相比,经山形组织织物浸水面、渗透面吸水速率为38.38%、24.84%,渗透面最大浸湿半径为25 mm,渗透面液态水扩散速度为7.65 mm/s,各项性能指标均达到3级标准,吸湿速干性能最佳。综上,当间位芳纶/吸湿排汗涤纶/阻燃Lyocell纤维混纺比为75/15/10、经山形组织织物的吸湿速干性和服用性最佳,且具有良好的阻燃性。 展开更多
关键词 间位芳纶 吸湿排汗涤纶 阻燃Lyocell纤维 阻燃性 吸湿速干性 服用性
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