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碳纤维/碳纳米管复合胎面胶的拉伸及耐磨性能
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作者 马云海 陈创发 +1 位作者 端木令坚 危银涛 《汽车安全与节能学报》 CAS CSCD 2019年第4期443-450,共8页
为改良汽车轮胎胎面胶的耐磨性能及力学性能,有效提升轮胎的使用寿命,研究了经硅烷偶联剂与多巴胺进行表面处理后的碳纤维及碳纳米管的用量对复合胎面胶的耐磨性能以及其拉伸强度的影响。使用二次回归正交设计的方法设计编排试验方案;... 为改良汽车轮胎胎面胶的耐磨性能及力学性能,有效提升轮胎的使用寿命,研究了经硅烷偶联剂与多巴胺进行表面处理后的碳纤维及碳纳米管的用量对复合胎面胶的耐磨性能以及其拉伸强度的影响。使用二次回归正交设计的方法设计编排试验方案;应用万能试验机及DIN磨耗仪测得了橡胶材料的力学性能及摩擦学性能;采用基于NSGA-II改进的多目标优化算法对试验指标进行优化,找出了原模型的pareto最优解集并绘制了响应曲面,并得出最佳参数组合。结果表明:当天然橡胶为82.66份,碳纳米管为7.43份,碳纤维为6份,制样后测得的实际磨耗量为139.7 mm3,断裂强度为20.8 MPa,显示出碳纤维/碳纳米管复合胎面胶具有良好耐磨性与拉伸性能。 展开更多
关键词 复合材料 碳纳米管 碳纤维 断裂强度 磨损量 多目标优化算法
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Lockdown-induced Urban Aerosol Change over Changchun, China During COVID-19 Outbreak with Polarization LiDAR 被引量:1
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作者 CHEN Weiwei duanmu lingjian +5 位作者 QIN Yang YANG Hongwu FU Jing LU Chengwei FENG Wei GUO Li 《Chinese Geographical Science》 SCIE CSCD 2022年第5期824-833,共10页
Depending on various government policies,COVID-19(Corona Virus Disease-19) lockdowns have had diverse impacts on global aerosol concentrations.In 2022,Changchun a provincial capital city in Northeast China,suffered a ... Depending on various government policies,COVID-19(Corona Virus Disease-19) lockdowns have had diverse impacts on global aerosol concentrations.In 2022,Changchun a provincial capital city in Northeast China,suffered a severe COVID-19 outbreak and implemented a very strict lockdown that lasted for nearly two months.Using ground-based polarization Light Detection and Ranging(LiDAR),we detected real-time aerosol profile parameters(EC,extinction coefficient;DR,depolarization ratio;AOD,aerosol optical depth),as well as air-quality and meteorological indexes from 1 March to 30 April in 2021 and 2022 to quantify the effects of lockdown on aerosol concentrations.The period in 2022 was divided into three stages:pre-lockdown(1-10 March),strict lockdown(11 March to 10 April),and partial lockdown(11-30 April).The results showed that,during the strict lockdown period,compared with the pre-lockdown period,there were substantial reductions in aerosol parameters(EC and AOD),and this was consistent with the concentrations of the atmospheric pollutants PM_(2.5)(particulate matter with an aerodynamic diameter ≤2.5 μm) and PM_(2.5)(particulate matter with an aerodynamic diameter ≤10 μm),and the Oconcentration increased by 8.3%.During the strict lockdown,the values of EC within0-1 km and AOD decreased by 16.0% and 11.2%,respectively,as compared to the corresponding period in 2021.Lockdown reduced the conventional and organized emissions of air pollutants,and it clearly delayed the time of seasonal emissions from agricultural burning;however,it did not decrease the number of farmland fire points.Considering meteorological factors and eliminating the influence of wind-blown dust events,the results showed that reductions from conventional organized emission sources during the strict lockdown contributed to a 30% air-quality improvement and a 22% reduction in near-surface extinction(0-2 km).Aerosols produced by urban epidemic prevention and disinfection can also be identified using the EC.Regarding seasonal sources of agricultural straw burning,the concentrated burning induced by the epidemic led to the occurrence of heavy pollution from increased amounts of atmospheric aerosols,with a contribution rate of 62%.These results indicate that there is great potential to further improve air quality in the local area,and suggest that the comprehensive use of straw accompanied by reasonable planned burning is the best way to achieve this. 展开更多
关键词 PM_(2.5)(particulate matter with an aerodynamic diameter≤2.5μm) NO2 O3 aerosol optical depth(AOD) extinction coefficient depolarization ratio COVID-19(Corona Virus Disease-19)lockdown
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