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具有隔离导热网络结构的聚乙烯/氮化硼/脱硫胶粉复合材料的制备及性能
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作者 余伟业 李庆业 +2 位作者 魏凌飞 段若轩 卢灿辉 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2022年第7期168-174,182,共8页
采用熔融共混与模压成型方式制备了聚乙烯(PE)/氮化硼(BN)/废旧橡胶粉末(WRP)复合材料。WRP具有三维网络结构,可在加工过程中维持其稳定结构,迫使BN选择性分散在PE基体中形成隔离导热网络,从而提升复合材料的导热性能。在BN质量分数为30... 采用熔融共混与模压成型方式制备了聚乙烯(PE)/氮化硼(BN)/废旧橡胶粉末(WRP)复合材料。WRP具有三维网络结构,可在加工过程中维持其稳定结构,迫使BN选择性分散在PE基体中形成隔离导热网络,从而提升复合材料的导热性能。在BN质量分数为30%、PE与WRP质量比为1/2时,与未添加WRP的PE/BN复合材料相比,PE/BN/WRP复合材料的导热系数提高了37.3%,达到了1.73 W/(m·K),是纯PE的4.33倍;冲击强度提高了55.4%,达到了8.3 kJ/m~2。利用脱硫胶粉制备高导热性能复合材料为废弃硫化橡胶的高值化和功能化利用提供了新思路。 展开更多
关键词 氮化硼 聚乙烯 脱硫胶粉 导热性能 隔离导热网络
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Shear stress-induced delamination method for the mass production of Ti_(3)C_(2)Tx MXene nanosheets 被引量:1
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作者 Zehang Zhou lingfei wei +4 位作者 Ya Yi Shiyi Feng Zeying Zhan Dong Tian Canhui Lu 《Journal of Materiomics》 SCIE CSCD 2023年第6期1151-1159,共9页
MXene nanosheets are considered advantageous for functional materials,but current delamination methods to prepare MXene nanosheets have many limitations including high cost,small production scale,low efficiency,and de... MXene nanosheets are considered advantageous for functional materials,but current delamination methods to prepare MXene nanosheets have many limitations including high cost,small production scale,low efficiency,and deteriorated structure integrity of obtained nanosheets.Here,we propose a simple,efficient,and scalable shear stress-induced delamination(SSID)strategy to boost the production of single-/few-layered Ti_(3)C_(2)T_(x) MXene nanosheets.Molecular dynamics simulation indicates that the pan mill-type grinding discs create a strong hydrodynamic flow field,which exerts gigantic shear stress to substantially delaminate the multilayered MXene stacks into homogeneously dispersed MXene nanosheets.Furthermore,shear stress generated from vigorous water flow has limited fragmentation effect,ensuring large lateral size and good structure integrity to the obtained MXene nanosheets as evidenced by the morphological and structural characterizations.Compared to conventional delamination methods,this novel SSID strategy exhibits great advantages in terms of efficiency,scalability and the properties of resultant MXene nanosheets,which opens up great opportunity for the scalable production and commercialization of high-performance MXene-based materials. 展开更多
关键词 MXene nanosheets Hydrodynamic flow field Shear stress-induced delamination Structural evolution Structure integrity
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