Graphene nanoplatelets(GNPs)have attracted tremendous interest due to their unique properties and bonding capabilities.This study focuses on the effect of GNP dispersion on the mechanical,thermal,and morphological beh...Graphene nanoplatelets(GNPs)have attracted tremendous interest due to their unique properties and bonding capabilities.This study focuses on the effect of GNP dispersion on the mechanical,thermal,and morphological behavior of GNP/epoxy nanocomposites.This study aims to understand how the dispersion of GNPs affects the properties of epoxy nanocomposite and to identify the best dispersion approach for improving mechanical performance.A solvent mixing technique that includes mechanical stirring and ultrasonication was used for producing the nanocomposites.Fourier transform infrared spectroscopy was used to investigate the interaction between GNPs and the epoxy matrix.The measurements of density and moisture content were used to confirm that GNPs were successfully incorporated into the nanocomposite.The findings showed that GNPs are successfully dispersed in the epoxy matrix by combining mechanical stirring and ultrasonication in a single step,producing well-dispersed nanocomposites with improved mechanical properties.Particularly,the nanocomposites at a low GNP loading of 0.1 wt%,demonstrate superior mechanical strength,as shown by increased tensile properties,including improved Young's modulus(1.86 GPa),strength(57.31 MPa),and elongation at break(4.98).The nanocomposite with 0.25 wt%GNP loading performs better,according to the viscoelastic analysis and flexural properties(113.18 MPa).Except for the nanocomposite with a 0.5 wt%GNP loading,which has a higher thermal breakdown temperature,the thermal characteristics do not significantly alter.The effective dispersion of GNPs in the epoxy matrix and low agglomeration is confirmed by the morphological characterization.The findings help with filler selection and identifying the best dispersion approach,which improves mechanical performance.The effective integration of GNPs and their interaction with the epoxy matrix provides the doorway for additional investigation and the development of sophisticated nanocomposites.In fields like aerospace,automotive,and electronics where higher mechanical performance and functionality are required,GNPs'improved mechanical properties and successful dispersion present exciting potential.展开更多
传统互联网为实现端到端安全、可靠、实时的网络业务保障,需要在网元节点部署多类组网服务。然而,现有大多数网络设备只提供网络接入和路由等服务功能,缺乏安全、可靠、实时的服务设计。基于开源网络操作系统(software for open network...传统互联网为实现端到端安全、可靠、实时的网络业务保障,需要在网元节点部署多类组网服务。然而,现有大多数网络设备只提供网络接入和路由等服务功能,缺乏安全、可靠、实时的服务设计。基于开源网络操作系统(software for open networking in the cloud,SONiC)、容器技术和行为树设计一种组网服务管控架构及调度方法,实现面向网络业务保障的组网服务部署,将组网服务部署可编程网络设备进行统一管理和调度,并进行仿真测试。所述组网服务管控架构及调度方法进一步增强了网络设备能力,利用行为树高效协调管控调度过程中的状态转化,保障组网服务的交付质量。展开更多
目的:研究大鼠胃癌前病变形成过程中胃黏膜Sonic Hedgehog(Shh)信号通路的变化。方法:72只乳鼠随机分为正常组36只,造模组36只,雌雄各半。造模组灌服800 mg/L的1-甲基-3-硝基-1-亚硝基胍(MNNG)0.1 m L/d,正常组灌服生理盐水0.1 m L/d,共...目的:研究大鼠胃癌前病变形成过程中胃黏膜Sonic Hedgehog(Shh)信号通路的变化。方法:72只乳鼠随机分为正常组36只,造模组36只,雌雄各半。造模组灌服800 mg/L的1-甲基-3-硝基-1-亚硝基胍(MNNG)0.1 m L/d,正常组灌服生理盐水0.1 m L/d,共10 d。随后在实验观察第10周、22周、34周末每组分别雌雄各处死6只。HE染色检测胃黏膜组织病理学变化,q RTPCR法检测胃黏膜组织Shh、Ptch1、Smo、Gli1、Gli2、Gli3、Su Fu、Cyclin D1、Cyclin E1、c-Myc、β-actin m RNA的表达。Western blot检测胃黏膜组织Shh、Ptch1、Smo、Gli1、Su Fu、Cyclin D1、Cyclin E1、cMyc、p-c-Myc蛋白表达。结果:随造模时间的延长,模型组大鼠胃黏膜萎缩及异型增生逐渐加重,其胃黏膜内Shh、Smo、Gli1、Cyclin D1、Cyclin E1及c-Myc m RNA表达较正常组不同程度升高,而Ptch1和Su Fu m RNA不同程度降低。模型组胃黏膜内Shh、Smo、Gli1、Cyclin D1、Cyclin E1、p-c-Myc蛋白水平较正常组增加,Ptch1和Su Fu则降低,但差异无统计学意义。结论:大鼠胃癌前病变的形成过程中存在Shh信号通路的激活,提示Shh信号通路可能参与胃癌前病变的发生与发展。展开更多
基金the Puncak RM for the project under the grant 6733204-13069 to carry out the experiments。
文摘Graphene nanoplatelets(GNPs)have attracted tremendous interest due to their unique properties and bonding capabilities.This study focuses on the effect of GNP dispersion on the mechanical,thermal,and morphological behavior of GNP/epoxy nanocomposites.This study aims to understand how the dispersion of GNPs affects the properties of epoxy nanocomposite and to identify the best dispersion approach for improving mechanical performance.A solvent mixing technique that includes mechanical stirring and ultrasonication was used for producing the nanocomposites.Fourier transform infrared spectroscopy was used to investigate the interaction between GNPs and the epoxy matrix.The measurements of density and moisture content were used to confirm that GNPs were successfully incorporated into the nanocomposite.The findings showed that GNPs are successfully dispersed in the epoxy matrix by combining mechanical stirring and ultrasonication in a single step,producing well-dispersed nanocomposites with improved mechanical properties.Particularly,the nanocomposites at a low GNP loading of 0.1 wt%,demonstrate superior mechanical strength,as shown by increased tensile properties,including improved Young's modulus(1.86 GPa),strength(57.31 MPa),and elongation at break(4.98).The nanocomposite with 0.25 wt%GNP loading performs better,according to the viscoelastic analysis and flexural properties(113.18 MPa).Except for the nanocomposite with a 0.5 wt%GNP loading,which has a higher thermal breakdown temperature,the thermal characteristics do not significantly alter.The effective dispersion of GNPs in the epoxy matrix and low agglomeration is confirmed by the morphological characterization.The findings help with filler selection and identifying the best dispersion approach,which improves mechanical performance.The effective integration of GNPs and their interaction with the epoxy matrix provides the doorway for additional investigation and the development of sophisticated nanocomposites.In fields like aerospace,automotive,and electronics where higher mechanical performance and functionality are required,GNPs'improved mechanical properties and successful dispersion present exciting potential.
文摘传统互联网为实现端到端安全、可靠、实时的网络业务保障,需要在网元节点部署多类组网服务。然而,现有大多数网络设备只提供网络接入和路由等服务功能,缺乏安全、可靠、实时的服务设计。基于开源网络操作系统(software for open networking in the cloud,SONiC)、容器技术和行为树设计一种组网服务管控架构及调度方法,实现面向网络业务保障的组网服务部署,将组网服务部署可编程网络设备进行统一管理和调度,并进行仿真测试。所述组网服务管控架构及调度方法进一步增强了网络设备能力,利用行为树高效协调管控调度过程中的状态转化,保障组网服务的交付质量。
文摘目的:研究大鼠胃癌前病变形成过程中胃黏膜Sonic Hedgehog(Shh)信号通路的变化。方法:72只乳鼠随机分为正常组36只,造模组36只,雌雄各半。造模组灌服800 mg/L的1-甲基-3-硝基-1-亚硝基胍(MNNG)0.1 m L/d,正常组灌服生理盐水0.1 m L/d,共10 d。随后在实验观察第10周、22周、34周末每组分别雌雄各处死6只。HE染色检测胃黏膜组织病理学变化,q RTPCR法检测胃黏膜组织Shh、Ptch1、Smo、Gli1、Gli2、Gli3、Su Fu、Cyclin D1、Cyclin E1、c-Myc、β-actin m RNA的表达。Western blot检测胃黏膜组织Shh、Ptch1、Smo、Gli1、Su Fu、Cyclin D1、Cyclin E1、cMyc、p-c-Myc蛋白表达。结果:随造模时间的延长,模型组大鼠胃黏膜萎缩及异型增生逐渐加重,其胃黏膜内Shh、Smo、Gli1、Cyclin D1、Cyclin E1及c-Myc m RNA表达较正常组不同程度升高,而Ptch1和Su Fu m RNA不同程度降低。模型组胃黏膜内Shh、Smo、Gli1、Cyclin D1、Cyclin E1、p-c-Myc蛋白水平较正常组增加,Ptch1和Su Fu则降低,但差异无统计学意义。结论:大鼠胃癌前病变的形成过程中存在Shh信号通路的激活,提示Shh信号通路可能参与胃癌前病变的发生与发展。