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Laser Synthesis and Microfabrication of Micro/ Nanostructured Materials Toward Energy Conversion and Storage 被引量:12
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作者 Lili Zhao Zhen Liu +6 位作者 Duo Chen Fan Liu Zhiyuan Yang Xiao Li Haohai Yu Hong Liu Weijia Zhou 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第3期107-154,共48页
Nanomaterials are known to exhibit a number of interesting physical and chemical properties for various applications,including energy conversion and storage,nanoscale electronics,sensors and actuators,photonics device... Nanomaterials are known to exhibit a number of interesting physical and chemical properties for various applications,including energy conversion and storage,nanoscale electronics,sensors and actuators,photonics devices and even for biomedical purposes.In the past decade,laser as a synthetic technique and laser as a microfabrication technique facilitated nanomaterial preparation and nanostructure construction,including the laser processing-induced carbon and non-carbon nanomaterials,hierarchical structure construction,patterning,heteroatom doping,sputtering etching,and so on.The laser-induced nanomaterials and nanostructures have extended broad applications in electronic devices,such as light–thermal conversion,batteries,supercapacitors,sensor devices,actuators and electrocatalytic electrodes.Here,the recent developments in the laser synthesis of carbon-based and non-carbon-based nanomaterials are comprehensively summarized.An extensive overview on laser-enabled electronic devices for various applications is depicted.With the rapid progress made in the research on nanomaterial preparation through laser synthesis and laser microfabrication technologies,laser synthesis and microfabrication toward energy conversion and storage will undergo fast development. 展开更多
关键词 Laser synthesis Laser microfabrication Micro/nanostructured materials Energy conversion and storage
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Interfacial modulation of nano Li_(7)La_(3)Zr_(2)O_(12) composite electrolytes prepared by solvent-free method
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作者 Qigao Han Yaqing Guo +9 位作者 Fuhe Wang Xuechun Lou Fengqian Wang Jun Zhong Jinqiao Du Jie Tian Weixin Zhang Shun Tang Shijie Cheng Yuancheng Cao 《Green Energy & Environment》 2025年第3期528-536,共9页
Solid-state batteries(SSBs) with high safety are promising for the energy fields,but the development has long been limited by machinability and interfacial problems.Hence,self-supporting,flexible Nano LLZO CSEs are pr... Solid-state batteries(SSBs) with high safety are promising for the energy fields,but the development has long been limited by machinability and interfacial problems.Hence,self-supporting,flexible Nano LLZO CSEs are prepared with a solvent-free method at 25℃.The 99.8 wt% contents of Nano LLZO particles enable the Nano LLZO CSEs to maintain good thermal stability while exhibiting a wide electrochemical window of 5.0 V and a high Li~+ transfer number of 0.8.The mean modulus reaches 4376 MPa.Benefiting from the interfacial modulation,the Li|Li symmetric batteries based on the Nano LLZO CSEs show benign stability with lithium at the current densities of 0.1 mA cm^(-2),0.2 mA cm^(-2),and 0.5 mA cm^(-2).In addition,the Li|LiFePO_(4)(LFP) SSBs achieve favorable cycling performance:the specific capacity reaches128.1 mAh g^(-1) at 0.5 C rate,with a capacity retention of about 80% after 600 cycles.In the further tests of the LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)(NCM811) cathodes with higher energy density,the Nano LLZO CSEs also demonstrate good compatibility:the specific capacities of NCM811-based SSBs reach 177.9 mAh g^(-1) at 0.5 C rate,while the capacity retention is over 96% after 150 cycles.Furthermore,the Li|LFP soft-pack SSBs verify the safety characteristics and the potential for application,which have a desirable prospect. 展开更多
关键词 Solvent-free method nano LLZO CSEs Interfacial modulation Cycling performance Safety characteristics
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基于改进YOLOx-nano的海上红外目标检测算法
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作者 张俊 位门 吕璐 《红外》 2025年第2期49-56,共8页
提出了一种基于改进YOLOx-nano的海上红外目标检测算法。通过对检测头的分类与定位任务进行解耦,并引入改进的特征金字塔网络(Feature Pyramid Network, FPN)结构,不仅提升了模型的精度和收敛速度,而且提高了红外大目标检测能力。将改... 提出了一种基于改进YOLOx-nano的海上红外目标检测算法。通过对检测头的分类与定位任务进行解耦,并引入改进的特征金字塔网络(Feature Pyramid Network, FPN)结构,不仅提升了模型的精度和收敛速度,而且提高了红外大目标检测能力。将改进的压缩和激励网络(Squeeze-and-Excitation Network, SENet)通道注意力机制模块加入到模型中,增强了模型的非线性表达能力,同时提高了有效特征学习能力。为了加快嵌入式平台模型的前向推理速度,引入剪枝技术来实现模型剪枝,在保证召回率不降低的情况下减少模型参数。通过测试集对本文算法进行了验证。结果表明,该算法的平均精度(Average Precision, AP)比原始YOLOx-nano算法提高了1.35%,达到了93.92%。本文算法平衡了模型精度与耗时的矛盾关系,在提升性能的同时,保证了模型检测的速度。 展开更多
关键词 红外目标检测 YOLOx-nano 模型剪枝 注意力机制
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基于改进YOLOX_Nano的番茄叶片病害识别研究
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作者 方晓捷 严李强 +1 位作者 张福豪 宋沛琳 《安徽农业科学》 2025年第6期238-242,共5页
近年来,番茄遭受的病害种类越来越多,这些病害对番茄产量和果实品质产生巨大影响,及时高效识别病害并采取有效措施成为当前番茄生产的迫切需求。针对现有模型番茄病害识别率较低以及模型较大较复杂的问题,提出一种基于改进YOLOX_Nano的... 近年来,番茄遭受的病害种类越来越多,这些病害对番茄产量和果实品质产生巨大影响,及时高效识别病害并采取有效措施成为当前番茄生产的迫切需求。针对现有模型番茄病害识别率较低以及模型较大较复杂的问题,提出一种基于改进YOLOX_Nano的病害识别模型。通过引入全局注意力机制以增强特征图的全局信息捕捉能力,改进特征金字塔网络中的上采样模块和路径聚合网络中的下采样模块,以提升特征的表达能力和融合效果。试验结果表明,该方法对番茄叶片病害识别的mAP达到89.16%。优化后的模型不仅在番茄叶片病害识别上表现出高准确率和快速检测性能,而且参数量和计算量较少,便于部署于手机等移动设备。该方法可为番茄叶片病害轻量化快速高效识别提供参考。 展开更多
关键词 YOLOX_nano网络 GAM注意力机制 番茄病害识别
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TPU/Nano-ZnO复合改性沥青的性能研究及微观机制 被引量:1
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作者 田小革 李光耀 +4 位作者 陈功 姚世林 黄雪梅 王俊杰 陆劲州 《材料导报》 EI CAS CSCD 北大核心 2024年第16期98-107,共10页
为促进聚合物/纳米改性沥青在耐久性路面中的应用,在实验室将不同掺量的聚氨酯及纳米氧化锌添加到A-70#基质沥青中制备了复合改性沥青。采用传统物理性能试验、动态剪切流变试验(DSR)、弯曲梁流变试验(BBR)研究了其物理性能与流变特性,... 为促进聚合物/纳米改性沥青在耐久性路面中的应用,在实验室将不同掺量的聚氨酯及纳米氧化锌添加到A-70#基质沥青中制备了复合改性沥青。采用传统物理性能试验、动态剪切流变试验(DSR)、弯曲梁流变试验(BBR)研究了其物理性能与流变特性,基于响应面法的优化设计来明确两种改性剂的最佳掺量。借助傅里叶红外光谱试验(FTIR)对其微观改性机理进行探讨。采用高压紫外汞灯环境箱对改性沥青进行不同时间的紫外老化,分析其抗紫外老化能力,并基于主成分分析法评价了老化性能测试指标的显著性。结果表明:聚氨酯与纳米氧化锌的共同作用提高了基质沥青的高温稳定性及低温抗裂性,两种改性剂的最佳掺量分别为5%、3%。根据FTIR结果,复合改性沥青的改性过程既存在物理共混,又有化学加成反应。聚氨酯及纳米氧化锌的加入在基质沥青紫外老化过程中能够抑制羰基、亚砜基等极性基团的生成,复数剪切模量、羰基指数、劲度模量及亚砜基指数对沥青紫外老化性能的影响最为显著。 展开更多
关键词 聚氨酯 纳米氧化锌 复合改性沥青 宏观性能 微观机理
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Etching-assisted femtosecond laser microfabrication 被引量:3
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作者 Monan Liu Mu-Tian Li +1 位作者 Han Yang Hong-Bo Sun 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第9期56-62,共7页
Although femtosecond laser microfabrication is one of the most promising three-dimensional(3D) fabrication techniques, it could suffer from low fabrication efficiency for structures with high 3D complexities. By usi... Although femtosecond laser microfabrication is one of the most promising three-dimensional(3D) fabrication techniques, it could suffer from low fabrication efficiency for structures with high 3D complexities. By using etching as a main assistant technique, the processing can be speeded up and an improved structure surface quality can be provided. However,the assistance of a single technique cannot satisfy the increasing demands of fabrication and integration of highly functional 3D microstructures. Therefore, a multi-technique-based 3D microfabrication method is required. In this paper, we briefly review the recent development on etching-assisted femtosecond laser microfabrication(EAFLM). Various processing approaches have been proposed to further strengthen the flexibilities of the EAFLM. With the use of the multi-technique-based microfabrication method, 3D microstructure arrays can be rapidly defined on planar or curved surfaces with high structure qualities. 展开更多
关键词 femtosecond laser microfabrication microlens array ETCHING
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抗菌PP/Rnano-ZnO复合材料的制备及性能研究
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作者 程贵刚 孟新 郑雪 《精细石油化工》 CAS 2024年第5期24-27,共4页
以棒状纳米氧化锌(Rnano-ZnO)为抗菌剂、聚丙烯(PP)为基材,采用熔融共混法在双螺杆挤出机中制备了抗菌PP/Rnano-ZnO复合材料。测试了复合材料的抗菌性能,通过DSC法研究了抗菌PP/Rnano-ZnO复合材料中Rnano-ZnO质量分数对结晶性能的影响,... 以棒状纳米氧化锌(Rnano-ZnO)为抗菌剂、聚丙烯(PP)为基材,采用熔融共混法在双螺杆挤出机中制备了抗菌PP/Rnano-ZnO复合材料。测试了复合材料的抗菌性能,通过DSC法研究了抗菌PP/Rnano-ZnO复合材料中Rnano-ZnO质量分数对结晶性能的影响,采用SEM分析了复合材料冲击断面的微观形貌,采用万能电子拉伸机测试了复合材料的力学性能。结果表明,抗菌PP/Rnano-ZnO复合材料中随着Rnano-ZnO的加入,结晶温度提高了1.81℃,相对结晶度提高了5.03%,冲击强度提高了47.83%,拉伸强度提高了20.96%和断裂伸长率提高了4790%;当抗菌PP/Rnano-ZnO复合材料中Rnano-ZnO质量分数为6.0%时,其力学性能、对大肠杆菌和金黄色葡萄球菌的抗菌效果最佳。 展开更多
关键词 抗菌 复合材料 棒状纳米氧化锌 制备 性能
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Energy-Efficient Implementation of BCD to Excess-3 Code Converter for Nano-Communication Using QCA Technology 被引量:1
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作者 Nuriddin Safoev Angshuman Khan +1 位作者 Khudoykulov Zarif Turakulovich Rajeev Arya 《China Communications》 SCIE CSCD 2024年第6期103-111,共9页
Code converters are essential in digital nano communication;therefore,a low-complexity optimal QCA layout for a BCD to Excess-3 code converter has been proposed in this paper.A QCA clockphase-based design technique wa... Code converters are essential in digital nano communication;therefore,a low-complexity optimal QCA layout for a BCD to Excess-3 code converter has been proposed in this paper.A QCA clockphase-based design technique was adopted to investigate integration with other complicated circuits.Using a unique XOR gate,the recommended circuit’s cell complexity has been decreased.The findings produced using the QCADesigner-2.0.3,a reliable simulation tool,prove the effectiveness of the current structure over earlier designs by considering the number of cells deployed,the area occupied,and the latency as design metrics.In addition,the popular tool QCAPro was used to estimate the energy dissipation of the proposed design.The proposed technique reduces the occupied space by∼40%,improves cell complexity by∼20%,and reduces energy dissipation by∼1.8 times(atγ=1.5EK)compared to the current scalable designs.This paper also studied the suggested structure’s energy dissipation and compared it to existing works for a better performance evaluation. 展开更多
关键词 BCD code converter Excess-3 nano communication QCA circuits
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Mechanical behavior of nanorubber reinforced epoxy over a wide strain rate loading
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作者 Yinggang Miao Jianping Yin +1 位作者 Wenxuan Du Lianyang Chen 《Nano Materials Science》 EI CAS CSCD 2024年第1期106-114,共9页
Nanorubber/epoxy composites containing 0,2,6 and 10 wt%nanorubber are subjected to uniaxial compression over a wide range of strain rate from 8×10^(-4) s^(-1) to~2×10^(4) s^(-1).Unexpectedly,their strain rat... Nanorubber/epoxy composites containing 0,2,6 and 10 wt%nanorubber are subjected to uniaxial compression over a wide range of strain rate from 8×10^(-4) s^(-1) to~2×10^(4) s^(-1).Unexpectedly,their strain rate sensitivity and strain hardening index increase with increasing nanorubber content.Potential mechanisms are proposed based on numerical simulations using a unit cell model.An increase in the strain rate sensitivity with increasing nanorubber content results from the fact that the nanorubber becomes less incompressible at high strain,generating a higher hydro-static pressure.Adiabatic shear localization starts to occur in the epoxy under a strain rate of 22,000 s^(-1) when the strain exceeds 0.35.The presence of nanorubber in the epoxy reduces adiabatic shear localization by preventing it from propagating. 展开更多
关键词 Strain rate Strain hardening nano rubber EPOXY Adiabatic shearing localization
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Active Micro-Nano-Collaborative Bioelectronic Device for Advanced Electrophysiological Recording
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作者 Yuting Xiang Keda Shi +7 位作者 Ying Li Jiajin Xue Zhicheng Tong Huiming Li Zhongjun Li Chong Teng Jiaru Fang Ning Hu 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第7期244-264,共21页
The development of precise and sensitive electrophysiological recording platforms holds the utmost importance for research in the fields of cardiology and neuroscience.In recent years,active micro/nano-bioelectronic d... The development of precise and sensitive electrophysiological recording platforms holds the utmost importance for research in the fields of cardiology and neuroscience.In recent years,active micro/nano-bioelectronic devices have undergone significant advancements,thereby facilitating the study of electrophysiology.The distinctive configuration and exceptional functionality of these active micro-nano-collaborative bioelectronic devices offer the potential for the recording of high-fidelity action potential signals on a large scale.In this paper,we review three-dimensional active nano-transistors and planar active micro-transistors in terms of their applications in electroexcitable cells,focusing on the evaluation of the effects of active micro/nano-bioelectronic devices on electrophysiological signals.Looking forward to the possibilities,challenges,and wide prospects of active micro-nano-devices,we expect to advance their progress to satisfy the demands of theoretical investigations and medical implementations within the domains of cardiology and neuroscience research. 展开更多
关键词 Active micro/nano collaborative bioelectronic device Three-dimensional active nano-transistor Planar active microtransistor ELECTROPHYSIOLOGY
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On-Chip Micro Temperature Controllers Based on Freestanding Thermoelectric Nano Films for Low-Power Electronics
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作者 Qun Jin Tianxiao Guo +4 位作者 Nicolas Perez Nianjun Yang Xin Jiang Kornelius Nielsch Heiko Reith 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第7期98-108,共11页
Multidimensional integration and multifunctional com-ponent assembly have been greatly explored in recent years to extend Moore’s Law of modern microelectronics.However,this inevitably exac-erbates the inhomogeneity ... Multidimensional integration and multifunctional com-ponent assembly have been greatly explored in recent years to extend Moore’s Law of modern microelectronics.However,this inevitably exac-erbates the inhomogeneity of temperature distribution in microsystems,making precise temperature control for electronic components extremely challenging.Herein,we report an on-chip micro temperature controller including a pair of thermoelectric legs with a total area of 50×50μm^(2),which are fabricated from dense and flat freestanding Bi2Te3-based ther-moelectric nano films deposited on a newly developed nano graphene oxide membrane substrate.Its tunable equivalent thermal resistance is controlled by electrical currents to achieve energy-efficient temperature control for low-power electronics.A large cooling temperature difference of 44.5 K at 380 K is achieved with a power consumption of only 445μW,resulting in an ultrahigh temperature control capability over 100 K mW^(-1).Moreover,an ultra-fast cooling rate exceeding 2000 K s^(-1) and excellent reliability of up to 1 million cycles are observed.Our proposed on-chip temperature controller is expected to enable further miniaturization and multifunctional integration on a single chip for microelectronics. 展开更多
关键词 Temperature control Low-power electronics On-chip micro temperature controller Freestanding thermoelectric nano films Temperature-sensitive components
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Ignition processes and characteristics of charring conductive polymers with a cavity geometry in precombustion chamber for applications in micro/nano satellite hybrid rocket motors
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作者 Zhiyuan Zhang Hanyu Deng +2 位作者 Wenhe Liao Bin Yu Zai Yu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期55-66,共12页
The arc ignition system based on charring polymers has advantages of simple structure,low ignition power consumption and multiple ignitions,which bringing it broadly application prospect in hybrid propulsion system of... The arc ignition system based on charring polymers has advantages of simple structure,low ignition power consumption and multiple ignitions,which bringing it broadly application prospect in hybrid propulsion system of micro/nano satellite.However,charring polymers alone need a relatively high input voltage to achieve pyrolysis and ignition,which increases the burden and cost of the power system of micro/nano satellite in practical application.Adding conductive substance into charring polymers can effectively decrease the conducting voltage which can realize low voltage and low power consumption repeated ignition of arc ignition system.In this paper,a charring conductive polymer ignition grain with a cavity geometry in precombustion chamber,which is composed of PLA and multiwall carbon nanotubes(MWCNT)was proposed.The detailed ignition processes were analyzed and two different ignition mechanisms in the cavity of charring conductive polymers were revealed.The ignition characteristics of charring conductive polymers were also investigated at different input voltages,ignition grain structures,ignition locations and injection schemes in a visual ignition combustor.The results demonstrated that the ignition delay and external energy required for ignition were inversely correlated with the voltages applied to ignition grain.Moreover,the incremental depth of cavity shortened the ignition delay and external energy required for ignition while accelerated the propagation of flame.As the depth of cavity increased from 2 to 6 mm(at 50 V),the time of flame propagating out of ignition grain changed from 235.6 to 108 ms,and values of mean ignition delay time and mean external energy required for ignition decreased from 462.8 to 320 ms and 16.2 to 10.75 J,respectively.The rear side of the cavity was the ideal ignition position which had a shorter ignition delay and a faster flame propagation speed in comparison to other ignition positions.Compared to direct injection scheme,swirling injection provided a more favorable flow field environment in the cavity,which was beneficial to ignition and initial flame propagation,but the ignition position needed to be away from the outlet of swirling injector.At last,the repeated ignition characteristic of charring conductive polymers was also investigated.The ignition delay time and external energy required for ignition decreased with repeated ignition times but the variation was decreasing gradually. 展开更多
关键词 Micro/nano satellite hybrid propulsion Arc ignition Charring conductive polymer Ignition mechanism Ignition characteristic Repeated ignition
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Nano-ZnO/BF复合改性沥青高温性能研究 被引量:1
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作者 马军营 《建材世界》 2024年第3期72-75,共4页
为提高道路服务质量,延长沥青路面的使用年限,采用纳米氧化锌(Nano-ZnO)和玄武岩纤维(BF)作为复合外掺剂对基质沥青进行改性,以提升其高温性能。对基质沥青、Nano-ZnO改性沥青以及Nano-ZnO/BF复合改性沥青进行常规性能试验和动态剪切流... 为提高道路服务质量,延长沥青路面的使用年限,采用纳米氧化锌(Nano-ZnO)和玄武岩纤维(BF)作为复合外掺剂对基质沥青进行改性,以提升其高温性能。对基质沥青、Nano-ZnO改性沥青以及Nano-ZnO/BF复合改性沥青进行常规性能试验和动态剪切流变试验,分析改性剂对沥青高温性能的影响。结果表明:加入纳米氧化锌和玄武岩纤维后,三大性能指标均出现不同程度的改善,且Nano-ZnO/BF复合改性沥青的车辙因子明显高于Nano-ZnO改性沥青,即玄武岩纤维能有效改善沥青的高温性能。 展开更多
关键词 纳米氧化锌 玄武岩纤维 沥青 高温性能
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基于Jetson Nano的人脸口罩识别系统设计
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作者 叶光泽 童宣科 侯保冀 《电子产品世界》 2024年第1期44-47,共4页
人脸和口罩识别在许多现代应用中有广泛需求,包括安全检查、身份认证以及工业安全等方面。探讨了基于Jetson Nano的人脸口罩识别系统,旨在实现对个体是否佩戴口罩的准确判断。该系统使用先进的人脸识别算法来定位图像中的人脸区域,然后... 人脸和口罩识别在许多现代应用中有广泛需求,包括安全检查、身份认证以及工业安全等方面。探讨了基于Jetson Nano的人脸口罩识别系统,旨在实现对个体是否佩戴口罩的准确判断。该系统使用先进的人脸识别算法来定位图像中的人脸区域,然后应用深度学习模型对人脸区域进行口罩检测。所有的数据处理和模型推理均在Jetson Nano上实现,从而使系统具有较高的运行效率和可移植性。在多个不同环境和视角下进行测试,结果显示该系统在各种复杂条件下都展示出较高的识别准确率,并能处理高达30帧/s的实时图像。不仅证明了Jetson Nano在图像识别和实时数据处理方面的高性能,还为开发多种人脸识别应用提供了有力的技术支持。 展开更多
关键词 人脸识别 口罩识别 Jetson nano 深度学习
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Nano-SiO_(2)/UP复合改性沥青配方研究
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作者 王珍华 汤祖杰 +2 位作者 陈昌晴 江林英 王瑞祥 《公路工程》 2024年第3期138-145,152,共9页
一般的UP固化物往往存在韧性较差等问题,需要对其进行增韧改性。鉴于nano-SiO_(2)/UP复合材料表现出的优异力学性能,且目前未见有研究将其用于改性沥青,对nano-SiO_(2)/UP复合改性沥青的配方(包括nano-SiO_(2)的种类、各类添加剂的掺量... 一般的UP固化物往往存在韧性较差等问题,需要对其进行增韧改性。鉴于nano-SiO_(2)/UP复合材料表现出的优异力学性能,且目前未见有研究将其用于改性沥青,对nano-SiO_(2)/UP复合改性沥青的配方(包括nano-SiO_(2)的种类、各类添加剂的掺量等)进行研究,通过拉伸试验、离析试验等确定出nano-SiO_(2)/UP复合改性沥青的最优配比。研究结果表明:nano-SiO_(2)/UP复合改性沥青中的A组分和B组分应由“先掺法”进行制备,其中A组分为UP、引发剂、偶联剂,B组分是由沥青、相容剂等外加剂组成的混合成分;其最优配比为m(A组分)∶m(B组分)=1∶2.6,其中A组分的成分为m(树脂)∶m(A型nano-SiO_(2))∶m(引发剂)∶m(偶联剂)=100∶3∶4∶3, B组分的构成为m(沥青)∶m(相容剂)=100∶4。 展开更多
关键词 nano-SIO2 改性沥青 不饱和聚酯树脂
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PVDF/PU共混纳米纤维膜的制备及其性能
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作者 李金超 梅硕 +1 位作者 余振枫 冯源 《棉纺织技术》 CAS 2025年第1期60-63,共4页
为扩展不同原料纳米纤维膜在空气过滤领域的应用,综合聚偏氟乙烯(PVDF)和聚氨酯(PU)的特点,采用静电纺丝技术制备PVDF/PU共混纳米纤维膜。探讨PVDF/PU不同配比对纳米纤维膜形貌、化学结构、力学性能和空气过滤性能的影响。试验结果表明... 为扩展不同原料纳米纤维膜在空气过滤领域的应用,综合聚偏氟乙烯(PVDF)和聚氨酯(PU)的特点,采用静电纺丝技术制备PVDF/PU共混纳米纤维膜。探讨PVDF/PU不同配比对纳米纤维膜形貌、化学结构、力学性能和空气过滤性能的影响。试验结果表明:PU的加入可显著增加PVDF/PU共混纳米纤维膜的力学性能,同时提高纤维膜的亲水性;当PVDF/PU配比为8∶2时,共混纳米纤维膜的形貌及空气过滤性能最佳,过滤效率达91.3%,过滤阻力仅51 Pa,达到高效低阻空气过滤材料的性能要求。 展开更多
关键词 聚偏氟乙烯 聚氨酯 静电纺丝 纳米纤维膜 空气过滤
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Nano-SiO_(2)改性水泥净浆结石体力学特性试验研究
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作者 李小静 李一豪 +4 位作者 游桢 陆通 朱变变 赵海洋 孙小康 《现代矿业》 CAS 2024年第8期99-102,107,共5页
岩土领域复杂的工程地质环境和工程地质灾害对注浆材料的性能提出了更高的要求。利用电液伺服岩石真三轴试验机开展了普通425水泥结石体、添加纳米二氧化硅浆液结石体的单轴压缩试验。试验结果表明,添加纳米二氧化硅后,浆液结石体力学... 岩土领域复杂的工程地质环境和工程地质灾害对注浆材料的性能提出了更高的要求。利用电液伺服岩石真三轴试验机开展了普通425水泥结石体、添加纳米二氧化硅浆液结石体的单轴压缩试验。试验结果表明,添加纳米二氧化硅后,浆液结石体力学性能得到明显提升,且纳米二氧化硅含量在3%时效果最好。与普通水泥浆液结石体相比,添加3%纳米二氧化硅的浆液结石体单轴抗压强度增加了56.3%,弹性模量增加了29.2%。试验结果可以为复杂地质环境下的工程项目注浆设计和施工提供参考。 展开更多
关键词 纳米注浆材料 浆液固结体 单轴压缩试验 力学特性
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ZL205A合金热处理参数优化及其组织性能演变
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作者 郭廷彪 钱丹晨 +3 位作者 王炳 王楠 丁万武 金玉花 《材料科学与工程学报》 北大核心 2025年第1期23-30,共8页
ZL205A合金是航空航天领域重要的铸造铝合金,热处理制度是提升ZL205A合金综合力学性能的关键。本研究通过530℃×2 h+540℃×13 h固溶+165℃×6 h时效,研究了固溶及时效参数对ZL205A合金组织和力学性能的影响。采用激光共... ZL205A合金是航空航天领域重要的铸造铝合金,热处理制度是提升ZL205A合金综合力学性能的关键。本研究通过530℃×2 h+540℃×13 h固溶+165℃×6 h时效,研究了固溶及时效参数对ZL205A合金组织和力学性能的影响。采用激光共聚焦显微镜(CLSM)、X射线衍射仪(XRD)、扫描电子显微镜(SEM)、场发射透射电子显微镜(FTEM)等表征技术检测了不同热处理制度下材料的微观组织并测试其力学性能;分析了材料组织机制与力学性能的关联效应。研究结果表明,530℃×2 h+540℃×13 h为较好的双级固溶制度。固溶处理后,铸态合金中的网状共晶组织溶解,合金的组织均匀性提高且微观组织得到改善。低温时效过程中θ′纳米级析出相在晶界上不连续分布,温度升高会促使θ′相发生粗化且数量增加;稳定的θ′相可有效阻碍位错运动,提升合金的力学性能。 展开更多
关键词 ZL205A合金 微观组织 力学性能 固溶 纳米析出相
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有机小分子荧光探针结合静电纺丝用于爆炸物检测研究进展
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作者 成乐琴 陶韵琦 +1 位作者 张跃伟 于雪 《发光学报》 北大核心 2025年第1期126-139,共14页
近年来,随着炸药制备和隐蔽性水平的进一步提高,爆炸物探测也面临更加严峻的挑战。有机小分子荧光探针具有高灵敏度、高选择性、低检测限等优点,近年来在爆炸物识别方面得到了广泛应用。然而,这些荧光探针对爆炸物的识别通常需要在溶液... 近年来,随着炸药制备和隐蔽性水平的进一步提高,爆炸物探测也面临更加严峻的挑战。有机小分子荧光探针具有高灵敏度、高选择性、低检测限等优点,近年来在爆炸物识别方面得到了广泛应用。然而,这些荧光探针对爆炸物的识别通常需要在溶液中进行,导致其应用受到很大限制。静电纺丝是一种制备直径可控、形态均匀的纳米纤维的有效技术。将荧光探针与静电纺丝技术结合制备出具有携带方便、可重复性好、检测限低等优点的荧光纳米纤维膜,有效地拓宽了荧光探针在检测爆炸物方面的应用。本文对有机小分子材料的荧光传感单元结构进行分类,总结了有机小分子荧光纳米纤维膜传感器对常见爆炸物三硝基甲苯(Trinitrotoluene,TNT)、三硝基苯酚(Trinitrophenol,TNP)、2,4-二硝基甲苯(2,4-Dinitrotoluene,DNT)、环三亚甲基三硝胺(Cyclotrimethylene trinitramine,RDX)、三过氧化三丙酮(Triacetone triperoxide,TATP)等进行荧光识别和检测,为实际爆炸物检测中静电纺荧光纳米纤维膜的设计提供指导,同时为荧光探针在复杂环境中的实际应用提供了新思路。 展开更多
关键词 荧光探针 静电纺丝 爆炸物检测 纳米薄膜纤维
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纳米TiO_(2)复合膜在食品包装中的应用研究进展
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作者 范文广 郑海君 +4 位作者 田辉 任海伟 田亚琴 潘立超 杨伟霞 《食品工业科技》 北大核心 2025年第7期425-434,共10页
近年来,纳米材料因其独特的性能在食品包装中具有优势而引起了人们的极大兴趣,纳米二氧化钛(titanium dioxide,TiO_(2))由于其优异的生物相容性、光催化和抗菌性能,被公认为是生物可降解食品包装膜中的功能性纳米填料。本文介绍了纳米Ti... 近年来,纳米材料因其独特的性能在食品包装中具有优势而引起了人们的极大兴趣,纳米二氧化钛(titanium dioxide,TiO_(2))由于其优异的生物相容性、光催化和抗菌性能,被公认为是生物可降解食品包装膜中的功能性纳米填料。本文介绍了纳米TiO_(2)复合膜的制备方法,分析了复合膜在紫外屏蔽、抗菌、乙烯清除、智能响应等方面发挥的多元化功能,总结了在果蔬保鲜和肉类包装领域应用较广泛的纳米TiO_(2)复合膜的最新研究进展,讨论了纳米TiO_(2)应用在食品包装中存在的安全隐患,并对其发展前景进行了展望,以期为纳米TiO_(2)复合膜在未来功能化以及智能化食品包装领域中的研究提供理论参考和新思路。 展开更多
关键词 纳米二氧化钛(TiO_(2)) 复合膜 应用 食品包装 本文网刊:
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