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Novel thermal interface materials based on mesocarbon microbeads with a high through-plane thermal conductivity
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作者 SUN Zhi-peng MA Cheng +2 位作者 WANG Ji-tong QIAO Wen-ming LING Li-cheng 《新型炭材料(中英文)》 北大核心 2025年第2期440-455,共16页
The rapid development of the information era has led to in-creased power consumption,which generates more heat.This requires more efficient thermal management systems,with the most direct ap-proach being the developme... The rapid development of the information era has led to in-creased power consumption,which generates more heat.This requires more efficient thermal management systems,with the most direct ap-proach being the development of su-perior thermal interface materials(TIMs).Mesocarbon microbeads(MCMBs)have several desirable properties for this purpose,includ-ing high thermal conductivity and excellent thermal stability.Although their thermal conductivity(K)may not be exceptional among all carbon materials,their ease of production and low cost make them ideal filler materials for developing a new generation of carbon-based TIMs.We report the fabrication of high-performance TIMs by incorporating MCMBs in a polyimide(PI)framework,producing highly graphitized PI/MCMB(PM)foams and anisotropic polydimethylsiloxane/PM(PDMS/PM)composites with a high thermal conductivity using directional freezing and high-temperature thermal annealing.The resulting materials had a high through-plane(TP)K of 15.926 W·m^(−1)·K^(−1),4.83 times that of conventional thermally conductive silicone pads and 88.5 times higher than that of pure PDMS.The composites had excellent mechanical properties and thermal stability,meeting the de-mands of modern electronic products for integration,multi-functionality,and miniaturization. 展开更多
关键词 Thermal interface material Mesocarbon microbeads Through-plane thermal conductivity
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Constructing graphite-CeO_(2)interfaces to enhance the photothermal activity for solar-driven dry reforming of methane
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作者 LI Ruitao GONG Kun +3 位作者 DAI Yuanyuan NIU Qiang LIN Tiejun ZHONG Liangshu 《燃料化学学报(中英文)》 北大核心 2025年第8期1137-1147,共11页
CeO_(2) based semiconductor are widely used in solar-driven photothermal catalytic dry reforming of methane(DRM)reaction,but still suffer from low activity and low light utilization efficiency.This study developed gra... CeO_(2) based semiconductor are widely used in solar-driven photothermal catalytic dry reforming of methane(DRM)reaction,but still suffer from low activity and low light utilization efficiency.This study developed graphite-CeO_(2) interfaces to enhance solar-driven photothermal catalytic DRM.Compared with carbon nanotubes-modified CeO_(2)(CeO_(2)-CNT),graphite-modified CeO_(2)(CeO_(2)-GRA)constructed graphite-CeO_(2) interfaces with distortion in CeO_(2),leading to the formation abundant oxygen vacancies.These graphite-CeO_(2) interfaces with oxygen vacancies enhanced optical absorption and promoted the generation and separation of photogenerated carriers.The high endothermic capacity of graphite elevated the catalyst surface temperature from 592.1−691.3℃,boosting light-to-thermal conversion.The synergy between photogenerated carriers and localized heat enabled Ni/CeO_(2)-GRA to achieve a CO production rate of 9985.6 mmol/(g·h)(vs 7192.4 mmol/(g·h)for Ni/CeO_(2))and a light-to-fuel efficiency of 21.8%(vs 13.8%for Ni/CeO_(2)).This work provides insights for designing graphite-semiconductor interfaces to advance photothermal catalytic efficiency. 展开更多
关键词 dry reforming of methane photothermal catalysis CeO_(2) GRAPHITE interfaceS
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Designing Conformal Electrode-electrolyte Interface by Semi-solid NaK Anode for Sodium Metal Batteries
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作者 YIN Chunsen CHEN Zeyuan WANG Xiuli 《材料科学与工程学报》 北大核心 2025年第2期191-201,共11页
Solid-state Na metal batteries(SSNBs),known for the low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interf... Solid-state Na metal batteries(SSNBs),known for the low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interfacial contact in solid-state electrolytes has hindered the commercialization of SSNBs.Driven by the concept of intimate electrode-electrolyte interface design,this study employs a combination of sodium-potassium(NaK)alloy and carbon nanotubes to prepare a semi-solid NaK(NKC)anode.Unlike traditional Na anodes,the paintable paste-like NKC anode exhibits superior adhesion and interface compatibility with both current collectors and gel electrolytes,significantly enhancing the physical contact of the electrode-electrolyte interface.Additionally,the filling of SiO_(2) nanoparticles improves the wettability of NaK alloy on gel polymer electrolytes,further achieving a conformal interface contact.Consequently,the overpotential of the NKC symmetric cell is markedly lower than that of the Na symmetric cell when subjected to a long cycle of 300 hrs.The full cell coupled with Na_(3)V_(2)(PO_(4))_(2) cathodes had an initial discharge capacity of 106.8 mAh·g^(-1) with a capacity retention of 89.61%after 300 cycles,and a high discharge capacity of 88.1 mAh·g^(-1) even at a high rate of 10 C.The outstanding electrochemical performance highlights the promising application potential of the NKC electrode. 展开更多
关键词 Solid-state Na metal battery NaK alloy Gel electrolyte Electrode-electrolyte interface dendrite free anode
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Effects of alloying elements M(Mn,Cr,Mo,Ni,Cu,and Si)on interface behavior of TiC(002)/Fe(011)
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作者 LI Jia-xin HOU Guang-xin +3 位作者 JIA Peng HU Li-hua WANG Li-quan WANG Xiang 《Journal of Central South University》 2025年第8期2795-2808,共14页
Improving interfacial bonding and alloying design are effective strategies for enhancing mechanical properties of particle-reinforced steel matrix composites(SMCs).This study prepared SMCs with uniformly distributed T... Improving interfacial bonding and alloying design are effective strategies for enhancing mechanical properties of particle-reinforced steel matrix composites(SMCs).This study prepared SMCs with uniformly distributed TiC_(P)in matrix using master alloying method.The TiC(002)/Fe(011)interface model was established based on the orientation relationship of(011)_(Fe)//(002)_(TiC),and[100]_(Fe)//[100]_(TiC).The effects of single and co-doping of alloying elements(Mn,Cr,Mo,Ni,Cu and Si)on the interface bonding behavior of TiC/Fe in composites were investigated in conjunction with first principles.The results demonstrate that the interface between TiC and matrix is continuous and stable.Compared to the undoped TiC/Fe interface,single-doping Mn,Cr,and Mo can improve the stability of TiC/Fe interface and enhance tensile strength.Conversely,single-doping with Ni,Cu,and Si reduced the interface stability and marginally reduces tensile strength.Relative to the undoped and singly Ni-doped TiC/Fe interfaces,the co-doping Ni-Mo boosts binding energy and separation work at the TiC/Fe interface,which is conducive to the interface bonding between TiC_(P)and matrix,and thus improves the mechanical properties of composites.Thus,in the alloying design of TiC particle reinforced low-alloy SMCs,incorporating Mn,Cr,Mo,and Ni into matrix can enhance the overall mechanical properties of composites. 展开更多
关键词 TiC particle-reinforced steel matrix composites alloying elements FIRST-PRINCIPLES interface behavior CO-DOPING
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Shear mechanical properties and debonding failure mechanisms of bolt-resin-rock anchoring system with anisotropic interfaces
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作者 NIE Xin-xin YIN Qian +7 位作者 TAO Zhi-gang GUO Long-ji RIABOKON Evgenii ZHU De-fu XIE Liang-fu ZHA Wen-hua WANG Lin-feng REN Ya-jun 《Journal of Central South University》 2025年第7期2535-2552,共18页
This study investigates the shear mechanical responses and debonding failure mechanisms of anchoring systems comprising three anisotropic media and two anisotropic interfaces under controlled boundary conditions of co... This study investigates the shear mechanical responses and debonding failure mechanisms of anchoring systems comprising three anisotropic media and two anisotropic interfaces under controlled boundary conditions of constant normal load(F_(s)),constant normal stiffness(K),and shear rate(v).A systematic analysis of shear mechanical properties,the evolution of maximum principal strain field,and damage characteristics along shear failure surface is presented.Results from direct shear tests demonstrate that initial shear slip diminishes with increasing F_(s)and K,attributed to the normal constraint strengthening effect,while an increase in v enhances initial shear slip due to attenuated deformation coordination and stress transfer.As F_(s)increases from 7.5 to 120 kN,K from 0 to 12 MPa/mm,and v from 0.1 to 2 mm/min,the peak shear load increases by 210.32%and 80.16%with rising F_(s)and K,respectively,while decreases by 38.57%with increasing v.Correspondingly,the shear modulus exhibits,respectively,a 135.29%and 177.06%increase with rising F_(s)and K,and a 37.03%decrease with larger v.Initial shear dilation is identified as marking the formation of shear failure surface along anisotropic interfaces,resulting from the combined shear actions at the resin bolt interface,where resin undergoes shear by bolt surface protrusions,and the resin-rock interface,where mutual shear occurs between resin and rock.With increasing F_(s)and K and decreasing v,the location of the shear failure surface shifts from the resin-rock interface to the resin-bolt interface,accompanied by a transition in failure mode from tensile rupture of resin to shear off at the resin surface. 展开更多
关键词 anchoring system anisotropic interfaces shear mechanical properties strain field evolution debonding failure
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Failure behavior of rock and steel slag cemented paste backfill composite structures under uniaxial compression:Effects of interface angle and steel slag content
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作者 HAO Jian-shuai ZHOU Zi-han +1 位作者 CHEN Zhong-hui CHE Zeng-hui 《Journal of Central South University》 2025年第7期2679-2695,共17页
The stability of the“surrounding rock-backfill”com posite system is crucial for the safety of mining stopes.This study systematically investigates the effects of steel slag(SS)content and interface angle on the stre... The stability of the“surrounding rock-backfill”com posite system is crucial for the safety of mining stopes.This study systematically investigates the effects of steel slag(SS)content and interface angle on the strength and failure characteristics of rock and SS-cemented paste backfill composite specimens(RBCS)through uniaxial compression strength tests(UCS),acoustic emission systems(AE),and 3 D digital image correlation monitoring technology(3 D-DIC).The intrinsic mechanism by which SS content influences the strength of SS-CPB was revealed through an analysis of its hydration reaction degree and microstructural characteristics under varying SS content.Moreover,a theoretical strength model incorporating different interface angles was developed to explore the impact of interface inclination on failure modes and mechanical strength.The main conclusions are as follows:The incorporation of SS enhances the plastic characteristics of RBCS and reduces its brittleness,with the increase of SS content,the stress-strain curve of RBCS in the“staircase-like”stag e becomes smoother;When the interface angle is 45°,the RBCS stress-strain curve exhibits a bimodal feature,and the failure mode changes from Y-shaped fractures to interface and axial splitting;The addition of SS results in a reduction of hydration products such as Ca(OH)_(2) in the backfill cementing system and an increase in harmful pores,which weakens the bonding performance and strength of RBCS,and the SS content should not exceed 45%;As the interface angle increases,the strength of RBCS decreases,and the critical interface slip angle decreases first and then increases with the increase in the E S/E R ratio.This study provides technical references for the large-scale application of SS in mine backfill. 展开更多
关键词 steel slag-cemented paste backfill interface angle rock-backfill composite structures failure mode
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断续节理作用的Interface模型及工程应用 被引量:1
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作者 张强勇 孙爱花 朱维申 《岩土力学》 EI CAS CSCD 北大核心 2006年第S1期17-21,共5页
断续节理是影响地下洞室围岩稳定的重要因素,要有效反映其影响提出 Interface 界面模型模拟断续节理的力学效应。以二滩水电工程大型地下洞室群为背景,对主厂房开挖考虑与不考虑断续节理作用进行了多种地应力工况的数值计算与分析,获得... 断续节理是影响地下洞室围岩稳定的重要因素,要有效反映其影响提出 Interface 界面模型模拟断续节理的力学效应。以二滩水电工程大型地下洞室群为背景,对主厂房开挖考虑与不考虑断续节理作用进行了多种地应力工况的数值计算与分析,获得了主厂房洞周在断续节理影响下的位移场和塑性区分布规律,为大型地下工程围岩稳定分析提供了有益的参考。 展开更多
关键词 断续节理 interface模型 围岩稳定 数值计算与分析
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Interface模型模拟断续节理洞群渗流效应的数值分析 被引量:1
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作者 孙爱花 麻红宝 朱维申 《隧道建设》 2007年第S2期183-187,共5页
采用三维有限差分FLAC3D程序,以二滩工程地下洞群的结构形式为背景,提出interface界面模型模拟断续节理的力学效应,考虑与不考虑节理岩体静水渗流对围岩稳定性进行了大量计算工况的准三维数值模拟。通过系统分析得出相应的结论,为大型... 采用三维有限差分FLAC3D程序,以二滩工程地下洞群的结构形式为背景,提出interface界面模型模拟断续节理的力学效应,考虑与不考虑节理岩体静水渗流对围岩稳定性进行了大量计算工况的准三维数值模拟。通过系统分析得出相应的结论,为大型地下工程围岩稳定分析提供了有益的参考。 展开更多
关键词 节理 渗流 interface模型 系统分析 围岩稳定
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支持Multi-interface的MVC设计模式研究 被引量:6
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作者 邓贵仕 易峰 李文立 《计算机应用》 CSCD 北大核心 2002年第6期8-10,共3页
支持多类型用户界面的复杂应用程序架构设计一直是困扰企业的难题 ,文章引入源于Smalltalk的MVC架构设计思想 ,提出了具有经济性、可扩展性、安全性等支持多类型用户界面复杂应用程序的新型MVC设计模式 。
关键词 MVC模型 MULTI-interface JAVA 设计模式 J2EE 程序架构设计
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支持Multi-interface的Java程序MVC设计模式研究 被引量:2
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作者 邓贵仕 易峰 李文立 《计算机工程与应用》 CSCD 北大核心 2003年第7期126-128,共3页
支持多类型用户界面的复杂应用程序架构设计一直是困扰企业的难题,文章引入源于Smalltalk的MVC架构设计思想,提出了具有经济性、可扩展性、安全性等支持多类型用户界面复杂应用程序的新型MVC设计模式,并分析了工作原理和性能特点。
关键词 用户界面 JAVA语言 程序架构设计 MVC 设计模式 MULTI-interface 应用程序
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AN INTERFACE INCLUSION BETWEEN TWO DISSIMILAR PIEZOELECTRIC MATERIALS 被引量:2
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作者 高存法 樊蔚勋 《应用数学和力学》 EI CSCD 北大核心 2001年第1期85-92,共8页
The generalized two_dimensional problem of a dielectric rigid line inclusion, at the interface between two dissimilar piezoelectric media subjected to piecewise uniform loads at infinity, is studied by means of the St... The generalized two_dimensional problem of a dielectric rigid line inclusion, at the interface between two dissimilar piezoelectric media subjected to piecewise uniform loads at infinity, is studied by means of the Stroh theory. The problem was reduced to a Hilbert problem, and then closed_form expressions were obtained, respectively, for the complex potentials in piezoelectric media, the electric field inside the inclusion and the tip fields near the inclusion. It is shown that in the media, all field variables near the inclusion_tip show square root singularity and oscillatory singularity, the intensity of which is dependent on the material constants and the strains at infinity. In addition, it is found that the electric field inside the inclusion is singular and oscillatory too, when approaching the inclusion_tips from inside the inclusion. 展开更多
关键词 压电材料 界面夹杂 复势 尖端场 Stroh公式 裂纹 压电介质
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AS-Interface接口技术及应用 被引量:3
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作者 彭宽平 《控制工程》 CSCD 2004年第6期546-549,共4页
阐述了AS Interface(ActuratorSensorInterface,简称AS I)接口技术的特点及其在自动控制系统中的应用。介绍了AS I接口技术的主要特性,产品的主要构成。分析了接口基本内容和AS I模块,给出了AS I的两种典型应用方案。可以看出,AS I是一... 阐述了AS Interface(ActuratorSensorInterface,简称AS I)接口技术的特点及其在自动控制系统中的应用。介绍了AS I接口技术的主要特性,产品的主要构成。分析了接口基本内容和AS I模块,给出了AS I的两种典型应用方案。可以看出,AS I是一个传感器 执行器 接口的技术,用两芯电缆传递数据和电源,用于自动化控制层的最底层,用简单经济的方式将二进制的数字化执行器和传感器连接起来,既可以直接连接到控制箱中,单独或与PLC,IPC一起独立就地运行;或与上层现场总线(Profibus,Interbus,Devi ceNet,CAN,Modbus,Modbus+,CC Link,Ethernet等)相连,作为现场总线的一个分支,应用于网络系统,从而满足工业控制的各种要求。 展开更多
关键词 AS-I接口技术 模块 网络 产品 应用 传感器
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AS-Interface总线技术在矿井提升机中的应用 被引量:2
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作者 黄迎辉 《机电工程》 CAS 2008年第7期92-94,共3页
首先针对当前流行的几种工业总线存在的缺点,阐述了面向工控网络最底层的AS-Interface现场总线的系统构成、数据传输方式及其技术特性。接着从硬件和软件两方面详细说明了西门子AS-In-terface总线技术在矿井提升机上的应用以及远程监控... 首先针对当前流行的几种工业总线存在的缺点,阐述了面向工控网络最底层的AS-Interface现场总线的系统构成、数据传输方式及其技术特性。接着从硬件和软件两方面详细说明了西门子AS-In-terface总线技术在矿井提升机上的应用以及远程监控的实现。最后指出基于西门子AS-I总线技术的串行通讯系统十分适合中小企业进行自主开发,使企业在激烈的市场竞争中能争取到一个好的市场定位。 展开更多
关键词 AS-interface 现场工业总线 主站 从站
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一个基于MIB-interface健康映射的高效SNMP Agent设计
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作者 王利 郭巧 +1 位作者 张君 冯文峰 《计算机工程》 CAS CSCD 北大核心 2005年第9期11-13,166,共4页
现有的SNMP为保证对外提供一个更为开放、统一的接口,并没有限制变量绑定,协议栈大都按PDU中的变量顺序依次调用底层函数,这种调用往往是重复低效的。该文在不破坏协议的前提下,提出了一个基于MIB-interface的健康映射的设计方案,将Agen... 现有的SNMP为保证对外提供一个更为开放、统一的接口,并没有限制变量绑定,协议栈大都按PDU中的变量顺序依次调用底层函数,这种调用往往是重复低效的。该文在不破坏协议的前提下,提出了一个基于MIB-interface的健康映射的设计方案,将Agent和底层间的接口透明化,并以接口函数列表为主处理流程,可以避免无谓的重复调用,实现了一个高效的SNMP Agent。 展开更多
关键词 简单网络管理协议 代理 管理信息库 接口 健康映射
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固体异质结界面结构预测方法及AutoInterface程序实现 被引量:1
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作者 李晔飞 刘智攀 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2020年第11期2383-2392,共10页
预测材料异质结的界面原子结构对于理解界面对性能的影响至关重要.目前,从理论上预测材料界面结构仍具有极大挑战,主要是缺乏普适有效的理论计算方法.本文介绍了本课题组在异质结界面结构预测方面取得的最新进展.结合马氏体相变唯象理... 预测材料异质结的界面原子结构对于理解界面对性能的影响至关重要.目前,从理论上预测材料界面结构仍具有极大挑战,主要是缺乏普适有效的理论计算方法.本文介绍了本课题组在异质结界面结构预测方面取得的最新进展.结合马氏体相变唯象理论、图论和随机表面行走算法,提出了界面结构的一种有效预测方法,可以实现自动化的计算预测.通过GaP/TiO2半导体异质结等展示了该方法的有效性和在催化等领域的应用前景. 展开更多
关键词 异质结界面结构预测 马氏体相变唯象理论 图论 随机表面行走
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VIA(Virtual Interface Architecture)上的软件DSM系统实现和性能
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作者 史岗 尹宏达 +1 位作者 胡明昌 胡伟武 《计算机学报》 EI CSCD 北大核心 2003年第12期1621-1628,共8页
在由高性能PC搭建的Linux机群系统上 ,传统的网络接口体系结构引入了巨大的软件处理开销 ,无法满足虚拟共享存储并行应用对通信带宽、延迟和进程间同步的需求 .用户级网络接口标准———虚拟接口体系结构(VirtualInterfaceArchitecture ... 在由高性能PC搭建的Linux机群系统上 ,传统的网络接口体系结构引入了巨大的软件处理开销 ,无法满足虚拟共享存储并行应用对通信带宽、延迟和进程间同步的需求 .用户级网络接口标准———虚拟接口体系结构(VirtualInterfaceArchitecture ,VIA)与传统的网络接口体系结构相比 ,在软件协议开销、通信关键路径上操作系统的干预程度、通信和计算的重叠程度以及实现零拷贝等方面 ,具有明显的优势 .通过在传统网络通信接口和VIA通信接口上虚拟共享存储系统的性能对比 ,采用VIA网络接口体系结构可有效地提高虚拟共享存储系统的性能和可扩展性 . 展开更多
关键词 虚拟接口体系结构 VIA 软件协议 软件DSM系统 通信协议
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面向半导体设备的Interface A通信方法研究 被引量:1
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作者 叶家发 刘明哲 《机械设计与制造》 北大核心 2012年第5期273-275,共3页
针对半导体设备工厂自动化的设备数据采集需求,给出了一种基于Interface A标准的通信方法,该方法构造了设备的通用模型,设计了设备通信的安全认证和授权机制,并给出了采集设备实时数据的方法,可满足工厂自动化系统对半导体设备的数据采... 针对半导体设备工厂自动化的设备数据采集需求,给出了一种基于Interface A标准的通信方法,该方法构造了设备的通用模型,设计了设备通信的安全认证和授权机制,并给出了采集设备实时数据的方法,可满足工厂自动化系统对半导体设备的数据采集和设备控制需求。 展开更多
关键词 半导体设备 interface A 数据采集 工厂自动化
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Influence of confining prestress on the transition from interface defeat topenetration in ceramic targets 被引量:5
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作者 Patrik LUNDBERG RenéRENSTROM Olof ANDERSSON 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2016年第3期263-271,共9页
Replica scaled impact experiments with unconfined ceramic targets have shown that the transition velocity,i.e.,the impact velocity at which interface defeat ceases and ceramic penetration occurs,decreased as the lengt... Replica scaled impact experiments with unconfined ceramic targets have shown that the transition velocity,i.e.,the impact velocity at which interface defeat ceases and ceramic penetration occurs,decreased as the length scale increased.A possible explanation of how this scale effect is related to the formation of a cone crack in the ceramic has been presented by the authors in an earlier paper.Here,the influence of confinement and prestress on cone cracking and transition velocity is investigated.The hypothesis is that prestress will suppress the formation and growth of the cone crack by lowering the driving stress.A set of impact experiments has been performed in which the transition velocity for four different levels of prestress has been determined.The transition velocities as a function of the level of confining prestress is compared to an analytical model for the influence of prestress on the formation and extension of the cone crack in the ceramic material.Both experiments and model indicate that prestress has a strong influence on the transition from interface defeat to penetration,although the model underestimates the influence of prestress. 展开更多
关键词 Impact Ceramic Armour interface DEFEAT DWELL CONFINEMENT PRESTRESS
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Numerical Simulation of Particle/Matrix Interface Failure in Composite Propellant 被引量:7
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作者 常武军 鞠玉涛 +2 位作者 韩波 胡少青 王政时 《Defence Technology(防务技术)》 SCIE EI CAS 2012年第3期146-153,共8页
Interface debonding between particle and matrix in composite propellant influences its macroscopic mechanical properties greatly. For this, the laws of interface cohesive damage and failure were analyzed. Then, its mi... Interface debonding between particle and matrix in composite propellant influences its macroscopic mechanical properties greatly. For this, the laws of interface cohesive damage and failure were analyzed. Then, its microscopic computational model was established. The interface mechanical response was modeled by the bilinear cohesive zone model. The effects of interface properties and particle sizes on the macroscopic mechanical behavior were investigated. Numerical simulation of debonding damage evolution of composite propellant under finite deformation was carried out. The debonding damage nucleation, propagation mechanism and non-uniform distribution of microscopic stress-strain fields were discussed. The results show that the finite element simulation method based on microstructure model can effectively predict the trend of macroscopic mechanical behavior and particle/matrix debonding evolution process. It can be used for damage simulation and failure assessment of composite propellants. 展开更多
关键词 propulsion system of aviation and aerospace interface debonding cohesive zone model composite propellant cohesive element damage evolution
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Visualized User Interface for Decision Support System 被引量:2
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作者 Li Tong, Feng Shan & Cai Jun Department of Automatic Control Engineering, Huazhong University of Science and Technology, Wuhan 430074, P. R. China Li Tong, Feng Shan & Cai Jun Visualized User Interface for Decision Support System 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 1997年第3期60-64,共5页
To work efficiently with DSS, most users need assistance in representation conversion, i. e., translating the specific outcome from the DSS into the universal language of visual. In generally, it is much easier to und... To work efficiently with DSS, most users need assistance in representation conversion, i. e., translating the specific outcome from the DSS into the universal language of visual. In generally, it is much easier to understand the results from the DSS if they are translated into charts, maps, and other scientific displays, because visualization exploits human natural ability to recognize and understand visual pattern. In this paper we discuss the concept of visualization for DSS. AniGraftool, a software system, is introduced as an example of Visualized User Interface for DSS. 展开更多
关键词 VISUALIZATION User interface Decision support system.
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