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机电一体化技术及其应用研究外文文献翻译、中英文翻译

机电一体化技术及其应用研究外文文献翻译、中英文翻译
机电一体化技术及其应用研究外文文献翻译、中英文翻译

附录一外文译文

Electromechanical integration technology and its application

1.An

electromechanical integration technology development

Mechatronics is the machinery, micro-, control, aircraft, information processing, and other cross-disciplinary integration, and its development and progress depends on the progress of technology and development, the main direction of development of a digital, intelligent, modular, and human nature , miniaturization, integration, with source and green.

1.1 Digital

Microcontroller and the development of a number of mechanical and electrical products of the base, such as the continuous development of CNC machine tools and robots, and the rapid rise of the computer network for the digital design and manufacturing paved the way for, such as virtual design and computer integrated manufacturing. Digital request electromechanical integration software products with high reliability, easy operability, maintainability, self-diagnostic capabilities, and friendly man-machine interface. Digital will facilitate the realization of long-distance operation, diagnosis and repair.

Intelligent 1.2

Mechanical and electrical products that require a certain degree of intelligence, it is similar to the logical thinking, reasoning judgement, autonomous decision-making capabilities. For example, in the CNC machine increase interactive features, set up Intelligent I / O interface and intelligent database technology, will use, operation and maintenance of bring great convenience. With fuzzy control, neural network, gray, wavelet theory, chaos and bifurcation, such as artificial intelligence and technological progress and development and the development of mechanical and electrical integration technology has opened up a vast world.

Modular 1.3

As electromechanical integration products and manufacturers wide variety of research and development of a standard mechanical interface, dynamic interface, the environment interface modules electromechanical integration products is a complex and promising work. If the development is set to slow down. VVVF integrated motor drive unit with vision, image processing, identification and location of the motor

functions, such as integrated control unit. Thus, in product development, design, we can use these standards modular unit quickly develop new products.

1.4 Network

As the popularity of the network, network-based remote control and monitoring of various technical ascendant. The remote control device itself is the integration of mechanical and electrical products, fieldbus technology to household appliances and LAN network possible, use a home network to connect various home appliances into a computer as the center of computer integrated appliances system, so that people in the home can be full enjoyment of the benefits of various high-tech, therefore, electromechanical integration products should be no doubt North Korea networks.

1.5 humanity

Electromechanical integration of the end-use product is targeted, how to give people electromechanical integration of intelligent products, emotion and humanity is becoming more and more important, electromechanical integration products in addition to improving performance, it also urged the color, shape and so on and environmental coordination, the use of these products, or for a person to enjoy, such as home robot is the highest state of human-machine integration.

1.6 miniaturization

Micro-fine processing technology is a necessity in the development, but also the need to improve efficiency. MEMS (Micro Electronic Mechanical Systems, or MEMS) refers to quantities can be produced by the micro-collection agencies, micro-sensors, micro actuators and signal processing and control circuit until interface, communication and power is one of the micro-devices or systems . Since 1986 the United States at Stanford University developed the first medical microprobe, 1988 at the University of California, Berkeley developed the first micro-motor, both at home and abroad in MEMS technology, materials and micro-mechanism much progress has been made, the development of all sorts MEMS devices and systems, such as the various micro-sensors (pressure sensors, micro-accelerometer, micro-tactile sensor), various micro-component (micro-film, micro-beam, microprobes, micro-link, micro-gear, micro-bearings, micro-pump , microcoil and micro-robot, etc.).

1.7 Integration

Integration includes a mutual penetration of various technologies, and integration of various products of different structural optimization and composite, and included in the production process at the same time processing, assembly, testing, management,

and other processes. In order to achieve more variety, small batch production of automation and high efficiency, the system should have a more extensive flexible. First system can be divided into several levels, allowing the system to function dispersed, and security and coordination with other parts of the operation, and then through software and hardware at various levels will be organically linked to its optimal performance, the most powerful.

1.8 with source of

Electromechanical integration refers to the product itself with energy, such as solar cells, fuel cells and large-capacity battery. As on many occasions not be able to use electricity, which campaigns for the mechanical and electrical integration products, has a unique power source comes with the benefits. Sources with the integration of mechanical and electrical product development direction of.

Green 1.9

The development of technology in people's lives brought great changes in the material at the same time has also brought rich resources, deterioration of the ecological environment consequences. Therefore, people calling for the protection of the environment, regression, and achieving sustainable development in the concept of green products such calls have emerged. Green products is low-power, low-wood consumption, clean, comfortable, coordination and utilization of renewable products. In its design, manufacture, use and destruction of human beings should be in line with environmental protection and health requirements, electromechanical integration of green products is mainly refers to the use of time is not pollute the ecological environment, at the end of product life, and regeneration of decomposition products.

2.electromechanical integration in the application of technology in the iron and steel

In the iron and steel enterprises, the integration of mechanical and electrical systems are at the core microprocessor, the computer, industrial computer, data communications, display devices, meters and the combination of technologies such as organic, assembled by the merger means for the realization of a large-scale integrated system create conditions for effective integration, enhanced system control precision, quality and reliability. Electromechanical integration technology in the iron and steel enterprises in the mainly used in the following areas:

2.1 Intelligent Control Technology (IC)

As a large-scale iron and steel, high-speed continuous and the characteristics of the traditional control technologies encountered insurmountable difficulties, it is necessary to adopt very intelligent control technology. Control technologies include intelligent expert system, neural and fuzzy control, intelligent control techniques in steel product design, manufacturing, control, product quality and diagnostic equipment, and other aspects, such as blast furnace control system, electric furnace and continuous casting plant, steel rolling system , steelmaking - Casting integrated scheduling system - rolling, cold rolling, etc..

2.2 Distributed Control System (DCS)

Distributed control system uses a central command for the control of a number of Taiwan-site monitoring and intelligent computer control unit. Distributed control systems can be two, three or more levels. Using computers to concentrate on the production process monitoring, operation, management and decentralized control. With monitoring and control technologies, and the functions of distributed control system more and more. Not only can be achieved control of the production process, but also can be achieved online optimization, the production process real-time scheduling, production planning statistical management functions, as a measurement, control, integration of the integrated system. DCS control functions with diverse features and easy operation, the system can be extended, easy maintenance and high reliability characteristics. DCS is decentralized and centralized control monitoring, fault-minor, and the system has the chain protection features, the use of manual control system failure operational measures, the system is highly reliable. Distributed control system and centralized control system compared to their more functional, with a higher level of security. Is the large-scale integration of mechanical and electrical systems main trend.

2.3 Open Control System (OCS)

Open Control System (Open Control System) is the development of computer technology led by the new structure concept. "Open" means a standard for the exchange of information in order consensus and support this standard design systems, different manufacturers products can be compatible and interoperable, and the sharing of resources. Industrial control systems through open communication network so that all control equipment, management, computer interconnections, to achieve control and management, administration, integrated decision-making, through fieldbus to the

scene and control room instrumentation control equipment interconnected to achieve integrated measurement and control of.

2.4 Computer Integrated Manufacturing System (CIMS)

CIMS is the iron and steel enterprises will be and the production and operation, production management and process control connecting to achieve from raw materials into the plant, production and processing of shipments to the entire production process and the overall integration process control. Currently iron and steel enterprises have basically achieved process automation, but this kind of "automated island" of single automation lack of information resources and the sharing of the unified management of the production process, can hardly meet the requirements of the iron and steel production. Future competition iron and steel enterprises is the focus of many varieties, small batch production, cheap and of good quality, timely delivery of goods. In order to improve productivity, saving energy, reducing staff and the existing inventory, accelerate cash flow, production, operation and management of the overall optimization, the key is to strengthen the management, access to the benefits of raising the competitiveness of businesses. The United States, Japan and some other large-scale iron and steel enterprises in the 1980s has been widely realization of CIMS.

2.5 Fieldbus Technology (FBT)

Fieldbus Technology (Fied Bus Technology) is the connection settings in the field of instrumentation installed in the control room and control devices for digital, bi-directional, multi-station communication link. Fieldbus technology used to replace the existing signal transmission technology (such as 4 to 20 mA, DCDC transmission), it will enable more information in the field of Intelligent Instrumentation devices and higher-level control system in the joint between the communications media on the two-way transmission. Fieldbus connection can be through save 66% or more on-site signal connecting wires. Fieldbus lead to the introduction of the reform and the new generation of DCS around open fieldbus automation system of instruments, such as intelligent transmitter, intelligent, fieldbus detection instruments, fieldbus of PLC (Programmable Logic Controller) local control stations and field development.

2.6 AC drive technology

Transmission technology in the iron and steel industry plays a crucial role. With power technology and the development of microelectronics technology, the development of AC variable speed very quickly. The AC drive to the advantages of

electric drive technology in the near future from AC drive completely replace DC transmission, the development of digital technology, complex vector control technologies to achieve practical, AC variable speed system speed and performance has reached more than DC converter level. Now whether small or large-capacity electrical motor capacity synchronous motor can be used to achieve reversible induction motor or smoothing governor. AC drive system in the production of steel rolling emerged as a welcome users, applications continues to expand.

附录二外文原文

机电一体化技术及其应用研究

1 .机电一体化技术发展

机电一体化是机械、微、控制、机、信息处理等多学科的交叉融合,其发展和进步有赖于相关技术的进步与发展,其主要发展方向有数字化、智能化、模块化、化、人性化、微型化、集成化、带源化和绿色化。

1.1 数字化

微控制器及其发展奠定了机电产品数字化的基础,如不断发展的数控机床和机器人;而计算机网络的迅速崛起,为数字化设计与制造铺平了道路,如虚拟设计、计算机集成制造等。数字化要求机电一体化产品的软件具有高可靠性、易操作性、可维护性、自诊断能力以及友好人机界面。数字化的实现将便于远程操作、诊断和修复。

1.2 智能化

即要求机电产品有一定的智能,使它具有类似人的逻辑思考、判断推理、自主决策等能力。例如在CNC数控机床上增加人机对话功能,设置智能I/O接口和智能工艺数据库,会给使用、操作和维护带来极大的方便。随着模糊控制、神经网络、灰色、小波理论、混沌与分岔等人工智能技术的进步与发展,为机电一体化技术发展开辟了广阔天地。

1.3 模块化

由于机电一体化产品种类和生产厂家繁多,研制和开发具有标准机械接口、动力接口、环境接口的机电一体化产品单元模块是一项复杂而有前途的工作。如研制具有集减速、变频调速电机一体的动力驱动单元;具有视觉、图像处理、识别和测距等功能的电机一体控制单元等。这样,在产品开发设计时,可以利用这些标准模块化单元迅速开发出新的产品。

1.4 网络化

由于网络的普及,基于网络的各种远程控制和监视技术方兴未艾。而远程控制的终端设备本身就是机电一体化产品,现场总线和局域网技术使家用电器网络化成为可能,利用家庭网络把各种家用电器连接成以计算机为中心的计算机集成家用电器系统,使人们在家里可充分享受各种高技术带来的好处,因此,机电一

体化产品无疑应朝网络化方向发展。

1.5 人性化

机电一体化产品的最终使用对象是人,如何给机电一体化产品赋予人的智能、情感和人性显得愈来愈重要,机电一体化产品除了完善的性能外,还要求在色彩、造型等方面与环境相协调,使用这些产品,对人来说还是一种享受,如家用机器人的最高境界就是人机一体化。

1.6 微型化

微型化是精细加工技术发展的必然,也是提高效率的需要。微机电系统(Micro Electronic Mechanical Systems,简称MEMS)是指可批量制作的,集微型机构、微型传感器、微型执行器以及信号处理和控制电路,直至接口、通信和电源等于一体的微型器件或系统。自1986年美国斯坦福大学研制出第一个医用微探针,1988年美国加州大学Berkeley分校研制出第一个微电机以来,国内外在MEMS工艺、材料以及微观机理方面取得了很大进展,开发出各种MEMS器件和系统,如各种微型传感器(压力传感器、微加速度计、微触觉传感器),各种微构件(微膜、微粱、微探针、微连杆、微齿轮、微轴承、微泵、微弹簧以及微机器人等)。

1.7 集成化

集成化既包含各种技术的相互渗透、相互融合和各种产品不同结构的优化与复合,又包含在生产过程中同时处理加工、装配、检测、管理等多种工序。为了实现多品种、小批量生产的自动化与高效率,应使系统具有更广泛的柔性。首先可将系统分解为若干层次,使系统功能分散,并使各部分协调而又安全地运转,然后再通过软、硬件将各个层次有机地联系起来,使其性能最优、功能最强。

1.8 带源化

是指机电一体化产品自身带有能源,如太阳能电池、燃料电池和大容量电池。由于在许多场合无法使用电能,因而对于运动的机电一体化产品,自带动力源具有独特的好处。带源化是机电一体化产品的发展方向之一。

1.9 绿色化

技术的发展给人们的生活带来巨大变化,在物质丰富的同时也带来资源减少、生态环境恶化的后果。所以,人们呼唤保护环境,回归,实现可持续发展,绿色产品概念在这种呼声中应运而生。绿色产品是指低能耗、低材耗、低污染、舒适、协调而可再生利用的产品。在其设计、制造、使用和销毁时应符合环保和人类健康的要求,机电一体化产品的绿色化主要是指在其使用时不污染生态环境,产品寿命结束时,产品可分解和再生利用。

2 .机电一体化技术在钢铁中应用

在钢铁企业中,机电一体化系统是以微处理机为核心,把微机、工控机、数据通讯、显示装置、仪表等技术有机的结合起来,采用组装合并方式,为实现工程大系统的综合一体化创造有力条件,增强系统控制精度、质量和可靠性。机电一体化技术在钢铁企业中主要应用于以下几个方面:

2.1 智能化控制技术(IC)

由于钢铁具有大型化、高速化和连续化的特点,传统的控制技术遇到了难以克服的困难,因此非常有必要采用智能控制技术。智能控制技术主要包括专家系统、模糊控制和神经等,智能控制技术广泛于钢铁的产品设计、生产、控制、设备与产品质量诊断等各个方面,如高炉控制系统、电炉和连铸车间、轧钢系统、炼钢———连铸———轧钢综合调度系统、冷连轧等。

2.2 分布式控制系统(DCS)

分布式控制系统采用一台中央机指挥若干台面向控制的现场测控计算机和智能控制单元。分布式控制系统可以是两级的、三级的或更多级的。利用计算机对生产过程进行集中监视、操作、管理和分散控制。随着测控技术的,分布式控制系统的功能越来越多。不仅可以实现生产过程控制,而且还可以实现在线最优化、生产过程实时调度、生产计划统计管理功能,成为一种测、控、管一体化的综合系统。DCS具有特点控制功能多样化、操作简便、系统可以扩展、维护方便、可靠性高等特点。DCS是监视集中控制分散,故障面小,而且系统具有连锁保护功能,采用了系统故障人工手动控制操作措施,使系统可靠性高。分布式控制系统与集中型控制系统相比,其功能更强,具有更高的安全性。是当前大型机电一体化系统的主要潮流。

2.3 开放式控制系统(OCS)

开放控制系统(Open Control System)是计算机技术发展所引出的新的结构体系概念。“开放”意味着对一种标准的信息交换规程的共识和支持,按此标准设计的系统,可以实现不同厂家产品的兼容和互换,且资源共享。开放控制系统通过工业通信网络使各种控制设备、管理计算机互联,实现控制与经营、管理、决策的集成,通过现场总线使现场仪表与控制室的控制设备互联,实现测量与控制一体化。

2.4 计算机集成制造系统(CIMS)

钢铁企业的CIMS是将人与生产经营、生产管理以及过程控制连成一体,用以实现从原料进厂,生产加工到产品发货的整个生产过程全局和过程一体化控制。目前钢铁企业已基本实现了过程自动化,但这种“自动化孤岛”式的单机自动化缺乏信息资源的共享和生产过程的统一管理,难以适应钢铁生产的要求。未来钢铁企业竞争的焦点是多品种、小批量生产,质优价廉,及时交货。为了提高

生产率、节能降耗、减少人员及现有库存,加速资金周转,实现生产、经营、管理整体优化,关键就是加强管理,获取必须的效益,提高了企业的竞争力。美国、日本等一些大型钢铁企业在20世纪80年代已广泛实现CIMS化。

2.5 现场总线技术(FBT)

现场总线技术(Fied Bus Technology)是连接设置在现场的仪表与设置在控制室内的控制设备之间的数字式、双向、多站通信链路。采用现场总线技术取代现行的信号传输技术(如4~20mA,DC直流传输)就能使更多的信息在智能化现场仪表装置与更高一级的控制系统之间在共同的通信媒体上进行双向传送。通过现场总线连接可省去66%或更多的现场信号连接导线。现场总线的引入导致DCS的变革和新一代围绕开放自动化系统的现场总线化仪表,如智能变送器、智能执行器、现场总线化检测仪表、现场总线化PLC(Programmable Logic Controller)和现场就地控制站等的发展。

2.6 交流传动技术

传动技术在钢铁工业中起作至关重要的作用。随着电力技术和微电子技术的发展,交流调速技术的发展非常迅速。由于交流传动的优越性,电气传动技术在不久的将来由交流传动全面取代直流传动,数字技术的发展,使复杂的矢量控制技术实用化得以实现,交流调速系统的调速性能已达到和超过直流调速水平。现在无论大容量电机或中小容量电机都可以使用同步电机或异步电机实现可逆平滑调速。交流传动系统在轧钢生产中一出现就受到用户的欢迎,应用不断扩大。

中英文文献翻译

毕业设计(论文)外文参考文献及译文 英文题目Component-based Safety Computer of Railway Signal Interlocking System 中文题目模块化安全铁路信号计算机联锁系统 学院自动化与电气工程学院 专业自动控制 姓名葛彦宁 学号 200808746 指导教师贺清 2012年5月30日

Component-based Safety Computer of Railway Signal Interlocking System 1 Introduction Signal Interlocking System is the critical equipment which can guarantee traffic safety and enhance operational efficiency in railway transportation. For a long time, the core control computer adopts in interlocking system is the special customized high-grade safety computer, for example, the SIMIS of Siemens, the EI32 of Nippon Signal, and so on. Along with the rapid development of electronic technology, the customized safety computer is facing severe challenges, for instance, the high development costs, poor usability, weak expansibility and slow technology update. To overcome the flaws of the high-grade special customized computer, the U.S. Department of Defense has put forward the concept:we should adopt commercial standards to replace military norms and standards for meeting consumers’demand [1]. In the meantime, there are several explorations and practices about adopting open system architecture in avionics. The United Stated and Europe have do much research about utilizing cost-effective fault-tolerant computer to replace the dedicated computer in aerospace and other safety-critical fields. In recent years, it is gradually becoming a new trend that the utilization of standardized components in aerospace, industry, transportation and other safety-critical fields. 2 Railways signal interlocking system 2.1 Functions of signal interlocking system The basic function of signal interlocking system is to protect train safety by controlling signal equipments, such as switch points, signals and track units in a station, and it handles routes via a certain interlocking regulation. Since the birth of the railway transportation, signal interlocking system has gone through manual signal, mechanical signal, relay-based interlocking, and the modern computer-based Interlocking System. 2.2 Architecture of signal interlocking system Generally, the Interlocking System has a hierarchical structure. According to the function of equipments, the system can be divided to the function of equipments; the system

机电一体化中英文互译

机械专业中英文对照英语词汇陶瓷 ceramics 合成纤维 synthetic fibre 电化学腐蚀 electrochemical corrosion 车架 automotive chassis 悬架 suspension 转向器 redirector 变速器 speed changer 板料冲压 sheet metal parts 孔加工 spot facing machining 车间 workshop 工程技术人员 engineer 气动夹紧 pneuma lock 数学模型 mathematical model 画法几何 descriptive geometry 机械制图 Mechanical drawing 投影 projection 视图 view 剖视图 profile chart 标准件 standard component 零件图 part drawing 装配图 assembly drawing 尺寸标注 size marking 技术要求 technical requirements 刚度 rigidity 内力 internal force 位移 displacement 截面 section 疲劳极限 fatigue limit 断裂 fracture 塑性变形 plastic distortion 脆性材料 brittleness material 刚度准则 rigidity criterion 垫圈 washer 垫片 spacer 直齿圆柱齿轮 straight toothed spur gear 斜齿圆柱齿轮 helical-spur gear 直齿锥齿轮 straight bevel gear 运动简图 kinematic sketch 齿轮齿条 pinion and rack 蜗杆蜗轮 worm and worm gear 虚约束 passive constraint 曲柄 crank 摇杆 racker 凸轮 cams 共轭曲线 conjugate curve

文献翻译英文原文

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An Automatic MechanotronicsHorizontal Cutter 机电一体化全自动横切机 1.Say after70's in20centuries the our country sun float the method glass technique invention,our country of float method glass,the industry develops quickly.Currently,the our country is the world is the biggest to float the method glass production country,2006our country of float method glass,the production line has more than160s totally,adopting among them our country the sun float method glass to float method glass technically,the production line has more than130s totally, floating the method glass total yield already more than454,000,000,and yield annually all significant increment.But our country the洛sun float the method glass technique material and other nations to compare automation degree still very low,has been being placed in the half auto half artificial appearance,raise completely our country the洛sun float method glass a technique a material level,developing whole lineses allied lock follow produce the technique have already forced in the eyebrow.Currently,our country the sun float method glass a technique a material to mainly be placed in a single machine dispersion control stage(or part of llied lock control),rush through super nations float method glass a technique a material level, have to raise first our country the automation function of the single machine equipments.Horizontal slice machine conduct and actions to float method glass cold carry to produce one of the on-line important equipmentses,its automation degree and incise accuracy will influence the finished product rate that the glass produces,we introduce a kind of machine electricity integral whole to turn here full-automatic horizontal slice machine 1、述自20世纪70年代我国洛阳浮法玻璃技术发明之后,我国的浮法玻璃工业迅速发展。目 前,我国是世界最大浮法玻璃生产国,2006年我国的浮法玻璃生产线共有160多条,其中采用我国洛阳浮法玻璃技术的浮法玻璃生产线共有130多条,浮法玻璃总产量已超过4.54亿重量箱,而且产量每年都大幅度增加。但我国洛阳浮法玻璃技术装备与其它国家相比自动化程度还很低,一直处在半自动半人工状态,全面提高我国洛阳浮法玻璃技术装备水平,开发全线联锁跟踪生产技术已迫在眉捷。目前,我国洛阳浮法玻璃技术装备主要处于单机分散控制阶段(或部分联锁控制),要赶超国际浮法玻璃技术装备水平,首先必须提高我国单机设备的自动化功能。横切机作为浮法玻璃冷端生产线上的重要设备之一,其自动化程度及切割精度将影响玻璃生产的成品率,在此我们介绍一种机电一体化全自动横切机(见图1)。

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文献信息: 文献标题:Challenges and opportunities affecting the future of human resource management(影响人力资源管理未来的挑战和机遇) 国外作者:Dianna L. Stone,Diana L. Deadrick 文献出处:《Human Resource Management Review》, 2015, 25(2):139-145 字数统计:英文3725单词,21193字符;中文6933汉字 外文文献: Challenges and opportunities affecting the future of human resource management Abstract Today, the field of Human Resource Management (HR) is experiencing numerous pressures for change. Shifts in the economy, globalization, domestic diversity, and technology have created new demands for organizations, and propelled the field in some completely new directions. However, we believe that these challenges also create numerous opportunities for HR and organizations as a whole. Thus, the primary purposes of this article are to examine some of the challenges and opportunities that should influence the future of HR. We also consider implications for future research and practice in the field. Keywords: Future of human resource management, Globalization, Knowledge economy Diversity, Technology 1.Change from a manufacturing to a service or knowledge economy One of the major challenges influencing the future of HR processes is the change from a manufacturing to a service or knowledgebased economy. This new economy is characterized by a decline in manufacturing and a growth in service or knowledge as the core of the economic base. A service economy can be defined as a system based on buying and selling of services or providing something for others (Oxford

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中等分辨率制备分离的 快速色谱技术 W. Clark Still,* Michael K a h n , and Abhijit Mitra Departm(7nt o/ Chemistry, Columbia Uniuersity,1Veu York, Neu; York 10027 ReceiLied January 26, 1978 我们希望找到一种简单的吸附色谱技术用于有机化合物的常规净化。这种技术是适于传统的有机物大规模制备分离,该技术需使用长柱色谱法。尽管这种技术得到的效果非常好,但是其需要消耗大量的时间,并且由于频带拖尾经常出现低复原率。当分离的样本剂量大于1或者2g时,这些问题显得更加突出。近年来,几种制备系统已经进行了改进,能将分离时间减少到1-3h,并允许各成分的分辨率ΔR f≥(使用薄层色谱分析进行分析)。在这些方法中,在我们的实验室中,媒介压力色谱法1和短柱色谱法2是最成功的。最近,我们发现一种可以将分离速度大幅度提升的技术,可用于反应产物的常规提纯,我们将这种技术称为急骤色谱法。虽然这种技术的分辨率只是中等(ΔR f≥),而且构建这个系统花费非常低,并且能在10-15min内分离重量在的样本。4 急骤色谱法是以空气压力驱动的混合介质压力以及短柱色谱法为基础,专门针对快速分离,介质压力以及短柱色谱已经进行了优化。优化实验是在一组标准条件5下进行的,优化实验使用苯甲醇作为样本,放在一个20mm*5in.的硅胶柱60内,使用Tracor 970紫外检测器监测圆柱的输出。分辨率通过持续时间(r)和峰宽(w,w/2)的比率进行测定的(Figure 1),结果如图2-4所示,图2-4分别放映分辨率随着硅胶颗粒大小、洗脱液流速和样本大小的变化。

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机器人外文翻译

英文原文出自《Advanced Technology Libraries》2008年第5期 Robot Robot is a type of mechantronics equipment which synthesizes the last research achievement of engine and precision engine, micro-electronics and computer, automation control and drive, sensor and message dispose and artificial intelligence and so on. With the development of economic and the demand for automation control, robot technology is developed quickly and all types of the robots products are come into being. The practicality use of robot products not only solves the problems which are difficult to operate for human being, but also advances the industrial automation program. At present, the research and development of robot involves several kinds of technology and the robot system configuration is so complex that the cost at large is high which to a certain extent limit the robot abroad use. To development economic practicality and high reliability robot system will be value to robot social application and economy development. With the rapid progress with the control economy and expanding of the modern cities, the let of sewage is increasing quickly: With the development of modern technology and the enhancement of consciousness about environment reserve, more and more people realized the importance and urgent of sewage disposal. Active bacteria method is an effective technique for sewage disposal,The lacunaris plastic is an effective basement for active bacteria adhesion for sewage disposal. The abundance requirement for lacunaris plastic makes it is a consequent for the plastic producing with automation and high productivity. Therefore, it is very necessary to design a manipulator that can automatically fulfill the plastic holding. With the analysis of the problems in the design of the plastic holding manipulator and synthesizing the robot research and development condition in recent years, a economic scheme is concluded on the basis of the analysis of mechanical configuration, transform system, drive device and control system and guided by the idea of the characteristic and complex of mechanical configuration,

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机械毕业设计英文外文翻译204机电一体化

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Dashboard From Wikipedia, the free encyclopedia This article is about a control panel placed in the front of the car. For other uses, see Dashboard (disambiguation). The dashboard of a Bentley Continental GTC car A dashboard (also called dash, instrument panel (IP), or fascia) is a control panel located directly ahead of a vehicle's driver, displaying instrumentation and controls for the vehicle's operation. Contents 1.Etymology 2.Dashboard features 3.Padding and safety 4.Fashion in instrumentation 5.See also 6.References Etymology Horse-drawn carriage dashboard Originally, the word dashboard applied to a barrier of wood or leather fixed at the front of a horse-drawn carriage or sleigh to protect the driver from mud or other debris "dashed up" (thrown up) by the horses' hooves.[1] Commonly these boards did not perform any additional function other than providing a convenient handhold for ascending into the driver's seat, or a small clip with which to secure the reins when not in use. When the first "horseless carriages" were constructed in the late 19th century, with engines mounted beneath the driver such as the Daimler Stahlradwagen, the simple dashboard was retained to protect occupants from debris thrown up by the cars' front wheels. However, as car design evolved to position the motor in front of the driver, the dashboard became a panel that protected vehicle occupants from the heat and oil of the engine. With gradually increasing mechanical complexity, this panel formed a convenient location for the placement of gauges and minor controls, and from this evolved the modern instrument panel,

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