工业工程专业英语.doc

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1、二Real IE Value工业工程的真正价值1、On the other hand,todays IE has at his or her disposal more technology and tools than the IE of 30 years ago could have ever imagined.另一方面,现在的工业工程师可以使用许多30年前的同行想都不可能想到的技术和工具。2、If a person loses sight of the total job and starts looking at the individual pieces,it comes out a

2、 little hairy.如果一个人不能对整项工作做全面把握而只是将注意力放在个别的方面,则结果将不会令人满意。3、Problems associated with renaming IE departments to describe their particular function may have more to do with appearance than with the actual job being performed.将工业工程部重新命名以明确描述其具体职能,其间所出现的问题与其说与实际完成的工作有关倒不如说与问题的表象有关。4、In fact,even though

3、ABET accredits many IE and IET programs in the United States,there remains much variance and flexibility among each of the programs.【ABET是工程与技术鉴定委员会(the Accreditation Board for Engineering and Technology)的简写。该委员会是美国用来检查和评价各工程类大学全部课程的官方机构,ABET鉴定目的是向公众和工程类毕业生的雇主保证学校的课程满足了规定的最低标准。】实际上,尽管工程与技术鉴定委员会鉴定了美国

4、的许多工业工程和工业工程与技术项目,但这些项目之间仍然存在很大的区别和灵活性。6、But if the individual IE will assume the role as a change implementornot a change followerbroad opportunities are on the horizon.然而,如果每个工业工程师都承担起变化的实施者而不是变化的追随者的角色,则广泛的机会就会出现。7、If weve got a problem,its of our own doing and our own unwillingness to take the l

5、ead in a lot of these major improvement activities.如果我们遇到了问题,这些问题也是由于我们自己的所作所为和不愿意在一些重大的改进活动中承担领导角色所造成的。三、Operetions Research运筹学Operations research,as defined by the Operations Research Society of America,“is concerned with scientifically deciding how to best desigh and operate man-machine systems,u

6、sually under conditions requiring the allocation of scarce resources.”美国运筹学学会将运筹学定义为:在需要对紧缺资源进行分配的前提下决定如何最好地设计和运作人机系统的决策科学。四、Work-measured Labor Standards 基于作业测量的劳动标准4.1 Perhaps the only thing wrong with these tools is their lack of a buzz word or catchy acronym.也许这些工具的唯一缺点是它们没有一个能够反映其内涵的响亮的词组或引入的字母

7、的缩写。4.2 Human workers come in at least a billion models with varying physical,mental,and emotional specifications and work under varying environmental conditions.由于身体、精神和感情等方面以及工作环境的不断变化,工人至少可以被分为十亿种不同的类型。4.3 Standard times are standard times only because all parties involved agree they are standard

8、 times.标注时间之所以是标准的仅仅是因为相关的所有部门都承认其是标准时间。4.4 Like any standards system, a computerized standards system wont help-and can be counterproductive-if it is not kept up-to-date.同其他的任何标准系统一样,如果不能做到与时俱进,计算机化的标准系统将起不到相应的作用并且可能会降低生产率。五、Ergonomics 人因学5.1 Accident proneness implies that there are certain indivi

9、duals with enduring personality characteristics,who incur a majority of accidents.事故倾向性指具有某类特性的个体导致主要事故的发生。5.2 The transformation from a rural,agrarian to an urban,industrialized lige has come at a cost,and workers are payingin terms of a tremendous increase in industrial and in terms of worker stre

10、ss.从以田园为主的农业经济向以城市化为主的工业经济的转变付出了一定的代价,这些代价是工人显著增加的工业伤害和工作压力的形式付出的。5.3 Technology transfer from the Western word is important,but must be concerned not only with the adaptation and use of machines but also with the entire infrastructure of training local users to develop independent capabilities so t

11、hat they can act freely on the global market.尽管从西方引进技术很重要,但技术转让的过程不仅要考虑如何使本土使用者适应和使用机器,而且还要考虑如何建设能够培训这些本土使用者的独立能力以便使其能够在全球化的市场中运用自如的整个基础设施。5.4 Ergonomics is rather a design methodology that is used to arrive at safety,productivity and satisfaction.应该说工效学是一种用来实现系统安全性、生产率和操纵者满意度的设计方法。六、 Next Generatio

12、n Factory Layouts 21世纪的工厂布局6.1While grouping resources based on function provides some economies of scale and simplicity in allocating workloads,it makes the layout susceptipble to manufacturing inefficiencies when there are changes in product mix or routings.尽管根据能够实现的功能将资源分组能够获得一定的规模效应并能简化工作量的分配,但当

13、产品的组合或工艺路劲发生变化时很容易造成功能布局的制造效率低下。6.2 Layout design procedures,whether for functional or cellular layouts,have been largely based on a deterministic paradigm.无论是功能式布局还是单元式布局,其设计过程大体上都是基于确定性假设的。6.3 In fact,the relationship between layout flexibility and layout performance is poorly understood and analy

14、tical models for its evaluation are lacking.实际上,人们对于布局灵活性与布局绩效之间的关系的理解很有限而且缺乏用来评价这些关系的分析模型。6.4 Facility planner had to choose layouts that make material handing efficient not only in each individual plant but throughout the complex. The challenge for facility planners is then to develop a layout and

15、 a material-handling system to permit high efficiency at the core and flexibility and reconfigurability at the periphery.设施规划者必须选择那些不仅在每个工厂内部而且在整个综合企业中就物料搬运来说都是有效的布局。因而,这里的挑战在于如何开发布局和物料搬运系统使得每个工厂在内部都很有效而在其他工厂的交界处则具有很高的灵活性和可重组性。6.5 They create hybrid facilities consisting of flow-line-like components

16、 where they build the common platforms and job shop-like components where they customize the products.他们建设由通用和个性化平台组成的混合型设施,前者以流水线方式生产通用零部件而后者则用专业化车间的生产方式生产体现产品个性化的零部件。6.6 Depending on downstream congestion,products can move in and out of neighboring production lines,creating multiple paths,or chann

17、els,minimizing queueing and congestion.根据生产线下游的阻塞情况,产品可以在相邻的生产线之间相互调配,这样就产生了多个生产路劲或通道,同时可以最小化排队等待和阻塞(时间)。第八、The role of IE in engineering economics(工业工程在工程经济学中的作用)1.It may seem trivial to state that an industrial project must be evaluate in order to justify it.为了论证某一项目必须对其进行评价,这样一个论断可能显得无足轻重。2.As a

18、result,management must resort to the “leap of faith” approach to justify new systems that are intuitively sound from a strategic point of view but that are not convincing economically.结果,管理层不得不求助于“信任的跳跃”以便从战略的高度论证那些直观上感觉可行但经济上不能令人信服的新系统。3. Armed with economic models tailored to specific technologies

19、, industrial engineers are able to measure, for instance, the cost of flexibility and, in turn, help integrate this figure in accounting cost systems and financial justification models.掌握了适应各种特定技术的经济模型后,工业工程师就能够对诸如柔性成本等指标进行度量并且能够反过来协助将这些数值与会计成本系统和金融论证模型集成起来。4. Without going into detail, lets say tha

20、t IT has far-reaching implications for firms in general,as its enabling capabilities can significantly modify business processes.简言之,信息技术对一般的企业都具有深远的影响,因为它有能力对企业的业务流程进行重要的修正。5.Without claiming that engineering economy has solved all problems, it can be said that help in available.尽管不能说工程经济学已经解决了所有问题

21、,但可以对问题的解决起到帮助作用。6.These full-blown typologies give extensive cost classification in terms of discrete vs. periodical costs and in terms of tangible, irreducible, and intangible costs.这些成熟的成本类型学根据离散成本和周期性成本以及有形成本,既约成本和无形成本对项目中所涉及的成本进行了广泛的分类。7.Activity-based accounting came into being as a result of

22、poor allocation methods.质量低劣的成本分配方法导致了基于活动的会计统计方法的产生。8.Attemping to evaluate and justify complex and strategic capital investments is far from simple. 评价和论证复杂的战略资本投资方案绝对不是一个人可以单打独斗的事。第九课 系统工程和工程管理一、 to develop a system successfully ,engneers must first define the problem that exsist ,identify the mi

23、ssion requirements of the organization needing the problem to be solved,evaluate high-level concepts for solving the problem,select the concept that makes the most sense in light of the mission requirements, develop an operational concept around the selected concept,create system-level requirements,

24、 create architectures and derived requirements for the subsystems.and finally ,retire the system.句中must后为一系列的并列结构,详细的阐述了系统开发生命周期过程中需要完成的各项活动。二、A product platform is an integrated and interoperable set of components that can be used to create many different products,e.g. power saws ,sanders and drill

25、s. 一个产品开发平台是指一组可以集成和互换的零件,基于这些零件,可以产生多种不同的产品,如,电锯,打磨机和电钻等。三、Military Standard 499A(1974) defines system engineering as “the application of scientific and engineering efforts to : 这里给出了系统工程的定义:1974年的美国军方标准499A把系统工程定义为将科学和工程知识用于实现如下功能的应用: (1)Transform an operational need into a description of system p

26、erformance parameters and a system configuration through the use of an iterative process of definition, synthesis , analysis ,design ,test ,and evaluation; 经过从定义、合成、分析、设计、测试到评价的不断反复过程将运作需求转换为对系统行为参数的描述以及系统配置; (2)Integrate related technical parameters and ensure compatibility of all related ,function

27、al ,and program interfaces in a manner that optimizes the total system definition and design; 以能够优化整个系统的定义和设计的方式集成相关的技术参数并确保所有相关功能和程序界面相互兼容; (3)Integrate,reliability,maintainability,safety,and survivability ,human ,and other such factors into total engineering effort to meet cost ,schedule ,and tech

28、nical performance objectives;” 在满足成本、交期和技术要求的情况下从工程角度综合考虑可靠性、可维护性、安全性、生命力、人因学以及其他因素; 四、Kocaolgu (1984) defined EM as a field of study in five interrelated categories ,namely: 工程管理的定义:1984年Kocaolgu 将工程管理定义为一个面向如下五种相互关联的管理类型的研究领域。 (1) Management of engineering and Scientists :Motivation ang leadership

29、 in engineering ,technical obsolescence ,communications transition from technical specialty to technical management; 工程和科学管理:研究工程领域的动机和领导、技术的废弃、从技术专业化到技术管理的过度等。 (2)Management of Research ,Development ,and Engineering Projects: Selection ,evaluation , scheduling and control of technical Projects; 研究、

30、开发与工程项目管理:研究技术项目的选择、评价、规划和控制。 (3)Management of Technical Organizations: Design of technical organizations, authority/responsibility patterns in functional ,project ,matrix ,and venture organizations ,the role of participative management in technical organizations; 技术型组织的管理:研究技术型组织的设计和功能型、项目型、矩阵型和风险型

31、组织的职能模式设计及全员参与管理在技术组织中的角色。 (4) Management of Technical Resources : Use of statistics , operations research , decision theory and computer simulation in resources optimization , management of raw materials ,technical manpower planning , financial management in engineering ; 技术资源管理:将统计学、运筹学、决策理论和计算机仿真

32、应用在工程领域的资源优化、原材料管理、技术人员规划和金融管理。 (5) Management of Technological System : Management of innovation ,entrepreneurship , Technological planning and forecasting , technological risk management, engineering law ,research ang development management ,and productivity; 技术系统管理:研究创新管理、企业家管理、技术规划和预测、技术风险管理、工程法律、研发管理和生产率管理。

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