毕业设计报告的英文怎么翻译? 毕业设计英文翻译格式

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毕业设计报告的英文怎么翻译?毕业设计英文翻译格式

毕业设计的英文翻译

Diploma Design; Graduation Project 毕业设计

graduation ceremony 毕业设计

求毕业设计英文翻译

随着开发、制造过程的数字化和网络化,特别是因特网的普及和发展,出现了基于因特网的先进制造模式——网络化制造模式。数字化机构综合设计平台系统主要是针对方案与构型已经成熟了的机构, 根据总体输入要求的变化, 快速实现机构产品的设计与分析, 将原来变更设计时由设计人员重新改变设计参数的过程变为由设计平台自动完成。数字化机构设计平台采用“自顶向下”的设计方法, 这种方法是从产品构成的最顶层开始把组成整机的e5a48de588b67a686964616f31333234306530部件作为一个整体系统来考虑, 并根据其在产品中的相互位置关系、所起的作用和实现的功能等建立产品构成的布局图形, 通过给定设计约束条件、关键的设计参数等设计信息, 集中地捕捉产品整机设计意图,自上而下地传递所给设计信息, 展开产品的整个设计过程。

With the development of the manufacturing process and digital networks, especially the Internet, the popularity and development, the emerging Internet-based advanced manufacturing model -- manufacturing network model. Digital Integrated System Design Platform is mainly directed against the program and configuration of the mature, According to the general entry requirements change rapidly agencies product design and analysis, changes in the original design from the designer to re-design parameters are changed into the process from design platform done automatically. Digital design platform using the "top-down" design methods, This product is the highest form of the component unit began as a component of the overall system to be considered according to their products in the mutual position, played the role and function of the realization of the establishment of such products constitute the graphic layout, through to design constraints, The key design parameters, such as design information capture products to concentrate on aircraft design intent, top to bottom to transmit design information products launched throughout the design process.

毕业设计英文翻译1

图1 。贯穿型材提高整体的散热性能在强制对流。

问题

在当今的电子设备,整个系统的耗散功率水平正在提高的每一个新的设计。增加功率水平再加上市场预期的减少封装尺寸导致热量的问题,如果不加控制,可以大大缩短生活的电子产品。虽然这种“增加电力-减少规模”的设想已经被普遍几十年来,该行业的能力,使较小的电子元件任务缩小冷却组件。

市场需求已转向注意减少数量和提高热效率。对于一些电子产品(通常是不中断的电力供应和电信系统)的市场还要求减少面积和地方严格限制噪声。这些限制武力设计走向更加昂贵余热排出技术。

总功率水平并不是唯一的问题。热密度,或瓦每平方厘米,在半导体的问题日益严重,也。这是由于电子和密度增加时钟频率。高热流密度相结合的总体功率水平是主要的问题,散热管理。这些热的挑战可能导致设备故障,即使散热表面积和气流的大小正确。

趋势-哪些电子冷却的方法是去?

教授阿夫拉姆酒吧,科恩由明尼苏达大学著名的电子冷却程序,解决了问题, “什么是未来的热管理搁置电子? ”以下列方式: “我不知道。一件事是肯定的;不一会儿平原岁空冷不会削减它... ! ” [ 1 ] 。此消息总结了双方存在的问题及答案。现在的问题是,目前的空气冷却技术不足以应付需求的电子产品。可能的答案是在本声明。液体冷却提供了许多好处,包括显着余热排出能力降低音量。

空冷近

空冷是传统方法冷却电子。在过去,热设计时只考虑实验室测试失败或部分把PC板布朗。作为传热剂,空气是一个穷国媒体下列限制:

•低密度和低比热,导致承载能力低热量

•低导热系数

然而,由于其可用性,成本低,易于维护和“没有问题,如果有泄漏”的特点,空冷仍是首选。

毕业设计外文翻译

Introduction to Civil Engineering Papers

Civil Engineering for the development of a key role, first as a material foundation for the civil engineering construction materials, followed by the subsequent development of the design theory and construction technology. Every time a new quality of building materials, civil engineering will be a leap-style development.

People can only rely on the early earth, wood and other natural materials in the construction activities, and later appeared in brick and tile that artificial materials, so that the first human to break the shackles of natural building materials. China in the eleventh century BC in the early Western Zhou Dynasty created the tile. The first brick in the fifth century BC to the third century BC, when the tomb of the Warring States Period. Brick and tile better than the mechanical properties of soil, materials, and easy to manufacture.

The brick and tile so that people began to appear widely, to a large number of housing construction and urban flood control project, and so on. This civil engineering technology has been rapid development. Up to 18 to the 19th century, as long as two thousand years, brick and tile has been a major civil engineering construction materials, human civilization has made a great contribution to the even was also widely used in the present.

The application of a large number of steel products is the second leap in civil engineering. Seventeen 1970s the use of pig iron, the early nineteenth century, the use of wrought iron bridges and the construction of housing, which is a prelude to the emergence of steel.

From the beginning of the mid-nineteenth century, metallurgical industry, smelting and rolling out high tensile and compressive strength, ductility, uniformity of the quality of construction steel and then produce high-strength steel wire, steel cables. As a result of the need to adapt to the development of the steel structure have been flourishing. In addition to the application of the original beam, arch structure, the new truss, a framework, the structure of network, cable structures to promote the gradual emergence of the structure of Yan in the form of flowers.

From the brick building long-span structures, stone structures, a few meters of wood, steel structure to the development of tens of meters, a few hundred meters, until modern km above. So in the river, cross the bridge from shelves, on the ground since the construction of skyscrapers and high-rise tower, even in the laying of underground railway, to create an unprecedented miracle.

In order to meet the needs of the development of steel works, on the basis of Newton's mechanics, material mechanics, structural mechanics, structural engineering design theory came into being, and so on. Construction machinery, construction technology and construction anization design theory also development, civil engineering from the experience of rising to become science, engineering practice and theoretical basis for both is a different place, which led to more rapid development of civil engineering.

During the nineteenth century, 20, made of Portland cement, concrete has come out. Concrete can aggregate materials, easy-to-concrete structures forming, but the tensile strength of concrete is very small, limited use. By the middle of the nineteenth century, the surge in steel production, with the emergence of this new type of reinforced concrete composite construction materials, which bear the tension steel, concrete bear the pressure and play their own advantages. Since the beginning of the 20th century, reinforced concrete is widely used in various fields of civil engineering.

From the beginning of the 1930s, there have been pre-stressed concrete. Pre-stressed concrete structure of the crack resistance, rigidity and carrying capacity, much higher than the reinforced concrete structure, which uses an even wider area. Civil Engineering into the reinforced concrete and prestressed concrete dominant historical period. Concrete buildings to bring about the emergence of new economic, aesthetic structure in the form of engineering, civil engineering so that a new construction technology and engineering design of the structure of the theory. This is another leap in the development of civil engineering.

A project to build the facilities in general to go through the investigation, design and construction in three stages, require the use of geological prospecting projects, hydro-geological survey, engineering survey, soil mechanics, mechanical engineering, engineering design, building materials, construction equipment, engineering machinery, building the economy , And other disciplines and construction technology, construction and other fields of knowledge, as well as computer and mechanical testing techniques. Civil engineering is therefore a broad range of integrated disciplines. With the progress in science and technology development and engineering practice, the civil engineering disciplines have also been developed into a broad connotation, the number of categories, the structure of complex integrated system.

Civil Engineering is accompanied by the development of human society developed. It works in the construction of facilities reflect the various historical periods of socio-economic, cultural, scientific, technological development outlook, which civil society has become one of the historical development of the witness.

In ancient times, people began to build simple houses, roads, bridges and still water channel to meet the simple life and production. Later, in order to adapt to the war, production and dissemination of religious life, as well as the needs of the construction of the city, canals, palaces, temples and other buildings.

Many well-known works shown in this historical period of human creativity. For example, the Great Wall of China, Dujiangyan, the Grand Canal, Zhaozhou Bridge, Yingxian Wooden Tower, the pyramids of Egypt, Greece's Parthenon, Rome's water supply project, colosseum amphitheater (Rome large animal fighting Field), as well as many other well-known churches, palaces and so on.

After the industrial revolution, especially in the 20th century, on the one hand, civil society to put forward a new demand; On the other hand, all areas of society for the advancement of civil engineering to create good conditions. Thus this period of civil engineering has been advanced by leaps and bounds. All over the world there have been large-scale modernization of industrial plants, skyscrapers, nuclear power plants, highways and railways, long-span bridges, and large-diameter pipelines long tunnel, the Grand Canal, the big dams, airports, port and marine engineering, etc. . For civil engineering continually modern human society to create a new physical environment, human society, modern civilization has become an important part.

Civil Engineering is a very practical subjects. In the early days, through the civil engineering practice, summing up successful experience, in particular, to draw lessons from the failure of developed. From the beginning of the 17th century, with Galileo and Newton as a pilot with the mechanics of the modern civil engineering practice, gradually formed the mechanical, structural mechanics, fluid mechanics, rock mechanics, civil engineering as the basis of theoretical subjects. This experience in civil engineering from the gradually developed into a science.

In the course of the development of civil engineering, engineering practice often first experience in theory, engineering accidents often show a new unforeseen factors, triggering a new theory of the research and development. So far a number of projects dealing with the problem, is still very much rely on practical experience.

Civil Engineering Technology with the main reason for the development of engineering practice and not by virtue of scientific experiments and theoretical studies, for two reasons: First, some of the objective situation is too complicated and difficult to faithfully carry out laboratory or field testing and analysis. For example, the foundation, tunnel and underground engineering and deformation of the state and its changes over time, still need to refer to an analysis of engineering experience to judge. Second, only a new engineering practice in order to reveal new problems. For example, the construction of a high-rise buildings, high-rise tower and mast-span bridges, wind and earthquake engineering problems highlighted in order to develop this new theory and technology.

In the long-term civil engineering practice, it is not only building great attention to the arts, has made outstanding achievements; and other works, but also through the choice of different materials, such as the use of stone, steel and reinforced concrete, with natural Environmental art in the construction of a number of very beautiful, very functional and good works. Ancient Great Wall of China, the modern world, many of the television tower and the bridge ramp Zhang, are cases in point.

土木工程概论论文

对土木工程的发展起关键作用的,首先是作为工程物质基础的土木建筑材料,其次是随之发展起来的设计理论和施工技术。每当出现新的优良的建筑材料时,土木工程就 会有飞跃式的发展。

人们在早期只能依靠泥土、木料及其它天然材料从事营造活动,后来出现了砖和瓦这种人工建筑材料,使人类第一次冲破了天然建筑材料的束缚。中国在公元前十一世纪 的西周初期制造出瓦。最早的砖出现在公元前五世纪至公元前三世纪战国时的墓室中。砖和瓦具有比土更优越的力学性能,可以就地取材,而又易于加工制作。

砖和瓦的出现使人们开始广泛地、大量地修建房屋和城防工程等。由此土木工程技术得到了飞速的发展。直至18~19世纪,在长达两千多年时间里,砖和瓦一直是土木工程的重要建筑材料,为人类文明作出了伟大的贡献,甚至在目前还被广泛采用。

钢材的大量应用是土木工程的第二次飞跃。 十七世纪70年代开始使用生铁、十九世纪初开始使用熟铁建造桥梁和房屋,这是钢结构出现的前奏。

从十九世纪中叶开始,冶金业冶炼并轧制出抗拉和抗压强度都很高、延性好、质量均匀的建筑钢材,随后又生产出高强度钢丝、钢索 。于是适应发展需要的钢结构得到蓬勃发展。除应用原有的粱、拱结构外,新兴的桁架、框架、网架结构、悬索结构逐渐推广,出现了结构形式百花争艳的局面。

建筑物跨径从砖结构、石结构、木结构的几米、几十米发展到钢结构的百米、几百米,直到现代的千米以上。于是在大江、海峡上架起大桥,在地面上建造起摩天大楼和高耸铁塔,甚至在地面下铺设铁路,创造出前所未有的奇迹。

为适应钢结构工程发展的需要,在牛顿力学的基础上,材料力学、结构力学、工程结构设计理论等就应运而生。施工机械、施工技术和施工组织设计的理论也随之发展,土木工程从经验上升成为科学,在工程实践和基础理论方面都面貌一新,从而促成了土木工程更迅速的发展。

十九世纪20年代,波特兰水泥制成后,混凝土问世了。混凝土骨料可以就地取材,混凝土构件易于成型,但混凝土的抗拉强度很小,用途受到限制。 十九世纪中叶以后,钢铁产量激增,随之出现了钢筋混凝土这种新型的复合建筑材料,其中钢筋承担拉力,混凝土承担压力,发挥了各自的优点。 二十世纪初以来,钢筋混凝土广泛应用于土木工程的各个领域。

从三十年代开始,出现了预应力混凝土。预应力混凝土结构的抗裂性能、刚度和承载能力,大大高于钢筋混凝土结构,因而用途更为广阔。土木工程进入了钢筋混凝土和预应力混凝土占统治地位的历史时期。混凝土的出现给建筑物带来了新的经济、美观的工程结构形式,使土木工程产生了新的施工技术和工程结构设计理论。这是土木工程的又一次飞跃发展。

建造一项工程设施一般要经过勘察、设计和施工三个阶段,需要运用工程地质勘察、水文地质勘察、工程测量、土力学、工程力学、工程设计、建筑材料、建筑设备、工程机械、建筑经济等学科和施工技术、施工组织等领域的知识 ,以及电子计算机和力学测试等技术。因而土木工程是一门范围广阔的综合性学科。随着科学技术的进步和工程实践的发展,土木工程这个学科也已发展成为内涵广泛、门类众多、结构复杂的综合体系。

土木工程是伴随着人类社会的发展而发展起来的。它所建造的工程设施反映出各个历史时期社会经济、文化、科学、技术发展的面貌,因而土木工程也就成为社会历史发展的见证之一。

远古时代,人们就开始修筑简陋的房舍、道路、桥梁和沟澶,以满足简单的生活和生产需要。后来,人们为了适应战争、生产和生活以及宗教传播的需要,兴建了城池、运河、宫殿、寺庙以及其他各种建筑物。

许多著名的工程设施显示出人类在这个历史时期的创造力。例如,中国的长城、都江堰、大运河、赵州桥、应县木塔,埃及的金字塔,希腊的巴台农神庙,罗马的给水工程、科洛西姆圆形竞技场(罗马大斗兽场),以及其他许多著名的教堂、宫殿等。

产业革命以后,特别是到了20世纪,一方面社会向土木工程提出了新的需求;另一方面,社会各个领域为土木工程的前进创造了良好的条件。因而这个时期的土木工程得到突飞猛进的发展。在世界各地出现了现代化规模宏大的工业厂房、摩天大厦,核电站、高速公路和铁路、大跨桥梁、大直径运输管道长隧道、大运河、大堤坝、大飞机场、大海港以及海洋工程等等。现代土木工程不断地为人类社会创造崭新的物质环境,成为人类社会现代文明的重要组成部分。

土木工程是具有很强的实践性的学科。在早期,土木工程是通过工程实践,总结成功的经验,尤其是吸取失败的教训发展起来的。从17世纪开始,以伽利略和牛顿为先导的近代力学同土木工程实践结合起来,逐渐形成材料力学、结构力学、流体力学、岩体力学,作为土木工程的基础理论的学科。这样土木工程才逐渐从经验发展成为科学。

在土木工程的发展过程中,工程实践经验常先行于理论,工程事故常显示出未能预见的新因素,触发新理论的研究和发展。至今不少工程问题的处理,在很大程度上仍然依靠实践经验。

土木工程技术的发展之所以主要凭借工程实践而不是凭借科学试验和理论研究,有两个原因:一是有些客观情况过于复杂,难以如实地进行室内实验或现场测试和理论分析。例如,地基基础、隧道及地下工程的受力和变形的状态及其随时间的变化,至今还需要参考工程经验进行分析判断。二是只有进行新的工程实践,才能揭示新的问题。例如,建造了高层建筑、高耸塔桅和大跨桥梁等,工程的抗风和抗震问题突出了,才能发展出这方面的新理论和技术。

在土木工程的长期实践中,人们不仅对房屋建筑艺术给予很大注意,取得了卓越的成就;而且对其他工程设施,也通过选用不同的建筑材料,例如采用石料、钢材和钢筋混凝土,配合自然环境建造了许多在艺术上十分优美、功能上又十分良好的工程。古代中国的万里长城,现代世界上的许多电视塔和斜张桥,都是这方面的例子。