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机械类英语相关论文

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机械类英语相关论文

Abstract— Cobots是连续地使用机器人的类 开发高保真度可编程序的variable传输 constraint表面。 Cobots消耗很少电能 ,既使当提供高产力量和他们的传输横跨各种各样是非常有效率的transmission比率。 Cobotic传输也有能力 to作为闸或变得完全地自由。 设计 Cobotic手控制器的and表现,最近a developed六程度自由触觉显示,被回顾。 This设备说明高力学范围和低功率 consumption可达成由cobots。 彻底的比较 the一个cobotic系统的出力效率对常规 提供electro-mechanical系统。机器人技术的Three关键要求使用为 prosthetics和修复是低重量,低功率 consumption和安全。 我们提出cobotic技术作为a 可能论及所有这些问题的transmission建筑学。 Cobots是运用nonholonomic限制的机器人 of 操纵 轮子 关连 相对 速度 mechanism链接。 cobotic传输连续地是a variable传输(CVT)在正面和阴性之间 ratios, 并且 能 关连 二 平移 速度, 二 rotational速度或者对平移的旋转的速度 velocity [1]。 我们最近介绍了Cobotic手 Controller (图 1), a 供给动力的六程度自由 cobot和描述它的能力作为一个触觉接口[2, 3]。 通过本文路线,我们显示出, mechanical 建筑学 并且 传输 使用 在 Cobotic手控制器地址全部三在上面 机器人学的mentioned要求的弭补科和 rehabilitation.

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中国是世界上机械发展最早的国家之一。中国的机械工程技术不但历史悠久,而且成就十分辉煌,不仅对中国的物质文化和社会经济的发展起到了重要的促进作用,而且对世界技术文明的进步做出了重大贡献.传统机械方面,我国在很长一段时期内都领先于世界。到了近代由于特别是从18世纪初到19世纪40年代,由于经济社会等诸多原因,我国的机械行业发展停滞不前,在这100多年的时间里正是西方资产阶级政治革命和产业革命时期,机械科学技术飞速发展,远远超过了中国的水平。这样,中国机械的发展水平与西方的差距急剧拉大,到十九世纪中期已经落后西方一百多年。新中国建立后特别是近三十年来,我国的机械科学技术发展速度很快。向机械产品大型化,精密化、自动化和成套化的趋势发展。在有些方面已经达到或超过了世界先进水平。总的来说,就目前而言中国机械科学技术的成就是巨大的,发展速度之快,水平之高也是前所未有的。这一时期还没有结束,我国的机械科学技术还将向更高的水平发展。只要我们能够采取正确的方针、政策、用好科技发展规律并勇于创新,我国的机械工业和机械科技一定能够振兴,重新引领世界机械工业发展潮流。就小型夯实机械而言:上世纪60年代以前,我国小型夯实机械非常缺乏,很多小型场地的夯实基本上采用人工夯实。上世纪60年代初期,长沙建设机械研究所与北京建筑工程学院等单位合作,在群众性技术革新成果的基础上总结发明了具有中国特色的蛙式夯实机,1962年获国家科技发明奖。蛙式夯实机结构简单,维修、使用方便,很快成为我国60年代夯实机械的主导产品。据不完全统计蛙式夯实机累计产量达到50000多台,在我国经济建设中发挥了重要作用。70年代以后,蛙式夯实机逐渐被性能更先进的振动冲击夯和振动平板夯所替代,目前蛙式夯实机已经很少,基本被淘汰。1964年,长沙建设机械研究所开发了HB120型内燃式夯实机,开始由上海工程机械厂生产,后来主要由津市洞庭工程机械厂生产,年产量200台左右。80年代,内燃式夯实机产品质量有较大提高,曾出口东南亚和非洲地区。90年代以后,内燃式夯实机产销售量也在逐渐减少,目前只有少数小型民营企业生产。1977年,长沙建设机械研究所和柳州市建筑机械厂开发了我国第一台HZR250型和HZR70型振动平板夯,这两种产品分别于1979 年和1982年通过了由建设部组织的鉴定。随后义乌建筑机械厂、四平建筑机械厂、安阳振动器厂、津市洞庭工程机械厂等多家企业都开始生产振动平板夯。1986年长沙建设机械研究所又开发了较大的HZR450型振动平板夯。上世纪90年代以后,振动平板夯在我国有了较快的发展,产品品种、规格和生产企业增多,国外的振动平板夯陆续进入中国市场。1983年,长沙建设机械研究所和湖北振动器厂联合开发了我国第一台HZR70型振动冲击夯,1984年通过了由建设部组织的鉴定,1985年获建设部科技进步三等奖。由于振动冲击夯具有压实效果好、生产率高、体积和重量小、轻便灵活等突出特点,深受用户欢迎,得到了迅速的推广使用,并很快发展到资江机器厂、新乡第三机床厂和津市洞庭工程机械厂等几十家企业生产。振动冲击夯虽然比振动平板夯开发晚,但发展速度、产销量和使用广泛性比振动平板夯大得多,目前已成为我国夯实机械中产销量最大的主导产品。上世纪90年代以后,国外的振动平板夯陆续进入中国市场。振动冲击夯和振动平板夯在我国的成功开发,不仅为我国建设施工部门提供了性能先进的夯实机械,取得了良好的经济效益和社会效益,而且使我国夯实机械技术向前跨进了一大步,缩短了与世界先进水平的差距,促进了我国压实机械的发展。就机械加工而言:热加工 铸造 据考古发现,在北京平谷、昌平、房山等处曾出土了公元前16世纪(商代)的青铜礼器。 明永乐年间(1403~1424年),北京制造出享誉世界的明永乐大铜钟(吨)和钟楼大铜钟(63吨)及铁钟(25吨),采用分炉熔化、地坑造型和陶范法铸造。 20世纪50年代以前,北京在铸造上采用粘土砂手工造型。1955年,北京第一机床厂开始采用漏模造型、双面模型型板及铁型板和标准砂箱造型。1965年,开始采用塑料模型。 1980 年,北京市机电研究院与北京玛钢厂研制成功工频无芯塞杆底注式保温浇注电炉。1982年,该院与北京机床铸造二厂研究成功冲天炉风口吹氧技术。 1985~1988年,北京机床研究所试验成功浮动端面密封环的压力铸造工艺。 锻压 1959年,北京第二通用机械厂(后改名北京重型机器厂)建成2500吨水压机。1971年,该厂制造出6000吨水压机,这是当时北京最大的锻压设备。 1968~1979年,北京起重机器厂先后采用300吨油压机和2000吨油压机制造出起重机吊臂和大型覆盖件。 80年代,北京市机电研究院和北京市模具中心研制出一系列高精度多工位冲裁模具,接近或达到进口模具水平,改变了北京精密冲裁模具依赖进口的局面。 热处理 1949年前,北京已采用电炉、盐溶炉、热电偶等手段进行零件退火、回火、淬火、正火、调质、渗碳等热处理。 1956年,北京第一机床厂开始采用高频感应淬火。1961年,北京第二机床厂开始采用气体氮化淬火。1969年,北京量具刃具厂开始采用光亮淬火。 1978年,北京机床研究所研究完成机床导轨表面接触淬火工艺及设备、淬火质量检查技术条件的研究。1979年,铁道科学研究院和中国科学院力学研究所等合作完成大功率柴油机缸套表面的激光改性处理的研究。 1979年,北京市机电研究院研制成功千瓦级二氧化碳激光器,并于80年代初分别应用于汽缸套和邮票印刷设备的激光热处理。其中,清华大学、北京市机电研究院、北京邮票厂共同完成邮票厂七色机打孔器表面激光强化研究。 1984~1990年,北京市热处理研究所研究成功真空热处理、气体渗碳微机控制技术(与北京航空航天大学合作)、稀土软氮化、粉末冶金制品表面强化、煤油加甲醇小滴量法微机可控渗碳、固体渗硼、渗碳过程微机辅助工艺设计及跟踪控制系统等热处理新技术,并应用于生产。 焊接与切割 1949年,北京已有气焊、电弧焊及氧乙炔火焰切割等手工作业。 1963年,北京金属结构厂与一机部机械科学研究院合作开发出钨极氩弧焊,并实现了氮气等离子切割不锈钢。1964年,用直流钨极氩弧焊及焊丝合金化技术解决了核工业用倾斜式电解糟纯镍焊接。 1966年,北京金属结构厂开发出了使被焊球体旋转的埋弧自动焊。1968年,该厂开始以液化石油气代替乙炔切割。 80年代初,清华大学发明了新型MIG焊接电弧控制法,在控制电弧技术上取得突破。 80年代初,北京城建设计院等完成液化石油气移动式气压焊轨技术的研究和应用。 1990年,北京金属结构厂开始采用数控精密切割和具有光电跟踪及数控寻踪读入自动编程的大功率等离子切割技术。可见,我国机械发展在近代发展其迅速。China is the world's first national machinery development. Chinese mechanical engineering technology not only has a long history and splendid achievements in Chinese is not only the material culture and social economic development plays an important role in the world, and to promote the progress of civilization, technology has made great contribution to Chinese traditional machine. And in a long period ahead in the world. In modern times, especially from the early 18th century, due to the nineteen forties, due to the economic and social reasons, such as the China machinery industry, stagnation, in the 100 years is western bourgeois political revolution and industrial revolution, mechanical science and technology is developing rapidly, and far more than the level of China. So, China mechanical development level and the western gap widens, sharply to the 19th century middle behind western one hundred the founding of new China, especially in the past 30 years, our country's mechanical science and technology development speed. To the mechanical product large-scale, precision, automation and discusses the trend of development. In some aspects has reached or exceeded the world advanced level. Generally speaking, currently China mechanical science and technology achievement is huge, developing fast, high level of unprecedented. In this period, China has no end of mechanical science and technology will develop to a higher level. As long as we can adopt the correct policy, with good technology development and innovation, our machinery industry and mechanical technology can revitalize, leading to the development trend of mechanical small ramming machinery:In the 1960s, China mechanical very small tamp lack, many small venues ramming basically USES artificial 1960s, changsha construction machinery institute and Beijing architectural engineering institute, etc., the technical innovation achievements in mass on the basis of summing up Chinese characteristic invented the breaststroke ramming machine, 1962 exceeded national science and technology. The breaststroke ramming machine structure is simple, easy to use and maintenance in 1960s, soon became the dominant products to consolidate machinery. According to not complete count breaststroke tamp cumulative yield reached more than 50,000 machine, in the economic development of our country has played an important role. Since 1970's, the breaststroke ramming machine was gradually more advanced performance of vibration shock ram and vibrating plate ram, now replaced by laying machine has rarely breaststroke, basically be 1964, changsha construction machinery institute HB120 developed movable type, type of Shanghai began laying machine, engineering machine production mainly by tianjin municipal later, annual production engineering machinery dongting about 200. In the 1980s, movable type ramming machine product quality has increased greatly, have exported to southeast Asia and Africa. Since 1990s, internal-combustion type ramming machine production sales, and gradually decreased in only a few small private enterprise 1977, changsha construction machinery factory buildings and developed in liuzhou HZR250 type and the HZR70 type vibrating plate ram, these two kinds of products in 1979 and 1982 passed by the ministry of construction of the organization. Then yiwu building construction machinery factory, siping, anyang vibrators factory, tianjin municipal engineering machinery dongting and other enterprises have started producing vibrating plate ram. In 1986, changsha construction machinery research and develop a larger HZR450 type of vibrating plate ram. Since 1990s, vibrating plate ram in our country has developed very quickly, varieties of products, specifications and increase production enterprises, foreign vibrating plate ram gradually to enter the Chinese 1983, changsha construction machinery institute and the joint development of hubei vibration in the first HZR70 type vibration shock ramming, 1984, passed by the ministry of construction, organization construction technology progress in 1985 won prizes. Due to the vibration impact compaction result has good ramming, productivity, high volume and weight of small, lightweight flexible outstanding characteristics, deeply user etc, obtained a rapid promotion, and soon ZiJiang development to the factory, xinxiang municipal engineering machine tool plant and tianjin dozens of dongting production factory etc. Vibration shock ramming although than vibrating plate ram, but later development speed of development, production and use of extensive than vibrating plate ram, has become the largest in China in the ramming machinery products. Since 1990s, foreign vibrating plate ram gradually to enter the Chinese shock ramming and vibrating plate ram the successful development in our country, not only for our construction department provides advanced performance of mechanical, laying have achieved good economic benefit and social benefit, and make our ramming mechanical technology into a big step forward, shorten the gap with the advanced world level, promoting the development of compaction mechanical processing:According to the archaeological discovery, hot-working casting in Beijing pinggu, changping and so have proved that the 16th century BC shang dynasty (bronze objects. Ming yongle (1403-1424 years), Beijing produce world-renowned Ming yongle great 3-ton bell made ( tons) and tower (63 tons of great 3-ton bell made of iron clock (25) and the furnace of melting, pit TaoFan model and method of casting. In the 1950s, Beijing based on clay sand castings in manual. In 1955, Beijing first machine tool plant began using leakage mould modelling, double-sided model and iron plate type plate and standard sand box modelling. In 1965, start using plastic model. In 1980, the institute and Beijing municipal electrical factory has successfully developed line frequency coreless bathroom plug stem bottom note type electric insulation casting. In 1982, hospital and Beijing the casting machine research cupola tuyere oxygen blowing technology. 1985-1988, Beijing institute of machine of floating end face seal ring by die successful test pressure casting 1959, Beijing second metalforming machinery general factory changed (Beijing) built 2500 ton heavy-duty hydraulic press. In 1971, the factory produced 6,000 tons, which is then Beijing hydrtesting biggest metalforming equipment. 1968-1979, Beijing hoisting machine factory has 300 tons of using hydraulic press 2000 tons and create crane and large panel. In the 1980s, Beijing institute of electrical and developed a series of Beijing mould centre high-precision cutting die, the multistage close to or to import mould level, changed Beijing precision punching moulds dependence on 1949, Beijing has heat treatment furnace, salt dissolved by thermocouples means furnace, quenching and tempering, parts of annealing, normalizing, quenching and tempering, carburizing and etc. In 1956, Beijing first began using high-frequency quenching machine tool plant. In 1961, the Beijing second machine tool plant began using gas nitriding quenching. In 1969, the following enterprise by Beijing gage start light quenching. In 1978, the complete machine tool research institute of Beijing guide surface contact quenching process and equipment, quenching condition of quality inspection. In 1979, scientific research institute of China academy of railway and mechanical institute of high-power diesel engine cylinder collaboration of surface modification of laser. In 1979, Beijing institute of electrical carbon dioxide laser is developed, and the kilowatt in early 1980s respectively applied in cylinder and stamp printing equipments of laser treatment. Among them, tsinghua university, Beijing, Beijing institute of electrical YouPiaoChang jointly completed YouPiaoChang seven color machine DaKongQi laser surface strengthening research. From 1984 to 1990, Beijing institute of vacuum heat treatment research, gas carburizing microcomputer control technology (Beijing university of aeronautics &astronautics and cooperation), rare earth soft nitriding, powder metallurgy products surface strengthening, kerosene and methanol small drops of microcomputer control method of carburizing, solid boriding and carburizing process computer aided process planning and tracking control system, and the application of new technology heat in production. Welding and cutting in 1949, Beijing has geo-drilling, electric welding and cutting etc oxyacetylene flame manual operation. In 1963, Beijing metal structure and YiJiBu mechanical science research cooperation to develop tungsten argon arc welding, and realize the nitrogen plasma cutting stainless steel. In 1964, the use of dc argon arc welding and tungsten wire alloying technology solved by tilting electrolysis industry worse pure nickel welding. In 1966, Beijing metal structure factory developed by rotating sphere of the submerged arc welding automatic welding. In 1968, the plant began to liquefied petroleum gas (LPG) instead of acetylene cutting. In the early 1980s, tsinghua university invented new MIG welding arc arc technology in control, control a breakthrough. In the early 1980s, the Beijing urban construction design completed liquefied petroleum gas (LPG) mobile pneumatic rail welding technology research and application. In 1990, Beijing metal structure factory to adopt CNC precision cutting and with photo-electricity tracking and CNC pursuit of high input automatic programming technology plasma , China mechanical development in modern development of its rapid.

机械类英语论文及翻译800

摘要- Cobots是一类机器人的使用不断 无级变速发展高保真可编程 约束的表面。 Cobots消耗很少的电力 即使在提供高输出部队,其传输效率高众多的 传动比。 Cobotic变速箱也有能力 采取行动作为一个制动器或将成为完全免费。设计 和性能Cobotic手控制器,最近 发达国家六自由度触觉显示器,是审查。 这个装置表明,高动态范围和低功耗 消费实现的cobots 。彻底的比较 电源效率cobotic系统与传统的 机电系统提供。 三个关键要求机器人技术用于 假肢和康复是低体重,低功耗 消费和安全性。我们建议cobotic技术作为 传输架构,可以处理这些问题。 Cobots是机器人利用非完整约束 的指导车轮的相对速度有关的 机制的联系。阿cobotic传播是一个不断 无级变速器(无级变速器)之间的积极和消极 比率,可以涉及两个平移速度,两个 旋转速度,或旋转速度为平移 速度[ 1 ] 。我们最近推出了Cobotic手 控制器(图1 ) ,六自由度动力 合作机器人,并阐述其能力作为触觉界面[ 2 , 3 ] 。通过本论文中,我们表明, 机械结构和传输中使用 Cobotic手控制器处理所有三个以上 上述要求的假肢和机器人 康复。

Abstract— Cobots是连续地使用机器人的类 开发高保真度可编程序的variable传输 constraint表面。 Cobots消耗很少电能 ,既使当提供高产力量和他们的传输横跨各种各样是非常有效率的transmission比率。 Cobotic传输也有能力 to作为闸或变得完全地自由。 设计 Cobotic手控制器的and表现,最近a developed六程度自由触觉显示,被回顾。 This设备说明高力学范围和低功率 consumption可达成由cobots。 彻底的比较 the一个cobotic系统的出力效率对常规 提供electro-mechanical系统。机器人技术的Three关键要求使用为 prosthetics和修复是低重量,低功率 consumption和安全。 我们提出cobotic技术作为a 可能论及所有这些问题的transmission建筑学。 Cobots是运用nonholonomic限制的机器人 of 操纵 轮子 关连 相对 速度 mechanism链接。 cobotic传输连续地是a variable传输(CVT)在正面和阴性之间 ratios, 并且 能 关连 二 平移 速度, 二 rotational速度或者对平移的旋转的速度 velocity [1]。 我们最近介绍了Cobotic手 Controller (图 1), a 供给动力的六程度自由 cobot和描述它的能力作为一个触觉接口[2, 3]。 通过本文路线,我们显示出, mechanical 建筑学 并且 传输 使用 在 Cobotic手控制器地址全部三在上面 机器人学的mentioned要求的弭补科和 rehabilitation.

IntroductionMachining aims to generate the shape of work-piece form a solid body,or to improve the tolerances and surface finish of a previously formed work-piece,by removing excess materials in the form of chips. Machining is capable of creating geometric configurations,tolerances, and surface finishes often unobtainable by any other , machining removes materials, which has already been paid for, in the form of relatively small particles that are more difficult to recycle and are in greater danger of becoming mixed. Therefore,developments often aim at reducing or-if at all possible-eliminating machining, especially in mass these reasons, machining has lost some important markets, yet, at the same time, it has also been developing and especially having captured new markets with the application of numerical feel for the important of machining may be gained from the observation that in 1983 there were about 2 million metal-cutting machine tools in the unite states ( of which some 5% were numerically controlled ) and that labor and overhead costs amounted to $125 billion, or 3% of the GNP.

基于UG的模块化机械设计方法研究摘 要]本文采用模块化设计思想和UG二次开发技术,解决了用UG软件进行机械设计时,许多常用件需要多次重新设计的问题。常用件模块以菜单的方式结合在UG软件中,这具有良好的可扩充性和可移植性。[关键词]模块化设计 机械设计 UG二次开发Unigraphics(简称UG)是美国EDS公司推出的CAD/CAM/CAE一体化软件。它的内容涉及到平面工程制图、三维造型、装配、制造加工、逆向工程、工业造型设计、注塑模具设计、钣金设计、机构运动分析、数控模拟、渲染和动化仿真、工业标准交互传输、有限元分析等十几个模块。近年来UG发展迅速,已广泛应用于多个领域,更是进行机械设计的常用软件。虽然UG功能非常强大,但在进行机械产品设计的时候经常会遇到一些标准件以外的常用件,若每次对它们均从头开始设计,则要做大量的重复性工作。为了提高劳动生产率,降低设计成本,将已经广泛应用于电子、计算机、建筑等领域的模块化设计思想引用到机械设计中,形成基于UG的模块化机械设计。1模块化机械设计模块及模块化的概念模块是一组具有同一功能和结合要素(指联接部位的形状、尺寸、连接件间的配合或啮合等),但性能、规格或结构不同却能互换的单元。模块化则是指在对产品进行市场预测、功能分析的基础上划分并设计出一系列通用的功能模块,然后根据用户的要求,对模块进行选择和组合,以构成不同功能或功能相同但性能不同、规格不同的产品。模块化机械设计相关性模块化设计所依赖的是模块的组合,即结合面,又称为接口。为了保证不同功能模块的组合和相同功能模块的互换,模块应具有可组合性和可互换性两个特征。这两个特征主要体现在接口上,必须提高模块标准化、通用化、规格化的程度。对于模块化机械设计,可见其关键是怎样划分模块,这里主要通过综合考虑零部件在功能、几何、物理上存在的相关性来划分模块。(1)功能相关性零部件之间的功能相关性是指在模块划分时,将那些为实现同一功能的零部件聚在一起构成模块,这有助于提高模块的功能独立性。(2)几何相关性零部件之间的几何相关性是指零部件之间的空间、几何关系上的物理联接、紧固、尺寸、垂直度、平等度和同轴度等几何关系。(3)物理相关性零部件之间的物理相关性是指零部件之间存在着能量流、信息流或物料流的传递物理关系。模块化机械设计的优点模块化机械设计在技术上和经济上都具有明显的优点,经理论分析和实践证明,其优越性主要体现在下述几方面:(1)可使现在机械工业得到振兴,并向高科技产业发展;(2)减轻机械产品设计、制造及装配专业技术人员的劳动强度;(3)模块化机械产品质量高、成本低,并且妥善解决了多品种小批量加工所带来的制造方面的问题;(4)有利于企业根据市场变化,采用先进技术改造产品、开发新产品;(5)缩短机械产品的设计、制造和供货期限,以赢得用户;(6)模块化机械产品互换性强,便于维修。2模块化机械设计在UG中的实现总体构思在用UG进行机械设计时,为了将常用件模块化,首先要把常用件的三维模型表达出来。对于系列产品,可按照成组技术的原理进行分类,一组相似的常用件建立一个三维模型,即所谓的三维模型样板。根据UG参数化设计思想,一个三维模型样板可认为是一组尺寸不同、结构相似的系列化零部件的基本模型。把众多的三维模型样板按类分开,每一类放在一个集合里,这样每类都形成了一个三维模型样板的模块库。为了使模块库与UG的集成环境有机地结合在一起,把每个模块库都以图标的方式放在用户菜单上,以方便调用。为了实现这一总体构思,综合运用了UG/Open MenuScript、UG/Open Ulstyler、UG/OpenAPI、Visual C++等UG二次开发技术,其程序流程图如图模块库菜单设计为了与UG菜单交互界面风格保持一致,模块库采用了分级式下拉菜单,下拉菜单通过UG/Open MenuScript模块开发实现。即利用MenuScript提供的UG菜单脚本语言,编写成扩展名为“.men”的文本文件,将其放在用户目录下的/startup目录内,通过设定UG的环境变量,UG在启动时会自动加载用户菜单文件。为了方便用户调用时快速检索到所要的常用件三维模型样板,将下拉菜单的最大深度设计为3级,且每一条下拉菜单最多不超过15个按钮。末级菜单上每一个按钮对应一个常用件三维模型样板名称,点击末级菜单按钮即调出创建相应产品的三维模型样板对话框。三维模型样板对话框设计利用UG/Open Ulstyle制作UG风格的对话框,按照模型样板的参数生成包含数据输入框、文本框、按钮、图片等控件的对话框。在对话框上部显示零配件图片,在对话框左上角显示对话框标题,在UG系统窗口左下角显示操作提示信息,这样可以使用户很方便地设计或选用常用件三维模型,三维模型样板对话框设计完成后,生成扩展名为“.dlg”文件。所有对话框都有6种基本同调函数,分别是Apply按钮的回调函数,Back按钮的回调函数、Cancel按钮的回调函数、OK按钮的回调函数、对话框构造函数和对话框析构函数。其中对话框构造函数在UG构建对话框完成之后、用户应用程序执行之前调用,将常用件三维模型的常用规格及技术要求显示到信息窗口,供用户创建产品时作参考。对话框析构函数在UG用户对话框关闭时调用,程序编写时利用它进行关闭、清除信息窗口以及释放申请的内存空间等操作。应用程序动态链接库(*.dll)创建UG/Open API应用程序是用C/C++语言编写的,它除了能够在UG的环境下对UG进行功能调用外,还能在程序中实现软件的文件管理、流程控制、数据传输、窗口调用、数值计算等C/C++语言支持的全部功能,使用非常灵活。UG/Open API应用程序牵涉到UG提供的头文件(*.h)、库文件(*.dll)及以C/C++语言编程环境,需要对Visual C++编译环境进行设置,下面给出了Visual C++编译环境设置方法及动态链接库的创建过程:(1)建立一个空的动态链接库工程。(2)配置程序头文件(*.h)、库文件(*.dll)的目录路径。其中头文件包括UG头文件,Visual C++库文件。(3)将对话框生成的C语言源文件模板文件*.添加到Project中。(4)编制应用程序。进入对话框回调函数内部进行程序编制,定义变量及UG对象,运用C/C++语言和UG/Open API函数进行参数化建模设计。(5)生成动态链接库(*.dll)文件。UG启动时会自动加载动态链接库文件,供用户菜单调用。3结束语随着装备制造业的飞速发展,产品种类急剧增多且结构日趋复杂,只有产品设计周期不断缩短,才能够满足企业激烈竞争的需要。用UG软件进行模块化机械设计符合机械产品快速设计的理念,符合装备制造业的发展需要,是机械设计的发展方向之一,具有较高的实用价值和经济价值。参考文献[1]袁峰UG机械设计工程范例教程[M]北京机械工业出版社2006[2]王志张进生于丰业王鹏任秀华基于模块化的机械产品快速设计[J]机械设计2004,21,8[3]滕晓艳张家泰产品模块化设计方法的研究[J]应用科技2006,33,2[4]董正卫田立中付宜利UG/Open API编程基础[M]北京清华大学出版社,2002 你自己用有道翻译吧!

机械类英语论文及翻译3000

IntroductionMachining aims to generate the shape of work-piece form a solid body,or to improve the tolerances and surface finish of a previously formed work-piece,by removing excess materials in the form of chips. Machining is capable of creating geometric configurations,tolerances, and surface finishes often unobtainable by any other , machining removes materials, which has already been paid for, in the form of relatively small particles that are more difficult to recycle and are in greater danger of becoming mixed. Therefore,developments often aim at reducing or-if at all possible-eliminating machining, especially in mass these reasons, machining has lost some important markets, yet, at the same time, it has also been developing and especially having captured new markets with the application of numerical feel for the important of machining may be gained from the observation that in 1983 there were about 2 million metal-cutting machine tools in the unite states ( of which some 5% were numerically controlled ) and that labor and overhead costs amounted to $125 billion, or 3% of the GNP.

Abstract— Cobots是连续地使用机器人的类 开发高保真度可编程序的variable传输 constraint表面。 Cobots消耗很少电能 ,既使当提供高产力量和他们的传输横跨各种各样是非常有效率的transmission比率。 Cobotic传输也有能力 to作为闸或变得完全地自由。 设计 Cobotic手控制器的and表现,最近a developed六程度自由触觉显示,被回顾。 This设备说明高力学范围和低功率 consumption可达成由cobots。 彻底的比较 the一个cobotic系统的出力效率对常规 提供electro-mechanical系统。机器人技术的Three关键要求使用为 prosthetics和修复是低重量,低功率 consumption和安全。 我们提出cobotic技术作为a 可能论及所有这些问题的transmission建筑学。 Cobots是运用nonholonomic限制的机器人 of 操纵 轮子 关连 相对 速度 mechanism链接。 cobotic传输连续地是a variable传输(CVT)在正面和阴性之间 ratios, 并且 能 关连 二 平移 速度, 二 rotational速度或者对平移的旋转的速度 velocity [1]。 我们最近介绍了Cobotic手 Controller (图 1), a 供给动力的六程度自由 cobot和描述它的能力作为一个触觉接口[2, 3]。 通过本文路线,我们显示出, mechanical 建筑学 并且 传输 使用 在 Cobotic手控制器地址全部三在上面 机器人学的mentioned要求的弭补科和 rehabilitation.

摘要- Cobots是一类机器人的使用不断 无级变速发展高保真可编程 约束的表面。 Cobots消耗很少的电力 即使在提供高输出部队,其传输效率高众多的 传动比。 Cobotic变速箱也有能力 采取行动作为一个制动器或将成为完全免费。设计 和性能Cobotic手控制器,最近 发达国家六自由度触觉显示器,是审查。 这个装置表明,高动态范围和低功耗 消费实现的cobots 。彻底的比较 电源效率cobotic系统与传统的 机电系统提供。 三个关键要求机器人技术用于 假肢和康复是低体重,低功耗 消费和安全性。我们建议cobotic技术作为 传输架构,可以处理这些问题。 Cobots是机器人利用非完整约束 的指导车轮的相对速度有关的 机制的联系。阿cobotic传播是一个不断 无级变速器(无级变速器)之间的积极和消极 比率,可以涉及两个平移速度,两个 旋转速度,或旋转速度为平移 速度[ 1 ] 。我们最近推出了Cobotic手 控制器(图1 ) ,六自由度动力 合作机器人,并阐述其能力作为触觉界面[ 2 , 3 ] 。通过本论文中,我们表明, 机械结构和传输中使用 Cobotic手控制器处理所有三个以上 上述要求的假肢和机器人 康复。

英文部分 Rotary pumps These are built in many different designs and are extremely popular in modern fluid-power system. The most common rotary-pump designs used today are spur-gear, generated-rotary , sliding-vane ,and screw pump ,each type has advantages that make it the most suitable for a given application .Spur-gear pumps. these pumps have two mating gears are turned in a closely fitted casing. Rotation of one gear ,the driver causes the second ,or follower gear, to turn . the driving shaft is usually connected to the upper gear of the pump .When the pump is first started ,rotation of gears forces air out the casing and into the discharge pipe. this removal of air from the pump casing produces a partial vacuum on the pump inlet ,here the fluid is trapped between the teeth of the upper and lower gears and the pump casing .continued rotation of the gears forces the fluid out of the pump discharge .Pressure rise in a spur-gear pump is produced by the squeezing action on the fluid ad it is expelled from between the meshing gear teeth and casing ,.a vacuum is formed in the cavity between the teeth ad unmesh, causing more fluid to be drawn into the pump ,a spur-gear pump is a constant-displacement unit ,its discharge is constant at a given shaft speed. the only way the quantity of fluid discharge by a spur-gear pump of type in figure can be regulated is by varying the shaft speed .modern gear pumps used in fluid-power systems develop pressures up to about shows the typical characteristic curves of a spur-gear rotary pump. These curves show the capacity and power input for a spur-gear pump at various speeds. At any given speed the capacity characteristic is nearly a flat line the slight decrease in capacity with rise in discharge pressure is caused by increased leakage across the gears from the discharge to the suction side of the pump. leakage in gear pumps is sometimes termed slip. Slip also increase with arise pump discharge pressure .the curve showing the relation between pump discharge pressure and pump capacity is often termed the head-capacity or HQ curve .the relation between power input and pump capacity is the power-capacity or PQ curve .Power input to a squr-gear pump increases with both the operating speed and discharge pressure .as the speed of a gear pump is increased. Its discharge rate in gallons per minute also rise . thus the horsepower input at a discharge pressure of 120psi is 5hp at 200rpm and about 13hp at corresponding capacities at these speed and pressure are 40 and 95gpm respectively, read on the 120psi ordinate where it crosses the 200-and 600-rpm HQ curves .Figure is based on spur-gear handing a fluid of constant viscosity , as the viscosity of the fluid handle increases (. ,the fluid becomes thicker and has more resistance to flow ),the capacity of a gear pump decreases , thick ,viscous fluids may limit pump capacity t higher speeds because the fluid cannot into the casing rapidly enough fill it completely .figure shows the effect lf increased fluid biscosity on the performance of rotary pump in fluid-power system .at 80-psi discharge pressure the pp has a capacity lf 220gpm when handling fluid of 100SSU viscosity lf 500SSU . the power input to the pump also rises ,as shown by the power lf rotary pump is often expressed in gallons per revolution of the gear or other internal element .if the outlet of a positive-displacement rotary pump is completely closed, the discharge pressure will increase to the point where the pump driving motor stalls or some part of the pump casing or discharge pipe ruptures .because this danger of rupture exists systems are filled with a pressure –relief valve. This relief valve may be built as of the pump or it may be mounted in the discharge PumpsThese pumps have a number of vanes which are free to slide into or out of slots in the pup rotor . when the rotor is turned by the pump driver , centrifugal force , springs , or pressurized fluid causes the vanes to move outward in their slots and bear against the inner bore of the pump casing or against a cam ring . as the rotor revolves , fluid flows in between the vanes when they pass the suction port. This fluid is carried around the pump casing until the discharge port is reached. Here the fluid is forced out of the casing and into the discharge the sliding-vane pump in Figure the vanes in an oval-shaped bore. Centrifugal force starts the vanes out of their slots when the rotor begins turning. The vanes are held out by pressure which is bled into the cavities behind the vanes from a distributing ring at the end of the vane slots. Suction is through two ports A and AI, placed diametrically opposite each other. Two discharge ports are similarly placed. This arrangement of ports keeps the rotor in hydraulic balance, reliving the bearing of heavy loads. When the rotor turns counterclockwise, fluid from the suction pipe comes into ports A and AI is trapped between the vanes, and is carried around and discharged through ports B and BI. Pumps of this design are built for pressures up to 2500 psi. earlier models required staging to attain pressures approximating those currently available in one stage. Valving , uses to equalize flow and pressure loads as rotor sets are operated in series to attain high pressures. Speed of rotation is usually limited to less than 2500rpm because of centrifugal forces and subsequent wear at the contact point of vanes against the cam-ring surface.. Two vanes may be used in each slot to control the force against the interior of the casing or the cam ring. Dual vanes also provide a tighter seal , reducing the leakage from the discharge side to the suction side of the pump . the opposed inlet and discharge port in this design provide hydraulic balance in the same way as the pump, both these pumps are constant-displacement delivery or capacity of a vane-type pump in gallons per minute cannot be changed without changing the speed of rotation unless a special design is used. Figure shows a variable-capacity sliding-vane pump. It dose not use dual suction and discharge ports. The rotor rums in the pressure-chamber ring, which can be adjusted so that it is off-center to the rotor. As the degree of off-center or eccentricity is changed, a variable volume of fluid is discharged. Figure shows that the vanes create a vacuum so that oil enters through 180 of shaft rotation. Discharge also takes place through 180 of rotation. There is a slight overlapping of the beginning of the fluid intake function and the beginning of the fluid shows how maximum flow is available at minimum working pressure. As the pressure rises, flow diminishes in a predetermined pattern. As the flow decreases to a minimum valve, the pressure increases to the maximum. The pump delivers only that fluid needed to replace clearance floes resulting from the usual slide fit in circuit relief valve is not essential with a variable-displacement-type pump of this design to protect pumping mechanism. Other conditions within the circuit may dictate the use of a safety or relief valve to prevent localized pressure buildup beyond the usual working automatic control of the discharge , an adjustable spring-loaded governor is used . this governor is arranged so that the pump discharge acts on a piston or inner surface of the ring whose movement is opposed by the spring . if the pump discharge pressure rises above that for which the by governor spring is set , the spring is compressed. This allows the pressure-chamber ring to move and take a position that is less off center with respect to the rotor. The pump theb delivers less fluid, and the pressure is established at the desired level. The discharge pressure for units of this design varies between 100 and characteristics of a variable-displacement-pump compensator are shown in figure. Horsepower input values also shown so that the power input requirements can be accurately computed. Variable-volume vane pumps are capacity of multiple-pressure levels in a predetermined pattern. Two-pressure pump controls can provide an efficient method of unloading a circuit and still hold sufficient pressure available for pilot black area of the graph of figure shows a variable-volume pump maintaining a pressure of 100psi against a closed circuit. Wasted power is the result of pumping oil at 100psi through an unloading or relief valve to maintain a source of positive pilot pressure. Two-pressure –type controls include hydraulic, pilot-operated types and solenoid-controlled, pilot-operated types. The pilot oil obtained from the pump discharge cannot assist the governor spring. Minimum pressure will result. The plus figure shows the solenoid energized so that pilot oil assists compensator spring. The amount of assistance is determined by the small ball and spring, acting as a simple relief valve. This provides the predetermined maximum operating type of two-pressure system employs what is termed a differential unloading governor. It is applied in a high-low or two-pump circuit. The governor automatically, Through pressure sensing, unloads the large volume pump to a minimum deadhead pressure setting. Deadhead pressure refers to a specific pressure level established as resulting action of the variable-displacement-pump control mechanism. The pumping action and the resulting flow at deadhead condition are equal to the leakage in the system and pilot-control flow requirements. No major power movement occurs at this time, even though the hydraulic system may be providing a clamping or holding action while the pump is in deadhead position The governor is basically a hydraulically operated, two-pressure control with a differential piston that allows complete unloading when sufficient external pilot pressure is applied to pilot unload minimum deadhead pressure setting is controlled by the main governor spring A. the maximum pressure is controlled by the relief-valve adjustment B. the operating pressure for the governor is generated by the large-volume pump and enters through orifice C. To use this device let us assume that the circuit require a maximum pressure of 1000psi, which will be supplied by a 5-gpm pump. It also needs a large flow (40gpm) at pressure up to 500psi; it continues to 1000pso at the reduced flow rate. A two-pump system with an unloading governor on the 40-gpm pump at 500psi to a minimum pressure setting of 200psi (or another desired value) , which the 5-gpm pump takes the circuit up to1000psi or in figure that two sources of pilot pressure are required. One ,the 40-gpm pump, provides pressure within the housing so that maximum pressure setting can be obtained. The setting of the spring, plus the pressure within the governor housing, determines the maximum pressure capacity of the 40-gpm pump. The second pilot source is the circuit proper, which will go to 1000psi. this pilot line enters the governor through orifice D and acts on the unloading piston E . the area of piston E is 15 percent greater than the effective area of the relief poppet F. the governor will unload at 500psi and be activated at 15percent below 500psi, or 425psi. By unloading, we mean zero flow output of the 40-gpm pressure in the circuit increases from zero to 500psi, the pressure within the governor housing also increases until the relief-valve setting is reached, at which time the relief valve cracks open, allowing flow to the pressure drop in the hosing is a maximum additive value, allowing the pump to deadhead. Meanwhile, the system pressure continues to rise above 700psi, resulting in a greater force on the bottom of piston E than on the top. The piston then completely unseats poppet F, which results in a further pressure drop within the governor horsing to zero pressure because of the full-open position of the relief poppet F. flow entering the housing through orifice is directed to the tank pass the relief poppet without increasing the pressure in housing. The deadhead pressure of the 40-gpm pump then decreases to the lower set value. Thus , at the flow rate to the unloading governor ,the 40gpm pump goes to deadhead. The flow rate to the circuit decreases to 5gpm as the pressure to 1000psi, the 5-gpm pump is also at its deadhead setting, thus only holding system 4-gpm pump unloads its volume at 500psi. It requires a system pressure of 600psi to unload the 40-gpm pump to its minimum pressure of 200psi. the 600-psi pilot supply enters through orifice D and acts on the differential piston E. The pumps volume is reduced to zero circuit-flow output at 500psi. The additional 100-psi pilot pressure is required to open poppet F completely and allow the pressure within the housing to decrease to circuit pressure decreases ,both pumps come back into service in a similar pattern.

机械类英文期刊

国际机械工程与应用杂志是国际机器工程期刊,因为这个是属于机械类的,报刊里面的知识基本都是报道一些机器类工程的工作和方法。

制造领域关于异形孔加工方面的纯理论文章(文章为大篇幅的公式推导)《machine tools》和《mechanical science》韩国的一个SCIE期刊《International Journal of Precision Engineering and Manufacturing》英国机械工程师学会的SCI期刊《Proceedings of the Institution of Mechanical Engineers, Part B, Journal of Engineering Manufacture》第一次审稿意见两月内能回来中国机械工程学报也是可以的!机械、仪表类核心期刊1中国机械工程 2.机械工程学报 3.摩擦学学报 4.机械科学与技术 5.机械设计 6.光学精密工程 7.机械设计与研究 8.润滑与密封 9.仪器仪表学报 10.机床与液压 11.机械传动 12.液压与气动 13.流体机械 14.自动化与仪表 15.现代制造工程 16.工程设计学报 17.振动、测试与诊断 18.光学技术 19.机械设计与制造 20.制造业自动化 21.水泵技术 22.制造技术与机床 23.轴承 24.组合机床与自动化加工技术 25.自动化仪表 26.压力容器 27.仪表技术与传感器可以考虑向这些期刊投稿

我这里有。没牢固关系的根本投都投不了。

国际英文期刊在中国地区已被众多省市广泛认可,用途较多,越来越多的作者选择将学术成果发表在国际英文期刊上。中国部分部委及多数省市的管理机构或高校均有政策不同程度的认可、支持学者在国际英文期刊发表研究论文。国际英文期刊制度灵活,信息化程度较高,作者可以根据所在部委系统、省市单位的具体政策来具体选择合适的国际英文期刊,快速获得首发权和评审资格,以保护自己的研究成果,推动学术交流。

关于机械英语的论文题目

2000套solidworks~cad~ug机械自动化图纸,有削皮机~机械手~机床~有二维模型~有三维模型,可编辑哦

在写机械专业论文时,首先面临的问题就是题目如何拟定?题目的选择,关系着论文的成败,因此决定论文题目时,必须经过审慎的考虑。下面我给大家带来2021机械专业论文题目_机械论文题目选题,希望能帮助到大家!

机械论文题目

1、自主导航农业机械避障路径规划

2、煤矿机械电气设备自动化调试技术研究

3、机械加工中加工精度的影响因素与控制

4、三自由度机械臂式升降平台运动学建模及仿真

5、基于并联交错的起重机械节能装置设计研究

6、CNN和RNN融合法在旋转机械故障诊断中的应用

7、机械剪切剥离法制备石墨烯研究进展

8、机械压力机滚滑复合导轨结构设计研究

9、机械压力机曲轴、轴瓦温升自动控制设计技术

10、基于无线传感的机械冲压机振动监测分析

11、基于GNSS的农业机械定位与姿态获取系统

12、一种冗余机械臂多目标轨迹优化 方法

13、基于湍流模型的高速螺旋槽机械密封稳态性能研究

14、基于多楔现象的微孔端面机械密封泄漏率分析及孔形设计

15、牵引变电站直流断路器机械状态监测与故障诊断研究

16、方钢管混凝土柱卡扣机械连接试验及有限元分析

17、机械电子工程与人工智能的关系

18、机械法与机械-酶消化法制备大鼠膈肌组织单细胞悬液的比较

19、机械制造工艺及精密加工技术研究

20、腐蚀减薄对X80钢管机械损伤凹陷过程中应力应变的影响

21、基于驻极体材料的机械天线式低频通信系统仿真研究

22、基于"J型锁芯"的机械锁芯结构创新分析

23、浅析我国烟草机械技术的发展现状和趋势

24、液滴分析仪的机械结构设计

25、化工机械密封件损伤数值模拟及维修对策探讨

26、一种镍基单晶高温合金的反相热机械疲劳行为

27、浅谈机械数控技术的应用现状和发展趋势

28、数控机械加工进刀工艺优化 措施 分析

29、基于STM32六自由度机械臂发展前景

30、机械工程自动化技术存在的问题及对策探析

31、机械设计制造的智能化发展趋势综述

32、RFID在机械加工中的应用探究

33、试论船舶机械设备维修保养中的常见故障及排除方法

34、探讨港口流动机械预防性维护保养

35、关于端盖零件机械加工工艺的设计要点分析

36、关于机械加工工艺对零件加工精度的影响研究

37、现代机械制造及加工技术分析

38、论机械设计加工中需要注意的问题

39、基于机械设计制造中零件毛坯选择的研究与应用

40、机械零件加工精度影响因素探析

41、机械制造加工设备的安全管理与维修探讨

42、机械设备的环保性能分析

43、探究机电一体化系统在机械工程中的应用

44、机械制造过程的绿色制造技术应用研究

45、浅析机械设计制造中机电一体化的应用

46、机械工程的可靠性优化设计分析

47、浅析机械设备焊接制作中注意事项与探讨

48、浅谈山西省农产品初加工机械发展现状

49、浅谈信息化教学在机械制图课程中的应用策略

50、基于OBE的机械原理课程设计项目式教学改革研究

机械专业 毕业 论文题目

1、新型机械设计方法研究

2、钢铁冶炼机械设备的故障诊断及处理措施研究

3、机械制造工艺的可靠性分析

4、浅谈影响机械加工表面质量的因素与应对措施

5、抛光介质对镁合金化学机械抛光的影响

6、机械设计制造及其自动化发展方向的研究

7、试论物流机械设备使用管理

8、起重机械节能技术的应用研究

9、机械传动系统扭转振动模式的有限元分析

10、齿轮加工技术发展动态

11、机电产品设计与腐蚀防护设计的关系

12、机械制造中数控技术应用分析

13、铜冶炼设备机械液压系统的污染与控制

14、柴油机齿轮室总成异响分析与改进

15、一种用于图书自动存取装置的设计

16、机械加工零件表面纹理缺陷检测技术与实践

17、圆柱齿轮的加工原理及误差分析

18、机械设计基础课程 教学方法 与手段的探讨

19、基于OBE工程 教育 理念的机械原理课程设计改革

20、基于复杂工程问题的机械产品设计制造综合实践研究

21、现代机械制造工艺的特点及发展趋势分析

22、浅谈大直径渐开线斜齿轮的修整加工

23、机械加工工艺对加工精度的影响分析

24、机械构建的自动控制阀门探究

25、浅谈绿色制造技术在机械制造领域的应用

26、试析高职“机械制图与CAD”课程教学改革与实践

27、某减速机齿轮崩齿失效分析

28、往复式压缩机能效优化分析

29、大型薄壁件多点定位的初始布局优化算法研究

30、轴向拉紧的圆弧端齿轴段扭转特性研究

31、平行轴渐开线变厚齿轮传动的几何设计与啮合特性分析

32、化工生产用减速机的常见问题与处理

33、强化工程能力培养的地方高校机械设计系列课程改革

34、机械优化设计理论方法研究综述

35、我国机械设计制造及其自动化发展方向研究

36、机械设计制造及其自动化的发展方向

37、基于小波包和样本熵的齿轮故障特征提取

38、LDP型电动单梁起重机双向防坠落安全钩设计

39、自平衡自定位节能型多段水泵的研究

40、往复运动机构的能耗特点及加入空气弹簧后的节能控制方法

41、考虑粗糙度和固体颗粒效应的直齿轮跑合瞬态热弹流润滑分析

42、超大型起重机桥架整体加工工艺及装备

43、数控车间供电质量缺陷及对策

44、浅谈机械加工工艺对零件加工精度的影响

45、基于弹流理论的深槽密封机制分析

46、管线球阀产品及监造质量控制概述

47、往复式压缩机组管线振动分析及改造

48、精制柴油泵机封泄漏原因浅析和改进措施

49、基于漂流提升区输送带优化改进

50、离心泵径向力预测方法研究

机械工程硕士论文题目

1、车载液压机械臂动态设计与研究

2、基于网络模型的复杂机电系统可靠性评估

3、螺纹联接自动装配系统的研究

4、轴承压装仿真与试验以及液力变矩器导轮的热装配变形分析研究

5、硫系自润滑钢中原位自生金属硫化物自润滑相的形成机制与控制方法

6、基于电动气旋流的吸附器的开发和特性研究

7、动圈式比例电磁铁关键技术研究

8、箱式风机管道法兰的柔性制造系统

9、六自由度运动平台优化设计及动态仿真研究

10、面向恶劣服役环境的工件抗缺陷结构优化设计方法及其应用

11、基于数字液压缸组的多浮力摆波能装置压力平衡研究

12、具有运动控制功能的电液比例阀控制器研究

13、微型轴承内圆磨削加工的质量监控系统研究

14、抗负载波动回转控制阀优化设计研究

15、气浮式无摩擦气缸静动态特性研究

16、模拟风力机载荷的电液加载装置的设计研究

17、用于扩散吸收式热变换器的气泡泵性能实验研究

18、脂肪醇聚氧乙烯醚与三乙醇胺硼酸酯水溶液的摩擦学性能研究

19、表面织构化固体润滑膜设计与制备技术研究

20、双压力角非对称齿轮承载能力的影响因素研究及参数优化

21、全电液式多路阀自动测试系统设计与实现

22、开关液压源系统研究分析及其试验系统的设计与搭建

23、飞轮储能系统电机与轴系设计

24、面向不完全数据的疲劳可靠性分析方法研究

25、树木移植机液压系统的设计研究

26、新型双输出摆线减速器的设计与分析

27、基于ARM9架构的工业喷码机研究与实现

28、超高压水射流破拆机器人液压系统设计与研究

29、考虑轴承影响的摆线针轮传动动力学研究

30、车辆传动装置供油系统设计方法研究

31、润滑油复合纳米粒子添加剂摩擦学性能的研究

32、高速气缸的缓冲结构研究

33、大长径比柔性对象自动送料关键技术研究

34、空间索杆铰接式伸展臂根部锁紧机构运动功能可靠性研究

35、基于能量梯度理论的离心压缩机固定元件性能改进研究

36、并联RCM机构构型综合及典型机构运动学分析

37、多自由度气动人工肌肉机械手指结构设计及控制

38、闸板位置对闸阀内部气固两相流及磨损的影响

39、电液伺服阀试验台测控系统的设计

40、多盘制动器加压装置典型结构设计及试验研究

41、重型多级离心泵穿杠螺母拧紧装置的设计

42、气动增压阀动态特性的仿真研究

43、小间隙下狭缝节流止推轴承特性研究

44、离心通风机的性能预测与叶片设计研究

45、基于有限元法的齿面修形设计

46、离心泵输送大颗粒时固液两相流场的数值计算

47、小流量工况下离心泵内部流动特性分析

48、双粗糙齿面接触时的弹流润滑数值分析

49、工程专用自卸车车架疲劳寿命分析

50、倾斜式带式输送机断带抓捕装置的研究

2021机械专业论文题目相关 文章 :

★ 优秀论文题目大全2021

2021毕业论文题目怎么定

★ 机械制造毕业论文范文参考

★ 机械类学术论文题目

★ 大学生论文题目大全2021

★ 优秀论文题目2021

★ 大学生论文题目参考2021

★ 2021机械毕业实习报告例文5篇

★ 机械类科技论文范文(2)

★ 2021建筑类专业论文题目

IntroductionMachining aims to generate the shape of work-piece form a solid body,or to improve the tolerances and surface finish of a previously formed work-piece,by removing excess materials in the form of chips. Machining is capable of creating geometric configurations,tolerances, and surface finishes often unobtainable by any other , machining removes materials, which has already been paid for, in the form of relatively small particles that are more difficult to recycle and are in greater danger of becoming mixed. Therefore,developments often aim at reducing or-if at all possible-eliminating machining, especially in mass these reasons, machining has lost some important markets, yet, at the same time, it has also been developing and especially having captured new markets with the application of numerical feel for the important of machining may be gained from the observation that in 1983 there were about 2 million metal-cutting machine tools in the unite states ( of which some 5% were numerically controlled ) and that labor and overhead costs amounted to $125 billion, or 3% of the GNP.

机械类的毕业论文题目有很多,学术堂整理了十五个题目供大家进行参考:1、某型汽车发动机曲轴的加工工艺及测试研究2、舞台升降装置的设计研究3、按摩机器人控制器的设计与研究4、垂直升降式立体停车设备的结构设计5、CA6140普通车床纵向数控改装6、汽车电磁涡流减震器力学性能研究7、自动下料机的机械结构设计与研究8、智能清洁机器人的设计9、低破碎玉米脱粒机的设计与分析10、马铃薯连续式机械化去皮关键技术研究11、排气隔热罩的设计与研究12、汽车电动玻璃升降器结构设计13、胡萝卜自动削皮机虚拟样机设计14、山药全自动削皮机装置与控制系统研究15、自动化甘蔗削皮装置的研制

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