
桥式起重机是横架于车间、仓库和料场上空进行物料吊运的起重设备。由于它的两端坐落在高大的水泥柱或者金属支架上,形状似桥。桥式起重机的桥架沿铺设在两侧高架上的轨道纵向运行,可以充分利用桥架下面的空间吊运物料,不受地面设备的阻碍。它是使用范围最广、数量最多的一种起重机械。Bridge crane is horizontal plane in workshop, warehouse and yard over rigger materials of lifting equipment. Because of its ends located in tall cement posts or metal stents, shape like bridge. Bridge crane along the bridge on both sides laying in elevated the orbit of longitudinal operation, can make full use of the space below girder hoisting materials, does not suffer ground equipment obstacles. It is to use the widest range, the largest number of a kind of hoisting machinery. 桥式起重机是现代工业生产和起重运输中实现实现生产过程 机械化、自动化得重要工具和设备。 所以桥式起重机在室内外工矿企业、钢铁化工、铁路交通、港口码头以及物流周转等部门和场所均得到广泛的运用。Bridge crane is the modern industrial production and lifting transportation in realizing realize mechanization, automation production process to important tools and equipment. So bridge crane in interior industrial and mining enterprises, steel chemical industry, railway transportation, ports and logistics departments and establishments are widely used. 桥式起重机可分为普通桥式起重机、简易梁桥式起重机和冶金专用桥式起重机三种。 普通桥式起重机一般由起重小车、桥架运行机构、桥架金属结构组 成。起重小车又由起升机构、小车运行机构和小车架三部分组成。 起升机构包括电动机、制动器、减速器、卷筒和滑轮组。电动机通过减速器,带动卷筒转动,使钢丝绳绕上卷筒或从卷筒放下,以升降重物。小车架是支托和安装起升机构和小车运行机构等部件的机架,通常为焊接结构。 起重机运行机构的驱动方式可分为两大类:一类为集中驱动,即用一台电动机带动长传动轴驱动两边的主动车轮;另一类为分别驱动、即两边的主动车轮各用一台电动机驱动。中、小型桥式起重机较多采用制动器、减速器和电动机组合成一体的“三合一”驱动方式,大起重量的普通桥式起重机为便于安装和调整,驱动装置常采用万向联轴器。 起重机运行机构一般只用四个主动和从动车轮,如果起重量很大,常用增加车轮的办法来降低轮压。当车轮超过四个时,必须采用铰接均衡车架装置,使起重机的载荷均匀地分布在各车轮上。 桥架的金属结构由主梁和端梁组成,分为单主梁桥架和双梁桥架两类。单主梁桥架由单根主梁和位于跨度两边的端梁组成,双梁桥架由两根主梁和端梁组成。 主梁与端梁刚性连接,端梁两端装有车轮,用以支承桥架在高架上运行。主梁上焊有轨道,供起重小车运行。桥架主梁的结构类型较多比较典型的有箱形结构、四桁架结构和空腹桁架结构。 箱形结构又可分为正轨箱形双梁、偏轨箱形双梁、偏轨箱形单主梁等几种。正轨箱形双梁是广泛采用的一种基本形式,主梁由上、下翼缘板和两侧的垂直腹板组成,小车钢轨布置在上翼缘板的中心线上,它的结构简单,制造方便,适于成批生产,但自重较大。 偏轨箱形双梁和偏轨箱形单主梁的截面都是由上、下翼缘板和不等厚的主副腹板组成,小车钢轨布置在主腹板上方,箱体内的短加劲板可以省去,其中偏轨箱形单主梁是由一根宽翼缘箱形主梁代替两根主梁,自重较小,但制造较复杂。 四桁架式结构由四片平面桁架组合成封闭型空间结构,在上水平桁架表面一般铺有走台板,自重轻,刚度大,但与其他结构相比,外形尺寸大,制造较复杂,疲劳强度较低,已较少生产。 空腹桁架结构类似偏轨箱形主梁,由四片钢板组成一封闭结构,除主腹板为实腹工字形梁外,其余三片钢板上按照设计要求切割成许多窗口,形成一个无斜杆的空腹桁架,在上、下水平桁架表面铺有走台板,起重机运行机构及电气设备装在桥架内部,自重较轻,整体刚度大,这在中国是较为广泛采用的一种型式。 普通桥式起重机主要采用电力驱动,一般是在司机室内操纵,也有远距离 桥式起重机控制的。起重量可达五百吨,跨度可达60米。 Bridge crane can be divided into ordinary bridge crane, simple girder crane and metallurgical special bridge crane 3 kinds. Ordinary bridge crane is general by lifting trolley and bridge operation organization, bridge metal structure group into. Lifting car again by lifting mechanism, trolley mechanism and the car frame of three parts. Lifting mechanism including motor, brakes, reducer, drum and pulleys. Driving speed reducer, electromotor through reel rotation of wire rope around the drum drum down, or from lifting weights with. Car frame is a torre and installation of hoisting mechanism and the car mechanism, etc. Parts of the frame, usually for welding structure. Crane operation organization drive mode can be divided into two kinds: one kind is concentrated drive, which is a motor driving long shaft drive on both sides of the active wheels, Another kind is respectively driven, namely on both sides of the active wheel each with a motor drives. Medium and small bridge crane is increasingly used brakes, reducer and electric generator synthetic one of three-in-one drive mode, a big weight of ordinary bridge crane for ease of installation and adjustment, device drivers often adopt universal shaft coupling. Crane operation organization generally in four active and driven wheels, if lifting weight is very big, commonly used to increase the wheel to reduce the pulley. When more than four wheels when, must use hinged equilibrium frame device to make the crane load evenly distributed in each wheel. Bridge of metal structure composed by main girder and girders, divided into the single girder frame and main double girder frame two kinds. Single main girder bridge girder and frame is located in single span on both sides of the girders composition, double girder frame girder by two root and girders composition. Girder and girders rigid connection, girders, supporting both ends with wheels in elevated bridge to run on. The main welding have orbit, for lifting car running. Bridge girder structure type more comparatively typical have box structure, four truss structure and open-web truss structure. Box structure can divide again on track box shuang liang, slant rail box shuang liang, slant rail box single girder to wait for a few kinds. Track box shuang liang is widespread adoption of a basic form the girder, consists of flange plate and bilateral vertical webs composition, car rail decorate in the center of the flange plate online, its simple structure, easy fabrication, suitable for mass production, but self-respect greatly. Partial rail box double beam and partial rail box single main section is by the upper and lower flange plate and the different thickness of the Lord vice webs composition, car rail decorate in the main webs, short circuits inside above stiffening plate can save, including partial rail box girder is composed of a single root box girder wide flange instead of two root girder, respect smaller, but manufacturing complex. Four truss structure featured by four plane truss by combined into closing in on the spatial structure, the level of general shop to have walked surface truss bedplate, light dead weight, stiffness big, but compared with other structure size, shape, manufacturing is relatively complex, fatigue strength low, has less production. Open-web truss structure similar to slant box girder by rail, four plates form a closed structure, in addition to the main webs for real abdomen i-section beam outside, the rest 3-piece plate according to the design demand cutting into many window, forming a without rods of open-web truss, in the upper and lower horizontal truss surface covered go bedplate, crane operation organization and electrical equipment installed in bridge internal, self-respect lighter, whole stiffness big in China is that more widespread adoption of a type. Ordinary bridge crane mainly adopts electric drive, it is to be in commonly driver indoor manipulation, also have long-distance bridge crane Control. Lifting weight can reach 500 tons, span of 60 meters. 简易梁桥式起重机又称梁式起重机,其结构组成与普通桥式起重机类似,起重量、跨度和工作速度均较小。桥架主梁是由工字钢或其他型钢和板钢组成的简单截面梁,用手拉葫芦或电动葫芦配上简易小车作为起重小车,小车一般在工字梁的下翼缘上运行。桥架可以沿高架上的轨道运行,也可沿悬吊在高架下面的轨道运行,这种起重机称为悬挂梁式起重机。 冶金专用桥式起重机在钢铁生产过程中可参与特定的工艺操作,其基本结构与普通桥式起重机相似,但在起重小车上还装有特殊的工作机构或装置。这种起重机的工作特点是使用频繁、条件恶劣,工作级别较高。主要有五种类型。payments and plate steel composed of simple beam, with the hand type hoists or electric hoist match on simple car as lifting car, the car is in commonly strander beam under operation on the flange. Bridge along on a high orbits, also can along the suspensory on elevated the following orbits, this kind of crane beam cranes called suspension. Metallurgy special bridge crane in steel production process can participate in particular process operation, its basic structure and ordinary bridge crane is similar, but in lifting cars also has a special working organs or device. This kind of crane characteristics of the work is used frequently, conditions and job level is higher. Basically has five types. 桥式起重机的安全检查为了保证桥式起重机的安全运行,在起重机运行期间需进行一些安全常规检查,检查项目及要点如下: (1) 起升高度限位器、行程限位开关及各联锁机构性能正 桥式起重机常,安全可靠。 (2) 各主要零部件符合安全要求:开口增大小于原尺寸的15%,扭转变形小于10%;板钩衬套磨损小于原尺寸的50%,板钩心轴磨损小于5%,无剥落、毛刺、焊补。吊钩挂架及滑轮无明显缺陷。钢丝绳表面钢丝磨损、腐蚀量小于钢丝直径的40%,断丝在一个捻距内小于总丝数的10%,无断头,无明显变细,无芯部脱出、死角扭拧、挤压变形、退火、烧损现象。钢丝绳端部连接及固定的卡子、压板、锲块连接完好,无松动,压板不少于2个,卡子数量不少于3个。卷筒无裂纹,连接、固定无松动;筒壁磨损小于原壁厚的20%;安全卷不少于2圈,卷筒与钢丝绳直径比例符合要求。平衡轮固定完好,钢丝绳应符合的要求。制动器无裂纹,无松动,无严重磨损,制动间隙两侧相等尺寸合适,有足够的制动力,制动带磨损小于原厚度的50%。 通过对桥式起重机的安全常规检查,对杜绝人身事故,减少设备事故,提高设备运转率,降低检修费用等均起到了显著作用。Bridge crane safety check to ensure the safe operation of the bridge cranes, in crane operation period to some general safety inspections and inspection items and points as follows: (1) the hoisting height peneumatied device, travel limit switches and all the interlock device performance is bridge crane Often, safe and reliable. (2) the main parts meet safety requirements: less than the original size increase openings less than 10%, 15% torsional deformation, Board hook bushing wear less than the original size, 50% of the board hook mandrels wear less than 5%, no spalling, burr, weld repairs. Hook rack and pulley without obvious flaw. Wire rope surface wire wear and corrosion is less than 40% of wire diameter, broken wires in a twined within less than the total silk from the number of 10%, no bufo, without obvious attenuate, without mandrel department of emergence, blind Angle twisting, extrusion, annealing, burning phenomenon. At the end of the wire rope connection and fixed clip next, clips, -200 block connect intact, without loosing, linking piece not less than 2, clip next amount not less than 3. S no crack, links, fixed without shake, A hollow wear less than 20% of the original wall thickness, Safety coil not less than 2 laps, drum and wire rope diameter ratio meets the requirement. Balance wheel fixed intact, the wire rope should comply with the requirements. Brake flawless, without loose, no serious wear and brake clearance sides equal size, have enough braking force, brake with less than 50% of the original thickness wear. Through the bridge crane safety routine inspection, to prevent accidents and reduce equipment accidents and improve equipment availability, reducing maintenance cost etc are plays a remarkable role.
本人也是做机械的,希望多多交流,如下的翻译希望能让你满意,如有不足之处,还望多多指教!Electrical Hoist is a crane combined by electromotor, speed reducer, roller,brake and crown block. It can be fixed, and also can be assembled with trolly and beam to become single-beam brige crane, twins beam brige crane and electric gantry crane, who can be used for winding with a little modification.When designing the shaft parts, we need fully consider every neccessary specifications such as the material, heat treatment and precision etc.Besides, we need consider the problems which may occur in or after design, and solve them in time. We should design in accordance with the requirements such as:* meeting the requirements of strength and stiffness,* improving the radiating performance and preventing thermal deformation,* rational structure, and* good mould and manufacturability.This article synthetically explains how to confirm the related equipments, cutting parameters, process designing and machining quality analysis with consideration on selcting shaft blank, manufacturing process and final inspection.This article consists of five parts, Part 1 to introduce why to study this project, Part 2 to explain the electrical hoist's application and function, Part 3 to specify the process for shaft parts of hoist, Part 4 to analyse the problems which may happen in the manufacturing process and the reason and the way to solve the problems, and Part 5 to check if the finished shaft meets the requirements based on the drawings.
Electric hoist is will motor, gear reducer, drum, brake and operation such as car compact to integrated, lifting machinery. The electric hoist can type fixed can also through the car and composed electric single girder bridge crane, simple double beam bridge crane and gantry crane, simple, revising, still can make a winch role.In the design axis part should be taken into consideration when they of required materials, heat treatment and precision grade of the necessary parameters. In addition, also want to consider the design or after the design problems that may occur in time, and shall be excluded. In the design process is, in strict accordance with the requirements of the design design, for example: satisfy the intensity and rigidity requirement, to solve the heat dissipating performance and thermal deformation, structural design is reasonable, modelling and better technologyThis article through to the axis part blank choice, process manufacturing and processing, the subsequent measurement, comprehensive and expounds the specific related manufacturing equipment, and selection of cutting parameter, procedure design and machining quality technical analysis.This paper mainly by the five parts. The first part of this paper introduces topic source; The second part explain the application of electric hoist and its function; In the third part of electric hoist typical axis part worked the processing technology of the line; The fourth part analyzes the problems appeared in the process of manufacturing problems and introduces the causes and solutions; The fifth part of the testing process compliance with parts of the shaft map requirements. 保证对
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(46.5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 years.After 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 industry.Just small ramming machinery:In the 1960s, China mechanical very small tamp lack, many small venues ramming basically USES artificial ramming.Early 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 eliminated.In 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 production.In 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 market.In 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 market.Vibration 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 machine.The 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 (46.5 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 process.In 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 imports.Before 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 cutting.Visible, China mechanical development in modern development of its rapid.
这里有很多的,你可以找下有没有?我找了好长时间才找到的哦.中文免费论文地址集锦 一、 综合类 1、蓝之韵论文 门类较全。 2、学生大论文中心 3、蜂朝无忧论文网 门类很全。 4、论文下载中心 门类很全。 5、论文帝国 二、 教育类 1、教研论文交流中心 以中小学教育为主,基础教育、英语教学文章居多。 2、教育教学论文网 以教育论文为主,包含:语文论文 美术论文 物理论文 化学论文 英语论文 历史论文 德育论文 教学论文 数学论文 音乐论文 生物论文 自然论文 体育论文 地理论文 摄影论文 劳动技术 农村教育 毕业论文 素质论文 医学论文 电子电器学 思维科学 计算机论文 活动课教学 书法篆刻论文 创新教育研究 心理健康教育 西部教育论文 信息技术论文 3、教育论文 4、中国园丁网论文大观 5、北大附小学校教师的文章: 三、 专业类 1、优秀论文杂志 以科技类为主。 2、论文资料网 以财经经济管理类为主。 3、法律图书馆 文如其名。 4、法学论文资料库 文如其名。 5、中国总经理网论文集 6、mba职业经理人论坛 7、中国农业在线-农业论文 8、体育论文 9、财经学位论文下载中心 10、公开发表论文_深圳证券交易所 11、中国路桥资讯网论文资料中心 12、论文商务中心 13、法律帝国: 四、 论文写作教学类 1、学术论文 其实是学术论文的写作网站。 五、 博硕士论文 1、论文统计 实际上就是万方的论文统计。 2、台湾博硕士论文咨讯网 3、北京大学学位论文样本收藏 4、学位论文 (清华大学) ] 中国科技论文在线 论文中国 : 新浪论文网分类: 中国论文联盟: 大学生论文库 论文资料网: 论文下载中心: 毕业论文网: 学位论文: 无忧论文网: 北京语言文化大学论文库:
Electrical system design of Overhead Travlling Cranes
208 浏览 5 回答
223 浏览 3 回答
131 浏览 5 回答
276 浏览 6 回答
311 浏览 6 回答
87 浏览 3 回答
117 浏览 6 回答
86 浏览 4 回答
129 浏览 3 回答
81 浏览 6 回答
288 浏览 6 回答
190 浏览 1 回答
204 浏览 5 回答
241 浏览 9 回答
177 浏览 4 回答