UCL MSc Mechanical Engineering Catalogue

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中国大陆被EI检索的期刊

中国大陆被EI检索的期刊

半导体学报(英文版)爆炸与冲击北京航空航天大学学报北京科技大学学报北京理工大学学报北京理工大学学报(英文版)北京邮电大学学报兵工学报材料工程材料科学技术(英文版)材料热处理学报材料研究学报采矿与安全工程学报测绘学报船舶力学催化学报(网络版,英文版)大地构造与成矿学等离子体科学和技术(英文版)地球科学地球物理学报地球学报地学前缘地震地质地震工程与工程振动(英文版)电波科学学报电工技术学报电机与控制学报电力系统自动化电力自动化设备电网技术电子科技大学学报电子学报电子学报(英文版)电子与信息学报东北大学学报(自然科学版)东华大学学报(英文版)东南大学学报(英文版)东南大学学报(自然科学版)发光学报仿生工程学报(英文版)非线性科学与数值模拟通讯(英文版)分子催化粉末冶金材料科学与工程复合材料学报复杂系统与复杂性科学高等学校化学学报高电压技术高分子材料科学与工程高技术通讯(英文版)高校化学工程学报工程力学工程热物理学报功能材料固体火箭技术固体力学学报(英文版)光电子激光光电子快报(英文版)光谱学与光谱分析光学精密工程光学学报光子传感器(英文版,电子科技大学)光子学报硅酸盐学报国防科技大学学报国际农业工程学报(英文版)国际农业与生物工程学报(英文版)国际自动化与计算杂志(英文版)哈尔滨工程大学学报哈尔滨工业大学学报哈尔滨工业大学学报(英文版)含能材料焊接学报航空动力学报航空学报核动力工程红外与毫米波学报红外与激光工程湖南大学学报(自然科学版)华南理工大学学报(自然科学版)华中科技大学学报(自然科学版)化工学报环境科学学报(英文版)环境科学研究机器人机械工程学报吉林大学学报(工学版)计算机辅助设计与图形学学报计算机集成制造系统计算机科学技术学报(英文版)计算机科学前沿(英文版)计算机学报计算机研究与发展建筑材料学报建筑结构学报交通运输工程学报交通运输系统工程与信息金属学报金属学报(英文版)颗粒学报(英文版)控制理论与应用控制理论与应用(英文版)控制与决策矿物冶金与材料学报(英文版)矿业科学技术(英文版)力学进展力学学报力学学报(英文版)林产化学与工业煤炭学报摩擦学学报南京航空航天大学学报(英文版)内燃机工程内燃机学报农业工程学报农业机械学报汽车工程强激光与粒子束桥梁建设清华大学学报(英文版)清华大学学报(自然科学版)燃料化学学报热科学学报(英文版)人工晶体学报软件学报上海交通大学学报上海交通大学学报(英文版)声学学报石油地球物理勘探石油勘探与开发石油物探石油学报石油学报(石油加工)石油与天然气地质水动力学研究与进展(B辑,英文版)水科学进展水科学与水工程(英文版)水利学报四川大学学报(工程科学版)太阳能学报天津大学学报天津大学学报(英文版)天然气地球科学天然气工业天然气化学(英文版)铁道工程学报铁道学报通信学报同济大学学报(自然科学版)土木工程学报推进技术无机材料学报武汉大学学报(信息科学版)武汉理工大学学报(材料科学版,英文版)物理学报西安电子科技大学学报西安交通大学学报西北工业大学学报西南交通大学学报稀土稀土学报(英文版)稀有金属稀有金属(英文版)稀有金属材料与工程系统工程理论与实践系统工程与电子技术系统工程与电子技术(英文版)系统科学与复杂性学报(英文版)系统科学与系统工程学报(英文版)现代食品科技现代隧道技术新型炭材料烟草科技岩石力学与工程学报岩土工程学报岩土力学仪器仪表学报应用基础与工程科学学报应用数学和力学(英文版)宇航学报原子能科学技术长安大学学报(自然科学版)浙江大学学报(A辑应用物理和工程,英文版)浙江大学学报(C 计算机与电子工程,英文版)浙江大学学报(工学版)真空科学与技术学报振动测试与诊断振动工程学报振动与冲击质谱学报智能计算与控制论国际期刊(英文版)中国地球化学学报(英文版)中国电机工程学报中国公路学报中国惯性技术学报中国光学快报(英文版)中国海洋工程(英文版)中国焊接(英文版)中国航空学报(英文版)中国化学工程学报(英文版)中国环境科学中国机械工程学报(英文版)中国机械工程学刊中国激光中国科学(地球科学,英文版)中国科学(化学,英文版)中国科学(技术科学,英文版)中国科学(物理、力学与天文学,英文版)中国科学(信息科学,英文版)中国矿业大学学报中国粮油学报中国石油大学学报(自然科学版)中国食品学报中国铁道科学中国土木水利工程学刊中国物理(B,英文版)中国烟草学报中国邮电高校学报(英文版)中国有色金属学报中国有色金属学会学报(英文版)中国造船中南大学学报(矿冶科技,英文版)中南大学学报(自然科学版)自动化学报Journal of Semiconductors1674-4926 Baozha yu Chongji1001-1455 Beijing Hangkong Hangtian Daxue Xuebao1001-5965 Beijing Keji Daxue Xuebao1001-053X Beijing Ligong Daxue Xuebao1001-0645 Journal of Beijing Institute of Technology1004-0579 Beijing Youdian Daxue Xuebao1007-5321 Binggong Xuebao1000-1093 Cailiao Gongcheng/Ts'ai Liao Kung Ch'eng1001-4381 Journal of Materials Science & Technology1005-0302 Cailiao Rechuli Xuebao1009-6264 Cailiao Yanjiu Xuebao1005-3093 Caikuang yu Anquan Gongcheng Xuebao1673-3363 Cehui Xuebao1001-1595 Chuanbo Lixue1007-7294 Chinese Journal of Catalysis E1872-2067 Dadi Gouzao yu Chengkuangxue1001-1552 Plasma Science & Technology (Bristol, United Kingdom)1009-0630 Diqiu Kexue1000-2383 Diqiu Wuli Xuebao0001-5733 Diqiu Xuebao1006-3021 Dixue Qianyuan1005-2321 Dizhen Dizhi0253-4967 Earthquake Engineering and Engineering Vibration1671-3664 Dianbo Kexue Xuebao1005-0388 Diangong Jishu Xuebao1000-6753 Dianji yu Kongzhi Xuebao1007-449X Dianli Xitong Zidonghua1000-1026 Dianli Zidonghua Shebei1006-6047 Dianwang Jishu1000-3673 Dianzi Keji Daxue Xuebao1001-0548 Dianzi Xuebao0372-2112 Chinese Journal of Electronics1022-4653 Dianzi yu Xinxi Xuebao1009-5896 Dongbei Daxue Xuebao ,Ziran Kexueban1005-3026 Journal of Donghua University1672-5220 Journal of Southeast University1003-7985 Dongnan Daxue Xuebao ,Ziran Kexueban1001-0505 Faguang Xuebao1000-7032 Journal of Bionic Engineering1672-6529 Communications in Nonlinear Science and Numerical Simu1007-5704 Fenzi Cuihua1001-3555 Fenmo Yejin Cailiao Kexue yu Gongcheng1673-0224 Fuhe Cailiao Xuebao1000-3851 Fuza Xiting yu Fuzaxing Kexue1672-3813 Gaodeng Xuexiao Huaxue Xuebao0251-0790 Gaodianya Jishu1003-6520 Gaofenzi Cailiao Kexue yu Gongcheng1000-7555 High Technology Letters1006-6748 Gaoxiao Huaxue Gongcheng Xuebao1003-9015Gongcheng Lixue1000-4750 Gongcheng Rewuli Xuebao0253-231X Gongneng Cailiao1001-9731Guti Huojian Jishu1006-2793Acta Mechanica Solida Sinica0894-9166 Guangdianzi Jiguang1005-0086 Optoelectronics Letters1673-1905 Guangpuxue yu Guangpu Fenxi1000-0593 Guangxue Jingmi Gongcheng1004-924X Guangxue Xuebao0253-2239Photonic Sensors1674-9251Guangzi Xuebao1004-4213 Guisuanyan Xuebao0454-5648Guofang Keji Daxue Xuebao1001-2486 International Agricultural Engineering Journal0858-2114 International Journal of Agricultural and Biological Enginee1934-6344 International Journal of Automation and Computing1476-81861006-7043Harbin Gongcheng Daxue Xuebao或Ha-erh-pin Kung Cheng Ta Hsueh Hsueh Pao Harbin Gongye Daxue Xuebao0367-6234Journal of Harbin Institute of Technology (English Edition)1005-9113Hanneng Cailiao1006-9941Hanjie Xuebao0253-360X Hangkong Dongli Xuebao1000-8055Hangkong Xuebao1000-6893Hedongli Gongcheng0258-0926Hongwai yu Haomibo Xuebao1001-9014Hongwai yu Jiguang Gongcheng1007-2276Hunan Daxue Xuebao,Ziran Kexueban1674-2974Huanan Ligong Daxue Xuebao,Ziran Kexueban1000-565X Huazhong Keji Daxue Xuebao,Ziran Kexueban1671-4512Huagong Xuebao0438-1157Journal of Environmental Sciences (Beijing, China)1001-0742Huanjing Kexue Yanjiu1001-6929Jiqiren1002-0446Jixie Gongcheng Xuebao0577-6686Jilin Daxue Xuebao,Gongxueban1671-5497Jisuanji Fuzhu Sheji yu Tuxingxue Xuebao1003-9775Jisuanji Jicheng Zhizao Xitong1006-5911Journal of Computer Science and Technology1000-90002095-2228Frontiers of Computer Science(旧名Frontiers of Computer Science in China)Jisuanji Xuebao0254-4164Jisuanji Yanjiu yu Fazhan1000-1239Jianzhu Cailiao Xuebao1007-9629Jianzhu Jiegou Xuebao1000-6869Jiaotong Yunshu Gongcheng Xuebao1671-1637Jiaotong Yunshu Xitong Gongcheng yu Xinxi1009-6744Jinshu Xuebao0412-1961Acta Metallurgica Sinica(English Letters)1006-7191 Particuology1674-2001Kongzhi Lilun yu Yingyong1000-8152Journal of Control Theory and Applications1672-6340 Kongzhi yu Juece1001-0920 International Journal of Minerals, Metallurgy and Materials1674-4799 International Journal of Mining Science and Technology2095-2686Lixue Jinzhan1000-0992Lixue Xuebao0459-1879Acta Mechanica Sinica0567-7718 Linchan Huaxue yu Gongye0253-2417 Meitan Xuebao0253-9993 Mocaxue Xuebao1004-0595 Transactions Nanjing University Aeronautics and Astronau1005-1120 Neiranji Gongcheng1000-0925 Neiranji Xuebao1000-0909 Nongye Gongcheng Xuebao1002-6819 Nongye Jixie Xuebao1000-1298 Qiche Gongcheng1000-680X Qiangjiguang yu Lizishu1001-4322 Qiaoliang Jianshe1003-4722 Tsinghua Science and Technology1007-0214 Qinghua Daxue Xuebao,Ziran Kexueban1000-0054 Ranliao Huaxue Xuebao0253-2409 Journal of Thermal Science1003-2169 Rengong Jingti Xuebao1000-985X Ruanjian Xuebao1000-9825 Shanghai Jiaotong Daxue Xuebao1006-2467 Journal of Shanghai Jiaotong University(Special Issue)1007-1172 Shengxue Xuebao0371-0025 Shiyou Diqiu Wuli Kantan1000-7210 Shiyou Kantan yu Kaifa1000-0747 Shiyou Wutan1000-1441 Shiyou Xuebao0253-2697 Shiyou Xuebao,Shiyou Jiagong1001-8719 Shiyou yu Tianranqi Dizhi0253-9985 Journal of Hydrodynamics,Series B1001-6058 Shuikexue Jinzhan1001-6791 Water Science and Engineering1674-2370Shuili Xuebao0559-9350 Sichuan Daxue Xuebao,Gongcheng Kexueban1009-3087 Taiyangneng Xuebao0254-0096 Tianjin Daxue Xuebao0493-2137 Transactions of Tianjin University1006-4982 Tianranqi Diqiu Kexue1672-1926 Tianranqi Gongye1000-09761003-9953 Journal of Natural Gas Chemistry 是旧名,新名 Journal of Energy Chemistry Tiedao Gongcheng Xuebao1006-2106 Tiedao Xuebao1001-8360 Tongxin Xuebao1000-436X Tongji Daxue Xuebao,Ziran Kexueban0253-374X Tumu Gongcheng Xuebao1000-131XTuijin Jishu1001-4055Wuji Cailiao Xuebao1000-324X Wuhan Daxue Xuebao,Xinxi Kexueban1671-8860 Journal of Wuhan University of Technology,Materials Scien1000-2413 Wuli Xuebao1000-3290 Xi'an Dianzi Keji Daxue Xuebao1001-2400 Xi'an Jiaotong Daxue Xuebao0253-987X Xibei Gongye Daxue Xuebao1000-2758 Xinan Jiaotong Daxue Xuebao0258-2724 Xitu1004-0277 Journal of Rare Earths1002-0721 Xiyou Jinshu0258-7076 Rare Metals(Beijing,China)1001-0521 Xiyou Jinshu Cailiao yu Gongcheng1002-185X Xitong Gongcheng Lilun yu Shijian1000-6788 Xitong Gongcheng yu Dianzi Jishu1001-506X Journal of Systems Engineering and Electronics1004-4132 Journal of Systems Science & Complexity1009-6124 Journal of Systems Science and Systems Engineering1004-3756 Xiandai Shipin Keji1673-9078 Xiandai Shuidao Jishu1009-6582 Xinxing Tan Cailiao1007-8827 Yancao Keji1002-0861 Yanshi Lixue yu Gongcheng Xuebao1000-6915 Yantu Gongcheng Xuebao1000-4548 Yantu Lixue1000-7598 Yiqi Yibiao Xuebao0254-3087 Yingyong Jichu yu Gongcheng Kexue Xuebao1005-0930 Applied Mathematics and Mechanics(English Edition)0253-4827 Yuhang Xuebao1000-1328 Yuanzineng Kexue Jishu1000-6931 Chang'an Daxue Xuebao,Ziran Kexueban1671-8879 Journal of Zhejiang University-SCIENCE A Applied Physics 1673-565X1869-1951 Journal of Zhejiang University-SCIENCE C Computers & Ele Zhejiang Daxue Xuebao,Gongxueban1008-973X Zhenkong Kexue yu Jishu Xuebao1672-7126 Zhendong Ceshi yu Zhenduan1004-6801 Zhendong Gongcheng Xuebao1004-4523 Zhendong yu Chongji1000-3835 Zhipu Xuebao1004-29971756-378X International Journal of Intelligent Computing and Cyberne Chinese Journal of Geochemistry1000-9426 Zhongguo Dianji Gongcheng Xuebao0258-8013 Zhongguo Gonglu Xuebao1001-7372 Zhongguo Guanxing Jishu Xuebao1005-6734 Chinese Optics Letters1671-7694 China Ocean Engineering0890-5487 China Welding1004-5341 Chinese Journal of Aeronautics1000-9361 Chinese Journal of Chemical Engineering1004-9541 Zhongguo Huanjing Kexue1000-6923Chinese Journal of Mechanical Engineering1000-9345Zhongguo Jixie Gongcheng Xuekan0257-9731Zhongguo Jiguang0258-7025Science China(Earth Sciences)1674-7313Science China(Chemistry)1674-7291Science China(Technological Sciences)1674-7321Science China(Physics,Mechanics and Astronomy)1674-7348Science China(Information Sciences)1674-733XZhongguo Kuangye Daxue Xuebao1000-1964Zhongguo Liangyou Xuebao1003-0174Zhongguo Shiyou Daxue Xuebao,Ziran Kexueban1673-5005Zhongguo Shipin Xuebao1009-7848Zhongguo Tiedao Kexue1001-4632Zhongguo Tumu Shuili Gongcheng Xuekan1015-5856Chinese Physics B1674-1056Zhongguo Yancao Xuebao 1004-5708The Journal of China University of Posts Telecommum1005-8885Zhongguo Youse Jinshu Xuebao1004-0609Transactions of Nonferrous Metals Society of China 1003-6326Zhongguo Zaochuan1000-48822095-2899Journal of Central South University(Science & Technology of Mining and Metallurgy)Zhongnan Daxue Xuebao,Ziran Kexueban1672-7207Zidonghua Xuebao0254-4156外加工京继续收录川继续收录京继续收录京继续收录京继续收录京继续收录京继续收录京继续收录京继续收录辽继续收录京继续收录辽继续收录苏继续收录京继续收录苏外加工辽新增加*粤外加工皖继续收录鄂新增加*京新增加*京新增加*京新增加*京外加工黑继续收录豫继续收录京继续收录黑继续收录苏继续收录苏继续收录京继续收录川继续收录京继续收录京继续收录京继续收录辽继续收录沪继续收录苏继续收录苏继续收录吉外加工吉外加工京新增加*甘继续收录湘继续收录京新增加*鲁新增加*吉继续收录鄂继续收录川继续收录京继续收录京继续收录京继续收录渝继续收录陕外加工鄂继续收录津外加工津继续收录京继续收录吉继续收录沪外加工川继续收录陕继续收录京继续收录湘外加工京外加工京新外加工*京继续收录黑继续收录黑继续收录黑新增加*川继续收录黑继续收录京继续收录京继续收录川继续收录沪继续收录津继续收录湘继续收录粤继续收录鄂继续收录京外加工京新增加*京继续收录辽继续收录京继续收录吉继续收录京继续收录京外加工京继续收录京继续收录京继续收录京继续收录沪继续收录京继续收录陕新增加*京继续收录辽继续收录辽外加工京外加工粤继续收录辽继续收录京继续收录苏新增加*京继续收录京外加工京新增加*苏继续收录京继续收录甘继续收录苏继续收录沪继续收录津继续收录京继续收录京继续收录京继续收录川新增加*鄂继续收录京继续收录京继续收录晋继续收录京继续收录京继续收录京继续收录沪继续收录沪继续收录京继续收录冀继续收录京新增加*苏继续收录京继续收录京新增加*鄂继续收录沪继续收录苏继续收录苏继续收录京继续收录川继续收录京继续收录津继续收录津新增加*甘新增加*川外加工辽新增加*京继续收录京继续收录京继续收录沪继续收录京继续收录鄂继续收录鄂新增加*京继续收录陕继续收录陕继续收录陕继续收录川新增加*蒙继续收录京新增加*京继续收录京继续收录陕继续收录京继续收录京继续收录京外加工京外加工京新增加*粤新增加*川继续收录晋新增加*豫继续收录鄂继续收录苏继续收录鄂继续收录京继续收录京外加工沪继续收录京继续收录京新增加*陕继续收录浙外加工浙继续收录浙继续收录京继续收录苏继续收录苏继续收录沪新增加*京外加工吉外加工贵继续收录京继续收录陕继续收录津继续收录沪外加工苏继续收录黑外加工京继续收录京外加工台继续收录沪外加工京新增加*京外加工京新外加工*京新外加工*京继续收录苏新增加*京继续收录鲁新增加*京继续收录京外加工台外加工京新增加*京继续收录京继续收录湘继续收录湘新增加*京继续收录湘继续收录湘继续收录京。

标准件常用英语

标准件常用英语
Capacitor array:排容
Diode:二极体
Transistor:三极体
Transformer:变压器(ADP)
Oscillator:频率振荡器(0sc)
Crystal:石英振荡器
XTAL/OSC:振荡产生器(X)
Relay:延时器
Sensor:感应器
Bead core:磁珠
Filter:滤波器
弧形介子Curved washers
波浪介子Wave washers
轴用定位介子/外用自锁介子Self locking external rings
轻形轴用定位介子Circular external rings
菊花齿介子Toothed lock washers
菊花内外齿介子(Int/Ext)Tooth lock washers
Tape for packing:包装带
Bar code:条码
Tray:托盘
Collecto:集线夹
Holder:固定器,L铁
Connecter:连接器
IDE:集成电路设备,智能磁盘设备
SCSI:小型计算机系统接口
Gasket:导电泡棉
AGP:加速图形接口
PCI:周边组件扩展接口
LAN:局域网
USB:通用串形总线架构
pattern sample型式样品
poor quality质量较差
popular quality大众化的质量
prime quality第一流的质量
qualitative质量的
qualitatively在质量上
quality质量,品质
quality as per buyer's sample凭买方样品质量交货

ucl design for manufacture march 学制-概述说明以及解释

ucl design for manufacture march 学制-概述说明以及解释

ucl design for manufacture march 学制-概述说明以及解释1.引言1.1 概述概述:ucl Design for Manufacture March学制是为那些对制造业感兴趣并希望进一步发展他们的设计技能和知识的学生而设计的课程。

本学制旨在将设计和制造过程相结合,培养学生在设计产品时考虑到制造的能力和限制的能力。

通过这个课程,学生将学习如何将他们的设计理念转化为实际可制造的产品,同时也将学习如何优化产品设计以减少制造成本和提高效率。

在这个学制中,学生将学习各种制造技术和工具,包括3D打印,数控加工,注塑成型等。

他们将了解不同制造技术的工作原理、应用范围和制作过程,并学习如何选择和使用适当的制造技术来实现他们的设计目标。

此外,学生还将学习关于制造工艺和材料科学的基本概念,以便能够理解和解决在设计和制造过程中可能遇到的问题。

他们将学习如何选择和使用合适的材料,以及如何优化产品设计以满足各种性能和质量需求。

通过实践项目和案例研究,学生将有机会应用所学知识和技能来解决实际的设计和制造问题。

他们将参与团队合作项目,与同学们一起工作,共同完成一个真实世界的制造项目,并通过展示和评审来展示他们的设计成果。

总的来说,ucl Design for Manufacture March学制是一门以实践为导向的课程,旨在培养学生在设计和制造领域的综合能力。

通过这个课程,学生将能够理解和应用最先进的设计和制造技术,为现实世界的产品设计和制造做出贡献。

1.2 文章结构文章结构部分的内容可以描述关于文章主体的组织和安排。

一般来说,文章结构部分会包含以下内容:首先,介绍文章的主要部分,包括引言、正文和结论。

引言部分通常包含对整篇文章的概述和背景信息,正文部分则会展开讨论具体的要点和观点,结论部分则总结全文并提出展望和建议。

其次,可以详细介绍每个部分的内容和目的。

引言部分的目的是为了引起读者的兴趣并提供背景信息,正文部分则会分为多个要点,每个要点会详细探讨一个相关的主题,结论部分则总结全文并提出进一步的思考和建议。

机械工程英语(Part1U)

机械工程英语(Part1U)

Lathe - A machine tool that rotates a workpiece while cutting tools are applied to shape it.
Sander - A power tool used to sand or polish surfaces, often made of sandpaper or emery paper.
Second Law of Thermodynamics
The law that states that entropy in a closed system always increases.
Combustion Thermodynamics
The study of the conversion of fuel into energy.
Mechanical Engineering English (Part 1)
目录
• Overview of Mechanical Engineering
• Fundamentals of Mechanical Engineering
• English vocabulary for mechanical engineering
Fracture Mechanics The study of the failure of materials due to applied stress.
Thermodynamics
First Law of Thermodynamics
The law that states that energy can neither be created nor destroyed, but can be transformed from one form to another.

金融工程专业介绍

金融工程专业介绍

金融工程专业介绍篇一:金融工程专业介绍金融工程专业介绍在国外,金融工程硕士名称上可以叫做:Financial Engineering, Financial Mathematics, Mathematical Finance, Quantitative Finance或者Computational Finance等。

不过所学习课程和培养的方向基本相同,下面,我们统称为金融工程。

由于金融工程的课程横跨了金融经济,数学,工程几个方面的知识,通常由大学的商学院、数学系和工程学院联合授课。

目的在于解决实际中的问题,金融工程开设的program绝大部分为应用型的硕士学制。

应用型预示着它的课程以授课形式为主,倡导学生实践,时间在一到两年。

金融和金融工程的区别金融工程是高级的金融理论和知识,因此金融工程隶属于金融学。

从培养的目的来看,金融学硕士着重培养具有处理银行、证券、投资等方面业务的基本能力;熟悉国家有关金融的方针政策和法规,了解本学科的理论前沿和发展动态的管理人员。

而金融工程则培养具有数学,计算机和现代金融理论的技术人才。

从学习的对象来看,金融学更多的是以基础变量如利率\汇率\货币供应为学习对象,而金融工程主要依赖金融衍生工具,比如期货期权\远期\互换等等。

就业方向金融工程硕士主要在投资银行工作,另外商业银行、基金公司、保险公司、会计公司、软件公司、公司财务部门也是金融工程硕士谋职的地方。

现在越来越多的政府管理部门(如财政部门)、能源公司(项目评估、项目分析)也参与到了争夺金融工程硕士的行列中。

金融工程师被称为Quants(宽客),从事风险管理,优化投资组合,设计开发金融产品,财务分析,销售与交易等工作。

Quants包括以下几个类型:???? Desk quant 开发直接被交易员使用的价格模型 Model validating quant 确定desk quant开发的模型的正确性 Research quant 尝试发明新的价格公式和模型 Quant developer 程序员,写代码,或者调试其他人的大型系统? Statistical arbitrage quant 在数据中寻找自动交易系统的模式 (就是套利系统)? capital quant 建立银行的信用和资本模型? Quant analyst 数量分析师? Software engineer Quant Strategies 量化策略软件工程师除了上述提到的工作外,金融工程专业的职位还可以是Forensic Accountant(法务会计师)、Supervisory General Engineer、Census Type Work(人口普查类型工作)、General Trans Technician(一般反式技术员)、Supervisory Accountant(会计总监)等。

机械产品模块化设计

机械产品模块化设计
基本型派生发展法:将产品系统分解成通用部分、准通用 部分和专用部分,集中力量设计一种基本型,以其为基础 ,修改准通用部分,设计专用部分,派生出满足多种需要 的产品。
© 2013, School of Mechanical Engineering, Tianjin University
3
模块化产品开发模式
© 2013, School of Mechanical Engineering, Tianjin University
企业技术环境面临的挑战
企业竞争要素
质量 速度
成本 市场:个性化需求
维修性(售后服务)
使用性 艺术性
设计技术
可靠性设计 CAD 可制造性设计 模块化设计 维修性设计
人机工程设计 工业(造型)设计
基本模块、辅助模块、专用模块、附加模块、扩充模块
结构模块
由于产品或系统的结构和功能具有层次性,与其相对应的模块也有 层次性,即高层模块由低一层次的模块组合而成,最底层的模块则 是由零件或元件组成。
按模块的通用化程度还可将模块分成通用模块和非通用模块(专用 模块、特别模块)。
按其在系列化过程中所处的地位和所起的作用,将某些模块分为基 型模块和派生、变型模块。
小批量的生产方式下,实现最佳效益和质量。
任务和对象:
——优化产品族(系统)的构成模式,以最少的要素组合, 构成最多的产品品种。 ——对象:构成系统或产品族的典型的、成熟的、可通用( 重用、复用)的要素。包括:子系统、组件、部件、器件 、典型电路、逻辑组件、软件程序、计算方法、文件格式 (模板)、接口等等。
产品创新的方法和技巧2013schoolmechanicalengineeringtianjinuniversitypart模块化设计方法methodmodulardesign2013schoolmechanicalengineeringtianjinuniversity广义模块化设计camd模块创新设计平台规划与战略可适应设计课程主要内容2013schoolmechanicalengineeringtianjinuniversitypart21模块化设计modulardesign2013schoolmechanicalengineeringtianjinuniversity模块化设计是现代设计方法的一个分支动态设计132013schoolmechanicalengineeringtianjinuniversity模块化设计是现代设计方法的一个分支advanceddesigntheoriessystematicdesignpahlgeneraldesigntheoryyoshikawaaxiomaticdesignsuhmanufacturingboothroydlifecycleengineeringaltingconcurrentengineeringsohleniuscollaborativedesignludigitalvirtualproductdevelopmenttechnologieskrausefunctionbaseddesigntomiyamamodularplatformdesignishiiulrichmasscustomizationtsenghuang2013schoolmechanicalengineeringtianjinuniversity模块化是现代产品设计的迫切需求设计制造的数字化以模块产品平台为核心可缩短周期提高效率2013schoolmechanicalengineeringtianjinuniversity模块化设计与传统设计不同产品系统产品1产品2产品n传统产品结构

institution of mechanical engineer

institution of mechanical engineerThe Institution of Mechanical Engineers (IMechE) is a professional engineering institution that represents mechanical engineers across the United Kingdom and overseas. Founded in 1847, it is one of the oldest and largest engineering institutions in the world, with over 180,000 members.IMechE's mission is to promote and advance the science and practice of mechanical engineering. It does this by providing a range of services and activities to its members, including professional development courses, technical meetings and conferences, and a comprehensive library of technical resources. The institution also works to set and maintain the highest standards of engineering practice and ethics, and represents the interests of its members to government and industry bodies.One of IMechE's most important roles is to provide certification for mechanical engineers in the UK. The institution offers a range of certifications, including professional engineering memberships and fellowships, which are awarded to individuals who demonstrate the required level of expertise and experience in mechanical engineering. These certifications are recognized by government and industry bodies as evidence of an engineer's professional status and competence.In addition to its membership services and certifications, IMechE also carries out research and development work in various areas of mechanical engineering. This work is funded by grants from government agencies, industry bodies, and by members' subscriptions. The institution's research activities cover a wide range of topics, including energy generation and storage, manufacturing processes, materials science, and robotics.The Institution of Mechanical Engineers plays a crucial role in the field of mechanical engineering, representing the interests and needs of its members, promoting the science and practice of the discipline, and setting standards for engineering practice.。

20XXCUG英国大学机械,航空航天与制造工程专业排名TOP50.doc

2019CUG英国大学机械,航空航天与制造工程专业排名TOP5机械,航空航天与制造工程主要包括机械设计制造及其自动化、材料成型及控制工程、工业设计、过程装备与控制工程等。

跟着看看2019CUG英国大学机械,航空航天与制造工程专业排名TOP50。

2019CUG英国大学机械,航空航天与制造工程专业排名TOP50排名大学名称1剑桥大学2帝国理工学院3布里斯托大学4南安普顿大学5巴斯大学6Leeds7格拉斯哥大学8拉夫堡大学9谢菲尔德大学10诺丁汉大学11 Strathclyde 12 Leicester13曼彻斯特大学14萨里大学15伦敦大学玛丽女王学院16Swansea17Queen's,TrueBelfast 18WestTrueofTrueEngland,TrueBristol 19Liverpool20布鲁内尔大学21考文垂大学22伦敦城市大学23阿斯顿大学24赫特福德大学25Plymouth26 SheffieldTrueHallam27Teesside28 CentralTrueLancashire 29萨塞克斯大学30Staffordshire31WestTrueofTrueScotland 32朴茨茅斯大学33Salford34Wolverhampton35南威尔士大学36金斯顿大学372018QS美国大学机械航空及制造工程专业排学校名称:美国美国大学(华盛顿特区)所在位置:美国QS2018机械航空及制造工程专业排名评出了世界范围内的四百所大学,麻省理工学院继续引领榜单,它在工科几乎所有方面均有强势表现,佐治亚理工学院上升二位来到了第十名。

>>>QS2018机械航空及制造工程专业排名2018QS美国大学机械航空及制造工程专业排名世界排名大学中文名专业总得分*第1麻省理工学院98.9第2斯坦福大学96.5第4哈佛大学92.2第5加州大学伯克利分校92.1第6密歇根大学91第10佐治亚理工学院89.5并列第14加州理工学院87.1第21加州大学洛杉矶分校85.8第22普渡大学85.6第31普林斯顿大学81.1并列第36西北大学80.2并列第38康奈尔大学79.7第40德克萨斯A&M大学79.6第43德克萨斯大学奥斯汀分校79.2第51-200名第51-100卡内基梅隆大学美国第51-100哥伦比亚大学美国第51-100杜克大学美国第51-100密歇根州立大学美国第51-100俄亥俄州立大学美国第51-100宾夕法尼亚州立大学美国第51-100加州大学圣地亚哥分校美国第51-100伊利诺伊大学厄巴纳-香槟分校美国第51-100宾夕法尼亚大学美国第51-100威斯康星大学-麦迪逊分校美国第51-100弗吉尼亚理工学院暨州立大学美国第51-100耶鲁大学美国第101-150布朗大学美国第101-150北卡罗来纳州立大学美国第101-150莱斯大学美国第101-150弗罗里达大学美国第101-150马里兰大学学院园分校美国第101-150明尼苏达大学美国第101-150华盛顿大学美国第151-200亚利桑那州立大学美国第151-200波士顿大学美国第151-200伦斯勒理工学院美国第151-200加州大学戴维斯分校美国第151-200加州大学圣塔芭芭拉分校美国第151-200科罗拉多大学博尔德分校美国第151-200南加州大学美国第201-400名第201-250科罗拉多矿业学院美国第201-250纽约大学美国第201-250东北大学美国第201-250加州大学欧文分校美国第201-250伊利诺斯大学芝加哥分校美国第201-250匹兹堡大学美国第251-300杨百翰大学美国第251-300凯斯西储大学美国第251-300俄亥俄州立大学美国第251-300里海大学美国第251-300密歇根理工大学美国第251-300罗格斯大学-新布伦瑞克美国第251-300辛辛那提大学美国第251-300圣母大学美国第251-300田纳西大学诺克斯维尔分校美国第251-300弗吉尼亚大学美国第251-300范德堡大学美国第301-350克莱姆森大学美国第301-350弗罗里达州立大学美国第301-350乔治华盛顿大学美国第301-350亚利桑那大学美国第301-350特拉华大学美国第301-350休斯顿大学美国第301-350爱荷华大学美国第301-350麻省大学阿姆赫斯特分校美国第301-350华盛顿州立大学美国第301-350伍斯特理工学院美国第351-400科罗拉多州立大学美国第351-400德雷赛尔大学美国第351-400伊利诺伊斯理工大学美国第351-400塔夫茨大学美国第351-400加州大学里弗赛德分校美国第351-400圣路易斯华盛顿大学美国备注:QS只针对专业内的世界前50大学给出专业总得分。

浙江大学机械工程与自动化专业培养方案

浙江大学机械工程及自动化专业培养方案培养目标培养具备宽厚的基础知识和扎实的机械工程、电子、计算机、自动化技术及管理知识,知识面宽、适应能力和沟通能力强,在机械工程及自动化领域和相关交叉领域内,从事科学研究、工程设计、机械制造、运行管理及经营等方面工作的复合型高级工程技术人才。

培养要求本专业的学生主要学习机械工程领域的基础理论,掌握力学、机械设计技术、机械制造技术、自动化及控制技术等基本知识,接受高级机械工程技术人才的基本训练,毕业后能胜任机电设备及其自动化技术的设计制造、应用技术研究、科技开发和生产组织管理等工作。

本专业毕业生应获得以下几方面的知识与能力:1.具有较扎实的自然科学基础和工程科学基础知识,较好的人文、艺术和社会科学基础;2.具有本专业必需的制图、设计、计算、检测与控制、自动化、文献检索等基本技能及较强的计算机和外语应用能力;3.具有机电产品和系统的研制、开发、制造、设备控制、生产组织管理及经营的基本能力;4.具有较强的自学能力、创新意识和较高的综合素质,具有一定的科研工作能力。

专业核心课程机械设计控制工程基础机械工程测试技术机械制造工程机械创新设计与实践数控技术与装备自动化计算机辅助设计与制造微机原理及应用机械工程综合训练教学特色课程双语教学课程:计算机辅助设计与制造机电控制技术自动化制造系统数控技术与装备自动化有限元分析研究型课程:机械工程综合训练机械创新设计与实践前置课程微积分、大学物理(甲)、工程图学计划学制4年毕业最低学分160+4+5授予学位工学学士辅修专业说明辅修专业修读标注“*”的课程,总分34学分。

课程设置与学分分布⒈通识课程 47.5+5学分⑴思政类11.5+2学分课程号课程名称课程学分建议修读年级、学期021E0010 思想道德修养与法律基础 2.5 一秋冬Thought the Marals Accomplishment and Law Foundation021E0020 中国近现代史纲要 2.5 一春夏The History of Morden China021E0031 毛泽东思想和中国特色社会主义理论体系概论 4.0 三秋冬、春夏Mao Zedong Thought and the Theoretical System of Socialism with Chinese Characteristics Introduction 021E0040 马克思主义基本原理概论 2.5 二秋冬、春夏An Introduction to the Principle of Marxism02110081 形势与政策 +2.0每学期Situation and Policy⑵军体类 5.5+3学分第1、2学年,体育Ⅰ、Ⅱ、Ⅲ、Ⅳ为必修,每门课程1学分;高年级的体育课程为选修。

大学机械专业英语教材

大学机械专业英语教材[注意:此文档按照教材格式撰写,供参考。

]Unit 1: Introduction to Mechanical EngineeringLesson 1: The Basics of Mechanical Engineering1.1 Definition and Scope of Mechanical EngineeringMechanical engineering is a branch of engineering that applies principles of physics and materials science to design, analyze, manufacture, and maintain mechanical systems. It encompasses various areas such as mechanics, thermodynamics, fluid mechanics, and materials engineering.1.2 Historical Overview of Mechanical EngineeringMechanical engineering has been an essential field since ancient times, with notable contributions from cultures such as the Greeks, Romans, and Chinese. The Industrial Revolution marked a significant milestone for mechanical engineering, leading to the development of steam engines, machine tools, and the mechanization of various industries.Lesson 2: Engineering Materials2.1 Introduction to Engineering MaterialsEngineering materials play a crucial role in mechanical engineering applications. They can be classified into metals, polymers, ceramics, and composites based on their chemical composition and properties. Understanding the characteristics and behavior of materials is essential for designing reliable and efficient mechanical systems.2.2 Mechanical Properties of MaterialsMechanical properties describe how materials respond to external forces or loads. Key properties include strength, stiffness, hardness, toughness, and ductility. These properties dictate the performance and suitability of a material for specific applications in mechanical engineering.Lesson 3: Mechanics3.1 Newton's Laws of MotionNewton's laws of motion form the foundation of classical mechanics. They describe the relationship between the motion of an object and the forces acting upon it. Understanding these laws is crucial for analyzing the behavior of mechanical systems and designing mechanisms that operate efficiently and safely.3.2 Statics and DynamicsStatics involves the study of forces acting on stationary objects or systems in equilibrium, while dynamics focuses on the motion of objects under the influence of forces. Statics and dynamics principles are fundamental in mechanical engineering, enabling engineers to analyze and predict the behavior of mechanical systems in various scenarios.Unit 2: ThermodynamicsLesson 1: Basics of Thermodynamics1.1 Introduction to ThermodynamicsThermodynamics is the branch of physics that deals with the relationships between heat, work, and energy. It plays a vital role inmechanical engineering, as it enables engineers to analyze and optimize energy conversion and utilization processes in mechanical systems.1.2 Laws of ThermodynamicsThe laws of thermodynamics establish fundamental principles governing energy transfer and transformation. The first law states that energy cannot be created or destroyed, only transferred or converted. The second law introduces the concept of entropy and establishes limitations on the efficiency of energy conversion processes. The third law relates to the behavior of matter as it approaches absolute zero temperature.Lesson 2: Thermodynamic Cycles2.1 Carnot CycleThe Carnot cycle is an idealized thermodynamic cycle that operates between two temperature reservoirs, a high-temperature source, and a low-temperature sink. It serves as a benchmark to determine the maximum efficiency that any heat engine operating between the same temperature limits can achieve.2.2 Rankine CycleThe Rankine cycle is a thermodynamic cycle commonly used in power plants to convert heat into mechanical work. It involves the expansion of a working fluid in a turbine, followed by condensation in a condenser and compression in a pump. The Rankine cycle is widely used in steam power plants.Unit 3: Fluid MechanicsLesson 1: Fundamentals of Fluid Mechanics1.1 Introduction to Fluid MechanicsFluid mechanics is the study of fluids and how they behave under various conditions. It encompasses both liquids and gases and is essential in understanding the behavior of fluids in mechanical systems such as pumps, turbines, and pipelines.1.2 Properties of FluidsFluids exhibit unique properties such as viscosity, density, pressure, and temperature. These properties govern fluid flow behavior and are crucial in the design and analysis of fluid systems.Lesson 2: Fluid Statics and Dynamics2.1 Fluid StaticsFluid statics deals with the study of fluid behavior at rest or in equilibrium. It involves analyzing pressure distribution, buoyancy forces, and stability conditions of floating or submerged objects.2.2 Fluid DynamicsFluid dynamics focuses on the motion of fluids and involves the study of fluid flow patterns, velocity, pressure distribution, and forces exerted by fluids on solid surfaces. Understanding fluid dynamics is vital in designing efficient hydraulic systems, aerodynamics, and fluid power systems.Note: The above content is a brief example of the format and topics that could be covered in a university-level mechanical engineering Englishtextbook. The actual content and structure of such a textbook may vary depending on the curriculum and educational standards of the institution.。

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Department of Mechanical Engineering UCL – M.Sc. Mechanical Engineering These pages are intended to provide an indication of the course content, the actual content may differ. 1

M.Sc. MECHANICAL ENGINEERING The MSc degree programme in Mechanical Engineering is designed to offer an advanced level of study in specific aspects of mechanical engineering that are in demand from industry. The programme starts in late September and the first two academic terms consist of taught modules culminating with examinations in March. The months from April to September are mainly given over to working on the individual project. The taught part of the programme comprises of six core modules and one optional module.

Core modules • MECHGM02 Power Transmission & Auxiliary Machinery Systems, • MECHGM03 Materials & Fatigue/Fracture Analysis, • MECHGM04 Vibrations Acoustics & Control, • MECHGM05 Advanced Computer Applications in Engineering, • MSINGO01 Project Management (examined in May), • MECHGM91 Group Project.

Optional modules • MECHGM01 Applied Thermodynamics & Turbomachinery, • MECHGM06 Heat Transfer & Heat Systems, • MECHG020 Electrical power systems Alternative Power Systems.

Each module is assessed by a combination of examination and coursework or, in the cases of the Group Project and Advanced Computer Applications in Engineering, by coursework only. Some modules require oral presentation of project/assignment work. The second part of the programme (April onwards) is spent on pursuing an individual project under the supervision of a member of academic staff. The student normally selects the project from a list of projects proposed by the Department's staff and in many cases the work has some input from industry - in some cases, it may be performed while working in industry. The project is run along the lines of a mini-PhD in which the student is encouraged to develop independent thought and new ideas. The content will tend to be more practically-based than that of a typical PhD. Students are required to give an oral presentation of their project results and to submit a bound dissertation which is read by both internal and external examiners. The programme has been accredited by the Institution of Mechanical Engineers as a suitable further learning module for achieving chartered status.

Individual modules may be taken for CPD. Last updated July 09 Department of Mechanical Engineering UCL – M.Sc. Mechanical Engineering

These pages are intended to provide an indication of the course content, the actual content may differ. 2

CORE MODULES MECHGM02: Power Transmission & Auxiliary Machinery Systems Module Co-ordinator: Dr S Jayasinghe Gearboxes: Tooth bending stress and contact stress calculations, size estimation, epicyclic designs. Fluid couplings, torque converters and Franco-Tosi couplings. Self-synchronising clutches.

Shafting: Design for static and fatigue loading. Alignment of lineshafting. Selection of rigid and flexible couplings. Use of flexible couplings to limit torsional vibration.

Clutches: Friction materials and mating surfaces. Plate/disk clutches. Centrifugal clutches. Cone clutches. Use of shaft brakes.

Balancing: Introduction to vibrations in rotating machinery, elementary diagnostics, and balancing. Rotary compressors: Classification, Roots-type, vane-type, screw-type compressors. Centrifugal compressors: Dimensional analysis, Euler equation, velocity diagrams, characteristics. Ducts and fans: Study of flow through non-circular ducts. Friction loss, losses due to fittings. Balancing ducting systems. Fan characteristics.

Electrical machines: The synchronous machine as a generator; construction, characteristics and control. The DC motor; construction, characteristics and control. The induction motor; construction, characteristics and control. Single-phase induction motors. Variable-speed drive systems.

Compressed air, hydraulic and fire fighting systems: Theory of air compression referring to two and three-stage compressors. Air distribution systems and safety features. Theory of fire and firefighting; fire detection systems; fire fighting techniques. Hydraulic system theory; oil characteristics; pumps accumulators; distribution systems and safety features.

Reliability, Availability and Maintenance (RAM): Definitions, calculation and interpretation of failure, failure rate, MTTF, MTTR and availability. Systems reliability, redundancy and replacement strategies. Design for safety and reliability. Project risk management. Equipment support framework for RAM.

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