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机电一体化的毕业设计可以选择哪些题目?

机电一体化的毕业设计可以选择哪些题目?

166 评论

精灵酱酱儿

随着科学技术向生产力逐步转化,机电一体化产品的设计已经涉及到机械、电气和控制等众多领域。单领域、分散建模的设计方法已经很难满足产品综合设计的要求。以下是学术堂整理的机电一体化毕业论文题目,希望对你有所帮助。1、基于虚拟原型的机电一体化建模与仿真技术研究2、基于实验教学的机电一体化系统探析3、MEMS加速度计与读出电路的研究4、基于LM628的运动控制器的研制5、机电一体化的物流培训模型-机械手搬运系统模块的设计6、国家骨干高职院校兼职教师现状与对策研究7、立体仓库实训系统信息管理的研究设计8、机电一体化精确定位装置及其控制系统的研究9、空间机械臂机电一体化关节的设计与控制10、基于SolidWorks&LabVIEW的虚拟原型机电一体化设计技术研究11、机电一体化新型旋转式海流计设计与开发12、橡塑工业循环温控技术机电一体化的设计与研究13、人民币防伪鉴真机电一体化设计实验研究14、高职机电一体化专业项目驱动课程体系研究15、基于UGNX的机械臂式三维扫描仪概念设计的研究

260 评论

Vickey小姐

随着科学技术向生产力逐步转化,机电一体化产品的设计已经涉及到机械、电气和控制等众多领域。单领域、分散建模的设计方法已经很难满足产品综合设计的要求。通过对机电一体化技术与虚拟原型技术的深入研究并且将虚拟原型技术引入到机电一体化产品设计,得到基于虚拟原型的机电一体化设计技术,以满足机电产品多领域交互设计的需求。本文基于SolidWorks和LabVIEW软件研究了虚拟原型机电一体化设计技术,以LabVIEW集成的相关模块为纽带将SolidWorks和LabVIEW紧密联系,构建基于SolidWorks-LabVIEW的机电一体化产品的综合设计环境。其次,以直线一级倒立摆为例研究了机电一体化虚拟原型的数学建模、机械建模、电气建模、控制建模以及基于LabVIEW的控制算法的设计与仿真。最后,研究了基于虚拟原型机电一体化的仿真设计方法,包括机械、电气和控制等领域的仿真设计以及在基础上的综合仿真设计。将原来以LabVIEW集成的NI SoftMotion for SolidWorks模块为桥梁的SolidWorks-LabVIEW联合设计方法进一步改进,使虚拟原型能够完成复杂系统的控制设计并且显著提高实时性和可视性。实例仿真实验表明,基于虚拟原型机电一体化产品设计方法能够有效解决传统设计方法遇到复杂控制算法、实时性以及可视性等瓶颈问题,缩短研制周期,节约开发成本,为机电一体化产品设计提供了全新的技术。 [1] 刘凯. 一级倒立摆系统设计与LQR最优控制仿真[J]. 工业仪表与自动化装置. 2012(03)[2] 韩亚军. 基于线性二次最优LQR的直线倒立摆控制系统研究分析[J]. 电气传动自动化. 2012(03)[3] 陈海霞,刘霞. 虚拟样机技术在数控机床设计中的应用[J]. 机械制造与自动化. 2011(03)[4] 叶立永,卢方. 机电一体化技术的应用[J]. 中国新技术新产品. 2010(16)[5] 易杰,俞斌. 倒立摆系统的状态空间极点配置控制设计[J]. 电子测试. 2008(08)[6] 张浩,冯长建. 基于Solidworks软件的虚拟样机技术及其应用[J]. 煤矿机械. 2004(09)[7] 姜士湖,闫相桢. 虚拟样机技术及其在国内的应用前景[J]. 机械. 2003(02)[8] 李瑞涛,方湄,张文明. 虚拟样机技术的概念及应用[J]. 机电一体化. 2000(05)

168 评论

夭爻溔訞濘綸

1) 机械技术 机械技术是机电一体化的基础,机械技术的着眼点在于如何与机电一体化技术相适应,利用其它高、新技术来更新概念,实现结构上、材料上、性能上的变更,满足减小重量、缩小体积、提高精度、提高刚度及改善性能的要求。在机电一体化系统制造过程中,经典的机械理论与工艺应借助于计算机辅助技术,同时采用人工智能与专家系统等,形成新一代的机械制造技术。 (2) 计算机与信息技术 其中信息交换、存取、运算、判断与决策、人工智能技术、专家系统技术、神经网络技术均属于计算机信息处理技术。 (3) 系统技术 系统技术即以整体的概念组织应用各种相关技术,从全局角度和系统目标出发,将总体分解成相互关联的若干功能单元,接口技术是系统技术中一个重要方面,它是实现系统各部分有机连接的保证。 (4) 自动控制技术 其范围很广,在控制理论指导下,进行系统设计,设计后的系统仿真,现场调试,控制技术包括如高精度定位控制、速度控制、自适应控制、自诊断校正、补偿、再现、检索等。 (5) 传感检测技术 传感检测技术是系统的感受器官,是实现自动控制、自动调节的关键环节。其功能越强,系统的自动化程序就越高。现代工程要求传感器能快速、精确地获取信息并能经受严酷环境的考验,它是机电一体化系统达到高水平的保证。 (6) 伺服传动技术 包括电动、气动、液压等各种类型的传动装置,伺服系统是实现电信号到机械动作的转换装置与部件、对系统的动态性能、控制质量和功能有决定性的影响。 机电一体化系统组成 1.机械本体 机械本体包括机架、机械连接、机械传动等,它是机电一体化的基础,起着支撑系统中其他功能单元、传递运动和动力的作用。与纯粹的机械产品相比,机电一体化系统的技术性能得到提高、功能得到增强,这就要求机械本体在机械结构、材料、加工工艺性以及几何尺寸等方面能够与之相适应,具有高效、多功能、可靠和节能、小型、轻量、美观的特点。 2.检测传感部分 检测传感部分包括各种传感器及其信号检测电路,其作用就是检测机电一体化系统工作过程中本身和外界环境有关参量的变化,并将信息传递给电子控制单元,电子控制单元根据检查到的信息向执行器发出相应的控制。 3.电子控制单元 电子控制单元又称ECU(Electrical Control Unit ),是机电一体化系统的核心,负责将来自各传感器的检测信号和外部输入命令进行集中、存储、计算、分析,根据信息处理结果,按照一定的程度和节奏发出相应的指令,控制整个系统有目的地进行。 4.执行器 执行器的作用是根据电子控制单元的指令驱动机械部件的运动。执行器是运动部件,通常采用电力驱动、气压驱动和液压驱动等几种方式。 5.动力源 动力源是机电一体化产品能量供应部分,其作用是按照系统控制要求向机械系统提供能量和动力使系统正常运行。提供能量的方式包括电能、气能和液压能,以电能为主。 机电一体化主要课程 机械方面:机械制图,机械设计,工程材料,工程力学,数控编程技术,autoCAD,Mastercam软件,C# 电工方面:可编程控制器PLC,单片机,自动控制原理,数字电路,电工电子 实习课程:电力拖动,PLC,单片机,钳工,普通车、铣、刨床,数控车、铣,加工中心 本专业的培养目标 本专业培养德、智、体、美全面发展,具有创业、创新精神和良好职业道德的高等专门人才,掌握机械技术和电气技术的基础理论和专业知识;具备相应实践技能以及较强的实际工作能力,熟练进行机电一体化产品和设备的应用、维护、安装、调试、销售及管理的第一线高等技术应用型人才。 本专业职业面向 机电一体化专业是一个宽口径专业,适应范围很广,学生在校期间除学习各种机械、电工电子、计算机技术、控制技术、检测传感等理论知识外,还将参加各种技能培训和国家职业资格证书考试,充分体现重视技能培养的特点。学生毕业后主要面向珠江三角洲各企业、公司,从事加工制造业,家电生产和售后服务,数控加工机床设备使用维护,物业自动化管理系统,机电产品设计、生产、改造、技术支持,以及机电设备的安装、调试、维护、销售、经营管理等等。 1、主要就业岗位:机电一体化设备的安装、调试、维修、销售及管理;普通机床的数控化改装等。 2、次要就业岗位:机电一体化产品的设计、生产、改造、技术服务等。 1) Mechanical Technology Mechanical Technology is the basis of mechatronics, mechanical technology focus is on how to adapt to mechanical and electrical integration technologies, the use of other high and new technology to update the concept, implementation, structure, materials, performance changes, meet the reduced weight, smaller size, higher precision, improved rigidity and improved performance requirements. Mechatronic systems in the manufacturing process, the classical theory and technology should be by means of mechanical computer-aided technology, while use of artificial intelligence and expert systems, the formation of a new generation of mechanical manufacturing technology. (2) Computer and Information Technology Including information exchange, access, operation, judging and decision making, artificial intelligence, expert system, neural networks belong to the computer information processing technologies. (3) System Technology System technology that is the whole concept of application of relevant technology organizations, from a global perspective and the system objective, will generally be broken down into a number of interrelated functional unit, the interface technology is an important aspect of system technology, it is to achieve the organic parts of a system guarantee the connection. (4) Automatic control technology Its scope is broad, under the guidance of the control theory, system design, system simulation after design, site commissioning, control technology, including such high-precision positioning control, speed control, adaptive control, self-diagnostic calibration, compensation, representation and retrieval . (5) sensing technique Sensing technique is a system of receptors is to achieve automatic control, automatic adjustment of the key links. Its function is stronger, the higher the system's automated process. Engineering requirements of modern sensors can quickly and accurately access information and able to withstand the harsh environment of the test, it is the mechanical and electrical integration systems to achieve a high level of assurance. (6) servo drive technology, including electric, pneumatic, hydraulic and other types of transmission, servo system is the conversion of electrical signals into mechanical motion devices and components, the dynamic performance of the system, control the quality and functionality have a decisive impact. Composed of mechatronic systems 1. Mechanical body mechanical body, including racks, mechanical connection, such as mechanical drive, which is the basis of mechanical and electrical integration, play a support system of other functional units, the role of motion and power transmission. Compared with the purely mechanical products, electrical and mechanical integration of the technical performance of the system is improved, functionality is enhanced, which requires mechanical body in the mechanical structure, materials, processing technology and other aspects of geometry can be corresponding with high efficiency, versatile, reliable and energy-saving, small, lightweight and beautiful features. 2. Detection sensor part of the detection sensor part includes a variety of sensors and signal detection circuit, and its role is to detect the process of mechatronic systems work itself and the external environment-related changes in parameters, and information to the electronic control unit, electronic According to the control unit checks the information given to the corresponding control actuators. 3. Electronic control unit Electronic Control Unit, also known as ECU (Electrical Control Unit), is the core of mechatronic systems, responsible for the detection of each sensor from the external input command signal and concentration, memory, calculation, analysis, information processing based on the results of according to a certain extent and pace of issuing the appropriate command, control the entire system destination. 4. The role of actuators actuators are based on order-driven electronic control unit movement of mechanical parts. Actuators are moving parts, usually electric, pneumatic and hydraulic drives and other drives in several ways. 5. Power source power source is the energy supply part of the mechatronic product, its role is in accordance with the requirements of the system control to provide energy to the mechanical system and power to make the system work properly. Way to provide energy, including electricity, gas, energy and hydraulic energy to electrical energy based. Main Courses Mechatronics Mechanical aspects: mechanical drawing, mechanical design, engineering materials, engineering mechanics, numerical control programming, autoCAD, Mastercam software, C # Electrical: the programmable logic controller PLC, MCU, automatic control theory, digital circuits, electrical and electronic Internship Program: electric drive, PLC, MCU, fitter, general turning, milling, planer, NC, milling, processing center The training goal The professional training moral, intellectual, physical, and aesthetic development, entrepreneurial, innovative spirit and good professional ethics of higher expertise, mechanical technology and electrical technology to master the basic theory and professional knowledge; have the appropriate practical skills and a strong practical work capacity, skilled mechanical and electrical integration of the application of products and equipment, maintenance, installation, commissioning, sales and management of the first line of high technology talents. The professional career-oriented Mechatronics is a wide caliber professionals to adapt to a wide range of students in school during the addition to learning a variety of mechanical, electrical and electronic, computer technology, control technology, sensing, detection theory, will also participate in various skills training and National Vocational Qualification Certificate Examination, fully embodies the characteristics of attention to skills development. Primarily for students in the Pearl River Delta after graduating from business, the company engaged in processing and manufacturing, household appliance manufacturing and service, CNC machine tool equipment maintenance, property management systems automation, electrical and mechanical product design, production, transformation, technical support, and mechanical and electrical equipment installation, commissioning, maintenance, sales, management and so on. 1, the main jobs: mechanical and electrical integration, equipment installation, commissioning, maintenance, sales and management; common modification of CNC machine tools and so on. 2, secondary jobs: mechatronics product design, production, transformation and technology services.

182 评论

天津小吃好

一、现代机电控制技术应用方面(包括系统设计或设计、维修技术难点分析的论文)

1.土高精度大屏幕LED日历时钟

2.键多功能数显键盘制作

3.交通灯控制系统

4.电梯控制系统

5.楼宇智能监控系统

6.数字温度计

7.多温度检测系统

8.LCD数字显示体温计

二、数控技术应用方面(包括典型零件数控工艺编制或数控加工难点、数控设备维修技术分析的论文)

1.土某一副典型冲压模具数控加工工艺

1.2某一副典型塑料模具数控加工工艺

3.3某一个汽车零件数控加工工艺

4.数控车床某一种故障分析与维修维护技术

5.数控铣床某一种故障分析与维修维护技术

6.加工中心某一种故障分析与维修维护技术

7.多种数控加工技术的综合应用经验

8.数控加-ET_艺与传统工艺的结合

9.结合产学研岗位的数控技术应用的其他设计(论文)

三、机电装置方面(包括系统设计或设计、维修技术难点分析的论文)

1.土某专用机械传动系统设计

2.某农产品加工机器设计

3.某轻工产品加工机器设计

4.某专用机器技术改造

5.典型机床维修技术

机电一体化毕业论文的写作过程:

(一)选题

毕业论文(设计)题目应符合本专业的培养目标和教学要求,具有综合性和创新性。本科生要根据自己的实际情况和专业特长,选择适当的论文题目,但所写论文要与本专业所学课程有关。

(二)查阅资料、列出论文提纲

题目选定后,要在指导教师指导下开展调研和进行实验,搜集、查阅有关资料,进行加工、提炼,然后列出详细的写作提纲。

(三)完成初稿

根据所列提纲,按指导教师的意见认真完成初稿。

(四)定稿

初稿须经指导教师审阅,并按其意见和要求进行修改,然后定稿。

221 评论

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