工业机器人技术及应用教案大纲.docx
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1、工业机器人技术及应用课程教学大纲Technology and application of industrial robot course syllabus课程编号Course numberxxxx适用年级Applicable grade大学三年级 (四年级)开课学期Opening Semester6(7)学分Credit3理论学时Theoretical hours32实践学时Practical hours16一,课程说明(Course Description)工业机器人技术及应用是智能制造工程专业方向课程的必修课程,通常在第六学期或第 七学期开设。该课程主要包括工业机器人基础理论、任务编程、
2、智能感知和系统集成等内容。通 过本课程的学习,使学生掌握工业机器人机构/控制模块、运动学原理和典型工艺集成系统,能够 解决机器人在物料搬运、产品焊接及成品装配等典型智能制造工序中的实际问题。激发学生的爱 国热情,培养学生积极投身国家智能制造专项建设、培养学生为建设制造强国而奋斗的精神。Technology and application of industrial robot is a compulsory course of intelligent manufacturing engineering, which is usually opened in the sixth or seven
3、th semester. This course mainly includes basic theory of industrial robots, task programming, intelligent perception and system integration. Through the study of this course, students can master the mechanism/control module, kinematics principle and typical process integration system of industrial r
4、obot, and solve the practical problems of robot in typical intelligent manufacturing processes such as material handling, product welding and finished product assembly. To stimulate students* patriotic enthusiasm, cultivate students to actively participate in the national intelligent manufacturing s
5、pecial construction, cultivate students1 spirit of striving for building a manufacturing power.二.本课程与其他课程的联系与分工(The relationship and division of labor between this course and other courses)本课程的先修课程为“智能制造工艺学” “高等数学”“机械原理”“单片机原理与应 用”“电工电子技术”等课程。The prerequisite courses of this course are intelligent m
6、anufacturing technology, higher mathematics, mechanical principle, hydraulic and pneumatic transmission and electromechanical drive control.三、课程目标及对毕业要求指标点的支撑关系(Curriculum objectives and the supporting relationship to graduation requirements)注:工作方式可以是个人或小组。Note: the working mode can be individual or
7、 group.七.达成度评价方法(Achievement evaluation method ).课程目标达成评价(Evaluation on the achievement of curriculum objectives)考核方式对课程目标的支撑关系及权重分配(The supporting relationship and weight distribution of assessment methods to curriculum objectives):课程目标Curriculum objectives考核方式及其对应课程目标的权重分配 Assessment methods and w
8、eight distribution of corresponding course objectives课程作业Course assignments课程实验Course experiment期末考试Final exam10.20.30.520.20.50.330.30.70注:若某项课程目标由单一考核方式支撑,则该考核方式权重为1;若某项课程目标由多个考核方式支撑, 请根据各考核方式对该课程目标的贡献程度确定权重,各考核方式权重和为loNote: if a course objective is supported by a single evaluation method, the wei
9、ght of the evaluation method is 1; if acourse objective is supported by multiple evaluation methods, please determine the weight according to the contributionof each evaluation method to the course objective, and the sum of the weight of each evaluation method is 1.课程目标达成度计算公式(Calculation formula of
10、 curriculum goal achievement):某项课程目标达成度=v灼帝学生在该项考核方式的平均得分考合式支撑某项课程目标的考核方式满分1 .毕业要求指标点达成评价(Achievement evaluation of graduation requirement index point)某项毕业要求指标点由多项课程目标支撑时,取课程目标达成度的最低值作为该项毕业要求指标点的达成度。When a graduation requirement index point is supported by multiple course objectives, the lowest valu
11、e of the degree of achievement of the course objectives is taken as the degree of achievement of the graduation requirement index point.八.建议学时分配(Recommended class hour allocation )课程教学内容Course content课程目标Curriculum objectives教学内容Content of courses建议学时 Recommended hours123理论 教学 Theory teaching1绪论Intr
12、oduction272工业机器人的机械结构 和运动控制Mechanical structure and motion control of industrial robot63工业机器人的手动操作Manual operation of industrial robot2q4工业机器人的任务编程 Task programming of industrial robot6q5搬运机器人和码垛机器 人认知与应用Cognition and integrated application of handling robot and palletizing robot6V6焊接机器人认知与应用Cogniti
13、on and integrated application of welding robot477涂装机器人和装配机器 人认知与应用Cognition and integrated application of painting robot and assembly robot67实践 教学 Practical teaching实验1关节型工业机器人 的机械结构认知Mechanical structure cognition of joint industrial robot27实验2工业机器人的点位 和连续路径控制Point position and continuous path cont
14、rol of industrial robot2实验3工业机器人的直线 路径运动规划2q注:用“加方式描述教学内容(知识模块或知识点)对课程目标的支撑。Linear path motion planning of industrial robot实验4工业机器人的圆弧 路径运动规划Arc path motion planning of industrial robot4实验5机器人搬运系统认 知与应用编程Cognition and application programming of robot handling system2实验6机器人弧焊系统认 知与应用编程Cognition and a
15、pplication programming of robot arc welding system2V实验7机器人装配系统认 知与应用编程Cognition and application programming of robot assembly system2合计48Note: using to describe the support of teaching content (knowledge module or knowledge point) to curriculum objectives.九.建议教材与参考书(Recommended teaching materials an
16、d reference books )1 .建议教材(Recommended teaching materials)兰虎、鄂世举主编,工业机器人技术及应用(第2版),机械工业出版社,2020.LAN Hu and E Shiju, Technology and application of industrial robots (2nd Edition), China Machine Press, 2020.2 .参考书目(Reference books)1兰虎、王冬云主编.工业机器人基础,机械工业出版社,2020.LAN Hu and Wang Dongyun, Fundamentals of
17、 industrial robots, China Machine Press, 2020.2宋星亮、王冬云主编.工业机器人基础及应用编程技术,机械工业出版社,2019.Song Xingliang and Wang Dongyun, Fundamentals of industrial robots and application programming technology, China Machine Press, 2019.3戴凤智、乔栋主编.工业机器人技术基础及其应用,机械工业出版社,2020.Dai Fengzhi and Qiao Dong, fundamentals and a
18、pplications of industrial robot technology, China Machine Press, 2020课程负责人(Course Leader ): 专业负责人(Major Leader ): 教学副院长(Vice Dean of Teaching ): 制订时间(Formulated on ):1.课程目标(Curriculum objectives)本课程以了解工业机器人的分类、典型应用及产业现状为切入点,重点介绍工业机器人系统 应用中运动轨迹、工艺条件和动作次序等核心编程知识,尤其以提质增效为宗旨的机器人应用系 统参数调控原理和方法,使学生能够解决机器人
19、在物料搬运、产品焊接及成品装配等典型智能制 造工序中的实际问题,以期培养学生综合运用所学专业知识分析和解决复杂工程问题的能力。Understanding the classification, typical applications and industrial status of industrial robots as the starting point, this course focuses on the core programming knowledge of motion trajectory, process conditions and action sequence i
20、n the application of industrial robot system, especially the principle and method of parameter regulation of robot application system for the purpose of improving quality and efficiency. Students can solve the practical problems of robot in typical intelligent manufacturing processes such as materia
21、l handling, product welding and finished product assembly. In order to cultivate students1 ability to analyze and solve complex engineering problems by comprehensively applying the professional knowledge they have learned.(1)知识目标(Knowledge goals)1)能够列举工业机器人系统的组成并阐明其工作原理;List the components of an ind
22、ustrial robot system and explain how they work.2)能够辨识工业机器人系统运动轴类型及常见的点动坐标系;Identify the motion axis types and common jog coordinate systems of industrial robot systems.3)能够归纳工业机器人任务示教的主要内容和基本流程;Summarize the main content and basic process of industrial robot task teaching.4)能够根据任务要求合理开展机器人任务规划和运动规划;
23、Reasonably carry out robot task planning and motion planning according to task requirements.5)能够使用机器人编程指令完成直线、圆弧及摆动轨迹的任务编程;Use robot programming instructions to complete the task programming of straight line, arc and swing trajectory.6)能够区别机器人I/O信号并实现周边(工艺)辅助设备的协同(调)动作。Distinguish the I/O signals of
24、 the robot and realize the coordinated (adjustment) action of the peripheral (process) auxiliary equipment.7)能够应用专业知识,设计机器人搬运、码垛、焊接、涂装、装配典型工艺系统集成方案, 分析解决工程实际问题。Can apply professional knowledge, design robot handling, stacking welding, painting, assembly and other typical process system integration s
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