Introduction to Mechanical Engineering Design and Manufacturing with Fusion 360

所在平台: Coursera

课程主页: https://www.coursera.org/learn/mechanical-engineering-design-manufacturing

课程评论:没有评论

第一个写评论        关注课程

课程简介

课程名称:机械工程设计与制造导论(结合Fusion 360) 课程概述:设计制造是指在特定制造方法的设计要求下,设计零件、组件或产品的过程。本课程深入探讨了设计制造的工作流程,并展示了如何验证模型及创建G代码,G代码是指令数控机床如何移动的编程语言。我们将实践零件和装配设计的基础知识,使用Autodesk Fusion 360进行动画、渲染和仿真等工具的学习。课程中涵盖的每个领域的基本知识将在后续课程中得到全面发展。 完成本课程后,您将能够: - 解释从数字模型到实物零件的设计制造过程,包括数控编程。 - 总结Fusion 360中可用的工具集。 - 展示应用设计和制造工作流程的Fusion 360知识与技能,将数字零件转化为物理原型。 课程大纲: 1. **制造与创新的未来**:第一周,我们将回顾Fusion 360如何与行业的当前趋势相关联。通过识别机械工程师所需的职业技能,我们能更好地理解所需的工具集以及Fusion 360如何提供帮助。 2. **CAD草图和建模入门**:第二周,我们将学习Fusion 360的设计方面,以创建完全定义的草图和模型。这些领域构成了Fusion 360的核心设计功能。完成此模块后,您将能够使用特性创建实体以及创建特征模式。 3. **装配、动画、渲染和详细图纸的入门**:第三周,您将学习如何创建和管理装配、动画、渲染和详细图纸。这些领域是Fusion 360核心设计功能的扩展。 4. **计算机辅助制造(CAM)入门**:第四周,我们将探讨如何使用Fusion 360创建数控加工的仿真和G代码。这些集成工具帮助完成设计制造过程,利用Fusion 360中的设计、工程和制造工具。 5. **计算机辅助工程(CAE)入门**:第五周,我们将定义、解决并审查使用Fusion 360仿真工作区的静态应力仿真。计算机辅助工程(CAE)消除了先前与设计相关的一些猜测。高级工具如屈曲分析或模态频率分析可以帮助在原型制作或生产之前确定设计更新的参数。我们将通过静态应力仿真设置、求解和审查过程。 欲了解Autodesk Fusion 360认证准备课程,请查看其他学习资源,以帮助您提升技能:[Autodesk学习](https://www.autodesk.com/learning)

课程大纲

Name:The future of manufacturing and innovation

Description:In Week 1, we’ll review how Fusion 360 relates to current trends in the industry. By identifying career skills required for mechanical engineers, we can better understand the toolset needed and how Fusion 360 can help.

Name:Introduction to CAD sketching and modeling

Description:In Week 2, we'll learn the design aspects of Fusion 360 to create fully defined sketches and models. These areas comprise the core design functionality of Fusion 360. After completing this module, you'll be able to: Use features to create solid bodies. Create feature patterns.

Name:Introduction to assemblies, animations, renders, and detailed drawings

Description:In Week 3, you'll learn how to create and manage assemblies, animations, renders, and detailed drawings. These areas comprise and extension to the core design functionality of Fusion 360.

Name:Introduction to CAM

Description:In Week 4, we’ll explore how to use Fusion 360 to create simulations and G-code for CNC machining. These integrated tools help complete the design for manufacturing process using the design, engineering and manufacturing tools in Fusion 360. 4

Name:Introduction to CAE

Description:In Week 5, we'll define, solve, and review a static stress simulation using the Fusion 360 Simulation Workspace. Computer-aided engineering (CAE) removes some of the guess work previously associated with design. Advanced tools like buckling or modal frequency analysis can help shape the parameters for design updates before prototyping or production. Walk through Static Stress Simulation setup, solve, and review process.

课程评论(0条)

课程详情

Design for manufacturing is the process of designing parts, components, or products with the understanding surrounding design requirements for a specific manufacturing method. This course explores the design for manufacture workflow and shows how to validate models and create the G code, the programming language needed to instruct the CNC machine on how to move. We practice the basics of part and assembly design, and tools such as animation, rendering, and simulations using Autodesk Fusion 360. We learn the basics in each of these areas which are to be fully developed in later courses that apply these principles and Fusion 360 skills. After taking this course, you'll be able to: - Explain the design to manufacturing process used to take a digital model to a physical part through CNC programming. - Summarize the toolset available in Fusion 360. - Demonstrate knowledge and skills in Fusion 360 applying design and manufacturing workflows to take digital parts to physical prototypes. Looking for Autodesk Fusion 360 certification prep courses? Check out additional learning resources to help you uplevel your skills: https://www.autodesk.com/learning

课程标签

0人关注该课程

主题相关的课程