|
所在平台: Udemy |
课程主页: https://www.udemy.com/course/parametric-design-with-catia-theory-and-practice/
课程评论:没有评论
课程名称:CATIA参数化设计:理论与实践 课程概述: 本课程旨在进一步提升您在CATIA上的知识与经验,专为希望改善建模技能并加速职业发展的工程师设计。课程将聚焦于航空航天、国防和汽车行业,帮助学员通过参数化设计培训,在建模能力上有所突破。您将学习到参数化设计的微妙之处,掌握更快、更可靠和更具创意的设计方法,运用行业最新技术。 无论您是行业专业人士还是刚毕业的工程师,本课程都将极大地提升您的设计能力与职业竞争力。您将从理论上了解参数化设计的重要性与优势,并通过实践环节一步步掌握建模技巧。如果您所在的公司仍在使用传统建模技术,学习这项技能将不仅提高公司的技术能力,还能实现开发流程中显著的成本节约。参数化设计能够加快修订及新产品开发的速度,减少生产中与设计相关的问题。 此外,参数化设计不仅是一种建模技术,它是一个强大的工具,能有效转变设计流程,使您能够更快速灵活地完成设计,降低错误率,并减少生产成本。通过掌握这项技术,您将在职业生涯和公司发展中取得重大进展。 主要优势包括: - 完全一致的自上而下设计 - 在创建主结构时可同时设计子组件 - 关键尺寸快速修改,相关部件自动更新 - 迅速将必要的变更转移至设计中以供其他应用使用 - 快速将分析反馈融入设计中 - 轻松创建独立分析数据 - 对模型实现全面控制(几何和工程约束) - 设计变更后自动更新 - 容易理解模型在变更后的反应 - 部件族的轻松定义和自动创建 - 与生产过程的完美集成,显著减少生产时间 - 创建适合软件集成的用户界面 - 能够利用相同信息数据为不同制造方法准备设计 无论您是毕业生还是经验丰富的工程师,学习参数化设计都将为您和您的公司带来显著的优势。
You will take our CATIA knowledge and experience one level further! A training where you will make a difference with your modelling ability is waiting for you.Make a Difference in Aviation, Defence and Automotive Sector with CATIA Parametric Design Training!In this training specially designed for engineers who want to improve their modelling skills and accelerate their career, you will learn all the subtleties of parametric design. Learn to make faster, more reliable and more creative designs using the most up-to-date methods of the industry. With parametric design modelling, one of the most valid modelling methods in Aerospace, Defence Industry and Automotive;If you are an industry professional; you will improve your experience, you will be able to manage all design processes from new design to existing revisions more quickly, safely and smoothly.If you are a newly graduated engineer; you will add another important skill to your CV and you will make a difference in job applications in the sectors I mentioned.We will learn the importance and advantages of the Parametric Design technique from the theory and develop your modelling technique together by learning step by step from scratch in the application section.If you are making designs with traditional modelling technique in your company, you will both improve the technical capabilities of the company and achieve serious savings with the advantages of parametric design and especially the savings it provides in development processes. You will multiply your speed in all revision and new product development processes. With the advantages of parametric design in production, you will minimise design-related problems in production.Parametric design is not only a modelling technique, but also a powerful tool that transforms your design processes. Thanks to this technology, you can make your designs faster and more flexible, minimise errors and reduce your production costs. Parametric design will allow you to make a big leap in both your career and your company. While strengthening your CV as a newly graduated engineer , you will increase the competitiveness of your company as an experienced engineer.You will make a difference in both career and sectoral sense thanks to many more advantages as I mentioned above and shared below.The main advantages of 3D modelling with Parametric Design can be found below:Fully consistent top-down design, (Top-Down Design)Simultaneous design of sub-assemblies while creating the main structure,Critical dimensions for the master part are changed quickly and the affected parts update themselves accordingly,Quickly transferring the necessary changes to the design so that the existing design can be used in other applications,Quickly transferring the feedback from the analyses to the design,Ease of creating a separate analysis data,Ensuring full control over the model, (Geometric and Engineering Constraints)Changes made in the design are automatically updated,Easier to see and understand how the model will react after a change,Easy definition and automatic creation of part families,Perfect integration with production processes, significant reduction in production time,To be able to create a user interface suitable for software integration,Ability to prepare designs suitable for different manufacturing methods with the same information data.