向学生传授现代计算机辅助设计系统功能的系统方法

N. Paliy
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引用次数: 0

摘要

文章介绍了莫斯科国立鲍曼技术大学工程制图系为向学生传授现代计算机辅助设计系统的可能性而采用的系统方法。 文章介绍了在 Compass-3D 系统中基于系统化方法创建零件和图纸的固态几何模型的基础教学方法。介绍了课程的结构和内容。教材是根据学生在学校所学的立体几何知识和同时学习工程制图 "投影绘图 "部分所获得的知识编写的。 还给出了学生独立完成实际任务的例子。培训从绘制平面轮廓线开始,轮廓线是三维模型的基础。在构建轮廓时,学生练习创建构成轮廓的基本基元,并在基元上叠加几何和尺寸依赖关系。固态模型的构建从简单几何体的建模开始:棱柱、金字塔、旋转体。这样,学生就可以集中练习造型操作,并更好地浏览工具栏。然后,学生将巩固所学知识和技能,建立更复杂形状的模型,这些模型的设计类似于两门课的机械工程部分:"旋转体 "和 "非旋转体"。学生根据构建的模型绘制电子图纸。与此同时,还在进行以下工作:在图纸中创建图像--视图、剖面图、截面图;应用尺寸,同时保持与零件模型的关联;使用图纸设计元素。 还给出了编辑已创建模型和图纸的控制任务示例,这对学生掌握工程实践中的重要技能十分必要。 学生可以将所学知识和技能用于继续深造。建议在中等和中等职业教育系统中使用所提出的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Systematic Approach to Teaching Students the Capabilities of Modern Computer-Aided Design Systems
The article describes a systematic approach that is used at the Department of Engineering Graphics at Bauman Moscow State Technical University to teach students the possibilities of modern computer-aided design systems. A methodology for teaching the basics of creating solid-state geometric models of parts and drawings in the Compass-3D system based on a systematic approach is presented. The structure and content of classes are described. The educational materials are developed on the basis of the students' knowledge of stereometry acquired at school and the knowledge gained during the parallel study of the engineering graphics section "Projection drawing". Examples of practical tasks for students' independent work are given. The training begins with the construction of a flat contour, which is used as basis of a three-dimensional model. When constructing a contour, students practice to create the basic primitives that make up the contour, and superimposing geometric and dimensional dependencies on the primitives. The construction of solid-state models begins with the modeling of simple geometric bodies: a prism, a pyramid, a body of rotation. This allows students to focus on practicing shaping operations, and to better navigate the toolbars. Then, students consolidate their knowledge and skills in building models of more complex shapes, similar in design to mechanical engineering parts of two classes: "body of rotation" and "non-body of rotation". Students create electronic drawings based on the constructed models. At the same time, the following is being worked out: creating images in the drawing – views, sections, sections; applying dimensions while maintaining an associative connection with the part model; using drawing design elements. Examples of control tasks for editing created models and drawings are given, which are necessary for students to acquire skills important for engineering practice. It is noted that the acquired knowledge and skills can be used by students in further education. The proposed methodology can be recommended for use in the system of secondary and secondary vocational education.
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