latest technologies in production, automated design systems, computer modelling, innovative teaching methods, graphic disciplines

O. Habovda
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Abstract

The relevance of the study is due to the continuous development of automated design systems and global trends in the digital transformation of production at all levels of the product life cycle. Since one of the main principles of education is integration with science and production, this integration is the main condition for its further development and a factor in ensuring its quality. The product life cycle begins with project design, which students of technical specialities begin to master by studying descriptive geometry, engineering, and computer graphics. In this course, the skills of working in automated design systems are pawned, so its teaching should take place using updated technologies that the present needs. The purpose of the study is to analyse the experience of teaching graphic disciplines in higher educational institutions and to substantiate the methods of studying the discipline “Engineering and computer graphics” based on the author’s experience, considering trends in the development of digital production. The research work was conducted using general scientific methods by analysing scientific-technical information on the subjects covered and using the method of pedagogical experiment. The study suggests using computer-aided design systems starting with the study of descriptive geometry, provides practical ways to solve classical problems of descriptive geometry by means of automated design systems, defines the minimum skills within the course to ensure further assimilation of the capabilities of automated design systems in special courses, during the implementation of course projects and to reduce the period of adaptation of the future specialist to professional activities. The practical importance of the research is in the development of a methodology for the transition from conventional methods of studying descriptive geometry, which involve the use of drawing tools, to modern ones using computer-aided design systems, which contributes to their accelerated mastering by students to further apply them in the study of technical disciplines
最新的生产技术,自动化设计系统,计算机建模,创新的教学方法,图形学科
这项研究的相关性是由于自动化设计系统的不断发展和产品生命周期各个阶段生产数字化转型的全球趋势。教育的主要原则之一是与科学和生产相结合,这种结合是教育进一步发展的主要条件和保证教育质量的因素。产品生命周期从项目设计开始,技术专业的学生通过学习描述几何、工程和计算机图形学开始掌握项目设计。在这门课程中,自动化设计系统的工作技能被典当了,所以它的教学应该使用当前需要的最新技术。本研究的目的是分析高等院校图形学科的教学经验,结合数字化生产的发展趋势,根据笔者的经验,充实“工程与计算机图形学”学科的学习方法。本研究采用一般科学方法,通过对所研究课题的科学技术资料进行分析,并采用教学实验的方法进行。该研究建议使用计算机辅助设计系统,从研究描述几何开始,提供了通过自动化设计系统解决描述几何经典问题的实用方法,定义了课程中的最低技能,以确保在特殊课程中进一步吸收自动化设计系统的能力,在课程项目的实施过程中,减少未来专家适应专业活动的时间。这项研究的实际意义在于开发了一种方法,从传统的学习描述几何的方法(涉及使用绘图工具)过渡到使用计算机辅助设计系统的现代方法,这有助于学生加速掌握这些方法,并进一步将其应用于技术学科的研究
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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