数字化生产的阶段组织方法,以确保使用DFM的概念的电子产品的质量

Анастасия Петрушевская, A. Petrushevskaya
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引用次数: 0

摘要

为了生产新一代产品和开发新技术,现代开发和生产高新技术产品是为了生产符合现代要求的无线电电子产品。创新电子产品的生产,其小型化和进口共享的相关性导致需要开发技术过程建模的方法。本文通过在计算机数学MatLab环境下引入面向制造的设计理念,探讨了工业4.0概念原理在电子产品生产中的应用,以提高生产过程的性能。技术过程可以用用马尔可夫链装置建立的数学模型的形式来描述。在此模型的基础上,验证了在工艺操作管理中使用图形的有效性。通过在制造过程中使用电子产品的生产阶段建模,我们不仅可以揭示由跟踪器的各个元素组成的产品结构,还可以显示其制造技术过程的拓扑结构。在数学建模的发展中,图论的选择是基于制造元素的主要生产阶段,与被建模对象的高水平细节的披露有关,并确保产品组件的充分相互关系,以防止缺陷的释放,相反,以最小的成本提高产品的质量。在MatLab计算机环境下使用dfm分析在生产和纠错开始前的生产过程中允许减少准备时间和保证履行对客户对产品质量的义务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
METHODOLOGY OF PHASED ORGANIZATION FOR DIGITAL PRODUCTION TO ENSURE THE QUALITY OF ELECTRONICS USING THE CONCEPT OF DFM
For the production of new generation products and the development of new technologies, modern development and production of high-tech high-tech products are aimed at the production of radioelectronics that meet modern requirements. The relevance of the production of innovative electronics, its miniaturization and import-sharing leads to the need to develop methods for modeling technological processes. The article discusses the application of the principles of the concept of industry 4.0 in the production of electronics with the introduction of the concept of Design for Manufacturing in the environment of computer mathematics MatLab in order to improve the performance of the production process. Technological processes can be described in the form of mathematical models built using the apparatus of Markov chains. On the basis of the developed model, results are obtained confirming the efficiency of using graphs in the management of technological operations. Modeling by production stages with the use of electronics in the manufacturing process allows us to reveal not only the structure of the product, consisting of individual elements of the tracker, but also to show the topology of the technological process of its manufacture. The choice of graph theory in the development of mathematical modeling is based on the main production stages of manufacturing elements in connection with the disclosure of a high level of detail of the object being modeled and ensuring the full interrelation of the components of the product in order to prevent the release of defects and, on the contrary, increase the quality of products at minimum cost. The use of DFM-analysis in the MatLab computer environment in the production and correction of errors before the start of the production process allows to reduce the time of preparation and guaranteed to fulfill obligations to customers on the quality of products.
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