Integrated system for design and products quality control based on additive technologies for high-tech industries

T. Chistyakova, A. Polosin, I. Novozhilova
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引用次数: 1

Abstract

The article describes the functional structure of an integrated computer system that allows choosing the equipment for 3D printing on the basis of information and mathematical models to study the quality of printed high-tech polymeric and ceramic materials, as well as the necessary mode of its functioning. The integrated system includes the modules for selecting 3D printing technologies (extrusion, sintering) and 3D printers, a module for searching for the parameters of equipment for obtaining products of a given quality, a visualization module for simulation results, and a module for generating a product passport. The integrated system can be used as a training and educational system for training specialists in the field of additive technologies, taking into account the study of the complete life cycle of the synthesis of complex products (from studying the properties of composite materials and designing prototypes of products to assessing the quality of printed products). Testing of the computer system, which confirmed its operability, was carried out on the basis of the Engineering Center of SPbSIT (TU), the corporation Klöckner Pentaplast and Virial Ltd. (St. Petersburg). The use of an integrated system at enterprises of high-tech industries allows us to solve the problem of designing and managing the quality of complex products, saving raw materials and materials, which reduce the cost and time of production of high technology products.
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基于增材技术的高技术产业设计与产品质量控制集成系统
本文介绍了一个集成计算机系统的功能结构,该系统可以根据信息和数学模型选择用于3D打印的设备,以研究打印的高科技聚合物和陶瓷材料的质量,以及其功能的必要模式。该集成系统包括选择3D打印技术(挤压、烧结)和3D打印机模块、查询设备参数以获得给定质量的产品模块、仿真结果可视化模块和生成产品通行证模块。该集成系统可以用作增材技术领域培训专家的培训和教育系统,同时考虑到复杂产品合成的完整生命周期研究(从研究复合材料的特性和设计产品原型到评估印刷产品的质量)。计算机系统的测试证实了其可操作性,测试是在SPbSIT (TU)工程中心、Klöckner Pentaplast和Virial有限公司(圣彼得堡)的基础上进行的。在高新技术产业的企业中使用集成系统,可以解决复杂产品的质量设计和管理问题,节省原材料和材料,从而降低高新技术产品的生产成本和时间。
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