TÜBİTAK
3210662
"SANAYİ AR-GE PROJELERİ DESTEKLEME PROGRAMI" kapsamında ürün tasarımı ve dijital dönüşüm konularını içeren "Üretim Hatlarından Toplanan Anlık Veriyi İşleyen, ERP Entegrasyonu ile Yorumlayan, Üretim Performans, Kalite ve Müşteri Memnuniyet Artışı Sağlayacak Üretim Yönetiminin Geliştirilmesi" başlıklı başarıyla tamamlanmış olan projem için verdiği destekten ötürü TÜBİTAK'a teşekkürü borç bilirim.
In this article, details for the increasing properties with the help of 3D printer assisted technique of a material produced by classical sand mould casting method through a technological transformation were presented. At the same time, digital transformation studies were included with the development of online data monitoring systems in mass production. After the design studies were carried out with Solidworks, design verification research with computational fluid dynamics (CFD) and finite element analysis (FEA) have been realized. Solidification, filling-time-temperature analyses, and casting simulation studies of micro and macro shrinkage were carried out using the Anycasting simulation program. Then the intensive use of simulation techniques, the activities that would increase the quality of the product with 3D printers were detailed. The microstructure investigation, chemical analyses, and mechanical tests were performed to prove the positive effect of the 3D printing system. Surface morphology determination results showed that the better outcomes have been obtained from the 3D printing reinforced system. Finally, a unique data monitoring system that could communicate with production equipment for the first time in our country without the need for any external software and license, within the scope of digital industrialization system were explained. With the commissioning of the 3D system, 44.2% increase in efficiency and 33% improvement in quality rates were achieved. The biggest advantage of this system is that the total amount of energy consumed was reduced from 197 mJ to 81 mJ.
3D Printing Digital Industrialization Digital Transformation Casting Additive Manufacturing
3210662
Primary Language | English |
---|---|
Subjects | Engineering |
Journal Section | Research Article |
Authors | |
Project Number | 3210662 |
Publication Date | August 31, 2023 |
Submission Date | May 12, 2023 |
Published in Issue | Year 2023 Volume: 7 Issue: 2 |
International Journal of 3D Printing Technologies and Digital Industry is lisenced under Creative Commons Atıf-GayriTicari 4.0 Uluslararası Lisansı