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合金添加剂及成型工艺对CuSn10青铜微观结构、致密性和力学性能的影响

Effect of Alloying Additives and Moulding Technology on Microstructure, Tightness, and Mechanical Properties of CuSn10 Bronze.

作者信息

Witasiak Dawid, Garbacz-Klempka Aldona, Papaj Marcin, Papaj Piotr, Maj Maria, Piękoś Marcin, Kozana Janusz

机构信息

Faculty of Foundry Engineering, AGH University of Science and Technology, Reymonta 23, 30-059 Krakow, Poland.

Zakład Odlewniczy METAL-KOLOR sp. z o.o., Ostrowiecka 5, 27-200 Starachowice, Poland.

出版信息

Materials (Basel). 2023 Dec 11;16(24):7593. doi: 10.3390/ma16247593.

Abstract

Thise research was conducted to determine the impact of the applied casting technology, mould and alloying additives on the tightness of the CuSn10 cast alloy. Under industrial conditions, a series of experimental melts were made that were characterised by varying the concentrations of the main alloying element (Sn) and the introduced alloying additives (Si, Zn, Zr). The mould was made from green sand and used the CO moulding process. To assess the influence of the alloying additives, a metallographic analysis of the studied alloy was carried out, and the alloy's microstructure was examined using optical and scanning electron microscopy. The introduced alloying additives affected the properties and microstructure of the studied alloy. As alloying additives, zirconium resulted in a visible refinement of the microstructure, while silicon improved the fluidity and quality of the casting's external surface. The use of alloying additives and moulds made using different technologies is intended to improve the structure of the tin bronze castings produced and to find the best solution to significantly eliminate the lack of leakage of the castings. The castings were subjected to mechanical processing, and a leak test was performed using the pressure drop method. The conducted research allowed us to determine which technology, applied to production, will bring about a reduction in the problem and will inform further investigations.

摘要

本研究旨在确定所应用的铸造技术、模具和合金添加剂对CuSn10铸造合金致密性的影响。在工业条件下,进行了一系列实验熔炼,其特点是改变主要合金元素(Sn)和引入的合金添加剂(Si、Zn、Zr)的浓度。模具由湿型砂制成,并采用CO造型工艺。为了评估合金添加剂的影响,对研究的合金进行了金相分析,并使用光学显微镜和扫描电子显微镜检查了合金的微观结构。引入的合金添加剂影响了研究合金的性能和微观结构。作为合金添加剂,锆使微观结构明显细化,而硅提高了铸件外表面的流动性和质量。使用合金添加剂和采用不同技术制造的模具旨在改善所生产的锡青铜铸件的结构,并找到最佳解决方案以显著消除铸件的渗漏问题。对铸件进行了机械加工,并使用压降法进行了泄漏测试。所进行的研究使我们能够确定应用于生产的哪种技术将减少该问题,并为进一步的研究提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f8b/10871090/e5944a6be0ba/materials-16-07593-g001.jpg

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