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砂质对化学粘结砂芯抗弯强度和热变形的影响。

The effect of sand quality on the bending strength and thermal distortion of chemically bonded sand cores.

作者信息

Gyarmati Gábor, Budavári Imre, Fegyverneki György, Varga László

机构信息

Foundry Institute, University of Miskolc, 3515, Miskolc-Egyetemváros, Hungary.

出版信息

Heliyon. 2021 Jul 18;7(7):e07624. doi: 10.1016/j.heliyon.2021.e07624. eCollection 2021 Jul.

Abstract

The quality of chemically bonded sand cores used during the manufacturing process of cast components is highly dependent on the properties of the sand, which constitutes the refractory base media of the core. One of the main advantages of the application of different types of sands as molding aggregates that after casting, they can be reclaimed and can be used again during core shooting. The properties of the sand, however, could be remarkably changed during the casting and reclamation processes. This study aims to investigate the effects of the properties of the base sand on the mechanical strength and thermal distortion properties of samples made from new and thermally reclaimed silica sand. For this purpose, particle size analysis, specific surface area, and loss on ignition measurements, as well as differential thermal analysis coupled with thermogravimetry, were executed on the base sands, and the sand grains were analyzed with scanning electron microscopy and X-ray diffraction. Test pieces were made with hot box and cold box technology for bending and hot distortion tests. It was found that by the utilization of reclaimed sand, cores with higher average bending strength and lower thermal deformation can be produced. These differences can be traced back to the more advantageous granulometric properties, lower impurity content, and lower thermal expansion of thermally reclaimed sand.

摘要

铸造部件制造过程中使用的化学粘结砂芯的质量高度依赖于构成芯的耐火基础介质的砂的性能。使用不同类型的砂作为造型骨料的主要优点之一是,铸造后它们可以回收,并可在制芯过程中再次使用。然而,砂的性能在铸造和回收过程中可能会发生显著变化。本研究旨在研究原砂性能对由新的和热回收硅砂制成的样品的机械强度和热变形性能的影响。为此,对原砂进行了粒度分析、比表面积、灼减量测量,以及差示热分析与热重分析,并通过扫描电子显微镜和X射线衍射对砂粒进行了分析。采用热芯盒和冷芯盒技术制作测试件进行弯曲和热变形试验。结果发现,通过使用回收砂,可以生产出具有更高平均弯曲强度和更低热变形的芯。这些差异可追溯到热回收砂更有利的粒度特性、更低的杂质含量和更低的热膨胀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7cd/8321917/bf920ed7e28f/gr1.jpg

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