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Cavitation Wear of Basalt-Based Glass Ceramic

机译:玄武岩基玻璃陶瓷的空化磨损

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摘要

This paper examines the possibility of using basalt-based glass ceramics for construction of structural parts of equipment in metallurgy and mining. An ultrasonic vibration method with a stationary sample pursuant to the ASTM G32 standard was used to evaluate the possibility of the glass ceramic samples application in such operating conditions. As the starting material for synthesis of samples, olivine–pyroxene basalt from the locality Vrelo–Kopaonik Mountain (Serbia) was used. In order to obtain pre-determined structure and properties of basalt-based glass ceramics, raw material preparation methods through the sample crushing, grinding, and mechanical activation processes have been examined together with sample synthesis by means of melting, casting, and thermal treatment applied for the samples concerned. The mass loss of samples in function of the cavitation time was monitored. Sample surface degradation level was quantified using the image analysis. During the test, changes in sample morphology were monitored by means of the scanning electronic microscopy method. The results showed that basalt-based glass ceramics are highly resistant to cavitation wear and can be used in similar exploitation conditions as a substitute for other metal materials.
机译:本文研究了将玄武岩基玻璃陶瓷用于冶金和采矿设备的结构部件的可能性。使用符合ASTM G32标准的带有固定样品的超声振动方法来评估在这种操作条件下使用玻璃陶瓷样品的可能性。作为样品合成的起始材料,使用了来自Vrelo-Kopaonik山(塞尔维亚)的橄榄石-辉石玄武岩。为了获得预定的玄武岩基玻璃陶瓷的结构和性能,已经研究了通过样品粉碎,研磨和机械活化过程的原料制备方法,以及通过熔融,浇铸和热处理进行样品合成的方法有关的样品。监测了随空化时间而变的样品的质量损失。使用图像分析对样品表面降解水平进行定量。在测试期间,通过扫描电子显微镜法监测样品形态的变化。结果表明,玄武岩基玻璃陶瓷具有很高的抗气蚀磨损性能,并且可以在类似的开采条件下用作其他金属材料的替代品。

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