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Effects of Minor Cu and Si Additions on Glass Forming Ability and Mechanical Properties of Co-Fe-Ta-B Bulk Metallic Glass

机译:微量铜和硅对Co-Fe-Ta-B块状金属玻璃的玻璃形成能力和力学性能的影响

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摘要

Effect of Cu and Si substitutions for Co and B on the glass forming ability (GFA) of Co(43-x)CuxFe20Ta5.5B(31.5-x)Siy (x=0-1.5 and y=5-10) were systematically investigated by X-ray diffraction, optical microscopy, scanning electron microscopy, and differential scanning calorimetry. In order to evaluate the contribution of copper and silicon, appropriate amounts of copper and silicon were individually introduced to the base alloy composition. By using the effects of copper and silicon together, significant enhancement was obtained and the critical casting thickness (CCT) of the base alloy was increased three times from 2 mm to 6 mm. Moreover, mechanical properties of the alloys were examined by compression tests and Vickers hardness measurements. The compression test results revealed that the glassy alloys having enhanced GFA shows high strength of about 3500-4000 MPa. In addition, existence of (Co,Fe)(2)B and (Co,Fe)(20 82)Ta2.18B6 crystalline phases in glassy matrix influences the hardnesses of the alloys compared to monolitic glassy structure having hardness of about 1200 Hv.
机译:系统研究了Cu和Si替代Co和B对Co(43-x)CuxFe20Ta5.5B(31.5-x)Siy(x = 0-1.5和y = 5-10)的玻璃形成能力(GFA)的影响通过X射线衍射,光学显微镜,扫描电子显微镜和差示扫描量热法。为了评估铜和硅的贡献,将适量的铜和硅分别引入基础合金组合物中。通过同时使用铜和硅的作用,可以获得显着的增强,并且基础合金的临界铸造厚度(CCT)从2 mm增加到6 mm三倍。此外,通过压缩试验和维氏硬度测量检查了合金的机械性能。压缩测试结果表明,具有增强的GFA的玻璃态合金显示出约3500-4000MPa的高强度。此外,与硬度约为1200 Hv的单晶玻璃状结构相比,玻璃状基质中(Co,Fe)(2)B和(Co,Fe)(20 82)Ta2.18B6结晶相的存在会影响合金的硬度。

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