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Effect of Intermetallic Compounds on Microstructure and Mechanical Properties of Hot Roll Bonding Titanium to Steel

机译:金属间化合物对热辊粘合钛对钢微观结构和力学性能的影响

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摘要

Titanium cladding on steel leads to the creation of properties such as resistance to corrosion that contribute to a widespread application of this metal composite in industries such as nuclear, chemical, aerospace, and biomaterial. One of the solid-state bonding methods to apply such a clad is to use the roll bonding method. In this paper, quality of the titanium cladded on carbon steel was studied in terms of metallurgical, mechanical properties and the effect of the copper interlayer on the metallurgical properties of bonding. The interface between the clad and the base metal was studied using a scanning electron microscope and light microscope and the phases formed were identified by X-ray diffraction analysis. The results showed that an increase in the bonding temperature increased the thickness of the intermetallic compounds, increased the hardness at close distances to the interface, and reduced the adhesion of the titanium cladded to the base metal.
机译:钢上的钛覆层导致耐腐蚀性的性质产生,这有助于这种金属复合材料在核,化学,航空航天和生物材料等行业中的广泛应用。 用于施加这种包层的固态粘合方法之一是使用辊粘合法。 本文在冶金,机械性能和铜中间层对键合冶金性质的冶金性能方面,研究了碳钢上的钛的质量。 使用扫描电子显微镜和光学显微镜研究了包层和基础金属之间的界面,并通过X射线衍射分析鉴定形成的相。 结果表明,键合温度的增加增加了金属间化合物的厚度,将硬度提高到界面的近距离,并降低了钛粘接到基础金属的粘附性。

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