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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Current Trends in Dissimilar Diffusion Bonding of Titanium Alloys to Stainless Steels, Aluminium and Magnesium
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Current Trends in Dissimilar Diffusion Bonding of Titanium Alloys to Stainless Steels, Aluminium and Magnesium

机译:钛合金对不锈钢,铝和镁的不同扩散键合的当前趋势

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This article provides a comprehensive review of the advancements made in the diffusion bonding of titanium and its alloys to other advanced materials such as aluminium, stainless steel, and magnesium. This combination of advanced alloys has received considerable attention in different industries, including aerospace, petrochemical, and nuclear applications due to high specific strength, lightweight, corrosion resistance, and moderate to high mechanical properties. The mechanisms of bond formation are discussed based on the type of microstructures formed and the mechanical properties achieved. The scientific literature identifies various methods/processes for controlling the volume of intermetallic compounds formed within the joint regions, as well as ways of maximising the strength of the weld/joints. This paper discusses the relationship between weld/bond properties and bonding parameters such as time, temperature, surface roughness, pressures, interlayer composition, and thickness. The scientific literature also shows that the bonding mechanisms and microstructural evolution of the bond zone can be significantly affected by suitable optimization of the bonding parameters. Additionally, this is a method of maximising bond strength.
机译:本文对钛及其合金扩散键合的进步全面审查了其他先进材料,如铝,不锈钢和镁。由于高比强度,轻质,耐腐蚀性和中度至高机械性能,这种先进合金的这种组合在不同行业中受到了相当大的关注,包括航空航天,石化和核应用,并且是高机械性能。基于所形成的微观结构的类型和达到的机械性能,讨论键形成机制。科学文献识别用于控制在关节区域内形成的金属间化合物的体积的各种方法/过程,以及最大化焊接/接头强度的方式。本文讨论了焊接/粘合性能与粘合参数之间的关系,如时间,温度,表面粗糙度,压力,层间组合物和厚度。科学文献还表明,通过合适的粘合参数的优化,粘合区的粘合机制和微观结构演化可以显着影响。另外,这是一种最大化粘合强度的方法。

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