首页|期刊导航|金属加工(热加工)|Ni箔厚度对Ti65/Nb521接触反应钎焊接头组织与性能的影响

Ni箔厚度对Ti65/Nb521接触反应钎焊接头组织与性能的影响OA

Effects of Ni foil thickness on the microstructure and properties of Ti65/Nb521 contact reaction brazed joints

中文摘要英文摘要

采用不同厚度的Ni箔(10μm、50μm及100μm)在1150℃ ×20min条件下对Ti65/Nb521合金进行了接触反应钎焊,系统分析了Ni箔厚度对界面组织演化及接头力学性能的影响.结果显示:Ni箔厚度对界面组织演化具有显著调控作用,随其厚度的增加,界面反应层厚度逐步增长,当Ni箔厚度达到100μm时,界面反应显著加剧,组织形貌趋于复杂,并伴随大量脆性金属间化合物的富集.尽管各接头均可获得致密的冶金结合,但力学性能差异显著,其中50μmNi箔接头的剪切强度最高,达到394MPa,断裂位置转移至Nb521母材侧;在100μmNi箔条件下,过量生成的脆性相削弱了界面结合性能,使接头剪切强度显著下降.通过合理控制Ni箔厚度,可有效调控Ti65/Nb521异种金属钎焊接头的界面组织与力学性能,为高温服役用Ti/Nb合金异种材料高性能连接工艺优化提供了重要参考.

Using Ni foils of different thicknesses(10μm,50μm and 100μm),contact reaction brazing of Ti65 and Nb521 alloys was performed at 1150℃ for 20min.The influence of Ni foil thickness on interfacial micro structure evolution and mechanical properties was investigated.Results show that Ni foil thickness critically governs interfacial reactions,increasing foil thickness leads to a progressive increase in reaction layer thickness.At 100μm,interfacial reactions are markedly intensified,producing a thick,complex reaction layer with abundant brittle intermetallic compounds.Although all joints exhibit dense metallurgical bonding,their mechanical properties differ significantly.The joint brazed with a 50μm Ni foil achieves the highest shear strength of 394MPa,with fracture occurring in the Nb521 base metal.In contrast,excessive brittle phase formation with a 100μm Ni foil degrades interfacial bonding and significantly reduces shear strength.These results demonstrate that controlling Ni foil thickness is an effective approach to tailoring the interfacial microstructure and mechanical performance of Ti65/Nb521 dissimilar metal brazed joints for high-temperature applications.

朱晗;毕建勋;李栋;李宏利;赵晨昊;梁德彬;李伯涛;康黎

航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076航天材料及工艺研究所 北京 100076

Ni箔Ti65/Nb521异种金属接触反应钎焊界面组织力学性能

Ni foilTi65/Nb521 dissimilar metalscontact reaction brazinginterfacial microstructuremechanical properties

《金属加工(热加工)》 2026 (2)

33-39,7

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