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Diffusion bonding of Ti2AlNb alloy using pure Ti foil as an interlayer

机译:Ti2alnb合金的扩散键合使用纯Ti箔作为中间层

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In this work, the vacuum diffusion bonding process was employed to robustly join Ti2AlNb alloy using pure Ti foil as an interlayer. The effects of bonding parameters on the interfacial microstructure evolution and mechanical properties of the Ti2AlNb bonded joints at both room temperature and elevated temperatures were investigated in detail. The results showed that the joint consisted mainly of two characteristic zones: diffusion zone I and central zone II, and both these zones were composed of alpha-Ti and beta-Ti phases. The thickness of diffusion zone I as well as the formation of lamellar alpha and beta phases in the central zone II was dependent primarily on the diffusion of the Nb and Al elements from the Ti2AlNb alloy into the Ti interlayer, which was controlled by the modification of bonding parameters. The joint diffusion bonded at 960 degrees C for 60 min under a pressure of 20 MPa showed a maximum room temperature shear strength of 664 MPa, and its shear strengths at 500 degrees C, 650 degrees C, and 800 degrees C were 442 MPa, 384 MPa, and 305 MPa, respectively. With increases of diffusion bonding temperature and holding time, the shear strength of the Ti2AlNb bonded joints improved owing to the enhanced elemental interdiffusion across the interface. Meanwhile, the fracture path changed from the interface between diffusion zone I and center zone II to center zone II. The fracture morphologies of the joints after the shear tests were characterised mainly by a dimple-like structure, which corresponded to a ductile rupture. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中,使用真空扩散键合工艺使用纯Ti箔作为中间层鲁布利地加入Ti2alnb合金。详细研究了粘合参数对邻近温度和升高温度的Ti2AlNB键合接头的界面微观结构演化和力学性能的影响。结果表明,该关节主要由两个特征区:扩散区I和中央区II组成,两种区域都由α-Ti和β-Ti相连。扩散区I的厚度以及中心区II中的层状α和β相的形成主要是依赖于Nb和Al元素从Ti2alnb合金中的扩散到Ti中间层,其通过改变来控制键合参数。在20MPa的压力下在960℃下键合60分钟的关节扩散显示出664MPa的最大室温剪切强度,并且其500℃,650℃和800℃的剪切强度为442MPa,384 MPA和305MPa分别。随着扩散键合温度和保持时间的增加,由于界面穿过界面的增强的元素相互作用,Ti2AlNB键合接头的剪切强度提高。同时,裂缝路径从扩散区I和中心区II之间的界面变为中心区II。剪切试验后关节的断裂形态主要是通过凹陷的结构,其对应于延展性破裂。 (c)2018年elestvier b.v.保留所有权利。

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