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Effects of Intermetallic Phases on the Bond Strength of Diffusion-Bonded Joints between Titanium and 304 Stainless Steel Using Nickel Interlayer

机译:金属间相对镍中间层对钛与304不锈钢扩散结合接头结合强度的影响

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摘要

Solid-state diffusion bonding was used to join commercially pure titanium (Ti) and 304 stainless steel (SS) with a pure nickel (Ni) interlayer of 300-μm thickness in the temperature range of 800 °C to 950 °C in steps of 50 °C for 7.2 ks under 3 MPa load in vacuum. Interfaces were characterized using light and scanning electron microscopy. The interdiffusion of the chemical species across the diffusion interfaces was evaluated by electron probe microanalysis. Nickel interlayer completely restricted the migration of Ti to SS up to 850 °C bonding temperature. However, at 900 °C and 950 °C processing temperatures, Ni interlayer could not restrict the migration of Ti to SS, and phase mixtures of λ + χ + α-Fe, λ + α-Fe, and λ + FeTi + β-Ti were formed at SS-Ni interface. The occurrence of different intermetallics was confirmed by X-ray diffraction technique. The maximum tensile strength of ~311 MPa and shear strength of ~236 MPa along with 9.1 pct elongation were obtained for the diffusion couple processed at 850 °C due to better contact between the mating surfaces and without formation of brittle Fe-Ti base intermetallics. With an increase in the bonding temperature to 900 °C and above, the bond strength drops due to the formation of brittle Fe-Ti base intermetallics in the diffusion zone. Observation of the fracture surface in a scanning electron microscope (SEM) using energy dispersive spectroscopy demonstrates that failure occurred through Ni-Ti interface of the joints when processed up to 850 °C and through SS-Ni interface when processed at 900 °C and above.
机译:固态扩散结合用于在800°C至950°C的温度范围内以300μm的厚度将商业纯钛(Ti)和304不锈钢(SS)与厚度为300μm的纯镍(Ni)中间层连接起来在3 MPa的负载下于真空中于7.2 ks在50°C下工作。使用光和扫描电子显微镜表征界面。通过电子探针显微分析评估了化学物种在扩散界面上的相互扩散。镍夹层完全限制了Ti迁移到SS的温度高达850°C。但是,在900°C和950°C的加工温度下,Ni中间层不能限制Ti向SS的迁移,而λ+χ+α-Fe,λ+α-Fe和λ+ FeTi +β-的相混合物Ti在SS-Ni界面处形成。通过X射线衍射技术证实了不同金属间化合物的存在。在850°C下加工的扩散偶,由于配合表面之间的接触更好,并且没有形成脆性的Fe-Ti基金属间化合物,因此获得的最大拉伸强度为〜311 MPa,剪切强度为〜236 MPa,伸长率为9.1 pct。随着结合温度升高至900℃以上,由于在扩散区域中形成脆性的Fe-Ti基金属间化合物,所以结合强度降低。使用能量色散光谱在扫描电子显微镜(SEM)中观察断裂表面表明,当在高达850°C的温度下加工时,通过接头的Ni-Ti界面发生断裂,而在900°C及更高温度下的加工中通过SS-Ni界面发生破坏。 。

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    《Metallurgical and Materials Transactions A》 |2007年第9期|2053-2060|共8页
  • 作者单位

    Department of Metallurgy and Materials Engineering Bengal Engineering and Science University Shibpur Howrah 711103 West Bengal India;

    Department of Metallurgy and Materials Engineering Bengal Engineering and Science University Shibpur Howrah 711103 West Bengal India;

    Department of Metallurgical and Materials Engineering Colorado School of Mines Golden CO 80401 USA;

    Department of Metallurgical and Materials Engineering Colorado School of Mines Golden CO 80401 USA;

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