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首页> 外文期刊>Journal of Materials Science >Diffusion brazing of Ti-6Al-4V and AISI 304: an EBSD study and mechanical properties
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Diffusion brazing of Ti-6Al-4V and AISI 304: an EBSD study and mechanical properties

机译:Ti-6AL-4V和AISI 304的扩散钎焊:EBSD研究和机械性能

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Ti-6Al-4V and AISI 304 stainless steel were joined by diffusion brazing with a Cu interlayer at 900 degrees C for different bonding times. The influence of the bonding time on the joint width, microstructure, microhardness and shear strength was studied. Interfacial characterizations and the identification of phases were done by scanning electron microscopy and electron backscatter diffraction (EBSD). The results revealed that by increasing the bonding time, the thickness of the joint was first increased and then decreased. Microstructure examinations also showed that the joints consisted of several intermetallics such as TiCu, Ti2Cu, TiCu4, TiCu2, FeTi and Fe2Ti. On the other hand, EBSD results demonstrated that the density of Cu-Ti intermetallics was reduced with the prolonged bonding time of 80 min, thereby indicating the occurrence of isothermal solidification. The microhardness profiles also showed a different behavior with varying the bonding time due to the change in the mechanism of the joint formation. The maximum shear strength obtained was 247 MPa, when the joint was bonded for 80 min; this was approximately equal to the stainless steel strength.
机译:通过在900℃下的Cu中间层的扩散钎焊连接Ti-6Al-4V和AISI 304不锈钢,用于不同的键合时间。研究了键合时间对关节宽度,微观结构,显微硬度和剪切强度的影响。通过扫描电子显微镜和电子反向散射衍射(EBSD)来完成界面表征和阶段的鉴定。结果表明,通过增加键合时间,关节的厚度首先增加,然后降低。微观结构检查还表明,关节由几种金属间金属间组成,例如TiCu,Ti2Cu,Ticu4,Ticu2,Feti和Fe2ti。另一方面,EBSD结果表明,Cu-Ti金属间质的密度随着80分钟的延长键合时间而降低,从而表明等温凝固的发生。由于关节形成机制的变化,微硬度谱还显示出不同的行为,改变键合时间。当接头键合80分钟时,所获得的最大剪切强度为247MPa;这大致等于不锈钢强度。

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