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首页> 外文期刊>Journal of nanoscience and nanotechnology >Microstructure and Mechanical Properties o Commercially Pure Ti/Steel Joint Brazed by Zr-Ti-Ni Amorphous Filler Metal
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Microstructure and Mechanical Properties o Commercially Pure Ti/Steel Joint Brazed by Zr-Ti-Ni Amorphous Filler Metal

机译:由Zr-Ti-Ni非晶填料钎焊的商业纯Ti /钢结构的微观结构和机械性能

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摘要

In this study, the characteristics of commercially pure titanium (hereinafter referred as CP-Ti)/Steel joints, brazed with Zr-Ti-Ni amorphous filler metal were analyzed. The effects of brazing temperature and time on the microstructure and joining strength of the CP-TVSteel joints were investigated. It was observed that Ti diffused into stainless steel substrate formed a brittle reaction zone, which contained intermetallic compounds, such as tau (Ti5Cr7Fe17), (Fe, -Ni)Ti, and FeTi, observed at the joint interface. As the brazing temperature and time increased, the width of the reaction layer in the joint was observed to increase. To suppress the oxidation of the substrates, the experiment was conducted at a cooling and heating speed of 100 degrees C/min, under a vacuum of 5 x 10(-5) torr. The joining strength was observed to be significantly affected by the brazing conditions, such as temperature and duration time. The shear strength test showed that the strength increased for 15 min and then sharply decreased. This was attributed to the formation of brittle intermetallic compounds, like (Fe, Ni)Ti. The joint brazed at 880 degrees C for 15 min showed the maximum joining strength, of 216 MPa.
机译:在本研究中,分析了用Zr-Ti-Ni非晶态钎料钎焊的商用纯钛(以下简称CP-Ti)/钢接头的特性。研究了钎焊温度和时间对CP-TVS钢接头组织和连接强度的影响。研究发现,扩散到不锈钢基体中的钛形成了一个脆性反应区,其中含有金属间化合物,如接头界面处观察到的tau(Ti5Cr7Fe17),(Fe,-Ni)Ti和FeTi。随着钎焊温度和时间的增加,观察到接头中反应层的宽度增加。为了抑制基底的氧化,在5 x 10(-5)托的真空下,以100摄氏度/分钟的冷却和加热速度进行实验。钎焊条件(如温度和持续时间)对连接强度有显著影响。抗剪强度试验表明,强度在15min后增加,然后急剧下降。这归因于脆性金属间化合物的形成,如(Fe,Ni)Ti。在880摄氏度下钎焊15分钟的接头显示出最大的连接强度,为216兆帕。

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