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Isostatic diffusion bonding and post-solution treatment between Cr22Ni5Mo3MnSi and Cr30Ni7Mo3MnSi duplex stainless steels

机译:Cr22Ni5Mo3MnSi和Cr30Ni7Mo3MnSi双相不锈钢之间的等静压扩散键合和固溶后处理

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摘要

In order to satisfy the requirement of different corrosion resistances in the same application, superplastic diffusion bonding at 1100 degrees C between expensive Cr30Ni7Mo3MnSi (SAE 2906, having higher corrosion resistance) and cheap Cr22Ni5Mo3MnSi (SAE 2205, having lower corrosion resistance) duplex stainless steels was systematically studied using a Gleeble-1500 thermo-mechanical simulator. The joint shear strength rapidly increased with an increase in holding time and pressure and then slowly increased when the holding time and pressure reached 5 min and 10 MPa, respectively. This increased strength was due to the void shrinkage and grain boundary migration across bonding interface. Post-solution at 1100 degrees C for 10 min significantly increased the joint shear strength up to 808 MPa, which was higher than 740 MPa of the base steel. It was ascribed to the dissolution of a phase and further void shrinkage by volume diffusion. However, post-solution at 1050 degrees C deteriorated the bonding strength due to a phase precipitation, while post-solution above 1100 degrees C also slowly reduced the bonding strength predominantly because of a decrease in the austenite fraction.
机译:为了满足同一应用中不同耐腐蚀性的要求,昂贵的Cr30Ni7Mo3MnSi(SAE 2906,具有较高的耐腐蚀性)和便宜的Cr22Ni5Mo3MnSi(SAE 2205,具有较低的耐腐蚀性)双相不锈钢在1100摄氏度下进行了超塑性扩散结合。使用Gleeble-1500热机械模拟器进行了系统的研究。接头的剪切强度随着保持时间和压力的增加而迅速增加,然后在保持时间和压力分别达到5 min和10 MPa时缓慢增加。这种增加的强度是由于空隙收缩和整个键合界面上晶界迁移的缘故。在1100℃下固溶10分钟后,接头的抗剪强度显着提高至808 MPa,高于母钢的740 MPa。归因于相的溶解和通过体积扩散的进一步的空孔收缩。然而,在1050℃下的固溶后由于相析出而使结合强度劣化,而在1100℃以上的固溶后也主要由于奥氏体分数的降低而缓慢地降低了结合强度。

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