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Rapid diffusion bonding of WC-Co cemented carbide to 40Cr steel with Ni interlayer: Effect of surface roughness and interlayer thickness

机译:带有Ni中间层的WC-Co硬质合金与40Cr钢的快速扩散结合:表面粗糙度和中间层厚度的影响

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摘要

WC-Co cemented carbides were rapidly diffusion bonded to 40Cr steels with pure Ni as interlayers by utilizing plasma activated sintering (PAS). The bonding was carried out at 750 degrees C for 13 min under a pressure of 40 MPa. It was found that the roughness of the initial surfaces still plays an important effect on the microstructure and mechanical behavior of the joints diffusion bonded by PAS irrespective of the electric current applied during bonding. The adoption of smoother original surfaces was significantly favorable to eliminate the interfacial interstices and microvoids. Correspondingly, the shear strength of the diffusion bonded joints increased with decreasing surface roughness. Additionally, the effect of interlayer thickness on the shear strength of the joints was also evaluated, and the results showed that the strength decreased sharply when thicker interlayer was employed. A maximum value of shear strength, 293.07 MPa, was obtained when the original surfaces was ground with P1200 grit SiC paper and at the same time 50 mu m thick interlayer was used. In this case, the fracture initiated and run predominantly along the bonding interfaces instead of in the WC-Co substrate. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过使用等离子活化烧结(PAS),将WC-Co硬质合金快速扩散键合到纯镍作为中间层的40Cr钢上。接合在40MPa的压力下在750℃下进行13分钟。已经发现,不管结合期间施加的电流如何,初始表面的粗糙度仍对通过PAS扩散结合的接头的微观结构和机械性能起重要作用。采用较光滑的原始表面明显有利于消除界面间隙和微孔。相应地,扩散结合接头的剪切强度随着表面粗糙度的减小而增加。此外,还评估了夹层厚度对接头剪切强度的影响,结果表明,当使用较厚的夹层时,强度会急剧下降。当用P1200砂砾SiC纸打磨原始表面并同时使用50μm厚的中间层时,剪切强度的最大值为293.07 MPa。在这种情况下,断裂开始并主要沿着结合界面而不是在WC-Co基体中延伸。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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