首页> 外文期刊>Journal of Materials Engineering and Performance >Effects of Holding Time on the Sintering of Cemented Tungsten Carbide Powder and Bonding with High-Strength Steel Wire
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Effects of Holding Time on the Sintering of Cemented Tungsten Carbide Powder and Bonding with High-Strength Steel Wire

机译:保持时间对水泥碳化钨粉烧结烧结的影响及高强度钢丝粘接

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摘要

Cemented tungsten carbide (WC-10Co) and high-strength (AISI 4340) steel were successfully bonded by hot compaction diffusion bonding at a low temperature. The effects of holding time (5-50 min) on microstructure and mechanical properties of the sintered carbides and bonding strengths of the dissimilar bilayered composite materials were examined. The results show that the mechanical properties of the carbides increase, but the bonding strength increases firstly and then decreases with the increase in holding time. The maximum density and hardness achieved are 95.92 and 99.5%, respectively. A transitional layer forms at the interface as a result of elemental interdiffusion. The depth of the layer increases with the increase in holding time. The optimal bonding time is determined to be 40 min at a temperature of 1200 degrees C and a pressure 160 MPa, by which the maximum bonding strength of 204 MPa of the WC-10Co/4340 steel joints can be achieved.
机译:通过在低温下通过热压缩扩散键合成功粘合粘合碳化钨(WC-10CO)和高强度(AISI 4340)钢。 检查持续时间(5-50分钟)对烧结碳化物的微观结构和机械性能的影响和不同双层复合材料的粘合强度。 结果表明,碳化物的力学性能增加,但键合强度首先增加,然后随着保持时间的增加而降低。 实现的最大密度和硬度分别为95.92和99.5%。 由于元素间隔的结果,在界面处形成过渡层。 该层的深度随着保持时间的增加而增加。 在1200℃的温度和压力160MPa的温度下确定最佳键合时间为40分钟,可以实现WC-10Co / 4340钢结构的204MPa的最大键合强度。

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