首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Investigation on microstructure and mechanical properties of the dissimilar weld between mild steel and stainless steel-316 formed using microwave energy
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Investigation on microstructure and mechanical properties of the dissimilar weld between mild steel and stainless steel-316 formed using microwave energy

机译:用微波能量形成温和钢和不锈钢-316不同焊接微观结构和力学性能的研究

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Dissimilar weld between a mild steel and a stainless steel-316 was formed by exposing the candidate materials to electromagnetic radiation in the microwave band. Characterisations of the joints were carried out with respect to some aspects of microstructural and mechanical properties of the fusion joints. The joining trials were carried out in an industrial microwave applicator at a fixed frequency of 2.45GHz and 1.2kW power while exposed for a duration of 600s in atmospheric condition. Stainless steel-316 powder was used as the filler material for joining. Principles of microwave hybrid heating were utilised for heating and subsequently melting the metal-based materials in the joint zone. Characterisation of the microwave hybrid heating-induced dissimilar welds were carried out using X-ray diffraction, field emission scanning electron microscopy, microhardness tester and universal testing machine. The presence of carbides and intermetallic in the joint zone were evidenced in the X-ray diffraction results. The microstructures observed through scanning electron microscope show the metallurgical bonding between the substrates to be joined through complete melting of the powder particles and fusion of the base materials. The Vicker's microhardness in the core of the joint was observed to be 380HV, which was significantly higher as compared to the base materials due to the formation of dendritic structure and various carbides in the joint zone during microwave hybrid heating process. The average ultimate tensile strength of the joints was measured to be 420MPa with an elongation of 6.67%. The average flexural strength of the joints was observed to be 787.5MPa with an elongation of 5.14%. The optimum temperature required for joining was measured using an in-built non-contact infrared pyrometer and was found to be 1360 degrees C.
机译:通过将候选材料暴露于微波带中的电磁辐射来形成温和钢和不锈钢-316之间的不同焊接。关节的特征是关于融合关节的微观结构和机械性能的一些方面进行的。加入试验在工业微波涂敷器中以2.45GHz和1.2kW的固定频率进行的,而在大气条件下暴露在600岁的持续时间内。不锈钢-316粉末用作加入的填料材料。微波混合加热原理用于加热并随后在关节区中熔化金属基材料。使用X射线衍射,场发射扫描电子显微镜,微硬度测试仪和通用试验机进行微波混合加热诱导的不同焊缝的表征。在X射线衍射结果中证明了接合区域中的碳化物和金属间质量的存在。通过扫描电子显微镜观察的微结构显示通过完全熔化粉末颗粒和基础材料的熔化来连接底物之间的冶金键合。观察到关节核心的维氏微硬度为380HV,与在微波混合加热过程中的联合区中的树枝状结构和各种碳化物相比,与基础材料相比显着更高。测量关节的平均终极抗拉强度为420MPa,伸长率为6.67%。观察到关节的平均弯曲强度为787.5MPa,伸长率为5.14%。使用内置的非接触式红外高温计测量连接所需的最佳温度,并发现1360℃。

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