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Fabrication of a 2-layer laminated steel composite by friction stir additive manufacturing

机译:通过摩擦搅拌增材制造法制造2层层压钢复合材料

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摘要

Laminated composites are a kind of material composed of different material layers that are broadly used in various industries. In the present research, the friction stir welding was employed to fabricate a 2-layer composite consisting of interstitial free steel sheets and St52 steel plates. The microstructure and mechanical properties of composites were examined and compared with as-received steel. The results showed that the layers had good bonding and an interface was sharp in the lower travel speed; however, the diffusion takes place in the interface with increasing a traverse speed. The carbon diffusion and formation of a Widmanstatten ferrite in the stir zone and near to two steel interfaces resulted in the highest hardness in the composite cross-section. Unexpected stretched grains formed at the traverse speed of 40 mm/min under the influence of material flow created by the tool shoulder from advancing to retreating side in the stir zone. The bimodal structure formation in the interstitial free steel layer of composite resulted in work hardening rate variation during tensile test. The tensile test and scanning electron microscopy images taken from fracture surface of samples demonstrated that the fragmentation in the interstitial free steel layer followed by dispersed delamination and then St52 failure is dominant scenario in the failure of 2-layer laminated steel composite made in this study.
机译:层压复合材料是一种由不同材料层组成的材料,广泛用于各个行业。在本研究中,采用搅拌摩擦焊来制造由无间隙钢板和St52钢板组成的2层复合材料。检查了复合材料的微观结构和力学性能,并与原态钢进行了比较。结果表明,在较低的行进速度下,各层具有良好的粘结性和界面锐利。但是,扩散会随着速度的增加而在界面上发生。碳的扩散以及在搅拌区和接近两个钢界面处形成的威德斯塔滕铁素体导致复合截面的最高硬度。在搅拌区中,在由刀肩产生的物料流的影响下,以40 mm / min的移动速度形成了意外的拉伸晶粒。复合材料的间隙自由钢层中双峰结构的形成导致拉伸试验过程中工作硬化速率的变化。从样品的断裂表面获取的拉伸试验和扫描电子显微镜图像表明,在本研究中制备的2层层压钢复合材料的失效中,间隙自由钢层中的断裂接着分散的分层,然后St52失效是主要的情况。

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