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Investigation of Microstructure and Mechanical Properties of St37 Steel-Ck60 Steel Joints by Explosive Cladding

机译:用炸药熔覆研究St37钢-Ck60钢接头的组织和力学性能

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The present work aimed at studying the microstructure and mechanical properties of Ck60/St37 composite plates fabricated by explosive cladding. The explosive ratio and stand-off distance were set to be R = 1.7 and s = 1.5t, respectively. Optical and scanning electron microscopy revealed that the bonding at the interface had a wavy morphology, but local melted zones were formed along the interface. The chemical composition of the local melted zones was evaluated by energy-dispersive spectroscopy analysis. This analysis showed that the melted zones consisted of both Ck60 and St37 steels. The maximum hardness was obtained near the explosively cladded interface; then these values were decreased by the distance away from the interface. Moreover, it was seen that the local melted zones, especially the vortices, had a high degree of hardness. Shear tests on the cladded metals also showed that the average shear strength was higher than 140 MPa, as set by the ASTM A263-12, implying that composite plates could be used safely. The study was also conducted to consider the strength of bonding by bending test in two ways, one with the cladding metal in tension and the other with the cladding metal in compression. Bending test results showed that these joints could be used safely when the cladded metal was in compression; otherwise, it would be fractured. Finally, impact test results showed that the fracture toughness of cladded samples was higher than that of flyer material due to the higher fracture toughness of the base material.
机译:目前的工作旨在研究通过爆炸熔覆制备的Ck60 / St37复合板的显微组织和力学性能。爆炸比和隔离距离分别设置为R = 1.7和s = 1.5t。光学和扫描电子显微镜显示,界面处的键合呈波浪形,但沿界面形成了局部熔化区。通过能量分散光谱分析评估局部熔化区的化学组成。该分析表明,熔化区包括Ck60和St37钢。在爆炸性熔覆界面附近获得了最大硬度。然后将这些值减小与界面的距离。此外,可以看出局部熔化区域,特别是涡旋,具有很高的硬度。覆层金属的剪切试验还表明,按照ASTM A263-12的规定,平均剪切强度高于140 MPa,这意味着可以安全地使用复合板。还通过两种方法通过弯曲试验来考虑粘结强度,一种方法是使包层金属处于拉伸状态,另一种方法使包层金属处于压缩状态。弯曲测试结果表明,当覆层金属处于受压状态时,这些接头可以安全使用。否则会破裂。最后,冲击试验结果表明,由于基材的断裂韧性较高,因此包覆样品的断裂韧性高于飞片材料的断裂韧性。

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