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High strength bimetallic composite material fabricated by electroslag casting and characteristics of its composite interface

机译:电渣铸造高强度双金属复合材料及其复合界面特性

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摘要

Bimetallic composite material of bainitic steel and PD3 steel was produced with electroslag casting process, and element distribution of its composite interface was investigated by theoretical calculation and energy dispersive spectrometer (EDS). Results show that the tensile strength (1,450 MPa), hardness (HRC 41-47) and impact toughness (94.7J·cm-2) of bainitic steel were comparatively high, while its elongation was slightly low (4.0%). Tensile strength (1,100 MPa), hardness (>HRC 31) and elongation (7.72%) of the interface were also relatively high, but its impact toughness was low at 20.4 J·cm-2. Results of theoretical calculation of the element distribution in the interface region were basically consistent with that of EDS. Therefore, electroslag casting is a practical process to produce bimetallic composite material of bainitic steel and PD3 steel, and theoretical calculation also is a feasible method to study element distribution of their interface.
机译:采用电渣铸造工艺生产了贝氏体钢和PD3钢的双金属复合材料,并通过理论计算和能谱仪研究了其复合界面的元素分布。结果表明,贝氏体钢的拉伸强度(1,450 MPa),硬度(HRC 41-47)和冲击韧性(94.7J·cm-2)相对较高,而伸长率则略低(4.0%)。界面的拉伸强度(1100 MPa),硬度(> HRC 31)和伸长率(7.72%)也相对较高,但其冲击韧性较低,为20.4 J·cm-2。界面区域元素分布的理论计算结果与EDS基本一致。因此,电渣铸造是生产贝氏体钢和PD3钢双金属复合材料的实用工艺,理论计算也是研究其界面元素分布的可行方法。

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