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Fabrication of Lotus-Type Porous Carbon Steel Slabs by Continuous Casting Technique in Nitrogen Atmosphere

机译:氮气气氛下连铸莲花型多孔碳钢板坯的制备

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摘要

Lotus-type porous carbon steel slabs with long cylindrical pores aligned in one direction were fabricated by the continuous casting technique in a mixture gas of N_2 0.8 MPa and Ar 1.7 MPa or in N_2 2.5 MPa at various transfer velocities from 2.5 mm·min~(-1) to 20 mm·min~(-1). The pore size in lotus carbon steel fabricated in the mixture gas of nitrogen and argon was small and homogeneous, whereas the pore size in nitrogen had bimodal distribution depending on the transfer velocity. The large pores were observed mainly at the edge of the slab, which are considered to be merged of several inclined pores. The porosity depended on nitrogen partial pressure, which is explained by Sieverts’ law. The hardness of lotus carbon steel matrix increased, which was attributed to the solid-solution of nitrogen.
机译:通过连续铸造技术,在N_2 0.8 MPa和Ar 1.7 MPa或N_2 2.5 MPa的混合气体中,以2.5 mm·min〜(各种传输速度)通过连续铸造技术制造出具有沿一个方向排列的长圆柱孔的莲花型多孔碳钢板。 -1)至20 mm·min〜(-1)。在氮气和氩气的混合气体中制备的莲花碳钢的孔径小而均匀,而氮气的孔径取决于传输速度具有双峰分布。大孔主要在板的边缘观察到,被认为是几个倾斜孔的合并。孔隙率取决于氮分压,这可以通过Sieverts定律来解释。莲花碳钢基体的硬度增加,这归因于氮的固溶体。

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