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Study of hot ductility of microalloyed steels under continuous casting conditions

机译:连续铸造条件下微合金钢的热延展性研究

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The present study applies remelting andsolidification in situ technique to simulate the continuouscasting process. The hot ductility of three low carbon steels ofC-Mn, C-Mn-Nb, and C-Mn-V-Ti alloy systems is studied. Allthree steels show low hot ductility trough. The lowest hotductility temperature is 750oC for C-Mn steel and C-Mn-V-Tisteel, while that for C-Mn-Nb steel is 800oC. The primarybrittle fracture mechanism is intergranular fracturing. Thehighest precipitation temperature of nitride or carbide ofmicroalloy elements determines the upper limit of the hotductility trough range.
机译:本研究适用于原位技术的重熔和叠合化来模拟连铸过程。研究了三种低碳钢的热延展性,C-Mn,C-Mn-Nb和C-Mn-V-Ti合金系统。 Allthree Steels显示出低热延性槽。对于C-Mn钢和C-Mn-V-TiSteel,最低的热调节温度为750℃,而C-MN-NB钢的钢是800oC。均粒细胞骨折机制是骨间压裂。氮化物的最高沉淀温度或碳化物元素的碳化物确定了热调节槽系列的上限。

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