首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Texture evolution of ferritic (AISI 430) stainless steel strips during cold rolling, annealing and drawing
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Texture evolution of ferritic (AISI 430) stainless steel strips during cold rolling, annealing and drawing

机译:铁素体(AISI 430)不锈钢带材在冷轧,退火和拉拔过程中的织构演变

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摘要

The evolution of the crystallographic texture of ferritic stainless steels, starting from the as received (hot rolled) condition from the steel mill, going through cold rolling, annealing and final stamping is analyzed in this paper. Two ferritic stainless steels (Nb stabilized) having a thickness of 3.0 and 0.7mm, have been employed. The thicker one has been cold rolled to 40 and 73% thickness reduction, annealed at 750 and 850℃ for 1 hour. The thinner one, with a similar composition, has been 77% cold rolled and annealed at 870℃ at the steel plant and subsequently submitted to deep drawing in order to evaluate texture and drawability. Texture has been evaluated using DRX in the as received, cold rolled, annealed and after drawing conditions. Drawability has been evaluated using tensile testing in order to obtain the FLC curves. AISI 430 stainless steel, in the as received condition presented a strong {100} texture in the <110> and <120> directions and the gamma fiber. After cold rolling, the material presented stronger gamma and weaker alpha fibers. Annealing of the cold rolled samples conduced to the vanishing of the alpha and strengthening of the gamma fiber, adequate for deep drawing operations. In spite of the AISI 430 of 0.7mm having presented a strong gamma fiber, other deep drawing properties were not adequate and the material cracked during stamping.
机译:本文分析了铁素体不锈钢晶体结构的演变过程,从钢厂的接收(热轧)状态开始,经过冷轧,退火和最终冲压。已经使用了两种厚度为3.0和0.7mm的铁素体不锈钢(稳定Nb)。将较厚的厚薄板冷轧至厚度减少40%和73%,在750和850℃退火1小时。具有相似成分的较薄的薄钢板已在钢铁厂进行了77%的冷轧和870℃退火,然后进行了深冲,以评估其织构和可拉伸性。已经在接收,冷轧,退火和拉伸后的条件下使用DRX对纹理进行了评估。为了获得FLC曲线,已经使用拉伸试验评估了可拉伸性。 AISI 430不锈钢在接收状态下在<110>和<120>方向上呈现出很强的{100}织构,并带有伽马纤维。冷轧后,材料呈现出更强的伽玛纤维和更弱的α纤维。冷轧样品的退火有助于α的消失和γ纤维的增强,足以进行深冲操作。尽管0.7mm的AISI 430具有很强的伽玛纤维,但其他深冲性能却不足,冲压时材料也会破裂。

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