用拉伸性能分析不同厚度AISI 304钢板的成形性

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY UIS Ingenierias Pub Date : 2022-12-09 DOI:10.18273/revuin.v21n4-2022009
Jhon Barbosa-Jaimes, I. García-Páez, Victoriano García-Medina
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引用次数: 0

摘要

尽管AISI 304钢被广泛使用,其制造商在质量证书中提供了电阻数据,但这些数据不足以表征和预测板材在拉伸和拉伸过程中的行为。这就是为什么这项工作的目的是分析哥伦比亚金属加工行业使用的AISI 304钢板的16-(厚度1.5 mm), 18- (1.2 mm)和20- (0.9 mm)量规的成形性,通过确定与板材承受拉伸和拉伸操作能力相关的固有特性,如应变硬化指数n,正常各向异性rm和平面各向异性Δr。方法包括分析化学成分、金相研究和一系列拉伸试验。结果表明:该钢的显微组织为奥氏体孪晶,晶粒尺寸在15 ~ 30 mm之间;力学阻力方面,极限阻力、弹性极限和伸长率的平均值均高于标准规定的最小值。拉伸试验结果随轧制方向(0°、45°和90°)角度的变化而变化,表明了板料的各向异性。最相关的结果使我们能够推断,20规格板具有更好的成形性,因此,更好的行为对拉伸和拉伸过程。
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Analysis of formability of AISI 304 steel sheets with different thicknesses by the tensile properties
Although AISI 304 steel is widely used and its manufacturers provide resistance data in the quality certificate, these are not sufficient to characterize and predict the behavior of the sheets in the drawing and drawing processes. This is why the objective of this work was to analyze the formability of AISI 304 steel sheets with 16- (thickness 1.5 mm), 18- (1.2 mm), and 20- (0.9 mm) gauges used by the metalworking industry in Colombia by determining intrinsic properties related to the ability of the sheet to withstand stretching and drawing operations such as the strain hardening exponent n, the normal anisotropy rm, and the planar anisotropy Δr. The methodology consisted of analyzing the chemical composition, a metallographic study, and a series of tensile tests. The results show that the steel has a microstructure of twinned austenite grains of size between 15-30 mm. Regarding the mechanical resistance, it was observed that all the mean values of ultimate resistance, elastic limit, and elongation are above the minimum established in the standard. Furthermore, all of the tensile test results changed according to the variation of angles concerning the rolling direction (0°, 45°, and 90°), which indicates the anisotropic character of the sheet. The most relevant result allows us to infer that the 20-gauge sheet has better formability and therefore, better behavior against the stretching and drawing processes.
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来源期刊
UIS Ingenierias
UIS Ingenierias ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
27
审稿时长
12 weeks
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