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Hot Stamping of Boron Steel Using Partition Heating for Tailored Properties: Experimental Trials and Numerical Analysis

机译:硼钢的热冲压使用分区加热,用于定制特性:实验试验和数值分析

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摘要

Hot-stamped components with tailored properties are becoming popular for their better performance in collision. In this article, an M-shaped part with varying properties was formed by hot stamping using partition heating. Different soaking temperatures induce different austenite fractions at the different regions of the blank, resulting in the partitioned microstructure and mechanical properties in a single part. In the high-temperature region, the average tensile strength and elongation are 1565 MPa and 8.65 pct, respectively, and the average tensile strength and elongation are 626 MPa and 24.37 pct, respectively, in the low-temperature region. A finite element model of hot stamping using partition heating was established based on the relationship of austenite fraction with heating temperature determined by the dilatometer test and the stress-strain curve of 22MnB5 with different austenite fractions acquired from the hot tensile test.The differences of temperature, thickness, and Vickers hardness in different zones of the M-shaped part during forming and quenching stages were analyzed. The effects of hot stamping parameters, such as stamping velocity and heating temperature, on the forming and mechanical properties of the tailored M-shaped part were investigated, providing theoretical guidance for the production of tailored hot-stamped components using partition heating. (C) The Minerals, Metals & Materials Society and ASM International 2017.
机译:具有量身定制的热冲压部件正在碰撞中的更好性能。在本文中,通过使用隔板加热通过热冲压形成具有不同性质的M形部分。不同的浸泡温度在坯料的不同区域诱导不同的奥氏体馏分,从而导致单个部分中的分配微观结构和机械性能。在高温区域中,平均拉伸强度和伸长率分别为1565MPa和8.65pct,分别在低温区域中分别为626MPa和24.37pct。基于奥氏体馏分与通过膨胀计试验和22MnB5的应力 - 应变曲线与从热拉伸试验获得的不同奥氏体级分的应力 - 应变曲线的关系建立了使用隔离加热的有限元模型。温度差异分析了在成型和淬火阶段的M形部分的不同区域中的厚度和维氏硬度。研究了诸如冲压速度和加热温度的热冲压参数的效果,对剪裁M部分的成形和机械性能进行了研究,为使用隔离加热提供了定制的热冲压部件的理论指导。 (c)2017年矿物质,金属和材料协会和ASM国际。

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