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A Novel Biaxial Testing Apparatus for the Determination of Forming Limit under Hot Stamping Conditions

机译:用于确定热冲压条件下成型极限的新型双轴测试设备

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摘要

The hot stamping and cold die quenching process is increasingly used to form complex shaped structural components of sheet metals. Conventional experimental approaches, such as out-of-plane and in-plane tests, are not applicable to the determination of forming limits when heating and rapid cooling processes are introduced prior to forming for tests conducted under hot stamping conditions. A novel in-plane biaxial testing system was designed and used for the determination of forming limits of sheet metals at various strain paths, temperatures, and strain rates after heating and cooling processes in a resistance heating uniaxial testing machine. The core part of the biaxial testing system is a biaxial apparatus, which transfers a uniaxial force provided by the uniaxial testing machine to a biaxial force. One type of cruciform specimen was designed and verified for the formability test of aluminum alloy 6082 using the proposed biaxial testing system. The digital image correlation (DIC) system with a high-speed camera was used for taking strain measurements of a specimen during a deformation. The aim of proposing this biaxial testing system is to enable the forming limits of an alloy to be determined at various temperatures and strain rates under hot stamping conditions.
机译:热冲压和冷模淬火工艺越来越多地用于形成复杂形状的钣金结构部件。当在热冲压条件下进行测试之前,先采用加热和快速冷却工艺,然后采用常规实验方法(例如平面外和平面内测试)不适用于确定成形极限。设计了一种新颖的平面内双轴测试系统,并将其用于确定电阻加热单轴测试机在加热和冷却过程后在各种应变路径,温度和应变率下的钣金成形极限。双轴测试系统的核心部分是双轴设备,它将单轴测试机提供的单轴力转换为双轴力。设计了一种十字形试样,并使用提出的双轴测试系统对铝合金6082的成形性进行了验证。带有高速相机的数字图像相关(DIC)系统用于在变形过程中对样品进行应变测量。提出该双轴测试系统的目的是使得能够在热冲压条件下在各种温度和应变速率下确定合金的成形极限。

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