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The influence of warm forming conditions on the natural aging and springback of a 6016-T4 aluminum alloy

机译:温热成型条件对6016-T4铝合金的自然老化和回弹的影响

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Heat treatable aluminum alloys are very attractive materials to replace traditional steels in automotive body-in-white construction. However, their reduced formability and high springback limits their application in sheet metal forming operations. Moreover, these alloys are prone to natural aging that causes variability in forming operations and increases the amount of scrap. Warm forming can be a very interesting solution to improve formability and reduce springback. However, depending on the processing time, precipitation hardening may occur during the warm forming of these heat treatable alloys. Thus, punch speed has a major influence on the success of sheet metal forming operations. The present study addresses the influence of natural aging and punch speed in the warm forming of an Al-Mg-Si alloy: EN AW 6016-T4. The thermo-mechanical behavior was studied in function of temperature (from 22 to 300 °C), punch speed (from 0.1 to 10 mm?s~(-1)) and storage time (from 1 to 18 months), using uniaxial tensile tests, cylindrical cup tests, and split ring (springback) tests. Warm temperatures between 200 and 250 °C reduce the flow stress, minimizing the effects of natural aging on the variability of the mechanical properties. A high punch speed is advantageous since it minimizes the occurrence of precipitation hardening which contributes to increase the springback. Thus, warm conditions at high punch speed can be used as an effective solution to minimize the variability caused by the natural aging in forming operations of heat treatable aluminum alloys.
机译:热处理铝合金是非常有吸引力的材料,以取代汽车机身施工中的传统钢。然而,它们的可成形性和高回弹降低限制它们在金属板形成操作中的应用。此外,这些合金易于自然老化,导致成形操作的可变性并增加废料量。温暖的成型可以是一种非常有趣的解决方案,以提高成形性并减少回弹。然而,取决于处理时间,在热成型过程中可能发生沉淀硬化。因此,冲孔速度对金属板形成操作的成功产生了重大影响。本研究解决了Al-Mg-Si合金的热成型中的天然老化和冲压速度的影响:en AW 6016-T4。使用单轴拉伸,在温度(从22至300℃),冲床速度(0.1至10mm =(-1))和储存时间(从1至18个月)中进行热机械行为。测试,圆柱杯测试和分割环(回弹)测试。温度温度在200到250°C之间降低流量应力,最大限度地减少了自然老化对机械性能可变性的影响。高冲孔速度是有利的,因为它最大限度地减少了沉淀硬化的发生,这有助于增加回弹。因此,高冲孔速度的温暖条件可用作有效的解决方案,以最小化由天然老化在形成热处理铝合金的操作时引起的变化。

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