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Feasibility study on direct flame impingement heating applied for the solution heat treatment, forming and cold die quenching technique

机译:直接火焰冲击加热用于固溶热处理,成形和冷冲模技术的可行性研究

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摘要

The solution heat treatment, forming and cold die quenching (HFQ) process has been developed and adopted for forming high strength complex-shaped components of light alloys in the automotive industry. In order to exploit and increase the competitiveness of this technology, production cycle time and manufacturing costs need to be reduced to enable high productivity and energy efficiency. This can be realised by reducing the cycle time for heating a metallic sheet to its solution heat treatment temperature during the HFQ process, and by decreasing post ageing time. Rapid heating methods are capable of providing a solution to be integrated into this novel forming technique of HFQ. This paper presents feasibility study on the adoption of the direct flame impingement (DFI) heating method that has a high potential for non-ferrous blanks to achieve higher heating rate in HFQ processes, compared to convection heating in a conventional furnace. The adaptability of DFI heating for HFQ process has been validated, in terms of capability of high heating rate, quality of surface layer examination and lap-shear strength measurement of bonded samples.
机译:已经开发并采用固溶热处理,成型和冷模淬火(HFQ)工艺在汽车工业中形成轻合金的高强度复杂形状零件。为了开发和提高该技术的竞争力,需要减少生产周期和制造成本,以实现高生产率和能源效率。这可以通过减少在HFQ过程中将金属板加热到固溶热处理温度的周期时间以及减少后时效时间来实现。快速加热方法能够提供一种解决方案,可以集成到这种新颖的HFQ成型技术中。本文介绍了采用直接火焰冲击(DFI)加热方法的可行性研究,与常规炉中的对流加热相比,该方法对有色金属坯料在HFQ工艺中具有更高的加热速率具有很高的潜力。在高加热速率,表面层检查质量和粘结样品的搭接剪切强度测量方面,已经验证了DFI加热对HFQ工艺的适应性。

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