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Experimental Investigation of the Formability of Organic Coated Steel Sheet Metal

机译:有机涂层钢金属板材成形性的实验研究

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Application of the coating to material in a flat condition has economical, technological and ecological advantages. As the material is subsequently formed into shape not only the base material needs to withstand this process but the coating as well. Development of forming tools for coated metals is mainly concerned with the prediction of performance of the base material and does not analyse the condition of the coating. However, during the forming process, major surface damage can occur when the coated sheet is bent and unbent around the die geometry. To reduce surface damage of coatings, proper control of the parameters during forming and a detail study of the surface conditions is required. This research is conducted on metallically and organically coated sheet material which is commonly used for structural applications. The crack density of the coating is analysed during a deep drawing process and a forming limit diagram is obtained from the biaxial straining of the prepainted steel samples. The results show that cracks initiate from within the organic coating and are linked to the strain in the base material.
机译:涂层在扁平条件下将涂层应用具有经济,技术和生态的优势。随后由于材料而形成,不仅是基材需要承受该过程但也需要承受该过程。涂覆金属的形成工具的开发主要涉及预测基材的性能,并不分析涂层的条件。然而,在成形过程中,当涂层的片材弯曲并且在模具几何周围弯曲时,可以发生主要表面损坏。为了减少涂层的表面损伤,需要适当地控制成形过程中的参数和表面条件的详细研究。该研究在金属和有机涂层的片材上进行,常用于结构应用。在深拉伸过程中分析涂层的裂纹密度,并且从预先预浸钢样品的双轴紧张获得形成极限图。结果表明,裂缝从有机涂层内引发,并与基材中的菌株连接。

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