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Quantification of coating surface strains in Erichsen cupping tests

机译:Erichsen拔罐测试中涂层表面菌株的定量

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摘要

Thermosetting polyester-based coatings are used to produce pre-painted metal in the coil coating industry. The coated steel sheet is formed into white goods and architectural cladding, which involves large deformations of the metal and results in large strains in the coating. The Erichsen cupping test is a standard method used to assess the formability, ductility and adhesion of coatings, which induces similar strains to those experienced during forming. It is a qualitative and robust quality control method, but the behaviour of coatings during the test has never been previously studied quantitatively. Failure of coatings on sheet metal during forming is a strain-governed process, so understanding the behaviour of a coating in the Erichsen cupping test will allow the formability, material properties and chemical structure of the polymer to be linked more closely, enabling the development of better coatings. A finite element model has been developed to calculate the coating surface strains for any level of indentation during the test and has been validated using the surface strains during cupping measured by digital image correlation. A master curve of the maximum strain versus the indentation depth (Erichsen index) has been determined. This allows the strain to failure of the coating on a substrate, a critical material property which is otherwise difficult and laborious to obtain, to be simply determined from the Erichsen test for the first time. The relationship between the Erichsen index and maximum surface strain presented here enables users to obtain this material property both from future tests and from the results of historic tests (as many coating suppliers and users have extensive databases of Erichsen test results stretching back many years). This novel framework provides a quantitative method to analyse the performance of coatings used in the coil industry, redeveloping a century-old technique.
机译:热固性聚酯基涂层用于在线圈涂层工业中生产预涂装金属。涂层钢板形成为白色和建筑包层,其涉及金属的大变形并导致涂层中的大菌株。 Erichsen拔罐试验是一种标准方法,用于评估涂层的可成形性,延展性和粘附性,其诱导相似的菌株与成型期间所经历的那些。它是一种定性和坚固的质量控制方法,但在测试期间的涂层的行为从未定量地研究过。在成形过程中涂层上的涂层失效是一种应变治理的过程,因此了解Erichsen拔罐试验中涂层的行为将允许聚合物的可成形性,材料性质和化学结构更接近地连接,从而实现更好的涂料。已经开发了有限元模型以在测试期间计算任何压痕的涂层表面菌株,并且通过数字图像相关测量期间使用表面菌株进行验证。已经确定了最大应变与压痕深度(Erichsen指数)的主曲线。这允许应变在衬底上涂层的损失,否则难以获得的关键材料性能,以便首次从Erichsen测试中确定。这里呈现的Erichsen指数和最大表面应变之间的关系使用户能够从未来的测试和历史考验结果中获得这种材料特性(因为许多涂层供应商和用户都有许多年份的Erichsen测试结果的广泛数据库)。该新颖框架提供了分析线圈行业中使用的涂层性能的定量方法,重新开发了一个世纪历史的技术。

著录项

  • 来源
    《Journal of Materials Science》 |2019年第10期|共13页
  • 作者单位

    Imperial Coll London Dept Mech Engn South Kensington Campus London SW7 2AZ England;

    Becker Ind Coatings Ltd Long Term Dev Lab Goodlass Rd Liverpool L24 9HJ Merseyside England;

    Becker Ind Coatings Ltd Long Term Dev Lab Goodlass Rd Liverpool L24 9HJ Merseyside England;

    Imperial Coll London Dept Mech Engn South Kensington Campus London SW7 2AZ England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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