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Delamination in deformed polymer laminated sheet metals

机译:变形聚合物层压板金属中的分层

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Polymer laminated sheet metal (PLSM) is a layered material in which a thin polymer film is bonded to a sheet metal substrate by means of an adhesive layer. The PLSMs could potentially be used as the blank materials for forming applications such as sheet drawing and stamping. Due to the difference in formability of metallic and polymeric components in the PLSMs, deformation of these materials induces residual stress in the polymer adherend involving thin film and adhesive layer. The residual stress, consequently, may cause interfacial de lamination of polymer adherend and hence limit forming applications of the PLSMs. This paper presents an experimental method based on shear punching of uniaxially deformed PLSMs for the assessment of interfacial delamination between metallic substrate and polymer adherend. The experimental results show that the interfacial delamination depends on the amount of deformation and type of the polymer adherend material. In addition, it is shown that the deformation-induced delamination at the interface between the polymer adherend and metallic substrate is a retardation process and can be characterized by the three-parameter Voigt rheological model. Beyond the capabilities of the experiment, the Voigt model can estimate the amount of pure elastic delamination, which occurs immediately upon load removal after deformation.
机译:聚合物层压金属板(PLSM)是一种层状材料,其中薄聚合物膜通过粘合剂层粘合到金属板基材上。 PLSM可能用作用于形成纸张图和冲压的应用的空白材料。由于金属和聚合物组分在PLSMS中的成形性差异,这些材料的变形在涉及薄膜和粘合剂层的聚合物粘附层中诱导残余应力。因此,残留应力可能导致聚合物粘附的界面de层压,因此限制了PLSM的形成应用。本文介绍了一种基于单轴变形PLSMS剪切冲击的实验方法,用于评估金属基材和聚合物粘附之间的界面分层。实验结果表明,界面分层取决于聚合物粘附材料的变形和类型。另外,示出了聚合物粘附和金属基材之间的界面处的变形诱导的分层是延迟过程,并且可以通过三参数Voigt流变模型表征。除了实验的能力之外,voIGT模型可以估计纯弹性分层的量,在变形后在负载后立即发生。

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