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Orthotropic effect and strain dependency of paperboard on load characteristic of center bevel cutter indented on paperboard

机译:纸板的正交各向异性效应和应变相关性对压入纸板的中心斜切刀负荷特性的影响

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This paper reports about deformation behavior of coated paperboard during indentation of a trapezoidal center bevel cutter. The indentation was investigated experimentally in the initial compression stage when no crack or fracture occurred yet. By reviewing the uniform compressive testing of paperboard in the direction of thickness, proposed equivalent moduli were analyzed experimentally by considering strain dependency. By analyzing the correlation between cutting resistance and compressive testing, it has been revealed that out-of-plane equivalent moduli are the primary factors used to characterize the indentation load response when the blade tip's thickness is >10 mum. The cutting pressure on the blade tip has a linear relationship to the uniform compressive testing. Regarding the surface layer breaking, it has been found that in-plane mechanical properties such as the coated layer's friction influence the magnitude of the first peak load, while the upsetting maximum resistance per unit tip thickness is independent to the existence of coated layer.
机译:本文报道了梯形中心斜切刀压痕过程中涂层纸板的变形行为。在最初的压缩阶段,当还没有裂纹或断裂发生时,对压痕进行了实验研究。通过回顾纸板在厚度方向上的均匀压缩试验,通过考虑应变相关性,对建议的等效模量进行了实验分析。通过分析切削阻力与压缩测试之间的相关性,发现当刀片尖端的厚度> 10μm时,平面外等效模量是表征压痕载荷响应的主要因素。刀片尖端上的切削压力与均匀的压缩测试具有线性关系。关于表面层的破裂,已经发现,诸如涂层的摩擦之类的面内机械性能影响第一峰值载荷的大小,而每单位尖端厚度的不安最大电阻与涂层的存在无关。

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