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TRIBOLOGICAL CHARACTERIZATION OF STEELS FOR CUTLERY: A NEW METHODOLOGY TO ACCESS CUTTING EDGE SHARPNESS

机译:用于餐具钢的摩擦学特征:一种进攻尖锐锐度的新方法

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In this work, the tribological behaviour of stainless steel used in cutlery is analysed. Professional knives were tested in well-controlled field conditions and the mechanism of cutting edge loss of sharpness was determined by using Scanning Electron Microscopy. It was determined that the mechanism which causes loss of sharpness in the cutting edge is plastic deformation whereas the edge life itself is mainly affected by abrasive wear during the resharpening process and the sliding wear that occurs while the knife is being used. A new methodology based on the energy that causes plastic deformation is proposed in order to access the bending resistance of the cutting edge. The proposed technique is very simple and cost effective. It reproduces to a great extent the field mechanisms that cause the loss of sharpness in the cutting edge and allows the ranking of different stainless steels usually used by the cutlery industry. Additionally, abrasive and sliding wear tests were carried out on martensitic and ferritic stainless steels. Although the chemical composition and heat treatment considerably modified the microstructure and hardness of the steels, they had no significant effect on abrasion resistance and friction coefficient. On the other hand the sliding wear rate was greatly affected by the chemical composition of the steel.
机译:在这项工作中,分析了餐具中使用的不锈钢的摩擦学行为。通过使用扫描电子显微镜测定专业刀具在良好控制的现场条件下进行测试,并且通过扫描电子显微镜测定切削刃突出的机理。确定导致切削刃中锐度损失的机构是塑性变形,而边缘寿命本身主要受重配过程中磨料磨损的影响,并且在使用刀时发生的滑动磨损。提出了一种基于导致塑性变形的能量的新方法,以进入切削刃的弯曲电阻。所提出的技术非常简单且成本效益。它在很大程度上再现了导致切削刃中锐度损失的现场机制,并允许通常由餐具行业使用的不同不锈钢的排序。另外,在马氏体和铁素体不锈钢上进行磨料和滑动磨损试验。虽然化学成分和热处理显着修饰了钢的微观结构和硬度,但它们对耐磨性和摩擦系数没有显着影响。另一方面,滑动磨损率受到钢的化学成分的大大影响。

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