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Durability of Cutting Performance of a Knife and Micro-Structural Change of a Knife Edge

机译:刀切割性能的耐用性和刀刃的微观结构变化

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摘要

The tested knife material here is mainly SUS420J2 (a kind of stainless steel). This kind of knife is very popular for daily use. From SEM observation of the initial state of the knife-edge tip after the burr removal treatment, we find either some burr and/or a micro-groove, or no burr and no micro-groove along the edge-tip. In order to abrade intentionally, the edge of a knife is repeatedly rubbed perpendicularly to the surface of a Japanese cypress woodblock using the durability-testing machine. During this rubbing process, the abrasion and/or crushing of the edge tip are observed by SEM in detail. The frictional load between the knife-edge and the woodblock is measured. Using the cutting-test machine, the cutting performance of the abraded knives is evaluated by the number of cut pieces of paper. It is discovered that the groove evolves and grows on the edge tip with abrading operation. Moreover, it is concluded that both micro-sidewalls of the groove play a role as cutting edges (i.e., the secondary edge) and this secondary edge and the groove width govern the durability of cutting performance of the knife. Especially the groove width governs it most. These conclusions are also valid for the knives made of other materials such as SUS410.and SUP10.
机译:此处测试的刀具材料主要是SUS420J2(一种不锈钢)。这种刀在日常使用中非常流行。从对毛刺去除处理后的刀尖尖端的初始状态的SEM观察中,我们发现在刀尖上有一些毛刺和/或微沟槽,或者没有毛刺且没有微沟槽。为了有意地进行磨损,使用耐久性试验机将刀的边缘垂直于日本柏木块的表面垂直地反复摩擦。在该摩擦过程中,通过SEM详细观察到边缘尖端的磨损和/或压碎。测量刀口和木刻之间的摩擦载荷。使用切割试验机,通过切纸的数量评估磨刀的切割性能。已经发现,通过研磨操作,凹槽在边缘尖端上发展并生长。而且,可以得出结论,凹槽的两个微侧壁都起着切削刃的作用(即,第二边缘),并且该第二边缘和凹槽宽度决定了刀的切削性能的耐久性。尤其是凹槽宽度最为重要。这些结论对于其他材料(例如SUS410和SUP10)制成的刀具也有效。

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