切削直接破坏金属的机理

K. V. Bannov, A. Gradoboev, V. Matveev
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引用次数: 1

摘要

本文在标准流体力学表述的基础上,提出了金属切削定向破坏的物理模型。金属的切削过程被认为是一个定向破坏过程,即金属的深度塑性变形过程总是导致切削表面的破坏,这是由过程运动学定义的。介绍了剃须内接触区液体合金(脊状)零件切削刀具的设计。脊的几何形状和尺寸的物理力学性质证明了脊是由熔化金属在环境中快速冷却而形成的。脊和刀具表面修饰层的力学特性的一致性证明了它们在液态金属中形成的条件的一致性。给出了物理模型的实验证据。
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Mechanism of the directed destruction of metals by cutting
In the given article, on the basis of the standard hydrodynamic representations, the physical model of the directed destruction of metals by cutting is offered. Process of cutting of metals is considered as process of the directed destruction, i.e. process of deep plastic deformation of metal always led up to destruction on surfaces of the cutting, defined by process kinematics. The design of the metal-cutting tool for part removal liquid-alloy (in the form of a ridge) from an internal contact zone of shaving is presented. Physicomechanical properties of ridges both their geometrical form and the sizes testify that they are formed of a stream of the melted metal owing to fast cooling in environment. Identity of mechanical properties of ridges and the modified layer on a tool surface of shaving testify to identity of conditions of their formation from liquid metal. The experimental evidence of the offered physical model is produced.
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