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Study on Chip Breaking Behavior of 3-D Complex Groove Insert in Machining Carbon Constructional Steel at High Cutting Speeds

机译:高切割速度加工碳结构钢3-D复复槽插入件芯片破碎行为的研究

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This paper deals with chip breaking behaviour of 3-D complex groove inserts in machining carbon constructional steel-45 steel at high cutting speeds .Cutting experiments were performed at eleven different cutting speeds. Firstly, the results showed that by increasing cutting speeds, the changes of the critical feedrate and chip breaking scopes at high cutting speeds machining with 3-D complex groove inserts were nonlinear and not monotonous function relations. Then, mathematic models were built. Secondly, the results showed that the critical depth of cut was a constant value at various cutting speeds. And, the curves of the critical depth of cut were perpendicular lines. For this purpose, the critical depth of cut mathematic model has been built. The study above lays a theory and basis for future investigation of the mechanism of chip breaking with 3-D groove insert in high speed machining.
机译:本文在高切削速度下处理了在加工碳结构钢-45钢中的3-D复杂槽插入件的碎屑断裂行为。在11种不同的切削速度下进行实验。首先,结果表明,通过增加切削速度,通过3-D复槽插入件加工高切削速度的临界进给率和芯片破碎范围的变化是非线性的,而不是单调的函数关系。然后,建立了数学模型。其次,结果表明,切割临界深度是各种切削速度的恒定值。而且,临界切割深度的曲线是垂直线。为此目的,建立了临界数学模型的临界深度。上述研究为未来调查了在高速加工中用3-D槽插入件的芯片破碎机理的理论和基础。

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