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Investigating the Machinability of AISI 420 Stainless Steel Using Factorial Design

机译:使用析因设计研究AISI 420不锈钢的可加工性

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摘要

This work aims at studying the machining characteristics of high-strength materials using carbide cutting tool inserts at different cutting conditions. This is an essential step in building up an accurate machining information system. The tested material is high-strength stainless steel of the AISI 420 type. Machining tests were carried out using orthogonal cutting conducted to investigate the machining characteristics for high-strength stainless steel AISI 420 at different cutting conditions and tool rake angles. This assessment is achieved by investigating the effect of cutting parameters (cutting speed, feed, depth of cut, and tool geometry) on cutting forces, specific cutting energy, shear angle, coefficient of friction, shear stress, shear strain, and shear strain rate. Empirical equations and a correlation for the behavior of each of the output responses were investigated as a function of the independent variables. Main effect and interaction plot were presented for the most influential factors affecting the main cutting force and the power consumed.
机译:这项工作旨在研究在不同切削条件下使用硬质合金切削刀片的高强度材料的机械加工特性。这是建立准确的加工信息系统的重要步骤。被测试的材料是AISI 420类型的高强度不锈钢。使用正交切削进行机加工测试,以研究高强度不锈钢AISI 420在不同切削条件和刀具前角下的加工特性。通过研究切削参数(切削速度,进给,切削深度和刀具几何形状)对切削力,比切削能,剪切角,摩擦系数,剪切应力,剪切应变和剪切应变率的影响,可以实现该评估。 。研究了经验公式和每个输出响应的行为的相关性,这些函数是自变量的函数。给出了影响主切削力和消耗功率的最有影响力的因素的主要作用和相互作用图。

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