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首页> 外文期刊>Periodica Polytechnica. Mechanical Engineering >Experimental Model for the Main Cutting Force in Face Milling of a High Strength Structural Steel
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Experimental Model for the Main Cutting Force in Face Milling of a High Strength Structural Steel

机译:高强度结构钢平面铣削中主切削力的实验模型

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摘要

Machining and more specifically face milling are productive ways of material shaping. Predictive models are very important for effective: quick, easy-to-use and accurate process planning. There are many industrial and scientific researches about modelling the prominent process parameters of machining, notably the machining forces. The main cutting force is one of the most important indicators as it is a primary output parameter of the chip-removing process. The specific cutting force is long time used, traditional type of modelling the main cutting force but still there are missing or difficult-to-find numerical information about the effect of some of the input machining parameters such as cutting speed. In this research, the effects of the theoretical chip-section geometry and the cutting speed were examined through face milling experiments of the S960QL high strength structural steel.
机译:机加工,更具体地说是端面铣削是材料成型的有效方法。预测模型对于有效非常重要:快速,易于使用和准确的过程计划。关于建模加工的主要过程参数,特别是加工力的方法,有许多工业和科学研究。主切削力是最重要的指标之一,因为它是排屑过程的主要输出参数。特定的切削力需要长时间使用,传统的建模方法是对主要切削力进行建模,但是仍然缺少有关某些输入加工参数(例如切削速度)的影响的数值信息,或者这些信息很难找到。在这项研究中,通过S960QL高强度结构钢的端面铣削实验研究了理论切屑截面几何形状和切削速度的影响。

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