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The effect of tool geometry and cutting speed on main cutting force and tool tip temperature

机译:刀具几何形状和切削速度对主切削力和刀尖温度的影响

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摘要

In this paper, the effects of rake angle and entering angle in tool geometry and cutting speed on cutting force components and the temperature generated on the tool tip in turning were investigated. The data used for the investigation derived from experiments conducted on a CNC lathe according to the full factorial design to observe the effect of each factor level on the process performance. As the experiments were designed using an orthogonal arrays, the estimates of the average effects will not be biased. During the tests, the depth of cut and feedrate were kept constant and each test was conducted with a sharp uncoated tool insert. For a comparison, the main cutting force and the temperature generated in secondary shear zone for different cutting parameters and tool geometries were calculated by Kienzle approach and with based on orthogonal cutting mechanism, respectively. The average deviation between measured and calculated force results were found as 0.26 percent. For statistical analyze the orthogonal arrays as L16 was used with a total of 16 tests. Finally, it was found that rake angle was effective on all the cutting force components, while cutting speed was effective on the tool tip temperature. The cutting force signals and temperature values provided extensive data to analyse the orthogonal cutting process.
机译:本文研究了前角和进入角在刀具几何形状和切削速度中对切削力分量以及车削时刀尖上产生的温度的影响。用于调查的数据来自根据全因子设计在CNC车床上进行的实验,以观察每个因子水平对过程性能的影响。由于实验是使用正交阵列设计的,因此平均效果的估算值将不会产生偏差。在测试过程中,切削深度和进给速度保持恒定,并且每次测试均使用锋利的无涂层刀具刀片进行。为了进行比较,分别采用Kienzle方法和基于正交切削机理,分别计算了不同切削参数和刀具几何形状的主切削力和在次级剪切区产生的温度。测量和计算的力结果之间的平均偏差为0.26%。为了进行统计分析,使用了L16正交阵列,总共进行了16次测试。最后,发现前角对所有切削力分量均有效,而切削速度对刀尖温度则有效。切削力信号和温度值提供了广泛的数据来分析正交切削过程。

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