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Thread milling as a manufacturing process for API threaded connection: Geometrical and cutting force analysis

机译:螺纹铣削作为API螺纹连接的制造过程:几何和切削力分析

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摘要

Thread connection is one of the main unions for oil tubing and casing and its failure leads to deterioration of seal performance and connection strength. The machining process that produces threads by milling allows a higher speed velocity with a lower feed per tooth and, as a consequence, it promotes the lower forces compared to other manufacturing processes. Thread milling forces has been studied in metrical threads but there are not similar studies on API thread manufacturing. This article presents a study on thread milling cutting forces for API connection. Geometrical chip load analysis and mechanistic model are presented and experimental tests are developed using different feed per tooth. The experimental force data was used to calculate cutting pressure for force model. Surface quality is analyzed using the roughness data from machined surfaces. Flank and face surfaces did not present different roughness level. Also feed per tooth and vertical position did not presented influence on thread surface roughness. As a conclusion, the thread milling process is considered a good option for the manufacturing of API threads with force prediction that can be used to define machining parameters.
机译:螺纹连接是油管和套管的主要接头之一,其失效会导致密封性能和连接强度下降。通过铣削生产螺纹的加工过程允许较高的速度速度和较低的每齿进给量,因此,与其他制造过程相比,它可以促进较低的力。已经在公制螺纹中研究了螺纹铣削力,但是在API螺纹制造方面没有类似的研究。本文介绍了用于API连接的螺纹铣削切削力的研究。提出了几何切屑载荷分析和机械模型,并使用每颗齿的不同进给进行了实验测试。实验力数据用于计算力模型的切削压力。使用加工表面的粗糙度数据分析表面质量。侧面和端面的粗糙度不同。同样,每齿进给量和垂直位置对螺纹表面粗糙度没有影响。结论是,螺纹铣削工艺被认为是制造具有力预测的API螺纹的好选择,该力预测可用于定义加工参数。

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