Analisa pengaruh jarak cutting torch terhadap permukaan berputar pada mesin pemotong kontur sambungan pipa

A. Akhyan, H. Salam
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引用次数: 1

Abstract

Currently steel pipes are needed, especially in construction work. Construction with pipe materials cannot be separated from the process of joining and cutting. The cutting process for large pipes always uses a thermal cutting process. This study aims to determine how much influence the cutting distance has on the cutting results on a pipe that rotates at a constant 0.8 rpm following the shape of the corner joint contour. To achieve the objectives of this study, a pipe cutting tool with a diameter of 4 to 6 inches is needed with the thermal cutting method using the Oxy Acetylene Cutting (OAC) process This research data was obtained by cutting the 4inch pipe schedule 10s, schedule 20s and schedule 40s in a rotating condition and the cutting torch moves back and forth. The pipe rotates at 0.8 rpm using an AC motor transmitted using a gearbox connected to the wheel as a holder where the pipe rotates. The results of the cutting are in the form of a pipe connection contour with an angle of 900 and 600. As the independent variable in this study was set the cutting distance is 5mm, 7mm and 10 mm, while the fixed variables are determined by cutting speed 280 mm/minute, acetylene gas pressure 3.5 kg/cm2 and oxygen 17.5 kg/cm2. In order to get effective results, preheat the surface of the pipe with a gas fuel mixture until it reaches the melting temperature of the pipe as the main ingredient. The cutting results that meet the entire path of the pipe can be cut completely and through and there is very little splash or melt dirt during the cutting process. After cutting, the best results are obtained at a cutting distance of 5 mm both on schedule 10s, schedule 20s and schedule 40s.
分析火炬在与管道插销相连的旋转表面切割的距离
目前需要钢管,特别是在建筑工程中。用管材施工离不开连接和切割的过程。大型管道的切割工艺通常采用热切割工艺。本研究旨在确定切割距离对沿转角接头轮廓形状以0.8 rpm恒定转速旋转的管道切割结果的影响程度。为了达到本研究的目的,采用氧乙炔切割(OAC)工艺的热切割方法,需要直径为4 ~ 6英寸的管材切割刀具。本研究数据是通过在旋转条件下切割4英寸管材的时间表10、时间表20和时间表40,切割炬来回移动来获得的。管道以0.8转/分的速度旋转,使用交流电机传输,齿轮箱连接到车轮作为管道旋转的支架。切割的结果以900和600角的管道连接轮廓的形式出现。本研究设置的自变量为切割距离5mm、7mm和10mm,固定变量为切割速度280 mm/min、乙炔气体压力3.5 kg/cm2、氧气17.5 kg/cm2。为了获得有效的效果,以气体燃料混合物为主要成分,对管道表面进行预热,直至达到管道的熔化温度。切割结果满足管道的整个路径,可以切割完全和贯穿,并且在切割过程中很少有飞溅或熔化的污垢。切削后,在10s、20s和40s下,切削距离均为5mm时效果最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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