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Parametric study on drilling of GFRP composite pipe produced by filament winding process in different backup condition

机译:不同备用条件下长丝缠绕法生产GFRP复合管的钻井参数研究

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Generally, there is a need for machining to complete the process of manufacturing and assembling composite pipes. One of the principal processes of composite machining is drilling. In this process, the mechanical strength of the composite pipes is reduced by the delamination. In this paper, the effect of drilling parameters such as spindle speed, feed rate, diameter and drill geometry on the thrust force and the delamination factor for the composite pipes produced by the filament winding process are investigated in "a without backup state". Then, sample parameters which have the minimum and maximum delamination area are selected and these pipes are drilled in ice supported condition based on the selected parameters, by analyzing the results and determining the size of the delamination area. Then the drilled specimens are loaded under pressure test and their residual compressive strength is obtained. The results show that, thrust force variations and delamination factor decreasing is because of choosing twist drill and reducing feed rate, increasing spindle speed and drill diameter. Also by using ice as a backup, the delamination factor in the twist and brad point drills decreases significantly and the residual compressive strength of the drilled pipes increases meaningfully.
机译:通常,需要机械加工以完成复合管的制造和组装过程。复合加工的主要过程之一是钻孔。在此过程中,复合管的机械强度会因分层而降低。本文以“无备用状态”研究了细丝缠绕工艺生产的复合管的钻削参数,如主轴转速,进给速度,直径和钻头几何形状对推力和分层系数的影响。然后,选择具有最小和最大分层区域的样本参数,并根据所选参数通过分析结果并确定分层区域的大小在冰支撑条件下钻这些管道。然后在压力测试下加载钻孔的样本,并获得其残余抗压强度。结果表明,推力变化和分层因子减小是由于选择麻花钻并降低进给速度,增加主轴转速和钻头直径而引起的。此外,通过使用冰作为备用材料,麻花和角点钻头中的分层因子会显着降低,并且钻杆的残余抗压强度会显着提高。

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