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Influences of total reduction of area on drawing stress and tube dimension in inner spiral ribbed copper tube sinking

机译:内螺旋肋铜管沉没面积的总减小对拉拔应力和管子尺寸的影响

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摘要

This research was about the development of ultrasmall inner spiral ribbed copper tube (ISRCT) with high-quality heat transfer. The production of ISRCT involved various features, such as small size and high functionality which lowered manufacturing cost. Experimental results revealed the significant parameters and the cross-sectional profile of the ISRCT after tube sinking. These were used to indicate and predict the total reduction of area as a percentage (Rt%) and determine the success of the manufacturing process. This analysis determined the optimal process parameters for the ISRCT using the tube sinking method and the effects of the ribbed dimension to attain the maximum Rt% such as the ratio of drawing stress to yield stress (sigma/sigma(y)), the ratio of the wall thickness and the ribbed height to the diameter [(t(w)+ h(r))/D], the ratio of the ribbed base width and the ratio of the ribbed base circumference to the total number of ribs inside the tube [w(rb)/(pi d(rb))], the ratio of the ribbed tip width and the ratio of ribbed tip circumference to the total number of tube ribs [w(rt)/(pi d(rt))] and the ribbed spiral angle (psi(o)). The optimal Rt% of these five parameters was compared. From the results, the optimum Rt% on the method of the tube sinking process with ISRCT must not exceed 57 %, and the size of the ISRCT has to be precise with a gap between the ribbed base and the ribbed tip; the angle of the ribbed spiral must not be zero. The conclusions are that the optimal Rt% used in the manufacture of ISRCT is suggested to be lower than 57 %.
机译:这项研究是关于高质量传热的超小型内螺旋肋铜管(ISRCT)的发展。 ISRCT的生产涉及多种功能,例如小尺寸和高功能性,从而降低了制造成本。实验结果表明,沉管后ISRCT的重要参数和截面轮廓。这些用于指示和预测总的面积减少百分比(Rt%),并确定制造过程的成功。该分析使用沉管法确定了ISRCT的最佳工艺参数,并确定了肋尺寸以达到最大Rt%的效果,例如拉伸应力与屈服应力之比(sigma / sigma(y)),壁厚和带肋高度与直径[(t(w)+ h(r))/ D],带肋底座宽度的比和带肋底座周长与管内肋总数的比值[w(rb)/(pi d(rb)/ n)],肋尖宽度与肋尖周长之比与管肋总数之比[w(rt)/(pi d(rt) / n)]和带肋螺旋角(psi(o))。比较了这五个参数的最佳Rt%。从结果可以看出,采用ISRCT的沉管方法的最佳Rt%不得超过57%,并且ISRCT的尺寸必须精确,且肋条底部和肋条尖端之间应留有间隙。带肋螺旋的角度不得为零。结论是,建议用于ISRCT的最佳Rt%低于57%。

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