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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An innovative PVC mandrel for controlling the cross-sectional deformation of double-ridged rectangular tube in rotary draw bending
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An innovative PVC mandrel for controlling the cross-sectional deformation of double-ridged rectangular tube in rotary draw bending

机译:一种创新的PVC心轴,用于控制旋转拉伸弯曲中双脊矩形管的横截面变形

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摘要

In order to control the cross-sectional deformation of double-ridged rectangular tube (DRRT) in rotary draw bending (RDB), a PVC mandrel just supporting the back of ridge grooves was introduced. The characteristics of cross-sectional deformation of DRRT and its evolution with the new PVC mandrel were revealed numerically by comparing with that with the mandrel-core die. In order to evaluate the application scope of the new PVC mandrel, the cross-sectional deformation for different specifications of DRRT in RDB were also researched. The results show that: (1) the flange sagging Delta h, space deformation between ridges Delta d, and width deformation of inner ridge groove Delta w by using the new PVC mandrel can be better controlled than that by using the mandrel-core die. But the width deformation of the outer ridge groove Delta W gets a little larger; (2) by using the new PVC mandrel, the maxima of absolute values of Delta h and Delta w and the maximum of Delta W all increase firstly with the process of bending and then change little when the bending angle is larger than 60A degrees, which are consistent with the variation of the peak value of tangent stress on the flange, while the maximum of absolute value of Delta d increases continuously. (3) For small-sized DRRT, its cross-sectional deformation can be well controlled by using the new PVC mandrel. However, with the increase of dimension of DRRT, the cross-sectional deformation of DRRT increases obviously, and its distribution is extremely non-homogeneous.
机译:为了控制双脊矩形管(DRRT)在绕弯(RDB)的横截面的变形,一个PVC心轴只是支承突条槽的背面进行了介绍。 DRRT的横截面的变形和其与新的PVC芯棒演化的特性进行数值通过用与所述心轴芯模具比较揭示。为了评价新的PVC心轴的应用范围,在RDB DRRT的不同规格的横截面变形也进行了研究。结果表明:(1)凸缘下垂德尔塔小时,脊德尔塔d之间的空间变形,内脊槽德尔塔的宽度变形瓦特通过使用新的PVC心轴,可以更好地比由使用心轴芯模控制。但外脊槽德尔塔W的宽度变形变大一点; (2)通过使用新的PVC心轴,德尔塔小时,德尔塔瓦特的绝对值的最大值和W的弯曲的过程中的所有增加首先最大三角洲,然后改变小时的弯曲角度比60A度大,这与切向应力的法兰上的峰值的变化相一致,而最大的德尔塔d的绝对值连续地增加。 (3)为小尺寸DRRT,其横截面的变形,可以很好地使用新的芯棒PVC控制。然而,随着DRRT的维数的增加,DRRT的横截面的变形明显增加,其分布是极其不均匀。

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