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Deriving position of inverse bending roll by experiment and analysis : High precision roll bending of titanium alloy wire for glasses frame

机译:通过实验和分析得出反弯辊的位置:眼镜架钛合金线材的高精度辊弯

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摘要

In forming of glasses frame, bending and inverse bending of rim wires with 4 rolls are usually employed. Only an inverse bending roll, the 4th roll, can change the position to control the curvature of the rim wire. A deriving method of inverse bending roll position is proposed in this study. The proposed method requires not the computational simulations but only some simple steady inverse bending experiments to obtain a relationship between inverse bending roll position and bent curvature which depends on machine condition and bent wire. The experimentally obtained relationship is used in the formulation of deriving the inverse bending roll position. To validate the proposed method, a real glasses frame shape is formed by the proposed and conventional methods. The difference between the designed and formed shapes is evaluated by a sum of absolute shape deviation. The value by the proposed method is smaller up to about 75% than that by the conventional method.
机译:在玻璃框的成形中,通常采用4辊的框线的弯曲和反弯曲。只有反向弯曲辊(第4辊)可以更改位置以控制轮辋钢丝的曲率。本文提出了一种反弯曲辊位置的推导方法。所提出的方法不需要计算仿真,而仅需要一些简单的稳态反弯曲实验,即可获得反弯曲辊位置与弯曲曲率之间的关系,该关系取决于机器条件和弯曲金属丝。实验获得的关系用于推导反向弯曲辊位置的公式。为了验证所提出的方法,通过所提出的和常规方法形成了真实的眼镜框形状。设计形状和成形形状之间的差异是通过绝对形状偏差之和来评估的。所提出的方法的值比常规方法的值小至约75%。

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