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Study on the Two-axle Bending with Elastic Roller Forming Technique of Non-circular Cross-section Tubular Parts Based on the Feed Force Control

机译:基于进给力控制的非圆形截面管状零件弹性滚子成形双轴弯曲研究

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摘要

Two-Axle Bending Technique with Elastic Roller (TABTER) is a kind of advanced manufacturing method for bending tubular parts, specially suiting for the difficult-to-work metal materials with high specific strength, and it can obtain a finer forming accuracy. Now the technique has been applied to bend split-sleeve and missile body cylinder successfully. In existed theories, the forming precision of the parts is controlled by adjusting the feed distance between the two axles. But because of the aging problem of the elastic roller and other uncertain factors, the feed force may be different even using the same feed, thus the forming precision cannot be ensured. To solve this problem, the forming theory by controlling the feed force between the two axles is proposed. Then the NC model of forming the non-circular cross-section tubular parts based on the theory is built. At last, the NC prototype machine is developed and some experiments are carried out on the machine.
机译:带弹性辊的两轴弯曲技术(TABTER)是一种用于弯曲管状零件的先进制造方法,特别适合于具有较高比强度的难以加工的金属材料,并且可以获得更高的成型精度。目前,该技术已成功应用于弯分袖和导弹体圆柱体的弯曲。在现有的理论中,零件的成形精度是通过调节两个轴之间的进给距离来控制的。但是,由于弹性辊的老化问题和其他不确定因素,即使使用相同的进给,进给力也可能不同,因此不能确保成形精度。为了解决这个问题,提出了通过控制两个轴之间的进给力的成形理论。然后基于该理论建立了非圆形截面管状零件的数控模型。最后,开发了数控样机,并在该机上进行了一些实验。

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