首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The formation mechanism of protrusion of long thread by axial self-infeed rolling process
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The formation mechanism of protrusion of long thread by axial self-infeed rolling process

机译:轴向自馈轧制长螺纹突出的形成机理

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In the forming process of long threads by axial self-infeed rolling process, the protrusion generates on the top of the tooth profile, which affects the strength and precision of the formed threads. In this article, the principle of the axial self-infeed rolling process was described, and the finite element model was established to simulate the forming process of threads. The formation mechanism of protrusion was analyzed through material flow, which was verified by experiments. The pre-rolling angle and material's influence on the protrusion size was also investigated. The results showed that the axial motion of the rollers squeezed one flank of the tooth, leading to higher protrusion on the face side as compared to the other side. During the rolling process, the height of the protrusion increased first and then decreased, reaching the maximum value when the height of the formed tooth was 73% of the whole tooth. In order to reduce the protrusion height, the pre-rolling angle should be 2 degrees.
机译:在通过轴向自馈轧制工艺的长螺纹的成形过程中,突起在齿轮顶上产生,这影响了所形成的螺纹的强度和精度。在本文中,描述了轴向自进料轧制过程的原理,建立了有限元模型以模拟螺纹的成形过程。通过物质流分析突起的形成机制,通过实验验证。还研究了预滚动角度和材料对突出尺寸的影响。结果表明,与另一侧相比,滚轮的轴向挤压牙齿的一个侧面,导致面侧的突起更高。在轧制过程中,突起的高度首先增加然后减小,当形成的齿的高度为整个牙齿的73%时达到最大值。为了减小突起高度,预滚动角应该是2度。

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