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圆弧齿顶滚花轴的力学特性分析及过盈配合性能研究
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Analysis of Mechanical Characteristics and Research on Interference Fit Performance of Arc Toothed Knurled Shaft
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    摘要:

    针对传统滚花齿形加工技术难以满足预期过盈量精度要求的技术瓶颈, 提出了一种新型的圆弧齿顶滚花结构. 为系统评估该结构的力学特性与配合性能, 通过结合理论建模、有限元仿真与试验验证展开研究:首先基于圆柱过盈配合理论模型验证有限元模型的正确性, 随后建立传统滚花和圆弧齿顶滚花有限元模型, 研究齿高、齿距等关键几何参数对应力分布形态的影响规律;在此基础上, 通过对比分析圆柱过盈、传统滚花过盈和圆弧齿顶滚花过盈三类结构的力学性能差异, 重点分析推脱压入比的变化特性, 并开展系统性试验验证. 研究表明:圆弧齿顶滚花结构展现出优异的力学性能, 其推脱压入比达到1.979, 较圆柱过盈配合(1.3)提升52.231%, 较传统滚花结构(1.7)提升16.412%, 基本达到轴向-径向耦合滚花轴(2.0)的性能水平.

    Abstract:

    To address the technical bottleneck of traditional knurling processes failing to meet precision requirements for expected interference fit dimensions, an innovative arc-topped knurling structure was proposed. To systematically evaluate the mechanical characteristics and mating performance of the proposed structure, a comprehensive investigation combining theoretical modeling, finite element simulation, and experimental validation was conducted. Initially, the accuracy of the finite element model was verified through theoretical modeling of cylindrical interference fits. Subsequently, finite element models for both conventional knurling and arc-topped knurling were established to investigate the influence patterns of key geometric parameters (tooth height and pitch) on stress distribution characteristics. Building upon this foundation, comparative analysis of mechanical performance differences among cylindrical interference fits, conventional knurling interference fits, and arc-topped knurling interference fits was performed, with particular emphasis on analyzing variations in push-out to press-in ratios, accompanied by systematic experimental validation. The research demonstrates that the arc-topped knurling structure exhibits superior mechanical performance, achieving a push-out to press-in ratio of 1.979. This represents a 52.231% improvement over cylindrical interference fits (1.3) and a 16.412% enhancement compared with conventional knurling structures (1.7), essentially approaching the performance level of axial-radial coupled knurled shafts (2.0).

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赵先锋 ,史红艳 ?,黄丽娟 ,徐伟 ,杨补全.圆弧齿顶滚花轴的力学特性分析及过盈配合性能研究[J].湖南大学学报:自然科学版,2025,52(12):55~66

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  • 在线发布日期: 2026-01-06
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