首页|基于扇虫膜鞘结构的精密轴承运输缓冲垫设计与研究

基于扇虫膜鞘结构的精密轴承运输缓冲垫设计与研究

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精密轴承在工业应用中广泛使用,其在运输过程中容易受到振动和冲击的影响,导致损坏.为了解决这一问题,基于仿生学原理,借鉴扇虫膜鞘的多层软膜结构,设计了一种新型的多层复合缓冲垫,以提高能量吸收效率,减少跌落产生的应力.通过有限元仿真,对不同层数的缓冲垫进行分析,结果表明在相同总厚度下,8层缓冲垫表现出最佳缓冲效果.为精密轴承的运输保护提供了一种新型有效的解决方案.
Design and Research of Precision Bearing Transport Buffer Pad Based on Fanworm Membrane Sheath Structure
Precision bearings are widely used in industrial applications,and they are susceptible to vibration and impact during transport,leading to damage.In order to solve this problem,this research designs a new type of multi-layer composite cushion based on the principle of bionics,drawing on the multi-layer soft film structure of the membrane sheath of the scallop worm,in order to improve the efficiency of energy absorption and to reduce the stress generated by the fall.Through finite element simulation,the buffer cushion with different layers is analysed,and the results show that the 8-layer buffer cushion exhibits the best buffering effect under the same total thickness.

structural biomimeticscushioning padsenergy absorptionfinite element simulation

李奇润

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西南交通大学,四川成都 610031

结构仿生 缓冲垫 能量吸收 有限元仿真

2025

模具制造
深圳市生产力促进中心

模具制造

影响因子:0.182
ISSN:1671-3508
年,卷(期):2025.25(2)