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TOPOLOGY OPTIMIZATION BASED DESIGN OF LIGHTWEIGHT AND LOW VIBRATION GEAR BODIES

机译:基于拓扑优化的轻质和低振动齿轮

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This article presents a new approach aiming to reduce gear vibration and weight by modifying its body structure. The primary objective was to reduce vibration and noise emission of spur gears. For this purpose, a solid gear body was replaced by a lattice structure, which was expected to raise the torsional compliance of the body. The lattice structure was configured and optimized by a FE-based topology optimization software. For experimental purposes, the optimized gear was produced from Titanium alloy Ti-6Al-4V ELI using Selective Laser Melting technique. In the tests, the sound pressure of various running gear pairs was measured in order to estimate and compare the properties of a solid gear, of a lattice gear, and of a lattice gear, filled with polymer to increase the structural damping. It was experimentally confirmed that the cellular lattice structure of a gear body and addition of a polymer matrix may significantly reduce the vibration.
机译:本文介绍了一种新的方法,旨在通过修改其体结构来减少齿轮振动和重量。 主要目标是减少振动齿轮的振动和噪声。 为此目的,固体齿轮主体被晶格结构取代,预期会提高身体的扭转顺应性。 通过基于FE的拓扑优化软件配置并优化了格子结构。 对于实验目的,使用选择性激光熔化技术从钛合金Ti-6AL-4V ELI生产优化档。 在测试中,测量各种运行齿轮对的声压以估计并比较栅格齿轮和格子齿轮的固体齿轮的性质,填充有聚合物以增加结构阻尼。 实验证实,齿轮主体的细胞晶格结构和聚合物基质的添加可以显着降低振动。

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