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Fault simulation and abrasion failure life forecast of key components for breech mechanism based on virtual prototype

机译:基于虚拟样机的后膛机构关键部件故障仿真和磨损失效寿命预测

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摘要

Breech mechanism is the key and important device to improve reliability and maintenance for large caliber guns. It's major fault mode is grain abrasion caused by dry sliding friction. There are no feasible and practical technologies to simulate and predict the abrasion failure life of key components for breech mechanism. A new simulation and prediction method is firstly put forward in this paper. Based on Pro/E and ADAMS, the virtual prototype of breech mechanism of semiautomatic vertical sliding-wedge type is established. To validate its precision and affectivity, qualitative and quantitative verification methods are adopted to check the virtual prototype of breech mechanism. Virtual prototype produces key components' load spectrums and failure thresholds. Dry sliding friction and abrasion experiment provides abrasion rules of typical materials. Finial simulation and prediction results are given as abrasion thresholds and operating items, which provide sufficient references for breech mechanism's maintenance and safeguard.
机译:枪膛机构是提高大型口径枪的可靠性和维护性的关键和重要装置。其主要故障模式是由干滑动摩擦引起的磨粒磨损。没有可行和实用的技术来模拟和预测后膛机构关键部件的磨损失效寿命。本文首先提出了一种新的仿真与预测方法。基于Pro / E和ADAMS,建立了半自动垂直滑楔式后膛机构的虚拟样机。为了验证其精度和情感性,采用定性和定量验证方法检查后膛机构的虚拟原型。虚拟原型产生关键组件的负载谱和故障阈值。干式滑动摩擦磨损实验提供了典型材料的磨损规则。给出了最终的模拟和预测结果,作为磨损阈值和操作项目,为后膛机构的维护和保障提供了足够的参考。

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