Research and development of honeycomb door of full-side open boxcar and its simulation and vibration test

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY
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引用次数: 0

Abstract

PurposeThis study aims to reduce the weight of the door, improve the operating efficiency and ensure the safety of vehicle operation.Design/methodology/approachBased on traditional aluminium alloy doors, a new type of honeycomb composite material was developed. Tests were conducted to determine the honeycomb compression resistance, honeycomb and skin shear performance, plate bending, thermal conductivity and environmental protection. Eight doors were developed based on the full-side open structure, and static strength and stiffness analyses were performed simultaneously. To solve door vibration problems, modal analysis and test were carried out.FindingsThe test results showed that the weight of the door was reduced by more than 40% whilst ensuring the strength and stiffness of the vehicle. The first–sixth-order test mode of the door was increased by more than 14% compared with existing aluminium alloy doors.Originality/valueA new type of honeycomb composite material was used in this study. The test results showed that the weight of the door was reduced by more than 40% whilst ensuring the strength and stiffness of the vehicle. The 1st-to-6th order test mode of the door was increased by more than 14% compared with the existing aluminium alloy door.
全开门棚车蜂窝门的研制及其仿真与振动试验
目的本研究旨在减轻车门重量,提高操作效率,确保车辆操作安全。设计/方法/途径在传统铝合金门的基础上,开发了一种新型蜂窝复合材料。通过试验确定了蜂窝的抗压性能、蜂窝和表皮剪切性能、板材弯曲性能、导热性能和环境保护性能。在全侧开结构的基础上开发了八个门,并同时进行了静态强度和刚度分析。为了解决车门振动问题,进行了模态分析和试验。结果测试结果表明,在确保车辆强度和刚度的同时,车门的重量减轻了40%以上。与现有铝合金门相比,该门的一阶至六阶测试模式增加了14%以上。独创性/价值在本研究中使用了一种新型蜂窝复合材料。测试结果表明,车门的重量减轻了40%以上,同时确保了车辆的强度和刚度。与现有铝合金门相比,该门的一阶至六阶测试模式增加了14%以上。
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来源期刊
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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