首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >INNOVATIVE STRUCTURAL AND JOINING CONCEPTS FOR LIGHTWEIGHT DESIGN OF A SCALED MODEL OF A HEAVY VEHICLE SYSTEM
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INNOVATIVE STRUCTURAL AND JOINING CONCEPTS FOR LIGHTWEIGHT DESIGN OF A SCALED MODEL OF A HEAVY VEHICLE SYSTEM

机译:重型车辆系统缩放模型轻量化设计的创新结构和联接概念

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The research work presented in this paper aims at investigating the benefits and practicality of implementing lightweight composite materials and design concepts in heavy trailer systems. The overall purpose is to devise innovative, lightweight design and joining concepts for heavy vehicle structures. A 1 to 4 scaled model representation of a trailer was built to assess the feasibility of creating a trailer from fiber-reinforced polymer (FRP) composite materials and therefore using innovative bonding methods to join the design parts. This portion of work focused on using the process of designing and fabricating the model to have first hand knowledge and experience on possible bonding methods and the types of materials and structures that will optimize strength and weight saving characteristics. Current trailer configurations were studied and shown to have high weight sources in the flooring structure. The process of analyzing innovative bonding methods and the implementation of composite sandwich technology created an alternative lightweight structure to replace heavy flooring constituents of trailer hauls. Finite element modeling and experimental analysis reveal that sandwich technology with a core structure that adds flexural stiffness to the overall design and is aided by an FRP faceplate that geometrically matches the core structure provides solutions to decrease heavy vehicle system weight.
机译:本文提出的研究工作旨在调查在重型挂车系统中实施轻型复合材料和设计概念的好处和实用性。总体目的是为重型车辆结构设计创新的轻型设计和连接概念。构建了拖车的1-4比例模型表示,以评估由纤维增强聚合物(FRP)复合材料创建拖车的可行性,并因此使用创新的粘合方法来连接设计零件。这部分工作的重点是使用设计和制造模型的过程,以掌握有关可能的粘合方法以及可优化强度和减轻重量特性​​的材料和结构类型的第一手知识和经验。研究了当前的拖车配置,并显示地板结构中具有高重量来源。分析创新的粘合方法的过程以及复合夹层技术的实施创造了一种替代轻质结构的结构,以取代拖车的沉重地板成分。有限元建模和实验分析表明,具有核心结构的三明治技术可为整体设计增加抗弯刚度,并通过与核心结构几何匹配的FRP面板进行辅助,可提供减轻重型车辆系统重量的解决方案。

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