Application of Veneer Based Panels in Exoskeleton Architecture

Neda M. Sokolović, A. Kontić, Andrej Josifovski
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引用次数: 1

Abstract

The development of new materials and technologies is one of the greatest initiator of new architectural thought. Development within the long-standing continuous improvement of wood as material was induced by technological development and new market demands. Good mechanical and physical properties of wood and its easy accessibility, initiated further development and improvement of products based on this material. The aims of this improvement are more rational wood application and improvement of its physical and mechanical properties in regard to monolithic wood. In partic-ular significant are wood-based products made from veneer layers, plywood and laminated veneer lumber (LVL). These materials stand out from other wood-based panel materials due to their mechanical and aesthetic performance. Previous application of veneer-based panels as a structural element in architecture has been implied as secondary or tertiary structural elements which transfer the load to supporting structural members, or to stiffen wooden structures. Recognition a good mechanical property of the material and its advantages as a small self-weight encouraged examining the possibilities of using wood-based panel products as the primary structural support element in exoskeleton structures, i.e. using building envelope as object structure. Application plywood and LVL is research study, so in this paper authors will analyze the possibilities of using these products as an exoskeleton supporting element, through case studies of realized experimental structures. Through research realised structures will be analysed, with a focus on shell structures. They will be evaluated through recognition of its advantages and disadvantages, especially those are directly conditioned by the structural characteristics of the material. Analyses of structures will be done according following criteria: structure design, spatial stability, span constraints, possibilities of loads the structure can support and connections between elements. In order to encourage use of veneer-based panels as load-bearing element in the exoskeleton structure, the paper will set guidelines for further research in this area and will recommend possibilities to improve mechanical characteristics of material. Rationalization of the use of wood-based panels in folded structures will highlight in paper. Forming exoskeleton structure from this material contributes rational use of the structure and raw wood materials saving.
单板基板在外骨骼建筑中的应用
新材料和新技术的发展是新建筑思想的最大发起者之一。由于技术的发展和新的市场需求,木材作为材料的长期不断改进的发展。木材良好的机械和物理性能及其易于接近性,引发了基于这种材料的产品的进一步开发和改进。这种改进的目的是更合理的木材应用和改善其物理和机械性能的整体木材。特别重要的是由单板层、胶合板和层压单板木材(LVL)制成的木基产品。这些材料因其机械和美学性能而从其他人造板材料中脱颖而出。以前将贴面板作为建筑结构元件的应用被认为是将荷载传递给支撑结构构件或加固木结构的二级或三级结构元件。认识到材料的良好机械性能及其自重小的优点,鼓励研究使用人造板产品作为外骨骼结构的主要结构支撑元素的可能性,即使用建筑围护结构作为对象结构。应用胶合板和LVL是一项研究性研究,因此在本文中作者将通过实现实验结构的案例研究来分析使用这些产品作为外骨骼支撑元件的可能性。通过研究实现结构将进行分析,重点是壳结构。它们将通过认识其优点和缺点来进行评价,特别是那些直接由材料的结构特性决定的优点和缺点。结构分析将根据以下标准进行:结构设计、空间稳定性、跨度约束、结构所能承受荷载的可能性以及构件之间的连接。为了鼓励在外骨骼结构中使用贴面板作为承重元件,本文将为该领域的进一步研究制定指导方针,并将推荐改善材料机械特性的可能性。在折叠结构中合理使用人造板将在纸上突出。利用该材料形成外骨骼结构,有利于结构的合理利用和原材料的节约。
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