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基于实验研究的循环载荷下木椅强度分类

Strength Classification of Wooden Chairs under Cyclic Loads Based on an Experimental Study.

作者信息

Diler Harun, Kasal Ali, Kuşkun Tolga, Erdil Yusuf Ziya, Güray Ersan

机构信息

Department of Materials and Material Processing Technology, Vocational School of Technical Science, Akdeniz University, Antalya 07058, Türkiye.

Department of Wood Science and Industrial Engineering, Faculty of Technology, Muğla Sıtkı Koçman University, Muğla 48000, Türkiye.

出版信息

Materials (Basel). 2023 Oct 6;16(19):6580. doi: 10.3390/ma16196580.

Abstract

This study aimed to assess the cyclic load capacity of wooden chairs and subsequently categorize them based on their performance. A diverse selection of chair models was randomly procured from commercial markets. These chairs underwent performance testing, utilizing the cyclic stepped increasing loading method, with adherence to the standards set forth by the American Library Association Technology Reports (ALA). The study evaluated 315 chairs, encompassing 21 chair models. Each chair model underwent five replications of testing across three different loading directions. The resulting dataset of numerical values was subjected to statistical analyses, facilitating the categorization of chairs based on their strength under cyclic loads. Notably, the study revealed substantial variations in the load capacity among different chair models. As a consequence of this investigation, the study established acceptable design load thresholds. For instance, concerning front-to-back loading, it was determined that the chairs with cyclic load capacities ranging from 932 to 1449 N fell within the category of low-strength, between 1450 and 1968 N were classified as medium-strength (suitable for domestic use), and the chairs with cyclic load capacities exceeding 1968 N were considered to possess high strength (intended for hotel lobbies, restaurants, libraries, etc.). Similarly, for back-to-front loading performance, the study identified the chairs with cyclic load capacities between 625 and 895 N as low-strength, 896 and 1167 N as medium-strength, and the chairs with loads surpassing 1168 N as high-strength. The performance thresholds for side thrust loads were as follows: low-strength encompassed the cyclic load capacities ranging from 649 to 934 N, medium-strength spanned the cyclic load capacities between 935 and 1221 N, and high-strength entailed 1222 N and above. Notably, the classification devised in this study is closely aligned with the widely accepted and internationally recognized ALA specification. This strong consistency with global standards reinforces the reliability and applicability of the classification system developed in this research. In conclusion, this study enhances understanding of wooden chair strength performance and offers practical insights that lead to higher-quality products and improved consumer satisfaction. Its recommendations can potentially drive positive change within the industry and benefit manufacturers and consumers.

摘要

本研究旨在评估木椅的循环承载能力,并随后根据其性能对它们进行分类。从商业市场随机采购了多种不同的椅子型号。这些椅子采用循环逐步增加加载方法进行性能测试,遵循美国图书馆协会技术报告(ALA)制定的标准。该研究评估了315把椅子,涵盖21种椅子型号。每种椅子型号在三个不同加载方向上进行了五次重复测试。所得的数值数据集进行了统计分析,便于根据椅子在循环载荷下的强度进行分类。值得注意的是,研究发现不同椅子型号之间的承载能力存在显著差异。作为这项调查的结果,该研究确定了可接受的设计载荷阈值。例如,对于前后加载,确定循环承载能力在932至1449牛之间的椅子属于低强度类别,在1450至1968牛之间的被归类为中等强度(适用于家庭使用),而循环承载能力超过1968牛的椅子被认为具有高强度(用于酒店大堂、餐厅、图书馆等)。同样,对于前后加载性能,该研究确定循环承载能力在625至895牛之间的椅子为低强度,896至1167牛为中等强度,而载荷超过1168牛的椅子为高强度。侧向推力载荷的性能阈值如下:低强度涵盖循环承载能力在649至934牛之间,中等强度跨越循环承载能力在935至1221牛之间,高强度要求为1222牛及以上。值得注意的是,本研究设计的分类与广泛接受且国际认可的ALA规范紧密一致。与全球标准的这种高度一致性加强了本研究开发的分类系统的可靠性和适用性。总之,本研究增进了对木椅强度性能的理解,并提供了实用见解,有助于生产更高质量的产品并提高消费者满意度。其建议有可能推动行业内的积极变革,使制造商和消费者受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73b2/10574589/c23241295ecf/materials-16-06580-g001a.jpg

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