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首页> 外文期刊>Wood and Fiber Science >EVALUATING DESIGN OF MORTISE AND TENON FURNITURE JOINTS UNDER BENDING LOADS BY LOWER TOLERANCE LIMITS
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EVALUATING DESIGN OF MORTISE AND TENON FURNITURE JOINTS UNDER BENDING LOADS BY LOWER TOLERANCE LIMITS

机译:较低耐受限制评价弯曲负荷下的榫眼和榫榫家具关节的设计

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摘要

This study aimed to estimate the design value for mortise and tenon joints. In this respect, the design value for static load tests was determined using lower tolerance limit methods. A lower tolerance limit value at 0.99/0.99 confidence/proportional level was chosen as a design value (199.05 N.m) to secure higher joint reliability in a furniture frame. A side frame of a simple wooden chair was theoretically analyzed to obtain internal forces acting on joints, whereas the load of 1000 N was applied in the vertical direction on the top of the front leg. A full-frame chair with mortise and tenon joints was then designed using the calculated lower tolerance limit design value. This action ensured that joints would not be overstressed when a chair is under static load while not exceeding 2000 N. By applying this method, all chairs should survive static load up to 2000 N. While performing cyclic front-to-back load test, all tested chairs met the American Library Association requirements for light-duty service load, specified for household chairs. This study demonstrates that a joint failure could be prevented under expected loads specified by the standard if the joint design value is known.
机译:本研究旨在估算榫卯接合的设计值。在这方面,静载荷试验的设计值是使用公差下限法确定的。选择0.99/0.99置信度/比例水平的公差下限值作为设计值(199.05 N.m),以确保家具框架中更高的接头可靠性。对一把简单木椅的侧架进行了理论分析,以获得作用在关节上的内力,而在前腿顶部的垂直方向上施加了1000 N的荷载。然后,使用计算出的公差下限设计值,设计了带榫卯接合的全框架座椅。这一措施确保了当椅子承受静载荷且不超过2000 N时,接缝不会受到过度应力。通过应用此方法,所有椅子应能承受高达2000 N的静载荷。在进行前后循环载荷试验时,所有测试的椅子都符合美国图书馆协会针对家用椅子规定的轻型工作载荷的要求。这项研究表明,如果已知接头设计值,在标准规定的预期载荷下,接头失效是可以避免的。

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