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首页> 外文期刊>Wood material science & engineering >Assessment of the bending strength of mortise-tenon and dovetail joints in leg-and-rail construction using Klainedoxa gabonensis Pierre Ex Engl, and Entandrophragma cylindricum (Sprague) Sprague
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Assessment of the bending strength of mortise-tenon and dovetail joints in leg-and-rail construction using Klainedoxa gabonensis Pierre Ex Engl, and Entandrophragma cylindricum (Sprague) Sprague

机译:使用Klainedoxa gabonensis Pierre Ex Engl和Entandrophragma cylindricum(Sprague)Sprague评估腿和钢轨施工中榫眼和燕尾榫接头的抗弯强度

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摘要

Mortise-tenon joints for working chair construction fail under bending stresses. Dovetail joints could offer an alternative due to their resistance to bending. However, furniture joint strength depends on the design of the parts and appropriateness of the timber for the construction. Information on timber-joint design combination that would improve joint strength is lacking for most secondary timbers with prospects for joinery-making. This study assessed the bending strengths of two joint designs (dovetail and mortise-tenon) for leg-and-rail construction from Klainedoxa gabonensis (a secondary timber) and Entandrophragma cylindricum (popularly used for furniture). Dovetail joints were stronger than those of mortise-tenon. For both joints, the design with longer, wider and thicker tails and tenons [large-sized (Type LS)] was stronger than its counterpart [small-sized (Type SS)]. Joints manufactured from K. gabonensis were also stronger than those from E. cylindricum. Thus, K. gabonensis could be an appropriate material for joinery/furniture production. This would broaden the raw material base for the furniture sector. However, its working chairs designed with Type LS dovetail joints would resist bending forces better and ensure stronger furniture than mortise-tenon. To offset frequent furniture breakdown, this study provides designers with reliable information regarding joint strength from different timbers to guide selection.
机译:用于工作椅构造的榫眼接头在弯曲应力下失效。燕尾榫接头由于其抗弯曲性而可以提供替代方案。但是,家具的结合强度取决于零件的设计和木材的结构适合性。对于大多数具有细木工技术前景的次要木材,缺乏可提高接合强度的木材-接合设计组合的信息。这项研究评估了由Klainedoxa gabonensis(次要木材)和Entandrophragma cylindricum(通常用于家具)制成的腿和钢轨的两种联合设计(燕尾榫和榫眼榫)的抗弯强度。燕尾榫接头比榫榫接头强。对于两个关节,具有更长,更宽和更粗的尾巴和榫(大号(LS型))的设计比其对应的小号(SS型)更坚固。加蓬K. bonbonensis制造的接头也比环孢大肠杆菌E. cylindricum制造的接头更坚固。因此,K。gabonensis可能是细木工/家具生产的合适材料。这将扩大家具行业的原材料基础。但是,其设计为LS型燕尾榫接缝的工作椅将更好地抵抗弯曲力,并确保家具比榫眼榫更坚固。为了抵消家具经常发生的故障,本研究为设计师提供了有关不同木材连接强度的可靠信息,以指导选择。

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