Analysis of the Static Equilibrium Equation of the Oval Mortise and Tenon Joint According to V.N. Mihajlov and V.D. Bekhtejarov

The study analyzes the deviations of the strength values ​​of the oval tenon-mortise joint obtained experimentally in relation to the values ​​obtained by calculating the torsional moment M3, based on the Mihajlov and Bekhtejarov formulas presented by Tkalec and Prekrat (2000). The strength was analyzed by measuring applied load and by calculating ultimate bending moment. In the paper, only the ratio of the tenon side dimensions l:b was varied (l-tenon length; b–tenon height). By analyzing the experimental results, it can be seen that the bending strength and stiffness of the joint increase as the tenon dimensions increase. The results have shown that joint stiffness depends first of all on the tenon width, and the effects of the tenon length are less significant. In the case when the tenon width is greater than its length the Saint–Venant coefficient cannot be applied in the form in which it is given in the analyzed literature. By applying the Saint–Venant coefficient in that form, the calculation results significantly deviate from the results obtained experimentally. The torsional moment equation should be used in its modified form only when the usual dimensions of tenon and mortise are applied.

Size and character of the loads in corner joints within storage furniture

The variations in number and method of applied joints within storage furniture gave idea for this investigation. Importance of joint selection and its geometrical characteristic is clear if we bear in mind that the joints are critical points in the structure, and the rigidity and durability of storage furniture are in direct correlation with the type of the applied joint. Results presented in scientific papers provide little useful information to the engineer for the safe selection of the optimal joint. Number of joints along the connecting line (depth of the box type element) engineers determined empirically. In order to define stress state in the storage furniture, data on size of the load, that the box element has to with stand during its use, should be determined. The aim of this study was to determine the size and character of the loads in corner joints in storage furniture. Based on this data, as well as on the basis of information about the strength of the corner joints it is possible to calculate the required number of appropriate joining elements for each separate case.