REASONABLE DESIGN METHOD OF BOX CRANE GIRDER BY TAGUCHI METHOD

Dương Trường Giang
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Abstract

Overhead cranes are widely used in industrial systems. In this study, the research object is the main box girder of the overhead crane. The research objective is to find the parameters to obtain a lighter structure, which reduces the market price of the crane. The article studies the method of calculating crane girders and sets up the optimization algorithm. The study will use the Taguchi method, and ANOVA analysis to evaluate the influence of box girder parameters. The girder weight, stress, local stability, static displacement, and vibration frequency are response values. Constraint conditions are evaluated by examining each factor with response value according to the orthogonal matrix L16. Analysis of the Signal to Noise ratio and ANOVA by Minitab software will select the optimal parameters that satisfy the constraints, the goal is to reduce the volume compared to the original design. The test results of the crane with a lifting capacity of 250 tons, an aperture of 31 m, the girder weight reduced by 24.33 %, while the stress increased by only 6.16 %. The new design ensures suitable local stability conditions by making better use of the material's capabilities. With the new parameters, the technical criteria are guaranteed.
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采用田口方法对箱式起重机梁进行合理设计的方法
桥式起重机广泛应用于工业系统中。在本研究中,研究对象是桥式起重机的主箱梁。研究目标是找到获得轻型结构的参数,从而降低起重机的市场价格。文章研究了起重机大梁的计算方法,并建立了优化算法。研究将采用田口方法和方差分析来评估箱梁参数的影响。箱梁重量、应力、局部稳定性、静态位移和振动频率是响应值。根据正交矩阵 L16,通过检查各因素的响应值来评估约束条件。通过 Minitab 软件的信噪比分析和方差分析,选择满足约束条件的最佳参数,目标是与原始设计相比减少体积。试验结果表明,起重量为 250 吨、孔径为 31 米的起重机的大梁重量减少了 24.33%,而应力仅增加了 6.16%。新设计通过更好地利用材料的性能,确保了合适的局部稳定性条件。新参数保证了技术标准。
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