Optimization of structure matrix of mold forms

V. Pleskach, V. Olshanetskii
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Abstract

Purpose. Optimization of the method of design and calculation of the composite matrices of molds for the manufacture of products from powder materials. Research methods. Analysis of stresses in the walls of solid and composite thick-walled cylinders and their existing calculations. Results. The peculiarities of stress formation in the wall of solid and composite thick-walled cylinders under the action of internal pressure are investigated. The possibility of applying the obtained results to determine the strength and stiffness of the wall of the mold for the manufacture of products from powder materials is analyzed. Limitations in ensuring the strength of the matrix by only increasing its thickness are determined. It is shown that the use of a matrix composed of an inner cylinder and an outer holder allows to use optimal stress redistribution in the walls of such matrix in order to reduce the size and, accordingly, save materials for its manufacture. The possibility of using various, better adapted materials for the manufacture of the inner wall of the matrix and permiting the reduction of the cost of manufacturing the mold are analyzed. The method of calculation of stresses in dangerous points of walls of a matrix at an estimation of their strength and stiffness is generalized. Formulas for determination of the guaranteed tension which will provide effective redistribution of stresses in walls of the composite matrix under the set operating conditions are given. Scientific novelty. Approaches to the analysis of stresses in the walls of composite matrices of molds under the influence of internal pressure are optimized and generalized . Mathematical dependences are given, which make it possible to determine the optimal dimensions of mold elements at action of pressing pressure. Practical value. The principles of design and methods of calculation of composite matrices of molds for the manufacture of products from powder materials are proposed.  
模具成型结构矩阵的优化
目的。粉末材料制品模具复合基体设计计算方法的优化。研究方法。固体和复合厚壁圆筒壁应力分析及现有计算。结果。研究了内压作用下固体厚壁圆筒和复合厚壁圆筒壁面应力形成的特点。分析了应用所得结果确定粉末材料制品模具壁强度和刚度的可能性。确定了仅通过增加基体厚度来保证基体强度的局限性。结果表明,使用由内圆柱体和外支架组成的基体,可以在这种基体的壁面上进行最佳的应力重新分布,从而减小尺寸,从而节省制造材料。分析了使用各种更适合的材料制造基体内壁的可能性,并允许降低制造模具的成本。推广了矩阵壁在估计其强度和刚度时危险点应力的计算方法。给出了确定保证张力的公式,保证张力在规定的工作条件下能有效地重新分配复合材料基体壁面的应力。科学的新奇。优化和推广了分析内压影响下模具复合基体壁面应力的方法。给出了在压力作用下模具元件最佳尺寸的数学关系式。实用价值。提出了粉末材料制品模具复合基体的设计原则和计算方法。
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