A NEW METHOD FOR GENERATING VIRTUAL MODELS OF NONLINEAR HELICAL SPRINGS BASED ON A RIGOROUS MATHEMATICAL MODEL

Q3 Economics, Econometrics and Finance Applied Computer Science Pub Date : 2023-06-30 DOI:10.35784/acs-2023-17
K. Michalczyk, M. Warzecha, R. Baran
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Abstract

This paper presents a new method for generating nonlinear helical spring geometries based on a rigorous mathematical formulation. The model was developed for two scenarios for modifying a spring with a stepped helix angle: for a fixed helix angle of the active coils and for a fixed overall height of the spring. It allows the development of compression spring geometries with non-linear load-deflection curves, while maintaining predetermined values of selected geometrical parameters such as the number of passive and active coils and the total height or helix angle of the linear segment of the active coils. Based on the proposed models, Python scripts were developed that can be implemented in any CAD software offering scripting capabilities or equipped with Application Programming Interfaces. Examples of scripts that use the developed model to generate the geometry of selected springs are presented. FEM analyses of quasi-static compression tests carried out for these spring models have shown that, using the proposed tools, springs with a wide range of variation in static load-deflection curves can be obtained, including progressive springs with a high degree of nonlinearity in the characteristics. The obtained load-deflection curves can be described with a high degree of accuracy by power function. The proposed method can find applications in both machine design and spring manufacturing.
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提出了一种基于严格数学模型的非线性螺旋弹簧虚拟模型生成方法
本文提出了一种基于严格数学公式生成非线性螺旋弹簧几何图形的新方法。该模型针对两种情况开发,用于修改具有阶梯螺旋角的弹簧:有源线圈的固定螺旋角和弹簧的固定总高度。它允许开发具有非线性载荷-挠度曲线的压缩弹簧几何形状,同时保持选定几何参数的预定值,例如无源和有源线圈的数量以及有源线圈的线性段的总高度或螺旋角。基于所提出的模型,开发了Python脚本,可以在任何提供脚本功能或配备应用程序编程接口的CAD软件中实现。给出了使用开发的模型生成选定弹簧几何图形的脚本示例。对这些弹簧模型进行的准静态压缩试验的有限元分析表明,使用所提出的工具,可以获得静载荷-挠度曲线变化范围大的弹簧,包括特性具有高度非线性的渐进弹簧。所获得的载荷-挠度曲线可以通过幂函数以高精度描述。该方法可应用于机械设计和弹簧制造。
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来源期刊
Applied Computer Science
Applied Computer Science Engineering-Industrial and Manufacturing Engineering
CiteScore
1.50
自引率
0.00%
发文量
0
审稿时长
8 weeks
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