Composite materials molding simulation for purpose of automotive industry

Ł. Grabowski, A. Baier, M Majzner, M. Sobek
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引用次数: 9

Abstract

Composite materials loom large increasingly important role in the overall industry. Composite material have a special role in the ever-evolving automotive industry. Every year the composite materials are used in a growing number of elements included in the cars construction. Development requires the search for ever new applications of composite materials in areas where previously were used only metal materials. Requirements for modern solutions, such as reducing the weight of vehicles, the required strength and vibration damping characteristics go hand in hand with the properties of modern composite materials. The designers faced the challenge of the use of modern composite materials in the construction of bodies of power steering systems in vehicles. The initial choice of method for producing composite bodies was the method of molding injection of composite material. Molding injection of polymeric materials is a widely known and used for many years, but the molding injection of composite materials is a relatively new issue, innovative, it is not very common and is characterized by different conditions, parameters and properties in relation to the classical method. Therefore, for the purpose of selecting the appropriate composite material for injection for the body of power steering system computer analysis using Siemens NX 10.0 environment, including Moldex 3d and EasyFill Advanced tool to simulate the injection of materials from the group of possible solutions were carried out. Analyses were carried out on a model of a modernized wheel case of power steering system. During analysis, input parameters, such as temperature, pressure injectors, temperature charts have been analysed. An important part of the analysis was to analyse the propagation of material inside the mold during injection, so that allowed to determine the shape formability and the existence of possible imperfections of shapes and locations air traps. A very important parameter received from computer analysis was to determine the occurrence of the shrinkage of the material, which significantly affects the behaviour of the assumed geometry of the tested component. It also allowed the prediction of existence of shrincage of material during the process of modelling the shape of body. The next step was to analyse the numerical analysis results received from Siemens NX 10 and Moldex 3D EasyFlow Advanced environment. The process of injection were subjected to shape of prototype body of power steering. The material used in process of injection was similar to one of excepted material to be used in process of molding. Nextly, the results were analysed in purpose of geometry, where samples has aberrations in comparison to a given shape of mold. The samples were also analysed in terms of shrinkage. Research and results were described in detail in this paper.
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汽车工业用复合材料成型模拟
复合材料在整个工业中占有越来越重要的地位。复合材料在不断发展的汽车工业中发挥着特殊的作用。每年,复合材料被用于越来越多的汽车结构元素中。发展需要在以前只使用金属材料的领域寻找复合材料的新应用。现代解决方案的要求,如减轻车辆重量、所需的强度和减振特性,与现代复合材料的性能密切相关。设计人员面临着在车辆动力转向系统主体结构中使用现代复合材料的挑战。复合材料体的生产方法最初选择的是复合材料注射成型法。高分子材料的注塑成型是一个广为人知并应用多年的问题,但复合材料的注塑成型是一个相对较新的课题,具有创新性,它不是很常见,并且具有与经典方法不同的条件、参数和性能的特点。因此,为了选择合适的复合材料用于动力转向系统车身的喷射,利用西门子NX 10.0环境进行计算机分析,包括Moldex 3d和EasyFill Advanced工具来模拟从组中喷射材料的可能解决方案。对某现代化动力转向系统轮箱进行了模型分析。在分析过程中,分析了输入参数,如温度、压力喷射器、温度图。分析的一个重要部分是分析注射过程中材料在模具内的传播,从而确定形状的可成形性和可能存在的形状缺陷和空气陷阱的位置。从计算机分析中得到的一个非常重要的参数是确定材料收缩的发生,这显著影响被测部件的假定几何形状的行为。它也允许预测存在的收缩材料在造型的过程中,身体的形状。下一步是分析从Siemens NX 10和Moldex 3D EasyFlow Advanced环境收到的数值分析结果。喷射过程受动力转向原型体形状的影响。注射过程中使用的材料与成型过程中使用的一种例外材料相似。接下来,结果在几何的目的进行了分析,其中样品有畸变与模具的给定形状的比较。还分析了样品的收缩率。本文详细介绍了研究结果。
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