用于制造卫星天线聚合物复合反射器的非金属成型索具的开发和建模

M. A. Dremukhin, V. N. Nagovitsin
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引用次数: 1

摘要

主要任务是减少在使用虚拟计算机设计和建模的现代工具制造成型模具的过程中进行结构强度分析的时间,即使用添加剂技术在小规模生产中进行数学3D建模。在数值离散化的帮助下,将所研究的模型划分为有限的单元集,这些单元可以采用任何形式的单元,并在不同的参考系中定义。这将使得可以近似地用数字预测材料在施加到3D模型的给定载荷的作用下变形期间的行为。将加法技术与基于软件的现代计算机建模相结合是一项紧迫的任务。这种方法将使开发具有复杂几何形状的设备成为可能,从而绕过编写控制程序和执行产品初级加工劳动密集型操作的阶段。该方法基于使用改进的高温工程塑料构建成型工具的3D模型的过程,该模型重复反射器反射表面的形状。根据强度计算、安全系数、变形、静应力和位移,展示了评估所开发模型有效性的过程。研究结果可用于航空航天工业中使用的非金属材料设计和制造尺寸稳定的复杂几何形状产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and modeling of non-metallic form-forming rigger for manufacture of polymer composition reflectors for satellite antennas
Reducing the time for carrying out the strength analysis of a structure in the process of manufacturing shaping tooling using modern tools of virtual computer design and modeling, namely mathematical 3D modeling in a small-scale production with the use of additive technologies, is the main task. With the help of numerical discretization, the investigated model is divided into a finite set of elements, which can take any form of the element and be defined in different reference systems. This will make it possible to predict approximately numerically the behavior of the material during its deformation under the action of the given loads applied to the 3D model. The use of additive technologies with the use of modern computer modeling, which is based on software, is an urgent task. This approach will make it possible to develop equipment with a complex geometric shape, bypassing the stage of writing control programs and performing labor-intensive operations for the primary processing of the product. This method is based on the process of constructing a 3D model of the shaping tooling that repeats the shape of the reflective surface of the reflector, using modified high-temperature engineering plastics. The process of evaluating the effectiveness of the developed model is shown on the basis of strength calculations, safety factor, deformation, static stress and displacement. The results of the work can be used in the design and manufacture of dimensionally stable products of complex geometric shapes from non-metallic materials used in the aerospace industry.
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