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Experimental and simulation investigation on spring-in deformation for L-shape component

机译:L形组分弹簧变形的实验与仿真研究

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摘要

The angular deformation is key parameter in composite manufacturing for curvature surfaces. Process Induced Distortions (PID’s) are a major problem while manufacturing a composite part using autoclave process. Spring-back or spring-in is one of the PID in autoclave process. Spring-in effect either increase or decrease at angled section during curing of composite laminates. In this paper, L-shaped composite part has been manufactured using autoclave process. The material properties like glass transition temperature, heat reaction, crystallization temperature, Coefficient of Thermal Expansion have been measured for the cured component by using various testing techniques. Spring-in angle has been found for various number of layers and layup orientation. The simulation has been performed in ABAQUS software along with the COMPRO plug-in for each component. The variation of spring-in angle has been observed with changing material properties. The experimental results have been compared with simulation results. The percentage variation of spring-in deformation for experimental and simulation results has been found in the range of 5-7%.
机译:角变形是曲率表面复合制造中的关键参数。过程诱导的扭曲(PID)是使用高压釜过程制造复合部件的主要问题。弹簧背部或弹簧是高压釜过程中的一个PID之一。在固化复合层压板期间,弹簧效果在成角度的部分增加或减少。在本文中,使用高压釜法制造了L形复合部件。通过使用各种测试技术,已经测量了玻璃化转变温度,热反应,结晶温度,热膨胀系数的材料特性。针对各种数量的层和铺设方向发现了弹簧角度。模拟已在ABAQUS软件中执行,以及每个组件的COLO插件。通过改变材料特性,已经观察到弹簧成角度的变化。将实验结果与模拟结果进行了比较。用于实验和仿真结果的弹簧变形的百分比变化已被发现在5-7%的范围内。

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