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Numerical simulation and design optimisation of an integrally-heated tool for composite manufacturing

机译:复合制造整体加热工具的数值模拟和设计优化

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摘要

Tooling design is crucial for the production of cost-effective and durable composite products. As part of the current search for cost reduction, integrally-heated tooling is one of the technologies available for 'out-of-autoclave' processing of advanced thermoset polymer composites. Despite their advantages, integrally-heated tools can suffer from uneven distribution of temperature, variability in heat flow rate and inconsistency in heating/cooling time. This research, therefore, investigates a number of design variables such as shape and layout of heating channels in order to improve the thermal performance of an integrally-heated tool. Design of Experiments (DoE) has been carried out using Taguchi's Orthogonal Array (OA) method to set several combinations of design parameters. Each of these design combinations has been evaluated through numerical simulation to investigate heating time and mould surface temperature variation. The simulation results suggest that the layout of the channels and their separation play a vital role in the thermal performance. Signal-to-Noise (S/N) ratio and analysis of variance (ANOVA) have been applied to the results obtained to identify the optimal design combination of the integrally-heated tool. Statistical analysis reveals that the heating performance of an integrally-heated tool can be significantly improved when the channels' layout is parallel. The shape of the channels has negligible effect and the distance between the channels should be determined based on the production requirement.
机译:模具设计对于生产经济高效且耐用的复合产品至关重要。作为当前寻求降低成本的一部分,整体加热工具是可用于高级热固性聚合物复合材料“高压灭菌”处理的技术之一。尽管具有整体优势,但整体加热的工具仍会遭受温度分布不均,热流量变化以及加热/冷却时间不一致的困扰。因此,这项研究调查了许多设计变量,例如加热通道的形状和布局,以提高整体加热工具的热性能。实验设计(DoE)已使用田口的正交阵列(OA)方法进行,以设置设计参数的几种组合。通过数值模拟对每种设计组合进行了评估,以研究加热时间和模具表面温度变化。仿真结果表明,通道的布局及其分隔在热性能中起着至关重要的作用。信噪比(S / N)和方差分析(ANOVA)已应用于获得的结果,以确定整体加热工具的最佳设计组合。统计分析表明,当通道的布局平行时,整体加热工具的加热性能可以得到显着改善。通道的形状影响可忽略不计,通道之间的距离应根据生产要求确定。

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