Variable Shape Tooling for Composite Manufacturing: A Systematic Review

Fabian Neumann
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Abstract

The choice of material, manufacturing process, and molding tool significantly affects the quality, environmental impact, and cost efficiency of composite components. Producing one-piece hollow profiles with smooth inner surfaces and undercuts presents major challenges for conventional mold concepts. There is yet no thorough review of shape-variable mandrels in composite manufacturing to be found in the literature. This paper provides an overview of research on shape memory polymers and other shape-variable materials used in tooling applications for composite manufacturing. This work covers shape memory, heat shrink, and other deformable tooling concepts that enable the production of one-piece Type V pressure vessels, air intake ducts, or curved struts and tubes. A systematic literature review in combination with a state-of-the-art open-source active learning tool ASReview is conducted. Fifteen relevant studies were identified. Research on shape-variable tooling is mainly conducted by three research groups in the USA and the PRC. The tooling is mostly made of unreinforced thermosets, especially styrene-based ones. Thermoplastic resins are less common, and reinforcements limit the usable elongation in the temporary shape. The shape variability is either a shape memory and/or a softening process, which, in all studies, is activated by heating. Release agents are widely used to ease demolding. No ecological or economical assessment of the manufacturing methods was conducted in the reviewed studies. Three fields for further research that could be identified are as follows: (1) thorough ecological end economical assessment of shape-variable mandrels in comparison with conventional tooling; (2) thermoplastic shape memory polymer mandrels; and (3) further investigation of simulation capabilities for shape memory mandrels.
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用于复合材料制造的可变形状工具:系统综述
材料、制造工艺和成型工具的选择对复合材料部件的质量、环境影响和成本效益有重大影响。生产具有光滑内表面和底切的一体式空心型材对传统的模具概念提出了重大挑战。目前还没有文献对复合材料制造中的形状可变芯模进行深入研究。本文概述了形状记忆聚合物和其他形状可变材料在复合材料制造模具应用中的研究。该研究涵盖了形状记忆、热收缩和其他可变形模具概念,这些概念可用于生产一体式 V 型压力容器、进气管或弯曲支柱和管道。我们结合最先进的开源主动学习工具 ASReview 进行了系统的文献综述。确定了 15 项相关研究。有关形状可变工具的研究主要由美国和中国的三个研究小组进行。这些模具大多由非增强热固性材料制成,尤其是苯乙烯基材料。热塑性树脂比较少见,增强材料限制了临时形状的可用伸长率。形状可变性是一种形状记忆和/或软化过程,在所有研究中,软化过程都是通过加热激活的。脱模剂被广泛应用于脱模。在所审查的研究中,没有对制造方法进行生态或经济评估。可确定以下三个领域需要进一步研究:(1) 与传统工具相比,对形状可变芯模进行全面的生态和经济评估;(2) 热塑性形状记忆聚合物芯模;以及 (3) 进一步研究形状记忆芯模的模拟能力。
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