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Additive Tooling for Thermoforming a Cowling of an UAV Using Binder Jetting

机译:用于使用粘合剂喷射热成型无人机的COWLING的添加剂工具

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The fast and cost-effective manufacturing of tools for thermoforming is an essential requirement to shorten the development time of products. Thus, additive processes are used increasingly in tooling for thermoforming of plastic sheets. However, a disadvantage of many additive methods is that they are highly cost-intensive, since complex systems based on laser technology and expensive metal powders are needed. Therefore, this paper examines how to work with favorable additive methods, e.g. Binder Jetting, to manufacture tools, which provide sufficient strength for thermoforming. The use of comparatively low-priced inkjet technology for the layer construction and a polymer plaster as material can be expected to result in significant cost reductions. Based on a case study using a cowling (engine bonnet) for an Unmanned Aerial Vehicle (UAV), the development of a complex tool for thermoforming is demonstrated. The object in this study is to produce a tool for a complex-shaped component in small numbers and high quality in a short time and at reasonable costs. Within the tooling process, integrated vacuum channels are implemented in additive tooling without the need for additional post-processing (for example, drilling). In addition, special technical challenges, such as the demolding of undercuts or the parting of the tool are explained. All process steps from tool design to the use of the additively manufactured tool are analyzed. Based on the manufacturing of a small series of cowlings for a UAV made of plastic sheets (ABS), it is shown, that the Binder Jetting offers sufficient mechanical and thermal strength for additive tooling. In addition, an economic evaluation of the tool manufacturing and a detailed consideration of the required manufacturing times for the different process steps are carried out. Finally, a comparison is made with conventional and alternative additive methods of tooling.
机译:快速且经济效益的热成型工具制造是缩短产品开发时间的基本要求。因此,添加过程越来越多地用于塑料片的热成型工具。然而,许多添加剂方法的缺点是它们是高度成本密集的,因为需要基于激光技术和昂贵的金属粉末的复杂系统。因此,本文审查了如何使用有利的添加剂方法,例如如何使用良好的添加剂方法。粘合剂喷射,制造工具,为热成型提供足够的强度。可以预期使用对层构建和聚合物石膏的相对低价的喷墨技术,以导致显着的成本降低。基于使用针对无人空中车辆(UAV)的COWLING(发动机发动机罩)的案例研究,证明了用于热成型的复杂工具的开发。本研究中的目的是在短时间内以较小的数量和高质量和合理成本生产用于复杂形状的组件的工具。在工具过程中,集成的真空通道在添加工具中实现,而不需要额外的后处理(例如,钻井)。此外,还解释了特殊的技术挑战,例如底切或工具分离的脱模或分离。分析了从刀具设计到使用添加剂制造工具的所有工艺步骤。基于制造一小编用于由塑料板(ABS)制成的无人机(ABS),示出了粘合剂喷射为添加剂制作提供足够的机械和热强度。此外,还进行了对不同工艺步骤的工具制造的经济评估和对所需制造时间的详细考虑。最后,用常规和替代的工具方法进行比较。

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