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Resource Efficient Process Chain Development of a Modular CubeSat Spaceframe

机译:模块化CubeSAT空间帧的资源高效过程链开发

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A CubeSat is a 10×10×10 cm cube that can weigh up to 1.33 kg. This design offers a less expensive alternative for space enthusiasts to explore the cosmos, even though the total weight is very limited. For a CubeSat to be allowed to launch, it must adhere to certain specifications outlined in the CubeSat Design Specifications document. This places several restrictions on the satellite in terms of weight, size and center of gravity, and innovative solutions need to be explored during integration to meet these specifications. Having a spaceframe that can easily be assembled and disassembled will help smooth out the integration stage and save a significant time that can then be allocated elsewhere in the developmental stages. The increasing relevance of resource efficient manufacturing is prevalent through the continually rising costs of resources and energy. In order to stay competitive, manufacturers must develop resource efficient process chains to gain an advantage in the market. This study focused on developing a resource efficient process chain to manufacture a modular CubeSat spaceframe. This spaceframe must adhere to the CubeSat Design specifications, as well as meet the customer’s needs. A unique assembly process was designed that eliminated the need for screws structure together. Instead the spaceframe relies on interference fits, and utilizes the unique deployment method of the Poly-Picosatellite Orbital Deployer to ensure that the assembly does not fail. A material selection procedure was utilized, along with resource efficient manufacturing process chains to develop a CubeSat structure that is very cost effective to produce, easily assembled and disassembled and weighed less than most of the market leading CubeSat structures.
机译:立方体是10×10×10厘米立方体,可体重高达1.33千克。这种设计为空间爱好者提供了更便宜的替代品,以探索宇宙,即使总重量非常有限。对于要允许的CubeSat启动,它必须遵守CubeSat设计规范文件中概述的某些规范。这在重量,尺寸和重心方面的卫星上有几次限制,并且在集成期间需要探索创新解决方案,以满足这些规范。具有可以容易地组装和分解的空间帧将有助于平滑集成阶段,并节省大量时间,然后可以在发展阶段的其他地方分配。通过不断上升的资源和能量成本,资源高效制造的越来越多的相关性。为了保持竞争力,制造商必须开发资源有效的过程链,以获得市场的优势。本研究专注于开发资源有效的过程链来制造模块化封型空间帧。此空间帧必须遵守CubeSat设计规范,并满足客户的需求。设计了独特的装配过程,以消除对螺钉结构的需要在一起。相反,SpaceFrame依赖于干扰配合,并利用Poly-PicoSatellite轨道部署的唯一部署方法,以确保组件不会失败。利用了材料选择程序,以及资源有效的制造工艺链,以开发一个非常具有成本效益的立方体结构,可以生产,易于组装和拆卸,并重视小于大多数市场领先的立方体结构。

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