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Optimizing, Fabricating and Characterizing Additively Manufactured Heat Exchanger Tubing

机译:优化,制造和表征增材制造的热交换器管

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摘要

Additive Manufacturing brings unique opportunities to the fabrication world, especially for complex, high value added components that are challenging if not impossible to fabricate using traditional technologies. This project was developed to design, build and test a variety of shapes, internal geometries, and lengths of process tubing for a specialized heat exchanger that operates from nominally 140 to -40 °C. A preliminary design was fabricated and based on the knowledge gained from this component, several design iterations were made to optimize the heat transfer while not adversely affecting the thermal strains. Several additional components were prepared and the parts were characterized for burst strength, tensile properties, microstructure, and chemistry. In addition, the build data were analyzed to determine if a correlation could be made with the properties. This presentation will describe the application for the heat exchanger, the goals of the project, the results for the optimization, fabrication, and characterization.
机译:增材制造为制造界带来了独特的机遇,特别是对于复杂的,高附加值的组件而言,使用传统技术制造即使不是不可能的挑战也很艰巨。该项目旨在设计,制造和测试各种形状,内部几何形状以及专用热交换器的工艺管道的长度,该热交换器的额定温度范围为140至-40°C。进行了初步设计,并基于从该组件获得的知识,进行了多次设计迭代,以优化传热,同时又不会对热应变产生不利影响。制备了几种其他组分,并对零件的破裂强度,拉伸性能,微观结构和化学性质进行了表征。此外,分析了构建数据,以确定是否可以与属性建立关联。本演示将描述热交换器的应用,项目目标,优化,制造和表征的结果。

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