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Design, simulation and SFF techniques for functional components

机译:功能组件的设计,仿真和SFF技术

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Development of Solid Freeform Fabrication (SFF) systems has created the opportunity for new approaches in design of functional components, which leverages the inherent strengths of both experiment and numerical simulation. This paper describes an approach in which the computational models are integrated with the rapid prototyping fabrication processes. The parts are fabricated using different materials including wax, PZT, silicone nitride, and 17-4PH stainless steel powders for the SFF hardware (Langrana et al, 2000, Qiu et al, 1999, Danforth et al, 1998) and Ciba-Geigy SL-resin for SLA hardware (Higgins and Langrana, 1998. Higgins and Langrana 1999). The components such as turbine blades, actuators, and fixtures have been designed, simulated and fabricated. The properties of parts have been and are being quantified in terms of accuracy and quality.
机译:稳定的自由形式制造(SFF)系统的开发为功能部件设计的新方法创造了机会,它利用了实验和数值模拟的固有优点。本文介绍了一种方法,其中计算模型与快速原型制造工艺集成在一起。该零件采用不同材料制造,包括用于SFF硬件的蜡,PZT,硅氧烷氮化物和17-4PH不锈钢粉末(Langrana等,2000,Qiu等,1999,Danforth等,1998)和Ciba-Geigy SL -Resin for SLA硬件(Higgins和Langrana,1998. Higgins和Langrana 1999)。设计,模拟和制造了涡轮叶片,致动器和固定装置等部件。零件的性质已经在准确性和质量方面进行了量化。

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