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Turbine Blade Manufacturing Through Rapid Tooling (RT) Process and Its Quality Inspection

机译:通过快速加工(RT)工艺制造涡轮叶片及其质量检验

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摘要

Rapid prototyping (RP) technologies have played vital role in product development and validation. Another aspect of RP is rapid tooling (RT). The development and manufacturing of conventional tools (die and molds) take considerable amount of time. RP technologies could be used to shorten the development time of these tools for shorten the time to production. This investigation focuses on the development of turbine blade through RT technique with quality inspection at three different stages, i.e., after manufacturing of master patterns, wax patterns, and casting in metal. Three different materials were considered for RT techniques, i.e., Room temperature vulcanization (RTV) silicon, polyurethane, and plaster of Paris. Master patterns were developed using stereolithography(SLA) and fused deposition modeling (FDM) process. Both master patterns were analyzed for surface roughness and dimensional accuracy. SLA pattern showed better results for surface finish and dimensional accuracy, and it was used for mold manufacturing. Wax patterns were produced from RTV silicon, polyurethane (PU), and plaster of Paris molds,and used for metal casting. Dimensional quality inspection was performed for both wax and metallic parts using noncontact three-dimensional (3D)digitizer. RTV silicon and SLA process were selected as the suitable mold material and process respectively for RT of turbine blade.
机译:快速原型(RP)技术在产品开发和验证中起着至关重要的作用。 RP的另一个方面是快速工具(RT)。常规工具(模具和模具)的开发和制造需要大量时间。可以使用RP技术来缩短这些工具的开发时间,从而缩短生产时间。这项研究的重点是通过RT技术开发涡轮叶片,并在三个不同阶段进行质量检查,即在制造母模,蜡模和铸造金属之后。 RT技术考虑了三种不同的材料,即室温硫化(RTV)硅,聚氨酯和巴黎石膏。使用立体光刻(SLA)和熔融沉积建模(FDM)工艺开发了主图案。分析两个主图案的表面粗糙度和尺寸精度。 SLA图案在表面光洁度和尺寸精度方面显示出更好的结果,并且用于模具制造。蜡模由RTV硅,聚氨酯(PU)和巴黎模具的石膏制成,并用于金属铸造。使用非接触式三维(3D)数字化仪对蜡和金属零件进行了尺寸质量检查。选择RTV硅和SLA工艺分别作为涡轮叶片RT的合适模具材料和工艺。

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