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Development of rapid prototyping system for ceramic shell mold of precision casting

机译:精密铸造陶瓷壳模具快速成型系统的开发

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Layer manufacturing (LM) is one of the most important techniques of rapid prototyping. Comparing with the machining, the main shortcomings of LM are the surface roughness of the work piece and time consuming. Many rapid prototyping techniques have been developed for many years, such as stereolithography apparatus (SLA), selective laser sintering (SLS) and laminated object manufacturing (LOM). The surface roughness and dimensional accuracy of the work piece still cannot conform to the requirements of the clients. The main reason is the "step effect" generated with layer stacking. This study develops an experimental system to achieve the layer thickness less than 25 /spl mu/m which is thinner than the existing apparatuses using processes mentioned above, and the surface finish less than 8 /spl mu/m. Besides, current study also investigates the feasibility of making ceramic shell mold via a new process, named ceramic laser sintering (CLS). Under the new process, the step effect can be minimized; the drying time is shortened dramatically and the production is speedy.
机译:层制造(LM)是快速原型制作的最重要技术之一。与加工相比,LM的主要缺点是工件的表面粗糙度和耗时。多年以来,已经开发了许多快速原型技术,例如立体光刻设备(SLA),选择性激光烧结(SLS)和叠层物体制造(LOM)。工件的表面粗糙度和尺寸精度仍不能满足客户的要求。主要原因是层堆叠产生的“阶跃效应”。该研究开发了一种实验系统,以实现小于25 / spl mu / m的层厚度,该厚度比使用上述工艺的现有设备更薄,并且表面光洁度小于8 / spl mu / m。此外,当前的研究还探讨了通过一种称为陶瓷激光烧结(CLS)的新工艺制造陶瓷壳模具的可行性。在新的过程中,阶跃效应可以最小化。干燥时间大大缩短,生产迅速。

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