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A study in a tape casting based stereolithography apparatus: Role of layer thickness and casting shear rate

机译:基于胶带铸造的立体光刻设备的研究:层厚度和铸造剪切速率的作用

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Stereolithography process is predominated by vat based printers, which require the use of low viscosity materials. In this study, a configuration derived from tape casting is used, which allows for printing viscous materials. The role of layer thickness and casting shear rate on the dimensional control, surface roughness, and microstructure texture of printed objects were investigated. This included an examination of the thixotropic and flow behaviors of a highly concentrated alumina suspension. The results showed that the adhesion between layers improved using a high energy dose with thicker layers, but the lateral resolution was reduced. The surface roughness improved using thinner layers with low energy dose at fixed cure depth to layer thickness ratio. The applied shear rates showed no effect on dimensional control.
机译:立体光刻过程由基于VAT的打印机占主导地位,需要使用低粘度材料。 在本研究中,使用源铸造的构造,其允许印刷粘性材料。 研究了层厚度和铸造剪切速率对印刷物体的尺寸控制,表面粗糙度和微观结构纹理的作用。 这包括检查高度浓缩的氧化铝悬浮液的触变性和流动性。 结果表明,使用具有较厚层的高能量剂量的层之间的粘附性改善,但横向分辨率降低。 表面粗糙度使用固定固化深度的低能量剂量的较薄层改善到层厚度比。 施用的剪切速率显示没有对尺寸控制的影响。

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