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Evaluation Of Post-curing And Laser Manufacturing Parameters Onthe Properties Of Somos 7110 Photosensitive Resin Used In Stereolithography

机译:后固化和激光制造参数对用于光刻的Somos 7110光敏树脂性能的评估

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摘要

The degree of cure of parts produced by stereolithography (SL) depends on laser power, manufacturing parameters, resin photosensitivity characteristics, and so on. Usually parts require a post-cure process, such as ultraviolet radiation and/or thermal treatment to improve their degree of cure, and thermal, mechanical and chemical properties. In this study, we evaluated the influence of line hatch spacing, an important manufacturing parameter, in relation to the calorimetric, dilatometric and hardness behavior of SL parts. The post-cure processes of ultraviolet radiation, microwave irradiation and conventional heating were also investigated. A higher degree of cure in green specimens was obtained with a line hatch spacing of 0.05 mm. However, the utilization of line hatch spacings of 0.15 and 0.10 mm induced an inho-mogeneous curing process in relation to the internal and surface specimen structure, and remarkable cure shrinkage. The post-cure processes, especially the thermal treatment, improved the degree of cure of green specimens built using line hatch spacing of 0.10 mm, minimizing the anisotropy inherent to this rapid manufacturing method, which permits a better control over the dimensional behavior of SOMOS 7110 parts.
机译:通过立体光刻(SL)制成的零件的固化程度取决于激光功率,制造参数,树脂光敏性特性等。通常,零件需要后固化工艺,例如紫外线辐射和/或热处理,以提高其固化程度以及热,机械和化学性能。在这项研究中,我们评估了线阴影线间距(SL是一种重要的制造参数)相对于SL部件的量热,膨胀和硬度行为的影响。还研究了紫外线,微波辐射和常规加热的后固化过程。线孔间距为0.05 mm,可以在绿色样品中获得更高的固化度。然而,利用线和影线的间距为0.15和0.10 mm导致相对于内部和表面试样结构的不均匀固化过程,以及明显的固化收缩率。后固化工艺(尤其是热处理)提高了使用0.10 mm线阴影线间距构建的绿色样品的固化程度,从而最大限度地减小了这种快速制造方法固有的各向异性,从而可以更好地控制SOMOS 7110的尺寸特性部分。

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