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Data for: Selective dissolution of polysulfone support material of fused filament fabricated Ultem 9085 parts

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Mendeley Data2026-04-18 收录
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A dataset for the publication: A. Chueca de Bruijn, G. Gómez-Gras, M. A. Pérez, Selective dissolution of polysulfone support material of fused filament fabricated Ultem 9085 parts, 2022 This study presents a time-effective, temperature-controlled methodology to dissolve the only commercially available Ultem 9085 support material. The process to select a novel solvent and its effects on Ultem’s mechanical performance in terms of compression, tensile and 3-point bending properties is addressed. At the same time, the influence of the chemical post-process on Ultem’s flammability is evaluated, given that the FST (flame, smoke, and toxicity) certification of this material is one of the most attractive properties for its applicability in certain industrial sectors. Results are supported by optical and scanning electron microscopy. The outcomes of this research are intended to provide practical recommendations for the use and scaling of the proposed solvent by the industrial sector. This dataset contains: - Tensile, flexural and compression tests results in .txt files - SEM images of surface analysis - Digital microscopy images - Kinematic viscosity test results - Fourier transform infrared spectroscopy tests results in .txt files - 3D models and drawings for tensile, flexural and compression samples, manufacturing files

本数据集对应2022年发表的学术出版物:A. Chueca de Bruijn、G. Gómez-Gras、M. A. Pérez所著《熔融沉积成型(fused filament fabrication, FFF)制备的Ultem 9085部件的聚砜支撑材料选择性溶解工艺》。 本研究提出了一种省时高效、温控可调的工艺方法,用于溶解目前唯一商业化供应的Ultem 9085支撑材料。本研究探讨了新型溶剂的筛选流程,以及该溶剂对Ultem材料在压缩、拉伸及三点弯曲性能方面的力学性能影响。同时,鉴于该材料的FST(flame, smoke, and toxicity,即阻燃、发烟与毒性)认证是其在特定工业领域应用的核心优势之一,本研究还评估了化学后处理工艺对Ultem材料阻燃性能的影响。研究结果通过光学显微镜与扫描电子显微镜(scanning electron microscopy, SEM)进行了验证。本研究成果旨在为工业界推广及规模化应用所提出的溶剂方案提供实用参考建议。 本数据集包含以下内容: - 拉伸、弯曲及压缩测试结果(存储为.txt格式文件) - 表面分析用扫描电子显微镜图像 - 数码显微图像 - 运动粘度测试结果 - 傅里叶变换红外光谱(Fourier transform infrared spectroscopy, FTIR)测试结果(存储为.txt格式文件) - 拉伸、弯曲及压缩试样的三维模型、工程图纸及增材制造文件

创建时间:
2022-01-05
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