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Mechanical study on the impact of an effective solvent support-removal methodology for FDM Ultem 9085 parts

机译:机械研究对FDM Ultem 9085份的有效溶剂支撑方法的影响

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摘要

The use of support material to produce Fused Deposition Modeling parts is often unavoidable. The support removal task tends to be laborious and time-consuming when no soluble support materials are available, which is the case of the high-performance thermoplastic UltemT9085. This paper investigates the effect of different solvent/solvent mixtures on Ultem's mechanical properties with the aim to identify a solvent capable of dissolving its support material (a polysulfone) without noticeably damaging the model material. To do so, initial solubility tests have helped narrow the list of solvent candidates. These have been followed by infrared analyses to identify the presence of dissolved polymers in the media, as well as scanning electron microscope micrographs to analyze the surface topography of the treated parts. Finally, tensile and flexural tests have permitted to quantify the change on Ultem's mechanical properties as a function of the treatment time. Major findings include a reproducible method for softening or eliminating Ultem's support material with non-significant changes in their mechanical properties. The outcome of this work represents a first step on the lookout for a solution to facilitate the removal of polysulfone and is considered of great interest for the scientific community due to the rise of Ultem as a structural material.
机译:使用支撑材料生产融合沉积建模部件通常是不可避免的。当没有可溶性的载体材料提供时,支持去除任务往往是费力且耗时的,这是高性能热塑性ULTEMT9085的情况。本文研究了不同溶剂/溶剂混合物对ULTEM机械性能的影响,目的是鉴定能够溶解其支持材料(多砜)的溶剂而无明显损坏模型材料。为此,初始溶解度试验有助于缩小溶剂候选者列表。它们之后是红外分析,以鉴定培养基中的溶解聚合物的存在,以及扫描电子显微镜显微照片,以分析处理过的部件的表面形貌。最后,允许拉伸和弯曲测试量化ULTEM机械性能的变化作为治疗时间的函数。主要发现包括一种可重复的方法,用于软化或消除ULTEM的支持材料,其机械性能的非显着变化。这项工作的结果代表了一种促进促进聚砜的保护的第一步,并且由于ULTEM作为结构材料而被认为是对科学界的巨大兴趣。

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