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Evaluation of the effects of controlled ultrasonic acetone vaporisation on Fused Deposition Modelling 3D Printed Acrylonitrile Butadiene Styrene

机译:评估受控超声丙酮汽化对3D打印的丙烯腈丁二烯苯乙烯熔融沉积建模的影响

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The application of vapour exposure systems upon 3D printed objects as a means for surface modification is a thoroughly established technique. This study investigated the utilization of a generated controlled vapour chamber device to further derive the relationship between surface modification exposure to that of part structural properties, namely interlayer bonding. This controlled utilization of vapour is intended to identify potential for future sequential 3D printing methodologies. The study mirrored previous work as such an UPBox Fused deposition modelling printer was required to produce thirty acrylonitrile butadiene styrene ASTM D638 Type IV dog-bone samples. Each of these was subjected to controlled vapour exposure relative to defined sample sets, namely groups of 5 representing exposure intervals at 0%, 20%, 25%, 50%, and 100% printing completion. Analysis for these was conducted via Instron 5967 tensile testing and a Hitachi TM3030Plus Scanning electron microscopy. These samples depicted a directly proportional increase in ultimate tensile strength and layer fusion with increased vapour exposure. These values contradicted the previous uncontrolled study.
机译:将蒸气曝光系统应用于3D打印物体作为表面修饰的一种手段是一项完善的技术。这项研究调查了利用生成的受控蒸气室设备进一步推导表面改性暴露与零件结构特性(即层间粘结)之间的关系。蒸气的这种受控利用旨在确定未来顺序3D打印方法的潜力。该研究反映了以前的工作,因为需要使用这样的UPBox熔融沉积建模打印机来生产三十个丙烯腈丁二烯苯乙烯ASTM D638 Type IV狗骨样品。这些中的每一个都相对于确定的样品组进行受控的蒸气暴露,即5个一组代表在0%,20%,25%,50%和100%的印刷完成时的曝光间隔。通过Instron 5967拉伸测试和Hitachi TM3030Plus扫描电子显微镜对这些材料进行分析。这些样品描述了最终拉伸强度和层熔合随蒸汽暴露量的增加成正比增加。这些值与先前的非对照研究相矛盾。

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