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用于3D打印可热消毒个人防护装备及其他应用的开源高温RepRap打印机。

Open source high-temperature RepRap for 3-D printing heat-sterilizable PPE and other applications.

作者信息

Skrzypczak Noah G, Tanikella Nagendra G, Pearce Joshua M

机构信息

Mechanical Engineering - Engineering Mechanics, Michigan Technological University, USA.

Department of Materials Science & Engineering, Michigan Technological University, USA.

出版信息

HardwareX. 2020 Oct;8:e00130. doi: 10.1016/j.ohx.2020.e00130. Epub 2020 Jul 30.

Abstract

Thermal sterilization is generally avoided for 3-D printed components because of the relatively low deformation temperatures for common thermoplastics used for material extrusion-based additive manufacturing. 3-D printing materials required for high-temperature heat sterilizable components for COVID-19 and other applications demands 3-D printers with heated beds, hot ends that can reach higher temperatures than polytetrafluoroethylene (PTFE) hot ends and heated chambers to avoid part warping and delamination. There are several high temperature printers on the market, but their high costs make them inaccessible for full home-based distributed manufacturing required during pandemic lockdowns. To allow for all these requirements to be met for under $1000, the Cerberus - an open source three-headed self-replicating rapid prototyper (RepRap) was designed and tested with the following capabilities: i) 200 °C-capable heated bed, ii) 500 °C-capable hot end, iii) isolated heated chamber with 1 kW space heater core and iv) mains voltage chamber and bed heating for rapid start. The Cereberus successfully prints polyetherketoneketone (PEKK) and polyetherimide (PEI, ULTEM) with tensile strengths of 77.5 and 80.5 MPa, respectively. As a case study, open source face masks were 3-D printed in PEKK and shown not to warp upon widely home-accessible oven-based sterilization.

摘要

由于用于基于材料挤出的增材制造的常见热塑性塑料的变形温度相对较低,3D打印部件通常不采用热灭菌。用于COVID-19及其他应用的高温可热灭菌部件所需的3D打印材料要求3D打印机具备加热床、能达到比聚四氟乙烯(PTFE)热端更高温度的热端以及加热腔室,以避免部件翘曲和分层。市场上有几款高温打印机,但其高昂的成本使得在疫情封锁期间所需的全家庭分布式制造无法使用。为了能以低于1000美元的成本满足所有这些要求,设计并测试了“冥王星”——一种开源三头自复制快速成型机(RepRap),其具备以下功能:i)能加热到200°C的加热床;ii)能加热到500°C的热端;iii)带有1千瓦空间加热器芯的隔离加热腔室;iv)用于快速启动的市电电压腔室和床加热。“冥王星”成功打印出了拉伸强度分别为77.5和80.5兆帕的聚醚酮酮(PEKK)和聚醚酰亚胺(PEI,ULTEM)。作为一个案例研究,用PEKK 3D打印了开源口罩,并显示在家庭普遍可用的烤箱灭菌过程中不会翘曲。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad29/9041219/d83207261048/ga1.jpg

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