Application of piezoelectric transducers for precise printhead height determination in 3D printing

Krzysztof Stefan, D. Zmarzły
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Abstract

The use of piezoelectric transducer as micrometric printhead positioning in fused filament fabrication (FFF) technology was presented in paper. FFF is a low-cost additive manufacturing method for 3D printing using thermoplastic filaments. The principle of 3D FFF printing is based on sequential stacking quasi two-dimensional layers on the printer bed to produce three-dimensional objects. One of the main challenges of FFF printing technology is the first layer problem. Achieving the assumed height and adhesion of the first layer determines the ability to create a component and the final quality of the printed item. This paper focuses on using piezoelectric transducers to determine the print head distance. The results presented show that piezo transducer technology has a very high measurement accuracy in the order of micrometers and high measurement repeatability, while meeting the objectives of availability and low cost of the solution desired for FFF printing. Additionally, the issue of coaxial mounting of the measuring tool with the print head was analyzed as well as the influence of relatively high temperatures characteristic for FFF technology on the measurement results.
在 3D 打印中应用压电传感器精确确定打印头高度
论文介绍了在熔融长丝制造(FFF)技术中使用压电传感器作为微米级喷头定位的情况。FFF 是一种使用热塑性长丝进行三维打印的低成本增材制造方法。三维 FFF 打印的原理是在打印机床上按顺序堆叠准二维层,以生产三维物体。FFF 打印技术的主要挑战之一是首层问题。能否达到第一层的假定高度和附着力,决定了制作部件的能力和打印物品的最终质量。本文的重点是使用压电传感器来确定打印头的距离。研究结果表明,压电传感器技术具有极高的测量精度(微米级)和测量重复性,同时还能满足 FFF 打印所需的解决方案的可用性和低成本目标。此外,还分析了测量工具与打印头同轴安装的问题,以及 FFF 技术特有的相对高温对测量结果的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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