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智能材料在气体注射器驱动系统中的应用。

Application of Smart Materials in the Actuation System of a Gas Injector.

作者信息

Mieczkowski Grzegorz, Szpica Dariusz, Borawski Andrzej, Diliunas Saulius, Pilkaite Tilmute, Leisis Vitalis

机构信息

Faculty of Mechanical Engineering, Bialystok University of Technology, 45C Wiejska Str., 15-351 Bialystok, Poland.

Faculty of Mechanical Engineering and Design, Kaunas University of Technology, 56 Studentų Str., LT-50240 Kaunas, Lithuania.

出版信息

Materials (Basel). 2021 Nov 18;14(22):6984. doi: 10.3390/ma14226984.

Abstract

This paper presents the results of research related to the selection of materials for passive and active components of a three-layer piezoelectric cantilever converter. The transducer is intended for use in a low-pressure gas-phase injector executive system. To ensure the functionality of the injector, its flow characteristics and the effective range of valve opening had to be determined. Therefore, a spatial model of the complete injector was developed, and the necessary flow analyses were performed using computational fluid dynamics (CFD) in Ansys Fluent environment. The opening and closing of the injector valve are controlled by a piezoelectric transducer. Thus, its static electromechanical characteristics were found in analytical form. On this basis, the energy demand of the converter, required to obtain the desired valve opening, was determined. Assuming a constant transducer geometry, 40 variants of material combinations were considered. In the performed analyses, it was assumed that the passive elements of the actuator are made of typical materials used in micro-electromechanical systems (MEMSs) (copper, nickel, silicon alloys and aluminum alloys). As for the active components of the converter, it was assumed that they could be made of polymeric or ceramic piezoelectric materials. On the basis of the performed tests, it was found that the energy demand is most influenced by the relative stiffness of the transducer materials (Young's modulus ratio) and the piezoelectric constant of the active component (). Moreover, it was found that among the tested material combinations, the transducer made of silicon oxide and PTZ5H (soft piezoelectric ceramics) had the lowest energy consumption.

摘要

本文介绍了与三层压电悬臂式转换器的无源和有源元件材料选择相关的研究结果。该换能器旨在用于低压气相喷射器执行系统。为确保喷射器的功能,必须确定其流动特性和阀门开启的有效范围。因此,开发了完整喷射器的空间模型,并在Ansys Fluent环境中使用计算流体动力学(CFD)进行了必要的流动分析。喷射器阀门的开启和关闭由压电换能器控制。因此,以解析形式得出了其静态机电特性。在此基础上,确定了获得所需阀门开度所需的转换器能量需求。假设换能器几何形状不变,考虑了40种材料组合变体。在进行的分析中,假设致动器的无源元件由微机电系统(MEMS)中使用的典型材料(铜、镍、硅合金和铝合金)制成。至于转换器的有源元件,假设它们可以由聚合物或陶瓷压电材料制成。根据进行的测试发现,能量需求受换能器材料的相对刚度(杨氏模量比)和有源元件的压电常数影响最大。此外,发现在测试的材料组合中,由氧化硅和PTZ5H(软压电陶瓷)制成的换能器能耗最低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5b3/8621965/cd40b22ccc06/materials-14-06984-g001.jpg

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