SMART PIEZOCERAMICS用于农业土壤处理

С. А. Филимонов, А.В. Батраченко, Сергей Сергеевич Ященко, Н. В. Филимонова
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引用次数: 0

摘要

农业是经济的一个部门,旨在为人口提供食物和为一些工业获取原材料。农业是最重要的部门之一,几乎在所有国家都有代表。各国的粮食安全取决于该行业的状况。犁是农业中犁地的主要工具。目前,我们可以观察到耕作和收获技术的各种改进,而种植的主要器官除了引入更耐用和可靠的材料外,并没有发生重大变化。然而,耕作仍然是现代农业生产中最耗能的作业之一。在减少金属消耗和能源消耗的同时,使用最新的高性能机械设备是现代工程发展的主要目标之一。然而,这种方式对传统机器的性能有限制,其效率在0.19-0.38的范围内变化。改善耕作和减少土壤与犁之间摩擦的方法之一是使用振动技术,它可以产生显著的效果。振动技术和技术与传统的原型有根本的不同。振动方法在人类活动的各个领域,特别是在农业方面的应用,为在新的质量基础上加速技术进步提供了巨大的前景。该工作的目的是通过使用SMART压电陶瓷和振动原理,通过减少犁铧表面土壤的牵引阻力(摩擦)总量和减少工作体的粘着来改善耕作工作体。智能设计的主要特点是:嵌入式或表面安装传感器;内置或表面安装的执行器;用于监控系统实施的控制元素图(允许处理来自传感器的数据以做出适当的决策)。这种技术在土壤耕作中应用的实质如下。压电陶瓷元件紧密地位于犁刃表面。由于压电元件具有正向和反向的压电效应,因此可以用作致动器(振动器)或传感器。为了确定压电陶瓷元件的振荡幅度,使用COMSOL Multiphysics软件包进行了数值模拟。通过数学建模,确定了所设计犁的主谐振频率分别为150、2950、4750、6050、13350、17950、18550 Hz。犁叶片的最大振荡幅度对应于18550 Hz的频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ИСПОЛЬЗОВАНИЕ SMART PIEZOCERAMICS ДЛЯ ОБРАБОТКИ ПОЧВЫ В СЕЛЬСКОМ ХОЗЯЙСТВЕ
The agriculture is a sector of the economy aimed at providing the population with food and obtaining raw materials for a number of industries. The agricultural industry is one of the most important sectors and is represented in almost all countries. The food security of states depends on the state of this industry. The plow is the main tool for cultivating the soil in agriculture. At present, we can observe various improvements in the technology for tillage and harvesting, while the main organ of cultivation has not undergone major changes, except for the introduction of more durable and reliable materials. However, tillage is still one of the most energy intensive operations in modern agricultural production. The use of the latest high-performance machinery and equipment while reducing metal consumption and energy consumption is one of the main objectives of the development of modern engineering. However, in this way there are limitations to the performance of traditional machines, the efficiency of which varies in the range of 0.19-0.38. One of the ways to improve tillage and reduce friction between the soil and the plow consists in the use of vibration technologies, which can have a significant effect. Vibration technique and technology are radically different from traditional prototypes. The use of vibration methods in various spheres of human activities and, in particular, in agriculture offers great prospects for accelerating technological progress on a qualitatively new basis. The aim of the work is to improve the cultivation working bodies by reducing the total amount of traction resistance (friction) of the soil on the surface of the ploughshare and reducing the sticking of the working bodies by using SMART PIEZOCERAMICS and vibration principles. The main features of smart designs are: embedded or surface mounted sensors; built-in or surface-mounted actuators; control element diagrams for the implementation of the monitoring system (which allow to process the data from the sensors to make an appropriate decision). The essence of this technology when used in the cultivation of the soil is as follows. The piezoceramic element is tightly located on the surface of the plow blade. Due to the presence of the piezoelectric element of direct and reverse piezoelectric effect, it can be used as an actuator (vibrator) or sensor. To determine the amplitude of oscillations of a piezoceramic element, numerical simulation has been performed using the COMSOL Multiphysics software package. By mathematical modeling, it has been established that the main resonant frequencies of the developed plow design correspond to 150, 2950, 4750, 6050, 13350, 17950, 18550 Hz. The maximum oscillation amplitude of the plow blade corresponds to a frequency of 18,550 Hz.
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