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基于离散单元法(EDEM)的方捆玉米秸秆破捆装置喂入参数可调性研究

EDEM-based study on the adjustable feeding parameters of square bale maize straw bale-breaking device.

作者信息

Wang Tiejun, Zhang Tinghe, Yu Shuai, Cui Hongguang, Wang Ruili

机构信息

College of Engineering, Shenyang Agricultural University, Shenyang, Liaoning Province, People's Republic of China.

出版信息

PLoS One. 2025 Jan 30;20(1):e0317838. doi: 10.1371/journal.pone.0317838. eCollection 2025.

Abstract

One of the primary challenges faced by small rubbing filament machines is the significant variability in material sizes, particularly in the feeding direction. This variability complicates the processing of locally baled straw with a single device. To address this issue, an adjustable feeding and bale-breaking device was developed and tested to enhance the filamentous performance of baled straw. The machine integrates a series of bale-breaking knives along with a pair of feeding and bale-breaking rollers. This paper presents an overview of the machine's structure and operating principles, alongside an analysis of the forces acting on the straw within the device, which informed the design of key components and devices. A discrete element simulation model suitable for square baled-straw has been established, providing a research foundation for the subsequent optimization of device design parameters. Effects of motor bale-breaking roller rotating speed (x1), bale-breaking roller height (x2) and bale-breaking knife quantity (x3) on the productivity of bonding bond destruction rate (Y1) and the particle average speed (Y2) were explored. Three-dimensional quadratic regression orthogonal rotation central combination experiment method combined with response surface method was used to conduct experiments and explore the interaction effects of influence factors on indicators. A regression model of influence factors and evaluation indicators was established through the analysis of variance. The significant factors affecting Y1 were ordered of x1, x2, x3, and the significant factors affecting Y2 were ordered of x2, x3, x1. In the interaction of factors, x1x2 and x2x3 had an extremely significant impact, and x1x3 had a significant impact on Y1; x1x2, x1x3 and x2x3 had a significant impact on Y2. The optimal structure and working parameters combination were determined to be 1448 rpm for x1, 268 mm for x2, and 14 pieces for x3. Verification experiments demonstrated that the actual values were 96.95% for the straw rubbing rate and 235.13 kg/(kW·h) for the per unit power productivity. The operation of the adjustable feeding and bale-breaking device developed in this study proved effective in enhancing productivity and breaking performance during the feeding of baled straw. It successfully met the design requirements for the grain size necessary for the comprehensive utilization of straw. Overall, this research establishes a foundational basis for the further development of a small, multipurpose straw rubbing filament machine.

摘要

小型揉搓丝化机面临的主要挑战之一是物料尺寸存在显著差异,尤其是在进料方向上。这种差异使得使用单一设备处理当地打捆秸秆变得复杂。为解决这一问题,研发并测试了一种可调节的进料和破捆装置,以提高打捆秸秆的丝化性能。该机器集成了一系列破捆刀以及一对进料和破捆辊。本文概述了该机器的结构和工作原理,并分析了装置内作用于秸秆的力,这些分析为关键部件和装置的设计提供了依据。建立了适用于方形打捆秸秆的离散元仿真模型,为后续优化装置设计参数奠定了研究基础。探讨了电机破捆辊转速(x1)、破捆辊高度(x2)和破捆刀数量(x3)对粘结键破坏率(Y1)的生产率和颗粒平均速度(Y2)的影响。采用三维二次回归正交旋转中心组合试验法结合响应面法进行试验,探究影响因素对指标的交互作用。通过方差分析建立了影响因素与评价指标的回归模型。影响Y1的显著因素排序为x1、x2、x3,影响Y2的显著因素排序为x2、x3、x1。在因素交互作用中,x1x2和x2x3对Y1有极显著影响,x1x3对Y1有显著影响;x1x2、x1x3和x2x3对Y2有显著影响。确定最佳结构和工作参数组合为x1为1448转/分钟,x2为268毫米,x3为14片。验证试验表明,秸秆揉搓率实际值为96.95%,单位功率生产率为235.13千克/(千瓦·时)。本研究开发的可调节进料和破捆装置在打捆秸秆进料过程中提高生产率和破捆性能方面运行有效。它成功满足了秸秆综合利用所需粒度的设计要求。总体而言,本研究为进一步开发小型多功能秸秆揉搓丝化机奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d1/11781680/793ed2060aa8/pone.0317838.g001.jpg

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