The Use of Surfacing Materials to Increase the Durability of Disc Harrow Working Elements

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2021-12-30 DOI:10.15507/2658-4123.031.202104.544-558
S. Gryadunov, V. Sivakov
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Abstract

Introduction. For surface tillage operation there widely used disc harrows, working bodies of which are discs wearing out during operation. The wear intensity of discs depends on the wear resistance of their working surfaces, working modes and properties of the cultivated soil. It has been found that an effective way to increase the life of discs is surfacing them with wear-resistant materials. The aim of the work is to study the wear out of surfacing materials, which can be used to harden discs and to make recommendation for the use of these materials in the repair departments of agricultural enterprises. Materials and Methods. Surfacing with electrodes T-590 and powder wires PP-Np200Kh15S1GRT, VELTEK-N560.02 and PP-Np280Kh9F7SG4 were taken as test materials. For wear tests of materials in abrasive mass, there was used an apparatus to simulate the moisture content and composition (sandy loam or loam) of the soil. In the disk-pad tests, the effect of abrasive particle size, load and sliding friction velocity on the wear of the materials was studied. In field tests, wear of the disks made of 65G steel, surfaced toothed and solid disks were monitored. Results. Laboratory studies of the materials revealed the effect of soil moisture and composition, load, abrasive grit and sliding friction velocity on wear. The main factor determining the wear resistance of materials is their structural state. The indexes of wear resistance of surfacing were determined during the laboratory tests and confirmed by field tests. Discussion and Conclusion. Surfacing with flux-cored wire PP-Np280Kh9F7SG4 has the highest wear resistance of the studied materials. The technology of hard-facing disks with modern materials, in particular with flux-cored wire PP-Np280Kh9F7SG4, can be implemented in repair departments of agricultural enterprises when they have the equipment for hard-facing and sharpening of working surfaces.
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堆焊材料的使用提高盘耙工作元件的耐久性
介绍。在地面耕作作业中,广泛使用盘耙,盘耙的工作主体为盘耙,在作业过程中磨损严重。圆盘的磨损强度取决于其工作表面的耐磨性、工作方式和耕作土壤的性质。研究发现,用耐磨材料堆焊是提高圆盘使用寿命的有效途径。本工作的目的是研究堆焊材料的磨损情况,为堆焊材料在农业企业维修部门的使用提出建议。材料与方法。以T-590电极堆焊,PP-Np200Kh15S1GRT、VELTEK-N560.02、PP-Np280Kh9F7SG4粉末丝为试验材料。对于磨料块中材料的磨损试验,使用了一种装置来模拟土壤的含水量和组成(砂壤土或壤土)。在盘垫试验中,研究了磨料粒度、载荷和滑动摩擦速度对材料磨损的影响。在现场试验中,对65G钢、表面齿形盘和实心盘的磨损情况进行了监测。对材料的室内研究揭示了土壤水分和成分、载荷、磨粒和滑动摩擦速度对磨损的影响。决定材料耐磨性的主要因素是材料的结构状态。通过室内试验确定了堆焊的耐磨性指标,并通过现场试验进行了验证。讨论与结论。用药芯焊丝PP-Np280Kh9F7SG4堆焊具有最高的耐磨性。农业企业的维修部门在具备了工面硬刨和刃磨设备后,可采用现代材料硬刨盘,特别是PP-Np280Kh9F7SG4焊剂芯线硬刨盘技术。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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