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首页> 外文期刊>International Journal of Agricultural Research, Innovation and Technology >Improvement of finishing antifriction treatment without abrasive of the rubbing parts surfaces of agricultural machineries
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Improvement of finishing antifriction treatment without abrasive of the rubbing parts surfaces of agricultural machineries

机译:农业机械的摩擦部件表面没有磨料的情况下改进了表面减摩处理

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摘要

The wear of machines and mechanisms after rubbing is a major concern. The costs of manufacturing and restoration parts for agricultural machinery are enormous such as the trunnions pinions of hydraulic pumps. Finishing treatment antifriction without abrasive (FTAA) is the existing method of manufacturing and restoration, but it has disadvantages like low work efficiency and the frequent replacement of the instrument. That is why a new method of FTAA parts type ''tree'' has been developed called vibratory finishing treatment antifriction without abrasive, (VFTAA) method. The study was conducted at the laboratory of the State Technical University of Kirovograd (Ukraine) where turn 16K20, the profilograph-profilometer "Talysurf-5", the scanning electron microscope REM-106I, friction machine MI-1M and the stand KI-28097-02M were used respectively for machining, study of micro relief before and after the VFTAA, microstructure, wear resistance and the determination of the break-in period of parts. The results showed that the VFTAA helped reduce the roughness Ra of the samples studied by half compared to the samples processed by polishing and 1.3 times compared to those treated with the FTAA, the break-in period has been reduced four times , this leads to an increase in the life of the hydraulic pump. This technology can be recommended for manufacturing and repair of hydraulic units of agricultural machineries. DOI: http://dx.doi.org/10.3329/ijarit.v4i1.21101 Int. J. Agril. Res. Innov. & Tech. 4 (1): 98-101, June, 2014
机译:摩擦后机器和机构的磨损是一个主要问题。农业机械零件的制造和修复成本很高,例如液压泵的耳轴小齿轮。现有的制造和修复方法是不使用磨料的表面处理减摩(FTAA),但是它具有工作效率低和仪器更换频繁的缺点。这就是为什么开发了一种新的FTAA零件“树”方法的方法,称为无磨料的振动精加工减摩(VFTAA)方法。这项研究是在基洛沃格勒国立技术大学(乌克兰)的实验室中进行的,该实验室的车床是16K20,轮廓仪-轮廓仪“ Talysurf-5”,扫描电子显微镜REM-106I,摩擦机MI-1M和支架KI-28097。分别使用-02M进行机械加工,研究VFTAA前后的微起伏,组织,耐磨性以及确定零件的磨合期。结果表明,与通过抛光处理的样品相比,VFTAA有助于将研究样品的粗糙度Ra降低一半,并且与通过FTAA处理的样品相比,其降低了1.3倍,磨合期缩短了四倍,这导致了延长液压泵的使用寿命。可以推荐将该技术用于农业机械的液压单元的制造和维修。 DOI:http://dx.doi.org/10.3329/ijarit.v4i1.21101 Int。 J.阿格里尔。 Res。创新和技术。 4(1):98-101,2014年6月

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