垃圾车固体废弃物脱水过程中螺旋输送器表面硬度对磨损影响的回归分析

O. Bereziuk, V. Savulyak, V. Kharzhevskyi
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引用次数: 1

摘要

研究了垃圾车固体废物脱水过程中螺旋输送器表面硬度对其磨损的影响。采用回归分析方法,确定了不同摩擦路径值下螺旋输送器磨损与表面硬度的对数相关性。对于不同的摩擦路径值,Auger磨损取决于其表面硬度的图形依赖关系,并证实了所获得的依赖关系的充分收敛性。进行了额外的回归分析,以获得螺旋输送器的磨损取决于其表面的硬度和摩擦路径,这表明,在垃圾车中固体废物脱水过程中,在两周的操作和螺旋输送器的磨损期间,将螺旋输送器的表面硬度从2310MPa提高到10050MPa,将固体废物脱水的能耗增长率从16.7%降低到1.5%,从而降低了垃圾车中的固体废物脱水工艺成本。给出了由于螺旋输送器表面硬度在两周磨损期间增加而导致的固体生活垃圾脱水能耗降低的图形依赖性。确定螺旋输送器的合理材料及提高其耐磨性的方法,为进一步研究奠定了基础
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regression analysis of the influence of auger surface hardness on its wear during dehydration of solid waste in a garbage truck
The article is dedicated to the study of the influence of the surface hardness of the auger on its wear during dehydration of solid waste in the garbage truck. Using the method of regression analysis, the logarithmic dependencies of auger wear depending on the hardness of its surface for different values of the friction path are determined. Graphical dependences of augur wear depending on the hardness of its surface for different values of the friction path are made up, and it confirms sufficient convergence of the obtained dependencies. Carried out additional regression analysis allowed to obtain the dependence of wear of the auger depending on the hardness of its surface and the friction path, which showed that during two weeks of operation and wear of the auger during dehydration of solid waste in the garbage truck increasing the surface hardness of the auger from 2310 MPa to 10050 MPa reducing the rate of growth of energy consumption of solid waste dehydration from 16.7 % to 1.5 %, and, consequently, to reduce the cost of the process of their dehydration in the garbage truck. The graphical dependence of the reduction of energy consumption of dehydration of solid household waste due to the increase in the hardness of the auger surface during its two-week wear is presented. It was established the expediency of further research to determine the rational material of the auger and ways to increase its wear resistance
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