The influence of alloying with manganese and chromium of steel hardened and tempered auger on its relative wear resistance during dehydration in a municipal solid waste truck

O. Bereziuk, V. Savulyak, V. Kharzhevskyi
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Abstract

The article is dedicated to the study of the influence of alloying with manganese and chromium followed by hardening and tempering of the auger on its wear resistance during the dehydration of municipal solid waste truck. The use of a mathematical apparatus and appropriate regression analysis programs made it possible to determine the dependence of the wear resistance of the auger on the content of manganese and chromium in the steel of the auger for the case of its quenching and tempering. Constructed graphical dependences of relative wear resistance with the indicated alloying and heat treatment of the screw revealed a significant influence of the concentration of manganese and chromium in steel, sufficient convergence of the obtained patterns was confirmed. It was established that after operation and wear on the path s = 56850 m during the dehydration of solid waste in a garbage truck, an increase in the manganese content in the steel of the heat-treated screw from 0.32% to 1.8% leads to a decrease in energy intensity by 10 kWh/tons, and an increase chromium content in screw steel after similar heat treatment from 0% to 6% leads to a decrease in energy consumption by 11.5 kWh/tons and to a reduction in the cost of the solid waste dehydration process in the garbage truck. It was determined that tempering the chromium-manganese screw steel after its hardening allows reducing energy consumption by 1.26...2.56 kWh/tons, depending on the chromium content. The expediency of conducting further research on determining the rational composition and structural state of the auger material and ways to increase its wear resistance has been revealed
城市生活垃圾车脱水过程中调质钢螺旋输送器锰铬合金化对其相对耐磨性的影响
研究了在城市生活垃圾车脱水过程中,加入锰、铬合金,对螺旋输送器进行调质处理对其耐磨性的影响。通过使用数学仪器和适当的回归分析程序,可以确定螺旋输送器的耐磨性与螺旋输送器钢中锰和铬含量的相关性,以进行淬火和回火。所构建的相对耐磨性与所指示的螺钉合金化和热处理的图形依赖性揭示了钢中锰和铬浓度的显著影响,证实了所获得的图案的充分收敛性。研究表明,在垃圾车中固体废物脱水过程中,在s=56850m的路径上运行和磨损后,热处理螺杆的钢中锰含量从0.32%增加到1.8%,导致能量强度降低10kWh/吨,并且在类似的热处理之后,螺杆钢中的铬含量从0%增加到6%导致能耗降低11.5kWh/吨并且导致垃圾车中固体废物脱水过程的成本降低。已经确定,在铬-锰螺纹钢硬化后对其进行回火可以根据铬含量将能耗降低1.26…2.56千瓦时/吨。揭示了进一步研究确定螺旋输送器材料的合理组成和结构状态以及提高其耐磨性的方法的方便性
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