Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Methodology for determining the durability of soil-cultivating machines working bodies of parts

View through CrossRef
The development and creation of high-performance machines for agricultural production is in many cases limited by the insufficient wear resistance of individual parts and assemblies. Russian scientists, engineers and technicians working on the problem of increasing the durability of machines have achieved significant results. However, theoretical conclusions and prerequisites for increasing durability and the method of calculating parts of agricultural machines for durability are not enough. The durability calculations of agricultural machine parts used in some cases during their design are imperfect. In addition, in most cases, there are no reasonable calculations of allowable wear that would ensure high quality machine operation, i.e. these calculations are not related to the tasks of preventive maintenance and operation of machines. A number of scientists have been studying the abrasive wear of working parts of soil-cultivating and seeding machines for decades, but this issue has not yet been finally resolved. Until now, there is no clear understanding of the essence of abrasive wear and the factors that determine it. Most of the work carried out on the study of abrasive wear of parts of working bodies of soil-cultivating machines is of a private nature. There are no works covering the study of the complex set of phenomena that occur during abrasive wear. At present, very little has been studied about the wear capacity of soils, there is no criterion that determines it, and there is no connection between the phenomena of wear of the working parts of soil-cultivating machines and the basic theoretical principles of agricultural mechanics. The study of the wear capacity of soils, as well as the determination of the magnitude of pressures that arise during the interaction of the working parts of agricultural machines with the soil, can be used when calculating the working parts of these machines for durability.
Title: Methodology for determining the durability of soil-cultivating machines working bodies of parts
Description:
The development and creation of high-performance machines for agricultural production is in many cases limited by the insufficient wear resistance of individual parts and assemblies.
Russian scientists, engineers and technicians working on the problem of increasing the durability of machines have achieved significant results.
However, theoretical conclusions and prerequisites for increasing durability and the method of calculating parts of agricultural machines for durability are not enough.
The durability calculations of agricultural machine parts used in some cases during their design are imperfect.
In addition, in most cases, there are no reasonable calculations of allowable wear that would ensure high quality machine operation, i.
e.
these calculations are not related to the tasks of preventive maintenance and operation of machines.
A number of scientists have been studying the abrasive wear of working parts of soil-cultivating and seeding machines for decades, but this issue has not yet been finally resolved.
Until now, there is no clear understanding of the essence of abrasive wear and the factors that determine it.
Most of the work carried out on the study of abrasive wear of parts of working bodies of soil-cultivating machines is of a private nature.
There are no works covering the study of the complex set of phenomena that occur during abrasive wear.
At present, very little has been studied about the wear capacity of soils, there is no criterion that determines it, and there is no connection between the phenomena of wear of the working parts of soil-cultivating machines and the basic theoretical principles of agricultural mechanics.
The study of the wear capacity of soils, as well as the determination of the magnitude of pressures that arise during the interaction of the working parts of agricultural machines with the soil, can be used when calculating the working parts of these machines for durability.

Related Results

Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Soil-Available Nutrients Associated with Soil Chemical and Aggregate Properties following Vegetation Restoration in Western Sichuan, China
Soil-Available Nutrients Associated with Soil Chemical and Aggregate Properties following Vegetation Restoration in Western Sichuan, China
The status and drivers of soil-available nutrients in plant-recovered soils are not fully understood, limiting our ability to explore the role of soil-available nutrients in soil g...
Soil health assessment of the Sanborn Field long-term experimental study
Soil health assessment of the Sanborn Field long-term experimental study
Soil health assessment uses a combination of potential indicators affecting soil processes to comprehensively monitor soil change, caused by cropping systems and soil management. T...
Nature of Soil Erodibility
Nature of Soil Erodibility
Inherent properties of a soil determine the extent to which that soil will erode. These properties are soil texture, soil structure, soil permeability, and the amount of soil organ...
Soil deformation during field traffic
Soil deformation during field traffic
Under moist soil conditions, high wheel loads and repeated wheel passes due to intensive field traffic, e.g. at sugar beet harvest, significantly increase the risk of soil compacti...
Assessment of self-adjustment of tillage working bodies to soil conditions
Assessment of self-adjustment of tillage working bodies to soil conditions
AbstractAssessment of self-adjustment, that is, automatically adjusting parameters of tillage working bodies as a result of soil exposure, is an urgent task, since it is associated...
Soil multifunctionality assessment in Grenoble Alpes metropolis using the MUSE method for soil health integration in the planning process
Soil multifunctionality assessment in Grenoble Alpes metropolis using the MUSE method for soil health integration in the planning process
Soil multifunctionality reflects the capacity of the soil to provide multiple ecological functions and ecosystem services (Garland et al., 2021). It is jointly determined by biotic...

Back to Top