The article presents the design of piston flowmeter and the results of its practical application for control of operational parameters of machine and tractor unit.
The analysis of variable factors affecting the gas-producer plant functioning has been carried out. The study has shown that the most significant factor affecting the gasification process in the reaction zone of the gasifier is the supply mode of O2 oxidizing agent, which is the atmospheric air. Having taken into account the results of the exploratory studies, the authors have patented and proposed parametric control elements of the oxidizing agent supply in the plane and volume of the gasifier reaction zone. The article deals with the basic control modes of the blast lances of the gasifier, such as static, dynamic synchronous and dynamic asynchronous ones. The method of calculation of the oxidizer flow rate under different control modes of the blast lances, under condition of maintaining the rate of airflow out of the lance in the optimal range of speeds is given.
Livestock farming, as one of the main sectors of the agro-industrial cluster, cannot do without good quality forage. For the best absorption of feed, all the nutrients that make up its composition should be given to the animals in a milled form. Hammer mills are among the most compact machines for milling. The grinding of grain forages is a rather energy-intensive process. One of the variants for solving the power intensiveness problem can be the application of a a hammer crusher with periodic fluctuations in the angular speed in the rotation of the the working body. That is accompanied by the appearance of additional external stimulating force - vibration on the elements of a hammer crusher. In the article the question of vibration occurrence at non-uniform rotation of a crusher working body drive pulleys is considered. And such parameters as vibration acceleration, vibration displacement, and vibration velocity in three different axes are considered. In order to optimise the vibration parameters, experiments were carried out on units of different designs with different centre of rotation offset (2 mm). At this uneven rotation speed of 1800 min-1, the vibration velocity on the X-axis increased by 546% and 200%, depending on the machine design. The vibration displacement on the same axis, even at 450 min−1, increased by 442%. Based on these results, we examined the prerequisites for the investigated hammer crusher drive design, which is expected to improve the separation and evacuation process of the crushed product from the crushing chamber, and have an overall positive impact on the crushing process.
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