scholarly journals Investigation of the modes of motion of a hydraulic drive with axial-piston hydraulic motors at low speeds

2021 ◽  
Vol 1901 (1) ◽  
pp. 012126
Author(s):  
V V Syrkin ◽  
Y F Galuza ◽  
I A Abramova ◽  
V A Treyer
Author(s):  
V. V. Syrkin ◽  
◽  
Y. F. Galuza ◽  
I. A. Abramova ◽  
V. A. Treyer ◽  
...  

Технологические машины различного назначения, в которых широко используются гидравлические приводы, постоянно совершенствуются по характеристикам мощности, скорости и точности указанных параметров, что требует вносить в конструкции этих приводов те или иные изменения, которые позволяют выдерживать режимы работы технологических машин в заданных переделах. Рассматриваются результаты исследования режимов работы нелинейного гидропривода с аксиально-поршневыми гидромоторами в условиях параметрического возбуждения автоколебаний, обусловленных нелинейным характером момента трения в торцевом распределителе гидромотора. Предложены математические модели режимов работы данного гидропривода на малых скоростях, представлена линеаризованная математическая модель и результаты исследования данного гидропривода в виде амплитудно- частотных характеристик, полученных при помощи гармонической линеаризации уравнений динамики. Результаты исследования позволяют оценить параметрические колебания гидропривода и оценить минимальную величину постоянной составляющей скорости, соответствующей началу периодических движений с остановками, что приводит к снижению точности выполнения технологических перемещений исполнительных механизмов технологических машин.


2021 ◽  
Vol 13 (13) ◽  
pp. 7320
Author(s):  
Tobias Pietrzyk ◽  
Markus Georgi ◽  
Sabine Schlittmeier ◽  
Katharina Schmitz

In this study, sound measurements of an axial piston pump and an internal gear pump were performed and subjective pleasantness judgements were collected in listening tests (to analyze the subjective pleasantness), which could be seen as the inverse of the subjective annoyance of hydraulic drives. Pumps are the dominant sound source in hydraulic systems. The noise generation of displacement machines is subject of current research. However, in this research only the sound pressure level (SPL) was considered. Psychoacoustic metrics give new possibilities to analyze the sound of hydraulic drive technology and to improve the sound quality. For this purpose, instrumental measurements of the acoustic and psychoacoustic parameters are evaluated for both pump types. The recorded sounds are played back to the participants in listening tests. Participants evaluate them regarding the subjective pleasantness by means of paired comparison, which is an indirect scaling method. The dependence of the subjective pleasantness on speed and pressure was analyzed for both pump types. Different regression analyses were carried out to predict the subjectively perceived pleasantness or annoyance of the pumps. Results show that a lower speed is the decisive operating parameter for reducing both the SPL and the annoyance of a hydraulic pump.


2018 ◽  
Vol 7 (4.3) ◽  
pp. 6 ◽  
Author(s):  
Angela Voloshina ◽  
Anatolii Panchenko ◽  
Oleg Boltynskiy ◽  
Igor Panchenko ◽  
Olena Titova

The output characteristics of a planetary (orbital) hydraulic motor could be significantly improved if the kinematic diagrams for its working fluid distribution system are chosen correctly and substantiated. Fluctuations in the flow of the power fluid cause pulsation in the cavity of the input pressure of the hydraulic motor. This results to vibration of the hydraulic system elements. Thus, the hydraulic motor can be considered as a source of pulsation which leads to functional failures of the hydraulic system. As they run at low rotational speeds with high torque, planetary hydraulic motors are commonly applied for a hydraulic drive in active working tools of self-propelled machinery. It has been established that one of the main components of a planetary hydraulic motor, which causes pressure pulsations, is its distribution system. The frequency and amplitude of these pulsations depends on the kinematic diagram for the distribution system of the power fluid. Therefore, we studied how the kinematic diagram for the distribution system effects on the output characteristics of a planetary motor. Since the change in the capacity of a distribution system with various kinematic diagrams influences on the output characteristics of a planetary motor, the impact was investigated. The kinematic diagrams, which improve the output characteristics of planetary hydraulic motors, were justified. 


Author(s):  
Igor Pimonov

Due to its advantages, the hydraulic drive is widely used in road construction machines. Depending on its design, the share of the hydraulic drive, which is the most expensive unit of a road construction machine, accounts for thirty to eighty percent of all failures. Reliable hydraulic drive, provides, to a large extent, the reliability of the whole machine and the efficiency of the construction organization as a whole. The efficiency of the hydraulic drive of construction machines, and, as a consequence, the machines themselves, is ensured by a set of measures, among which the most important is the quality design, manufacture and operation, combined into a single structural system. Depending on the quality of cleaning of the working fluid, the service life of hydraulic machines can be increased or decreased several times. Accumulation of pollutants in the hydraulic drive, the hardness of which is significantly higher than the hardness of metals, causes rapid wear of the surfaces of hydraulic units and the service life is rapidly reduced. Cavitation in the pump is accompanied by a pulsation of fluid pressure and noise. These pulsations are due to the return flow of fluid from the discharge cavity of the pump, which is accompanied by hydraulic shocks and as a result of alternating shocks, a pressure pulsation in the discharge line of the pump. The amplitude of these pulsations can, under known conditions, reach a value that causes the destruction of the pump. The possibility of cavitation can be reduced by rational choice of modes of operation of the hydraulic system and the correct design of its units, but this phenomenon can be completely eliminated only by using auxiliary pumping pumps, as well as increasing the pressure in the suction line of the pump. On the basis of the analysis of perspective directions of improvement of the hydraulic drive of the excavator the following improved scheme of it is developed. Usually only high-flow hydraulic motors can be used in flow dividers. But in our case it is necessary that the device had, first of all, small mechanical losses and small cost, and accuracy of division of working liquid which follows on filters can be small. In the volume flow divider, hydraulic motors are used: gear, piston, vane, screw, roller. The simplest dividers of volume type are paired (connected by shafts) hydraulic motors of lamellar (vane) and roller types. Hydraulic motors in this scheme are flow measuring devices (dispensers), which supply for one revolution the volume of liquid, equal without taking into account the leaks in the hydraulic motor, its working volume. The use of a flow divider as a source of hydraulic energy makes it possible to improve the hydraulic drive by combining in a single system the purification of the working fluid and the ejector feed of the pump. The most promising, in terms of cost, are flow dividers based on vane and rotary hydraulic motors..


Author(s):  
Валентин Сидоренко ◽  
Valentin Sidorenko ◽  
Максим Полешкин ◽  
Maksim Poleshkin ◽  
Владимир Антоненко ◽  
...  

The tutorial discusses the basics of building hydro-mechanical systems, the composition of their components, the functional description, the element base, the methods for calculating the basic parameters and the determination of the characteristics of the elements of hydraulic systems. The study of circuit solutions of process equipment requires knowledge of the principles of operation of individual elements of the hydraulic drive: power sources, hydraulic motors, control, guide and control equipment, auxiliary devices. Presented hydroficated mobile and stationary technological equipment, allows for the example of real-life facilities to consolidate knowledge of the synthesis and analysis of hydro-mechanical systems.


2014 ◽  
Vol 69 ◽  
pp. 512-517 ◽  
Author(s):  
Ilya Larchikov ◽  
Andrey Yurov ◽  
Sergey Stazhkov ◽  
Anastasia Grigorieva ◽  
Alena Protsuk

Author(s):  
J. L. Rye

Hydraulic power transmission has been successfully applied to most forms of dredger. Suction dredgers employ hydraulics to position the suction tube, cutter dredgers have hydraulic motors fitted to the cutter drive, and bucket dredgers have hydraulic drive to the bucket chain. In addition, hydraulics is used to power winches and capstans, and to provide remote control of various valves and doors. Other common applications found in all types of vessel are hydraulic steering gear and, more recently, reversible bow propulsion gear. The advantages of hydraulic drive over comparable electric drives are numerous but operators are conservative. Greater realization of the benefits of hydraulic power transmission will result in more development and substantial economies.


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