scholarly journals Elaboration of the Methodology for Calculating the Brush Cutter with Passive Operating Element

Author(s):  
I.D. Skvortcov ◽  
A.A. Serebrennikov
Keyword(s):  
2019 ◽  
Vol 105 ◽  
pp. 03024 ◽  
Author(s):  
Valery Nesterov ◽  
Vladimir Aksenov ◽  
Vladimir Sadovets ◽  
Dmitry Pashkov ◽  
Zhadyra Beysebayeva

The article contains a method for determination of the energy capacity of face rock breaking by the knife operating element of the geokhod. In addition, the dependence of the breaking energy capacity on the pitch of the geokhod’s external propeller was revealed. The relevance of the study was considered. In order to set goals and objectives of the study, work features of new-class mining machines – geokhods and fundamental principles of geokhod technology were presented. Advantages and disadvantages of existing methods for determination of the energy capacity of rock breaking were identified, and the possibility of using them in calculation of power parameters of the geokhod’s knife operating element was assessed. Power and geometrical parameters of the geokhod’s knife operating element were determined, which affect the energy capacity of rock breaking. To determine the influence of the external propeller’s pitch on the breaking energy capacity, geometrical parameters of the knife operating element and parameters of mining conditions of workings were substantiated. As a result of the study, it was revealed that the energy capacity of rock breaking by the knife operating element decreases non-uniformly as the pitch of the external propeller increases.


Materials ◽  
2021 ◽  
Vol 14 (8) ◽  
pp. 1940 ◽  
Author(s):  
David Rybansky ◽  
Martin Sotola ◽  
Pavel Marsalek ◽  
Zdenek Poruba ◽  
Martin Fusek

The spring-loaded camming device (SLCD), also known as “friend”, is a simple mechanism used to ensure the safety of the climber through fall prevention. SLCD consists of two pairs of opposing cams rotating separately, with one (single-axle SLCD) or two (dual-axle SLCD) pins connecting the opposing cams, a stem, connected to the pins, providing the attachment of the climbing rope, springs, which simultaneously push cams to a fully expanded position, and an operating element controlling the cam position. The expansion of cams is thus adaptable to allow insertion or removal of the device into/from a rock crack. While the pins, stem, operating element, and springs can be considered optimal, the (especially internal) shape of the cam allows space for improvement, especially where the weight is concerned. This paper focuses on optimizing the internal shape of the dual-axle SLCD cam from the perspective of the weight/stiffness trade-off. For this purpose, two computational models are designed and multi-step topology optimization (TOP) are performed. From the computational models’ point of view, SLCD is considered symmetric and only one cam is optimized and smoothened using parametric curves. Finally, the load-bearing capacity of the new cam design is analyzed. This work is based on practical industry requirements, and the obtained results will be reflected in a new commercial design of SLCD.


2017 ◽  
Vol 4 (7 (88)) ◽  
pp. 25-31
Author(s):  
Bogdan Korobko ◽  
Dmytro Zadvorkin ◽  
Ievgen Vasyliev
Keyword(s):  

2020 ◽  
Vol 66 (No. 1) ◽  
pp. 18-26
Author(s):  
Roman Hevko ◽  
Roman Rohatynskyi ◽  
Myroslav Hevko ◽  
Oleh Lyashuk ◽  
Oleksandra Trokhaniak

The paper covers the results of the theoretical and experimental investigation of the developed sectional operating element of a flexible screw conveyer designed for transporting bulk agricultural materials. In order to determine the correlation between the design parameters of the hinged screw sections and the minimum permissible radius of curvature of a processing line, the analytical dependences have been deduced. The results of the experimental studies aimed at determining the efficiency of a screw conveyer and the level of the grain material damage depending on the change in design, kinematic and technological parameters of an operating element are presented.


2018 ◽  
Vol 7 (3.2) ◽  
pp. 360
Author(s):  
Ivan Rohozin ◽  
Oleksiy Vasyliev ◽  
Anna Pavelieva

The peculiarities of building mortar mixes preparation in cyclic compulsory mixers of various designs have been considered in this article. The work of mixers with a horizontal shaft, a vertical shaft, beaters, screw straps, as well as planetary motion of mixing stars with beaters have been described in detail. The main attention here is paid to the constructive performance of machinery. A relative assessment is given to the manual bearing groups. The multi-purpose system of numerical indices necessary for the performance assessment of mixers’ running efficiency is proposed and defined in this paper. The design of the mixers is considered in this research according to the number of components of the mixture particles motion, which arise from the constrained influence of the movable operating element. The indicators of net weight and area in the plan are attributed to the productivity. The general method of determining the coefficient for assessing the impact, exerted by the design of the mixers on their running efficiency, has also been developed by the authors of this scientific investigation. The obtained data will enable to investigate and improve the design of the mixers, finding the ways to increase their working efficiency.  


Sign in / Sign up

Export Citation Format

Share Document