Research of gravity separator of rapesee
DOI:
https://doi.org/10.31548/machenergy2021.02.077Keywords:
rapeseed, impact separator, separation, impurities, impact deckAbstract
Rapeseed contains up to 40…49% oil, 21…33% protein, 6…7% fiber. Rapeseed oil is used in the production of fats and margarine, as well as in the metallurgical, paint, soap, textile industries. Insufficient study of the process of purification of rapeseed seeds constrains its prevalence in Ukraine. Recently, the purification of rapeseed from difficult-to-separate weeds and impurities is carried out by hitting the reflective surface using the elastic properties of the seeds. The cleaning machines used a single blow and have a low separation quality. The construction of the gravitational multilevel separator of rapeseed is considered in the work and its parameters with the possibility of repeated blows of heap particles with reflective surfaces are substantiated. Based on the analysis of experimental studies of the elastic characteristics of rapeseed and impurities, the rational height of the fall of the seed heap, which is in the range of 0,2…0,4 m, was determined. Theoretical calculations allowed to determine the flight lengths of particles with repeated rebounds from the impact surface and made it possible to justify the dimensions of the impact deck in the transverse direction 0,2 m and – 1,5 m in the longitudinal. As a result of the production tests it was found that the most acceptable initial speed is Vo= 2 m/s, and the angle of inclination of the deck
α = 300. The production conditions of the separator proved that when the rapeseed seed heap is clogged up to 15%, the yield of the purified fraction is 68% of the seeds of the first class.
References
Skrypnik A. V. (1999). On the program for the development of the agro-industrial sector of the southeastern part of Ukraine until 2003. Collection of Science Practices of the Ukrainian Academy of Sciences. 4. 213–216.
Bogomolov O. V., Braginets M. V. (2015). Pre-session of the physical and mechanical authorities of the population and houses. Succeedingly direct technologies and kharchyovykh virobnistv. Visnik KhNTUSG. Kharkiv. 166. 235–240.
Lukyanenko V. M. (2001). Substantiation of parameters of the process of separation of rapeseed and colza seeds on a vibrating machine: Author's dissertation, Candidate of Technical Sciences: 05.05.11. Kharkiv Institute of Mechanization and Electrification of Agriculture. Kharkiv. 20.
Savinyh P., Sychugov Y., Kazakov V., Ivanovs S. (2018). Development and Theoretical Studies of Grain Cleaning Machine for Fractional Technology of Flattening Forage Grain. Eng. Rural Dev. 124–130.
Aliev E., Yaropud V. M., Dudin, V. Y., Pryshliak V. M., Pryshliak N., Ivlev V. V. (2018). Research on sunflower seeds separation by airflow. Inmateh Agric. Eng. 56. 119–128.
Bogomolov A. V. (2013). Separation of difficult-to-separate loose mixtures. Kharkiv. KhNTUSG. 308.
Device for distribution for grain materials by elastic properties: D.p. № 57958 Ukraine, MKV B 07 B 13/00. O. V. Bogomolov, Y. I. Tokolov, M. O. Zinchenko. № 200203187. Application 7.03.2002. Publ. 15.07.2003. Bull. № 7.
Slukin O. L. (1992). Improving the efficiency of cleaning rapeseed from trash by elastic properties. Abstract of thesis. dis. ... cand. tech. sciences: 05.20.01. All-Russian scientific research and design and technological institute of rapeseed. Lipetsk. .
Oszczak Z. (2006). Optymalizacja parametrów pracy pneumatycznego separatora kaskadowego. Inzynieria Rol. 7. 359–365.
Panasiewicz M., Sobczak P., Mazur J., Zawi´slak K., Andrejko D. (2012). The technique and analysis of the proceess pf separation and clearing grain materials. J. Food Eng. 109. 603–608.
Badretdinov I., Mudarisov S., Tuktaro M., Dick E., Arslanbekova S. (2017). Mathematical modeling of the grain material separation in the pneumatic system of the grain-cleaning machine. J. Appl. Eng. Sci. 17. 529–534.
Multilevel impact separator: Patent for utility model №62244, Ukraine, MKV B07 B13/00, Bogomolov O. V., Bogomolova V. P. №201014867. Publ. 25.08.2011 Bull. №16.
Downloads
Published
Issue
Section
License
Relationship between right holders and users shall be governed by the terms of the license Creative Commons Attribution – non-commercial – Distribution On Same Conditions 4.0 international (CC BY-NC-SA 4.0):https://creativecommons.org/licenses/by-nc-sa/4.0/deed.uk
Authors who publish with this journal agree to the following terms:
- Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).