This article analyzes various types of pneumatic separators designed for grain purification. The methods that make it possible to effectively remove metallomagnetic and heavy impurities from the grain mixture are also noted. The study revealed the key technological parameters that determine the quality of the purified product: the effectiveness of removing metallic and heavy impurities. The main types of designs of pneumatic separators used for grain cleaning are analyzed and structured. However, they have several major drawbacks. Firstly, they can only remove metallic or heavy impurities, and secondly, with a combined approach, the cleaning quality may be insufficient. To solve these problems, we have studied modern research on the methods and designs of pneumatic separators. Based on the results obtained, we proposed the design of a hammer crusher with an integrated pneumatic separator equipped with a screw working body. To create a mathematical model of the process of cleaning grain from impurities in the pneumatic separator of a hammer crusher, we identified the main factors that affect this process, as well as the levels of their change: 1) the pitch of the turns of the screw working body is 40, 60 and 80 mm; 2) the depth of the sedimentation chamber is 40, 80 and 120 mm; 3) The specific feed rate is 0.28, 0.53 and 0.78 kg/s. These factors were chosen taking into account their influence on the process of grain purification from impurities and ensuring rational conditions for conducting the experiment. An experimental installation was constructed, which includes a pneumatic separator with an inlet pipe on which a magnetic trap is installed, a sedimentation chamber, as well as three types of screw working bodies. As a result of experimental studies, a mathematical model of the grain purification process from impurities in the initial variables has been obtained. The rational values of the design-mode technological parameters of the pneumatic separator are determined.
pneumatic hammer crusher, pneumatic separator, auger, screw turn pitch, mineral impurities, metal magnetic impurities, mathematical model, rational parameters, operating modes of the pneumatic separator
1. Golikov A.I., Mezenov A.A. Analiz konstruktivnogo raspolozheniya zagruzochnogo patrubka zernovogo materiala v pnevmaticheskih molotkovyh drobilkah // Aktual'nye problemy agropromyshlennogo kompleksa: sb. trudov nauch.-prakt. konf. prepod., asp., mag. i stud. Novosibirskogo gosudarstvennogo agrarnogo universiteta. Novosibirsk. 2021. №6. S.16-20. EDN: https://elibrary.ru/OCJECE
2. Golikov A.I., Mezenov A.A. Analiz suschestvuyuschih konstrukciy separatorov v pnevmaticheskih molotkovyh drobilkah // Agrarnaya nauka XXI veka. Aktual'nye issledovaniya i perspektivy. Trudy IV Mezhdunarodnoy nauchno-prakticheskoy konferencii, posvyaschennoy pamyati d.t.n., professora Volkova I.E. Minsk. 2021. S. 30-36. EDN: https://elibrary.ru/EFRGMY
3. Golikov A.I., Mezenov A.A. Ekspluatacionnyy analiz pnevmaticheskih separatorov molotkovoy drobilki // Sostoyanie i innovacii tehnicheskogo servisa mashin i oborudovaniya: materialy XV mezhdunarodnoy nauchno-prakticheskoy konferencii, posvyaschennoy pamyati docenta M.A. Anfinogenova. Novosibirsk. 2023. S. 272-274. EDN: https://elibrary.ru/SGPBYW
4. Nekrashevich V.F. Epifancev D.A., Slabikov A.F. Ochistka furazhnogo zerna // Sel'skiy mehanizator. 2010. № 10. S. 4. EDN: https://elibrary.ru/OILKIN
5. Mashkova N.V., Pshenov E.A. Tendencii sovershenstvovaniya pnevmaticheskih molotkovyh drobilok// Teoriya i praktika sovremennoy agrarnoy nauki: sbornik IV nacional'noy (vserossiyskoy) nauchnoy konferencii s mezhdunarodnym uchastiem. Novosibirsk. 2021. S. 516-521. EDN: https://elibrary.ru/SOQNUL
6. Petrov V.A., Shirokobokov V.I. Sovershenstvovanie processa ochistki zerna ot neorganicheskih primesey pered drobleniem // Nauchnoe obespechenie inzhenerno-tehnicheskoy sistemy APK: Problemy i perspektivy: Materialy Nacional'noy nauchno-prakticheskoy konferencii, posvyaschennoy 60-letiyu raboty kafedry ekspluatacii i remonta mashin agroinzhenernogo fakul'teta, 90-letiyu doktora himicheskih nauk, professora, zasluzhennogo deyatelya nauki UR G.A. Korableva i 85-letiyu kandidata tehnicheskih nauk, professora, zasluzhennogo rabotnika sel'skogo hozyaystva UR, pochetnogo rabotnika vysshego professional'nogo obrazovaniya RF B.D. Zonova. Izhevsk. 2020. S. 236-242. EDN: https://elibrary.ru/AYOKMJ
7. Gafin M.M. Sposoby suschestvuyuschih tehnologiy oborudovaniya dlya ochistki zerna // Nauka v sovremennyh usloviyah: Ot idei do vnedreniya. Ul'yanovsk. 2010. S. 127-1 30.
8. Chernyakov A.V., Korostelev D.N., Begunov M.A. Eksperimental'noe issledovanie cilindricheskogo pnevmoseparatora c zakruchennym vozdushnym potokom // Sibirskaya derevnya: 200 let razvitiya Omskoy oblasti - ot reform M.M. Speranskogo do agropromyshlennogo centra Sibiri. Omsk. 2022. S. 304-310.
9. Bulatov S.Yu., Nechaev V.N. Rezul'taty issledovaniy rabochego processa pnevmoseparatora furazhnogo zerna// Vestnik vserossiyskogo nauchno-issledovatel'skogo instituta mehanizacii zhivotnovodstva. 2012. S. 78-88. EDN: https://elibrary.ru/QNJCPJ
10. Patent na poleznuyu model' №229971 Rossiyskaya Federaciya. Molotkovaya drobilka: №2024114690: zayavl.30.05.2024: opubl. 06.11.2024/ Golikov A.I., Mezenov A.A., Golikova A.A., Grigorev N.N.; zayavitel' FGBOU VO Novosibirskiy GAU. 7 s.



