Authors

  • MUKHSIDIN KHOJIEV
    NAMANGAN TEXTILE INDUSTRY INSTITUTE
  • RUSTAM MURADOV
    NAMANGAN TEXTILE INDUSTRY INSTITUTE

DOI:

https://doi.org/10.71337/inlibrary.uz.aijmr.62979

Keywords:

airflow

Abstract

The enhancement of the transport components of the device that carries cotton by air is the subject of several scientific studies that are analyzed in this article.
According to an analysis, scientific studies are primarily concerned with preserving the quality of cotton that is transported, minimizing seed damage, lowering electricity usage, and minimizing the emission of dusty air into the atmosphere.


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Acumen:

International Journal of Multidisciplinary Research

ISSN: 3060-4745

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Volume 1, Issue 5

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Acumen: International Journal of Multidisciplinary Research

METHODS TO IMPROVE PNEUMATIC TRANSPORT SYSTEM

ELEMENTS AND REDUCED COTTONSEED DAMAGE

MUKHSIDIN. KHOJIEV

1

, RUSTAM MURADOV

1

NAMANGAN TEXTILE INDUSTRY INSTITUTE

1

Abstract:

The enhancement of the transport components of the device that carries

cotton by air is the subject of several scientific studies that are analyzed in this article.
According to an analysis, scientific studies are primarily concerned with preserving the
quality of cotton that is transported, minimizing seed damage, lowering electricity
usage, and minimizing the emission of dusty air into the atmosphere.

Key words:

airflow, cottonseed damage, force, separator, separator chamber, roll

box, small impurities, technological chain, pipe, drum.

The primary raw material used in the global textile industry is cotton fiber.

According to data from the International Advisory Committee (ICAC), "Cotton" is used
by organizations that produce 24.55 million tons of cotton fiber annually, compared to
23.07 million tons that were released on a global scale. He believed that cotton fiber
would become more and more in demand in the future due to the rapidly expanding
population. The quality of cotton fiber is in high demand, and there is a sufficient need
for ongoing improvements in manufacturing efficiency. Accordingly, cotton fiber's
competitiveness in the global market has increased, and it is now more contemporary
and technological in terms of the dependable and high-quality modernization of new
technologies and equipment for product manufacturing. The development of cotton is
receiving a lot of attention. Specifically, the world's cotton ginning business was highly
efficient, but owners were not paying attention to the resource-saving technologies and
improvements in cotton cleaning for their cars. The purpose of the scientific research
work of H. Kasimov cotton raw material in the composition heavy mixtures separately
to take efficiency increase, fiber and seed damage ahead to take, in the pocket heavy
mixtures continuous in a way come out to leave provision for garbage can the device
new construction who did Figure 1.


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Figure 1. New in construction garbage can device scheme. ( FAP No.

20210118)

1- inlet pipe, 2- working chamber, 3- drum with elastic coating, 4- mesh

surface, Pocket 5-7, Plate 6, Exit 8 pipe.

Figure 1 shows a schematic diagram of the new launcher, then cotton being

transported by air transport device raw thing weather current with entrance pipe (1)
through worker to the chamber (2) included, loosely attached to the mattress with an
elasticated lining The drum (3) rotates under its own inertia with the help of the air flow,
forming a ball. arrived cotton raw his/her thing by touch gives. This with together drum
elastic cover coverage seed damage to reduce yes possibility gives. Touched cotton raw
thing weather current with the help of elastic to the base installed net to the surface (4)
hit, in the composition small mixtures (5) falls into the pocket, and the raw cotton goes
to the outlet pipe (8), and the heavy compounds contained in the plates under the
influence of their own weight (6) one go away opened pocket (7) through continuous in
a way outside come out will go.

M. Salokhiddinova's scientific research work included developing a new design

of a mobile device used to transport raw cotton and conducting scientific research to
increase the efficiency of pneumatic transport by creating a new separator design.


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2 . Proposed propulsion device

1-inlet pipe; 2nd stone holder; 3-separator; 4-air intake pipe; 5th fan, 6th cyclone.

We will divide the pneumatic transport pipeline of the mobile device into several

sections, analyze the processes in each section and present the results using graphs.
The sequence of the mobile device is presented below (see Figure 2). The mobile
device is used to transport raw materials from a distance of 150-200 m between the
cotton gin and the production department to the main processes.

m

The proposed

device works as follows: the cotton is sucked from the gin through the suction pipe (1)
with the help of a fan (5) and is trapped in a separator (2) to separate heavy impurities
from the cotton. Then it moves to the separator (3). The cotton enters the working
chamber of the separator, and the raw cotton is directed downwards by a guide installed
after the inlet pipe, and a certain part of it is covered by a mesh belt installed at the top
of the working chamber. The stuck cotton is easily separated by fixed wipers. Then the
raw cotton is discharged through a vacuum valve and transferred to the next process.

The air drawn from the separator is directed through the spray pipe after the fan

(5) to the cyclone (6). The dust mixed with the air is removed and clean air is released
into the atmosphere.

Improvement of the technological process of cotton processing, preservation of

the naturalness of cotton fiber and reduction of impurities and defects in the fiber, and
recommendation for use in the selection of equipment involved in it
will be allowed.

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Саломова, М., Рахимов, Ф., & Қосимов, Х. (1992). Пневмотранспорт
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2019й, 101-104.

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Rahimov, F., Rajapova, N., & Salomova, M. (2019). R. Muradov Create a
Device that can Remove Heavy Components from the Chassis Chamber.


background image

Acumen:

International Journal of Multidisciplinary Research

ISSN: 3060-4745

IF(Impact Factor)10.41 / 2024

Volume 1, Issue 5

336

Acumen: International Journal of Multidisciplinary Research

International Journal Advanced Research Science, Engineering and
Technology//Of ijarset, 6(7), 2350-0328.

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Якубов, И. (2021). Саломова Машхура, Маматқулов Орифжон. Чигит
шикастланишини камайтириш мақсадида сепаратор конструкциясини
такомиллаштириш // Халқаро илмий-амалий конференсия материаллари
тўплами, 11(23), p647-649.

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Toshpo’latov Mansurbek, Komilov Shuxratjon Raximjon o’g’li, Salomova
Mashhura Arabboy qizi, & Muradov Rustam Muradovich. (2024). PAXTA
CHIGITINI TOZALASH QURILMALARINI ISHLASH TIZIMI TAXLILI.
Новости образования: исследование в XXI веке, 2(18), 338–342. извлечено
от

http://nauchniyimpuls.ru/index.php/noiv/article/view/14695

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Salomova, M., Salokhiddinova, M., & Muradov, R. (2023, June). How to
increase the effect radius of the cotton transport process in a mobile device. In
AIP Conference Proceedings (Vol. 2789, No. 1). AIP Publishing

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Sharipjanovich, S. O., O’gli, Y. X. S., Numonjonovich, S. X., &
Rustamjonovich, M. S. (2022, May 12).

INVESTIGATION OF SEPARATION

OF USABLE FIBERS ADDED TO CONTAMINANTS DURING CLEANING
COTTON

.

https://bestpublication.org/index.php/ozf/article/view/256

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Yo‘Ldashev Hasanboy Sulaymon O‘G‘Li, Inamova Maftuna Dedamirza Qizi, &
Sarimsakov Olimjon Sharifjanovich (2023). Arra tishlaridan paxta tolasini
yechib olish jarayoni parametrlarini ilmiy asoslash. Илм-фан ва инновацион
ривожланиш / Наука и инновационное развитие, 6 (6), 84-95. doi:
10.36522/2181-9637-2023-6-9

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chiqish. (2023).

International Conference on Multidisciplinary Science

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(5),

174-177.

https://mjstjournal.com/index.php/icms/article/view/381

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Sulaymonov Abror, Inamove Maftuna, Yuldashev Khasanboy. (2022).
THEORETICAL STUDIES OF THE NATURE OF THE INTERACTION OF
COTTON SEEDS IN THE GAP BETWEEN THE AGITATOR BLADE AND
THE SAW CYLINDER. EURASIAN JOURNAL OF ACADEMIC
RESEARCH, 2(11), 666–672.

https://doi.org/10.5281/zenodo.7218857

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Yuldashev, K., Sharipov, K., Najmitdinov, S., Inamova, M., & Ruzimatov, S.
(2024). Modelling Cotton Fiber Doffing From Saw Teeth Based On A
Mathematical

Model.

E3S

Web

of

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https://doi.org/10.1051/e3sconf/202453708017

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Effect Of Moisture Contenent In The Process Of Storing, Drying And


background image

Acumen:

International Journal of Multidisciplinary Research

ISSN: 3060-4745

IF(Impact Factor)10.41 / 2024

Volume 1, Issue 5

337

Acumen: International Journal of Multidisciplinary Research

Cleaning

The

Seed

Cotton

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https://www.orientalpublication.com/index.php/iscrc/article/view/189

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Khasanboy, Y., Abduraximov, K., Inamova, M., & Mirgulshanov, K. (2021,
November 17).

Study Of The Process Of Cleaning Seedcotton

.

https://orientalpublication.com/index.php/iscrc/article/view/191

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Azimov, S. S., Tursunov, I. T., & Yuldashev, K. S. (2022). DEVELOPMENT OF
THE DESIGN OF A FEEDER OF VIBRATION ACTION FOR SUPPLYING
COTTON SEEDS TO LINTER MACHINES Proceeding IX International
Conference «Industrial Technologies and Engineering» ICITE–2022, Volume IV
M.

Auezov South Kazakhstan University, Shymkent, Kazakhstan December

, 09-

10.

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Olimjon

Sarimsakov, Khasanboy

Yuldashev, Sherzod

Tuxtaev, Bekzod

Urinboyev, Utkirbek Xoshimov; Methodology for performing aerodynamic
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AIP Conf. Proc.

23 June 2023; 2789 (1):

040128.

https://doi.org/10.1063/5.0145700

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Increasing the efficiency of fiber cleaning by improving the process of removing
cotton

fiber

from

the

teeth

of

the

saw

.

https://mjstjournal.com/index.php/mjst/article/view/585.

https://mjstjournal.com/index.php/mjst/article/view/585

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Madumarov , S. ., Jurayev , Y. ., & Yuldashev, K. . (2022). GENERAL
INFORMATION ON THE IMPORTANCE OF FEEDSTOCK DENSITY AND
SPEED IN THE FIBER SEPARATION PROCESS.

Академические

исследования в современной науке

,

1

(16), 57–61. извлечено от

https://www.econferences.ru/index.php/arims/article/view/1485

17.

Jurayev , Y. ., Yuldashev , K. ., & Tuhktaev , S. . (2022). INVESTIGATION OF
FIBER

LOSS

IN

IMPURITIES

FROM

THE

SS-15A

SEPARATOR.

Евразийский журнал академических исследований

,

2

(11),

425–431.

извлечено

от

https://www.in-

academy.uz/index.php/ejar/article/view/4776

18.

Sarimsakov Olimjon Sharipjanovich, Kurbanov Dilmurod Maripjanovich,
Yo'ldashev Xasanboy Sulaymon O'gli, & Jurayev Yo'ldashxon Yunusxon O'g'li.
(2022). INVESTIGATION OF LOSING FIBER DURING CLEANING
COTTON.

https://doi.org/10.5281/zenodo.6559924

19.

Yo‘Ldashev Xasanboy Sulaymon O‘G‘Li, Sarimsakov Olimjon Sharifjanovich,
Ergashev Sharibboy To‘Lanovich, & Sharipov Xayrullo No‘Monjanovich
(2024). PAXTA TOLASINI ARRALI TOLA AJRATGICH ARRASI
TISHLARIDAN YECHIB OLISH JARAYONINI TAKOMILLASHTIRISH


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Acumen:

International Journal of Multidisciplinary Research

ISSN: 3060-4745

IF(Impact Factor)10.41 / 2024

Volume 1, Issue 5

338

Acumen: International Journal of Multidisciplinary Research

YO‘LI BILAN TOLANI TOZALASH SAMARADORLIGINI OSHIRISH
HAMDA ASOSLASH. Механика и технология, 2 (15), 160-164.

20.

Yo‘Ldashev Xasanboy Sulaymon O‘G‘Li, Sarimsakov Olimjon Sharifjanovich,
& Ergashev Sharibboy Tulanovich (2024). PAXTA TOLASI BILAN HAVO
ARALASHMASI OQIMI HARAKATINI MODELLASHTIRISH. Al-
Farg’oniy avlodlari, (3), 139-144. doi: 10.5281/zenodo.13954931

21.

Yo'ldashev Xasanboy Sulaymon O'g'li, Inamova Maftuna Dedamirza Qizi,
Mahmudova Yulduzxon Qutbiddin qizi, & Sarimsakov Olimjon Sharipjanovich.
(2023). Arra tishlaridan paxta tolasini echib olish jarayoni parametrlarini
asoslash. JOURNAL OF UNIVERSAL SCIENCE RESEARCH, 1(11), 665–
671.

https://doi.org/10.5281/zenodo.10250904

22.

Arra tishlaridan paxta tolasini ilib olish jarayonini matematik modelini ishlab
chiqish. (2023).

International Conference on Multidisciplinary Science

,

1

(5),

174-177.

http://mjstjournal.com/index.php/icms/article/view/381

23.

Исаев, Ш., & Инамова M. (2023). ЧИГИТ САРАЛАШ ҚУРИЛМАСИДА
ФРАКЦИЯЛАРГА АЖРАТИШ ТАДҚИҚОТЛАР ТАХЛИЛИ. Talqin Va
Tadqiqotlar,

1(7).

извлечено

от

http://talqinvatadqiqotlar.uz/index.php/tvt/article/view/336

24.

Usmanovich, S. A., Raximjon o’g’li, K. S., & Maftuna, I. (2023). CHIGIT
SARALAGICHLAR

BO’YICHA

O’TKAZILGAN

TAXLILLAR

NATIJALARI. O'ZBEKISTONDA FANLARARO INNOVATSIYALAR VA
ILMIY TADQIQOTLAR JURNALI, 2(24), 190-193.

25.

Шарипов К., Ахмедходжаев К., Тоджибоев М., Саримсаков О. (2020)
Математическая модель движения семян на ребре вогнутого профиля.
Машиностроение, 12, 216-227.

https://doi.org/10.4236/eng.2020.123017

26.

Sharipov, K., Akhmetxodjayev, K., & Tadjibayev, M. (2019). The mathematical
model of seed movement on a concave profile rib of saw jin stand. Scientific and
technical journal of Namangan institute of engineering and technology, 4, 19-
29.

27.

Ахмедходжаев, К. Т., Таджибаев, М. А., Шарипов, К. Н. М., Джурамирза,
А. К., и Абдураксимов, К. К. (2023). Изучение семян хлопчатника как
технологического материала. Машиностроение, 15(11), 782-791.

28.

Inamova, M., Rejabboyev, S., & Abduqodirov, K. (2024). SAW BLADE
DENSITY, SPEED AND COMPOSITION FROM CHANGES IN THE SPEED
OF THE SAW CYLINDER IN A SAWING MACHINE. Science and
innovation, 3(A9), 97-100.

29.

Isayev, S., Mamadaliyev, M., Muxsinov, I., Maftuna, I., & Sohibjon, E. (2023).
Practical and theoretical analysis of the results obtained in the process of


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Acumen:

International Journal of Multidisciplinary Research

ISSN: 3060-4745

IF(Impact Factor)10.41 / 2024

Volume 1, Issue 5

339

Acumen: International Journal of Multidisciplinary Research

cleaning cotton from impurities. Scientific and Technical Journal of Namangan
Institute of Engineering and Technology, 8(2), 67-73.

30.

Sarimsaqov, O. S., Inamova, M. D., & Ortiqova, K. I. (2023). URUGLIK
CHIGIT

TOLASINI

ARRA

TISHLARIDAN

YECHIB

OLISH

JARAYONLARI SAMARADORLIGINI OSHIRISH: URUGLIK CHIGIT
TOLASINI ARRA TISHLARIDAN YECHIB OLISH JARAYONLARI
SAMARADORLIGINI OSHIRISH.

References

Саломова, М., Рахимов, Ф., & Қосимов, Х. (1992). Пневмотранспорт қурилмаси элементларини такомиллаштириш. Механика муаммолари. 2019й, 101-104.

Rahimov, F., Rajapova, N., & Salomova, M. (2019). R. Muradov Create a Device that can Remove Heavy Components from the Chassis Chamber International Journal Advanced Research Science, Engineering and Technology//Of ijarset, 6(7), 2350-0328.

Якубов, И. (2021). Саломова Машхура, Маматқулов Орифжон. Чигит шикастланишини камайтириш мақсадида сепаратор конструкциясини такомиллаштириш // Халқаро илмий-амалий конференсия материаллари тўплами, 11(23), p647-649.

Toshpo’latov Mansurbek, Komilov Shuxratjon Raximjon o’g’li, Salomova Mashhura Arabboy qizi, & Muradov Rustam Muradovich. (2024). PAXTA CHIGITINI TOZALASH QURILMALARINI ISHLASH TIZIMI TAXLILI. Новости образования: исследование в XXI веке, 2(18), 338–342. извлечено от http://nauchniyimpuls.ru/index.php/noiv/article/view/14695

Salomova, M., Salokhiddinova, M., & Muradov, R. (2023, June). How to increase the effect radius of the cotton transport process in a mobile device. In AIP Conference Proceedings (Vol. 2789, No. 1). AIP Publishing

Sharipjanovich, S. O., O’gli, Y. X. S., Numonjonovich, S. X., & Rustamjonovich, M. S. (2022, May 12). INVESTIGATION OF SEPARATION

OF USABLE FIBERS ADDED TO CONTAMINANTS DURING CLEANING

Yo‘Ldashev Hasanboy Sulaymon O‘G‘Li, Inamova Maftuna Dedamirza Qizi, & Sarimsakov Olimjon Sharifjanovich (2023). Arra tishlaridan paxta tolasini yechib olish jarayoni parametrlarini ilmiy asoslash. Илм-фан ва инновацион ривожланиш / Наука и инновационное развитие, 6 (6), 84-95. doi: 10.36522/2181-9637-2023-6-9

Arra tishlaridan paxta tolasini ilib olish jarayonini matematik modelini ishlab chiqish. (2023). International Conference on Multidisciplinary Science, 1(5), 174-177. https://mjstjournal.com/index.php/icms/article/view/381

Sulaymonov Abror, Inamove Maftuna, Yuldashev Khasanboy. (2022). THEORETICAL STUDIES OF THE NATURE OF THE INTERACTION OF

COTTON SEEDS IN THE GAP BETWEEN THE AGITATOR BLADE AND THE SAW CYLINDER. EURASIAN JOURNAL OF ACADEMIC

RESEARCH, 2(11), 666–672. https://doi.org/10.5281/zenodo.7218857

Yuldashev, K., Sharipov, K., Najmitdinov, S., Inamova, M., & Ruzimatov, S. (2024). Modelling Cotton Fiber Doffing From Saw Teeth Based On A Mathematical Model. E3S Web of Conferences, 537, 08017. https://doi.org/10.1051/e3sconf/202453708017

Khasanboy, Y., Inamova, M., Qobilov, M., & Abduxaliqov, A. (2021, November 17). Effect Of Moisture Contenent In The Process Of Storing, Drying And Cleaning The Seed Cotton. https://www.orientalpublication.com/index.php/iscrc/article/view/189

Khasanboy, Y., Abduraximov, K., Inamova, M., & Mirgulshanov, K. (2021, November 17). Study Of The Process Of Cleaning Seedcotton.

Azimov, S. S., Tursunov, I. T., & Yuldashev, K. S. (2022). DEVELOPMENT OF THE DESIGN OF A FEEDER OF VIBRATION ACTION FOR SUPPLYING COTTON SEEDS TO LINTER MACHINES Proceeding IX International Conference «Industrial Technologies and Engineering» ICITE–2022, Volume IV M. Auezov South Kazakhstan University, Shymkent, Kazakhstan December, 09-10.

Olimjon Sarimsakov, Khasanboy Yuldashev, Sherzod Tuxtaev, Bekzod Urinboyev, Utkirbek Xoshimov; Methodology for performing aerodynamic measurements in cleaning seed cotton. AIP Conf. Proc. 23 June 2023; 2789 (1):

Yuldashev, K., Sarimsakov, Prof., & Kayumov, Prof. (2023, December 27).

Increasing the efficiency of fiber cleaning by improving the process of removing cotton fiber from the teeth of the saw.

Madumarov , S. ., Jurayev , Y. ., & Yuldashev, K. . (2022). GENERAL INFORMATION ON THE IMPORTANCE OF FEEDSTOCK DENSITY AND

SPEED IN THE FIBER SEPARATION PROCESS. Академические

исследования в современной науке, 1(16), 57–61. извлечено от

Jurayev , Y. ., Yuldashev , K. ., & Tuhktaev , S. . (2022). INVESTIGATION OF FIBER LOSS IN IMPURITIES FROM THE SS-15A

SEPARATOR. Евразийский журнал академических исследований, 2(11),

–431. извлечено от https://www.in-

academy.uz/index.php/ejar/article/view/4776

Sarimsakov Olimjon Sharipjanovich, Kurbanov Dilmurod Maripjanovich, Yo'ldashev Xasanboy Sulaymon O'gli, & Jurayev Yo'ldashxon Yunusxon O'g'li. (2022). INVESTIGATION OF LOSING FIBER DURING CLEANING

Yo‘Ldashev Xasanboy Sulaymon O‘G‘Li, Sarimsakov Olimjon Sharifjanovich, Ergashev Sharibboy To‘Lanovich, & Sharipov Xayrullo No‘Monjanovich (2024). PAXTA TOLASINI ARRALI TOLA AJRATGICH ARRASI

TISHLARIDAN YECHIB OLISH JARAYONINI TAKOMILLASHTIRISH YO‘LI BILAN TOLANI TOZALASH SAMARADORLIGINI OSHIRISH

HAMDA ASOSLASH. Механика и технология, 2 (15), 160-164. 20. Yo‘Ldashev Xasanboy Sulaymon O‘G‘Li, Sarimsakov Olimjon Sharifjanovich, & Ergashev Sharibboy Tulanovich (2024). PAXTA TOLASI BILAN HAVO ARALASHMASI OQIMI HARAKATINI MODELLASHTIRISH. Al- Farg’oniy avlodlari, (3), 139-144. doi: 10.5281/zenodo.13954931 21. Yo'ldashev Xasanboy Sulaymon O'g'li, Inamova Maftuna Dedamirza Qizi, Mahmudova Yulduzxon Qutbiddin qizi, & Sarimsakov Olimjon Sharipjanovich. (2023). Arra tishlaridan paxta tolasini echib olish jarayoni parametrlarini asoslash. JOURNAL OF UNIVERSAL SCIENCE RESEARCH, 1(11), 665–

Arra tishlaridan paxta tolasini ilib olish jarayonini matematik modelini ishlab

chiqish. (2023). International Conference on Multidisciplinary Science, 1(5),

Исаев, Ш., & Инамова M. (2023). ЧИГИТ САРАЛАШ ҚУРИЛМАСИДА ФРАКЦИЯЛАРГА АЖРАТИШ ТАДҚИҚОТЛАР ТАХЛИЛИ. Talqin Va Tadqiqotlar, 1(7). извлечено от

Usmanovich, S. A., Raximjon o’g’li, K. S., & Maftuna, I. (2023). CHIGIT SARALAGICHLAR BO’YICHA O’TKAZILGAN TAXLILLAR

NATIJALARI. O'ZBEKISTONDA FANLARARO INNOVATSIYALAR VA

ILMIY TADQIQOTLAR JURNALI, 2(24), 190-193.

Шарипов К., Ахмедходжаев К., Тоджибоев М., Саримсаков О. (2020) Математическая модель движения семян на ребре вогнутого профиля.

Машиностроение, 12, 216-227. https://doi.org/10.4236/eng.2020.123017

Sharipov, K., Akhmetxodjayev, K., & Tadjibayev, M. (2019). The mathematical model of seed movement on a concave profile rib of saw jin stand. Scientific and technical journal of Namangan institute of engineering and technology, 4, 19- 29.

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