Abstract

Abstract. Low-level mechanization is one of the main reasons for the high costs in selection and primary seed production. Crop breeders use transport and loading facilities for seed material transporting in an unsystematic manner. (Research purpose) Development of technology of transport support in selection and seed production, including all transport and loading processes of the delivery of grain seeds from selection combines to storage facilities using containers for seed collection, transportation, drying, and storage. (Materials and methods) The authors have described a container flowtransport technology of selection grain harvesting at the stage of primary reproduction and developed a machine complex technology and a database of harvesting and transport machines for seed collection, transportation, drying, and storage. (Results and discussion) The authors have determined the type of transport and loading means for the container method of seed harvesting, transportation and storage recommended for use in selection and seed production. There are four distinctive novelty positions of the presented type: the ability to transport containers in 2 rows; increased loading height from 2 m to 3 m; maximum operating radius reaches 3.8 m (vs. 2.7 m); increased cargo capacity – by 460 kg. (Conclusions) The authors suggest using the developed methodology to improve the technological process of harvesting, transportation and postharvest processing of seed grain, organize this process, as well as select machine parameters and technical equipment on the farms of the Central region of Russia. It has been suggested that test prototypes of containers and a loader with a container tilter should be designed and manufactured for use in primary crop processing.

Highlights

  • Высокие затраты связаны в основном с низким уровнем механизации селекции и первичного семеноводства [1, 2]

  • There are four distinctive novelty positions of the presented type: the ability to transport containers in 2 rows; increased loading height from 2 m to 3 m; maximum operating radius reaches 3.8 m; increased cargo capacity – by 460 kg. (Conclusions) The authors suggest using the developed methodology to improve the technological process of harvesting, transportation and postharvest processing of seed grain, organize this process, as well as select machine parameters and technical equipment on the farms of the Central region of Russia

  • It has been suggested that test prototypes of containers and a loader with a container tilter should be designed and manufactured for use in primary crop processing

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Summary

Introduction

Высокие затраты связаны в основном с низким уровнем механизации селекции и первичного семеноводства [1, 2]. Поэтому вопросы бесперебойного и рентабельного движения материальных потоков уборочно-транспортной системы в селекции и первичном семеноводстве сельскохозяйственных культур становятся все актуальнее [2, 3]. Разработка научных основ механизации производственных процессов в селекции, сортоиспытании и первичном семеноводстве начата более 20 лет назад, когда впервые в систему машин для комплексной механизации сельскохозяйственного производства на 1971-1975 гг.

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