强化洋葱套采收的理论基础

A. S. Dorokhov, A. G. Aksenov, A. V. Sibirev, A. G. Ponomarev, N. V. Sazonov
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引用次数: 0

摘要

本文表明,通过整合多种分离强化剂来改进洋葱收获机的设计,对提高商品农产品清洗质量的效果有限。他们指出,建立分离系统需要遵守严格的技术参数(在没有损耗的情况下,将灯泡送入针网表面的直线部分,降低灯泡与清洗装置工作元件碰撞的最大速度,以减少损坏,并提高清洗的完整性)。研究表明,在分离过程中采用超声波辅助堆湿法是加强洋葱片从土壤和土块中清洗过程的一种方法。(研究目的)本研究旨在确定驱动洋葱集从机械杂质中加强清洗的理论原理。(材料与方法)本研究采用系统分析与综合方法、基于概率论与数理统计的物理建模、求解解析依赖关系的数值技术、经典力学方法——断裂理论基本原理、土力学等。(结果和讨论)本文论证了加强洋葱集收获和去除机械杂质的必要的最佳制度。考虑状态、外部和控制动作的功能以及性能指标,确定了具有超声波清洗模块的挖式洋葱收获机的功能框图。(结论)本研究提出了一种配备超声波的收割机分离模块的设计概念,以改善洋葱集的清洗过程。这种设计符合农业技术要求,确保最大限度的土壤和杂质筛分(至少98%),最大限度地减少损失(不超过2%)和球茎损坏(不超过2%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical foundations for intensifying onion set harvesting
The paper shows that upgrading the design of onion harvesting machines through the integration of diverse separation intensifiers demonstrates limited efficacy in improving the quality of cleaning commercial produce. They noted the need to comply with strict technological parameters for setting up separating systems (feeding bulbs to a straight section of the pin web surface in the absence of losses, reducing the maximum speed of collision of the bulbs with the working elements of the cleaning unit to reduce damage, as well as improving the completeness of cleaning). The study reveals that one of the options for intensifying the process of onion set cleaning from soil and soil clods can be ultrasonic-assisted heap moistening during separation. (Research purpose) The research aims to determine theoretical principles driving the intensification of onion set cleaning from mechanical impurities. (Materials and methods) The research employed system analysis and synthesis methods, physical modeling based on probability theory and mathematical statistics, numerical techniques for solving analytical dependencies, classical mechanics methods - fundamental principles of fracture theory, soil mechanics. (Results and discussion) The paper justifies the necessary optimum regime for intensifying onion set harvesting and cleansing them from mechanical impurities. It substantiates the functional diagram of a digging-type onion harvester featuring an ultrasonic cleaning module, taking into account the functions of the state, external and control actions, as well as performance indicators. (Conclusions) The research resulted in developing a design concept for an ultrasonic-equipped separating module of a harvester to improve the onion set cleaning process. This design conforms to the agrotechnical requirements, ensuring maximum soil and impurity sieving (at least 98 percent), minimizing losses (not exceeding 2 percent) and bulb damage (not exceeding 2 percent).
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