The choice of a rational ballasting scheme and the angle of application of the traction force for a caterpillar tractor


如何引用文章

全文:

详细

A feature of the layout of modern tracked tractors is that the center of mass of the tractor is usually located with a forward shift from the center of the caterpillar support surface. Such a layout solution, in combination with the use of ballast weights placed most often in front of the tractor, makes it possible to provide its required traction and coupling properties when assembling with guns. However, since the tractor operates with a wide range of loads, when changing the gun with high traction resistance, for example, to a low-resistance trailer, it becomes necessary to adjust the weight of the ballast. In practice, this adjustment is often not carried out, i.e. Once installed, the front ballast is used throughout the operating life of the machine, worsening its fuel economy and not providing optimum traction and coupling properties. In this regard, the important task is to find solutions that would eliminate the need to adjust the mass of the ballast depending on the hook load. For this purpose, the article deals with the scheme of ballasting of a caterpillar tractor with the application of traction force at a positive angle. Also, for the Challenger MT865B tractor, with a number of assumptions about its geometric parameters, the calculated dependence of the ballasting coefficient on the coupling weight and the thrust angle was constructed. Dependence analysis allowed to come to the conclusion that it is possible to ensure the coincidence of the pressure center with the middle of the tractor's support surface over the entire range of its loads, with constant values of the ballasting factor and the angle of application of the traction force. To calculate the optimal values of these parameters, the paper presents the corresponding formulas.

作者简介

K. Gorodetskiy

Moscow Polytechnic University

Email: kg1101@yandex.ru
DSc in Engineering

V. Sharipov

Moscow Polytechnic University

Email: kg1101@yandex.ru
DSc in Engineering

E. Alendeev

Central scientific research automobile and automotive engine institute «NAMI»

Email: evg9702@gmail.com
PhD in Engineering

A. Lavlinskiy

Central scientific research automobile and automotive engine institute «NAMI»

Email: evg9702@gmail.com

参考

  1. Шарипов В.М. Конструирование и расчет тракторов. М.: Машиностроение, 2009. 752 с.
  2. Шарипов В.М., Апелинский Д.В., Арустамов Л.Х. и др. Тракторы. Конструкция / под общ. ред. В.М. Шарипова. М.: Машиностроение, 2012. 790 с.
  3. Шарипов В.М., Дмитриева Л.А., Сергеев А.И., Шевелев А.С., Щетинин Ю.С. Проектирование ходовых систем тракторов. М.: МГТУ «МАМИ», 2006. 82 с.
  4. Шарипов В.М., Бирюков М.К., Дементьев Ю.В. и др. Тракторы и автомобили / под общ. ред. В.М. Шарипова. М.: Издательский дом «Спектр», 2010. 351 с.
  5. Городецкий К.И., Лавлинский А.М., Алендеев Е.М. Нагружение трактора на тяговых испытаниях при силе тяги, направленной под углом // Тракторы и сельхозмашины. 2015. № 8. С. 10-14.
  6. Городецкий К.И., Серебряков В.В., Лавлинский А.М. Определение сцепления ведущих колес трактора МТЗ-82 // Тракторы и сельхозмашины. 2016. № 12. С. 16-18.
  7. Tractor test reports. Nebraska Tractor Test Labоrаtоry. URL: ttp://tractortestlab.unl.edu/testreports (дата обращения 12.12.2017).

补充文件

附件文件
动作
1. JATS XML

版权所有 © Gorodetskiy K.I., Sharipov V.M., Alendeev E.M., Lavlinskiy A.M., 2018

Creative Commons License
此作品已接受知识共享署名-非商业性使用-禁止演绎 4.0国际许可协议的许可。
 


Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).