Поиск по каталогу |
(строгое соответствие)
|
- Профессиональная
- Научно-популярная
- Художественная
- Публицистика
- Детская
- Искусство
- Хобби, семья, дом
- Спорт
- Путеводители
- Блокноты, тетради, открытки
Temperature Distribution in Friction Stir Welding of Aluminium Alloy. Modeling and Simulation of Friction Stir Welding Process by using HyperWorks
В наличии
Местонахождение: Алматы | Состояние экземпляра: новый |
Бумажная
версия
версия
Автор: Mohd Anees Siddiqui
ISBN: 9783659858079
Год издания: 2016
Формат книги: 60×90/16 (145×215 мм)
Количество страниц: 112
Издательство: LAP LAMBERT Academic Publishing
Цена: 32315 тг
Положить в корзину
Способы доставки в город Алматы * комплектация (срок до отгрузки) не более 2 рабочих дней |
Самовывоз из города Алматы (пункты самовывоза партнёра CDEK) |
Курьерская доставка CDEK из города Москва |
Доставка Почтой России из города Москва |
Аннотация: As far as research in the area of friction stir welding is concerned, there are two types of model which are physical model and analytical model. Both the models have their own advantages and limitations and they are selected as per the availability and objectives of the research. Apart from physical model based on the experimental work, there is scope to work on analytical model of friction stir welding process before going for experimental work. The analytical model was selected for the present research in order to investigate the effect of parameters on temperature distribution in the weld zone during friction stir welding through simulation by using HyperWorks considering tool as steady state heat source. In order to achieve objectives of the present work, different simulation models of friction stir welding of butt joint of aluminium alloy were developed. The simulation for prediction of temperature distribution along the weldline was carried out and it was validated with the previous published work. The simulation results were in good agreement with experimental values near the weld line.
Ключевые слова: Friction stir welding, Simulation, Temperature distribution