Increase of heat stability and high-temperature strength of composite materal in cermet system
DOI:
https://doi.org/10.15587/1729-4061.2013.19171Keywords:
stabilized silica, slip casting, cermet, heat stability, high-temperature strengthAbstract
Development of modern industry requires the increase of mechanical, physical and chemical characteristics of construction materials for machines and technological equipment. Traditionally usable materials (cast-iron, steel, plastic and others) often can not already provide all complex of necessary requirements to current materials: robustness, ease, rigidity, chemical durability, wears resistance, heat-resistance and so on. One of decisions of the indicated above problem is the use of composition materials appeared relatively recently and including a few diverse elements. Each of these elements possesses the useful characteristics, and overall they create the complex of properties, that are essential for current construction materials.
Theoretical generalizations and new decisions of scientific and technical task that consists in development of economical process of construction elements forming on the basis of selective structure composition material with enhanceable mechanical and physical and thermal characteristics were obtained in the thesis. Practical value of the obtained results consists in the power inputs decreasing in 1,8 times and improving of mechanical characteristics. New construction elements technology is worked out on the basis of stabilized silica, waste material of metallurgical and glass production under structure forming time diminishing. The increase of mechanical characteristics is realized by optimization of mixture components. Scale, introduced in composition material, is not utilizable waste and provides necessary robustness glasswork waste serve as additional binder.
Forming method on the base of slip casting in the hydrophillic accessory is also more economical in comparizon with the method of pressing and sintering.References
- Башкирцев В. И., Гладких С. Н. Использование полимерных материалов при ремонте машин и оборудования // Пищевая промышленность – 2006. - №1. –С.58
- Ищенко А. А., Патко Д., Молнар Л. Новые технологии и материалы для восстановления дефектных отливок // Металлообработка. – 2006. - №6. С.44.
- В. Дудчак. Ремонт деталей заглиблювальних електронасосів // Харчова та переробна промисловість. – 2003. - №1. – С. 29.
- Ищенко А. А. Технология восстановления изношенных и дефектных деталей с помощью металлополимерных материалов // Сварщик. – 2004. - №6. С.12.
- Коррозионные, жаростойкие и высокопрочные стали и сплавы / [под ред. Шлямнева А. И.]. – Интермет Инжиниринг, - 2000.- 232 с.
- Худяков М. А. Материаловедение / Худяков М. А. //-Уфа: 2006.- 238 с.
- Корожких М. Т. Материаловедение/ Корожких М. Т. // - Санкт-Петербург: СПППУ, 2004. - 104 с.
- Кингери Д. Введение в керамику [пер. с англ.]:/ Д. Кингери // М.: Стройиздат, 1964. - 462 с.
- Болтон У. Конструкционные материалы: металлы, сплавы, полимеры, керамика, композиты [пер. с англ.]:/ У. Болтон. - Изд. Додэка-XXI, - 325 с.
- Иванова Л. А., Сергеева А. Е., Косицын Н. О. Композиционные материалы. – Одесса: Полиграф, 2010. – 190 с.
- Дж. Любин Справочник по композиционным материалам: (пер. с англ.) / Любин Джордж. - М.: Машиностроение, 1988 Т. 1, - 584 с.
- Иванова Л. А. Процессы формообразования гетерогенних керамических систем / Л. А. Иванова, Н. О. Косицын, // - О.: Полиграф, 2008. -124 с.
- Иванова Л. А. Синтез композиционных материалов на основе
- стабилизированного кремнезема / Л. А. Иванова, Н. О. Косицын // О.: Наук. праці ОНАПТ, Вып.40, Том 2,–2011.–С. 381-385
- Айлер Р. Химия кремнезема / [ пер. с англ] / Айлер Р. // – М.: Мир, 1982. -ч.1. – 416 с.
- Иванова Л. А Процессы отверждения суспензий и шликеров при
- формообразования/ Л. А. Иванова, Н. О. Косицын // Проблемы техники. 2009. -№3. -С. 14-20.
- Добровольский А. Г. Шликерное литье / Добровольский А.Г. //- М.: Металлургиздат, 1975. - 118 с
- Репях С. И. "Технологические основы литья по выплавляемым моделям" // Днепропетровск «Лира», 2006. – 1056 С.
- Bashkircev, V. I., Gladkykh, S. N. (2006). Using polymeric materials for the repair machines and equipment. Food Technology, 1, 58.
- Ishenko, A. A., Patko, D., Molnar, L. (2003). New technologies and materials for restoration of defective castings. Metalworking, 6, 44.
- Dydchack, V., (2003). Repairing parts of the electric submersible pump. Food Technology, 1, 29.
- Ishenko, A. A., (2004). Technology of the restoring worn or defective parts using metal-polymer materials. Velder, 6, 12.
- Shliamnev, A. I., (2000). Corrosive, heat-resistant and high-strength steels and alloys. Intermet Engineering, 232.
- Hoodiakov, M. A., (2004). Materiology, 238.
- Korozhkih, M. T., (2004). Materiology, 104.
- David Kingery, W. (1964). Introduction to Ceramics. Stroyizdat, 462.
- Bolton, Y. (2004). Engineering Materials. Dodeka XXI, 325.
- Ivanova, L. A., Sergeeva, A. E., Kosicyn, N. O. (2010). Composite Materials. Odessa, Poligraph, 109.
- Lubin, G. (1988). Handbook of Composites. Moscow, USSR. Engineering, 584.
- Ivanova, L. A., Kosicyn, N.O. (2008). Processes of formation of heterogeneous ceramic systems. Odessa, Poligraph, 124.
- Ivanova, L. A., Kosicyn, N.O. (2011). Synthesis of composite materials based on stabilized silica. Odessa, Science Works of ONAFT, 40 (2), 384-385.
- Ralph, K. Iler (1982). The Chemistry of Silica. Moscow, USSR: The World, 1, 416.
- Ivanova, L. A., Kosicyn, N.O. (2009). The curing process of suspensions and slurries during formation. Problems of the Technique, 3, 14-20.
- Dobrovolsky, A. G. (1975). Slip Casting. Metallurgy, 118.
- Repiah, S. I. (2006). Technological bases of investment casting. Leera, 1056.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2014 Николай Олегович Косицын
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.
A license agreement is a document in which the author warrants that he/she owns all copyright for the work (manuscript, article, etc.).
The authors, signing the License Agreement with TECHNOLOGY CENTER PC, have all rights to the further use of their work, provided that they link to our edition in which the work was published.
According to the terms of the License Agreement, the Publisher TECHNOLOGY CENTER PC does not take away your copyrights and receives permission from the authors to use and dissemination of the publication through the world's scientific resources (own electronic resources, scientometric databases, repositories, libraries, etc.).
In the absence of a signed License Agreement or in the absence of this agreement of identifiers allowing to identify the identity of the author, the editors have no right to work with the manuscript.
It is important to remember that there is another type of agreement between authors and publishers – when copyright is transferred from the authors to the publisher. In this case, the authors lose ownership of their work and may not use it in any way.