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МЕЖДУНАРОДНЫЙ СЕЛЬСКОХОЗЯЙСТВЕННЫЙ ЖУРНАЛ № 6 (366) / 2018

89

ЭКСПЕРТНОЕ МНЕНИЕ

Об авторах:

Жуков Алексей Дмитриевич,

кандидат технических наук, доцент, доцент кафедры строительных материалов и материаловедения,

lj211@yandex.ru

Тер-Закарян Карапет Арменович,

управляющий директор,

karo73@mail.ru

Фомина Екатерина Дмитриевна,

студентка,

ekaterinafomina1608@mail.ru

SYSTEMS OF SEAMLESS INSULATION OF CONSTRUCTIONS

OF FARMING ECONOMIES

A.D. Zhukov

1

, K.A. Ter-Zakaryan

2

, E.D. Fomina

1

1

National research Moscow state university of civil engineering, Moscow

2

TEPOFOL Ltd., Moscow, Russia

This arƟcle is dedicated to the insulaƟon systems of main farm buildings such as coƩages and livestock faciliƟes. The implementaƟon of these systems within the scope

of housing construcƟon is oriented on the one hand to the energy efficiency but on the other hand, it is aimed at the condiƟons improvement of living quarters and

decrease of negaƟve loading upon the living environment. InsulaƟon of livestock faciliƟes is necessary for keeping its populaƟon and building up the appropriate living

condiƟons, for instance, in winter. The formaƟon of the insulaƟng shell of a building includes two main factors –minimizing heat loss through the enclosing elements

and limiƟng the air and vapor permeability of walls. The use of heat insulaƟon with low vapor permeability in the construcƟon of walls significantly reduces exfiltraƟon

and infiltraƟon, which helps to increase the thermal protecƟon of the system as a whole. Low vapor permeability of such shells minimizes the probability of condensa-

Ɵon of water vapor in the thickness of the wall. The basic component of insulaƟon systems regarded in this arƟcle is polyethylene foam roll, connected by means of

a locking buƩ joint and welded with the hot air obtaining a seamless thermal, vapor- and waterproof coaƟng. The creaƟon of an indoor microclimate is implemented

with the help of exhaust or vacuum venƟlaƟon system and heaƟng as well.

Keywords:

polyethylene foam, thermal insulaƟon, locking joint, welding, mechanical fixaƟon, hangar, framed coƩage.

References

1.

Zhukov A.D., Ter-Zakaryan K.A., Bessonov I.V., Se-

menov V.S., Starostin A.V.

Building insulation systems us-

ing polyethylene foam.

Stroitelnye materialy

= Construc-

tion materials. 2018. No. 9. Pp. 58-61.

2. Zhukov A., Semyonov V. Gnip I., Vaitkus S. The

investigation of expanded polystyrene creep behavior.

MATEC Web of Conferences Volume 117, 24 July 2017,

Article number 0018426th R-S-P Seminar 2017 Theoreti-

cal Foundation of Civil Engineering, RSP 2017; Warsaw;

Poland; 19 August 2017 до 21 August 2017; Code 129222.

3. Rumiantcev B.M., Zhukov A.D., Zelenshikov D.B.,

Chkunin A.S., Ivanov K.K., Sazonova Yu.V. Insulation sys-

tems of the building construtions. MATEC Web of Con-

ferences. Vol. 86 (2016). DOI:

http://dx.doi.org/10.1051/

matecconf/ 20168604027.

4. Rumiantcev B.M., Zhukov A.D., Bobrova

E.Yu

.,

Romanova I.P., Zelenshikov D.B., Smirnova T.V. The

systems of insulation and a methodology for assess-

ing the durability. MATEC Web of Conferences. Vol. 86

(2016).

DOI:

http://dx.doi.org/10.1051/matecconf/

20168604036.

5. Wang Y., Huang Z., Heng L. Cost-effectiveness as-

sessment of insulated exterior wall of residential build-

ings in cold climate. International Journal of Project Man-

agement, 2007, no. 25(2), pp. 143-149.

6.

Semenov V.S., Rozovskaya T.A., Gubskij

A.Yu

.

Pros-

pects for the use of recycled polyester fibers for the pro-

duction of heat and sound insulating materials.

Stroitel-

nye materialy

=

Construction materials. 2016. No. 6.

Pp. 21-24.

7. Gnip

I.Ya

., Kerchulis V.I., Vaitkus S.Y. Confidence

intervals forecasting creep deformation of foam polysty-

rene. Construction Materials. 2012. No. 12. Pp. 40-44.

8. Gnip I.J., Keršulis V.J., Vaitkus S.J. Analytical de-

scription of the creep of expanded polystyrene under

compressive loading. Mechanics of Composite materials.

2005; 41(4): 357-364.

9.

Zhukov A.D., Ter-Zakaryan K.A., Kozlov S.D., Zhu-

kov

A.Yu.

Seamless insulation in floating floor systems.

Zhilischnoe stroitelstvo

= Housing construction. 2018.

No. 9. Pp. 48-51.

10.

Zhukov A.D., Ter-Zakaryan K.A., Zayafarov A.V.,

Petrovskij E.S., Tuchaev D.U.

Pitched roof insulation sys-

tems.

Kryshi i krovli

= Roofs and housetops. 2017. No. 6.

Pp. 27-29.

11. RF patent № 2645190 “The castle technology of

heat-insulating material for seamless welding of connect-

ing locks”was registered on February 16, 2018.

12.

Zhukov A.D., Ter-Zakaryan K.A., Tuchaev D.U.,

Petrovskij E.S.

Energy efficient insulation of food ware-

houses and vegetable stores.

Mezhdunarodnyj selskokho-

zyajstvennyj zhurnal

= International agricultural journal.

2018. No. 1. Pp. 65-67.

About the authors:

Aleksey D. Zhukov,

candidate of technical sciences, associate professor, associate professor at the department of building materials and materials science,

lj211@yandex.ru

Karapet A. Ter-Zakaryan,

managing director,

karo73@mail.ru

Ekaterina D. Fomina,

student,

ekaterinafomina1608@mail.ru lj211@yandex.ru

Уважаемые читатели!

В журнале № 5 (365)-2018 на стр. 16 в статье «Анализ эффективности управления земельными ресурсами региона

на основе применения методики комплексного (кластерного) зонирования территорий (на примере земель сельско-

хозяйственного назначения)» (авторы: Д.В. Антропов, С.И. Комаров) была допущена техническая ошибка. Вместо

«Исследование выполнено при финансовой поддержке РФФИ в рамках научного проекта № 18-001-00001» следует

читать «Исследование выполнено при финансовой поддержке РФФИ в рамках научного проекта № 18-010-01016».

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