TN2014000511A1 - Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect - Google Patents

Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect

Info

Publication number
TN2014000511A1
TN2014000511A1 TN2014000511A TN2014000511A TN2014000511A1 TN 2014000511 A1 TN2014000511 A1 TN 2014000511A1 TN 2014000511 A TN2014000511 A TN 2014000511A TN 2014000511 A TN2014000511 A TN 2014000511A TN 2014000511 A1 TN2014000511 A1 TN 2014000511A1
Authority
TN
Tunisia
Prior art keywords
coating
building
green house
insulation coating
acrylic beads
Prior art date
Application number
TN2014000511A
Other languages
French (fr)
Inventor
Muroi Ichiro
Mohamed Daoud
Miura Junnichi
Mohamed Tidjani
Maeda Keiichi
Original Assignee
Muroi Ichiro
Mohamed Daoud
Miura Junnichi
Mohamed Tidjani
Maeda Keiichi
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Muroi Ichiro, Mohamed Daoud, Miura Junnichi, Mohamed Tidjani, Maeda Keiichi filed Critical Muroi Ichiro
Priority to TN2014000511A priority Critical patent/TN2014000511A1/en
Publication of TN2014000511A1 publication Critical patent/TN2014000511A1/en

Links

Landscapes

  • Building Environments (AREA)
  • Paints Or Removers (AREA)

Abstract

A water based acrylic thermal insulation coating is presented in the present invention. It provides a high reflecting fonction, high insulating fonction and high green house effect function as well as high elasticity. New raw materials are used to perform this coating which are: - Big size of hollow acrylic beads filled with a combination of hydro carbonic gas and having a diameter range of 30 -110 microns .. The volume fraction of these acrylic beads is more than 50% on dry coating film. - Rutile type large size crystal titanium dioxide (average diameter is 1 micron). A very important improvement of the insulation coating is noticed by using these new raw materials which are: - Elasticity of the coating film up to 250%. - Stability of the coating film - Green house effect - Very high reflectivity of the infrared rays (wave length 780 to 2500 nm) up to 86%. - Important insulation power - Important energy saving in cold weather by applying the coating on the inner wall of the building. This innovated coating gives a very important energy saving on the heating/cooling cost of the building. The application of the coating on the building roof, building internal and external walls increases the efficiency of heating/cooling consumption up to 50 %. This coating makes also the life time of the building longer by protecting it from the climatic conditions. In addition, due to its high elasticity, this insulation coating can be used on houses made by soft supports.
TN2014000511A 2014-12-08 2014-12-08 Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect TN2014000511A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TN2014000511A TN2014000511A1 (en) 2014-12-08 2014-12-08 Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TN2014000511A TN2014000511A1 (en) 2014-12-08 2014-12-08 Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect

Publications (1)

Publication Number Publication Date
TN2014000511A1 true TN2014000511A1 (en) 2016-03-30

Family

ID=56266861

Family Applications (1)

Application Number Title Priority Date Filing Date
TN2014000511A TN2014000511A1 (en) 2014-12-08 2014-12-08 Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect

Country Status (1)

Country Link
TN (1) TN2014000511A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110746876A (en) * 2019-10-15 2020-02-04 福建船政交通职业学院 Heat-insulating coating material and preparation method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110746876A (en) * 2019-10-15 2020-02-04 福建船政交通职业学院 Heat-insulating coating material and preparation method thereof

Similar Documents

Publication Publication Date Title
CL2014002291A1 (en) Wind power installation because it has a tower with at least one lower tower segment a prefabricated fire protection module to house a fireproof transformer where the fire protection module is located within the lower tower segment.
TN2014000511A1 (en) Water based thermal insulation coating using big titanium dioxyd crystals and hallow acrylic beads giving green house effect
CN203669272U (en) Anticorrosive architectural ornament insulation board
WO2015066105A3 (en) Liquid sealant with thermally adaptive properties
AR090925A1 (en) PRODUCT WITH THERMAL REVERSIBLE GELATINIZED ALCOHOL CONTENT
Motta et al. Alfred Schutz y Niklas Luhmann: semánticas, tipos, mundo de la vida e intersubjetividad.
CN104293176A (en) Improved coating for building exterior wall
GR20140100058A (en) Plant and animal production unit exploiting the geothermal and solar energy
Kuleshova et al. On the aspects of application of liquid thermal insulation for preventing wellhead equipment from freezing
Moses et al. Evolution of Stratospheric Chemistry in the Saturn Storm Beacon
Haid et al. The impact of changes in the Antarctic wind field on the Southern Ocean sea ice
Golej et al. INSTRUMENTS FOR REDUCING CARBON DIOXIDE IN THE SLOVAK RESIDENTIAL SECTOR
Eade et al. The Role of the AMOC in Forecast Cooling of the Atlantic Subpolar Gyre and Its Associated Impacts
Kim et al. Density and Thermal Conductivity Property of the Lightweight Composite Panel Core According to Pearlite Replacement ratio
AU2014240226A1 (en) Window Refrigerant
CN103912082A (en) Glass curtain wall
TH68660B (en) Heat shield
PL404768A1 (en) Heating and cooling module
KR20160023248A (en) Solar Water tank
Legrand et al. The atmospheric HCHO budget at coastal East and West Antarctica: Impact of photochemical productions and snow emissions
PL401670A1 (en) Flush-mounted cooling HVAC module
Whight A Spectroscopic Study of the Blue component of Albireo
Hölscher et al. Sap flow measurements to determine the transpiration of facade greenings
Hollingsworth et al. Northern Late Winter Planetary Waves: MRO/MARCI Observations and Mars Climate Model Simulations
Bitz et al. Antarctic Sea Ice Expansion and The Consequences of Missing Processes in Global Climate Models