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Thermostone
Student Name:
Class: 4th
Stage
Course Title: Elective Subject
Department: Geomatics (Surveying) Engineering
College of Engineering
Salahaddin University-Erbil
Academic Year 2019-2020
Copyright
1
Abstract
My aim in this report is showing the specialty of thermostone and about the
type of creation the chemical sectional and preparation then discuss about
the method and advantage of thermostone.s to improve the report we used
the koya thermostone the rate of construction in the Kurdistan region (KRG)
has increased through the recent decade due to a wide scope of investments
in different projects and especially for residential projects, infrastructure and
others.
Thermostone block has a good marketing demand in KRG due to its
preferable specification low unit weight and exceptional thermal insulation;
it is known as light weight concrete.
It is used for the inner sections and in conjunction with the various insulation
materials. The manufacturing technology of thermostone is not complicated,
but there are limited thermostone factories in the Kurdistan region, and
mainly all the thermostone construction materials are imported from outside
Iraq. So the manufacturing of thermostone locally would have a positive
additional value as a result of substituting imported material, providing jobs
and the availability of raw materials around Koya city. The idea of this paper
is to promote local and foreign investors for the establishment of
thermostone factories in Koya city to produce standard blocks and panels. It
is found from the study that a 10 ton/day
factory capacity is a good startup to produce thermostone.
2
Table of content
Subject page
Abstract...................................................................................................... 1
Table of content ......................................................................................... 2
Introduction................................................................................................ 3
Thermostone .............................................................................................. 5
Raw material.............................................................................................. 6
Method....................................................................................................... 7
Theory...................................................................................................... 10
Manufacturing procedures........................................................................ 11
Advantages of thermostone...................................................................... 13
Conclusion .............................................................................................. 16
Refernce .................................................................................................. 17
3
Introduction
It is a modern construction material that has a white medium textured
surface. It is a unique and excellent type of building material due to its super
heat, fire and sound resistance; it is known as light weight concrete (LWC).
Thermostone blocks offer ultimate workability, flexibility, durability, easy
to handle, quickly to install and can be easily cut, chased and fixed into. The
local market demand for that material is very high in KRG for its positive
specifications and because of highly building rate but there is shortage in the
local production of that material due to the lack of factories it is shown that
the announced information for investment in KRG shows only one factory
in Erbil , and the main amount of thermostone that is used now in KRG is
imported from other countries (Turkey or Iran) . For these reasons and
because of its positive economic data, the production of thermostone is
considered to be an important subject for urban development.
It Developed in Sweden in the 1920s by Dr. Johan Axel Eriksson who was
looking for a building material with the properties of wood without the
disadvantages of wood: combustibility, decay and insect damage. He was
working on a variety of aerated concrete samples.
Running short of time, he decided to speed up the curing process by placing
the sample in the laboratory autoclave. The porous mass survived the
overnight autoclaving and the resulting cured brick possessed greatly
increased strength and a new, stronger crystalline composition. In the heat
and pressure of the steam curing, the silica and lime components had become
fused into a form of calcium silicate hydrate crystal, similar to the volcanic
rock,known in nature as Tobermorite.
4
He succeeded in producing a highly cellular, lightweight masonry material,
and quickly became very popular and was often referred to as "blue
concrete"in Sweden due to its blueish tinge.
Thermo stone is a lightweight manufactured building stone.It is used in a
wide range of commercial, industrial, and residential applications and has
been in use in Europe for over 70 years, the Middle East for the past 40 years,
and South America and Australia for approximately 20 years.
Thermo stone is very light colored. It contains many small voids that can be
clearly seen when looked at closely.
The closed air pockets contribute to the material’s insulating properties and
also its aerated nature. Although there is no direct path for water to pass
through the material, an appropriate coating is required to prevent water
penetrating into the thermostone material.
5
Thermostone
Thermostone can be described as a light unite weight building with
exceptional thermal and sound insulation. Usually thermostone used as a
partition due to their high quality of thermal insulation and in some cases
used as bearing walls or in ribbed slabs. Thermostone unite have a white
medium textured surface (below figure) available in different dimensions
according the requirements. The unite weight of thermostone ranging from
(500-550) kg/m3
and the compressive strength ranged between (4-7 Mpa)
or little more.
Figure 1: thermostone
6
Raw material
The common raw materials used to manufacture thermostone blocks in Iraq
are Portland cement, hydrated lime (calcium oxide), aluminum fine powder,
water, and sand, are shown in table one .
Table 1: Raw materials specifications and proportions
No. Matenal Specifications Wt. %
1 Sand
Silica content more than 80%.
Sieve analysis 85% pass through sieve 90
micron.
The density of the sand slurry should be not
more than 1.7 gm/cc.
25
2 Lime (Ca0)
Sieve analysis 95% pass through sieve 90
micron. Produced by calcination of
limestone rock (CaC03).
9—10
3
Portland
cement
Loss on ignition: 0.7% , CaO %:70% 25
4
Alummium
Powder
50—100 microns O. 04
5 Water Tap water 40
7
Chemical analysis of the Koay Heibat Sultan soil shows it contains a mixture
of metal oxide related to iron, alumina, magnesium, silica and calcium. The
mixture of metal oxide inter inside the grain structure of thermostone and
change specifications towards better strength and heat insulation. The big
Portland cement factories in Sulaymaniea (Taslouga and Bazyan) are not far
from Koya and according to that Koya is suitable place to establish such a
factory because the raw materials are available either in Koya or around.
8
Method
In an attempt to solve the problems mentioned previously, Thermostone
blocks ( 20 X 20 X 60cm) with different ratios of additives were made and
tested. Each result represents the average of three tests and the following
tests were conducted during the present work:
1. Compressive strength test: (According to ASTM C 1386)
2. Dry bulk density test: (According to ASTM C 1386)
3. Apparent porosity test: (According to ASTM C-830 )
4. Thermal conductivity test: (According to ASTM C518 )
5. Capillary absorption test: According to Iraqi specification for cellular
concrete blocks (Thermostone) No.1441/2000), samples were put vertically
in a water bath for 24 hours and the level of water ascendance was
measured.
6. Measuring the reaction temperature:
In order to investigate the problem of no pores formation or weak reaction
between lime and Aluminum powder a special device (Fig.2) was used to
measure the reaction temperature after adding Aluminum. It mainly consists
of a mixing motor and a thermometer. Aluminum powder is added after
mixing with small amounts of sand to prevent the powder from floating on
the surface of the mixer, the mixing continues up to 2 minutes, and the whole
test time ends within 3 hours.
9
7. X-Ray diffraction technique:
X-ray (powder) diffraction technique and chemical analysis were carried out
on raw materials and Thermostone blocks after autoclaving to determine the
phases formed during curing. Analysis of the samples (powder method) was
carried out by XRD with diffractometer DRON-7 (the wavelength of
radiation =17902 nm).
Fig. 2: Measuring the temperature of reaction of lime and aluminum
10
Theory
Aluminum powder reacts with calcium hydroxide and water to produce
hydrogen gas which aerates the mixture producing millions of microscopic
hydrogen bubbles.
2Al + 3Ca (OH)2 + 6H20 3CaO.AI203.6H2O + 3H2.…..equation(1)
Aluminum powder+ hydrated lime becomes tricalcium hydrate+ hydrogen
The hydrogen bubbles cause the concrete to expand to roughly two times its
original volume. The hydrogen subsequently evaporates, leaving a highly
closed-cell aerated concrete. The now aerated concrete is cut into blocks or
panels which are steam and pressure-cured in an autoclave to build grain
crystal structure of thermostone.
The chemical reaction that takes place in the presence of steam in the
Autoclave is:
Ca (OH)2 + SiO2 + xH2O CaO.SiO2 xH2O……...equation (2)
Lime in binder + silica + water becomes mono calcium silicate hydrate.
11
Manufacturing procedures
1. Prepare a suitable stock of raw materials that are pass the laboratory test
in a silos normally three silos for cement, lime and washed grinded sand also
supplied by water storage tank and containers for clay and additives (fly ash)
for different block specifications. The capacity of silos, water tank and
containers depend on production capacity and quality.
2. Mixing raw materials (lime, cement, sand, aluminum fine powder and
water) in a pan mixer for a specified time suitable with raw material
specifications and proportions and at a temperature between 43–55°C, it was
observed that no reactions occurs at a temperature less than 40°C . The
mixing process will be kept under designed constant temperature by adding
cold or hot water automatically according to the requirement. The return
slurry density is to be controlled every hour and to be maintained 1.4gm/cc .
The mixing process is PLC controlled fully automatic system.
3. Block production: the slurry is fed into vibro-hydraulic press machine for
molding into casting block and leave to settle in greased molds. It takes from
30 minutes to 4 hours for the mixture to harden enough to be cut by wires
into the desired standard dimension shapes and transported to an autoclave.
4. The blocks put on standard dimensions wooden pallet and arranged in such
a way that the pressurized steam surround each block for curing which done
at a pressure 10 atmosphere, temperature 180 ̊ C and 100% relative humidity
for 10–12 hours.
12
5. The finished product of blocks, panels or slabs is commonly shrink-
wrapped in plastic and transported directly to the construction site.
Figure 3 : Thermostone Block Machine Small
13
Advantages of thermostone
1. Faster Construction
 Reduces construction time by 20%.
 Different sizes of blocks help reduce the number of joints in wall
masonry.
 Lighter blocks make construction easier and faster.
 Easy to install. Sets and hardens quickly.
2. Reduces Noise Pollution and Improves Indoor Air Quality An additional
quality contributing to the sustainability of a building product is its ability to
reduce and absorb noise or to improve or maintain indoor air quality. Due to
its millions of independent air cells, which dampen sound transmission,
thermo stone has excellent sound insulation and absorption qualities.
Moreover, because thermo stone construction has very low air infiltration,
indoor air quality of thermo stone structures is improved relative to
competitors.
3. High Thermal Efficiency and energy saving Building constructed of
thermo stone provides substantial energy saving in both hot and cold
climates. The unique closed celluar structure and the thermal mass contribute
to a high R-value and air tightness which reduce heating and cooling costs
and improve indoor air quality.
4. Fire Resistance
 Non-combustible and fire resistant up to 1600° C.
 Can withstand up to 6 hours of direct exposure.
14
 5. Earthquake Resistant
 Thermo stone blocks reduce mass of a structure, thus decreasing the
impact of an earthquake on a building.
 Non-combustible nature provides an advantage against fires, which
commonlycaccompany earthquakes.
6. Precision
 Available in exact sizes.
 Results in smooth walls with perfect contact between different elements.
 Reduces finished and plastering.
7. Workability
Thermo stone products can be easily cut, drilled, nailled and grooved with
manual or power tools. This provides higher productivity in hydro- sanitary
and electrical installation such as pipe or ducts which can be placed after the
structure has been built.
8. Sustainable
 Retains properties over time.
 Made of non-allergenic material.
 Use of thermo stone improves indoor air quality.
9. Cost Effective
 Reduces operating cost by 30% to 40%.
 Reduces overall construction cost by 2.5% as it requires less jointing
and reduces need for cement and steel.
15
 High-insulation blocks save up to 30% in energy costs.
 Wall painting and plastering last longer as almost nil efflorescence
affects. This translates into lower maintenance costs.
10. Lightweight
 3-4 times lighter than traditional bricks, therefore, easier and cheaper to
transport.
 Usage reduces overall dead load of a building, thereby allowing
construction of taller buildings.
16
Conclusion
1. The establishment of a thermostone factory in Koya city is a feasible
project.
2. The soil analysis of Koay Heibat Sultan shows that it contains ferric,
magnesium and alumina oxide which are important for high quality
thermostone.
3. The production process is batch and takes approximately one day for a
cycle including charging raw material and discharge products about.
4. Describe Advantages of thermostone
17
Reference
[1]- Production of thermostone in Koya city
[2] - Narayanan N., Ramamurthy K., Structure and properties of aerated
concrete: a review, Cement and Concrete Composites Journal ,Vol. 22 ,
PP.321-329. 2000.
[3] - www.imiweb.org. The sole guide for masonry design and construction.
International Masonry Institute, technology brief article; February (2010).
[4]-Narayanan N., Ramamurthy K., Structure and properties of aerated
concrete: a review, Cement and Concrete Composites Journal ,Vol. 22 ,
PP.321-329. 2000.
[5]-Abdulameer A.A. ,and Muhammed M. A. , Analysis of Cracking of
Cellular Concrete Blocks (Thermostone) , Iraqi Journal for materials and
mechanical Eng. , Vol.8 ,No.3 , PP. 272-282, 2008.

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Thermostone in Constrication or Thermostone

  • 1. Thermostone Student Name: Class: 4th Stage Course Title: Elective Subject Department: Geomatics (Surveying) Engineering College of Engineering Salahaddin University-Erbil Academic Year 2019-2020 Copyright
  • 2. 1 Abstract My aim in this report is showing the specialty of thermostone and about the type of creation the chemical sectional and preparation then discuss about the method and advantage of thermostone.s to improve the report we used the koya thermostone the rate of construction in the Kurdistan region (KRG) has increased through the recent decade due to a wide scope of investments in different projects and especially for residential projects, infrastructure and others. Thermostone block has a good marketing demand in KRG due to its preferable specification low unit weight and exceptional thermal insulation; it is known as light weight concrete. It is used for the inner sections and in conjunction with the various insulation materials. The manufacturing technology of thermostone is not complicated, but there are limited thermostone factories in the Kurdistan region, and mainly all the thermostone construction materials are imported from outside Iraq. So the manufacturing of thermostone locally would have a positive additional value as a result of substituting imported material, providing jobs and the availability of raw materials around Koya city. The idea of this paper is to promote local and foreign investors for the establishment of thermostone factories in Koya city to produce standard blocks and panels. It is found from the study that a 10 ton/day factory capacity is a good startup to produce thermostone.
  • 3. 2 Table of content Subject page Abstract...................................................................................................... 1 Table of content ......................................................................................... 2 Introduction................................................................................................ 3 Thermostone .............................................................................................. 5 Raw material.............................................................................................. 6 Method....................................................................................................... 7 Theory...................................................................................................... 10 Manufacturing procedures........................................................................ 11 Advantages of thermostone...................................................................... 13 Conclusion .............................................................................................. 16 Refernce .................................................................................................. 17
  • 4. 3 Introduction It is a modern construction material that has a white medium textured surface. It is a unique and excellent type of building material due to its super heat, fire and sound resistance; it is known as light weight concrete (LWC). Thermostone blocks offer ultimate workability, flexibility, durability, easy to handle, quickly to install and can be easily cut, chased and fixed into. The local market demand for that material is very high in KRG for its positive specifications and because of highly building rate but there is shortage in the local production of that material due to the lack of factories it is shown that the announced information for investment in KRG shows only one factory in Erbil , and the main amount of thermostone that is used now in KRG is imported from other countries (Turkey or Iran) . For these reasons and because of its positive economic data, the production of thermostone is considered to be an important subject for urban development. It Developed in Sweden in the 1920s by Dr. Johan Axel Eriksson who was looking for a building material with the properties of wood without the disadvantages of wood: combustibility, decay and insect damage. He was working on a variety of aerated concrete samples. Running short of time, he decided to speed up the curing process by placing the sample in the laboratory autoclave. The porous mass survived the overnight autoclaving and the resulting cured brick possessed greatly increased strength and a new, stronger crystalline composition. In the heat and pressure of the steam curing, the silica and lime components had become fused into a form of calcium silicate hydrate crystal, similar to the volcanic rock,known in nature as Tobermorite.
  • 5. 4 He succeeded in producing a highly cellular, lightweight masonry material, and quickly became very popular and was often referred to as "blue concrete"in Sweden due to its blueish tinge. Thermo stone is a lightweight manufactured building stone.It is used in a wide range of commercial, industrial, and residential applications and has been in use in Europe for over 70 years, the Middle East for the past 40 years, and South America and Australia for approximately 20 years. Thermo stone is very light colored. It contains many small voids that can be clearly seen when looked at closely. The closed air pockets contribute to the material’s insulating properties and also its aerated nature. Although there is no direct path for water to pass through the material, an appropriate coating is required to prevent water penetrating into the thermostone material.
  • 6. 5 Thermostone Thermostone can be described as a light unite weight building with exceptional thermal and sound insulation. Usually thermostone used as a partition due to their high quality of thermal insulation and in some cases used as bearing walls or in ribbed slabs. Thermostone unite have a white medium textured surface (below figure) available in different dimensions according the requirements. The unite weight of thermostone ranging from (500-550) kg/m3 and the compressive strength ranged between (4-7 Mpa) or little more. Figure 1: thermostone
  • 7. 6 Raw material The common raw materials used to manufacture thermostone blocks in Iraq are Portland cement, hydrated lime (calcium oxide), aluminum fine powder, water, and sand, are shown in table one . Table 1: Raw materials specifications and proportions No. Matenal Specifications Wt. % 1 Sand Silica content more than 80%. Sieve analysis 85% pass through sieve 90 micron. The density of the sand slurry should be not more than 1.7 gm/cc. 25 2 Lime (Ca0) Sieve analysis 95% pass through sieve 90 micron. Produced by calcination of limestone rock (CaC03). 9—10 3 Portland cement Loss on ignition: 0.7% , CaO %:70% 25 4 Alummium Powder 50—100 microns O. 04 5 Water Tap water 40
  • 8. 7 Chemical analysis of the Koay Heibat Sultan soil shows it contains a mixture of metal oxide related to iron, alumina, magnesium, silica and calcium. The mixture of metal oxide inter inside the grain structure of thermostone and change specifications towards better strength and heat insulation. The big Portland cement factories in Sulaymaniea (Taslouga and Bazyan) are not far from Koya and according to that Koya is suitable place to establish such a factory because the raw materials are available either in Koya or around.
  • 9. 8 Method In an attempt to solve the problems mentioned previously, Thermostone blocks ( 20 X 20 X 60cm) with different ratios of additives were made and tested. Each result represents the average of three tests and the following tests were conducted during the present work: 1. Compressive strength test: (According to ASTM C 1386) 2. Dry bulk density test: (According to ASTM C 1386) 3. Apparent porosity test: (According to ASTM C-830 ) 4. Thermal conductivity test: (According to ASTM C518 ) 5. Capillary absorption test: According to Iraqi specification for cellular concrete blocks (Thermostone) No.1441/2000), samples were put vertically in a water bath for 24 hours and the level of water ascendance was measured. 6. Measuring the reaction temperature: In order to investigate the problem of no pores formation or weak reaction between lime and Aluminum powder a special device (Fig.2) was used to measure the reaction temperature after adding Aluminum. It mainly consists of a mixing motor and a thermometer. Aluminum powder is added after mixing with small amounts of sand to prevent the powder from floating on the surface of the mixer, the mixing continues up to 2 minutes, and the whole test time ends within 3 hours.
  • 10. 9 7. X-Ray diffraction technique: X-ray (powder) diffraction technique and chemical analysis were carried out on raw materials and Thermostone blocks after autoclaving to determine the phases formed during curing. Analysis of the samples (powder method) was carried out by XRD with diffractometer DRON-7 (the wavelength of radiation =17902 nm). Fig. 2: Measuring the temperature of reaction of lime and aluminum
  • 11. 10 Theory Aluminum powder reacts with calcium hydroxide and water to produce hydrogen gas which aerates the mixture producing millions of microscopic hydrogen bubbles. 2Al + 3Ca (OH)2 + 6H20 3CaO.AI203.6H2O + 3H2.…..equation(1) Aluminum powder+ hydrated lime becomes tricalcium hydrate+ hydrogen The hydrogen bubbles cause the concrete to expand to roughly two times its original volume. The hydrogen subsequently evaporates, leaving a highly closed-cell aerated concrete. The now aerated concrete is cut into blocks or panels which are steam and pressure-cured in an autoclave to build grain crystal structure of thermostone. The chemical reaction that takes place in the presence of steam in the Autoclave is: Ca (OH)2 + SiO2 + xH2O CaO.SiO2 xH2O……...equation (2) Lime in binder + silica + water becomes mono calcium silicate hydrate.
  • 12. 11 Manufacturing procedures 1. Prepare a suitable stock of raw materials that are pass the laboratory test in a silos normally three silos for cement, lime and washed grinded sand also supplied by water storage tank and containers for clay and additives (fly ash) for different block specifications. The capacity of silos, water tank and containers depend on production capacity and quality. 2. Mixing raw materials (lime, cement, sand, aluminum fine powder and water) in a pan mixer for a specified time suitable with raw material specifications and proportions and at a temperature between 43–55°C, it was observed that no reactions occurs at a temperature less than 40°C . The mixing process will be kept under designed constant temperature by adding cold or hot water automatically according to the requirement. The return slurry density is to be controlled every hour and to be maintained 1.4gm/cc . The mixing process is PLC controlled fully automatic system. 3. Block production: the slurry is fed into vibro-hydraulic press machine for molding into casting block and leave to settle in greased molds. It takes from 30 minutes to 4 hours for the mixture to harden enough to be cut by wires into the desired standard dimension shapes and transported to an autoclave. 4. The blocks put on standard dimensions wooden pallet and arranged in such a way that the pressurized steam surround each block for curing which done at a pressure 10 atmosphere, temperature 180 ̊ C and 100% relative humidity for 10–12 hours.
  • 13. 12 5. The finished product of blocks, panels or slabs is commonly shrink- wrapped in plastic and transported directly to the construction site. Figure 3 : Thermostone Block Machine Small
  • 14. 13 Advantages of thermostone 1. Faster Construction  Reduces construction time by 20%.  Different sizes of blocks help reduce the number of joints in wall masonry.  Lighter blocks make construction easier and faster.  Easy to install. Sets and hardens quickly. 2. Reduces Noise Pollution and Improves Indoor Air Quality An additional quality contributing to the sustainability of a building product is its ability to reduce and absorb noise or to improve or maintain indoor air quality. Due to its millions of independent air cells, which dampen sound transmission, thermo stone has excellent sound insulation and absorption qualities. Moreover, because thermo stone construction has very low air infiltration, indoor air quality of thermo stone structures is improved relative to competitors. 3. High Thermal Efficiency and energy saving Building constructed of thermo stone provides substantial energy saving in both hot and cold climates. The unique closed celluar structure and the thermal mass contribute to a high R-value and air tightness which reduce heating and cooling costs and improve indoor air quality. 4. Fire Resistance  Non-combustible and fire resistant up to 1600° C.  Can withstand up to 6 hours of direct exposure.
  • 15. 14  5. Earthquake Resistant  Thermo stone blocks reduce mass of a structure, thus decreasing the impact of an earthquake on a building.  Non-combustible nature provides an advantage against fires, which commonlycaccompany earthquakes. 6. Precision  Available in exact sizes.  Results in smooth walls with perfect contact between different elements.  Reduces finished and plastering. 7. Workability Thermo stone products can be easily cut, drilled, nailled and grooved with manual or power tools. This provides higher productivity in hydro- sanitary and electrical installation such as pipe or ducts which can be placed after the structure has been built. 8. Sustainable  Retains properties over time.  Made of non-allergenic material.  Use of thermo stone improves indoor air quality. 9. Cost Effective  Reduces operating cost by 30% to 40%.  Reduces overall construction cost by 2.5% as it requires less jointing and reduces need for cement and steel.
  • 16. 15  High-insulation blocks save up to 30% in energy costs.  Wall painting and plastering last longer as almost nil efflorescence affects. This translates into lower maintenance costs. 10. Lightweight  3-4 times lighter than traditional bricks, therefore, easier and cheaper to transport.  Usage reduces overall dead load of a building, thereby allowing construction of taller buildings.
  • 17. 16 Conclusion 1. The establishment of a thermostone factory in Koya city is a feasible project. 2. The soil analysis of Koay Heibat Sultan shows that it contains ferric, magnesium and alumina oxide which are important for high quality thermostone. 3. The production process is batch and takes approximately one day for a cycle including charging raw material and discharge products about. 4. Describe Advantages of thermostone
  • 18. 17 Reference [1]- Production of thermostone in Koya city [2] - Narayanan N., Ramamurthy K., Structure and properties of aerated concrete: a review, Cement and Concrete Composites Journal ,Vol. 22 , PP.321-329. 2000. [3] - www.imiweb.org. The sole guide for masonry design and construction. International Masonry Institute, technology brief article; February (2010). [4]-Narayanan N., Ramamurthy K., Structure and properties of aerated concrete: a review, Cement and Concrete Composites Journal ,Vol. 22 , PP.321-329. 2000. [5]-Abdulameer A.A. ,and Muhammed M. A. , Analysis of Cracking of Cellular Concrete Blocks (Thermostone) , Iraqi Journal for materials and mechanical Eng. , Vol.8 ,No.3 , PP. 272-282, 2008.