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Foam concrete is a kind of concrete with lightweight and has ideal strength. Because of the hollow structure in foam concrete, it has the function of absorbing heat and isolating sound. 

The density of foamed concrete is 300-1200 kg/m3, and the thermal conductivity is between 0.08-0.3W/ (m ·K). 

Foam concrete is widely used in CLC blocks, lightweight partition panels, roof insulation, floor cushion construction, floor heating backfilling, and other occasions. 

At the same time, foam concrete is also a good sound absorption material, which can be used in highway sound insulation boards, sound absorption boards, and other fields. 

Generally speaking, foam concrete is a kind of building material with multi-function, environmental protection, and economy, which has a wide application prospect.


  • Concrete Crack Reducing Admixture is a concrete crack-reducing agent. The main function of this additive is to reduce the cracking of concrete during the drying process, thereby improving the durability and aesthetics of concrete. It is usually used in concrete structures that require high strength and good appearance, such as bridges, buildings, and roads. By using this additive, the performance of concrete can be effectively improved, its service life can be extended, and maintenance costs can be reduced.


    Concrete Crack Reducing Admixture 

    Concrete Crack Reducing Admixture


    Recently, a well-known bridge engineering project in China successfully applied Concrete Crack Reducing Admixture, significantly improving the crack resistance performance of bridge concrete. According to reports, this water-reducing agent was added to the concrete preparation process in the project, effectively reducing the micro-cracks generated during the hardening process of the concrete, thereby enhancing the overall structural strength and durability of the bridge. This innovative application not only improves the quality of engineering but also provides strong guarantees for the safe operation of bridges.


    In addition, the Concrete Crack Reducing Admixture also played an important role in the construction of a cross-river bridge. Due to its complex hydrological environment, this bridge has extremely high requirements for the crack resistance performance of concrete. To this end, the construction team added high-performance water-reducing agents to the concrete, effectively improving its impermeability and durability and ensuring the safety and stability of the bridge in harsh environments.


    Application of Concrete Crack Water Reducing Agent in Cross River Bridge Engineering 

    Application of Concrete Crack Water Reducing Agent in Cross River Bridge Engineering


    In addition, with the continuous advancement of technology, the application of Concrete Crack Reducing Admixture in the field of bridge construction is also constantly expanding. Some new water-reducing agent products not only have better crack reduction effects but also have advantages such as environmental protection and energy conservation, injecting new impetus into the sustainable development of bridge engineering.

     

    This fully demonstrates the importance and broad prospects of Concrete Crack-Reducing Admixture in bridge construction. With the continuous expansion of bridge engineering scale and the continuous improvement of technical requirements, this water-reducing agent is believed to play a more critical role in the future, providing strong support for the safe, stable, and sustainable operation of bridges.

     

    The advantages of applying Concrete Crack Reducing Admixture in the field of bridge construction


    Significantly improving the crack resistance of concrete: Water-reducing agents can effectively improve the internal structure of concrete, reduce the generation of microcracks, and thus significantly improve the crack resistance of concrete. In bridge construction, this means that the bridge structure is more stable and can resist cracking problems caused by various external factors.


    Enhancing the durability of concrete: By reducing cracks in concrete, water-reducing agents help prevent moisture, chemicals, and other harmful substances from infiltrating the interior of the concrete, thereby enhancing its durability. This is particularly important for building structures such as bridges that are exposed to the natural environment for a long time.


    Concrete crack reducer enhances concrete performance 

    Concrete crack reducer enhances concrete performance


    Optimizing the work ability of concrete: Water-reducing agents can improve the fluidity of concrete, making it easier to construct and pour. In bridge construction, this helps to improve work efficiency and reduce construction difficulty.


    Reduce concrete shrinkage and deformation: Water-reducing agents can reduce concrete's shrinkage rate, reducing deformation and cracking caused by shrinkage. This is crucial for the stability and long-term performance of bridge structures.


    Improving engineering quality and safety: By using Concrete Crack-Reducing Additive in bridge construction, engineering quality can be effectively improved, safety hazards caused by concrete cracking reduced, and bridge safety and stability ensured.

     

    Supplier of Concrete Crack Reducing Admixture

    TRUNNANO is a supplier of Concrete Crack Reducing Admixture over 12 years experience in nano-building energy conservation and nanotechnology development. It accepts payment via Credit Card, T/T, West Union and Paypal. Trunnano will ship the goods to customers overseas through FedEx, DHL, by air, or by sea. If you are looking for high quality NConcrete Crack Reducing Admixture, please feel free to contact us and send an inquiry. (sales@cabr-concrete.com).

     

     


    Mar 21
    2024
  • Foam stabilizer for foam concrete refers to foam stabilizer for foam concrete. In the preparation of concrete, foam stabilizers can increase the viscosity of the foaming system, enhance the mechanical strength of the liquid film, increase the self-healing ability of the liquid film, and make the bubbles small and uniform, thereby improving the stability of the bubbles and extending the half-life of bubble rupture. This will help to improve the performance and quality of foam concrete.

    Foam stabilizer for Foam Concrete 

    Foam stabilizer for Foam Concrete


    Recently, with the growing demand for high-performance and environment-friendly materials in the construction industry, the application of foam stabilizers for foam concrete in the construction industry has made remarkable progress. The introduction of foam stabilizers not only improves the performance stability of foam concrete but also makes it possible to apply it in more construction fields.


    It is understood that foam concrete, as a lightweight and high-performance building material, has been widely used in walls, floors, roofs, and other building parts. However, traditional foam concrete often has problems, such as poor stability of foam and uneven bubbles in the production process, which affect its performance and use effect. In order to solve this problem, researchers developed a foam stabilizer and applied it to the production of foam concrete.


    Application of foam concrete in wall building 

    Application of foam concrete in wall building


    The main function of foam stabilizers is to improve the stability and uniformity of foam, making the bubbles smaller and more uniform, thus improving the physical properties and processing properties of concrete. By using foam stabilizers, the strength and durability of foam concrete have been significantly improved. At the same time, the density and thermal conductivity of the material have been reduced, and its thermal insulation performance has been enhanced.


    In the construction industry, the application of foam stabilizers has achieved remarkable results. For example, in the wall construction of a high-rise building, foam concrete with foam stabilizer is used as the external wall insulation material. After practical use verification, this material not only has excellent insulation performance but also has convenient construction and good durability, effectively improving the energy-saving effect and comfort of the building.


    In addition, foam stabilizers show broad application prospects in other construction fields. The application of foam stabilizers for foam concrete is also gradually promoted in highway engineering, water conservancy engineering, and other fields. By improving the stability and performance of foam concrete, more reliable and efficient material solutions can be provided for the construction of these projects.


    Application of foam concrete in high-rise building wall 

    Application of foam concrete in high-rise building wall


    Industry experts say that the research, development, and application of foam stabilizers are among the important achievements of technological innovation in the construction industry. With the continuous progress of technology and the continuous expansion of market demand, the foam stabilizer for foam concrete will play a more important role in the future and promote the development of the construction industry in a more environmentally friendly and efficient direction.


    In conclusion, the application of foam stabilizers for foam concrete in the construction industry has made remarkable progress and shows a broad application prospect. With the continuous innovation of technology and the continuous growth of market demand, this field will usher in a better future of development.

     

    Supplier of Foam stabilizer for foam concrete

    TRUNNANO is a supplier of Naphthalene-based high-efficiency water reducing agent SNF over 12 years experience in nano-building energy conservation and nanotechnology development. It accepts payment via Credit Card, T/T, West Union and Paypal. Trunnano will ship the goods to customers overseas through FedEx, DHL, by air, or by sea. If you are looking for high quality Foam stabilizer for Foam Concrete, please feel free to contact us and send an inquiry. (sales@cabr-concrete.com).

     


    Mar 20
    2024
  • Air Entraining Agent in Concrete is a special chemical additive used to introduce tiny air bubbles into concrete. These bubbles can significantly alter the concrete's performance.When an air-entraining agent is added to concrete, its surfactant molecules form tiny bubbles in the cement slurry. These bubbles are evenly distributed in the concrete, altering its internal pore structure.

    Air Entraining Agent in Concrete 

    Air Entraining Agent in Concrete

    The application of concrete air-entraining agents in the field of green buildings is gradually receiving industry attention and recognition.

    This chemical additive can significantly improve the performance of concrete and provide strong support for the development of green buildings by introducing small bubbles.


    Recently, significant progress has been made in the application of concrete air entraining agents in the field of green buildings. For example, in a green residential project, concrete materials containing air-entraining agents were used, effectively improving the insulation performance and durability of the building. The addition of an air-entraining agent causes more small bubbles to form inside the concrete, which can reduce heat transfer and improve the insulation effect of the building. At the same time, the presence of bubbles can also enhance the impermeability and frost resistance of concrete, protecting buildings from damage from moisture and freeze-thaw cycles.

    Air Entraining Agent in Concrete 

    In addition, the application of concrete air entraining agents in green buildings also improves construction efficiency, reduces energy consumption, and reduces environmental pollution. The addition of air-entraining agents can improve the fluidity of concrete, making it easier to construct and pump, thereby improving construction efficiency. Meanwhile, by optimizing the mix proportion of concrete and reducing material usage, energy consumption and the generation of construction waste can be further reduced.


    With society's increasing demand for green buildings, concrete air-entraining agents, as an effective green building material additive, have a very broad application prospect.


    Air Entraining Agent in Concrete 

    The application of concrete air-entraining agents in green buildings has many advantages, which are reflected not only in the improvement of concrete performance but also in its contribution to the overall sustainability and environmental friendliness of green buildings.


    Firstly, concrete air-entraining agents significantly improve the physical properties of concrete by introducing small bubbles. These bubbles can reduce voids and cracks in concrete, thereby improving its impermeability and durability. In green buildings, this means that the building structure can better resist the erosion of moisture, chemicals, and other external factors, thereby extending the service life of the building. 


    Secondly, concrete air entraining agents can improve concrete's construction performance. By improving concrete's fluidity and permeability, air-entraining agents make it easier to operate and pour concrete during the construction process. This not only improves construction efficiency but also reduces energy consumption and emissions during the construction process, helping to achieve the energy-saving and emission-reduction goals of green buildings.


    In addition, concrete air entraining agents also help reduce the weight of concrete. Due to the presence of bubbles, the density of concrete is reduced, thereby reducing the amount of building materials used. This not only reduces construction costs, but also reduces the generation of construction waste and resource consumption, further promoting the sustainable development of green buildings.


    Air Entraining Agent in Concrete 

    Finally, the application of concrete air-entraining agents also helps to improve the environmental friendliness of green buildings. By improving the durability of concrete and reducing maintenance requirements, air-entraining agents reduce environmental pollution caused by the repair and replacement of building materials. Meanwhile, its excellent impermeability also helps to reduce the potential pollution of groundwater and soil caused by water leakage.


    Supplier of Air Entraining Agent in Concrete

    TRUNNANO is a supplier of Air Entraining Agent in Concrete over 12 years experience in nano-building energy conservation and nanotechnology development. It accepts payment via Credit Card, T/T, West Union and Paypal. Trunnano will ship the goods to customers overseas through FedEx, DHL, by air, or by sea. If you are looking for high quality Naphthalene-based high-efficiency Air Entraining Agent in Concrete, please feel free to contact us and send an inquiry. (sales@cabr-concrete.com).

     

     


    Mar 20
    2024
  • Hydroxypropyl methylcellulose (HPMC) is a non ionic cellulose mixed ether, which belongs to a semi synthetic, inactive, and viscoelastic polymer. Its molecules contain hydroxypropyl (- [OCH2CH (CH3)] nOH), methoxy (- OCH3), and hydroxyl groups. Among them, hydroxypropyl is a hydrophilic group, which increases the hydrophilicity of HPMC; Methoxy is a hydrophobic group, which increases the hydrophobicity of HPMC. The degree of substitution of these two substituent groups significantly affects the physicochemical properties of HPMC.

    Hydroxypropyl methylcellulose 1

    Hydroxypropyl methylcellulose (HPMC) is a multifunctional polymer material with extensive applications in multiple fields. Recently, the application of hydroxypropyl methylcellulose in multiple fields has received widespread attention.


    In the field of construction, hydroxypropyl methylcellulose has attracted much attention due to its excellent performance. It can significantly improve the performance of building materials such as cement mortar and gypsum products, optimize the construction process, and help reduce engineering costs. Especially in the application of sprayed gypsum composite walls, hydroxypropyl methylcellulose plays a crucial role. It can not only improve the water retention, construction, and crack resistance of walls but also enhance the durability of walls, thereby promoting green development in the construction field.

     

    In addition, in the pharmaceutical field, hydroxypropyl methylcellulose has also demonstrated its unique application value. It has good dispersion, emulsification, thickening, bonding, water retention, and adhesive properties and is, therefore, widely used as a film coating, sustained-release agent, and adhesive for pharmaceutical preparations. These characteristics enable hydroxypropyl methylcellulose to play an important role in drug preparation, improving the stability and effectiveness of drugs.


    With the continuous progress of technology and the expansion of application fields, the application prospects of hydroxypropyl methylcellulose will be even broader. In the future, we can expect hydroxypropyl methylcellulose to play an important role in more fields and contribute to the sustainable development of society.


    Hydroxypropyl methylcellulose 2

     

    According to authoritative media reports from a certain building materials industry, hydroxypropyl methylcellulose, as an efficient mortar additive, has played an important role in improving mortar performance, improving construction efficiency, and promoting the development of green buildings. Its excellent water retention performance can ensure the moisture stability of mortar during mixing, transportation, and construction, thereby improving the uniformity and construction performance of mortar. In addition, hydroxypropyl methylcellulose can increase the viscosity and adhesion of mortar, improve the bonding strength between mortar and substrate, and enhance the crack resistance and durability of mortar.

    Hydroxypropyl methylcellulose 3

     

    In the practical application of the construction industry, hydroxypropyl methylcellulose has been widely used in various aspects, such as plastering mortar, exterior wall insulation mortar, water-resistant putty, and gypsum plastering. For example, in plastering mortar, hydroxypropyl methylcellulose can effectively improve the wettability and fluidity of the mortar, enhance the flatness and smoothness of the plastering layer, and reduce the occurrence of cracks and peeling. In the external wall insulation mortar, hydroxypropyl methyl cellulose can improve the bonding strength and impermeability of the mortar and enhance the stability and durability of the insulation layer.


    In addition, with the popularization of green building concepts, hydroxypropyl methylcellulose, as an environmentally friendly additive, has a broader application prospect in the field of mortar. More and more construction companies and units are paying attention to and adopting hydroxypropyl methylcellulose to improve mortar performance, reduce energy consumption, and reduce environmental pollution.


    Supplier Of HPMC Hydroxypropyl Methylcellulose

    TRUNNANO is a supplier of HPMC Hydroxypropyl Methylcellulose over 12 years experience in nano-building energy conservation and nanotechnology development. It accepts payment via Credit Card, T/T, West Union and Paypal. Trunnano will ship the goods to customers overseas through FedEx, DHL, by air, or by sea. If you are looking for high quality HPMC Hydroxypropyl Methylcellulose, please feel free to contact us and send an inquiry. (sales@cabr-concrete.com).

     


    Mar 18
    2024

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  • Luoyang Tongrun Info Technology Co., Ltd. (cabr-concrete.com) is the world's leading nanomaterial technology developer and application manufacturer, the company has more than 20 years of industry experience, after years of scientific research and production, has been professionals in lightweight concrete and foam concrete solutions. We can supply concrete foaming agents, superplasticizers, aerogels and foam concrete strength enhancers for lightweight concrete mix, CLC blocks all over the world, suitable for ordinary cement foamed concrete cast-in-place, block, plate, insulation wall, etc.
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