Major Research Projects Undertaken

2022/08/09
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2022/08/09
2022/08/09
项目名称
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项目名称
04月19日请输入描述的内容进行补充请输入描述的内容进行补充请输入描述的内容进行补充 请输入描述的内容进行补充
项目名称
2023

The implementation of this project will comprehensively enhance the overall performance of external window systems, reducing the K-value of thin type hollow external window systems to below 1.0W/m²·K and decreasing the heat loss of hollow glass windows by more than 30%. It aims to form China's new generation of energy-saving and material-saving hollow glass manufacturing system. The project will effectively promote the industrialization of new types of daily building materials and play an important role in the energy-saving renovation of existing buildings and the achievement of the "dual carbon" goals.

2022
2021

"14th Five-Year Plan" National Key Research and Development Program: "Development and Application of Thin Type Hollow Glass and Energy-Saving External Window Systems"

Building Materials Federation's "Revealed and Undertaken" Project: "Development and Production of Large-Size, Multi-Specification Lithium-Aluminum-Silicon Glass"

Lithium-aluminum-silicon glass is widely used in consumer electronics, automotive displays, industrial control, smart home, and traffic safety. Through the development of this project, proprietary intellectual property rights will be formed for the composition of lithium-aluminum-silicon glass and its core production technology and equipment. This will achieve the industrialization of large-size, multi-specification high-quality lithium-aluminum-silicon glass, providing glass substrates for fields such as large aircraft, high-speed rail, and ships.

China Building Materials Group's "Revealed and Undertaken" Project: "Complete Technology and Equipment for Hydrogen Utilization in Glass Furnaces"

Focusing on the utilization of hydrogen in glass furnaces, the project will study the simulation of hydrogen combustion furnaces, as well as the kinetic and thermodynamic processes. It will conduct research and development on key technologies and equipment such as furnace structure, combustion control, burners, and steam/hydroxyl control. The project aims to achieve a hydrogen volume substitution rate of ≥30%.

2020
2021
2021

Combining the innovative development needs of the intelligent manufacturing industry in building materials sector, this project has established a one-stop public service platform for standard development, standard testing and verification, standardization testing and measurement, intellectual property rights, and technology transfer. It is of great significance for promoting the application and promotion of intelligent manufacturing technologies in the glass industry and improving the standard system for intelligent manufacturing in the glass industry.

The project's corrosion-resistant and algae-resistant glass and coatings offer significant anti-corrosion and algae-resistant effects, long-lasting protection, and environmental friendliness. They represent a high degree of innovation, have a wide range of practical applications, and hold promising prospects for technological transformation and application. These products provide technical support for extending the service life of ships and coastal equipment, meeting the needs for high-quality development of the marine industry and significantly contributing to the green and low-carbon development of the marine sector.

Hebei Provincial Key Research and Development Program Project: "Development of Slow-Release Glass for Corrosion-Resistant"

MIIT Project "Public Service Platform for Standard Testing and Verification of Intelligent Manufacturing in Building Materials Industry"

This project integrates dust removal, denitrification, and auxiliary desulfurization systems, developing a complete set of technologies and equipment for low emissions in glass furnaces. It features a small footprint and low operating costs, achieving an integration of energy saving and emission reduction. The project's innovative combination of high-temperature dry desulfurization and filtration-based dust removal and denitrification has broken through the bottlenecks of traditional domestic energy-saving and environmental protection technologies.

Central Government Guidance Fund for Local Science and Technology Development Project: "Complete Technology and Equipment for Low Emissions in Glass Furnaces"

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