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The "High-Performance Silt Lightweight Aggregate" manufactured by Unilite Inc. features an excellent pore structure, enabling it to deliver high strength and low water absorption while maintaining its lightweight characteristics, making it highly advantageous for the construction of super high-rise buildings and large-span structures.

At a medium particle density level, the cylinder compressive strength of the high-performance lightweight aggregate is sufficient to formulate structural lightweight aggregate concrete with a compressive strength of at least 40 MPa (408 kgf/cm²). Furthermore, the high-performance lightweight aggregate contains a large number of independent, closed spherical pores (with diameters ranging approximately from 2 to 50 μm). The water absorption rate of the high-performance lightweight aggregate can be controlled to below 5%, and the increase in moisture content under high pressure is minimal, which meets the operational requirements for mixing or pumping high-performance concrete without the need for pre-wetting.
(The content above was translated by AI.)
Founded Year
2020
Unified Business No.
83470554
Status
Active
Number of Employees
0
Total Paid-in Capital
43,631,000 (NT$)
Location of Company
Taiwan , Taichung City
Information such as company name, company status, responsible person, year of establishment, paid-in capital, and registered address is sourced from the Commercial and Industrial Registration Office of the Ministry of Economic Affairs; listing status includes emerging stock, M&A, and IPO; overseas development is provided by the startup itself. Notice: This data is compiled from public sources for reference only. We have no direct affiliation with the company and are not their contact person.
About the Company
Unilite Inc. is based on the "Lightweight Aggregate R&D Team of National Chung Hsing University" as its core, combined with a team of professionals from the field of waste recycling and reuse. For over twenty years, this team has completed the development of various lightweight aggregates recycled from waste. In addition to pioneering the recycling of reservoir silt, pulp and paper sludge, water purification sludge, textile sludge, industrial sludge, and stone processing sludge into lightweight aggregates, the team has also mastered the relevant front-end manufacturing equipment and process technologies, while the back-end lightweight aggregate development achievements have been published in internationally renowned materials journals.
The waste-recycled lightweight aggregate technology developed by the Company is different from the commonly seen Controlled Low-Strength Materials (CLSM). The high-performance lightweight aggregate produced by the Company has a fine pore structure, featuring a large number of independent, closed, spherical pores with diameters ranging from approximately 2 to 50 μm. While maintaining lightweight characteristics, it still possesses excellent high strength and low water absorption, and can be used to formulate structural lightweight aggregate concrete with a compressive strength of 40 MPa. It is not a common backfill material but can be used for the structural bodies of buildings. Due to its material uniqueness and economic benefits of use, it has been used in Europe and America for many years, and is commonly adopted in large-span bridges, super high-rise buildings, and offshore oil drilling platforms.
The specialized technology of Unilite Inc. lies in utilizing various types of waste resources to reproduce lightweight aggregates for various purposes. Due to the adoption of high-temperature ceramic firing processes, the material can be completely stabilized to facilitate recycling and reuse, and the process can achieve zero waste output. In line with the "circular economy" thinking of global economic development trends, and based on the concepts of urban mining and complete on-site reuse, it is manufactured into lightweight aggregate—an energy-saving and earthquake-resistant green building material—creating substantial benefits for the country and the ecological environment through a green economy.
(The content above was translated by AI.)



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