Complete Turnkey Solutions for Producing Thick-Layer Self-Leveling Flooring Using Steel Slag, Steel Mud, and Desulfurization Gypsum

The aggregate used in thick-layer self-leveling screeds is fine aggregate with a particle size range of approximately 40–120 mesh. Experimental results demonstrate that such fine aggregate exhibits excellent flowability and strong particle suspension, which effectively enhances the flow characteristics and mechanical strength of the self-leveling material. With the development of industrial production, the volume of industrial waste has grown substantially, encompassing a wide variety of types and complex compositions, making its treatment particularly challenging.

10

2020

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04

Three Major Advantages of Xindadi Thick-Layer Self-Leveling Cement

The use of Xindadi’s thick-layer self-leveling flooring delivers significant economic benefits: it reduces the construction schedule by 60%, enabling earlier dismantling of construction elevators, lowering rental costs, and accelerating property handover to expedite capital recovery.

20

2020

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03

Advantages of Mortar Incorporating Redispersible Latex Powder

In mortar, polymers serve as a secondary binder that complements the inorganic cement binder. The dual cement–redispersible polymer powder system leverages the respective advantages of each constituent, resulting in excellent synergy and complementary performance that enhances the mortar’s bond strength.

09

2020

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03

Effect of Redispersible Latex Powder on the Properties of Thick-Set Gypsum-Based Self-Leveling Mortar

Redispersible latex powder is a crucial admixture that significantly influences the performance of thick-layer gypsum-based self-leveling mortars. This study investigates the impact of redispersible latex powder on the physical and mechanical properties of such mortars and, through microstructural analysis, elucidates the mechanisms by which it enhances their mechanical performance, thereby demonstrating the substantial role of redispersible latex powder in gypsum-based self-leveling systems.

28

2020

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02

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