博文

目前显示的是 五月, 2023的博文

Sulfonated Melamine Formaldehyde: Enhancing Performance in Various Industries

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Sulfonated Melamine Formaldehyde (SMF)   is a versatile and high-performance chemical compound that has gained significant popularity across diverse industries. Its unique properties and capabilities make it a valuable additive and resin in applications ranging from construction materials to personal care products. In this article, we will delve into the benefits and applications of Sulfonated Melamine Formaldehyde, showcasing its role in enhancing performance and functionality in various industries. Exceptional Water Resistance and Durability One of the key advantages of Sulfonated Melamine Formaldehyde is its exceptional water resistance and durability. When added to materials such as coatings, adhesives, and composites, SMF forms a strong bond and provides a protective barrier against moisture, preventing damage and degradation caused by water exposure. This property makes SMF ideal for applications in construction, marine, and automotive industries, where durability and resistance

Sulfonated Melamine Superplasticizer (SMF)

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Product Description Sulfonated melamine formaldehyde (SMF) is a Sulfonated Melamine Superplasticizer polymer used in cements and plaster based formulations to reduce water content, while increasing the fluidity and the workability of the mix. In concretes, addition of SMF in an appropriate mix design results in lower porosity, higher mechanical strength, and an improved resistance to aggressive environments. Category:   Superplasticizer ether (powder) HS Code:  3824401000 CAS:  64787-97-9 Sulfonated melamine formaldehyde (SMF) is used as an additive in all types of grouts, mortars, and as a component of concrete admixtures. Powdered superplasticizer is a spray dried powder with free flowing characteristics ideal for dry blending and water dissolution. Sulfonated melamine formaldehyde (SMF) is also an anionic polymeric dispersant that deflocculates the particle agglomerations that form when cement and water are combined. Dispersion of the cement causes a reduction in the plastic viscos