factory customized Hpmc For Gypsum - Hydroxypropyl Methyl Cellulose (HPMC) Used for Tile adhesives – MEVA
factory customized Hpmc For Gypsum - Hydroxypropyl Methyl Cellulose (HPMC) Used for Tile adhesives – MEVA Detail:
Better Workability
The shear-thinning and air-entraining properties of HPMC give modified tile adhesives a better workability, as well as higher work efficiency, from yield/coverage and faster tiling sequence stand points.
Improves Water Retention
We can improve water retention in tile adhesives. This helps increase final adhesion strength as well as prolong open time. Prolonged open time also leads to faster tiling rate as it allows the worker to trowel a larger area before setting the tiles down, as opposed to troweling the adhesive onto each tile before setting the tile down.
Provides Slip/Sag Resistance
Modified HPMC also provides slip/sag resistance, so that heavier or non-porous tiles do not slip down the vertical surface.
Increases Adhesion Strengths
As mentioned before, it allows the hydration reaction to complete farther, thus allowing higher final adhesion strength to develop
Note:Products can be customized according to customer needs.
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Our objective is to present premium quality products at aggressive prices, and top-notch services to buyers around the world. We have been ISO9001, CE, and GS certified and strictly adhere to their excellent specifications for factory customized Hpmc For Gypsum - Hydroxypropyl Methyl Cellulose (HPMC) Used for Tile adhesives – MEVA , The product will supply to all over the world, such as: Costa rica, Luxembourg, Manchester, You can let us know your idea to develop unique design for your own model to prevent too much similar parts in the market! We will offer our best service to satisfy all your needs! Please contact us right away!
By Ina from Mauritania - 2018.09.29 17:23
Hope that the company could stick to the enterprise spirit of "Quality, Efficiency, Innovation and Integrity", it will be better and better in the future.
By Danny from Barcelona - 2017.03.07 13:42