Ever faced delays due to poor material performance? 78% of contractors report project setbacks from cracked mortar or weak tile adhesion. That’s where HPMC Hydroxypropyl Methylcellulose steps in—a game-changer for durability and efficiency. Read how this additive solves your top pain points.
(hpmc hidroxipropilmetilcelulosa)
Why settle for ordinary cellulose ethers? Our HPMC E5 boasts:
Test data shows Hidroxipropilmetilcelulosa HPMC improves mortar workability by 40% while cutting water absorption by 18%.
Feature | Our HPMC | Competitor A |
---|---|---|
Viscosity (mPa·s) | 60,000-100,000 | 40,000-75,000 |
Purity | 99.2% | 97.5% |
Need HPMC for tile adhesives? Dry-mix mortars? We engineer viscosity profiles from 400 to 200,000 mPa·s. Our HPMC E5 uses include:
See how Hidroxipropilmetilcelulosa HPMC delivered results:
"Using HPMC E5 reduced our material waste by 22% and improved production speed by 15%." — Tile Manufacturer, Spain
Join 500+ industry leaders who trust our HPMC Hydroxypropyl Methylcellulose. Get free samples + technical support today!
(hpmc hidroxipropilmetilcelulosa)
A: HPMC is a cellulose-derived polymer used as a thickener, binder, and film-forming agent in industries like construction, pharmaceuticals, and food. It improves texture, stability, and water retention in products.
A: HPMC is widely used in cement-based materials, pill coatings, adhesives, and personal care products. It enhances workability, adhesion, and viscosity while acting as a non-toxic additive.
A: Construction (mortars, tile adhesives), pharmaceuticals (tablet coatings), food (emulsifier), and cosmetics (shampoos, creams) depend on HPMC for its multifunctional properties.
A: HPMC offers superior water solubility, thermal gelation, and pH stability compared to methylcellulose. Its hydroxypropyl groups enhance adhesion and resistance to enzyme degradation.
A: HPMC E5 is specifically used in cement renders and plasters for improved workability, extended open time, and reduced cracking. It acts as a water-retaining agent and thickener.