Insights
Why Modify Quartz Powder Surface
1. Solve Incompatibility Between Hydrophilic Quartz and Hydrophobic Epoxy Resin Raw quartz powder has massive…
How to Modify Silica Powder for Epoxy Resin
Silica (quartz/silica powder) is a core inorganic filler widely used in epoxy resin systems for…
How to Achieve High Grafting Rates in Silica Surface Modification?
A high grafting rate — defined as the share of modifier molecules anchored to the…
What Are the Benefits of Surface Modification for UV-Curable Coatings?
UV-curable coatings are widely adopted across industrial finishes, electronic encapsulants, optical films and protective coatings,…
How to Improve the Dispersion of Quartz Powder in Organic Solvents?
Uniform, long-term stable dispersion of quartz (silica) powder in organic solvents is a critical performance…
What Is the Optimal Temperature for Silane Treatment of Silica?
The optimal temperature for silane surface treatment of silica (quartz) powder depends on the process…
How to Test the Success of Surface Modification (Contact Angle, FTIR)?
Validating the effectiveness of quartz powder surface modification is critical to ensuring downstream resin compatibility,…
Can I Use a Pin Mill for Both Grinding and Surface Modification?
A pin mill can achieve integrated grinding and dry surface modification via mechanochemical action in…
How Does Mechanochemical Modification Improve Resin Bonding?
Interfacial bonding strength is the core factor that determines the reinforcing effect of inorganic fillers…
What Are the Challenges in Dry Surface Modification Processes?
Dry surface modification has become the dominant industrial process for functionalizing quartz powder and other…
How to Coat Quartz Particles Evenly in a High-Speed Mixer?
High-speed (high-shear) mixers are the dominant industrial batch solution for dry surface modification of quartz…
Why is Surface Modification Critical for Lithium Battery Anode Materials?
Lithium-ion battery performance — from energy density and cycle life to fast-charging capability and safety…