Obviously ceramics provide an inherent hardness rating that you can t find in any other filler material currently being used.
Ceramic vacuum microspheres.
These ultra low density spheres can be produced in very small particle sizes diameters from 5 to 100 microns can withstand a broad ph range 2 9 and combine low thermal conductivity with.
These high strength fillers can help formulators reduce resin demand improve burnish and scrub resistance and much more.
In addition to helping manufacturers reduce costs and improve processability these intrinsically hard fillers.
Insulating ceramic microspheres what they are and how they make paint insulate each single ceramic microsphere is so small that it looks to the naked eye as if it is a single grain of flour slightly thicker than a human hair.
Hollow and solid glass spheres ceramic spheres plastic spheres and new for 09.
The highest of any hollow ceramic microspheres in the market.
The addition of hollow spheres to fiberglass reinforced plastics frp epoxy compounds and urethane castings can provide weight reduction cost savings.
3m ceramic microspheres are high strength solid engineered particles.
In addition the use of spheres increases the durability because a sphere is a very stable shape that can take abuse without cracking.
Ceramic microspheres also come in handy when you need a very durable surface.
In all these ways and more 3m ceramic microspheres enhance durability and performance in a wide variety of architectural and industrial paints and coatings.
Q cel hollow spheres and extendospheres hollow spheres products offer formulators flexibility in polymer composites.
Hollow ceramic microspheres cerablak hcms are unique black or white hollow microspheres micro balloons that exhibit outstanding thermal stability.
The wall thickness is about 1 10 of the sphere diameter.
E spheres hollow ceramic microspheres hcm are widely utilised in the coatings industry to formulate coatings with enhanced thermal insulation capabilities due to the very low coefficient of thermal conductivity and partial vacuum inside the microsphere.