SIZE | CRUSH STRENGTH | PIECE COUNT | PACKING DENSITY | VOID SPACE | ALUMINA (AL203) |
---|---|---|---|---|---|
0.75 in |
153 lbs 69 kg |
4,900 pcs/ft3 172,970 pcs/m3 |
44 lbs/ft3 705 kg/m3 |
69% | 28% |
1 in |
211 lbs 95 kg |
2,100 pcs/ft³ 74,100 pcs/m³ |
42 lbs/ft³ 673 kg/m³ |
70% | 28% |
1.5 in |
200 lbs 90 kg |
575 pcs/ft³ 20,300 pcs/m³ |
39 lbs/ft³ 625 kg/m³ |
74% | 28% |
2 in |
200 lbs 90 kg |
320 pcs/ft³ 11,700 pcs/m³ |
34 lbs/ft³ 545 kg/m³ |
76% | 28% |
3 in | 1087 lbs 487 kg |
59 pcs/ft³ 2,080 pcs/m³ |
33 lbs/ft³ 529 kg/m³ |
77% | 28% |
SIZE | CRUSH STRENGTH | PIECE COUNT | PACKING DENSITY | VOID SPACE | ALUMINA (AL203) |
---|---|---|---|---|---|
1 in |
290 lbs 132 kg |
1,350 pcs/ft³ 47,700 pcs/m³ |
40 lbs/ft³ 641 kg/m³ |
71% | 28% |
1.5 in |
300 lbs 136 kg |
460 pcs/ft³ 16,300 pcs/m³ |
37.5 lbs/ft³ 600 kg/m³ |
75% | 28% |
SIZE | CRUSH STRENGTH | PIECE COUNT | PACKING DENSITY | VOID SPACE | ALUMINA (AL203) |
---|---|---|---|---|---|
1 in |
300 psi 2.1 MPa |
1,350 pcs/ft³ 47,700 pcs/m³ |
40 pcs/ft³ 641 kg/m³ |
71% | 67% |
Our random heat transfer ceramic media has been used at thousands of installations worldwide. It is available in various sizes, materials and designs to solve the toughest environmental needs.
FLEXISADDLE® random packing’s shape is the most widely used random heat transfer media on the market today. Its unique form provides a highly effective surface area and a low resistance to the air flow for mass and heat transfer optimization. Due to its high quality, FLEXISADDLE® random packing provides the greatest value for any application worldwide.
Provides a high open area and aerodynamic design, resulting in 20% lower pressure drop and up to 40% reduced particulate retention compared to standard saddle media. Lower pressure drop savings offers the RTO designer reduced fan costs or smaller unit designs. Meets ASTM 515 specifications for porcelain packing.
Engineered to resist intense forms of alkali attack, resulting in longer life and higher resistance to thermal cycling damage. Our formulation exhibits outstanding strength retention after thermal shock cycling, with a remarkable 0% reduction in strength compared to typical random media. Can be manufactured in LPD® geometry that results in over 20% lower pressure drop than standard random media.