Base Con 650 N

Base Con 650N is a water reducing cum set retard-ing concrete admixure with powerful plasticising effect which deflocculates and disperses the cement perticles within a concrete mix. Read More...

Base Con 1250 N

Base Con 1250 N is a sulphonatel Naphthalene based retarding, high performance super plasticizer for concrete having slump retain capability.Read More...

Base Con 1200 N

The basic components of Base con 1200 N synthetic polymers which allow mixing water to be enhanced significantly in a very short time.Read More...

Base Con 300

Base con 300 abite by GB8076-2008. AndASTMC494. Base con is water reducing, reinforcing, and retarding, and its main components include common water-reducer, retarder, Etc.Read More...

BASE CON LS 950

Base con LS 950 is a low dosage water proofing ADMIXURE for concrete based on lignosulphonate. Base con Ls 950 complies with ASTM C494, type A&D specifications.Read More...

Base con A-3

Base con LSG 550 is high performance plasticizing retarder, useful in maintaining workability especially in high temperatures region. Base con LSG 550 compiles with ASTMC494 type D specification.Read More...

Base Con R-1

Base Con R-1A liquid water reducing cum set retarding concrete admixture with a powerful plasticizing effect. Also a substantial Water reduction can be achieved to Read More...

Base con PCL-S

Base con PCL-s is a polycarboxylate based super plasticizer for ready-mix and site batched concrete. Base con PCL-S complies with ASTM C-494 Type B,D & G Read More...

Base Con PCS

Base Con PCS is a super plasticizer for high performance concrete, high strength concrete high volume fly ash slag concrete and grouting, self leveling screed mortar Base Con PCS complies with ASTM C 494. type f specifications Read More...

Base Con PCS (G)

Base Con PCS (G) is a super plasticizer for high performance concrete, high strength concrete high volume fly ash slag concrete and grouting, self leveling screed mortar, Base Con PCS (G) Complies with ASTM C 494, Type F specification Read More...