The fischer injection mortar FIS EM Plus is a high-quality epoxy mortar for top load-bearing capacity in cracked and non-cracked concrete and for seismic applications in performance categories C1 and C2. It is suitable for fixations of shear connectors for concrete layers, tall shelvings, and heavy steel constructions both inside and outside. The injection mortar is processed with the approved system components fischer threaded rod FIS A with variable anchorage depths and fischer internal threaded anchor RG M I as well as with reinforcement bars. The epoxy mortar is ideally suited for rebar connections that are installed with a large drill hole diameter and a high anchorage depth. It can also be used for diamond-drilled and water-filled drill holes, as well as for applications under fatigue cyclic loading. The approval of the injection mortar for use in glued laminated or glued solid timber of spruce (Picea abies), fir (Abies alba) or pine (Pinus sylvestris) allows the realisation of high-performance and appealing wood-wood, wood-concrete and wood-steel connections. Applications Post-installed rebar connections Concrete-concrete shear connector Rim beam anchorings Seismic applications Anchorings in diamond-drilled or in waterfilled drill holes Heavy steel constructions Silo installations Tall shelving Sound barriers Temporary or removable fixings (with internal threaded anchor RG M I) Anchorings in sealing surfaces according to WRL (Water Ressources Law) Anchorings in wood Color: GREY Weight(KG): 0.400

Approvals ETA-23/0842 ETA-19/0657 ETA-22/0001 ETA-17/0979 ETA-17/1056 DoP No. 0341 DoP No. 0367 DoP No. 0366 24-045-2(2) ESR-1990 Z-74.8-199 Z-74.8-211 Z-9.1-914 Report No MRF 19 26082687/C EPD-DBC-FIW-20230530-CBA1-EN Approved For Anchorings in Concrete C20/25 to C50/60, cracked and non-cracked Steel fibre reinforced concrete Sealing surfaces according WRL (Water Ressouces Law) Glued laminated or glued solid timber of spruce (Picea abies), fir (Abies alba) or pine (Pinus sylvestris) Suitable For Natural stone with dense structure

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