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  1. • Dynamic simulation/analysis of chain drive systems with regard to chain load, torsion-al vibrations and friction losses • FEM analysis of individual chain drive parts – static and dynamic stress and strength investigations • Evaluation of iwis and customer readings at test facilites for verification of simulation models

  2. www.sedis.com › uploads › sedis-white-paper-technical-advice-conveyor-chains-1WHITE PAPER Conveyor chains - SEDIS

    Example: the chain M160F200 is a standard solid pin conveyor chain, with a minimum tensile strength of 160 kN, with flanged wheels and a pitch of 200mm. Drilled plates should be specified clearly on the order: on inner / outer plates, number of holes, and frequency of these

  3. maintenance-friendly, chain which can easily be cut to length SL – an iwis idea wins through iwis SL series chains (Super Longlife) have pins with an additional extremely hard surface, under which is a load-bearing high strength hard layer which encloses a tough core. This special design provides outstanding characteristics:

  4. The curve MF01AAX/100 has the following features: suitable for 981M/880M K 3 1/4 or K 83.8 chains, N°1 track, 500 mm radius, 90° section, 82 mm heigth, 100 mm basic width, no infeed length. To identify the requested curve, see the REFERENCE TABLE for each chain series and select the reference in the “single track”or “multi track” columns.

  5. www.nacm.info › specifications › welded-chain-specificationsWelded Chain Specifications - NACM

    Use the NACM welded steel chain specification below to find properties and grades of welded steel chains for industrial and commercial uses. These steel chain specs cover uses produced to accepted commercial tolerances.

  6. Chain drives, gear drives and belt drive systems are all effective power transmission choices. Each offers advantages and disadvantages with respect to the other. The advantages of chain drive systems are as follows:

  7. 1.1 This specification covers Grade 80 heat-treated alloy steel chain for such applications as slings, lifting assemblies, and load binding. For overhead lifting applications, only alloy chain should be used. 1.2 The chain grade is based on the nominal stress in the link at the design breaking force strength.

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