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136-150 of 193 results
DILLIMAX 690
| By AncoferWaldram Steelplates
DILLIMAX 690 is a high strength quenched and tempered, fine grained structural steel with a minimum yield strength of 690 MPa (100 ksi) in its delivery condition (referring to the lowest thickness range). Its mechanical properties are achieved by water quenching followed by tempering.
Power Distribution > Utilities Network > White Papers
DILLIMAX 500
| By AncoferWaldram Steelplates
DILLIMAX 500 is a high strength quenched and tempered, fine grained structural steel with a minimum yield strength of 500 MPa (72 ksi) in its delivery condition (referring to the lowest thickness range), which mechanical properties are achieved by water quenching followed by tempering.
Power Distribution > Utilities Network > White Papers
DILLIDUR 500 V
| By AncoferWaldram Steelplates
DILLIDUR 500 V is a wear resistant steel with an average hardness of 500 HBW in delivery condition whose mechanical properties are obtained by quenching. DILLIDUR 500 V is successfully applied where very high resistance to wear is required together with good workability and especially good weldability. Examples of application: earth moving and loading machines, dredgers, skip cars, conveying plants, trucks, cutting edges, knives and breakers, waste elimination and recycling plants.
Power Distribution > Utilities Network > White Papers
DILLIDUR 450 V
| By AncoferWaldram Steelplates
DILLIDUR 450 V is a wear resistant steel with an average hardness of 450 HBW in delivery condition whose mechanical properties are obtained by quenching. DILLIDUR 450 V is successfully applied where elevated resistance to wear is required together with good workability and especially good weldability. Examples of application: earth moving and loading machines, dredgers, skip cars, conveying plants, trucks, cutting edges, knives and breakers, waste elimination and recycling plants.
Power Distribution > Utilities Network > White Papers
DILLIDUR 400 V
| By AncoferWaldram Steelplates
DILLIDUR 400 V is a wear resistant steel with an average hardness of 400 HBW in delivery condition ex works, whose mechanical properties are obtained by quenching. DILLIDUR 400 V is successfully applied by the customers where elevated resistance to wear is required together with good workability and especially good weldability.
Power Distribution > Utilities Network > White Papers
DILLIDUR IMPACT
| By AncoferWaldram Steelplates
DILLIDUR IMPACT is a wear resistant steel with a nominal hardness of 340 HBW in delivery condition, whose mechanical properties are obtained by water quenching and subsequent tempering.
Power Distribution > Utilities Network > White Papers
DILLIMAX 500 ML
| By AncoferWaldram Steelplates
DILLIMAX 500 ML is a thermomechanically rolled, fine-grained structural steel. It is characterized by high toughness and strength combined with a lean chemistry. Due to its chemical composition, this material has a low carbon equivalent and hence excellent fabrication properties, particularly weldability. The steel is preferentially used by the customers for sophisticated design in constructional steelwork, hydraulic steelwork, mechanical engineering, offshore constructions, storage tanks or spheres.
Power Distribution > Utilities Network > White Papers
DILLIMAX 550
| By AncoferWaldram Steelplates
DILLIMAX 550 is a high strength quenched and tempered, fine grained structural steel with a minimum yield strength of 550 MPa (80 ksi) in its delivery condition (referring to the lowest thickness range), which mechanical properties are achieved by water quenching followed by tempering.
Power Distribution > Utilities Network > White Papers
DILLINAL 460/630
| By AncoferWaldram Steelplates
DILLINAL 460/630 is a weldable normalized fine grained steel which is characterised by a minimum yield strength of 460 MPa and a minimum tensile strength of 630 MPa. DILLINAL 460/630 is mainly applied for the construction of tanks for the transport of liquefied gas with road and rail vehicles where the weight minimisation plays an important role.
Power Distribution > Utilities Network > White Papers
DI-MC 460
| By AncoferWaldram Steelplates
DI-MC 460 is a thermomechanically rolled, fine-grained structural steel. Due to its chemical composition, this material has a low carbon equivalent and hence excellent weldability. The steel is preferentially used by the customers in constructional steelwork, hydraulic steelwork and mechanical engineering, where exacting demands are placed on weldability despite the application of higher-strength steels.
Power Distribution > Utilities Network > White Papers
DI-MC 420
| By AncoferWaldram Steelplates
DI-MC 420 is a thermomechanically rolled, fine-grained structural steel. Due to its chemical composition, this material has a low carbon equivalent and hence excellent weldability. It is preferentially used by the customers in constructional steelwork, hydraulic steelwork and mechanical engineering, where exacting demands are placed on weldability.
Power Distribution > Utilities Network > White Papers
DI-MC 355
| By AncoferWaldram Steelplates
DI-MC 355 is a thermomechanically rolled, fine-grained structural steel with a constant minimum yield strength of 355 MPa in its delivery condition ex works, referring to the whole thickness range up to 120 mm. Due to its chemical composition, this material has a low carbon equivalent and hence excellent weldability. The steel is preferentially used by the customers in constructional steelwork, hydraulic steelwork and mechanical engineering, here exacting demands are placed on weldability.
Power Distribution > Utilities Network > White Papers
KO-MATS- Working Together on the Right Foundation
| By KO-MATS
Product range and services offered by KO-MATS- Specialists In Pipeline And Crawler Crane Mats
Power Distribution > Utilities Network > White Papers
RadBall® Technical Development Report
| By National Nuclear Laboratory
This National Nuclear Laboratory report summarises the development route for RadBall®, a radiation detection device which provides a 3D visualisation and summarises the final trials which took place at the Oak Ridge National Laboratory (ORNL), TN, USA, in December 2010.
Power Distribution > Utilities Network > White Papers
136-150 of 193 results