The FeCrAl alloys owe their low oxidation rate to the formation of a slow growing alpha-aluminium oxide scale. Therefore they are used, for example, as a substrate material in metal-supported automotive catalytic converters. Increasing exhaust gas temperatures mean that, in addition to the oxidation properties, high temperature mechanical properties should also be improved. Compared to the ferritic FeCrAl alloys, austenitic alloys possess the required high mechanical strength at higher temperatures. However for most commercially available materials the oxidation resistance is not sufficient due to a low aluminium content. High aluminium contents are avoided in austenitic alloys, since they cause severe workability problems, even at aluminiu...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The choice of a metal alloy for supporting catalytic converter bodies depends on the mechanical, the...
Ferritic stainless steel containing more than 7 wt. % of Al represents an interesting material for t...
Ferritic stainless steel enriched with aluminium (>7%) represents the best material for the produ...
A variety of metallic components rely on properties that are specific to the alloy and its surface. ...
The high temperature oxidation behaviour of thin Fe-Cr-Al ribbons can be substantially improved by i...
Ferritic stainless steel enriched with aluminium (>7%) represents the best material for the producti...
The lifetime of thin-walled catalyst-carrying foils Is directly linked to the overall amount of alum...
Using alloy design principles, an austenitic alloy, with base composition of Fe-16Cr-16Ni-2Mn-1Mo (i...
FeCrAl alloys are high temperature structural materials with ever increasing technological importanc...
It is shown that the addition of aluminium is very effective for the high temperature oxidation resi...
Ferritic stainless steel enriched with aluminium (>7%) represents the best material for the produ...
The investigated alumina forming FeNiCrAl model alloy shows protective oxidation behavior in dry and...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The choice of a metal alloy for supporting catalytic converter bodies depends on the mechanical, the...
Ferritic stainless steel containing more than 7 wt. % of Al represents an interesting material for t...
Ferritic stainless steel enriched with aluminium (>7%) represents the best material for the produ...
A variety of metallic components rely on properties that are specific to the alloy and its surface. ...
The high temperature oxidation behaviour of thin Fe-Cr-Al ribbons can be substantially improved by i...
Ferritic stainless steel enriched with aluminium (>7%) represents the best material for the producti...
The lifetime of thin-walled catalyst-carrying foils Is directly linked to the overall amount of alum...
Using alloy design principles, an austenitic alloy, with base composition of Fe-16Cr-16Ni-2Mn-1Mo (i...
FeCrAl alloys are high temperature structural materials with ever increasing technological importanc...
It is shown that the addition of aluminium is very effective for the high temperature oxidation resi...
Ferritic stainless steel enriched with aluminium (>7%) represents the best material for the produ...
The investigated alumina forming FeNiCrAl model alloy shows protective oxidation behavior in dry and...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...
The iron-chromium-aluminum alloy (FeCrAl) is an exceptional support for highly exothermic and endoth...