Mechanical testing of carbon containing refractories at high temperatures requires measures to protect the sample from oxidation. Therefore, special setups for tensile and compressive creep testing were developed to prevent the oxidation of carbon in the sample. A MgO-C refractory was selected for a case study. These developments allow the quantification of the tensile and compressive creep behaviour of MgO-C refractories at temperatures up to 1500 °C. The creep parameters are determined by an inverse evaluation method for the obtained experimental data. They enable the consideration of creep in a thermomechanical finite element simulation of refractory linings in service
Creep Characterization of Refractory Materials at High Temperatures Using the Integrated Digital Ima...
Furnace designers and refractory engineers recognize that optimized furnace superstructure design an...
abstractMgO-C (magnesia-carbon) refractories are widely used in several steelmaking linings. These r...
Refractories are widely used as lining material in the steelmaking industry. This class of materials...
Refractories materials are used by the steel industry in several applications, such as in the in...
International audienceRefractories are materials designed to work at high temperatures, and are appl...
Experimental issues regarding the implementation of a methodology for obtaining strain-stress curves...
Creep is a major mechanism of failure for many refractory materials. Refractories synthesized from r...
Compressive creep testing of ten commercially available mullite refractories was performed at 1300-1...
International audienceThis publication presents new advances in the field of refractories characteri...
Various carbon contents in the MgO-C refractory were studied with respect to the oxidation resistanc...
International audienceThis paper summarises the work that has been done in the framework of the Fren...
The corrosion behavior of magnesia-carbon (MgO-C) refractories used in slag lines of secondary steel...
Fusion-cast alumina refractories have become a popular choice for crowns and side-walls in oxy-fuele...
Analysis and design of refractory linings for high temperature process vessels is complex. Previous ...
Creep Characterization of Refractory Materials at High Temperatures Using the Integrated Digital Ima...
Furnace designers and refractory engineers recognize that optimized furnace superstructure design an...
abstractMgO-C (magnesia-carbon) refractories are widely used in several steelmaking linings. These r...
Refractories are widely used as lining material in the steelmaking industry. This class of materials...
Refractories materials are used by the steel industry in several applications, such as in the in...
International audienceRefractories are materials designed to work at high temperatures, and are appl...
Experimental issues regarding the implementation of a methodology for obtaining strain-stress curves...
Creep is a major mechanism of failure for many refractory materials. Refractories synthesized from r...
Compressive creep testing of ten commercially available mullite refractories was performed at 1300-1...
International audienceThis publication presents new advances in the field of refractories characteri...
Various carbon contents in the MgO-C refractory were studied with respect to the oxidation resistanc...
International audienceThis paper summarises the work that has been done in the framework of the Fren...
The corrosion behavior of magnesia-carbon (MgO-C) refractories used in slag lines of secondary steel...
Fusion-cast alumina refractories have become a popular choice for crowns and side-walls in oxy-fuele...
Analysis and design of refractory linings for high temperature process vessels is complex. Previous ...
Creep Characterization of Refractory Materials at High Temperatures Using the Integrated Digital Ima...
Furnace designers and refractory engineers recognize that optimized furnace superstructure design an...
abstractMgO-C (magnesia-carbon) refractories are widely used in several steelmaking linings. These r...