The Experts below are selected from a list of 222 Experts worldwide ranked by ideXlab platform
Sébastien Saunier - One of the best experts on this subject based on the ideXlab platform.
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Development of an instrumented and automated single mode cavity for ceramic microwave sintering: Application to an alpha pure alumina powder
Materials and Design, 2015Co-Authors: Jérémy Croquesel, Didier Bouvard, Jean-marc Chaix, Claude P. Carry, Sébastien SaunierAbstract:This paper describes the development of an instrumented and automated single mode microwave cavity for sintering ceramic powders. This setup includes an Optical dilatometer and a motorized plunger to control heating cycles in a wide range of heating rates (from 5 degrees C. min(-1) to 200 degrees C. min(-1)) up to 1600 degrees C and to allow reliable comparison with conventional sintering. The cavity and the sintering cells for both hybrid and direct microwave sintering were designed using finite element simulation. For accurate temperature measurement, an Optical Pyrometer calibrated with a specific protocol has been used. Microwave sintering of fine grained (
Jérémy Croquesel - One of the best experts on this subject based on the ideXlab platform.
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Development of an instrumented and automated single mode cavity for ceramic microwave sintering: Application to an alpha pure alumina powder
Materials and Design, 2015Co-Authors: Jérémy Croquesel, Didier Bouvard, Jean-marc Chaix, Claude P. Carry, Sébastien SaunierAbstract:This paper describes the development of an instrumented and automated single mode microwave cavity for sintering ceramic powders. This setup includes an Optical dilatometer and a motorized plunger to control heating cycles in a wide range of heating rates (from 5 degrees C. min(-1) to 200 degrees C. min(-1)) up to 1600 degrees C and to allow reliable comparison with conventional sintering. The cavity and the sintering cells for both hybrid and direct microwave sintering were designed using finite element simulation. For accurate temperature measurement, an Optical Pyrometer calibrated with a specific protocol has been used. Microwave sintering of fine grained (
Claude P. Carry - One of the best experts on this subject based on the ideXlab platform.
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Development of an instrumented and automated single mode cavity for ceramic microwave sintering: Application to an alpha pure alumina powder
Materials and Design, 2015Co-Authors: Jérémy Croquesel, Didier Bouvard, Jean-marc Chaix, Claude P. Carry, Sébastien SaunierAbstract:This paper describes the development of an instrumented and automated single mode microwave cavity for sintering ceramic powders. This setup includes an Optical dilatometer and a motorized plunger to control heating cycles in a wide range of heating rates (from 5 degrees C. min(-1) to 200 degrees C. min(-1)) up to 1600 degrees C and to allow reliable comparison with conventional sintering. The cavity and the sintering cells for both hybrid and direct microwave sintering were designed using finite element simulation. For accurate temperature measurement, an Optical Pyrometer calibrated with a specific protocol has been used. Microwave sintering of fine grained (
Jean-marc Chaix - One of the best experts on this subject based on the ideXlab platform.
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Development of an instrumented and automated single mode cavity for ceramic microwave sintering: Application to an alpha pure alumina powder
Materials and Design, 2015Co-Authors: Jérémy Croquesel, Didier Bouvard, Jean-marc Chaix, Claude P. Carry, Sébastien SaunierAbstract:This paper describes the development of an instrumented and automated single mode microwave cavity for sintering ceramic powders. This setup includes an Optical dilatometer and a motorized plunger to control heating cycles in a wide range of heating rates (from 5 degrees C. min(-1) to 200 degrees C. min(-1)) up to 1600 degrees C and to allow reliable comparison with conventional sintering. The cavity and the sintering cells for both hybrid and direct microwave sintering were designed using finite element simulation. For accurate temperature measurement, an Optical Pyrometer calibrated with a specific protocol has been used. Microwave sintering of fine grained (
Didier Bouvard - One of the best experts on this subject based on the ideXlab platform.
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Development of an instrumented and automated single mode cavity for ceramic microwave sintering: Application to an alpha pure alumina powder
Materials and Design, 2015Co-Authors: Jérémy Croquesel, Didier Bouvard, Jean-marc Chaix, Claude P. Carry, Sébastien SaunierAbstract:This paper describes the development of an instrumented and automated single mode microwave cavity for sintering ceramic powders. This setup includes an Optical dilatometer and a motorized plunger to control heating cycles in a wide range of heating rates (from 5 degrees C. min(-1) to 200 degrees C. min(-1)) up to 1600 degrees C and to allow reliable comparison with conventional sintering. The cavity and the sintering cells for both hybrid and direct microwave sintering were designed using finite element simulation. For accurate temperature measurement, an Optical Pyrometer calibrated with a specific protocol has been used. Microwave sintering of fine grained (