Hybrid microwave sintering is a promising method to enhance better properties of sintered metallic alloys. Mixtures of Zn-Al-Cu-Mg elements with 8 wt-%, 12 wt-%, and 27 wt-% fractions of Al were sintered by hybrid microwave method and compared with conventionally sintered products. Compositional, structural and thermo-mechanical characteristics of the sintered products were investigated. Analysis of the results confirmed the significant technical and economic advantages of hybrid microwave sintering to conventional sintering. The coefficient of thermal expansion (CTE) was reduced from 28.25 um/m'C to 21:23 llm/moC by increasing Al content from 8 wt-% to 27 wt-%
International audienceA comparative study between the conventional and 2.45 GHz microwave multimode ...
In the past three decades, zirconia based ceramics have been catching great interest especially in b...
金沢大学大学院自然科学研究科 金沢大学信頼性システム工学(工学部)Microwave processing, as a new method for sintering ceramics, has k...
Hybrid microwave sintering is a promising method to enhance better properties of sintered metallic a...
Commercial Zinc-Aluminum (Zn-Al) alloys commonly manufactured through traditional process of melting...
A microwave/conventional hybrid furnace has been used to sinter three ceramics with different microw...
In this research, we intended to examine the effect of heating mode on the densification, microstruc...
In this research, the comparison between microwave sintering and conventional sintering on the mecha...
This research investigates the effect of hybrid microwave energy toward the enhancement of tool life...
Microwave sintering has become one of the well-known sintering processing methods used by research...
Commercially, 3mol% Y2O3-stabilized tetragonal zirconia (7090nm) compacts were fabricated using a co...
Sintered composites have revolutionized as a thermal treatment to consolidate a wide range of engine...
Tin-copper-antimony (pewter) alloys have been traditionally produced by a casting process which cons...
10.1115/IMECE2005-82502American Society of Mechanical Engineers, Materials Division (Publication) MD...
97%Sn 2%Cu 1%Sb (pewter) alloys were examined to determine the effect of green density, sintering ti...
International audienceA comparative study between the conventional and 2.45 GHz microwave multimode ...
In the past three decades, zirconia based ceramics have been catching great interest especially in b...
金沢大学大学院自然科学研究科 金沢大学信頼性システム工学(工学部)Microwave processing, as a new method for sintering ceramics, has k...
Hybrid microwave sintering is a promising method to enhance better properties of sintered metallic a...
Commercial Zinc-Aluminum (Zn-Al) alloys commonly manufactured through traditional process of melting...
A microwave/conventional hybrid furnace has been used to sinter three ceramics with different microw...
In this research, we intended to examine the effect of heating mode on the densification, microstruc...
In this research, the comparison between microwave sintering and conventional sintering on the mecha...
This research investigates the effect of hybrid microwave energy toward the enhancement of tool life...
Microwave sintering has become one of the well-known sintering processing methods used by research...
Commercially, 3mol% Y2O3-stabilized tetragonal zirconia (7090nm) compacts were fabricated using a co...
Sintered composites have revolutionized as a thermal treatment to consolidate a wide range of engine...
Tin-copper-antimony (pewter) alloys have been traditionally produced by a casting process which cons...
10.1115/IMECE2005-82502American Society of Mechanical Engineers, Materials Division (Publication) MD...
97%Sn 2%Cu 1%Sb (pewter) alloys were examined to determine the effect of green density, sintering ti...
International audienceA comparative study between the conventional and 2.45 GHz microwave multimode ...
In the past three decades, zirconia based ceramics have been catching great interest especially in b...
金沢大学大学院自然科学研究科 金沢大学信頼性システム工学(工学部)Microwave processing, as a new method for sintering ceramics, has k...