首页> 外文会议>International Symposium on Novel Materials Processing by Advanced Electromagnetic Energy Sources; 20040319-22; Osaka(JP) >SINTERING BEHAVIOR OF METALLIC AND CERAMIC POWDERS DURING PULSED ELECTRIC-CURRENT SINTERING PROCESS
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SINTERING BEHAVIOR OF METALLIC AND CERAMIC POWDERS DURING PULSED ELECTRIC-CURRENT SINTERING PROCESS

机译:脉冲电流烧结过程中金属和陶瓷粉末的烧结行为

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In order to clarify the difference in sintering behavior between electrically conductive powder and nonconductive one during pulsed electric-current sintering (PECS) process, densification kinetics and interparticle strength (binding properties between sintered particles) in sintered layer have been compared among PECS, direct electric-current sintering (DECS) and hot-pressed sintering (HP). Oxide dispersion strengthened (ODS) alloy and alumina ceramic powders were used as electrically conductive powder and non-conductive one, respectively. Sintering temperature, holding time and applied stress were varied in sintering. Interparticle strength was evaluated by the elevated temperature tensile testing (for ODS alloy) and Vickers indentation testing (for alumina ceramic). The densification rates in sintered layer were decreased in the order of PECS < DECS < HP when ODS alloy power was used, however, there were almost comparable each other during any sintering processes in case of alumina ceramic powder. The interparticle strength in sintered layer of ODS alloy was increased in the order of PECS > DECS > HP, while there was no clear difference in that of alumina ceramic. The rapid densification and the superior interparticle strength during PECS of electrically conductive powder were mainly attributed to the amelioration of the adhesion strength of prior particle boundary due to the local heat generation by concentration of pulsed electric-current at the necked region.
机译:为了弄清楚在脉冲电流烧结(PECS)过程中导电粉末和非导电粉末在烧结粉末之间的烧结行为的差异,比较了PECS(直接电)在烧结层中的致密化动力学和颗粒间强度(烧结颗粒之间的粘结性能)。电流烧结(DECS)和热压烧结(HP)。氧化物弥散增强(ODS)合金粉末和氧化铝陶瓷粉末分别用作导电粉末和非导电粉末。在烧结过程中,烧结温度,保持时间和施加应力是变化的。颗粒间强度通过高温拉伸试验(用于ODS合金)和维氏压痕试验(用于氧化铝陶瓷)进行评估。当使用ODS合金粉末时,烧结层中的致密化速率以PECS <DECS <HP的顺序降低,但是,在氧化铝陶瓷粉末的情况下,在任何烧结过程中,烧结层的致密化率几乎是可比的。 ODS合金烧结层中的颗粒间强度按PECS> DECS> HP的顺序增加,而氧化铝陶瓷的颗粒间强度没有明显差异。导电粉末在PECS过程中的快速致密化和优异的颗粒间强度主要归因于由于颈缩区域脉冲电流的集中而产生的局部热量,从而改善了先前颗粒边界的粘附强度。

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