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sinter ability
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  “sinter ability”译为未确定词的双语例句
     The result indicates the sinter ability was markedly improved by addition of C, the articles density increased.
     试验表明,添加碳能显著地促进烧结过程,并提高其烧结制品的相对密度.
短句来源
     Sinter ability was greatly improved by the addition of Al and Si.
     添加铝、硅均能促进烧结过程,当铝、硅的质量分数分别为3%和7%时,可达到最大的密度.
短句来源
     Moreover, there came into being a layer of thin and dense LSCF-6428 film between the cathode and electrolyte. The reason of LSCF-6428 powder in possession of excellent sinter ability was analyzed.
     通过扫描电镜仔细观察了电池的微观结构和LSCF-6428粉体煅烧前后的形貌变化,并据此分析了粉体具有高烧结活性的原因。
短句来源
  相似匹配句对
     Sinter ability was greatly improved by the addition of Al and Si.
     添加铝、硅均能促进烧结过程,当铝、硅的质量分数分别为3%和7%时,可达到最大的密度.
短句来源
     the ability of communication;
     创新能力因子;
短句来源
     the ability of innovation;
     交流能力因子;
短句来源
     The result indicates the sinter ability was markedly improved by addition of C, the articles density increased.
     试验表明,添加碳能显著地促进烧结过程,并提高其烧结制品的相对密度.
短句来源
     ON THE PLASTIC THEORY OF SINTER
     烧结体塑性理论
短句来源
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Chemical coprecipitation was used to produce nanometer powder. But the agglomerates strongly affect the powder's performance. In this paper ultrafine zirconia stabilized with yttria was prepared by adding a new dehydration process —— distillation process in chemical coprecipitation. The result indicated that, the distillation process could effectively dehydrate hydrous zirconia and prevent the formation of the hard agglomerates. The powder with a particle size of 11.8nm was prepared. The powder has good sinter...

Chemical coprecipitation was used to produce nanometer powder. But the agglomerates strongly affect the powder's performance. In this paper ultrafine zirconia stabilized with yttria was prepared by adding a new dehydration process —— distillation process in chemical coprecipitation. The result indicated that, the distillation process could effectively dehydrate hydrous zirconia and prevent the formation of the hard agglomerates. The powder with a particle size of 11.8nm was prepared. The powder has good sinter ability, and can reach full density in 1400℃

化学共沉淀法是制备纳米粉末的有效途径之一 ,但粉末在煅烧过程中产生的团聚现象严重地影响了粉末的各项性能。本文通过在传统的化学共沉淀法中加入一种较新的脱水工艺——蒸馏法制备了纳米级的 Zr O2 复合粉末。结果表明 :蒸馏法能充分地脱去凝胶中残余的水分 ,防止因胶体含水而引起的粉末硬团聚 ,从而显著地提高了粉末的性能。制得的氧化锆复合粉末一次粒径已达到纳米级 ,粉末分散性良好 ,团聚体尺寸小而少 ,并具有较好的烧结性能。经过常压成型后于 1 40 0℃烧结 2小时 ,制备了致密 ( 98.3% )且具有良好晶粒度的氧化锆复合陶瓷。

The densification behavior and the mechanical properties of pressureless sintered B4C were investigated. The result indicates the sinter ability was markedly improved by addition of C, the articles density increased. The better properties of B4C are obtained when the content of C in the B4C was 4.5% and the sintering temperature was 2200℃. Higher sintering temperature and more C was of benefit to the better mechanics properties.

研究了碳化硼陶瓷无压烧结致密化过程中相对密度与力学性能的关系.试验表明,添加碳能显著地促进烧结过程,并提高其烧结制品的相对密度.当含碳质量分数为4.5%,烧结温度为2200℃时,制品的性能达到较高的水平.过高的烧结温度和过多的碳均不利于性能的提高.

The densification behavior and mechanical properties of pressureless sintered B4C with Al and Si was investigated. Sinter ability was greatly improved by the addition of Al and Si. The highest density of the sintered article will be obtained, when the content of Al and Si are 2.2% and 7.8% separately. Overmuch of Al and Si will make the properties unfavorable.

研究了含有铝、硅的碳化硼陶瓷无压烧结致密化过程和力学性能.添加铝、硅均能促进烧结过程,当铝、硅的质量分数分别为3%和7%时,可达到最大的密度.烧结制品的性能与所添加的铝、硅质量分数关系密切,当添加剂质量分数过高时,会导致性能下降.

 
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