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conventional sintering
相关语句
  传统烧结
    Sintering temperature is 80℃ lower than conventional sintering because of higher sinterability of composite powder.
    复合粉末烧结活性高,比传统烧结温度降低80℃;
短句来源
    Conventional sintering technique and spark plasma sintering technique(SPS)have been used to prepare sintered NdFeB magnetic alloys of same composition.
    采用传统烧结技术和放电等离子体烧结技术(SPS)制备相同成分的烧结NdFeB永磁合金。
短句来源
    The influence of C content on the magnetic properties of sintered NdFe-B permanent magnets was studied. The NdDyAlCuBFe permanent magnets were produced by the conventional sintering process,using two kinds of raw material with different C content.
    本文采用两种不同碳含量的原料铁棒,按相同的传统烧结Nd-Fe-B永磁体的工艺,制得NdDyAlCuBFe块状永磁体,研究了碳对烧结Nd-Fe-B永磁体性能的影响。
短句来源
  “conventional sintering”译为未确定词的双语例句
    The La_ 0.67Sr_ 0.33MnO_3 powder was synthesized by self- propagating high temperature synthesis (SHS) method. The influence of the process and two different sinered methods (conventional sintering and spark plasma sintering) on the microstructure and sinterable properities were discussed.
    利用自蔓延高温合成技术(self-propagating high temperature syntheris,SHS)合成La0.67Sr0.33MnO3粉体,探讨了自蔓延合成工艺对粉体结构及放电等离子体(spark plasma sintering,SPS)和普通烧结对La0.67Sr0.33MnO3粉体烧结性能和陶瓷显微结构的影响。
短句来源
    The sintering temperature of spark plasma sintering (SPS) is much lower than that of conventional sintering. The grain size of the product sintered by SPS is uniform and the relative density is high.
    SPS烧结与传统的固相烧结法相比:SPS快速烧结大大降低了传统固相法烧结温度,烧结后的晶粒大小基本均匀,烧结体致密度高。
短句来源
    CMR results shows that the extrinsic CMR effect of the sample sintered by SPS is higher than that sintered by conventional sintering.
    经过巨磁电子效应(colossal magnetoresistance,CMR)的测量得出,采用SPS放电等离子烧结的样品相对于普通烧结的样品,低温CMR效应有所增大。
短句来源
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  conventional sintering
With this process raw powders, as applied for the "conventional" sintering route as well as recycled powders from used bipolar plates, have been applied.
      
Conventional sintering was carried out in an inert atmosphere while microwave sintering was performed under ambient conditions.
      
As compared to conventional sintering, compacts sintered in microwaves exhibit higher densification and finer microstructure but no corresponding improvement in mechanical properties and wear resistance.
      
Porous TiNi shape-memory alloys (SMAs) have been successfully fabricated by three different processes, including capsule-free hot isostatic pressing (CF-HIP), conventional sintering (CS), and self-propagating high-temperature synthesis (SHS).
      
After LS, the samples exhibited considerable shrinkage, which was very different from the effects of conventional sintering (CS).
      
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A CO2 continuous laser was used to sinter copper and iron based powder sreen compacts (with an effective thickness of≤10mm) by bulk radiation, followed by the survey and analysis of their microstructure porosity, hardness, impact toughness, tensile stength and wear resistence. Results show that bulk compact sintered by laser has the structure and properties superior to conventional sintering.

应用连续CO2激光器对铜基、铁基粉末压坯(有效厚度≤10mm)施行整体辐射烧结,然后对其显微组织、孔隙度、硬度、冲击韧性、拉伸性能及耐磨性进行观测与分析。结果表明,激光整体烧结件具有较常规烧结件优良的组织与性能。

Constant heating rate sintering and conventional sintering methods were used to investigate the sintering kinetics of α-Al2O3 powder with a mean particle diameter of 10 nm.Constat heating rate (10℃ /min) sintering shows that densilication of the greenbody mainly occurs between 1200 and 1450℃. Relative density of the specimen is 98.85% after conventional sintering at 1400 ℃ for 2 h. Theoretical analysis indicates that further increase of the greenbody density and improvement of microstructural...

Constant heating rate sintering and conventional sintering methods were used to investigate the sintering kinetics of α-Al2O3 powder with a mean particle diameter of 10 nm.Constat heating rate (10℃ /min) sintering shows that densilication of the greenbody mainly occurs between 1200 and 1450℃. Relative density of the specimen is 98.85% after conventional sintering at 1400 ℃ for 2 h. Theoretical analysis indicates that further increase of the greenbody density and improvement of microstructural homogeneity could lead to a substatial decrease of sintering temperature of the powder.

采用等速升温烧结及常规烧结方法对平均粒径约10nm的α-Al2O3纳米粉的烧结动力学进行了研究.等速升温烧结实验表明,坯体致密化主要发生在1200—1450℃范围内.粉体经1400℃,2h的常规烧结后,相对密度达到98.85%.理论分析表明,提高生坯密度,改善其显微结构均匀性有可能大幅度降低该粉体的烧结致密化温度.

Using the microwave sintering new technology, the technology and property of WC Co fine grain cemented carbide in microwave sintering was studied and compared with conventional sintering technology. The results show that microwave sintered WC Co fine grain cemented carbide can reach 99.8% relative density in 1 300 ℃ sintering temperature and 10 min preservation. The microwave sintering not only can reduce sintering temperature and shorten sintering time in large range, but also...

Using the microwave sintering new technology, the technology and property of WC Co fine grain cemented carbide in microwave sintering was studied and compared with conventional sintering technology. The results show that microwave sintered WC Co fine grain cemented carbide can reach 99.8% relative density in 1 300 ℃ sintering temperature and 10 min preservation. The microwave sintering not only can reduce sintering temperature and shorten sintering time in large range, but also can decrease micro grain size of products over less one half and increase bending strength, coercive force and hardness in large range compared with conventional sintering.

采用微波烧结新技术研究了WCCo 细晶硬质合金的烧结工艺与性能, 并同常规烧结工艺进行了比较。结果表明: 微波烧结WCCo 细晶硬质合金在1 300 ℃的烧结温度下保温10 min 时, 可达到99 .8 % 的相对密度; 烧结温度降低, 烧结时间大幅度缩短, 且制品的显微晶粒尺寸只有常规烧结的一半; 抗弯强度、矫顽磁力、硬度有较大幅度提高

 
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