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固态烧结
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  solid state sintering
     The compound Li2K(IO3)3 in the system LiIO3-KIO3 has been synthesized by means of the solid state sintering and evaporation from aqueous solution.
     本文用粉末固态烧结法、水溶液蒸发法和熔融法对LiIO_3-KIO_3系统可能存在的二元化合物进行合成。 二元化合物 Li_2K(IO_3)_3属单斜晶系;
短句来源
     Preparation of Tubular Alpha Alumina Ceramic Membrane By The Solid State Sintering Process(Ⅰ)
     固态烧结法制α-Al_2O_3陶瓷膜管的研究(Ⅰ)
短句来源
     The influences of particle size distribution and additive contents on properties of ceramicmembrane were investigated. The average pore size, pore size distribution, the porosity, gas andliquid flux were determined. The microporous membranes with average pore size of 0.45μm andporosity of 50% were prepared by solid state sintering technology.
     本文研究了粉体粒径、添加剂种类、含量对膜孔性能的影响,用自制的装置测定膜的平均孔径、孔径分布、孔隙率、气通量和水通量.用固态烧结技术制得了平均孔径为0.45μm、孔分布狭窄、孔隙率为50%的陶瓷膜管.
短句来源
  “固态烧结”译为未确定词的双语例句
     The conventional solid state reaction process to prepare Y-123 powder adopts the direct reaction of BaCO-3、Y-2O-3 and CuO powders.
     合成Y 12 3粉末的传统方法是利用BaCO3、Y2 O3和CuO粉末直接固态烧结反应 .
短句来源
     Mixing ZrO2 and Al2O3 raw powder by different ratio (10%wt, 25%wt,40%wt Al2O3), preparing processed powder by means of mechanical alloying indifferent time (10h, 20h, 30h), then synthesizing composites by keeping powderunder 3.90Gpa and 1061℃.
     对ZrO2和Al2O3不同配比(10%wt、25%wt、40%wt Al2O3)的混合原粉、使用机械合金化方法球磨不同时间(10h、20h、30h)制备了前驱粉体,在常压 1061℃高温固态烧结合成了复合材料。
短句来源
     A new Compound Sr_2CaMoO_6 has first been synthesized with solid—state sintering method.
     本文用固态烧结法合成了新化合物Sr_2CaMoO_6,并通过x射线衍射的测定,确定Sr_2CaMoO_6属正交晶系,其点阵常数为:a=8.158; b=5.733;
短句来源
     The Synthesis of a New Compound Sr_2 Ca Mo O_6 With Solid—State Sintering Method
     固态烧结法合成新化合物Sr_2CaMoO_6
短句来源
     Mg 1.7M 0.3(M=Mg?Ti?Al)Ni alloys were synthesized by solid-sintering method. XRD shows that improving sintering temperature is useful for producing Mg 2Ni phase.
     采用固态烧结法制备了Mg1 7M0 3(M =Mg、Ti、Al)Ni贮氢合金 ,X射线衍射分析结果表明 ,适当提高烧结温度有利于Mg2 Ni相的形成 ;
短句来源
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  相似匹配句对
     PREPARATION OF NANOCRYSTALLINE OF YSZ AND ULTRAFILTRATION MEMBRANE
     固态粒子烧结法制备YSZ超滤膜
短句来源
     A solid state plasma
     固态等离子体
短句来源
     Sintered Valve Seat insert
     烧结气门座圈
短句来源
     Casting Sintering Technology
     铸造烧结
短句来源
     SOLID COMPLEX WATER TREATMENT AGENT
     固态复方水处理剂
短句来源
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  solid sintering
The relative density of YSZ ceramic by solid sintering at 1300-1350°C is more than 97%, with little and small pores in the uniform microstructure.
      
  solid state sintering
Nickel alloy matrix/dispersed carbide (VC, NbC, WC) composites were prepared by either flame-spray, liquid phase sintering, or solid state sintering.
      
of carbide particles and used to prepare composite coatings by flame-spray, bulk composite materials by solid state sintering (below 1045°C) or liquid phase sintering (above 1050°C).
      
The interfacial polarisation arises due to the presence of microscopic chemical heterogeneities arising out of the slow diffusion-controlled solid state sintering process used for their preparation.
      
The effect of lanthanum doping is studied on ferroelectric properties of Ba1-xLaxTiO3 withx = 0.0005, 0.001, 0.003 prepared through solid state sintering route.
      
This study shows that the mechanism is a solid state sintering process.
      
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The compound Li2K(IO3)3 in the system LiIO3-KIO3 has been synthesized by means of the solid state sintering and evaporation from aqueous solution. Crystal, Li2K(IO3)3 belongs to the monoelinic system, the lattice parameter being a = 11.127 A, b = 11.092 A, c = 8.243 A, β = 11°30'. There are four formula units per unit cell.

本文用粉末固态烧结法、水溶液蒸发法和熔融法对LiIO_3-KIO_3系统可能存在的二元化合物进行合成。二元化合物 Li_2K(IO_3)_3属单斜晶系;简单单斜布喇菲点阵。α=11.127,b=11.092,”c=8.243,β=110°30′,z=4,并确定其存在的成份范围和条件。同时测定了LiIO_3-KIO_3系统平衡态与降温时亚稳态的相图。

A new Compound Sr_2CaMoO_6 has first been synthesized with solid—state sintering method.

本文用固态烧结法合成了新化合物Sr_2CaMoO_6,并通过x射线衍射的测定,确定Sr_2CaMoO_6属正交晶系,其点阵常数为:a=8.158;b=5.733;c=5.835。

XRD,SEM and TEM were used for investigating the crystal structure transformation inpressureless sintering of β-SiC.The experimental results show that phase transformation fromβ to α-phase occurs at 1900 ℃ and increases with increasing holding temperature and time.At temperature higher than 2050 ℃,grain growth becomes rapid and 10~30μm long-plateletcrystals develop.TEM observation shows that at holding temperature higher that 2050 ℃,inhomogeneous grain growth without marked liquid phase or second phase at grain...

XRD,SEM and TEM were used for investigating the crystal structure transformation inpressureless sintering of β-SiC.The experimental results show that phase transformation fromβ to α-phase occurs at 1900 ℃ and increases with increasing holding temperature and time.At temperature higher than 2050 ℃,grain growth becomes rapid and 10~30μm long-plateletcrystals develop.TEM observation shows that at holding temperature higher that 2050 ℃,inhomogeneous grain growth without marked liquid phase or second phase at grain boundarycan be found and SiO_2 can inhibit SiC sintering.These phenomena show that the sintering ofβ-SiC tends to be controlled by the mechanism of solid state material transportation.

用 XRD、光学显微镜和 TEM 观察β-SiC 在常压烧结过程中相组成和显微结构的变化,结果表明:β-SiC 在1900℃左右开始转变成α相,并随保温时间和温度的增大而增大,其中以6H-SiC 多型体为主.同时,在<2000℃的温度下,晶粒没有明显生长;>2050℃以后,晶粒生长加快.最终晶粒大小可达几十μm,并成板状晶粒.TEM 观察表明,在>2050℃时,晶粒生长是各向异性的;晶界上无明显的液相或第二相存在.这些现象都说明烧结趋向于固态烧结的传质过程.同时也观察到SiO_2对β-SiC 烧结的阻碍作用.

 
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