1)Pressureless Sintering无压烧结
1.Preparation process of ZrB_2/B_4C ceramic composites by pressureless sintering based on mechanical mixing;基于机械混合法无压烧结制备ZrB_2/B_4C陶瓷复合材料
2.Research on pressureless sintering of hexagonal boron nitride;六方氮化硼无压烧结研究
3.Discussion on pressureless sintering of SiC ceramic;SiC陶瓷无压烧结工艺探讨
英文短句/例句
1.The Pressureless Sintering Behavior and Master Sintering Curve at Constant Heating Rate for Titania;氧化钛恒速无压烧结行为及主烧结曲线研究
2.The Investigation on the Sintering Mechanism for α-Al_2O_3 under the Pressureless Sintering Condition at Constant Heating Rates;α-Al_2O_3的恒速无压烧结机理研究
3.Pressureless Sintering of Ytterbia-Coated ZrB_2-SiC Ceramic Composites包裹Yb_2O_3的ZrB_2-SiC复合材料无压烧结
4.Synthesis of Ti_3SiC_2-SiC Composites Bulk by Pressureless Sintering无压烧结制备Ti_3SiC_2-SiC复合材料块体
5.Low Temperature Presureless Sintering Behavior of Hydroxyapatite Powders羟基磷灰石粉体的低温无压烧结行为
6.Slip Casting and Pressureless Sintering of ZrB_2-SiC CeramicsZrB_2-SiC陶瓷的注浆成型与无压烧结
7.Fabrication of High Nb Containing TiAl Alloys by High-Energy Ball Milling and Pressureless Sintering高能球磨与无压烧结制备高铌TiAl合金
8.Microstructures and Mechanical Properties of Pressureless Sintered Ca_3(PO_4)_2/Si_3N_4 Composite Ceramics无压烧结Ca_3(PO_4)_2/Si_3N_4复合陶瓷的组织结构与性能
9.Preparation and characterization of CeO_2-ZrO_2-MoSi_2 composite by pressureless sintering无压烧结CeO_2-ZrO_2-MoSi_2复合材料及其力学性能研究
10.Low-temperature Nonpressurized Sintering and Performance of High-purity Er_2O_3 Target Material高纯Er_2O_3靶材的低温无压烧结及性能研究
11.Fabrication of Diopside/AlTiB Toughened and Reinforced Alumina Matrix Structural Ceramic Materials by Non-pressure Sintering Process无压烧结制备透辉石/AlTiB增韧补强氧化铝基结构陶瓷材料
12.Fabrication of diopside toughened alumina matrix structural ceramic materials by pressureless sintering process无压烧结制备透辉石增韧补强氧化铝基结构陶瓷材料
13.Pressureless Sintering Behavior and Working Mechanism at Constant Heating Rates for Alumina Doped with Rare Earth稀土掺杂氧化铝恒速无压烧结行为及作用机理研究
14.Influence of CNT on Densification of Sm_2Zr_2O_7 Ceramics for Thermal Barrier Coatings by Pressureless Sintering碳纳米管对Sm_2Zr_2O_7热障涂层陶瓷无压烧结致密化的影响
15.Study on Pressureless Vacuum Powders Sintering of NIB and IN738 for Bonding Repairing SuperalloyNIB与IN738混合粉末真空无压烧结连接修复高温合金
16.ULTRA-HIGH PRESSURE SINTER NANO-SiC CERAMIC无烧结助剂SiC陶瓷的高压烧结研究
17.Density Sintering of LKNN Lead-free Piezoelectric Ceramics Doped With MgOMgO掺杂LKNN无铅压电陶瓷的致密化烧结
18.Sintering properties of K_(0.5)Na_(0.5)NbO_3 lead-free piezoelectric ceramicsK_(0.5)Na_(0.5)NbO_3无铅压电陶瓷的烧结特性
相关短句/例句
pressless sintering无压烧结
1.In this paper,the ZrB_2-SiC ceramic matrix composites were prepared by pressless sintering with YAG as sintering additive.以钇铝石榴石-YAG为烧结助剂,通过无压烧结制备了ZrB2-SiC复相陶瓷。
2.Zirconium diboride-silicon carbide (ZrB2-SiC) composites were prepared by pressless sintering with yttrium aluminum garnet (YAG) as sintering additive.以钇铝石榴石(yttriumaluminumgarnet,YAG)为烧结助剂,通过无压烧结工艺制备了ZrB2-SiC复相陶瓷。
3.The mechanical properties and microstructure of silicon nitride ceramics with MgO-Al2O3-SiO2 as additives produced by pressless sintering were investigated by XRD, SEM, TEM, EDS, and HRTEM.以MgO-Al2O3-SiO2为烧结助剂,借助XRD、SEM、TEM、EDS、HRTEM等手段,研究了无压烧结氮化硅陶瓷材料的力学性能和显微结构,着重探讨了材料制备工艺、力学性能和显微结构之间的关系,通过调整制备工艺改善材料微观结构以提高材料的力学性能。
3)pressureless reactive sintering无压反应烧结
1.With nanometer (75mol%Bi2O3+25mol%Y2O3) powder prepared by coprecipitation as raw material, the nanocrystalline Bi2O3-Y2O3 fast ionic conductor was fabricated through pressureless reactive sintering technique.在T=600℃,t=2h无压反应烧结条件下,纳米晶Bi2O3-Y2O3 快离子导体材料的相对密度可达96%以上,并且微观结构致密均匀,很少有残留气孔和裂纹, 平均晶粒尺寸在100nm以下。
4)conventional pressureless sintering传统无压烧结(PLS)
5)pressureless sintering at constant heating rate恒速无压烧结
1.Based on the combined-stage sintering model,the MSC of α-Al2O3 is constructed during pressureless sintering at constant heating rates in a dilatometer.主烧结曲线对于预测陶瓷的烧结行为非常有用,以主烧结曲线理论为基础,对亚微米级α-Al2O3(平均粒径为350nm)的恒速无压烧结行为进行了研究。
2.Based on the combined-stage sintering model, the master sintering curve (MSC) for the α-Al2O3 was constructed for pressureless sintering at constant heating rate in a dilatometer.主烧结曲线对于预测陶瓷的烧结行为非常有用,以主烧结曲线理论为基础,对微米级α-Al2O3的恒速无压烧结行为进行了研究。
6)Conventional Pressureless Sintering (PLS)传统无压烧结
1.MgB2 bulks,using magnesium powder and boron powder as starting materials,were successfully synthesized by conventional pressureless sintering (PLS) and sparkplasma sintering (SPS) methods, and their microstructure and superconductivity werestudied.以 Mg 粉和 B 粉为原料,用传统无压烧结方法和放电等离子烧结方法成功地制备出 MgB2块材,并研究了其显微结构和超导电性,比较了两种方法制备得到的样品的成分,密度和微观结构。
延伸阅读
烧结 不能直接加入高炉的铁(精)矿粉造块的主要方法之一。通过烧结,还可以改善原料的冶金性能。烧结也应用于有色金属冶炼过程。有色金属硫化物精矿的烧结,除造块外,还有脱硫的作用。烧结技术从1911年开始采用,当时主要目的是利用钢铁厂的废弃物。随着选矿和高炉炼铁对精料要求的提高,50年代以来烧结生产发展迅速。 烧结是将贫铁矿经过选矿得到的铁精矿,富铁矿在破碎、筛分过程中得到的粉矿和生产中回收的含铁粉料、熔剂以及燃料等,按要求比例配合,加水制成颗粒状的烧结混合料,平铺在烧结机上,经点火抽风烧结成块。生产烧结矿,以前用过烧结盘、回转窑和悬浮烧结等方法,现在都用带式烧结机。后者单机产量高,产品质量好(图1)。 国外烧结使用富矿粉为主,而中国以精矿粉为主。中国在细精矿烧结工艺方面有一些自己的可贵经验。 烧结反应过程 是分层依次向下进行的(图2)。抽入的空气通过已烧结好的热烧结矿层预热,在燃烧层中使固体碳燃烧,放出热量,获得高温(1300~1600℃)。根据温度和反应气氛条件,可以进行下列反应: ①分解反应
