烧结性能,sintering property
1)sintering property烧结性能
1.Sintering property of MgAlON bonded composite materials;MgAlON结合镁质和尖晶石质材料的烧结性能
2.Research for Sintering Property Test of MAC Australia Ore;MAC矿烧结性能试验研究
3.A study of the sintering property of MAC mines and industrial practiceMAC粉烧结性能的研究及工业实践
英文短句/例句

1.Effects of Sintering Atmosphere on Sintered Properties of Stainless Steel Powders;烧结气氛对不锈钢粉末烧结性能的影响
2.Effects of Processing Parameters in Vacuum Sintering on Properties of Cu Powder Samples真空烧结工艺参数对铜粉烧结性能的影响
3.Effects of Grain Size on Sintering Properties of High Iron Trihydrate Bauxite and Sinter Microstructure粒度对高铁三水铝石型铝土矿烧结性能和烧结矿显微结构的影响
4.MA Effect on the Structure and the Sinter Capabilities of Fe-Cu Metal Bond;MA对Fe-Cu系金属结合剂结构和烧结性能的影响
5.Sintering Properties of AlPO_4-CrPO_4 Mixtures磷酸铝-磷酸铬混合体系的烧结性能
6.Preparation and Sintering Behavior of Alumina-Zirconia Composite Powders;Al_2O_3/ZrO_2复合粉体的制备及烧结性能研究
7.Sintering and Mechanical Property of Si_3N_4 with YF_3 Sintering AidYF_3助烧剂氮化硅的烧结及力学性能
8.Influences of Sintered Technologies and Additives on Properties of Aluminum Oxide Ceramic;烧结工艺及烧结助剂对氧化铝陶瓷性能的影响
9.Influence of BBSM sintering aid on the properties for PTC thermistor ceramics sintered at low temperatureBBSM烧结助剂对低温烧结PTCR陶瓷性能的影响
10.Effect of Sawdust's Combustion Characteristic on Technological Properties of Sintered Porous Product锯末燃烧特性对烧结多孔材料工艺性能的影响
11.Microstructure and Mechanical Properties of Hot-pressed TiB_2-VB Composites热压烧结TiB_2-VB复合陶瓷的结构与性能
12.Effects of Sintering Temperature on Microstructure and Performances of Micro-Porous Si_3N_4 Ceramics烧结温度对Si_3N_4显微结构及性能的影响
13.Sintering Preparation and Performance Study of Tungsten Trioxide Ceramic;三氧化钨陶瓷的烧结制备及性能研究
14.Study on Properties of PZT-PbO·WO_3 Piezoelectric Ceramics Sintered at Low Temperature;低温烧结PZT-PbO·WO_3压电陶瓷性能研究
15.Research on Microstructure and Properties of Iron-based High Density Sintering Materials;铁基高密度烧结材料组织及性能研究
16.Study on the Friction and Wear Properties of Reaction-Bonded Silicon Carbide;反应烧结SiC陶瓷摩擦磨损性能研究
17.Study on the Design of Composition and Preparation of High Performance Sintered NdFeB Magnet;高性能烧结NdFeB成分设计及工艺的研究
18.Research on the Erosion Wear of Reactive Sintering Silicon Carbide;反应烧结SiC陶瓷冲蚀磨损性能研究
相关短句/例句

sintering properties烧结性能
1.Sintering properties and microstructure of Al_2O_3-AlON composite;Al_2O_3-AlON复合材料的烧结性能和显微结构
2.A study of the sintering properties of magnetically roasted Dabaoshan limonite ores;焙烧褐铁矿粉的烧结性能实验与研究
3.The influence of Al2O3 particles on sintering properties of LiTaO3 ceramics was studied.把Al2O3添加到LiTaO3陶瓷中,研究了Al2O3对LiTaO3陶瓷烧结性能的影响,通过制备Al2O3/LiTaO3复相陶瓷,对其微观结构和LiTaO3晶粒内的电畴结构进行了观察。
3)sinterability烧结性能
1.Sinterability and sintering mechanism of kyanite micropowder;蓝晶石微粉的烧结性能及其机理
2.2)TiO_4composites materials was investigated,mainly including its sinterability,microstructure,dielectric property,etc.2)Ti O4复合体系的烧结性能、微观结构、相组成和微波介电性能。
4)Sintering performance烧结性能
1.Flowability and sintering performance of stuffing sands used for ladle;钢包用引流材料的流动性能与烧结性能
2.The influences of sintering aids Al2O3-Y2O3on sintering performance of B4C/B-Al composites were studied in vacuum carbon tube furnace under argon atmosphere at 1 850 ℃ holding 1.5 h、真空碳管炉氩气保护条件下研究了烧结助剂Al2O3-Y2O3对B4C/B-Al复合材料烧结性能的影响。
3.The slurry for SiC ceramics foam was dried, powdered, dry pressed and sintered in order to investigate the relation between composition and sintering performance.将用于制备碳化硅泡沫陶瓷的浆料烘干、制粉、干压、烧结,从而探讨浆料的成分与 烧结性能的关系。
5)Sintering['sint?ri?]烧结性能
1.Effect of Nb_2O_5 on sintering and microstructure of alumina ceramics;Nb_2O_5对氧化铝陶瓷烧结性能和显微结构的影响
2.The effect of codopant CuO+ TiO2 on the sintering and microstructure of alumina ceramics and the sintering kinetics during liquid- phase- sintering were investigated.研究了CuO+TiO2复相添加剂对氧化铝陶瓷烧结性能,显微结构的影响以及形成液相时氧化铝陶瓷烧结动力学。
3.The activating and sintering characteristics of hydroxyapatite agglomerate treated by shock wave were studied .研究了经冲击波处理的羟基磷灰石粉末团聚体的活性及其烧结性能
6)sintering/electrode paste烧结/性能
延伸阅读

不锈钢的物理性能、力学性能和耐热性能不锈钢的物理性能 不锈钢和碳钢的物理性能数据对比,碳钢的密度略高于铁素体和马氏体型不锈钢,而略低于奥氏体型不锈钢;电阻率按碳钢、铁素体型、马氏体型和奥氏体型不锈钢排序递增;线膨胀系数大小的排序也类似,奥氏体型不锈钢最高而碳钢最小;碳钢、铁素体型和马氏体型不锈钢有磁性,奥氏体型不锈钢无磁性,但其冷加工硬化生成成氏体相变时将会产生磁性,可用热处理方法来消除这种马氏体组织而恢复其无磁性。 奥氏体型不锈钢与碳钢相比,具有下列特点: 1)高的电阴率,约为碳钢的5倍。 2)大的线膨胀系数,比碳钢大40%,并随着温度的升高,线膨胀系数的数值也相应地提高。 3)低的热导率,约为碳钢的1/3。 不锈钢的力学性 不论不锈钢板还是耐热钢板,奥氏体型的钢板的综合性能最好,既有足够的强度,又有极好的塑性同时硬度也不高,这也是它们被广泛采用的原因之一。奥氏体型不锈钢同绝大多数的其它金属材料相似,其抗拉强度、屈服强度和硬度,随着温度的降低而提高;塑性则随着温度降低而减小。其抗拉强度在温度15~80°C范围内增长是较为均匀的。更重要的是:随着温度的降低,其冲击韧度减少缓慢,并不存在脆性转变温度。所以不锈钢在低温时能保持足够的塑性和韧性。 不锈钢的耐热性能 耐热性能是指高温下,既有抗氧化或耐气体介质腐蚀的性能即热稳定性,同时在高温时双有足够的强度即热强性。 不锈钢国际标准标准 标准 标准名 GB 中华人民共和国国家标准(国家技术监督局) KS 韩国工业标准协会规格Korean Standard AISI 美国钢铁协会规格America Iron and Steel Institute SAE 美国汽车技术者协会规格Society of Automative Engineers ASTM 美国材料试验协会规格American Society for Testing and Material AWS 美国焊接协会规格American Welding Society ASME 美国机械技术者协会规格American Society of Mechanical Engineers BS 英国标准规格British Standard DIN 德国标准规格Deutsch Industria Normen CAS 加拿大标准规格Canadian Standard Associatoin API 美国石油协会规格American Petroleum Association KR 韩国船舶协会规格Korean Resister of Shipping NK 日本省事协会规格Hihon Kanji Koki LR 英国船舶协会规格Llouds Register of Shipping