1)titanium abutments钛基台
1.46 abutments were custom-made titanium abutments used in 19 cases.方法:采用由Procera?软件辅助设计和制作的个性化全瓷基台及钛基台修复种植病例共67例99枚基台。
2.53 all-ceramic abutments were custom-made in 48 cases,and 18 titanium abutments were custom-made in 8 cases.方法:采用由Procera软件辅助设计和制作的个性化全瓷基台及钛基台修复种植病例共56例71枚基台。
英文短句/例句
1.Stress Analysis of Implant-supported All-ceramic Single Crown on Different Abutments全瓷基台与钛基台种植体支持全瓷单冠的应力分布
2.The Corrosion Behavior of Three Alloys and Ti Abutment;钛种植体基台与三种合金腐蚀性能的实验研究
3.Fundamental Investigation on Irion and Titanium Separation of Reduced Ilmenite by Method of Solid-state Reduction;钛铁矿固态还原法铁钛分离基础研究
4.Study on the Surface Micro-Porous Titanium/Ti Matrix Biomaterial;表面微孔钛/钛基生物医学材料的研究
5.Laser in-situ Reaction Cladding of Titanium boride/titanium Composite on Titanium Substrate钛基体上激光原位反应熔覆硼钛化物/钛复合涂层(英文)
6.Fundamental and Applied Research on the Fatigue Resistance of Titanium and Titanium Alloy Cast Denture Clasp钛及钛合金铸造卡环疲劳强度的应用基础研究
7.Oxidation Behavior and Mechanical Properties of Ti Alloys and Ti-based Composites;钛合金和钛基复合材料的氧化行为及力学性能
8.Studies on the Titanium Matrix Biofunctionability Medical Composites with Potassium Titanium Oxide Reinforced Surface;钛酸钾表面增强钛基生物医学复合材料的研究
9.Preparation and Characterization of Bismuth Titanate Based Pseudo-Perovskite Structure Thin Films;钛酸铋基赝钙钛矿结构薄膜的制备和性能研究
10.Investigation on Rusting Behavior of Reduced Ilmenite and Strengthen Reaction of Rusting Process强化还原钛铁矿锈蚀法钛铁分离的基础研究
11.Preparation and Characterization of Porous Titanium and Titanium Alloy by Cold Spraying基于冷喷涂的多孔钛与钛合金的制备与表征
12.Fabrication of Titanium Matrix/Hydroxyapatite Biocomposites;钛基/羟基磷灰石生物复合材料的制备
13.Study on Treatment of Nitrobenzene Wastewater with Ti-based PbO_2 Electrode;钛基PbO_2电极处理硝基苯废水研究
14.ORGANOTITANIUM CHEMISTRY--II. SYNTHESIS AND CRYSTAL STRUCTURE OF BIS (2-METHOXYETHYLCYCLOPENTADIENYL) TITANIUM DICHLORIDE有机钛化学——Ⅱ.二氯—双(2—甲氧乙基茂基)钛的合成与晶体结构
15.The specimens made from Bayer tooth, thermosetting plastic, copper base alloy, titanium and its alloy have relatively good wear resistance as well and are thus idea prosthetic materials.拜尔牙、热固塑料、铜基合金、钛及钛合金是较为理想的牙科修复材料 ;
16.Investigation on the Phase Transitions and Mechanical Properties of Titanium and Titanium-aluminum Compound Based Alloys with the Valence Electron Theory;钛与钛铝化合物基合金相变及力学性能的价电子理论研究
17.Sol-Gel Derived Hydroxyapatite/Titania Bioactive Coatings on Titanium Foam Substrate;溶胶—凝胶法在多孔钛表面合成羟基磷灰石/二氧化钛生物复合薄膜
18.Study on High Power Ti: Sapphire Laser and Its Frequency Conversion;高功率钛宝石激光器及基于钛宝石激光器的频率变换的研究
相关短句/例句
Ti-based钛基
1.Ti-based amorphous brazing material is a new brazing material with great application prospect.钛基非晶态钎焊料是一种较有应用前景的新型钎焊材料。
2.Ti-based bioactive coating materials as high application prospect materials for medical implants are great in material science.钛基生物活性涂层材料作为极具应用前景的医用种植体材料,是材料领域研究的热点材料。
3)titanium substrate钛基体
1.Influence of medium-tempering treatment on microstructure and properties of Ni based spray-welded coating on titanium substrate;中温回火对钛基体上镍基喷焊涂层组织和性能的影响
2.The titanium surface is treated by sandblast, mechanical abrasion, chemical corrosion, etc, and activated before brush plating, so as to effectively improve the cohesion between titanium substrate and silver coating.采用无氰电刷镀银溶液,通过对钛基体进行喷砂、机械打磨、化学刻蚀等表面处理,电镀前再经过表面活化,可有效地提高钛基体与镀银层之间的结合力。
3.The amorphous Ni-Co-P alloy coating on titanium substrate is prepared by electrodepositon.通过电沉积在钛基体上制备了非晶态Ni-Co-P合金镀层。
4)RuO_(2)/Ti钛基RuO2
1.The results indicated that in the electrochemical reactor with stainless steel, RuO_(2)/Ti and active carbon particles as the anode, cathode and filled electrode, respectively, anion surfactants in wastewater had good degradation effect under appropriate technological condit.结果表明,在无隔膜复极性固定床电解槽内,以不锈钢为阴极,以钛基RuO2电极为阳极,以活性炭颗粒为填充电极,在合适的工艺条件下,阴离子表面活性剂废水具有较好的降解效果,降解率可达到96%以上,CODCr去除率大于84%。
5)titanium-base alloy钛基合金
1.These high temperature materials include heat-resisting steels, iron-base nickel-iron-base, nickel-base, titanium-base alloys, intermetallics and also super-high temperature tungsten-base refractory alloys.综述了耐热钢、铁基、铁 镍基、镍基、钛基合金、金属间化合物以及钨基超高温材料的发展、应用及其在高温合金领域中的重要研究进展。
6)Ti substrate钛基体
延伸阅读
硼纤维增强钛基复合材料分子式:CAS号:性质:一种连续纤维增强金属复合材料。硼纤维采用带有碳化硼或碳化硅涂层的纤维;钛基多用Ti-6Al-4V或塑性更好的β型合金(Ti-15V-3Cr-3Sn-3Al)。复合材料一般含纤维35%~40%(vol),单向增强时纵向拉伸强度约为1300~1500MPa,模量约230GPa,密度约3.7g/cm3。其主要特点是适合于在较高的温度下(550~650℃)工作。制造工艺主要采用预制条带的热压扩散结合。纤维上的涂层能保护纤维,避免在高温下与基体反应而损伤材料性能。主要用途为制造航空发动机压气机叶片和其他耐热零件。
