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1)  industrial pure titanium TA2
工业纯钛TA2
2)  TA2 pure titanium
TA2纯钛
1.
By using a reciprocating sliding wear test machine,friction and wear behaviors of four types of dental resin composites opposite to TA2 pure titanium were investigated and compared under the lubrication of artificial saliva.
在往复滑动摩擦磨损试验台上以TA2纯钛为对摩材料,研究和比较了4种我国口腔临床常用牙科高分子修复材料在人工唾液介质中的摩擦磨损行为。
3)  CP Ti
工业纯钛
1.
Hydroxyapatite(HAP) coating was synthesized via biomimetic method,by immersing commercial pure titanium(CP Ti) in simulated body fluid(SBF) after alkali pre-treatment and heat treatment.
将表面抛光和高能喷丸处理的工业纯钛在5mol/L NaOH溶液中处理后,在模拟体液(SBF)中矿化生成羟基磷灰石(HAP)涂层。
2.
Hydroxyapatite (HA) coating was dip-coated by sol-gel method on the surface of Commercial Pure Titanium (CP Ti).
利用溶胶-凝胶法在工业纯钛表面制备羟基磷灰石(HA)涂层,探讨了酸洗和浓碱热处理两种基体预处理工艺对涂层的影响;用接触角仪测量了涂覆前两种预处理后基体的接触角并计算其表面能;用扫描电镜(SEM)、X射线衍射仪(XRD)分析了基体和涂层的表面、截面形貌及成分。
4)  commercial pure titanium
工业纯钛
1.
Surface nanocrystallization of commercial pure titanium welded joints and its influence on properties;
工业纯钛焊接接头的表面纳米化及其性能
2.
The extreme high temperature oxidation behavior of commercial pure titanium was researched by Gleeble-1500 thermal simulator.
通过Gleeble-1500热模拟机研究了在特高温度下工业纯钛的氧化行为。
3.
Based on the empirical electron theory of solid and molecule (EET), the valence electron structures of α-Ti and α-Ti-S (S denotes elements of O, N and C) which exist in commercial pure titanium were calculated, and the transition temperatures of α?β were also calculated for α-Ti and α-Ti-S phases.
基于"固体与分子经验电子理论",计算了工业纯钛中的α-Ti相及非金属元素形成的α-Ti-S(S代表O、N、C)相的价电子结构,并计算了α-Ti相及α-Ti-S相的α?β转变温度。
5)  commercially pure titanium
工业纯钛
1.
Electrochemical behavior of commercially pure titanium and 00Cr25Ni22Mo2 stainless steel in acidic medium;
工业纯钛和00Cr25Ni22Mo2不锈钢在酸性介质中的电化学行为
2.
The surface nanocrystallization of commercially pure titanium was realized by shot peening treatment.
利用喷丸处理技术实现了工业纯钛的表面纳米化,利用光学显微镜(OM)、扫描电镜(SEM)和透射电镜(TEM)对表层组织演变过程和表层晶粒纳米化的细化机理进行了研究,并用显微硬度计对表层硬度进行了测试。
3.
Through appraising experiment of welding procedure, TIG welding technique of commercially pure titanium Electroplating trough is devised, and the main points influencing the quality and deformation of welding are analyzed,and it puts forwards the Process measures .
通过焊接工艺评定试验,设计了工业纯钛电镀槽的氩弧焊焊接工艺,分析了影响其焊缝质量和焊接变形的主要原因,并采取了相应的工艺措施。
6)  pure titanium
工业纯钛
1.
Welding of pure titanium on petrifaction device;
石化装置用工业纯钛的焊接
2.
According to the welding characteristic of pure titanium and the valuation of welding process, TIG welding technique of electroplating trough was designed, factors influencing the quality of weld were analyzed, and the process measures to improve the quality of weld were put forward.
根据工业纯钛的焊接特性,通过焊接工艺评定试验,设计了电镀槽的氩弧焊焊接工艺,分析了影响焊缝质量的主要原因,提出了提高焊缝质量的工艺措施。
3.
This paper introduced the welding procedure of plasma arc welding for pure titanium.
通过对工业纯钛的等离子弧的焊接工艺介绍 ,分析了钛的焊接要点 ,提出了钛在焊接时熔池和焊接区的保护措施 ,并从保护装置和喷嘴形式上做了改进 ,从而在合理的规范参数下获得满意的接头质
补充资料:工业纯钛
分子式:Ti
CAS号:

性质:含一定量的氧、氮、碳、硅、铁及其他元素杂质的α相钛。具有优良的冲压工艺性能,好的焊接性能,对热处理及组织类型不敏感,在令人满意的塑性条件下具有一定的强度。工业纯钛是按照杂质元素的含量划分等级的。它的强度主要取决于间隙元素氧、氮的含量。它在海水中具有高的抗腐蚀性能,但在无机酸中较差。一般用于制造在-253~350℃温度下工作的、受力不大的各种板材零件或锻件,也可制造铆钉线材和管材。

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