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Properties and Applications of Ti: Current Status and Future Needs

机译:TI的性质和应用:当前状态和未来需求

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This paper examines a variety of applications for all types of Titanium and Titanium Alloys (for convenience Titanium and Titanium Alloys will be referred to hereafter as Ti). These range from traditional applications in aerospace products to growing application areas such as biomedical and dental products, and some attractive, but largely unrealized, applications including automobiles, consumer goods and architecturally inspired structures. For some applications, the unique physical and mechanical properties of Ti alloys make their use ideal. For example, the high density-normalized strength of Ti alloys permits creation of lightweight structures. Further, the intrinsic corrosion resistance of Ti makes it suitable in a wide range of chemical environments and provides the basis for biocompatibility of orthopedic implants. Some Ti based alloys exhibit shape memory and super-elastic characteristics that make them attractive for certain medical devices such as stents. In other applications, the use of Ti is potentially attractive but currently limited by cost. For convenience, both current and future Ti applications will be grouped into those that are performance driven and those that are cost limited. Changing product requirements for traditional application areas, e.g. aerospace, have created new application opportunities such as landing gear for large aircraft and fan disks for high thrust commercial engines. These opportunities will be described and the reasons, including properties, for their emergence will be identified. Biomedical applications for Ti, such as hip implants and dental crowns, will be examined on the basis of properties and chemical composition. In other market sectors, such as automotive and consumer products, potential applications currently are limited by cost. Until now, the added cost of Ti alloys has severely limited their use in automobiles, except for racing cars. Continued increases in fuel cost or new mandated fuel economy standards may change this situation. The prospect of lower cost Ti has the potential to transform these opportunities into real market prospects. The cost sensitivity of Ti also will be examined in the context of realization of these markets. In recent years, the cache' of "Titanium" has led to a number of niche applications that have not been cost driven. Among these are sporting goods and laptop computers. The permanency of this trend will be discussed.
机译:本文研究了各种类型的钛和钛合金的各种应用(用于方便钛和钛合金,下文称为Ti)。这些系列范围从航空航天产品中的传统应用到生物医学和牙科产品等应用领域,以及一些有吸引力,但主要是未实现的应用,包括汽车,消费品和建筑启发结构。对于某些应用,Ti合金的独特物理和力学性能使其使用理想。例如,Ti合金的高密度归一化强度允许产生轻质结构。此外,Ti的内在耐腐蚀性使其适用于各种化学环境,并为整形外科植入物的生物相容性提供基础。一些基于Ti的合金表现出形状记忆和超弹性特性,使它们对某些支架等医疗设备具有吸引力。在其他应用中,使用TI可能具有吸引力,但目前通过成本限制。为方便起见,当前和未来的TI应用程序将被分组到那些是性能驱动的那些和那些成本有限的人。改变传统应用领域的产品要求,例如,航空航天,创造了新的应用机会,如大型飞机和风扇盘,适用于高推力商用发动机。将描述这些机会,并确定其出现的原因,包括物业。将基于性质和化学组成检查Ti的生物医学应用,例如臀部植入物和牙科冠。在其他市场部门,如汽车和消费品,目前潜在的应用是有限的。到目前为止,除赛车外,Ti合金的增加的成本严重限制了他们在汽车中的使用。燃料成本或新授权燃料经济性标准的持续增长可能会改变这种情况。较低成本Ti的前景有可能将这些机会转化为现实的市场前景。 TI的成本敏感性也将在实现这些市场的情况下进行检查。近年来,“钛”的缓存'导致了许多没有成本驱动的利基应用。其中是体育用品和笔记本电脑。将讨论这种趋势的永久性。

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