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Titanium Alloys - Novel Aspects of Their Manufacturing and Processing [Working Title]最新文献

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Characteristics of the Dissipation of Energy at Hot Plastic Deformation of Near-Alpha Titanium Alloy 近α钛合金热塑性变形能量耗散特性研究
M. Radkevich, N. R. Vargasov, B. Barakhtin
Change of mechanical properties of near-alpha titanium alloy is experimentally investigated at stretching in the conditions of variation of temperature and high-speed parameters of deformation. It is established that characteristics of mechanical properties, a structural state influence processes of dissipation of the spent energy. Studying of microstructure of samples before deformation by stretching allowed to install the main mechanisms of dissipative processes and to confirm a possibility of realization of superplasticity in the studied alloy.
实验研究了近α钛合金在温度和高速变形参数变化条件下的拉伸力学性能变化。确定了结构的力学特性和结构状态对废能耗散过程的影响。对拉伸变形前试样的微观结构进行了研究,确定了耗散过程的主要机制,并证实了所研究合金实现超塑性的可能性。
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引用次数: 1
Modern Production Methods for Titanium Alloys: A Review 钛合金的现代生产方法综述
Hamweendo Agripa, I. Botef
Titanium alloys are advanced structural materials for numerous key engineering applications in medicine (implants), aerospace, marine structures, and many other areas. The novel aspects of application potential for titanium alloys are as a result of their unique properties such as high corrosion resistance, high specific strength, low elastic modulus, high elasticity, and high hardness. This chapter examines the modern methods for production of titanium alloys. The goal of this chapter is to show the process engineers the current methods for production of titanium alloys necessary for modern applications. The chapter also presents the future methods of production for titanium and titanium alloys to meet the future demands of titanium and titanium alloys’ products.
钛合金是一种先进的结构材料,用于医学(植入物)、航空航天、海洋结构和许多其他领域的许多关键工程应用。钛合金具有高耐腐蚀性、高比强度、低弹性模量、高弹性和高硬度等独特的性能,具有广阔的应用前景。这一章考察了生产钛合金的现代方法。本章的目的是向工艺工程师展示现代应用所必需的钛合金生产的当前方法。本章还提出了未来钛及钛合金的生产方法,以满足未来钛及钛合金产品的需求。
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引用次数: 18
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Titanium Alloys - Novel Aspects of Their Manufacturing and Processing [Working Title]
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