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Shock-resistant or shock-resistant Titanium alloys and a method for manufacturing parts from them

机译:耐冲击或耐冲击的钛合金及其制造零件的方法

摘要

Titanium alloys formed into a part or component used in applications where a key design criterion is the energy absorbed during deformation of the part when exposed to impact, explosive blast, and/or other forms of shock loading is described. The titanium alloys generally comprise a titanium base with added amounts of aluminum, an isomorphous beta stabilizing element such as vanadium, a eutectoid beta stabilizing element such as silicon and iron, and incidental impurities. The titanium alloys exhibit up to 70% or more improvement in ductility and up to a 16% improvement in ballistic impact resistance over a Ti-6Al-4V alloy, as well as absorbing up to 50% more energy than the Ti-6Al-4V alloy in Charpy impact tests. A method of forming a part that incorporates the titanium alloys and uses a combination of recycled materials and new materials is also described.
机译:描述了用于零件或组件的钛合金,这些零件或组件用于关键设计标准是零件在变形过程中受到冲击,爆炸和/或其他形式的冲击载荷吸收的能量。钛合金通常包括添加有铝的钛基,同晶的β稳定元素如钒,共析β稳定元素如硅和铁以及附带的杂质。与Ti-6Al-4V合金相比,钛合金的延展性提高了70%或更多,弹道抗冲击性提高了16%,并且比Ti-6Al-4V吸收了多达50%的能量夏比冲击试验中的合金。还描述了一种形成部件的方法,该部件包含钛合金并使用回收材料和新材料的组合。

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