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Manufacturing of Titanium Spherical and Hollow Cylinder Vessel Using Blow Forming

机译:吹塑成型制造钛球形和空心圆柱容器

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Titanium alloys have been widely used in aeronautics and aerospace industries due to their high strength, good corrosion resistance and low density. Since many aerospace vehicle systems require high performance lightweight pressurized vessel for storage of propellant, nitrogen, oxygen, or other medium, the titanium alloy is one of the excellent candidates for this purpose. Conventionally spin forming and TIG welding process have been applied to manufacture titanium spherical vessel. In this work, an innovational method of blow forming and solid state bonding technology has been developed to save manufacturing cost and reduce weight of titanium vessel. High temperature behavior of titanium alloy was characterized and according to this result, solid state bonding process was established with demonstration of manufacturing spherical and hollow cylinder pressure vessel. The optimum condition for solid state bonding of this alloy was obtained by applying hydrostatic pressure of 4MPa at 1148K for 1 hour. For blow forming, the pressure profile was developed using MARC software and the maximum pressure of 30MPa was applied. The structural integrity of the vessel was demonstrated by performing a hydraulic pressurization test.
机译:钛合金具有高强度,良好的耐腐蚀性和低密度,因此已广泛用于航空和航天工业。由于许多航空航天飞行器系统需要高性能的轻质加压容器来存储推进剂,氮气,氧气或其他介质,因此钛合金是用于此目的的极佳候选材料之一。常规地,旋压成形和TIG焊接工艺已被用于制造钛球形容器。在这项工作中,开发了一种创新的吹塑成型和固态粘结技术,以节省制造成本并减轻钛容器的重量。表征了钛合金的高温行为,并据此建立了球形和空心圆柱体压力容器制造过程的固态结合工艺。通过在1148K下施加4MPa的静水压力1小时,可以获得该合金固相结合的最佳条件。对于吹塑成型,使用MARC软件开发了压力曲线,并施加了30MPa的最大压力。通过进行水压试验证明了容器的结构完整性。

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