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Development and Evaluation of a Novel Inclusion Seeding Methodology for Ti-6Al-4V Castings

机译:Ti-6Al-4V铸件新型夹杂物接种方法的开发与评估

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摘要

Hard alpha inclusions in titanium (Ti) investment castings are generally known to have detrimental effects on the mechanical properties of these castings. However, actual inclusions are infrequent and occur in random locations in castings. As a result, it is difficult to obtain tensile or fatigue test specimens of titanium castings with inclusions in the gage section. Quantifying the adverse influence of inclusions on the mechanical properties of castings is, therefore, extremely challenging. To address this problem, a novel artificial inclusion seeding methodology was developed to emulate actual Ti investment casting inclusions. Prefabricated inclusions were seeded into machined holes in cast Ti-6Al-4V plates, the holes were back-filled with plugs of the same Ti alloy and were then electron-beam (EB) welded closed. Hot isostatic pressing (HIP) was utilized to incorporate the inclusions fully into the cast titanium material. Finally, the plates were machined to create mechanical test specimens with inclusions centered in the gage region. Test specimens created by means of this novel artificial seeding methodology were evaluated and found to be equivalent to Ti casting specimens containing actual cast-in inclusions.
机译:众所周知,钛(Ti)熔模铸模中的硬质α夹杂物会对这些铸模的机械性能产生不利影响。但是,实际夹杂物很少见,并且出现在铸件的随机位置。结果,难以获得在量规部分中包含夹杂物的钛铸件的拉伸或疲劳测试样品。因此,量化夹杂物对铸件机械性能的不利影响非常具有挑战性。为了解决这个问题,开发了一种新型的人工夹杂物接种方法,以模拟实际的钛熔模铸造夹杂物。将预制夹杂物播种到铸造的Ti-6Al-4V板上的加工孔中,然后用相同的Ti合金塞回填孔,然后将电子束(EB)焊接封闭。利用热等静压(HIP)将夹杂物完全掺入铸造钛材料中。最后,对板进行机械加工以产生机械试样,其夹杂物位于量规区域的中心。评估了通过这种新颖的人工播种方法创建的试样,并发现其与包含实际铸件夹杂物的Ti铸件试样等效。

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