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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Towards the understanding of creep-feed deep grinding of DD6 nickel-based single-crystal superalloy
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Towards the understanding of creep-feed deep grinding of DD6 nickel-based single-crystal superalloy

机译:朝着对DD6镍的单晶超合金的蠕变饲料深磨削的理解

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摘要

DD6 nickel-based single-crystal superalloy has been treated as an ideal material for the high-valued and high-performed aero-engine components; however, it was found difficult to remove material from the DD6 nickel-based single-crystal superalloy in cutting and grinding. Although creep-feed deep grinding (CFDG) has been widely employed for various nickel-based superalloys (i.e., Inconel 718, DZ4, IN738LC), very few efforts however have been focused on the nickel-based single-crystal superalloy. With this, this paper focuses on CFDG of DD6 nickel-based single-crystal superalloy to gain the more in-depth understandings, targeting grinding force, specific grinding energy, grinding temperature, surface integrity, and wheel wear condition. Scheduled experimental observation proved that (i) microcrystalline alumina abrasive wheel generally shows more superior grinding performances in aspect to grinding force, force ratio, and specific grinding energy than that of brown alumina abrasive wheel; (ii) grinding temperature is decreased by 35% by using the microcrystalline alumina abrasive wheel compared to brown alumina abrasive wheel, and therefore the microcrystalline alumina abrasive wheels have the potential to be applied in the high-efficiency grinding; (iii) the surface ground by the microcrystalline alumina abrasive wheel is found smooth without any grinding-induced damage; and (iv) microcrystalline alumina abrasive wheels easily lead to micro-fractures and therefore result in better self-sharpness ability and longer service life in CFDG of DD6 nickel-based single-crystal superalloy.
机译:DD6基于镍的单晶超合金已被视为高值和高级航空发动机部件的理想材料;然而,发现难以从DD6镍基单晶超合金中除去材料切割和研磨。虽然蠕变进料磨削深(CFDG)已被广泛用于各种基于镍基超合金中使用(即,铬镍铁合金718,DZ4,IN738LC),很少努力然而已集中在镍基单晶超合金。由此,本文侧重于DD6镍的单晶高温合金的CFDG,以获得更深入的谅解,靶向研磨力,特异性研磨能量,磨削温度,表面完整性和轮磨损条件。预定的实验观察结果证明(i)微晶氧化铝磨料轮通常在方面显示出比棕色氧化铝研磨轮的磨削力,力比和特异性研磨能量更高的研磨性能。 (ii)与棕色氧化铝研磨轮相比,通过使用微晶氧化铝研磨轮磨削温度降低了35%,因此微晶氧化铝磨料轮子具有在高效研磨中施加的电位; (iii)微晶氧化铝砂轮的表面接地光滑,没有任何研磨诱导的损伤; (IV)微晶氧化铝磨料轮廓容易导致微骨折,因此导致DD6基镍的单晶超合金的CFDG中的更好的自锐能力和更长的使用寿命。

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