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首页> 外文期刊>Russian Metallurgy(Metally) >Experimental-calculation study of ion-plasma thermal barrier coatings for turbine blades made of intermetallic nickel superalloys
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Experimental-calculation study of ion-plasma thermal barrier coatings for turbine blades made of intermetallic nickel superalloys

机译:金属间镍超合金制成的涡轮叶片离子等离子体热阻挡涂层的实验计算研究

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AbstractThe ion-plasma thermal barrier coatings deposited onto samples and blades made of intermetallic VKNA-1V and VKNA-25 alloys are tested in a laboratory. The external ceramic layer of the thermal barrier coatings (TBC) is formed by magnetron sputtering of zirconium alloy targets and has a columnar structure. The influence of NiCrAlY(Re, Ta, Hf) + AlNiY(Hf) + ZrYGdO TBC on the long-term strength at a test temperature of 1200°C and on the high-cycle fatigue at a temperature of 900°C is studied. Blades with TBC are subjected to thermal cycling tests in the temperature range 950 ? 400°C and 1050 ? 400°C during air cooling and in the range 950 ? 200°C during water cooling at 500 cycles. The temperature fields in the cross section of a blade airfoil during thermal cycling are calculated. The laws of formation of fracture zones and the development of thermal fatigue cracks under the conditions that are close to the operating conditions of nozzle TBC-containing blades are investigated.
机译:<标题>抽象 ara>在实验室中测试沉积在金属间VKNA-1V和VKNA-25合金的样品和叶片上的离子等离子体热阻挡涂层。热阻挡涂层(TBC)的外部陶瓷层通过氧化锆合金靶的磁控溅射形成并且具有柱状结构。研究了Nicraly(RE,TA,HF)+ alniy(HF)+ Zrygdo TBC对1200℃的测试温度和900℃的高周疲劳的长期强度的影响。具有TBC的叶片在950的温度范围内进行热循环试验? 400°C和1050?在空气冷却期间和950范围内400°C?在500次循环期间水冷却期间200°C。计算热循环期间叶片翼型的横截面中的温度场。研究了骨折区域的形成规律以及在接近含喷嘴TBC叶片的操作条件的条件下的热疲劳裂缝的发展。

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