首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Ablation performance of supersonic atmosphere plasma sprayed tungsten coating under oxyacetylene torch and plasma torch
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Ablation performance of supersonic atmosphere plasma sprayed tungsten coating under oxyacetylene torch and plasma torch

机译:超声波气体等离子体喷涂氧乙烯火炬和等离子炬下的超音速气体等离子体的烧蚀性能

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摘要

Tungsten (W) coating was prepared on SiC coated C/C composites by supersonic atmosphere plasma spraying (SAPS), aiming to improve their anti-ablation property. Under oxyacetylene torch, W coating could protect substrate above 60 s under heat flux of 2400 kW/m(2). However, oxidization destroyed the intergranular and interlayer bonding of as-sprayed W coating during ablation. As a result, when heat flux of oxyacetylene torch raised to 4200 kW/m(2), huge thermal and mechanical shock made W coating delaminate severely, which lead to the failure of W coating after ablated for only 30 s. During plasma ablation, argon gas offered an inert environments, which restrained oxidization of W coating. Thus, even if the temperature and mechanical erosion of plasma torch were much higher than oxyacetylene torch, W coating can successfully protect substrates above 40 s, exhibiting excellent ablation performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过超声波气体等离子体喷涂(SAP)在SiC涂覆的C / C复合材料上制备钨(W)涂层,旨在改善其抗消融性能。 在氧乙炔炬下,W涂层可以在2400 kW / m(2)的热通量下保护高于60秒的基材。 然而,氧化在消融期间破坏了喷涂的W涂层的晶间和层间键合。 结果,当氧乙烯炬的热通量升至4200 kW / m(2)时,巨大的热和机械冲击造成覆盖分层,这导致W涂层的失效仅在30秒内烧蚀后。 在等离子体消融期间,氩气提供了一种惰性环境,其限制了W涂层的氧化。 因此,即使等离子体炬的温度和机械腐蚀高于氧乙烯炬,W涂层也可以成功地保护高于40秒的基材,表现出优异的消融性能。 (c)2017 Elsevier Ltd.保留所有权利。

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