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Phase Assemblage of Al-Cu-Cr Quasicrystalline CoatingsSprayed by Low Power Plasma

机译:低功率等离子体喷涂Al-Cu-Cr准晶涂层的相组装

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Al-Cu-Cr quasicrystalline (QC) coatings were deposited ontomild steel Q235A substrate by low power plasma spraying.The plasma torch was designed such that the powders can beinjected axially (parallel to the axis of the plasma arc) into theregion between the anode and cathode, and the carrier gaseswere transferred to the plasma flame, so the heating efficiencyof the powders is greatly increased and the velocity ofparticles is much higher than an externally-fed powder system.The Al-Cu-Cr QC coatings were sprayed via this newtechnique at different plasma power (3~7kW) by controllingthe secondary plasma gases (H2 and N2) flow or changing thearc current. The results show that, the original powder wasmainly composed of a dominant icosahedral quasicrystallinephase I-Al65Cu24Cr11 and a minor monoclinic θ-Al13Cr2.However, besides these two phases, body-centered cubic α-Al69Cu18Cr13, the approximant to quasicrystal I-Al65Cu24 Cr11,has been detected in as-sprayed coatings. On the other hand,peak intensity of QC phase I-Al65Cu24Cr11 decreased and thatof crystalline phases (θ-Al13Cr2 or α-Al69Cu18Cr13) increasedas the plasma power was increased.
机译:沉积Al-Cu-Cr丙烯(QC)涂层 低功率等离子喷涂温和钢Q235A基板。 等离子体炬设计成使得粉末可以是 轴向注入(平行于等离子弧的轴线)进入 阳极和阴极之间的区域,以及载气 转移到等离子体火焰,因此加热效率 粉末大大增加和速度 颗粒远高于外部馈电粉末系统。 通过这种新的研磨Al-Cu-CrQC涂层涂层 通过控制在不同等离子体电源(3〜7kW)的技术 二次等离子体气体(H2和N2)流或改变 电弧电流。结果表明,原始粉末是 主要由占主导地位的icosaheDral拟拟合组成 I-Al65Cu24Cr11和次次单斜α-Al13Cr2。 但是,除了这两个阶段,身体中心的立方α- Al69cu18cr13,近似拟rystal i-al65cu24 cr11, 已在喷涂涂层中检测到。另一方面, QC阶段I-Al65Cu24Cr11的峰强度下降而且 结晶相(θ-Al13Cr2或α-Al69cu18Cr13)增加 随着等离子体的力量增加。

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