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Thermo-reactive deposition processed vanadium carbide coating: Growth kinetics model and diffusion mechanism

机译:热反应沉积处理碳化钒涂层:生长动力学模型和扩散机理

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摘要

A mathematical model on the growth kinetics of vanadium carbide coatings on steels by thermo-reactive deposition/diffusion(TRD) process was constructed. It takes into account the influence of substrate compositions on the growth rates of the carbide coatings. The model takes the carbon activity in the substrate to characterize the influence of carbon and alloy elements in substrate on the coating thickness. The relationship of coating thickness and the carbon activity follows a parabolic law. The proposed growth kinetics model shows relatively in good agreement with experimental data. The diffusivity of carbon in the vanadium carbide coating is calculated to be about four orders of magnitude higher than that in the vanadium carbide lattice, thus carbon diffusion along grain boundaries of vanadium carbides dominates the growth of the coatings formed in the TRD process.
机译:建立了热反应沉积/扩散(TRD)工艺在钢上碳化钒涂层生长动力学的数学模型。它考虑了基材组成对碳化物涂层生长速率的影响。该模型利用基材中的碳活度来表征基材中碳和合金元素对涂层厚度的影响。涂层厚度和碳活性的关系遵循抛物线定律。所提出的生长动力学模型与实验数据显示出相对良好的一致性。计算出碳化钒涂层中碳的扩散率比碳化钒晶格中碳的扩散率高大约四个数量级,因此碳沿碳化钒晶界的扩散控制了TRD工艺中形成的涂层的生长。

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