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首页> 外文期刊>Journal of Materials Science >Role of process type and process conditions on phase content and physical properties of thermal sprayed TiO2 coatings
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Role of process type and process conditions on phase content and physical properties of thermal sprayed TiO2 coatings

机译:工艺类型和工艺条件对热喷涂TiO 2 涂层相含量和物理性能的影响

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摘要

Thermal spray represents an advantageous technique for depositing large-area titanium dioxide coatings that are of interest for both traditional wear-resistant coatings as well as functional applications such as photo-induced decontamination surfaces. Numerous past studies have examined the phase evolution and properties of TiO2 coatings using different thermal spray processes or parameters. In this paper, an integrated study of thermal sprayed TiO2 was conducted with different thermal spray devices and process parameters for a single feedstock powder comprising the metastable anatase phase. The aforementioned variables are correlated with in-flight particle state (particle temperature and velocity), phase evolution, and coating physical properties. The results are represented through the framework of process maps which connect process parameters with material properties. Based on the phase characterization, an initial exploration of the metastable phase evolution during thermal spray deposition of TiO2 is proposed. Furthermore, the sprayed TiO2 coatings show varying degrees of electrical conductivity associated with process-induced stoichiometric changes (vacancy generation) in the TiO2. The effects of these stoichiometric changes as well as extrinsic microstructural attributes (pores, cracks, interfaces), contribute to the complex electrical response of the coatings. This integrated study provides insights into the process–microstructure–property relationship with the ultimate goal of tailoring the functionality of spray deposited oxide thick films.
机译:热喷涂代表了一种用于沉积大面积二氧化钛涂层的有利技术,这对于传统的耐磨涂层以及功能性应用(例如光致去污表面)都非常重要。过去的许多研究都使用不同的热喷涂工艺或参数研究了TiO 2 涂层的相变和性能。本文采用不同的热喷涂装置和工艺参数对包含亚稳态锐钛矿相的单一原料粉末进行了热喷涂TiO 2 的综合研究。前述变量与飞行中的粒子状态(粒子温度和速度),相演化和涂层物理性质相关。通过过程图框架表示结果,该过程图将过程参数与材料属性联系起来。基于相表征,提出了TiO 2 热喷涂过程中亚稳相演化的初步探索。此外,喷涂的TiO 2 涂层显示出与工艺引起的TiO 2 的化学计量变化(空位产生)有关的不同程度的电导率。这些化学计量变化以及外在的微观结构属性(孔,裂纹,界面)的影响,导致了涂层的复杂电响应。这项综合研究提供了对过程,微观结构和性能关系的见解,其最终目标是定制喷雾沉积氧化物厚膜的功能。

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