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A spherical surface coating thickness model for a robotized thermal spray system

机译:机器人热喷涂系统的球形表面涂层厚度模型

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摘要

Coating thickness prediction is critical for robotic thermal spray system's tool-path planning. Current prediction models could not give accurate estimation for a type of important spherical coating surfaces in industrial application. To facilitate tool-path generation and improve the coating quality for this special surface shape, this paper proposes a new analytical thickness prediction model. Both numerical simulation and experimental testing are conducted. The results reveal that the model is flexible and efficient to predict the coating thickness and uniformity in acceptable tolerance and expedient to predict the coating thickness on non-holonomic spherical surfaces. It could be used for automatic tool-path generation for the robotic thermal spray system.
机译:涂层厚度预测对于机器人热喷涂系统的刀具路径规划至关重要。当前的预测模型无法对工业应用中一种重要的球形涂层表面类型提供准确的估计。为了简化这种特殊表面形状的刀具路径生成并提高涂层质量,本文提出了一种新的分析厚度预测模型。进行了数值模拟和实验测试。结果表明,该模型灵活,有效,可以在可接受的公差范围内预测涂层厚度和均匀性,并且可以方便地预测非完整球形表面上的涂层厚度。它可用于机器人热喷涂系统的自动刀具路径生成。

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