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首页> 外文期刊>Journal of Thermal Spray Technology >Crystal-Structure-Based Modeling Study of Temperature-Dependent Fracture Toughness for Brittle Coating Deposited on Ductile Substrate
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Crystal-Structure-Based Modeling Study of Temperature-Dependent Fracture Toughness for Brittle Coating Deposited on Ductile Substrate

机译:基于晶体结构的韧性基体上脆性涂层温度相关断裂韧性的建模研究

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摘要

The temperature-dependent fracture toughness of a brittle coating/ductile substrate system, WC-10Co4Cr deposited on 1018 low carbon steel, is evaluated at microscopic level using an indentation-based model in terms of the Arrhenius-type equation and rate-controlling theory. The formulation of the model utilizes the parameters of crystal structures of each phase in the coating material. The slip systems of hard hexagonal delta-WC phase and soft FCC alpha-Co phase are analyzed. The fracture toughness of the two-phase coating is obtained by integrating the fracture toughness of single delta-WC phase coating and that of single alpha-Co phase coating using either the basic mixture method or the unconstrained mixture method. The results suggest that the fracture toughness of WC-10Co4Cr coating/1018 low carbon steel substrate system may remain constant until the temperature reaches a critical value, about 200 K, and ranges from 2.16 to 10.82 , with temperature increasing from room temperature (298 K) to 1000 K.
机译:根据Arrhenius型方程和速率控制理论,使用压痕模型在微观水平上评估了脆性涂层/延性基体系统WC-10Co4Cr沉积在1018低碳钢上的随温度而变的断裂韧性。该模型的公式利用了涂料中各相的晶体结构参数。分析了硬六方δ-WC相和软FCCα-Co相的滑移系统。两相涂层的断裂韧性是通过使用基本混合法或无约束混合法对单个δ-WC相涂层和单个α-Co相涂层的断裂韧性进行积分而获得的。结果表明,随着温度从室温(298 K)升高,WC-10Co4Cr涂层/ 1018低碳钢基材体系的断裂韧性可能会保持恒定,直到温度达到临界值(约200 K,范围为2.16至10.82)为止。 )至1000K。

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