Detonation sprayed WC-Co coatings: unique aspects of their structure and mechanical behaviour

被引:0
作者
G. Sundararajan
P. Suresh Babu
机构
[1] International Advanced Research Centre for Powder Metallurgy & New Materials,
来源
Transactions of the Indian Institute of Metals | 2009年 / 62卷
关键词
thermal spray coatings; detonation spray coatings; WC-Co; decarburization; bond strength;
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学科分类号
摘要
Tungsten Carbide-Cobalt (WC-Co) Cermets are known for their excellent wear resistance. Conventionally, WC-Co cermets are produced by liquid phase sintering and such a process results in optimum combination and distribution of WC and Co phases and thus a good combination of hardness and toughness. In contrast to using bulk WC-Co, there are many applications wherein a thick coating of WC-Co over the surface of the engineering component (usually made from steel) represents a cost-effective option. Numerous thermal spray coating techniques have been extensively used to deposit thick WC-Co coatings on a variety of components and detonation spray coating represents one such coating technique capable of depositing hard and dense WC-Co coatings. However, as compared to bulk WC-Co, detonation sprayed WC-Co exhibit inferior properties and performance primarily because of the nature of the detonation spray coating process. In addition, depositing a WC-Co coating on a component automatically introduces an interface between the coating and the substrate and the properties of this interface also become important in determining the overall performance of the WC-Co coating. The purpose of this article is to describe in detail the unique aspects of the structure and mechanical behaviour of detonation sprayed WC-Co coatings and contrast the same with the behaviour of bulk, liquid-phase sintered WC-Co cermet.
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页码:95 / 103
页数:8
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共 85 条
[1]  
Gee M. G.(2007)undefined Wear 263 137-undefined
[2]  
Gant A.(1988)undefined Wear 121 347-undefined
[3]  
Roebuck B.(1998)undefined Mater Lett 37 201-undefined
[4]  
Ninham A. J.(2004)undefined Sur. Coat. Technol. 177–178 489-undefined
[5]  
Levy A. V.(2008)undefined Int J Refra Met. Hard Mater. 26 152-undefined
[6]  
Cantera E. L.(2001)undefined Wear 250 604-undefined
[7]  
Mellor B. G.(1999)undefined Metall. Mater. Trans. A 30 231-undefined
[8]  
Lima M. M.(1989)undefined Mat. Sci. Techno. 5 961-undefined
[9]  
Godoy C.(2006)undefined Wear 261 126-undefined
[10]  
Modenesi P. J.(2005)undefined Int J Refra Met. Hard Mater. 23 119-undefined