Manufacturing of hardmetal tools often involves surface grinding, ion etching and final coating. Each stage throughout the manufacturing chain introduces surface integrity changes which may be critical for defining the final mechanical behavior of the coated tools. Within this context, an experimental test program has been developed to assess the influence of a coating (TiN) deposition on surface integrity and transverse rupture strength of a previously ground fine-grained WC-Co grade substrate. Four different substrate surface finish conditions (prior to ion etching and coating) were evaluated: as sintered (AS), ground (G), polished (P), and ground plus high temperature annealing (GTT). Surface integrity and fracture resistance characteriz...
In this work, corrosion effects on the indentation and scratch response of a WC-6%Co hardmetal are i...
Ground hardmetals are exposed to high temperatures during both processing (e.g. coating deposition) ...
Cemented carbides, often simply termed as hardmetals (WC-Co), are heterogeneous composite materials ...
Manufacturing of hardmetal tools often involves surface grinding, ion etching and final coating. Eac...
The tribological and mechanical behavior of coated tools depends not only on intrinsic properties of...
AbstractIn this study, the correlation existing among grinding, surface integrity, and flexural stre...
The cracking and delamination of TiN-coated hardmetals (WC-Co cemented carbides) when subjected to B...
In this study, the correlation existing among grinding, surface integrity, and flexural strength is ...
Contact loading is a common service condition for coated hardmetal tools and components. Substrate g...
In this study, the influence of substrate surface finish on scratch resistance and associated failur...
Grinding is a key step on the manufacturing process of WC–Co cemented carbides (hardmetals). In this...
Grinding is a key step on the manufacturing process of WC–Co cemented carbides (hardmetals). In this...
Cemented carbides (WC-Co) are ceramic-metal composite materials made by hard tungsten carbide partic...
Investigation of four different surface-shaping and finishing sequences is carried out on the surfa...
AbstractGround hardmetals are exposed to high temperatures during both processing (e.g. coating depo...
In this work, corrosion effects on the indentation and scratch response of a WC-6%Co hardmetal are i...
Ground hardmetals are exposed to high temperatures during both processing (e.g. coating deposition) ...
Cemented carbides, often simply termed as hardmetals (WC-Co), are heterogeneous composite materials ...
Manufacturing of hardmetal tools often involves surface grinding, ion etching and final coating. Eac...
The tribological and mechanical behavior of coated tools depends not only on intrinsic properties of...
AbstractIn this study, the correlation existing among grinding, surface integrity, and flexural stre...
The cracking and delamination of TiN-coated hardmetals (WC-Co cemented carbides) when subjected to B...
In this study, the correlation existing among grinding, surface integrity, and flexural strength is ...
Contact loading is a common service condition for coated hardmetal tools and components. Substrate g...
In this study, the influence of substrate surface finish on scratch resistance and associated failur...
Grinding is a key step on the manufacturing process of WC–Co cemented carbides (hardmetals). In this...
Grinding is a key step on the manufacturing process of WC–Co cemented carbides (hardmetals). In this...
Cemented carbides (WC-Co) are ceramic-metal composite materials made by hard tungsten carbide partic...
Investigation of four different surface-shaping and finishing sequences is carried out on the surfa...
AbstractGround hardmetals are exposed to high temperatures during both processing (e.g. coating depo...
In this work, corrosion effects on the indentation and scratch response of a WC-6%Co hardmetal are i...
Ground hardmetals are exposed to high temperatures during both processing (e.g. coating deposition) ...
Cemented carbides, often simply termed as hardmetals (WC-Co), are heterogeneous composite materials ...