Using the methods of electronic scanning microstructure and X-ray analysis, the influence of the structure of diamond-containing composite materials on the cutting ability of the tool for circular grinding of diamond single crystals has been studied. It is shown that the use of an oxide-hydroxide glass with a spreading temperature of 570–590 K as a precursor of the binder leads to the formation of melt films on the surface of silicon carbide and diamond particles at 600–630 K and the glass content in the batch is 10 vol. %. The conversion of oxidehydroxide glass films to oxide films proceeds at 700–775 K during the sintering of the composite material. Depending on the volume content of the glass in the charge, the porosity of the compact, t...
This paper deals with computer modelling of the retention of a synthetic diamond particle in a metal...
Depositions of hot filament chemical vapor-deposited diamond on cobalt-cemented tungsten carbide (WC...
This paper investigated the machinability of a stone–plastic composite (SPC) via orthogonal cu...
The paper presents the effect of diamond particle size (varying between 2.5 µm and 20 µm) on the mic...
This paper presents the results of the tests performed during the grinding process of the ceramic ma...
Both for ultra-precision and for micro-machining diamond is used very often as tool material. The re...
This project aims at gaining a better understanding of the mechanics of precision grinding of brittl...
High porosity will bring about a great deal of contributions for metal-bonded grinding wheels. In th...
Polycrystalline diamonds - composites of diamond and metals (which are generally alloys of cobalt an...
Diamond grits held in metal matrix (sintered or electroplated) are retained primary by mechanical lo...
Core drilling at small diameters in carbon composite materials is largely carried out using diamond ...
High precision grinding tools can be manufactured using microcrystalline CVD diamond as grinding lay...
This study concerns the wear of sintered diamond tools in the cutting of SiC-particle–epoxy composit...
AbstractCore drilling at small diameters in carbon composite materials is largely carried out using ...
International audienceThe crack initiation load and fracture toughness were characterized as a funct...
This paper deals with computer modelling of the retention of a synthetic diamond particle in a metal...
Depositions of hot filament chemical vapor-deposited diamond on cobalt-cemented tungsten carbide (WC...
This paper investigated the machinability of a stone–plastic composite (SPC) via orthogonal cu...
The paper presents the effect of diamond particle size (varying between 2.5 µm and 20 µm) on the mic...
This paper presents the results of the tests performed during the grinding process of the ceramic ma...
Both for ultra-precision and for micro-machining diamond is used very often as tool material. The re...
This project aims at gaining a better understanding of the mechanics of precision grinding of brittl...
High porosity will bring about a great deal of contributions for metal-bonded grinding wheels. In th...
Polycrystalline diamonds - composites of diamond and metals (which are generally alloys of cobalt an...
Diamond grits held in metal matrix (sintered or electroplated) are retained primary by mechanical lo...
Core drilling at small diameters in carbon composite materials is largely carried out using diamond ...
High precision grinding tools can be manufactured using microcrystalline CVD diamond as grinding lay...
This study concerns the wear of sintered diamond tools in the cutting of SiC-particle–epoxy composit...
AbstractCore drilling at small diameters in carbon composite materials is largely carried out using ...
International audienceThe crack initiation load and fracture toughness were characterized as a funct...
This paper deals with computer modelling of the retention of a synthetic diamond particle in a metal...
Depositions of hot filament chemical vapor-deposited diamond on cobalt-cemented tungsten carbide (WC...
This paper investigated the machinability of a stone–plastic composite (SPC) via orthogonal cu...