FIELD: process engineering.
SUBSTANCE: invention relates to P-grade carbide cutting plates. Proposed method comprises temperature measurements effected in the zone of contact between hard alloy and machined material at different cutting speeds to construct a graphical relationship. Then, constructed graph is used to set optimum cutting speed as that whereat heating temperature in said zone corresponds to temperature whereat wear is formed at chamfer formed in cutting on tool plate cutting wedge rear surface and roughness with the maximum fractal size corresponding to maximum wear resistance.
EFFECT: higher precision, lower labor input.
3 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD OF ACCELERATED DETERMINATION OF OPTIMUM CUTTING SPEED | 2012 |
|
RU2494839C1 |
PROCEDURE FOR FORECAST OF WEAR RESISTANCE OF HARD ALLOY CUTTING TOOLS | 2014 |
|
RU2569920C1 |
METHOD OF FORECAST OF WEAR RESISTANCE OF HARD ALLOY CUTTING TOOLS | 2014 |
|
RU2567019C1 |
PROCEDURE FOR FORECAST OF WEAR RESISTANCE OF HARD ALLOY CUTTING TOOLS | 2013 |
|
RU2534730C1 |
FORECASTING OF CARBIDE CUTTING TOOL WEAR RESISTANCE | 2014 |
|
RU2569901C1 |
PROCEDURE FOR PROGNOSIS OF WEAR RESISTANCE OF HARD ALLOY CUTTING TOOLS | 2013 |
|
RU2541388C1 |
FORECASTING OF CARBIDE CUTTING TOOL WEAR RESISTANCE | 2014 |
|
RU2570367C1 |
METHOD FOR PREDICTING WEAR RESISTANCE OF HARD-ALLOY CUTTING TOOLS | 2011 |
|
RU2459193C1 |
FORECASTING OF CARBIDE CUTTING TOOL WEAR RESISTANCE | 2014 |
|
RU2573451C1 |
METHOD FOR DETERMINATION OF OPTIMAL CUTTING SPEED | 2008 |
|
RU2374040C1 |
Authors
Dates
2013-12-10—Published
2012-04-16—Filed