Abstract A comparison is made of those methods for cutting fluid performance evaluation that involve metal cutting operations under controlled laboratory conditions. An analysis in terms of repeatability, resolution and cost is carried out, based on results from comprehensive experimental investigations in turning, drilling, milling, reaming, and tapping. Different workpiece materials, such as carbon steels, stainless steels, and aluminium alloys, as well as different kinds of cutting fluids, including water based products, straight mineral oils, and vegetable oil based formulations, are considered. The analysis is carried out grouping the tests according to the main measurand: tool life, cutting forces, and workpiece surface finish. The ratio σ/ρ, where a is the standard deviation of measurements and ρ the range of variability of test results, was introduced to express the relative resolution of a test, and a cost model was developed. It was concluded from the analysis that tool life tests are connected with limited repeatibility (σ=10–50%) and resolution (σ/ρ ranging from 0.25–0.75), with costs ranging from 1000€ to 2000€. Tests based on cutting forces are connected with a much better repeatibility and resolution, featuring values for σ in the range 0.5–6% and a σ/ρ ratio of approximately 0.2, with test costs of about 500€. Surface finish tests feature repeatabilities of approximately 50% and resolutions of 0.3–0.4, with costs of approximately 1000€.
[1]
Sergio Rossetto,et al.
A Stochastic Tool-Life Model
,
1981
.
[2]
L. De Chiffre,et al.
Surface integrity and part accuracy in reaming and tapping stainless steel with new vegetable based cutting oils
,
2002
.
[3]
G. Lorenz.
Reliable Cutting Fluid Rating
,
1985
.
[4]
L. De Chiffre,et al.
A reaming test for cutting fluid evaluation
,
1994
.
[5]
Leonardo De Chiffre,et al.
Additive effect on surface roughness and torque in tapping aluminium
,
1986
.
[6]
H. L. Bingham.
Mechanical Testing of Cutting Fluids
,
1954
.
[7]
Leonardo De Chiffre.
Mechanical testing and selection of cutting fluids in laboratory and workshop.
,
1992
.