This paper presents an extensive experimental study on the influence of machining parameters and cooling conditions on the overall fatigue life of a titanium component. In particular, dry, minimum quantity lubrication, cryogenic and high-pressure air jet were compared as cooling/lubrication strategies for the finishing operation. The obtained dog-bone cylindrical fatigue specimens were tested under uniaxial pull–pull cyclic loading in the high cycle fatigue range. An analytical model is proposed to predict the high cycle fatigue strength for the material under investigation demonstrating its effectiveness to reduce the number of tests needed
In the present work, Ti6Al4V specimens were manufactured by Laser Powder Bed Fusion (LPBF), heat tre...
Titanium alloys are equipped with impressive high strength and low density, along with other notable...
Statement of problem. Removable partial dentures are affected by fatigue because of the cyclic mecha...
The paper proposes the prediction of the fatigue strength of additive manufactured Ti6Al4V titanium ...
The present article focuses on the influence of machining on the fatigue life of a titanium alloy: T...
Abstract: Grade 5 titanium alloy (Ti6Al4V) is the workhorse titanium alloy used in many industrial a...
AbstractIn this work, the impact of conventional drilling and helical milling processes on the fatig...
This publication reviews most of the available literature on the fatigue properties of β annealed Ti...
The effect of surface treatment on the stress/life fatigue behavior of a titanium Ti-6Al-4V turbine ...
AbstractThe broad use of titanium alloys in naval, automotive and aerospace applications expects the...
A key design consideration for material selection in the aerospace industry is weight reduction; wit...
Titanium Ti6Al4V alloy is a light alloy characterized by having excellent mechanical properties and ...
The main goal of this master's thesis is an analysis of high-cycle fatigue of titanium alloy Ti- 6Al...
A key design consideration for material selection in the aerospace industry is weight reduction; wit...
The low cycle fatigue behaviour of titanium alloy IMI 834 was comparatively studied in bare conditio...
In the present work, Ti6Al4V specimens were manufactured by Laser Powder Bed Fusion (LPBF), heat tre...
Titanium alloys are equipped with impressive high strength and low density, along with other notable...
Statement of problem. Removable partial dentures are affected by fatigue because of the cyclic mecha...
The paper proposes the prediction of the fatigue strength of additive manufactured Ti6Al4V titanium ...
The present article focuses on the influence of machining on the fatigue life of a titanium alloy: T...
Abstract: Grade 5 titanium alloy (Ti6Al4V) is the workhorse titanium alloy used in many industrial a...
AbstractIn this work, the impact of conventional drilling and helical milling processes on the fatig...
This publication reviews most of the available literature on the fatigue properties of β annealed Ti...
The effect of surface treatment on the stress/life fatigue behavior of a titanium Ti-6Al-4V turbine ...
AbstractThe broad use of titanium alloys in naval, automotive and aerospace applications expects the...
A key design consideration for material selection in the aerospace industry is weight reduction; wit...
Titanium Ti6Al4V alloy is a light alloy characterized by having excellent mechanical properties and ...
The main goal of this master's thesis is an analysis of high-cycle fatigue of titanium alloy Ti- 6Al...
A key design consideration for material selection in the aerospace industry is weight reduction; wit...
The low cycle fatigue behaviour of titanium alloy IMI 834 was comparatively studied in bare conditio...
In the present work, Ti6Al4V specimens were manufactured by Laser Powder Bed Fusion (LPBF), heat tre...
Titanium alloys are equipped with impressive high strength and low density, along with other notable...
Statement of problem. Removable partial dentures are affected by fatigue because of the cyclic mecha...