Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Residual Stress Measurements in an Autofrettage Tube Using Hole Drilling Method

View through CrossRef
Relieved strains due to drilling hole in a ring sample cut from an autofrettage cylinder are measured. Measured strains are then transformed to residual stresses using calibration constants and mathematical relations of elasticity based on ASTM standard recommendations (American Society for Testing and Materials, ASTM E 837-08, 2008, “Standard Test Method for Determining Residual Stresses by the Hole-Drilling Strain-Gage Method,” American Society for Testing and Materials). The hydraulic autofrettage is pressurizing a closed-end long cylinder beyond its elastic limits and subsequently removing the pressure. In contrast to three-dimensional stress state in the autofrettage tube, the stress measurement in hole drilling method is performed on a traction free surface formed from cutting the ring sample. The process of cutting the ring sample from a long autofrettaged tube is simulated using finite element method (FEM) and the redistribution of the residual stress due to the cut is discussed. Hence, transformation of the hole drilling measurements on the ring slice to the autofrettage residual stresses is revealed. The residual stresses are also predicted by variable material properties (VMP) method (Jahed, H., and Dubey, R. N., 1997, “An Axisymmetric Method of Elastic-Plastic Analysis Capable of Predicting Residual Stress Field,” Trans. ASME J. Pressure Vessel Technol., 119, pp. 264–273) using real loading and unloading behavior of the test material. Prediction results for residual hoop stress agree very well with the measurements. However, radial stress predictions are less than measured values particularly in the middle of the ring. To remove the discrepancy in radial residual stresses, the measured residual hoop stress that shows a self-balanced distribution was taken as the basis for calculating residual radial stresses using field equations of elasticity. The obtained residual stresses were improved a lot and were in good agreement with the VMP solution.
Title: Residual Stress Measurements in an Autofrettage Tube Using Hole Drilling Method
Description:
Relieved strains due to drilling hole in a ring sample cut from an autofrettage cylinder are measured.
Measured strains are then transformed to residual stresses using calibration constants and mathematical relations of elasticity based on ASTM standard recommendations (American Society for Testing and Materials, ASTM E 837-08, 2008, “Standard Test Method for Determining Residual Stresses by the Hole-Drilling Strain-Gage Method,” American Society for Testing and Materials).
The hydraulic autofrettage is pressurizing a closed-end long cylinder beyond its elastic limits and subsequently removing the pressure.
In contrast to three-dimensional stress state in the autofrettage tube, the stress measurement in hole drilling method is performed on a traction free surface formed from cutting the ring sample.
The process of cutting the ring sample from a long autofrettaged tube is simulated using finite element method (FEM) and the redistribution of the residual stress due to the cut is discussed.
Hence, transformation of the hole drilling measurements on the ring slice to the autofrettage residual stresses is revealed.
The residual stresses are also predicted by variable material properties (VMP) method (Jahed, H.
, and Dubey, R.
N.
, 1997, “An Axisymmetric Method of Elastic-Plastic Analysis Capable of Predicting Residual Stress Field,” Trans.
ASME J.
Pressure Vessel Technol.
, 119, pp.
264–273) using real loading and unloading behavior of the test material.
Prediction results for residual hoop stress agree very well with the measurements.
However, radial stress predictions are less than measured values particularly in the middle of the ring.
To remove the discrepancy in radial residual stresses, the measured residual hoop stress that shows a self-balanced distribution was taken as the basis for calculating residual radial stresses using field equations of elasticity.
The obtained residual stresses were improved a lot and were in good agreement with the VMP solution.

Related Results

Blunt Chest Trauma and Chylothorax: A Systematic Review
Blunt Chest Trauma and Chylothorax: A Systematic Review
Abstract Introduction: Although traumatic chylothorax is predominantly associated with penetrating injuries, instances following blunt trauma, as a rare and challenging condition, ...
A Finite Element Method Study of Combined Hydraulic and Thermal Autofrettage Process
A Finite Element Method Study of Combined Hydraulic and Thermal Autofrettage Process
Autofrettage is a metal working process of inducing compressive residual stresses in the vicinity of the inner surface of a thick-walled cylindrical or spherical pressure vessel fo...
Planning Drilling Fluid Programs in Southeast Asia
Planning Drilling Fluid Programs in Southeast Asia
Planning the drilling fluids program is one of the most important steps in Planning the drilling fluids program is one of the most important steps in preparation for the drilling o...
Thermally Assisted Rotational Autofrettage of Long Cylinders With Free Ends
Thermally Assisted Rotational Autofrettage of Long Cylinders With Free Ends
Abstract Autofrettage is a widely employed process for strengthening cylindrical or spherical pressure vessels. The process involves applying a uniform load to the i...
Deep Offshore Slim Hole Drilling
Deep Offshore Slim Hole Drilling
Abstract This paper describes means of porting the Slim Hole Drilling concept to deep offshore applications. Slim Hole technology is now routinely used onshore. P...
Recent Developments In Drilling Fluid Technology
Recent Developments In Drilling Fluid Technology
Drilling Technology has been continuously faced with new problems in drilling deeper and more difficult holes. A major problem is excessive friction caused by unstable hole conditi...
Casing Drilling with Retrievable Drilling Assemblies
Casing Drilling with Retrievable Drilling Assemblies
Abstract Retrievable Casing Drilling* tools have been used to drill more than 600,000 ft of hole in over 120 wells encompassing six casing sizes ranging from 4-1/...
Centrifugal Clutch-Augmented Rotational Autofrettage
Centrifugal Clutch-Augmented Rotational Autofrettage
Autofrettage pre-strengthens pressure vessels by inducing controlled plastic deformation through internal loading, creating compressive residual stresses at the inner wall upon unl...

Back to Top