Fatigue failures of transmission line conductors are
known to occur close to the suspension clamps. The
causes of such failures are known to be due to high
static stresses combined with dynamic stresses
resulting from vibratio.n. The overall stres_s _in the
aluminium strands of a conductor could be lzmzted by
reducing the static bending stress near the clamps.
Passive protective devices such as neoprene lining,
damping shims introduced in the suspension clamps
would bring down the stress level, thereby i,ncreasing
the service life of conductors. Results of tests
conducted on a laboratory span are brought out in
this paper. The experimental results reveal that
neoprene lining and damping shims introduced in the
suspension clamp would be very effective in bringing
down the static bending stress and thus the overall
stress level.
%0 Journal Article
%1 gopalan1983reduction
%A GOPALAN, T.V.
%A GIRISH, S.
%A RAMACHANDRAN, N.
%D 1983
%K Conductor Electric Fatigue Line Transmission Vibration gauges resistance strain
%T Reduction of static strain for increased life of transmission line conductors
%X Fatigue failures of transmission line conductors are
known to occur close to the suspension clamps. The
causes of such failures are known to be due to high
static stresses combined with dynamic stresses
resulting from vibratio.n. The overall stres_s _in the
aluminium strands of a conductor could be lzmzted by
reducing the static bending stress near the clamps.
Passive protective devices such as neoprene lining,
damping shims introduced in the suspension clamps
would bring down the stress level, thereby i,ncreasing
the service life of conductors. Results of tests
conducted on a laboratory span are brought out in
this paper. The experimental results reveal that
neoprene lining and damping shims introduced in the
suspension clamp would be very effective in bringing
down the static bending stress and thus the overall
stress level.
@article{gopalan1983reduction,
abstract = {Fatigue failures of transmission line conductors are
known to occur close to the suspension clamps. The
causes of such failures are known to be due to high
static stresses combined with dynamic stresses
resulting from vibratio.n. The overall stres_s _in the
aluminium strands of a conductor could be lzmzted by
reducing the static bending stress near the clamps.
Passive protective devices such as neoprene lining,
damping shims introduced in the suspension clamps
would bring down the stress level, thereby i,ncreasing
the service life of conductors. Results of tests
conducted on a laboratory span are brought out in
this paper. The experimental results reveal that
neoprene lining and damping shims introduced in the
suspension clamp would be very effective in bringing
down the static bending stress and thus the overall
stress level.},
added-at = {2021-03-23T00:16:36.000+0100},
author = {GOPALAN, T.V. and GIRISH, S. and RAMACHANDRAN, N.},
biburl = {https://www.bibsonomy.org/bibtex/29da870de2939f98f1631e492136e970e/ceps},
interhash = {24ed181f170ecfeab94c4242f1056cdc},
intrahash = {9da870de2939f98f1631e492136e970e},
keywords = {Conductor Electric Fatigue Line Transmission Vibration gauges resistance strain},
timestamp = {2023-12-21T10:26:01.000+0100},
title = {Reduction of static strain for increased life of transmission line conductors},
year = 1983
}