Strength Analysis of a Container Lashing on the Container Ship by
using Finite Element Method
Totok Yulianto
1
, Septia Hardy Sujiatanti
1
, Rizky Chandra Ariesta
1
and Muhammad Rifqi Aufar
1
1
Department of Naval Architecture, Faculty of Marine Technology, Institut Teknologi Sepuluh Nopember, Surabaya,
Indonesia
Keywords: Strength Analysis, Container Lashing, Finite Element Method
Abstract: Lashing is a safety equipment on the ship which is used to tie containers. Lashing system is divided into two
parts, they are turnbuckle and lashing bars. The purpose of this study is to find the lashing strength value when
the ship conditions are on an even keel and tilted with angles 10º, 20º, 30º and 40º using finite element method.
In addition to tilted angles, the calculations are varied against the rotation of small, medium and large
turnbuckles. The results are shown in stress value. The minimum force which obtained is 230,000 N with a
variation of rotation reach the minimum tensile force is small turnbuckle on rotation 398.45°, medium
turnbuckle 318.76° and large turnbuckle 227.69°. On small turnbuckle, when the ship tilted up to 40º, the
rotation limit which added from minimum tensile strength is about 120° with stress value 766.86 MPa. On
medium turnbuckle, the rotation limit is about 60º with stress value 713.48 MPa. On large turnbuckle, the
rotation limit is about 60º with stress value 749.22 MPa. From all those three sizes of the turnbuckle, the most
suitable turnbuckle for lashing system on 1 tier container 20 feet is medium turnbuckle.
1 INTRODUCTION
Almost Every year ships in Indonesia are problematic
which results in an accident. One of the accidents that
are stability factor from moving load. Around one
year ago exactly March 2016 were accidents at Bali
Strait which results seven people died. That is KMP
Rosalia II who had an accident when sailing from
Java to Bali. This is the fourth ship to sink at that area,
previous accidents occurred in 1960, 1994 and 2000.
KMP Rosalia sank because it was alleged that the
sailing permit was uncertain, overloaded, and
unstable when sailing because the cargo was not in
accordance with the procedure.
Some literature tells about the power, including
the wing tank strength of the tanker ship can be said
to be effective, if the calculation of stress results in
small condition (Sanjaya, et.al, 2017). Installation
two part of wave bulkhead be resulted in big stress
better more than the stress of one part, in this research
can relations between lashing bars and turnbuckle
(Rabbani, et.al, 2017). If stress results do not meet the
standard, stress can be compared with the yield
strength of material (Chabibi, 2013). Material
strength can be said to be safe if it meets maximum
stress criteria (Pramono, et.al, 2016).
In this research the calculation of lashing strength
on ship container when even keel condition and tilted
condition. The stress of lashing have strong pull force
and back be original condition have press force. In
Park Journal the stress of lashing adjusts with pull
force for rotate system element which has on the
turnbuckle, but the principle turnbuckle is
conventional whose can’t force pull calculation
without certain measurement equipment. So, in this
research that is calculation lashing stress when even
keel and tilted condition because rotate of turnbuckle
on a container ship and can know who better effective
turnbuckle for the strength of lashing.
2 LITERATURE REVIEWS
Lashing function by SOLAS Chapter VI Regulation
5 is Cargo and cargo units carried on or under deck
shall be so loaded, stowed and secured as to prevent
as far as is practicable, throughout the voyage,
damage or hazard to the ship and the persons on
board, and loss of cargo overboard. Fastening from
lashing have four points and two sides on the
container. Part of lashing that is lashing bars on the