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Dive into the research topics where D.C.L. Teo is active.

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Featured researches published by D.C.L. Teo.


10th International Conference on Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete Structures | 2015

Chloride Penetration Profile of Polyvinyl Alcohol (PVA) Treated Oil Palm Shell (OPS) Concrete

C.C. Thong; D.C.L. Teo; C.K. Ng

Oil palm shell (OPS) is the hard endocarp which surrounds the palm kernel and received as crushed pieces during the extraction of palm oil. It is an agricultural waste and can be found in abundance in Malaysia. Economic and environmental benefits as well as decreasing the use of natural resources can be achieved if OPS can be utilised as a building material. Promising results showed that OPS has good potential to be used as coarse aggregate replacement in making structural lightweight concrete. It has also been previously established that polyvinyl alcohol (PVA) can be used to improve the properties of OPS concrete. Chloride induced reinforcement corrosion is an important area of study which needs to be investigated, especially for concrete structures exposed to marine environments. Therefore, this paper presents an experimental study on the chloride penetrability of PVA treated OPS concrete in comparison to that of raw OPS concrete using the 90-day salt ponding test. The effects of different curing conditions (full water curing, air-dry curing and site curing) on the chloride penetration resistance of PVA treated OPS concrete and raw OPS concrete were also studied. Both PVA treated OPS and raw OPS concrete surface were ponded with 3% sodium chloride solution up to 90 days, and the chloride profiles were measured by analysing concrete dust samples extracted from different depth intervals from the chloride exposed concrete surface. Subsequently, chloride diffusion coefficients were determined by fitting the experimental data to Fick’s second law of diffusion. From the test results, it was found that PVA treated OPS concrete had high surface chloride concentration as compared to raw OPS concrete. However, PVA treated OPS concrete showed higher resistance to chloride penetration as compared to raw OPS concrete as indicated from the chloride diffusion coefficient. The results indicated that curing conditions also have a significant influence on the chloride resistance of PVA treated OPS concrete and raw OPS concrete.


Building and Environment | 2007

Lightweight concrete made from oil palm shell (OPS): Structural bond and durability properties

D.C.L. Teo; M. A. Mannan; V. J. Kurian; C. Ganapathy


Journal of Advanced Concrete Technology | 2006

Flexural Behaviour of Reinforced Lightweight Concrete Beams Made with Oil Palm Shell (OPS)

D.C.L. Teo; Md. Abdul Mannan; John V. Kurian


Turkish Journal of Engineering and Environmental Sciences | 2006

Structural Concrete Using Oil Palm Shell (OPS) as Lightweight Aggregate

D.C.L. Teo; M. A. Mannan; V. J. Kurian


Building and Environment | 2006

Quality improvement of oil palm shell (OPS) as coarse aggregate in lightweight concrete

M. A. Mannan; J. Alexander; C. Ganapathy; D.C.L. Teo


Materials and Structures | 2010

Durability of lightweight OPS concrete under different curing conditions

D.C.L. Teo; M. A. Mannan; V. J. Kurian


Construction and Building Materials | 2011

Properties of EPS RHA lightweight concrete bricks under different curing conditions

I.H. Ling; D.C.L. Teo


Construction and Building Materials | 2016

Application of polyvinyl alcohol (PVA) in cement-based composite materials: A review of its engineering properties and microstructure behavior

C.C. Thong; D.C.L. Teo; C.K. Ng


Construction and Building Materials | 2017

Characteristics of lightweight aggregate produced from lime-treated sewage sludge and palm oil fuel ash

P.C. Lau; D.C.L. Teo; M. Mannan


Jordan Journal of Civil Engineering | 2013

EPS RHA Concrete Bricks – A New Building Material

I.H. Ling; D.C.L. Teo

Collaboration


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M. A. Mannan

Universiti Malaysia Sabah

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I.H. Ling

Universiti Malaysia Sarawak

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V. J. Kurian

Universiti Malaysia Sabah

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C. Ganapathy

Universiti Malaysia Sabah

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C.C. Thong

Universiti Malaysia Sarawak

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C.K. Ng

Universiti Malaysia Sarawak

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M. Mannan

Universiti Malaysia Sarawak

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P.C. Lau

Universiti Malaysia Sarawak

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J. Alexander

Universiti Malaysia Sabah

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John V. Kurian

Universiti Malaysia Sabah

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