FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB

offers both design and cost advantages over traditional methods such as cast in-situ concrete, steel-concrete composite and timber floors. Over the years, CIDB Malaysia has taken many initiatives to industrialize the Malaysian construction industry by promoting the use of IBS which involve the use...

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Main Authors: Ng, C.H., Ideris, Z., Narayanan,, S.P, Mannan, M.A., Kurian, V.J.
Format: Conference or Workshop Item
Language:English
Published: World Engineering Congress 2007
Subjects:
Online Access:http://scholars.utp.edu.my/id/eprint/1231/
http://scholars.utp.edu.my/id/eprint/1231/1/WEC_2007%2C_August%2C_Penang_%28Anthony%29.pdf
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author Ng, C.H.
Ideris, Z.
Narayanan,, S.P
Mannan, M.A.
Kurian, V.J.
author_facet Ng, C.H.
Ideris, Z.
Narayanan,, S.P
Mannan, M.A.
Kurian, V.J.
author_sort Ng, C.H.
building UTP Institutional Repository
collection Online Access
description offers both design and cost advantages over traditional methods such as cast in-situ concrete, steel-concrete composite and timber floors. Over the years, CIDB Malaysia has taken many initiatives to industrialize the Malaysian construction industry by promoting the use of IBS which involve the use of prefabricated and precast concrete building components and off-site construction. However, the construction industry operation has high potential impact on the environment. Thus strategies to promote sustainable development and a green construction industry have become essential. One of the solutions is to utilize the OPS as aggregate in concrete. More than 4 million tons of OPS are produced as solid waste annually in Malaysia. This study investigated the behaviour of four OPS precast concrete flooring slabs under 2-line loading. Slabs were made of OPS concrete or OPS hybrid concrete, reinforced with high yield steel T10 or A393 (200 x 200 mm spacing). The slabs were cured for 7 days and tested at 28 days. The minimum strength requirement for precast concrete slab is 10 – 15 N/mm2 for lifting/ transporting [1] [2] [3] and 35 N/mm2 (if reinforced) to 40 N/mm2 for servicing [4] [5]. Slabs made with OPS hybrid concrete satisfied the strength requirement for lifting/ transporting and service conditions as well as the deflection requirement for general office floor.
first_indexed 2025-11-13T07:24:52Z
format Conference or Workshop Item
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institution Universiti Teknologi Petronas
institution_category Local University
language English
last_indexed 2025-11-13T07:24:52Z
publishDate 2007
publisher World Engineering Congress
recordtype eprints
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spelling oai:scholars.utp.edu.my:12312017-01-19T08:26:55Z http://scholars.utp.edu.my/id/eprint/1231/ FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB Ng, C.H. Ideris, Z. Narayanan,, S.P Mannan, M.A. Kurian, V.J. TA Engineering (General). Civil engineering (General) offers both design and cost advantages over traditional methods such as cast in-situ concrete, steel-concrete composite and timber floors. Over the years, CIDB Malaysia has taken many initiatives to industrialize the Malaysian construction industry by promoting the use of IBS which involve the use of prefabricated and precast concrete building components and off-site construction. However, the construction industry operation has high potential impact on the environment. Thus strategies to promote sustainable development and a green construction industry have become essential. One of the solutions is to utilize the OPS as aggregate in concrete. More than 4 million tons of OPS are produced as solid waste annually in Malaysia. This study investigated the behaviour of four OPS precast concrete flooring slabs under 2-line loading. Slabs were made of OPS concrete or OPS hybrid concrete, reinforced with high yield steel T10 or A393 (200 x 200 mm spacing). The slabs were cured for 7 days and tested at 28 days. The minimum strength requirement for precast concrete slab is 10 – 15 N/mm2 for lifting/ transporting [1] [2] [3] and 35 N/mm2 (if reinforced) to 40 N/mm2 for servicing [4] [5]. Slabs made with OPS hybrid concrete satisfied the strength requirement for lifting/ transporting and service conditions as well as the deflection requirement for general office floor. World Engineering Congress 2007-08 Conference or Workshop Item PeerReviewed application/pdf en http://scholars.utp.edu.my/id/eprint/1231/1/WEC_2007%2C_August%2C_Penang_%28Anthony%29.pdf Ng, C.H. and Ideris, Z. and Narayanan,, S.P and Mannan, M.A. and Kurian, V.J. (2007) FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB. In: World Engineering Congress, 5-9 August 2007, Penang.
spellingShingle TA Engineering (General). Civil engineering (General)
Ng, C.H.
Ideris, Z.
Narayanan,, S.P
Mannan, M.A.
Kurian, V.J.
FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB
title FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB
title_full FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB
title_fullStr FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB
title_full_unstemmed FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB
title_short FLEXURAL BEHAVIOUR OF OIL PALM SHELL (OPS) HYBRID PRECAST CONCRETE FLOORING SLAB
title_sort flexural behaviour of oil palm shell (ops) hybrid precast concrete flooring slab
topic TA Engineering (General). Civil engineering (General)
url http://scholars.utp.edu.my/id/eprint/1231/
http://scholars.utp.edu.my/id/eprint/1231/1/WEC_2007%2C_August%2C_Penang_%28Anthony%29.pdf