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Showing posts with label IBS. Show all posts
Showing posts with label IBS. Show all posts

Thursday, May 16, 2013

UCO SolidWall System by UAC BERHAD


GENERAL DESCRIPTION


UCO SOLIDWALL SYSTEM is a non-load bearing wall system which fits into modern day commercial, institution and residential building construction. It is a CIDB certified Industrial Building System (IBS).

UCO SOLIDWALL SYSTEM comprises UAC fibre cement sheets fixed onto metal studs and infilled with light weight concrete mix. It is versatile in complying to the fire-rating, sound and thermal insulation, wet application, impact strength and robustness requirements.


ADVANTAGES

FIRE RATED
Up to 4 hours according to British Standard (BS 476: Part 22)

LIGHT WEIGHT
Weight of walls is approximately 3 times lighter compared to brick walls. Density is 750-850 kg/m3.

FAST TRACK CONSTRUCTION
Easily and rapidly constructed, cutting down construction time and cost compared to traditional wall construction.

HIGH QUALITY WALL FINISHING
Wall is straight with smooth surfaces.

SURFACE FINISH VERSATILITY
Readily accepts a wide range of surface finishes, e.g. acrylic and emulsion paint, wall paper, ceramic tiles, marble, etc.

STRONG ANCHORAGE CAPACITY
Conform to BS 5234 : Part 2 requirements.

CLEANER AND SAFER CONSTRUCTION
Reduces messiness and thereafter easy to clean up at site. Also minimizes inconvenience to other trades compared to the labour-intensive conventional trade.

IMPACT RESSISTANT
Scuff-resistant, offering superior impact and abrasion resistance.

DURABLE
Immune to permanent water damage and impervious to high humidity/moisture. Also does not warp, crack or split easily.

THERMAL INSULATION
R value = 0.169 m2 K/W

SOUND INSULATION 
Sound Transmission Class (STC) rating e.g. 104mm thick wall is 46 dB.

SYSTEM DESCRIPTION

UCO SOLIDWALLL SYSTEM consists of:
a) UCO VISTABORD/FLEXABORD 6.0mm, 9.0mm, and 12.0mm thickness.
b) Metal studs
c) Light weight concrete mix

Friday, February 1, 2013

ACOTEC WALL PANEL


The Core Element of Industrial Building System
Acotec Wall Panel is an idea developed to facilitate a hassle-free building process of Industrial Building System. The system reaches all the way through a building, from the façade right down to the partition walls.

World-class Acotec for International Market
Acotec Wall Panel is a construction method of choice for system building all over the world. It has been successfully implemented in numerous projects throughout Singapore and Malaysia; where award-winning factories – located in Perak, Negeri Sembilan and Johor – are well-positioned to serve the markets.

ADVANTAGES OF ACOTEC WALL PANEL
  1. Speed of Construction - Acotec Wall Panel is an idea developed to facilitate a hassle-free building process of Industrial Building System. The system reaches all the way through a building, from the façade right down to the partition walls.
  2. Time Efficiency - Acotec wall panel can speed up project duration and as a result save in construction costs.
  3. Low Wastages - Acotec wall panel are pre cut to specific sizes that can goes in all designs and schedules. This will definitely minimize wastages at site.
  4. Industrial Quality Finishes - Acotec wall panel can give maximum savings in plastering and finishing since the panel has good superb surface finish.
  5. Easy Site Management - Acotec wall panel give less mess and traffic, hence, create cleaner sites and better site management.
  6. Lower Pilferage - Acotec wall panel will not create unnecessary shortages and losses at the site.
  7. Environmental Friendly - Acotec wall panel is an environmentally safe and recyclable product

TEST SPECIFICATION OF ACOTEC PANEL

TEST SPECIFICATIONACOTEC PANEL 100MM
Installation speed (m2/man-day)16
Weight (kg/m2)140
LintelAcotec
Fire Rating (Hours)2
Sound Insulation (dB)46
Compressive Strength Cube test (N/mm²)25
Compressive Strength Section (N/mm2)15
Thermal Resistance (m2K/W)0.4
Moisture Absorption (%)4.9

* Information is correct at time of printing     Made in Malaysia


Wednesday, September 7, 2011

IBS : WIRA KERJAYA SDN. BHD.

Wira Eco Building Systems (WEBS) is an innovative concept developed by Wira Kerjaya from years of research and experience in the construction world. The idea is best summarize as follows:


With its unique technique, WEBS, we strive to be a global player in this new and challenging world of construction.

WEBS Green Concept


WEBS stresses on the concept of green construction and sustainable building hence creating structures and using processes that are environmentally responsible and resource efficient from the first stage right to the final stage. We achieve this through:-


  • Efficiently using energy, water and other resources.
  • Protecting occupant health and improving employee’s productivity.
  • Reducing pollution, waste and environmental degrading.


WEBS Framing Systems

Wira Eco Building Systems (WEBS) utilizes three main components for the framing system, mainly the RHS/SHS, self tapping screw, as well as the revolutionary WEBS connector.


Utilizing the combination of the three, WEBS was devised to be a method ensuring a system that meets your requirement in designing and erecting a sustainable designed structure.



Project in Malaysia That Uses This System

Double Storey Bungalow

Factory

Single Storey Terrace House


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Monday, July 4, 2011

IBS : O-Stable Panel Sdn. Bhd.

The O-Stable Panel System is a prefabricated system created for versatility to suit any layout and design required by the Architect.

An enhancement on conventional systems, this latest pre-cast technology from O-Stable Panel Sdn Bhd, allows luxurious homes with attractive architectural designs to be constructed faster and with almost zero defect.

Our Technical Advisor, Mr. Khoo Tian who invented this system, likens it to the flexibility of toy building blocks, theO-Stable Panel System has attractive architectural features such as arches, round columns and comices that can be incorporated into the design of any type of houses.

Its special built-in feature allows free flow of air into the house (cross & vertical ventilation), thereby converting outside hot air into cool air.

This system provides some degree of comfort without air-conditioning and has been evaluated and documented by University Technology Mara (UiTM). Our associated company Baktian Sdn Bhd has entered into MOU with UiTM for continuous improvement of performance through instrumentation and measurement.

This is also good in accordance with the 'Feng Shui' principle, as it brings harmony and tranquility into the house.


Installation Procedures

Prior Installation


1.            Check the condition of the floor and mark the grid line and off-set line.
                 
2.            Lay the level pad along the grid line for level control.

Panel Installation

1.            Apply expandite concrete along the panel position prior installation.
                 
2.            Install the panel to its respective position.
                 
3.            Check the vertically and horizontally of the panel before tighten the steel bracing.
                 
4.            Tighten the steel bracing to hold the panel.
                 
5.            Remove the axcess expandite concrete.



For more information please visit : 
http://www.ostap.com.my

Tuesday, March 22, 2011

ADVANTAGES OF INDUSTRIALISED BUILDING SYSTEM (IBS)

According to CIDB (2003), compares to conventional construction method, the
industrialised building system has the following advantages:

i. Less construction time
IBS requires less construction time because casting of precast element at factory
and foundation work at site can occur simultaneously and the work at site is only
the erection of IBS components. This leads to earlier occupation of the building.

ii. Cost savings
The formwork of IBS components are made of steel, aluminium or other materials
that allows for repetitive use and this leads to considerable cost savings.

iii. Saving in labour
When the IBS components are produced in factory, higher degree of utilisation of
machine is permitted and the use of labour will be reduced and lead to saving in
labour cost.

iv. Less labour at site
The use of IBS will reduce the construction process at site and consequently reduce
the number of labour required at site.

v. Optimised use of material
The utilisation of machine during the production of IBS components lead to
higher degree of precision and accuracy in the production and consequently
reduce material wastage.

vi. Higher quality and better finishes
An IBS component have higher quality and better finishes due to the careful
selection of materials, use of advanced technology, better and strict quality
assurance control since production in factory is under sheltered environment.

vii. Construction operation less affected by weather
Faster project completion due to rapid all weather construction. The effects of
weather on construction operation are less due to the fabrication of IBS
components is done in factory while at site is only erection of the components.

viii. Flexibility
IBS provides flexibility in the design of precast element so that different systems
may produce their own unique prefabrication construction methods.

ix. Increase site safety and neatness
Utilisation of IBS components leads to less construction process especially wet
work at site. This will lead to the neater site condition and increase safety.

x. Environmental friendly
The use of IBS will decrease the using of timber formwork on construction
projects.

Wednesday, December 1, 2010

The History of IBS Adoption in Malaysia

IBS has been introduced in Malaysia since early 1960s when Ministry of Housing and Local Government of Malaysia visited several European countries and evaluate their housing development program (Thanoon et al, 2003). After their successful visit in 1964, the government had started first project on IBS, just a year later aims to speed up the delivery time and built affordable and quality houses. About 22.7 acres of land along Jalan Pekeliling, Kuala Lumpur was dedicated to the project comprising 7 blocks of 17 stories flat there are 3000 units of low-cost flat and 40 shops lot. 

This project was awarded to JV Gammon & Larsen and Nielsen using Danish System of large panel pre-cast concrete wall and plank slabs. The project was completed within 27 months from 1966 to 1968 including the time taken in the construction of the RM 2.5 million casting yard at Jalan Damansara (CIDB, 2006; CIDB, 2003 and Thanoon et al, 2003).
In 1965, the second housing project initiated by the government comprising 6 blocks of 17 stories flats and 3 block of 18 stories flats at Jalan Rifle Range, Penang. The project was awarded to Hochtief and Chee Seng using French Estoit System (CIDB, 2006; CIDB, 2003 and Din, 1984).

Another earliest IBS project was at Taman Tun Sardon, Penang (1,000 units of five-storey walk up flat). IBS pre-cast component and system in the project was designed by British Research Establishment for low cost housing (BRECAST system). 

A similar system was constructed almost at the same time at Edmonton, North London and about 20,000 BRECAST dwellings were constructed through out UK from 1964 to 1974 (CIDB, 2006). Nonetheless, the building design was very basic and not considering the aspect of serviceability such as the local needs to have wet toilet and bathroom (Rahman and Omar, 2006). 

Many construction in the following years utilised precast wall panel system. One can observed that IBS was engage at first place in the construction of low-cost high-rise residential building to overcome the increasing demand for housing needs (CIDB, 2006). 

Nonetheless, the industrialisation of construction at the earlier stage was never sustained. Failure of early closed fabricated system made the industry afraid of changing their construction method. Some of the foreign systems that were introduced during the late 60s and 70s were also found not to be suitable with Malaysia climate and social practices (CIDB, 2005). 

Newer and better technologies were constantly being introduced than in the market. Wet joint systems were identified to be more suitable to be used in our tropical climate and it was also better to utilised the bathroom types which were relatively wetter than those in the Europe (CIDB, 2005). 

In 1978, the Penang State Government launched another 1200 units of housing using prefabrication technology. Two years later, the Ministry of Defense adopted large prefabricated panel construction system to build 2800 unit of living quarters at Lumut Naval Base (Trikha and Ali, 2004). 

Dring the period of early 80s up to 90s the use of structural steel components took new turn particularly in high rise buildings in Kuala Lumpur. The usage of steel structure gained much attention with the construction of 36-storey Dayabumi complex that was completed in 1984 by Takenaka Corporation of Japan (CIDB, 2003 and CIDB, 2006). 

In the 90s, demand for the new township has seen the increase in the use of precast concrete system in high rise residential buildings. Between 1981 and 1993, Perbadanan Kemajuan Negeri Selangor (PKNS) a state government development agency acquired pre-cast concrete technology from Praton Haus International based on Germany to build low cost house and high cost bungalow for the new townships in Selangor (CIDB, 2003 and Hassim et al, 2009). It was recorded then, around 52,000 housing units was constructed using Praton Haus system (Trikha and Ali, 2004). 

In this booming period of Malaysian construction 1994 -1997, hybrid IBS application used in many national iconic landmarks such as Bukit Jalil Sport Complex, Kuala Lumpur Convention Centre (steel beam and roof trusses and precast concrete slab: Victor Buyck Steel Construction), Lightweight Railway Train (LRT), KL Sentral Station (steel roof structure and precast hollow core: RSPA – Bovis), KL Tower (steel beams and columns for tower head: Wayss & Freytag), Kuala Lumpur International Airport (steel roof structure: KLIAB – Eversendai) and Petronas Twin Towers (steel beams and steel decking for the floor system – Mayjus JV and SKJ JV) (CIDB, 2006). It also includes the development and construction of new administration capital of Malaysia; Putrajaya and the first Malaysia cyber city; Cyberjaya. 

Today, the use of IBS as a method of construction in Malaysia is evolving. Many private companies in Malaysia have teamed up with foreign expert to offer solutions to their IBS project (Eastern Pretech, BPB Malaysian Gypsum, Lafarge and Duralite) (CIDB, 2003). Many had acquired enough knowledge through technology transfer to build up own capacity in IBS technologies (PKNS Engineering, Setia Precast and Global Globe). In fact, Malaysian was also keen on developing own IBS technologies (Zenbes, CSR, IJM Formwork, Pryda, Baktian and HC Precast). 

The local IBS manufacturers were mushrooming, although yet to operate in full capacity. The current IBS systems used in Malaysia housing projects are large panel systems, steel frame, precast frame and formwork system. The IBS system is largely used for private residential projects in Shah Alam, Wangsa Maju and Pandan (Sarja, 1998), Dua Residency, KL, Taman Mount Austin and Tongkang Pecah, Johor (CIDB, 2006). 

It was used in public residential projects in Putrajaya Prescient 17 and Prescient 9 (used pre-cast technologies by Taisei Corporation in Japan and later adopted by Setia Precast Sdn. Bhd), PPR Sungai Besi, Sungai Bedaun, Labuan and Telipok, Sabah (CIDB, 2006). 

The new generation of building that utilised IBS is better in term of quality, and architectural appearance compared to the earlier generation. In large public and private buildings and infrastructure projects, pre-cast panel, steel frame and other IBS systems were used as hybrid construction technique to construct government schools and teachers housing complexes (Kuala Kangsar, Yan and Sungai Petani), hospitals (Serdang Hospital and UKM Hospital), collages and universities (Penang Matriculation Collage, UiTM, Kuching and University PETRONAS and University of Malaysia Sabah), custom complexes (Kelana Jaya and Johor Bahru), private buildings (Weld Tower, Maju Perdana, Traders Hotel, City Square and Olympia Tower, Jaya Jusco, IKEA) and police quarters (Senawang) (CIDB, 2006).

Source : http://ibsresearch.blogspot.com 

Tuesday, November 30, 2010

Malaysian IBS International Exhibition (MIIE) 2011

Date : April 2011
Venue : CIIDB CONVENTION CENTRE, Jalan Chan Sow Lin Kuala Lumpur


Construction Industry Development Board [CIDB], a government-appointed organisation entrusted with the responsibility for developing and ensuring the continuous progress of the Malaysian Construction Industry, is proud to announce the hosting of MIIE 2011, which is to be held on April 2011.

MIIE 2011 is the third MIIE organized by CIDB. The first MIIE was in 2006, followed by the second MIIE in 2009. MIIE 2009 was successfully organized in January 2009. MIIE 2009 was officiated by Y.A.B Dato’ Sri Mohd Najib Tun Haji Abdul Razak, the former Deputy Prime Minister of Malaysia. It had attracted more than 100 exhibitors, 700 seminar participants and more than 5000 visitors. It had attracted participation from government agencies, professionals, research centres, IBS suppliers/ manufacturers, academicians, students and contractors.

Program of MIIE 2011 :

1.Exhibition ( Industry, Innovation and R&D)
2.Seminar
3.Student Design Competition
4.Workshop for Students

Objective

The main aim of MIIE 2011 is to provide an IBS knowledge sharing platform, which covers dissemination of quality information and technology, discussion opportunities and networking session for the construction industry stakeholders in Malaysia as well as for their overseas partners.

Theme : IBS Integration For Green Technology

Further Inquiries, please contact ;

Secretariat MIIE 20111
Tel: 03 4042 8880
Fax: 03 4042 2880
Email: miie11@cidb.gov.my


Source : www.ibscentre.com.my

Saturday, November 13, 2010

IBS : Light Gauge Steel Framing in MALAYSIA

Advantages of Light Gauge Steel
-Cost Effective
-Easy & Fast Installation
-Strong Yet light weight
-Improved Construction Quality
-Easy to Modify
-Design Flexibility
-Saves labor
-Recyclable