BSR200 Building Technology UITM Assignment Sample Malaysia
The BSR200 Building Technology course at UITM in Malaysia explores construction methods using timber, Reinforced Concrete (R.C), and steel. Students delve into basement construction, temporary works like shoring and underpinning, and infrastructure projects involving soil improvement and slope protection. The curriculum equips students with knowledge crucial for safe and efficient construction processes.
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Assignment Brief 1: Explain the type and method of construction for building structural system by using different type of materials such as timber, metal and concrete.
There are various types of materials that can be used for building structural systems such as timber, metal, and concrete. The choice of material will depend on various factors, including cost, durability, availability, and the intended use of the structure.
Here’s an overview of the types and methods of construction for building structural systems using timber, metal, and concrete:
Timber:
Timber is a renewable and sustainable material that has been used in construction for centuries. It is a popular choice for residential and light commercial construction due to its versatility, ease of use, and aesthetic appeal.
Method of construction: Timber structural systems can be constructed using a variety of techniques, including post-and-beam, timber frame, and platform frame construction. In post-and-beam construction, large vertical posts are used to support horizontal beams, while in timber frame construction, smaller timber members are joined together to create a framework. Platform frame construction is the most common method used for residential construction and involves creating a frame from pre-fabricated timber panels.
Metal:
Metal is a strong and durable material that can be used for a wide range of structural applications. It is often used in commercial and industrial construction due to its ability to support large loads and resist fire, moisture, and pests.
Method of construction: Metal structural systems can be constructed using various techniques, including a steel frame, metal deck, and composite systems. Steel frame construction involves creating a framework using steel beams and columns, while metal deck construction involves laying metal panels over a steel framework. Composite systems combine steel with other materials, such as concrete, to create a strong and durable structural system.
Concrete:
Concrete is a strong and durable material that can be used for a wide range of structural applications. It is often used in commercial and industrial construction due to its ability to support large loads and resist fire, moisture, and pests.
Method of Construction: Concrete structural systems can be constructed using various techniques, including cast-in-place, precast, and tilt-up construction. Cast-in-place construction involves pouring concrete into a formwork, while precast construction involves creating precast concrete panels off-site and assembling them on-site. Tilt-up construction involves casting concrete panels on-site and then tilting them up into place.
Assignment Brief 2: Justify the methods of soil improvement, slope protection, basement construction and temporary works complete with the needs, reasons, technologies involved and requirement of the relevant acts.
Soil improvement, slope protection, basement construction, and temporary works are all important aspects of civil engineering and construction projects. Each method involves specific technologies and techniques to ensure that the work is completed safely, efficiently, and in compliance with relevant laws and regulations.
Soil Improvement:
The need for soil improvement arises when the soil at a construction site is not strong or stable enough to support the intended structure. This may be due to a variety of factors, including the type of soil, the presence of water, or other environmental factors. Soil improvement can involve a range of techniques, including compaction, stabilization, grouting, and reinforcement. Compaction involves the use of heavy machinery to compress the soil, while stabilization involves the addition of materials such as lime or cement to improve its strength. Grouting involves injecting a cement or chemical mixture into the soil to fill voids or improve its properties, and reinforcement involves adding materials such as steel or geotextiles to provide additional strength.
Technologies involved in soil improvement include soil testing equipment, heavy machineries such as excavators and bulldozers, and specialized equipment for grouting and reinforcement. Relevant acts may include building codes and regulations that dictate the minimum standards for soil strength and stability.
Slope Protection:
The need for slope protection arises when a construction site is located on a steep slope or hillside. Slope protection is necessary to prevent erosion, landslides, and other forms of instability that can compromise the safety of the site and the surrounding area. Slope protection may involve the use of retaining walls, geotextiles, vegetation, or other materials and techniques to stabilize the slope.
Technologies involved in slope protection may include specialized excavation equipment, retaining wall construction equipment, and materials such as geotextiles and erosion control blankets. Relevant acts may include environmental regulations that govern the use of vegetation and other natural materials for slope protection.
Basement Construction:
Basement construction is necessary when a building requires additional space below ground level. Basements can be used for a variety of purposes, including storage, parking, and living space. Basement construction may involve excavation, foundation construction, waterproofing, and other techniques to ensure that the space is safe, dry, and structurally sound.
Technologies involved in basement construction may include excavation equipment, foundation construction equipment, and specialized waterproofing materials and techniques. Relevant acts may include building codes and regulations that govern the construction of below-ground structures.
Temporary Works:
Temporary works are structures and systems that are used during the construction process to support the building or infrastructure being constructed. Temporary works may include scaffolding, shoring, formwork, and other structures and systems that are necessary to support the construction process.
Technologies involved in temporary works may include specialized construction equipment such as cranes and lifts, as well as materials such as steel and timber. Relevant acts may include workplace health and safety regulations that govern the construction and use of temporary works, as well as building codes and regulations that govern the structural integrity of temporary works.
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