BSR110 Materials Properties UITM Assignment Sample Malaysia

BSR110 Materials Properties course is designed to teach students about the physical and chemical characteristics of different materials. It covers topics such as material identification, mechanical properties, electrical & thermal properties, corrosion resistance, hardness testing, and fracture analysis. 

Students will learn how to identify different materials and their associated properties, understand the mechanical behavior of metals and alloys in various conditions, gain knowledge on emerging materials technologies, and how to use these properties in applications. The course will also provide students the opportunity to gain practical experience in the laboratory to apply their newly acquired knowledge. 

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Here, we will describe some assignment objectives. These are:

Assignment Objective 1: Describe classification, properties and application of building materials available in construction industry.

Building materials are the substances and products used to construct buildings, structures, and other civil engineering works. There are a wide variety of building materials available in the construction industry, each with its own unique properties and applications. Building materials can be broadly classified into four main categories:

  1. Natural Building Materials: These are materials that are found naturally in the environment, such as wood, stone, clay, sand, and water. Natural building materials have been used for centuries in construction, and are valued for their durability, beauty, and environmental sustainability.
  2. Manufactured Building Materials: These are materials that are produced in a factory or manufacturing plant, such as cement, concrete, steel, and glass. Manufactured building materials are often used in large-scale construction projects, and are valued for their strength, consistency, and ease of use.
  3. Composite Building Materials: These are materials that are made by combining two or more different materials, such as reinforced concrete or fiberglass. Composite building materials are valued for their strength, durability, and versatility.
  4. Specialized Building Materials: These are materials that are used for specific applications, such as roofing materials, insulation, and soundproofing. Specialized building materials are often designed to provide specific properties or features, such as fire resistance or energy efficiency.

The properties of building materials vary widely depending on their composition, manufacturing process, and intended use. Some of the key properties of building materials include:

  • Strength and durability
  • Thermal insulation
  • Acoustic insulation
  • Fire resistance
  • Water resistance
  • Resistance to pests and insects
  • Aesthetic appeal

The applications of building materials are also diverse and depend on the specific needs of the construction project. Some common applications of building materials include:

  • Structural components such as walls, floors, and roofs
  • Cladding and facade materials
  • Interior finishes such as paint, wallpaper, and flooring
  • Plumbing and electrical systems
  • Landscaping materials such as paving stones and retaining walls

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Assignment Objective 2: Report verbally and in writing the classification method of building materials according to Construction Industrial Standard (CIS).

According to the Construction Industrial Standard (CIS), building materials are classified into different categories based on their physical and mechanical properties. These categories are as follows:

  1. Structural Materials: These are the materials that are used to provide strength and stability to the building. Examples of structural materials include steel, concrete, masonry, timber, and composite materials.
  2. Thermal Materials: These materials are used to regulate the temperature inside the building. Examples of thermal materials include insulation materials, such as fiberglass, rock wool, and cellulose.
  3. Moisture Materials: These are the materials that are used to prevent moisture from entering the building or to absorb moisture in case it enters the building. Examples of moisture materials include waterproofing materials, such as asphalt, bitumen, and polymer-based coatings.
  4. Sound Insulation Materials: These materials are used to reduce the transmission of sound from one room to another. Examples of sound insulation materials include acoustic tiles, mineral wool, and soundproofing foam.
  5. Fireproof Materials: These are the materials that are used to prevent or retard the spread of fire. Examples of fireproof materials include fire-resistant glass, fire-resistant paints, and fire-resistant insulation.
  6. Decorative Materials: These materials are used to enhance the aesthetics of the building. Examples of decorative materials include ceramic tiles, wallpaper, and natural stones.

Assignment Objective 3: Display proper methods and requirements in material testing based on relevant code of practice.

Material testing is an important aspect of ensuring the safety and reliability of various structures and products. There are several codes of practice that provide guidelines for proper methods and requirements in material testing. Here are some of them:

ASTM International: ASTM International is a leading organization that develops and publishes voluntary consensus standards for various industries, including materials testing. ASTM has developed over 12,000 standards, which cover a wide range of materials and testing methods. Some of the standards developed by ASTM related to material testing include:

  • ASTM E8/E8M – Standard Test Methods for Tension Testing of Metallic Materials
  • ASTM D638 – Standard Test Method for Tensile Properties of Plastics
  • ASTM D790 – Standard Test Methods for Flexural Properties of Unreinforced and Reinforced Plastics and Electrical Insulating Materials

ISO: The International Organization for Standardization (ISO) is a non-governmental organization that develops and publishes international standards for various industries, including materials testing. Some of the standards developed by ISO related to material testing include:

  • ISO 6892-1:2016 – Metallic materials – Tensile testing – Part 1: Method of test at room temperature
  • ISO 527-1:2019 – Plastics – Determination of tensile properties – Part 1: General principles
  • ISO 178:2019 – Plastics – Determination of flexural properties

ASME: The American Society of Mechanical Engineers (ASME) is a professional association that develops codes and standards for various industries, including materials testing. Some of the standards developed by ASME related to material testing include:

  • ASME BPVC Section II – Materials – This code provides guidelines for selecting, testing, and specifying materials for use in various applications.
  • ASME B31.3 – Process Piping – This code provides guidelines for designing and constructing process piping systems, including requirements for materials testing.

When conducting material testing, it is important to follow the relevant code of practice and use appropriate equipment and testing methods. The specific requirements and procedures for material testing will vary depending on the type of material being tested and the intended application. It is also important to document and report the results of material testing in a clear and accurate manner.

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