BSR103 Technical Drawing UITM Assignment Sample Malaysia

BSR103 Technical Drawing course is designed to introduce basic concepts and techniques of technical drawing. It introduces the student to a variety of tools, materials, and processes used in creating technical drawings. This course also covers a basic understanding of perspective, scale, and dimensional accuracy as it relates to drawing objects accurately. 

Additionally, students will learn how to use a grid system when creating drawings with larger-scale objects. The course also covers the basics of dimensioning, tolerances, and geometric symbols that are used in technical drawings. In addition to mastering these fundamentals, students will further develop their skills by learning more advanced concepts such as creating 3D Isometric views and exploring different types of drawing projections. 

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Here, we will provide some assignment briefs. These are:

Assignment Brief 1: Display fundamental knowledge in technical drawing for understanding on building elements.

A technical drawing is a visual representation of objects and structures that use lines, symbols, and dimensions to convey information. In construction and building design, technical drawing is an essential tool for architects, engineers, and builders to communicate design ideas and specifications. Here are some fundamental concepts and techniques used in technical drawing for building elements:

  1. Orthographic Projection: This is the most commonly used technique for technical drawing, which involves projecting a three-dimensional object onto a two-dimensional plane. Orthographic projection allows different views of an object to be shown, including top, front, and side views.
  2. Scale: Scale refers to the ratio between the size of an object in the drawing and its actual size. The scale is usually expressed as a fraction or a ratio. For example, a 1:50 scale means that one unit in the drawing represents 50 units in real life.
  3. Line Types: Different line types are used in technical drawing to indicate different types of objects, such as hidden lines, construction lines, centerlines, and cutting plane lines. These lines help to distinguish between different parts of an object and provide clarity to the drawing.
  4. Dimensioning: Dimensioning is the process of adding measurements to a drawing to specify the size and location of objects. Dimensioning includes the use of symbols and text to indicate the length, width, height, and angles of objects.
  5. Symbols: Symbols are used in technical drawing to represent different building elements, such as doors, windows, stairs, and electrical outlets. These symbols are standardized to ensure consistency and clarity in communication.
  6. Drawing Layout: A drawing layout refers to the arrangement of different views on a drawing sheet. The layout should be organized and easy to read, with views arranged in a logical order.
  7. Material Representation: Technical drawing also involves the representation of different materials, such as wood, steel, or concrete. Different shading techniques are used to indicate the texture and material of an object.

By understanding these fundamental concepts and techniques in technical drawing, architects, engineers, and builders can create accurate and precise drawings that effectively communicate design ideas and specifications for building elements.

Assignment Brief 2: Reproduce technical drawings according to standards and specifications.

Reproducing technical drawings according to standards and specifications involves following a set of guidelines and requirements to ensure accuracy and consistency. Here are some steps to follow:

  1. Obtain the necessary information: Start by reviewing the specifications, standards, and requirements for the technical drawing. Make sure you have all the necessary information and materials, including drawings, templates, and software programs.
  2. Understand the standards: Familiarize yourself with the relevant standards and specifications for the type of technical drawing you are reproducing. Standards can include dimensions, tolerances, line weights, and other details.
  3. Use the correct software: Technical drawings are often created using computer-aided design (CAD) software. Make sure you are using the correct software for the project and that you are familiar with its features and tools.
  4. Set up the drawing: Use the appropriate templates, layers, and settings to set up the drawing correctly. This includes setting the scale, drawing boundaries, and defining units of measurement.
  5. Create the drawing: Begin by sketching out the basic shapes and lines, and then use the CAD software to create the detailed drawing. Be sure to follow the standards and specifications for line weights, text size, and other details.
  6. Review and revise: Once the drawing is complete, review it carefully to ensure that it meets all the standards and specifications. Make any necessary revisions or corrections before submitting the final drawing.
  7. Document and archive: Keep a record of the drawing, including any revisions or changes made during the process. Archive the drawing in a secure location for future reference.

Reproducing technical drawings according to standards and specifications requires attention to detail and a thorough understanding of the standards and software used. By following these steps, you can produce accurate and high-quality technical drawings that meet the required specifications.

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