PowerPoint Presentation

Published on Slideshow
Static slideshow
Download PDF version
Download PDF version
Embed video
Share video
Ask about this video

Scene 1 (0s)

[Audio] Revolutionizing MTB Design: The Power of Welding, Fasteners, and Adhesive Bonding.

Scene 2 (9s)

Introduction Material Selection Joining Methods Suspension System Speed and Handling Cost and Conclusion.

Scene 3 (17s)

[Audio] Welcome everyone to this presentation on the design of a new mountain bike or road bike for a big competition. Today, we will discuss the use of welding, mechanical fasteners, and adhesive bonding in the making of these bikes. We will also explore the importance of material selection, suspension systems, speed, and handling in achieving excellence performance.Our goal is to present a compelling proposal that meets the cost requirements of not exceeding RM10k. We want to demonstrate how our proposed design can win the competition and stand out from the rest. So, sit back, relax, and let's dive into the world of mountain bike and road bike making..

Scene 4 (1m 1s)

[Audio] The material selection process is critical when designing a high-performance MTB .The right material can significantly impact the overall performance and durability of the bike. In our proposal, we have selected carbon fiber as the primary material for the frame and components.Carbon fiber is an extremely lightweight and strong material that is commonly used in high-performance bikes. It has excellent stiffness-to-weight ratio, which means it can withstand high loads without adding unnecessary weight to the bike. Additionally, carbon fiber has high fatigue resistance, which means it can withstand repeated stress cycles without failing.We have chosen to use carbon fiber because it aligns with our goal of designing a high-performance MTB . By using carbon fiber, we can achieve a lightweight and durable bike that can handle the demands of the competition. Furthermore, carbon fiber is a commonly used material in the industry, so we can ensure that our design meets international standards and best practices in material selection..

Scene 5 (2m 6s)

[Audio] Welding, mechanical fasteners, and adhesive bonding are the three main joining methods used in the design of a high-performance MTB. Each method has its own advantages and disadvantages that must be considered when selecting the appropriate joining technique for a specific application.Welding is a popular joining method in the bike industry due to its high strength and durability. However, it requires skilled labor and can be expensive. Mechanical fasteners are easy to install and remove, but they can add weight to the bike and may not provide as strong of a joint as welding. Adhesive bonding is a newer joining method that offers high strength and flexibility, but it can be difficult to apply and may require special equipment.In the proposed design, welding was used for critical joints such as the frame and suspension components, while mechanical fasteners were used for less critical components such as the handlebars and pedals. Adhesive bonding was not used in the design due to its difficulty of application and lack of familiarity among the team members..

Scene 6 (3m 11s)

[Audio] A high-performance mountain bike or road bike requires an excellent suspension system that can handle the challenges of rough terrain and high speeds. The suspension system plays a crucial role in damping and reducing vibrations, which are essential for rider comfort and control.Our proposed design features a state-of-the-art suspension system that utilizes a combination of air springs and hydraulic dampers. This system provides unparalleled shock absorption and stability, allowing riders to tackle even the most challenging trails with ease. In addition, we have included innovative features such as adjustable rebound and compression damping, which allow riders to fine-tune their suspension settings for optimal performance in any conditions..

Scene 7 (3m 57s)

[Audio] The proposed design of our mountain bike incorporates several unique features that contribute to its excellent speed and handling. One such feature is the use of a lightweight carbon fiber frame, which reduces overall weight and improves maneuverability. Additionally, we have implemented a suspension system that provides optimal damping and vibration performance, allowing for smoother rides over rough terrain.Our design also includes high-quality components, such as hydraulic disc brakes and a precision-shifting drivetrain, that are crucial for achieving top speeds and responsive handling. By adhering to international standards and best practices in speed and handling, we have ensured that our mountain bike will perform at the highest level in competition..

Scene 8 (4m 43s)

[Audio] The proposed design for the MTB meets the cost requirement of not exceeding RM10k without compromising on quality. A detailed breakdown of the cost of components and materials is provided to ensure transparency and accuracy in budgeting.In summary, our proposal for a new MTB utilizes the latest technology and best practices in material selection, joining methods, suspension system, speed, and handling. With these features, we are confident that our design can win the competition and set a new standard in high-performance bike making..

Scene 9 (5m 19s)

[Audio] Thank You. Thank You.