Engineering Explained3.91 млн
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Опубликовано 2 мая 2018, 14:00
How Ford's Flathead V8 Engine Works, And Why It Disappeared
Why Can't Pushrod Engine Rev High? youtu.be/S9E2nCXNHU8
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Ford Flathead V8 Engine Model:
thingiverse.com/thing:2537602
In 1932 Ford introduced the mass market to V8 engines, sticking a 3.6L flathead V8 producing a terrifying 65 horsepower in the Model 18. The engine lived on until 1953, until being finally replaced in 1954.
What was so special about the flathead V8? Mostly the simplicity of the design. Instead of complicated cylinder heads, they were now simply a single piece of relatively flat metal (flat head). This drove the cost of the engine down, allowing it to be built and sold on a larger scale.
The challenge, however, is that the engine suffered from poor airflow, especially at high RPM. In this video we'll discuss the valvetrain, and how the flathead design impedes airflow for high revving, high power engines. Not only was airflow a challenge, but the compression ratio was difficult to increase without further restrictions on airflow. Ultimately, improved technologies replaced the flathead in 1954.
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Why Can't Pushrod Engine Rev High? youtu.be/S9E2nCXNHU8
EE Shirts! - bit.ly/2BHsiuo
Recommended Books & Car Products - amzn.to/2BrekJm
Subscribe for new videos every Wednesday! - goo.gl/VZstk7
Ford Flathead V8 Engine Model:
thingiverse.com/thing:2537602
In 1932 Ford introduced the mass market to V8 engines, sticking a 3.6L flathead V8 producing a terrifying 65 horsepower in the Model 18. The engine lived on until 1953, until being finally replaced in 1954.
What was so special about the flathead V8? Mostly the simplicity of the design. Instead of complicated cylinder heads, they were now simply a single piece of relatively flat metal (flat head). This drove the cost of the engine down, allowing it to be built and sold on a larger scale.
The challenge, however, is that the engine suffered from poor airflow, especially at high RPM. In this video we'll discuss the valvetrain, and how the flathead design impedes airflow for high revving, high power engines. Not only was airflow a challenge, but the compression ratio was difficult to increase without further restrictions on airflow. Ultimately, improved technologies replaced the flathead in 1954.
Engineering Explained is a participant in the Amazon Influencer Program.
Don't forget to check out my other pages below!
Facebook: facebook.com/engineeringexplai...
Official Website: howdoesacarwork.com
Twitter: twitter.com/jasonfenske13
Instagram: instagram.com/engineeringexpla...
Car Throttle: carthrottle.com/user/engineeri...
Amazon: amazon.com/shop/engineeringexp...
EE Extra: youtube.com/channel/UCsrY4q8xG...
NEW VIDEO EVERY WEDNESDAY!
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