Titanium in the Automotive Industry
Why use Titanium in the automotive industry
With Titanium’s high melting point, corrosion resistance, and lightweight, it is becoming a highly desirable metal in the automotive industry. Utilizing titanium will result in lighter automotive parts that retain the same strength and integrity as the original steel parts. This in turn can improve the vehicle’s fuel economy and reduce its carbon footprint.
Luxury auto manufacturers, such as Bugatti, have begun using titanium in parts throughout the vehicle that continuously faces high-heat and corrosive environments. Brake calipers, engine valves, tire rims, and other mechanical parts are some of the many components that have been made from titanium. Titanium has the added benefit of continued strength versus traditional steel parts with also a reduction in the parts’ overall weight. This reduction in weight can help improve fuel and energy efficiency, and also the carbon emissions from the vehicle as a whole. Titanium is also known for being highly corrosion resistant, something that all automobiles face from elements like road salt and extreme cold. Parts made from Titanium will ultimately extend the life of the individual part and the vehicle as a whole.
Currently, the only limiting factor to the widespread use of titanium in the construction of automobiles is its relatively high cost of production, at roughly $4,800 USD per metric ton in 2018. In the future, improvements to the production and procurement of titanium should bring the cost of the metal down to the point where it can be priced competitively with steel.
As the manufacturing process of titanium improves and the costs come down, there will be a lucrative future for this metal in the construction of consumer-grade vehicles. Titanium one day could be as commonplace as aluminum or steel in our cars or motorcycles.
ADDere’s additive manufacturing can streamline the development and production process of large-scale components made from titanium. Contact us today and see if your manufacturing operations can benefit from ADDere’s additive manufacturing with titanium.
do you want to learn more about ADDere's products and services?
What's going on at ADDere
Latest Blog Posts
FABTECH 2024 Follow Up
Thank you to everyone who stopped by the Laser Mechanisms booth to see ADDere’s latest small format system at this year’s FABTECH in Orlando! The
The Advantages of Laser-Wire Deposition vs. Powder-Based Techniques
ADDere’s additive manufacturing process and systems are revolutionizing the way we think about manufacturing, offering unprecedented flexibility and innovation in manufacturing complex parts. Among the
Join Us at FABTECH 2024 in Orlando on October 15-17
ADDere will be showcasing the new ADDere Small Format additive system at our partner Laser Mechanisms booth (#W3029) at this year’s FABTECH in Orlando, FL
3D Printing Metal Structural Components On Demand
Metal structural hardpoints are critical components where significant loads and stresses are concentrated in a vehicle’s frame or body. These include mounting fixturing, tow/lift points,
How to Ensure Quality Control & Traceability in Your Printed Parts
The ADDere laser-wire additive manufacturing process creates complex metal parts by depositing layers of metal wire on a build plate. This process offers many advantages
Manage Your Inventory Efficiently with Additive Manufacturing
Inventory management is a critical aspect of any manufacturing company, where the balance between minimizing stock and ensuring the availability of materials can significantly impact