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All You Need To Know About Titanium Tubes

by SagarSurve22
Titanium Tube Supplier

Titanium Tubes

Using Titanium Presents Certain Challenges

Titanium is not a universal material that can be used in all circumstances.

Stainless Steel vs Titanium

The fact that the material is a little more brittle and more challenging to draw than stainless steel is one of the challenges. This makes working with titanium more difficult.

Titanium can be drawn into a tube, but the technique does not yield the same lovely, smooth surface as drawing stainless steel does. While stainless steel can be drawn to a far smoother Ra 3-4 microinch or better, titanium can only be drawn as low as Ra 8–10 micro inches by some businesses.

Any liquid that must travel through the titanium tube by a Titanium Tube Supplier could have its microfluidic properties affected by its rougher ID. This might be a problem in applications where the liquid’s smooth flow is crucial.

This is unimportant for the majority of medical device applications because the tube will transport blood and other body fluids. In applications where the tube must convey minuscule fluid quantities, turbulence is a significant issue.

The capacity to manufacture titanium tubes

Titanium is more difficult for a machine to work with since it is more fragile and less forgiving. The likelihood that you may experience chipping and other surface roughness problems increases the more processing that must be done to titanium to produce your final product.

Additionally, titanium requires more coolant during machining than other materials. To flood the region with coolant, high-pressure coolant must be fed precisely where the machining is taking place from a variety of nozzles and angles.

The joints of tubes are also infrequently made of titanium. In particular for medical equipment where a lot of machining is required to manufacture flares, swages, and threading at the sites of connection, the metal of any kind accounts for a relatively small fraction of the tube fittings market.

Instead, high durability PEEK (polyether ether ketone) or other specialist polymers that are simpler to mold and machine are used increasingly frequently for tube fittings for medical devices.

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