CNC Aluminum Parts
Custom-Made CNC Titanium Parts Precision Machining to Your Specifications!
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Titanium
Key Uses and Applications Due to its unique metallurgical properties, titanium is widely utilized across several heavy and specialized industries:
Aerospace and Defense: Because of its low density and ability to withstand high temperatures, over 80% of titanium metal goes into manufacturing aircraft, missiles, and spacecraft.
Medicine: It is the standard material for joint replacements (like hip and knee arthroplasty), bone screws, and dental fixtures.
Consumer Goods: It is utilized in luxury watches, sporting goods (like bicycle frames and golf clubs), and marine hardware.
Classification of Titanium Alloys by Composition
Commercially Pure Titanium: Pure titanium that does not contain other alloying elements, primarily composed of titanium.
Titanium Alloy: Contains other alloying elements in addition to titanium, such as aluminum, vanadium, tin, zirconium, iron, etc., to enhance its properties or suit specific application requirements.
| Type | Model | Material Properties | Application Industries | ||
| Commercially Pure Titanium | TA1 (GB Standard) | Pure titanium, lowest strength, highest ductility, excellent corrosion resistance | Chemical, Marine Equipment, Medical Devices | ||
| TA2 (GB Standard) | Pure titanium, medium strength, good toughness and corrosion resistance | Aerospace, Industrial, Biomedical | |||
| TA3 (GB Standard) | Pure titanium, high strength, excellent wear resistance and corrosion resistance | Construction, Aerospace, Chemical | |||
| TA4 (GB Standard) | Pure titanium, the highest strength, good corrosion resistance and formability | Aerospace, Marine Exploration, High-Performance Applications | |||
| Titanium Alloy | Ti-6Al-4V (TC4) | High strength, good toughness and corrosion resistance, weldable | Aerospace, Automotive, Biomedical, Sports Equipment | ||
| Ti-6Al-4V ELI (Extra Low Interstitial) | Low impurities, higher purity and toughness | Medical Implants, Aerospace, Chemical | |||
| Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) | High strength, excellent high-temperature performance and creep resistance | Aerospace Engines, Military Applications | |||
| Ti-10V-2Fe-3Al (Ti-10-2-3) | Extremely high strength and fatigue resistance, excellent formability | Aerospace, Sports Equipment, High-Performance Engineering Components | |||
CNC Machining Manufacturer
Selection Guide
Titanium alloys offer high strength, corrosion resistance, and thermal stability for aerospace; biocompatibility for medical implants and devices; and are used in industrial applications like chemical equipment and shipbuilding.
| Application Area | Model | Material Properties | Application Industries |
|---|---|---|---|
| Aerospace | Ti-6Al-4V (TC4) | Excellent strength, corrosion resistance, and thermal stability | Aerospace, aircraft engine manufacturing, etc. |
| Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) | High strength, excellent high-temperature performance, and creep resistance | Aerospace | |
| Ti-10V-2Fe-3Al (Ti-10-2-3) | Excellent high-temperature strength and corrosion resistance | Aerospace, aircraft engine manufacturing, etc. | |
| Medical | Ti-6Al-4V ELI (Extra Low Interstitial) | Low impurities, higher purity, and toughness | Medical devices, orthopedic implants, artificial joints, etc. |
| Ti-6Al-7Nb (TAVNS) | Good biocompatibility | Medical devices, orthopedic implants, artificial joints, etc. | |
| Industrial | Ti-3Al-2.5V (Ti-3-2.5) | High toughness and good corrosion resistance, high fatigue resistance | Chemical equipment, marine engineering, shipbuilding, etc. |
| Ti-6Al-4V (TC4) | Excellent corrosion resistance and strength, high mechanical performance | Chemical equipment, marine engineering, shipbuilding, etc. | |
| Ti-6Al-4V ELI (Extra Low Interstitial) | High strength, corrosion resistance, excellent welding, and machining properties | Chemical equipment, marine engineering, shipbuilding, etc. |
Industries We Can Mill For
Precision CNC Auto Parts Manufacturing for the Automotive Industry

Aerospace
Cabin and exterior, lighting and vents components. jigsand fixtures in the aviation industry

Automotive
Interior and exterior parts, under-the-hood componentsin the automotive and EV industry

Electronic
Casing. housing and components of cellphones,headphones, game controllers, cameras in theconsumerarea

Medical
Medical items and healthcare devices, shells andsurgical instruments in the medical and healthcareindustry
Classification of Titanium Alloys by Structure
Titanium alloys can be classified into three types based on their crystal structure at room temperature:
α (Alpha) Titanium Alloys, β (Beta) Titanium Alloys, α-β (Alpha-beta) Titanium Alloys.
| Types of Titanium Alloys | Model | Typical Alloys | Structural Characteristics | Applications |
|---|---|---|---|---|
| α (Alpha) Titanium Alloys | α(Alpha) | Ti 5Al-2.5Sn, Ti 8Al-1Mo-1V | Pure α phase, hexagonal close-packed structure (HCP) | Alpha (α) Alloys: Chemical, marine, and aerospace applications requiring good weldability, toughness, and corrosion resistance |
| β (Beta) Titanium Alloys | β(Beta) | Ti 15V-3Cr-3Sn-3Al, Ti 10V-2Fe-3Al | Pure β phase, body-centered cubic structure (BCC) | Beta (β) Alloys: Aerospace and sports equipment applications requiring high strength, excellent weldability, and formability |
| α-β (Alpha-beta) Titanium Alloys | α-β(Alpha-beta) | Ti-6Al-4V, Ti-6Al-6V-2Sn | Mixed α and β phases, this is the most common type of titanium alloy | Alpha-beta (α-β) Alloys: Aerospace, medical devices, automotive, and industrial applications requiring high strength and good corrosion resistance |
Advantages of Metal machining



1
Unmatched Precision
Maintains tolerances within +/- 0.002 inches, so even the most demanding designs receive the accurate, high-quality parts they require.
2
Material Versatility
Aluminum, steel, titanium, or one of many exotic alloys-the machine accepts whatever stock your application demands without special tooling delays.
3
Scalable Production
Whether you need a handful of prototypes or thousands of finished units, the equipment adjusts easily and cost-effectively to changing order sizes.
List of Titanium and Titanium Alloy Materials
| Type | Model | Material Properties | Application Industries | ||
|---|---|---|---|---|---|
| Pure Titanium | Grade 1 | Softest, good ductility, weldability, corrosion resistance | Chemical, Marine, Aerospace | ||
| Pure Titanium | Grade 2 | Good strength, ductility, and weldability | Chemical, Marine, Aerospace, Biomedical | ||
| Pure Titanium | Grade 3 | High strength, good corrosion resistance, and weldability | Extracorporeal Orthopedic Applications, Aerospace, Chemical | ||
| Pure Titanium | Grade 4 | Strongest commercial pure titanium, good corrosion resistance, and weldability | Aerospace, Chemical, Biomedical | ||
| α Alloy | Ti 5Al-2.5Sn | Good corrosion resistance, high toughness, high-temperature resistance | Aerospace, Military, Marine | ||
| α Alloy | Ti 8Al-1Mo-1V | High strength, good corrosion resistance, and creep resistance | Aerospace Engine Components | ||
| Near α Alloy | Ti 6Al-2Sn-4Zr-2Mo | Good corrosion resistance, creep resistance, and fracture toughness | Aerospace Engine Components | ||
| α-β Alloy | Ti-6Al-4V (Grade 5) | Most commonly used, excellent strength, toughness, and corrosion resistance | Aerospace, Biomedical, Automotive, Industrial | ||
| α-β Alloy | Ti-6Al-4V ELI | Low oxygen version, higher purity and toughness | Medical Implants, Aerospace | ||
| β Alloy | Ti 15V-3Cr-3Sn-3Al | High strength, superior formability, and outstanding corrosion resistance | Aerospace, Sports Equipment | ||
| β Alloy | Ti 10V-2Fe-3Al | Very high strength and fatigue resistance, can significantly enhance properties through heat treatment | Aerospace, Sports Equipment | ||
| Special Alloy | Ti-5.5Al-3.5Sn-3Zr-1Nb-0.25Mo-0.7Si | High strength, high-temperature, and creep resistance | High-Temperature Aerospace Applications | ||
CNC Machining Parts Case Study













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Unlocking the Potential of CNC Metal Machining: Precision and Efficiency
Precision and Efficiency
With CNC machining, custom metal parts are made faster and more accurately, meeting a wide range of project demands.
How CNC Machines Work
Each machine follows CAD instructions that control every cut, so finished pieces look the same from the first item to the last.
The Machining Process
Digital plans guide durable cutting tools that shape raw stock into tight-tolerance components for nearly any application.
our partners trust us






James Carter
Aerospace Systems Manufacturer
“Boraco has become one of our most reliable suppliers for titanium CNC machining. Their team consistently delivers complex titanium components with exceptional dimensional accuracy and outstanding surface quality. Their engineering support has helped us shorten development time on multiple aerospace projects.”
Dr. Emily Rodriguez
Medical Device Company
“We required high-precision titanium parts for surgical instruments and implant systems, and Boraco exceeded our expectations. Their machining quality, inspection process, and communication were excellent throughout the entire project. We highly recommend their titanium machining services.”
Daniel Thompson
Industrial Equipment Manufacturer
*”Finding a supplier capable of machining titanium efficiently is never easy, but Boraco delivered exactly what we needed. Their 5-axis machining capability, competitive pricing, and fast lead times allowed us to launch our new product ahead of schedule. We’ll definitely continue working with them.”
ready to reach new heights? Let's get there, together.
Trust Boraco CNC Machining Service for exceeding accuracy and speed at cost-effective pricing. Reach out to us right now for your tailored quote and usher in a new episode of manufacturing greatness with Baetro.
Frequently Asked Questions
Most frequent questions and answers
What titanium CNC machining services do you offer?
We provide comprehensive titanium CNC machining services for prototypes and production runs. Our capabilities include CNC milling, CNC turning, drilling, tapping, threading, surface finishing, and precision inspection.
Whether you need a single prototype or thousands of custom titanium parts, our experienced engineering team can deliver high-performance components that meet your exact specifications.
Why is titanium widely used in CNC machining?
Titanium offers an exceptional combination of high strength, low weight, corrosion resistance, and excellent heat resistance, making it one of the most valuable engineering materials.
It is commonly used in:
- Aerospace and defense
- Medical implants
- Automotive performance parts
- Marine equipment
- Energy systems
- Industrial machinery
These properties make CNC titanium parts ideal for applications where durability and reliability are critical.
Can you manufacture custom titanium parts from my drawings?
Absolutely.
We specialize in custom titanium machining based on customer-supplied CAD files, technical drawings, or physical samples.
Our engineering team also provides:
- Design for Manufacturability (DFM)
- Material recommendations
- Prototype development
- Low-volume production
- High-volume manufacturing
We help customers optimize designs while reducing production costs and lead times.
What titanium grades can you machine?
Our titanium machining services support a wide range of commercial titanium alloys, including:
- Grade 2 Titanium
- Grade 5 Titanium (Ti-6Al-4V)
- Grade 7 Titanium
- Grade 9 Titanium
- Grade 23 Titanium (Medical Grade)
If your project requires a specific alloy, our engineers can recommend the most suitable material based on strength, corrosion resistance, weight, and application requirements.
Do you provide both titanium milling and titanium turning?
Yes.
Our facility is equipped with advanced multi-axis CNC machining centers capable of both titanium milling and turning titanium components.
We manufacture:
- Precision shafts
- Housings
- Medical implants
- Aerospace brackets
- Valve components
- Complex structural parts
Combining milling and turning in-house improves accuracy, shortens lead times, and reduces manufacturing costs.
Do you offer anodizing and surface finishing for titanium parts?
Yes.
In addition to machining titanium, we offer a variety of finishing options, including:
- Titanium anodizing
- Sandblasting
- Polishing
- Bead blasting
- Passivation
- Laser marking
Anodizing titanium improves corrosion resistance while producing attractive color finishes for medical, aerospace, and consumer products.
Which industries use your titanium CNC machining services?
Our titanium CNC machining services support customers across numerous high-performance industries, including:
- Aerospace & Defense
- Medical Devices
- Robotics
- Marine Engineering
- Energy Equipment
- Semiconductor Manufacturing
- Automotive Motorsport
- Consumer Electronics
From lightweight aerospace structures to precision medical implants, we manufacture machined titanium components that meet demanding industry standards.
Why choose Boraco for titanium CNC machining?
Boraco delivers precision, consistency, and engineering expertise for every titanium project.
Our advantages include:
- Advanced 3-, 4-, and 5-axis CNC machining
- Tight tolerances up to ±0.005 mm
- 24/7 technical support
- ISO 9001 & ISO 14001 certified manufacturing
- Rapid prototyping to mass production
- Experienced engineering team
- Strict quality inspection
- Fast global delivery
Whether you require titanium CNC machining services for aerospace, medical, or industrial applications, Boraco provides reliable manufacturing solutions from prototype to production.


