When your application demands ultra‑high strength at minimal weight, long‑term durability in corrosive media, dimensional stability under extreme temperatures, or compatibility with human tissue, titanium alloy is the unrivaled choice – the “space age metal” and “biometal.” As a professional OEM manufacturer, we combine deep expertise in titanium metallurgy with years of dedicated machining experience to provide global clients with a one‑stop CNC machining service – from non‑standard customization to volume production – turning your drawings and concepts into precision titanium components that meet the most stringent international standards.

Why Choose Titanium Alloy?
With its unique combination of properties, titanium alloy occupies an irreplaceable position in aerospace, medical devices, automotive motorsport, chemical equipment, marine engineering, and many other fields:
- Exceptional specific strength: Titanium has a density of approximately 4.5 g/cm³ (only 60% of steel), while tensile strength can exceed 1000MPa – its strength‑to‑weight ratio surpasses that of most structural steels and aluminum alloys.
- Excellent corrosion resistance: The dense oxide film that forms on titanium makes it almost immune to corrosion in seawater, chlorides, and acidic/alkaline media – superior to stainless steel.
- Outstanding heat resistance: With a wide operating temperature range, titanium alloys can be used continuously at 400‑600°C, outperforming aluminum and magnesium alloys.
- Excellent biocompatibility: Non‑toxic, non‑allergenic, and with outstanding osseointegration, titanium is the preferred material for implant‑grade medical devices.
- Low elastic modulus: Close to that of human bone, reducing stress‑shielding effects and promoting bone healing.
However, these remarkable properties also bring significant machining challenges: low thermal conductivity (about ¼ that of steel) makes heat dissipation difficult; low elastic modulus causes spring‑back and vibration; high chemical reactivity leads to tool material reactions at elevated temperatures; and severe work‑hardening tendencies. These challenges demand specialized tooling, cooling strategies, cutting parameters, and rigid machine tools – and that is exactly where our core expertise lies.

Titanium Alloy Grades We Machine (Comprehensive Range – Commercially Pure, α, α+β, and β Alloys)
We specialize in precision machining of a full spectrum of titanium alloy grades, covering ASTM, AMS, GB/T, ISO, and other international standards:
Commercially Pure Titanium (Grade 1‑4)
Representative grades: TA1, TA2, TA3, TA4 (ASTM Grade 1/2/3/4)
Features: Pure titanium with purity decreasing from 99.5% to lower levels, strength increasing while ductility decreases. Excellent corrosion resistance and formability.
Typical parts: Chemical heat exchanger tube sheets, electrolytic cell components, seawater desalination pipe flanges, pump bodies, valves, connectors; small implant fixation screws in medical devices; eyeglass frames, watch cases; food processing agitator blades
α‑Type Titanium Alloys (Near‑α and Full‑α)
Representative grades: TA7 (Ti‑5Al‑2.5Sn), TA10 (Ti‑0.3Mo‑0.8Ni), TA15 (Ti‑6Al‑2Zr‑1Mo‑1V)
Features: Stable microstructure, good weldability, excellent heat resistance and creep resistance, suitable for high‑temperature service.
Typical parts: Aircraft engine casings, rings, blades; missile structural parts; high‑temperature pipe flanges, heat exchanger fins; chemical reactor liners
α+β‑Type Titanium Alloys (Most Widely Used)
Representative grades: TC1, TC2, TC4 (Ti‑6Al‑4V, ASTM Grade 5), TC4 ELI (ASTM Grade 23, medical grade), TC6, TC11, TC21, Ti‑6Al‑2Sn‑4Zr‑2Mo (Ti‑6242), Ti‑6Al‑2Sn‑4Zr‑6Mo (Ti‑6246)
Features: Excellent overall performance – TC4 accounts for over 60% of global titanium alloy production. TC4 offers good strength, toughness, corrosion resistance, and machinability. TC4 ELI (extra low interstitial) provides higher fracture toughness, specifically for medical implants and critical aerospace components. Ti‑6242 and Ti‑6246 are used for higher‑temperature (500‑550°C) engine parts.
Typical parts (TC4/TC4 ELI): Aircraft structural components (ribs, frames, beams), engine fan blades, compressor disks, casings, connectors, fasteners (bolts, nuts); medical devices (hip stems, knee components, bone screws, bone plates, spinal fusion cages, dental implants); automotive connecting rods, valves, springs, exhaust system components; sporting goods (golf club heads, tennis racket frames, bicycle frames)
β‑Type Titanium Alloys (Metastable β and Near‑β)
Representative grades: TB2, TB6 (Ti‑10V‑2Fe‑3Al), Ti‑15V‑3Cr‑3Al‑3Sn (Ti‑15‑3), Ti‑5Al‑5Mo‑5V‑3Cr (Ti‑5553), BT22
Features: Extremely high strength (up to 1400MPa), good ductility, significant precipitation‑hardening response, suitable for cold forming. TB6 is used for aerospace structural parts; Ti‑5553 is used for landing gear and high‑load components.
Typical parts: Aircraft landing gear components, wing root fittings, high‑strength fasteners; spacecraft structural parts; racing suspension systems, steering knuckles; deep‑sea submersible pressure hulls; oilfield drilling tool connectors; high‑performance springs
Heat‑Resistant Titanium Alloys (High‑Temperature)
Representative grades: Ti‑6Al‑2Sn‑4Zr‑2Mo (Ti‑6242), Ti‑6Al‑2Sn‑4Zr‑6Mo (Ti‑6246), IMI 834 (Ti‑5.8Al‑4Sn‑3.5Zr‑0.7Nb‑0.5Mo‑0.35Si)
Features: Excellent heat resistance, continuous service up to 550‑600°C, outstanding creep and fatigue resistance.
Typical parts: Aircraft engine high‑pressure compressor disks, blades, casings; turbine engine stator vanes; missile fins; gas turbine components
Our Core Strengths: Flexibility, Efficiency, and High Cost‑Effectiveness
- Professional OEM Services: As an experienced OEM manufacturing partner, we produce parts strictly to your drawings and technical requirements, providing full traceability documentation and material certificates (including chemical composition, mechanical properties, and metallographic reports). You get high‑quality finished titanium components without the need to build your own expensive high‑end manufacturing facility.
- Zero‑Hurdle Non‑Standard Customization: No matter how complex your design – with thin walls, deep cavities, slender shafts, free‑form surfaces, or micro‑threads – we welcome custom orders. Our engineering team designs rational process routes, tooling selections, and cooling strategies specifically for titanium, making non‑standard titanium parts straightforward.
- Small‑Batch Trial Production Support: From 1 piece, 10 pieces, to hundreds – we warmly welcome small‑batch trial orders. Given the high cost of titanium raw materials, we understand the need for thorough validation before volume production. We provide the same high‑standard engineering support and inspection for trial orders, never compromising quality because of low quantities.
- Highly Competitive Pricing: Titanium raw materials are expensive, but we significantly improve machining efficiency and reduce tool consumption by optimizing tool paths, employing high‑performance carbide and ceramic tooling, and using high‑pressure coolant and cryogenic machining techniques. We offer competitive and transparent pricing, helping you control total costs in high‑end material applications.
- 100% On‑Time Delivery Guarantee: Delivery is our reputation. With digital production scheduling and dedicated production lines, we ensure efficient flow of titanium orders. Small‑batch trial orders can ship in as little as 72 hours, and our overall on‑time delivery rate for production orders remains above 98%, keeping your high‑end project schedules on track.

Industries We Serve and Typical Parts (Titanium‑Specific)
Aerospace & Aviation
Titanium is the core material for lightweighting in aerospace structures. Parts we machine include: aircraft wing ribs, fuselage frames, engine mounting brackets, fan blades, compressor disks, blades, casings, rings, connectors; landing gear outer cylinders, piston rods, torsion links; hydraulic actuating cylinders, pistons, tube fittings, high‑pressure conduit clamps; fasteners (high‑strength titanium bolts, self‑locking nuts, washers); missile control surfaces, wing surfaces, fin structures; spacecraft propellant tanks, satellite structural frames
Medical Devices & Implants
Titanium’s biocompatibility makes it the first choice for implant‑grade applications. Parts include: hip joint prostheses (femoral stems, acetabular cups), knee joint prostheses (tibial platforms, condylar components), spinal fusion cages, interbody fusion cages, bone screws, bone plates, intramedullary nails, cranial mesh plates; dental implant abutments, root screws; surgical instruments (needle holders, scissors handles, bone drills, bone saw guides); medical sensor housings, artificial heart pump casings, blood filter housings
Motorsport & High‑Performance Vehicles
Titanium is used for weight reduction and performance enhancement. Parts include: engine connecting rods, valves, valve springs, spring seats, exhaust manifolds, exhaust pipes, mufflers; suspension springs, stabilizer bars, control arms; transmission shafts, gears; brake calipers, pistons; differential housings; wheel hub bolts, wheel nuts; turbocharger rotors
Chemical & Energy
Titanium’s exceptional corrosion resistance suits harsh media environments. Parts include: heat exchanger tube sheets, tubes, baffle plates; reactor stirring shafts, agitator blades; pump bodies, impellers, pump shafts, mechanical seal housings; valve bodies, stems, discs; electrolytic cell electrodes, electrode frames, busbar connectors; seawater desalination pipe flanges, fittings, elbows; flue gas desulfurization nozzles, spray pipes
Marine Engineering
Titanium offers outstanding resistance to seawater corrosion. Parts include: deep‑sea submersible pressure hulls, flanges, viewport frames; marine propulsion shafts, propellers, rudder stocks; marine pump bodies, valves, piping system connectors; offshore platform structural connectors, bolts; sonar domes, sensor housings
Sporting Goods & Luxury Goods
Titanium is used in high‑end consumer products. Parts include: golf club heads and shafts; tennis racket frames; bicycle frames, forks, handlebars, seat posts; ski bindings; carabiners, outdoor knives; eyeglass frames, watch cases, phone bezels, earphone housings
Mold & Tooling
Titanium can also be used for specialized molds and tools, such as: hot‑forming die inserts, injection mold cores, stamping punches; precision gauge bases; fixture locating pins, guide bushes









From Prototype to Production – Flexible Response to Every Order
Whether you need a single prototype for validation, a few dozen pieces for small‑batch trial production, or large‑scale volume, we deliver consistent quality and reliable lead times. We have no minimum order quantity and especially welcome trial orders for new material validation and high‑end product development.
Partner with Us – You Will Get:
- Professional OEM experience and a full‑scale quality control system (including value‑added services like ultrasonic inspection, fluorescent penetrant inspection, and hardness testing)
- Comprehensive machining capabilities covering commercially pure titanium, α, α+β, and β alloys – over 20 grades in total
- Strong non‑standard customization – thin walls, complex surfaces, and deep holes are no problem
- Small‑batch trial production support – from 1 piece upward, zero barrier
- Highly competitive and cost‑effective pricing – process optimization effectively controls titanium machining costs
- Over 98% on‑time delivery rate for your peace of mind
- Optional one‑stop surface treatment services (anodizing, acid pickling, passivation, micro‑arc oxidation, polishing, etc.)
- 24/7 rapid response and professional engineering support
Get Your Project Started Today
Send us your drawings (2D or 3D) and specifications. Our engineering team will review your requirements within 24 hours, recommend the optimal titanium alloy grade, and provide a free process evaluation and a competitive quotation. Let us show you why we are the trusted OEM partner for precision titanium alloy CNC machining.

We provide custom machined parts, 5-axis linkage CNC machining, and the design, production, and assembly of machinery and equipment.