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Titanium Bars for Surgical Procedures Diverse Inventory Available for Urgent Delivery

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XI'AN FENGHUIHE INTERNATIONAL TRADE CO.,LTD.
Country/Region:china
Contact Person:MrMichael Zhang
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Titanium Bars for Surgical Procedures Diverse Inventory Available for Urgent Delivery

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Brand Name :FHH
Place of Origin :Xi'an,China
MOQ :200kgs
Payment Terms :L/C, D/P, T/T
Supply Ability :300mt per month
Delivery Time :5--8days
Packaging Details :All goods are packed by seaworth shipment materials or required by buyer
Grade :Commercially Pure (CP) Grade 1-4, 6AL-4V (Grade 5), 6AL-4V ELI (Grade 23)
Commodity :Titanium Ring
Corrosion Resistance :Excellent
Diameter :10mm----300mm
Weight :10kgs ----60kgs per Coil
Shape :Bar
Packing :In wooden box or required by buyer
Melting Point :1668 °C
Length :6000mm----12mmm
Size :Customizable
Certifications :ASTM B348, ASTM B861, ASME SB348, ASME SB861
Thermal Conductivity :21.9 W/mK
Surface :polishing
Yield Strength :Up to 128 ksi
Place :Baoji, Shaanxi, China
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Titanium Bars for Surgical Procedures Diverse Inventory Available for Urgent DeliveryTitanium Bars for Surgical Procedures Diverse Inventory Available for Urgent Delivery

Introduction to Titanium Bars

Titanium alloys are widely recognized as an ideal implant material due to their excellent compatibility with human tissue. Their unique properties make them invaluable in surgical and dental procedures. Titanium alloys are used to create a range of medical devices, including hip and femoral head implants, artificial vertebral bodies, knee and elbow joints, dental fixtures, pacemaker shells, heart valves, and even titanium mesh for cranial reconstruction.

We offer a diverse inventory of medical titanium rods in various sizes, including 3mm, 4mm, 5mm, 6mm, 8mm, 10mm, and 12mm. This extensive stock allows us to meet the urgent delivery needs of our customers, as well as accommodate smaller order requirements.
Titanium bars are solid, cylindrical pieces of metal primarily composed of titanium, known for their lightweight yet robust nature. They exhibit exceptional corrosion resistance and a high strength-to-weight ratio, making them suitable for critical applications across various industries. Manufactured through specialized processes that adhere to stringent industry standards, these titanium bars ensure reliability and performance in demanding environments.

In summary, the versatility and biocompatibility of titanium bars position them as a crucial element in the medical field, contributing significantly to advancements in patient care and surgical outcomes. Their availability in multiple sizes allows for flexibility in application, catering to both large-scale and urgent demands.


Chemical composition of medical tianium bar:

Material GradeTiAlVNbFe, maxC, maxN, maxH, maxO, max
Gr1Bal// 0.200.080.030.0150.18
Gr2Bal// 0.300.080.030.0150.25
Gr3Bal// 0.300.080.050.0150.35
Gr4Bal// 0.500.080.050.0150.40
Gr5 ELI Ti-6Al-4VELIBal5.5~6.53.5~4.5 0.250.080.050.0120.13
Ti-6Al-7NbBal5.5-6.5/6.5-7.50.250.080.080.009

0.20



Gr 5 titanium alloy bar / rod Chemical Composition

GradeTiCFeHNOAlV
Ti Grade590 min0.25 max0.2 max6 min4 min


Gr 5 titanium bar / rod Mechanical Properties

ElementDensityMelting PointTensile StrengthYield Strength (0.2%Offset)Elongation
Titanium Gr. 54.43 g/cm31632 °C (2970 °F)Psi – 138000 , MPa – 950

Psi – 128000 ,
MPa – 880

14 %


Equivalent Grades for Gr 5

STANDARDWERKSTOFF NR.UNS
Titanium Gr. 53.7165

N56400


Advantages of Titanium Rods

Titanium rods offer numerous advantages over traditional materials like steel and aluminum. Here are some key benefits:
Biocompatibility: One of titanium's standout properties is its biocompatibility. It is non-toxic and does not induce adverse reactions in the human body, making it a preferred material for medical implants, dental devices, and prosthetics. Its use in healthcare continues to expand, driven by its safety and effectiveness.
Non-magnetic: Titanium is inherently non-magnetic, making it an ideal choice for applications in medical equipment, such as MRI machines, where magnetic interference could disrupt functionality. This property is crucial in ensuring the safety and accuracy of medical imaging.
Strength: Titanium boasts a very high strength-to-weight ratio, meaning it is stronger than steel while remaining significantly lighter. This property is particularly beneficial in applications where reducing weight is critical, such as in aerospace and automotive industries.
Corrosion Resistance: The natural oxide layer on titanium provides exceptional resistance to corrosion. This feature enables titanium to perform reliably in harsh environments, including marine and chemical applications, where other materials might degrade quickly.
Durability: Titanium is highly resistant to wear and tear, significantly outlasting many other materials. This durability translates to lower maintenance costs and longer service life in various applications, from industrial machinery to consumer goods.
Aesthetics: Titanium has a unique and attractive appearance that makes it popular in jewelry and decorative applications. Its lustrous finish and ability to take on vibrant colors through anodization have made titanium a fashionable choice for high-end accessories.

Technical Parameters:

NameMaterialShapeSurfaceStandardsGrade
Titanium Bar / Titanium RodTitanium Metal Or AlloySquare, round, HexagonalPolished, Sandblasted, Anodized, black, picking Sand-blastingASTM B348, ASME SB348, ASTM F67, ASTM F136, AMS4928, AMS2631bGr1, Gr2, 3, 4, 5, 9, 12

Applications:

Orthopedic implants include artificial joints, metal plates, orthopedic nails, metal orthopedic use rods, intramedullary nails, bone needles, and spinal fixation devices.
Heart medicine implants are also available, such as artificial heart valves, cardiac pacemakers, cardiac catheters and stents within blood vessels.
Ophthalmic implants consist of artificial crystals while dental implants include dental implants, traction nails, nail plant root canal, and internal fixation devices, among others.
Moreover, there are also available filling materials for breast filling, intraocular filling materials, and filling materials in orthopedics.




























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