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Custom Made 98mm Titanium Disk GR1 GR2 GR5 6AL4V Eli Grade High Strength

Place of Origin Shanxi China (mainland)
Brand Name Futrue
Certification ISO 9001
Model Number FTB,FTBA
Minimum Order Quantity negotiation
Price Negotiable
Packaging Details Inner packaging:plastic bag packaged with supporting thing inside Outer packaging:plywood case with strips as you request
Delivery Time Depend on real situation,AS general:2-15days
Payment Terms T/T, Western Union, Paypal, Credit card, Money Gram
Supply Ability 10 ton
Product Details
Name Titanium Disc Replacement In Neck Feature High Strength
Application Medical Grade GR1 GR2 GR5 6AL4V
Ti (Min) 99.6% Standard ASTM F67 F136
High Light

titanium alloy

,

grade 5 titanium

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Product Description

Custom Made 98mm Titanium Disk GR1 GR2 GR5 6AL4V Eli Grade High Strength

 

Titanium Disc Advantage :

 

o Economical

o Excellent bio-compatibility

o Can be aesthetically veneered with ceramic

o X-ray translucent

o Low thermal conductivity

o Light weight

o Allows conventional cementation

o Tensile strength 90,000 to 100,000 N/mm²

 

Description:

 

Product Dental titanium disc
Grade GR1, GR2, GR5, 6AL4V Eli
Standard ASTM F67, ASTM F136
Specification Diameter:98mm,98.5mm Th:customize
Features low density, high strength, strong corrosion resistance

 

Heat Treatment

 

Titanium alloys are heat treated for a number of reasons, the main ones being to increase strength by solution treatment and aging as well as to optimize special properties, such as fracture toughness, fatigue strength and high temperature creep strength.

 

Alpha and near-alpha alloys cannot be dramatically changed by heat treatment. Stress relief and annealing are the processes that can be employed for this class of titanium alloys. The heat treatment cycles for beta alloys differ significantly from those for the alpha and alpha-beta alloys.

 

Beta alloys can not only be stress relieved or annealed, but also can be solution treated and aged. The alpha-beta alloys are two-phase alloys, comprising both alpha and beta phases at room temperature. Phase compositions, sizes, and distributions of phases in alpha-beta alloys can be manipulated within certain limits by heat treatment, thus permitting tailoring of properties.