Company Details

  • Marie Jay's Metal Products Co., Ltd

  •  [Hunan,China]
  • Business Type:Manufacturer , Trade Company
  • Main Mark: Africa , Americas , Asia , East Europe , Europe , Middle East , North Europe , Oceania , West Europe , Worldwide
  • Exporter:91% - 100%
  • Description:Titanium Plate,Titanium Sheets,Pure Titanium Plate,Steel Titanium Plate
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Marie Jay's Metal Products Co., Ltd

Titanium Plate,Titanium Sheets,Pure Titanium Plate,Steel Titanium Plate

Home > Products > Titanium Alloy Products > Titanium Plates and Sheets

Titanium Plates and Sheets

Product categories of Titanium Plates and Sheets, we are specialized manufacturers from China, Titanium Plate, Titanium Sheets suppliers/factory, wholesale high-quality products of Pure Titanium Plate R & D and manufacturing, we have the perfect after-sales service and technical support. Look forward to your cooperation!
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Standard Titanium Sheet and Plate

Model No. : 2017092102

Standard Titanium Sheet and Plate The titanium plate we produce is grade 1 titanium sheet, and the cold plate rectangle is adopted Titanium is extensive used in aviation industry, shipbuilding,chemistry,machinery parts, telecommunication equipment...

China Titanium Plate of with CE
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High Quality Titanium Plate/Sheet

Model No. : 2017031604

High Quality Titanium Plate/Sheet Thickness:0.1-20mm Length:50-3000mm Width:10-1200mm Standrad: ASTM B265,GB/T3621-2007 Condition: Hot Rolled / Cold Rolled , Annealing , Acid

China Manufacturer of Titanium Sheets
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China Titanium Plates and Sheets Suppliers
Titanium Plate with a surface of the oxide film is equivalent to a good wear-resistant. the use of titanium seed plate can save the separation agent and easy to strip plate, eliminating the kind of pre-treatment process. Meanwile, titanium plate is the half weight of Copper plate. Titanium alloys has been extensively used for the manufacturing of metal orthopedic joint replacements and bone plate surgeries. They are normally produced from wrought or cast bar stock by CNC, CAD-driven machining, or powder metallurgy production. Each of these techniques comes with inherent advantages and disadvantages. Wrought products come with an extensive material loss during machining into the final shape of the product and for cast samples the acquirement of a product in its final shape somewhat limits further processing and treatment (e.g. precipitation hardening), yet casting is more material effective. Traditional powder metallurgy methods are also more material efficient, yet acquiring fully dense products can be a common issue.
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