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Casting

Titanium Casting

Titanium casting is a process of creating complex shapes and components from titanium by pouring molten titanium into a mold and allowing it to solidify. It is a cost-effective method for producing high-quality titanium parts with intricate shapes, fine details, and precise dimensions. There are different types of titanium casting methods, including sand casting, investment casting, and die casting. The choice of casting method depends on the specific requirements of the part, such as the size, complexity, and quantity of parts needed.

Overall, titanium casting is a valuable manufacturing method for producing high-quality titanium parts with complex shapes and precise dimensions.

Advantage
AdvantageDescription
High Strength and DurabilityTitanium casting allows for the production of complex shapes and intricate designs that would be difficult or impossible to achieve with other manufacturing methods.
Precision and AccuracyTitanium casting provides high precision and accuracy in the production of parts, ensuring that the final product meets the required specifications and standards.
Cost-EffectiveTitanium casting is a cost-effective method for producing high-quality titanium parts, as it can reduce the amount of material waste and machining required.
VersatilityTitanium casting can be used to produce a wide range of components, including aerospace components, medical implants, and industrial machinery parts.


Grades Offered
  • Grade 2

  • Grade 5

Size Offered
  • As per drawings or samples

Standards Offered
ASME StandardsDescription
ASME SB367ASME SB367 is a specification standard published by the American Society of Mechanical Engineers (ASME) that covers the requirements for titanium and titanium alloy castings. The standard provides guidelines for the casting process, including the design, manufacture, and inspection of castings made from titanium and its alloys.
The standard covers various types of titanium castings, including sand castings, investment castings, and centrifugal castings. It also includes requirements for the chemical composition, mechanical properties, and heat treatment of the castings.


Testing Offered

Dimensional Testing

Mechanical Properties

Chemical Composition Analysis

Heat Resistance Testing

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