Titanium Carbide

Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

Titanium Carbide embodies the pinnacle of advanced ceramic technology, offering an unparalleled blend of hardness, wear resistance, and thermal stability.

Get A Quote
Contact Us

Overview of Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

Titanium Carbide (TiC) is a technical ceramic material renowned for its exceptional hardness, wear resistance, and high melting point. Composed of titanium and carbon atoms, it forms a part of the wider family of transition metal carbides. Its unique combination of properties makes it a versatile and valuable component in various industrial applications where extreme conditions necessitate robust and durable materials.

Features of Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

  1. Exceptional Hardness: With a Vickers hardness ranging from 2000 to 3200 Hv, TiC ranks among the hardest materials, surpassing many steels and rivaling tungsten carbide.

  2. High Melting Point: Boasting a melting point of approximately 3160°C, titanium carbide is ideal for high-temperature applications where stability and strength are crucial.

  3. Oxidation Resistance: Forms a protective oxide layer at elevated temperatures, slowing down further oxidation and enhancing its performance in oxidative environments.

  4. Chemical Stability: Resistant to most acids and alkalis, TiC maintains its integrity in corrosive conditions, excluding hydrofluoric acid and strong alkalis.

  5. Thermal Conductivity: Exhibits good thermal conductivity, facilitating heat dissipation and enhancing performance in high-heat-load applications.

  6. Density: Despite its hardness, titanium carbide has a relatively low density of about 4.93 g/cm³, contributing to its use in lightweight yet durable structures.

Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

(Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade)

Parameters of Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

The parameters of a lathe blade for CNC lathe machining tools include the size and shape of the blade, the material it is made from (CNC tool steel, titanium or stainless steel), and any specific requirements such as tooth spacing, grind patterns, or wear resistance.
CBN inserts are commonly used in CNC lathe machining to provide improved cutting performance by increasing the tool’s speed, reducing friction, and minimizing metal loss. The CBN insert can be made of various materials such as carbon steel, silicon carbide, and diamond carbide.
Titanium alloy and stainless steel are two popular materials for CNC lathe blades due to their high strength-to-weight ratio, low coefficient of thermal expansion, and good corrosion resistance. However, the choice of material will depend on factors such as cost, availability, and intended application.
In summary, the parameter of a lathe blade for CNC lathe machining tools will depend on the specific requirements of the job, the desired cutting performance, and the materials available.

Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

(Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade)

Applications of Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

  1. Cutting Tools: Integrated into tool bits, inserts, and milling cutters due to its wear resistance and heat tolerance, enhancing tool life and machining efficiency.

  2. Metalworking: As hardfacing coatings for dies, molds, and wear parts subjected to severe abrasive or erosive conditions.

  3. Cemented Carbides: Mixed with other carbides and binders to form cemented carbide composites for drill bits, end mills, and other cutting tools.

  4. Abrasive and Wear-Resistant Components: Used in pump parts, valve components, and seals where resistance to wear and corrosion is vital.

  5. Military Armor: Incorporated into armor plating due to its hardness and lightweight properties, offering enhanced protection without adding excessive weight.

  6. Chemical Processing Equipment: For parts that come into contact with corrosive chemicals, benefiting from TiC’s resistance to chemical attack.

Company Profile

MyCarbides is a trusted global chemical material supplier & manufacturer with over 12-year-experience in providing super high-quality carbides and relative products.

The company has a professional technical department and Quality Supervision Department, a well-equipped laboratory, and equipped with advanced testing equipment and after-sales customer service center.

If you are looking for high-quality carbide materials and relative products, please feel free to contact us or click on the needed products to send an inquiry.

Payment Methods

L/C, T/T, Western Union, Paypal, Credit Card etc.

Shipment

It could be shipped by sea, by air, or by reveal ASAP as soon as repayment receipt.

FAQs of Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

Q: How is Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade manufactured?
A: Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade is typically produced through a process called carbothermal reduction, which involves reacting titanium dioxide with carbon at high temperatures.

Q: Is Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade biocompatible?
A: While pure titanium is highly biocompatible, the biocompatibility of titanium carbide depends on the specific application and the potential release of titanium ions. Further testing is necessary for biomedical applications.

Q: How does Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade compare to tungsten carbide in terms of hardness and toughness?
A: Both materials are hard, but tungsten carbide (WC) is slightly harder and tougher than titanium carbide, making WC more commonly used in tooling applications.

Q: Can Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade be machined?
A: Due to its extreme hardness, traditional machining methods are challenging. Instead, TiC components are often formed through powder metallurgy, sintering, or by applying coatings via thermal spray or Physical Vapor Deposition (PVD).

Q: What are the main advantages of using Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade in cutting tools?
A: TiC enhances tool life, allows for higher cutting speeds, and improves wear resistance, especially in applications involving high temperatures or abrasive materials.

Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade

(Lathe blades for CNC lathe machining tools cbn insert turning tools Titanium alloy stainless steel hard machining blade)

Scroll to Top