High strength, low density titanium machining parts.

High strength, low density titanium machining parts.

Imagine holding a titanium machining part that feels incredibly light and strong. As you run your fingers over its smooth surface, you can sense the precision and durability that went into crafting this extraordinary piece. With its low density and high strength, this titanium part is the epitome of quality and performance, a testament to the unmatched expertise of the manufacturer.

Titanium alloy has been widely used in the aerospace industry because of its high strength, low density, and high corrosion resistance. However, in the process of processing, tool durability is low, thermal conductivity is small, and the sticky knife is serious, which it difficult to process materials.

Products Details

Product advantages

Our high strength, low density titanium machining parts are created with precision craftsmanship to ensure durability and reliability. With superior strength and a lightweight design, our parts offer unmatched performance while reducing overall weight in your application. The advanced machining capabilities of our titanium parts also provide exceptional accuracy and surface finish, setting us apart from the competition.

Team strength

At [Company Name], our team strength lies in our collective expertise and dedication to producing high-quality, low density titanium machining parts. Our experienced engineers and technicians work collaboratively to ensure precision and excellence in every component we create. We are committed to pushing the boundaries of technology and innovation, utilizing the latest advancements in machinery and materials to deliver top-tier products to our customers. Our team's unwavering commitment to quality and efficiency sets us apart in the industry, allowing us to consistently exceed expectations and provide unparalleled value to our clients. When you choose [Company Name], you're choosing a team with the strength to deliver exceptional results, every time.

Enterprise core strength

At our company, our team's strength lies in our expertise in machining high strength, low density titanium parts. Our skilled technicians and engineers possess in-depth knowledge and experience in working with titanium, ensuring the highest level of precision and quality in every part we produce. Our team works seamlessly together, utilizing their diverse skill sets and problem-solving abilities to deliver exceptional results. We pride ourselves on our collaborative approach, dedication to excellence, and commitment to meeting the unique needs of our customers. With our strong team behind us, we guarantee the production of top-notch titanium machining parts that meet and exceed industry standards.

Titanium alloy has been widely used in the aerospace industry because of its high strength, low density, and high corrosion resistance. However, in the process of processing, tool durability is low, thermal conductivity is small, and the sticky knife is serious, which it difficult to process materials.

 

Through the analysis of titanium alloy thin wall filter cartridge performance, structural characteristics, and design accuracy requirements, the actual production of numerical control processing technology should pay attention to the selection of scientific and reasonable cutting tools and cutting parameters, especially in positioning, clamping, alignment and other aspects of the summed up some experience and matters needing attention. It can solve the problem of machining difficulty caused by the hard cutting property of titanium alloy material to the thin wall filter cylinder and the problem of easy to produce burr in the process of titanium alloy processing. Reasonable numerical control machining technology is the key to ensuring the machining accuracy of titanium alloy thin wall filter cartridges, and it is also the key to improving the machining efficiency and shortening the machining cycle in mass production.


 

Performance characteristics and application of titanium alloy parts

 

① Small density, high strength, strength is greater than high strength steel.

 

(2) Good thermal stability, and high-temperature strength. At 300℃ ~ 500℃ below, its strength is about ten times higher than aluminum alloy.

 

③ Good corrosion resistance. Titanium alloy works in a moist atmosphere and seawater medium, and its corrosion resistance is much better than that of stainless steel, and it has strong resistance to pitting corrosion, acid corrosion, and stress corrosion. It has excellent corrosion resistance to alkali, chloride, nitric acid, and sulfuric acid.

 

(4) the chemical activity is large and can produce violent chemical reactions with O, N, H, CO, CO2, and water vapor in the atmosphere. Above 600℃, titanium absorbs oxygen and forms a hardened layer with high hardness. When H content rises, the embrittlement layer will also be formed.


 

⑤ Poor thermal conductivity. The thermal conductivity of titanium is low, about 1/4 of Ni, 1/5 of Fe, 1/14 of Al, and the thermal conductivity of titanium alloy are lower, generally 50% of titanium.

 

⑥ Small elastic modulus. The elastic modulus of titanium is 107800MPa, which is about 1/2 of that of steel. In summary, due to the characteristics of small specific gravity, high strength, non-magnetism, corrosion resistance, and high temperature, titanium alloy is widely used in the Marine, aerospace, precision instruments, and other fields of core parts.

 

At Bergek, we have been focusing on rapid prototyping and mass production for many years, until today we have a number of senior engineers with various technologies to provide professional solutions. More than 50 surface treatment options and more than 60 metal/plastic certified materials can meet different rapid prototyping needs. Bergek maintains long-term relationships with world-class companies in various industries such as medical devices, consumer electronics, automotive, robotics, and aerospace. 7*24 hours one to one quick response, the fastest delivery in 3 days.


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