Titanium alloy forgings

Titanium alloy forgings are parts made of titanium alloy materials after forging. Titanium alloy forgings have high strength and excellent corrosion resistance, and are widely used in aerospace, shipbuilding, chemical, automotive and other fields.

Key words:

Forgings

Flange

Classification:

Telephone:

Product Introduction


Titanium alloy forgings are parts made of titanium alloy materials after forging. Titanium alloy forgings have high strength and excellent corrosion resistance, and are widely used in aerospace, shipbuilding, chemical, automotive and other fields.

First of all, titanium alloy forgings have excellent mechanical properties. Titanium alloys have high strength and good toughness, and their specific strength is close to or even more than many high-strength steels. Through forging processing, the strength and plasticity of titanium alloy can be further improved, so that titanium alloy forgings can withstand greater load and stress.

Secondly, titanium alloy forgings have good corrosion resistance. Titanium alloy has strong corrosion resistance and can have good stability in various corrosive media such as acid, alkali and salt. This enables titanium alloy forgings to operate stably in harsh environments for a long time and extend their service life.

Again, titanium alloy forgings have a lower density. The density of titanium alloy is only 4.5g/cm³, which is lighter than traditional metal materials such as steel and aluminum alloy, which can effectively reduce the weight of the entire equipment. In the field of aerospace, the application of titanium alloy forgings can greatly reduce the weight of the aircraft, improve the payload and fuel efficiency.

In addition, titanium alloy forgings also have excellent heat resistance and fatigue resistance. Titanium alloy has high melting point, good high temperature stability, and can maintain good strength and stability in high temperature environment. At the same time, titanium alloy forgings can also resist fatigue damage and are durable.

In general, titanium alloy forgings are widely used in aerospace, shipbuilding, chemical, automotive and other fields due to their excellent mechanical properties, corrosion resistance, low density and heat resistance and fatigue resistance. In the field of aerospace, the application of titanium alloy forgings can greatly reduce the weight of the aircraft, improve performance and economy; in the chemical industry, titanium alloy forgings have good corrosion resistance and can withstand harsh working environment; in the automotive field, the low density of titanium alloy forgings can reduce the weight of the vehicle and improve fuel efficiency. With the continuous development and progress of titanium alloy forging manufacturing technology, its application field will continue to expand.

Related Products

Forgings


Forging is an important metal product, which is formed by processing metal at high temperature. Forgings have the advantages of high strength, high hardness and good plasticity, and are widely used in machinery and equipment, automobile industry, aerospace and other fields. In the forging process, the yield strength of forgings is an important indicator, which is the ability of forgings to undergo plastic deformation under load.

Bearing


Investigate its role should be to support, that is, the literal interpretation used to bear the shaft, but this is only part of its role, the essence of the support is to be able to bear the radial load. It can also be understood that it is used to fix the shaft. Bearing fast and easy automatic selection is included. Is to fix the shaft so that it can only achieve rotation, and control its axial and radial movement. The motor can't work without bearings. Because the shaft may move in any direction, the shaft can only be rotated when the motor is working. Theoretically speaking, it is impossible to realize the function of transmission. Not only that, the bearing will also affect the transmission. In order to reduce this influence, good lubrication must be realized on the bearing of the high-speed shaft. Some bearings already have lubrication, which is called pre-lubricated bearings. Most bearings must have lubricating oil, which is responsible for not only increasing energy consumption but also easily damaging the bearings due to friction during high-speed operation. The idea of turning sliding friction into rolling friction is one-sided, because there is something called a sliding bearing.

Alloy Steel


Alloy steel alloy steel in addition to iron, carbon, add other alloy elements, called alloy steel. An iron-carbon alloy formed by adding an appropriate amount of one or more alloying elements on the basis of ordinary carbon steel. According to the different elements added and the appropriate processing technology, high strength, high toughness, wear resistance, corrosion resistance, low temperature resistance, high temperature resistance, non-magnetic and other special properties can be obtained.

Large ring


Large rings are key forgings for aero-engines. The large ring formed by rolling technology has the advantages of compact structure, high strength and good toughness, which can not be replaced by casting or other manufacturing technology. The performance and quality of ring forgings determine the performance and behavior of key aviation parts to a large extent. The structure and performance of large rings are often directly related to the service life and reliability of the aircraft. Whether the ring forging is integral, high quality and high precision has a significant impact on the economic bearing capacity of the aircraft and the aero engine. Therefore, the production quality and manufacturing process of the special-shaped ring similar to the part type line have a very important influence on reducing the cost of engine development and improving the engine development and production capacity.

Gear ring


The ring gear is embedded on the outer edge of the flywheel after heating, and fastened to the outer edge of the flywheel after cooling to mesh with the starter gear to drive the crankshaft to rotate and start the engine.

Forging


Forging is a processing method that uses forging machinery to apply pressure to metal blanks to produce plastic deformation to obtain forgings with certain mechanical properties, certain shapes and sizes. Forging (forging and stamping) is one of the two major components. Forging can eliminate the defects such as loose casting in the smelting process and optimize the microstructure. At the same time, due to the preservation of the complete metal flow line, the mechanical properties of forgings are generally better than castings of the same material. Related machinery in high load, severe working conditions of important parts, in addition to the shape of a relatively simple available rolling plates, profiles or weldments, the use of forgings.

INQUIRY IMMEDIATELY

Please fill out the form to get more information as soon as possible