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Die forging processing requires relatively stable hydraulic stamping

Today, with the continuous development of industry, molds will be used to increase the efficiency of production in industrial production. At the same time, the use of molds is very common in the industrial industry. Some precision parts require the use of molds to ensure that the produced die forgings meet the standards. So what should be paid attention to in the processing of die forgings? If some people don't understand, let's introduce what should be paid attention to when processing die forgings.

Now in the field of forging, the finite element software is used to simulate the forging process of forged titanium alloy parts, and the difference between the two forging methods of forming hammer and the forging method of forging hydraulic matrix is compared. The overheating tendency of forging titanium alloy is more obvious, and the high temperature is higher than the forging hammer. During forging, the temperature must be strictly controlled, the tension must be effectively distributed to make the hammering uniform, and there is a concentrated regional stress.

What should be paid attention to when forging die forgings?

模锻件加工

With the relatively stable change of the effective tension of hydraulic stamping, compared with the hydraulic forging press, the difference between the minimum and maximum effective stress is reduced, and the forging deformation uniformity of the forging hammer is improved. The die forgings of aluminum alloy piston are the blank area of the piston of the railway diesel locomotive, and are the main products developed by professional manufacturers in recent years. The forging design and improvement of the precision forging process are carried out. The successful production practice shows that there are good economic benefits.

At present, professional technicians have tested the hot compressibility of ultra-high strength steel, established a material flow tension model, and the finite element software is used to simulate the forging process of die forgings, and studied the influence of different process parameters on the forging formation. According to the practical results, it can be seen that the appropriate deformation temperature rise can effectively reduce the deformation resistance of materials, and improve the fluidity of materials in the mold cavity, Reducing the friction coefficient can reduce the conformational load, improve the formation area and make it easy to deform.

Through the direct aging treatment after forging, the effect of aging treatment on the microstructure and properties of high heat-resistant magnesium alloy isothermal die forgings was studied. Through understanding the fracture behavior related to the formation and treatment of the second phase during the strengthening aging process, the internal mechanism of strengthening aging and the optimized post-forging aging system were obtained. Under this aging system, the tensile strength of the material at room temperature reached the elongation of elastic resistance, Through the understanding of the internal structure of defects, the successful application of this method can provide a reference for the production of the same type of products.

The use of die forgings is very common and very important in industry. The production of products requires die forgings as the standard to ensure that the products produced in batches can meet the standard. That is why the importance of die forgings is reflected. If die forgings are not paid attention to during processing, it is easy to produce defective products and defective products in the later stage of production. Therefore, through reading the above contents, Do you know the precautions for die forging processing?


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