Manufacturing method of macrofiber porous metal material
A technology of metal materials and manufacturing methods, which is applied in the field of manufacturing long-fiber porous metal materials, can solve problems such as poor impact resistance, complicated manufacturing processes, and easy bending and deformation, and achieve improved corrosion resistance, improved mechanical properties, and high The effect of impact resistance
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Embodiment 1
[0026] The manufacturing method of the long-fiber porous metal material of the present invention is as follows: firstly, the metal long-fiber wire is braided to form a braided body (can be braided into a rope, a pipe, a profile, a plate or a block, etc.), The minimum characteristic dimension of the shape of the braid is greater than 5 times the maximum geometric characteristic dimension of the metal long fiber wire cross section, and when the cross section of the metal long fiber wire is circular, the minimum characteristic dimension of the braid shape is greater than 5 times the wire diameter; Secondly, the metallurgical bonding process (which can be achieved by heating and sintering) is carried out on the braid, so that the metallurgical bonding is realized in the contact between the wires, and the pores are formed in the non-contact areas between the wires, and the pores are along the direction of the wire track. distribution; finally, the desired long-fiber porous metal mat...
Embodiment 2
[0029] The difference from Example 1 is that in this example, the stainless steel bar with long fibers and pores obtained in Example 1 is cold forged at room temperature, so that the diameter of the material is reduced by 10%, the density of the material is increased, and the pores are reduced. size of.
Embodiment 3
[0031] The difference from Example 1 is that the H13 steel wire in this example has been annealed and softened, braided into a thick rope with a diameter of 300 mm, then forged and pressed, and then sintered in a vacuum heating furnace.
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