Titanium ingot forging broadening technology

A titanium ingot and process technology, which is applied in the field of titanium ingot forging and widening process, can solve the problems that cannot meet the actual needs, remove the surface defects of unfavorable corners, loose and heavy, etc., and achieve good edge structure and good edge shape , the effect of easy operation

Inactive Publication Date: 2017-06-09
侯霞
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the diameter of titanium ingots produced in China is D≤1030mm, and only the width of titanium billets B≤1390mm can be obtained, which cannot meet the actual needs
And the edge of the continuous rolling billet with a width ≥ 1300mm produced by a titanium ingot with D=1030mm has loose and heavy quality problems. In fact, only when B≤1.25D can a continuous rolling titanium billet with better quality be obtained; because forging B When continuously rolling titanium billets ≥ 1.25D, due to the small amount of edge deformation and loose and other structural defects at the edge of the titanium billet, the flaw detection results are usually 1 to 2 grades lower than those in the middle of the titanium billet
When forging continuous rolling titanium billets, due to the small amount of edge deformation, the edges and corners of the edges are usually rounded, and the radius of the arc is ≥10mm. In the subsequent machining, it is not conducive to the removal of surface defects at the edges and corners.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0019] A titanium ingot forging and widening process is to forge a titanium ingot with a diameter of D=φ630mm into a continuous rolling titanium billet with a width of B=1050mm, B=1.67D; including the following steps:

[0020] a. Upsetting: Take a titanium ingot with a diameter D=φ630mm, a length L=2030mm, and a weight of 2850kg. Put the titanium ingot upright under the forging press, and press the forging press downward to reduce the length and increase the diameter of the titanium ingot. The diameter of the titanium ingot after forging to upsetting is φ770mm, and the length is 1360mm;

[0021] b. Horizontal rolling: After the titanium ingot is upset, carry out horizontal rolling on a large flat lower anvil (φ2200mm, rotatable), forging to a titanium billet with a width of 1260mm, a thickness of 360mm, and a length of 1400mm;

[0022] c. Longitudinal drawing: Rotate the widened titanium billet by 90 degrees, carry out longitudinal drawing, alternately carry out forging along ...

Embodiment 2

[0024] A titanium ingot forging widening process is to forge a titanium ingot with a diameter of D=φ960mm into a continuous rolling titanium billet with a width of B=1380mm, B=1.44D; including the following steps:

[0025] a. Upsetting: Take a titanium ingot with a diameter D=φ960mm, a length L=2720mm, and a weight of 8860kg. Put the titanium ingot upright under the forging press, and press the forging press downward to reduce the length and increase the diameter of the titanium ingot. The diameter of the titanium ingot after forging to upset is φ1175mm, and the length is 1815mm;

[0026] b. Horizontal rolling: After the titanium ingot is upset, carry out horizontal rolling on the large flat lower anvil (φ2200mm, rotatable), forging to a titanium billet with a width of 1680mm, a thickness of 630mm, and a length of 1850mm; (2), Rolling: Send 45# round steel material into the round mold of the blank forming machine to roll the circle, cut off, then weld at the joint of the round...

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Abstract

The invention discloses a titanium ingot forging and widening process, which is characterized in that it comprises: erecting a titanium ingot with a diameter D under a forging press, forging and pressing it downward until the diameter of the upset titanium ingot is ≤ 1.2D; The rough titanium ingot is placed flat on the lower anvil of the forging press, so that the axis of the length direction of the titanium ingot is perpendicular to the axis of the press operating vehicle, and the titanium ingot after upsetting is rolled. In actual production, the width of the titanium billet is controlled to be the final continuous rolling 1.2 to 1.3 times the width of the titanium billet product; rotate the titanium billet after horizontal rolling by 90 degrees so that the longitudinal axis of the titanium billet is parallel to the axis of the press operating vehicle, and the operating vehicle of the forging press holds one end of the titanium billet for longitudinal Pull out and alternately carry out forging along the thickness direction and width direction of the titanium billet until the required thickness and width are obtained, that is, the continuous rolling titanium billet is obtained. By adopting the invention, continuous rolling titanium billet with width ≥ 1.5D can be produced to meet the requirement of continuous rolling titanium billet with width ≥ 1500mm; the product performance is good.

Description

technical field [0001] The invention belongs to a nonferrous metal forging method, and relates to a titanium ingot forging widening process, which is suitable for producing a continuous rolling titanium billet (width B) by forging a cylindrical titanium (including titanium and titanium alloy) ingot. [0002] The key point of the invention is that the titanium ingot (diameter D) is widened by transverse rolling, and a continuously rolled titanium billet with a width B≥1.5D can be obtained. Background technique [0003] With the development of technology, various industries have higher and higher requirements for the width of titanium coils, and now the required width has reached [0004] Above 1500mm. The width of the titanium coil is the same as that of the continuous rolling titanium billet, which requires the production of a continuous rolling titanium billet with a larger width. [0005] In the prior art, the production of continuous rolling titanium billets generally a...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B21J5/00
CPCB21J5/002
Inventor 侯霞
Owner 侯霞
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