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L-shaped extrusion device for producing ultra-fine crystal block body material

A block material and extrusion device technology, applied in the field of L-shaped extrusion device, can solve problems such as block cracking, failure to meet ultra-fine grain requirements, block material cracking, etc., to avoid The effect of block cracking, improving the degree of grain refinement, and eliminating tensile stress

Inactive Publication Date: 2010-05-12
TAIYUAN UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The inner channel of the equal-channel angular extrusion die device also has various forms, such as S-shaped, C-shaped, U-shaped, L-shaped, etc., which are selected and designed according to the type of material and requirements. The inner channel of the L-shaped mold is made of metal material The commonly used form of superfineness has the characteristics of large equivalent effect variable and uniform deformation in a single extrusion, so it is widely used. However, after the material passes through a 90° turning angle, the surface is subjected to tensile stress, and the internal stress increases, which is easy to appear. Microcracks will eventually lead to cracking of the bulk material, thus limiting the degree of grain refinement. At present, back pressure technology is also used to solve this problem, such as: back pressure piston, sliding base, increasing friction, but at the same time it also brings The mold is complicated, the friction force is increased, etc., and the problem of block cracking cannot be solved well, and the requirements of ultra-fine grains cannot be met, and the mold is easily damaged during the extrusion process.

Method used

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  • L-shaped extrusion device for producing ultra-fine crystal block body material
  • L-shaped extrusion device for producing ultra-fine crystal block body material
  • L-shaped extrusion device for producing ultra-fine crystal block body material

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0052] Extrusion equipment, mold sleeves, mold cores, extrusion rods, etc. are all in quasi-working condition;

[0053] (1), square extruding rod 7, wedge-shaped extruding rod 22 surfaces evenly smear graphite+Vaseline lubricant;

[0054] (2), put the extruded first material rod into the vertical channel 8, insert the square extrusion rod 7, and extrude with the extrusion speed of 0.04mm / s. When the material rod is squeezed to the corner 19, pull out Out of the square extruded rod 7;

[0055] (3), change into the wedge-shaped extruding rod 22, make the wedge-shaped angle face towards the exit, and extrude until all the block materials enter the horizontal channel 9, and pull out the wedge-shaped extruding rod 22;

[0056] (4) Load the second material rod, extrude according to the above steps, eject the first material rod, and discharge it from product outlets 18 and 10, and complete the first extrusion of the first material rod ;

[0057] (5) Pull out the wedge-shaped extru...

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PUM

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Abstract

The extrusion apparatus for preparing superfine crystal block material has one structure comprising a die holder, a connecting seat, a conic die case, a conic die core, a wedged extruding rod with reduced extrusion force to avoid cracking of the block, a turning unit, a square vertical channel, a square horizontal channel and a product outlet. The product has high crystal grain fining and smooth surface, and the extrusion apparatus has simple structure, excellent mechanical performance, easy installation and use, and no pollution.

Description

technical field [0001] The invention relates to an L-shaped extruding device for preparing superfine crystal block materials, which belongs to the technical field of cold extrusion plastic forming of superfine crystal block materials. Background technique [0002] Ultra-fine-grained bulk material is a new type of material whose crystal grains are refined to submicron and nanometer. It has good mechanical properties such as stiffness and strength, such as aluminum, copper, magnesium, iron and other crystal materials, and has a wide range of applications. Value, often used in machinery, electronics, national defense and other industries, due to the emergence of large plastic deformation technology, the application of ultra-fine grain bulk metal materials has been well developed, with good application value and prospects. [0003] Equal channel angular extrusion technology, referred to as ECAP technology, is an emerging technology field that is currently concerned by the scient...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B21C23/00
CPCB21C23/001
Inventor 梁伟边丽萍薛晋波赵兴国王裕刘奋成
Owner TAIYUAN UNIV OF TECH
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