CN102031352A - Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate - Google Patents

Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate Download PDF

Info

Publication number
CN102031352A
CN102031352A CN 201010614930 CN201010614930A CN102031352A CN 102031352 A CN102031352 A CN 102031352A CN 201010614930 CN201010614930 CN 201010614930 CN 201010614930 A CN201010614930 A CN 201010614930A CN 102031352 A CN102031352 A CN 102031352A
Authority
CN
China
Prior art keywords
titanium bronze
steel
graphite
composition board
graphite semi
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 201010614930
Other languages
Chinese (zh)
Other versions
CN102031352B (en
Inventor
张鹏
杜云慧
刘汉武
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Jiaotong University
Original Assignee
Beijing Jiaotong University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Beijing Jiaotong University filed Critical Beijing Jiaotong University
Priority to CN2010106149308A priority Critical patent/CN102031352B/en
Publication of CN102031352A publication Critical patent/CN102031352A/en
Application granted granted Critical
Publication of CN102031352B publication Critical patent/CN102031352B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Metal Rolling (AREA)

Abstract

The invention discloses a uniform post-processing method of a steel titanium bronze 3.5-4 graphite semi-solid composite plate, belonging to the research field of interface shear strength room-temperature rolling post-processing of the steel titanium bronze 3.5-4 graphite semi-solid composite plate. In the invention, two passes of rolling processing are carried out on the steel titanium bronze 3.5-4 graphite semi-solid composite plate formed from a 08Al steel plate with the thickness of 1.2mm and a titanium bronze 3.5-4 graphite coating with the thickness of 2.8mm on a finishing mill at the room temperature with the total reduction of 1.0 percent and the percentage pass reduction ratio of a first pass and a second pass of 1:4.5-1:2.5, and the transverse interface shear strength difference of the composite plate is lowered within 2.0MPa.

Description

A kind of even post-treating method of steel titanium bronze 3.5-4 graphite semi-solid composition board
Technical field
The present invention relates to a kind of rolling post-treating method of interface shear strength room temperature of steel titanium bronze 3.5-4 graphite semi-solid composition board.
Background technology
Publication number: CN1916193A, denomination of invention: on " a kind of method that reduces interface residual stress of steel, copper, graphite composite plate ", set forth the rolling post-treating method of room temperature of steel, copper, graphite semisolid-state clad plate, promptly, at room temperature, on finishing rolling mill, to the steel, copper, graphite semisolid-state clad plate, be rolled aftertreatment, utilize the difference of copper graphite coating that rolling processing produces and steel plate deformed amount to remedy the difference of copper graphite coating and steel plate shrinkage in the composite solidification process of cooling, and then reduce the composition board interface residual stress, the composition board interface shear strength is improved.This method technology is simple, composition board interface shear strength value improves bigger, but, because this method is carrying out there is copper graphite coating deflection non-uniform phenomenon when one-pass roller is handled, therefore cause the uneven distribution of composition board interface shear strength usually, can be in composition board interface shear strength difference transversely up to 2.9~3.3MPa.
Steel titanium bronze 3.5-4 graphite semi-solid composition board adopts solid-state steel plate and titanium bronze 3.5-4 graphite semi-solid slurry to be composited, the semisolid-state clad plate that constitutes by thick 08Al steel plate of 1.2mm and the thick titanium bronze 3.5-4 graphite coating of 2.8mm, the titaniferous amount of titanium bronze 3.5-4 graphite coating is 3.3~3.6wt%, graphitiferous particulate quantity is 4wt%, be under 1.0% the rolling post-treatment condition at the disclosed draft of patent CN1916193A, because titanium bronze 3.5-4 graphite coating is at composition board deflection skewness transversely, cause the difference between the composition board interface shear strength transversely can be up to 3.1MPa.
For steel titanium bronze 3.5-4 graphite semi-solid composition board, the difference of transverse interface shearing resistance is more little, and work reliability is high more, and range of application is wide more, so the difference of steel titanium bronze 3.5-4 graphite semi-solid composition board transverse interface shearing resistance is the smaller the better.
Summary of the invention
Technical problem to be solved by this invention is, overcome the deficiency of the existing rolling post-treating method of steel titanium bronze 3.5-4 graphite semi-solid composition board room temperature " transverse interface shearing resistance difference is big ", a kind of post-treating method that can improve steel titanium bronze 3.5-4 graphite semi-solid composition board transverse interface shearing resistance distributing homogeneity is provided, further dwindles the difference of composition board transverse interface shearing resistance.
The technical solution adopted for the present invention to solve the technical problems is: to steel titanium bronze 3.5-4 graphite semi-solid composition board, at room temperature, on finishing rolling mill, carry out total draft and be percentage pass reduction ratio 1.0%, first passage and second passage and be 1: 4.5~1: 2.5 the rolling processing of two passages.
The invention has the beneficial effects as follows: for the rolling processing of composition board room temperature, because roller is jumped, the existence of the unequal factor of matrix, transversely produce nonaffine deformation inevitably in composition board, the difference that causes composition board transverse interface shearing resistance, and draft is big more, distortion transversely is inhomogeneous more, and the difference of composition board transverse interface shearing resistance is big more.If nonaffine deformation transversely with the rolling generation of single pass heavy reduction rate, decompose in the middle of the little draft distortion of multi-pass, then one-pass roller can be handled the big-difference of the transverse deformation amount that produces, be decomposed into the little difference of the transverse deformation amount of multi-pass, and the optimum combination by each percentage pass reduction, can also further coordinate the difference of transverse deformation amount.The present invention utilizes the optimum combination of the percentage pass reduction of first passage and second passage further to reduce and coordinated the difference of the transverse deformation amount of the rolling processing of room temperature, thereby has reached the purpose that reduces composition board transverse interface shearing resistance difference.Utilize the present invention, steel titanium bronze 3.5-4 graphite semi-solid composition board is carried out the rolling processing of room temperature, composition board transverse interface shearing resistance difference can be reduced in the 2.0MPa, reduce by 35% at least than adopting the CN1916193A patented method to carry out the 3.1MPa that the rolling processing of room temperature obtains.
Embodiment
A kind of even post-treating method of steel titanium bronze 3.5-4 graphite semi-solid composition board, at room temperature, on finishing rolling mill, to the steel titanium bronze 3.5-4 graphite semi-solid composition board that constitutes by thick 08Al steel plate of 1.2mm and the thick titanium bronze 3.5-4 graphite coating of 2.8mm, carry out two passages, total draft is 1.0% rolling aftertreatment, the big-difference of the titanium bronze 3.5-4 graphite coating transverse deformation amount that the rolling aftertreatment of single pass heavy reduction rate is produced, decomposition and coordination are the little difference of the titanium bronze 3.5-4 graphite coating transverse deformation amount of the rolling aftertreatment generation of the little draft of two passages, thereby further reduced composition board transverse interface shearing resistance difference, improved the distributing homogeneity of steel titanium bronze 3.5-4 graphite semi-solid composition board interface shear strength.
Embodiment one, to steel titanium bronze 3.5-4 graphite semi-solid composition board, the percentage pass reduction ratio of carrying out first passage and second passage is 1: 4.5 the rolling aftertreatment of two passage room temperatures, is 2.0MPa in composition board interface shear strength difference transversely.
Embodiment two, to steel titanium bronze 3.5-4 graphite semi-solid composition board, the percentage pass reduction ratio of carrying out first passage and second passage is 1: 4 the rolling aftertreatment of two passage room temperatures, is 1.8MPa in composition board interface shear strength difference transversely.
Embodiment three, to steel titanium bronze 3.5-4 graphite semi-solid composition board, the percentage pass reduction ratio of carrying out first passage and second passage is 1: 3.5 the rolling aftertreatment of two passage room temperatures, is 1.7MPa in composition board interface shear strength difference transversely.
Embodiment four, to steel titanium bronze 3.5-4 graphite semi-solid composition board, the percentage pass reduction ratio of carrying out first passage and second passage is 1: 3 the rolling aftertreatment of two passage room temperatures, is 1.8MPa in composition board interface shear strength difference transversely.
Embodiment five, to steel titanium bronze 3.5-4 graphite semi-solid composition board, the percentage pass reduction ratio of carrying out first passage and second passage is 1: 2.5 the rolling aftertreatment of two passage room temperatures, is 1.9MPa in composition board interface shear strength difference transversely.
As seen, to the steel titanium bronze 3.5-4 graphite semi-solid composition board that constitutes by thick 08Al steel plate of 1.2mm and the thick titanium bronze 3.5-4 graphite coating of 2.8mm, the percentage pass reduction ratio of carrying out total draft and be 1.0%, first passage and second passage is 1: 4.5~1: 2.5 the rolling aftertreatment of two passage room temperatures, and composition board interface shear strength difference transversely is reduced in the 2.0MPa.

Claims (1)

1. the even post-treating method of a steel titanium bronze 3.5-4 graphite semi-solid composition board, at room temperature, on finishing rolling mill, the steel titanium bronze 3.5-4 graphite semi-solid composition board that is made of thick 08Al steel plate of 1.2mm and the thick titanium bronze 3.5-4 graphite coating of 2.8mm is rolled aftertreatment, it is characterized in that, to steel titanium bronze 3.5-4 graphite semi-solid composition board, carry out total draft and be percentage pass reduction ratio 1.0%, first passage and second passage and be 1: 4.5~1: 2.5 the rolling processing of two passages.
CN2010106149308A 2010-12-30 2010-12-30 Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate Expired - Fee Related CN102031352B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010106149308A CN102031352B (en) 2010-12-30 2010-12-30 Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010106149308A CN102031352B (en) 2010-12-30 2010-12-30 Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate

Publications (2)

Publication Number Publication Date
CN102031352A true CN102031352A (en) 2011-04-27
CN102031352B CN102031352B (en) 2012-07-11

Family

ID=43884803

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010106149308A Expired - Fee Related CN102031352B (en) 2010-12-30 2010-12-30 Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate

Country Status (1)

Country Link
CN (1) CN102031352B (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1710114A (en) * 2005-07-07 2005-12-21 北京交通大学 Post-processing method for steel-back aluminium-base solid-liquid-phase composite plate
CN101117696A (en) * 2007-09-05 2008-02-06 北京交通大学 Post-treating method for steel-back aluminium-based semisolid-state clad plate

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1710114A (en) * 2005-07-07 2005-12-21 北京交通大学 Post-processing method for steel-back aluminium-base solid-liquid-phase composite plate
CN101117696A (en) * 2007-09-05 2008-02-06 北京交通大学 Post-treating method for steel-back aluminium-based semisolid-state clad plate

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
《金属学报》 20020228 宋仁伯等 半固态钢铁材料轧制产品的力学特性 第153-156页 1 第38卷, 第2期 2 *

Also Published As

Publication number Publication date
CN102031352B (en) 2012-07-11

Similar Documents

Publication Publication Date Title
CN102031468B (en) Homogenization post-processing method for steel titanium bronze 3.5-3.5 graphite semisolid composite plate
CN102031352B (en) Uniform post-processing method of steel titanium bronze 3.5-4 graphite semi-solid composite plate
CN102031351B (en) Uniform post-treatment method for steel titanium bronze 3.5-5 graphite semisolid composite board
CN102021289B (en) Method for evenly post-treating steel-titanium bronze 4.3-5 graphite semisolid compound plate
CN102021288B (en) Even aftertreatment method for steel titanium bronze 3.5-3.5 boron nitride semisolid composite boards
CN102010958B (en) Homogenizing post-treatment method of steel aluminum-20-tin semi-solid composite board
CN102011070B (en) Method for uniformly post-processing steel brass HSi80 semi-solid composite plate
CN102010957B (en) Uniform post-processing method of steel-aluminium 28 lead semisolid composite board
CN102010950B (en) Uniform aftertreatment method for steel zinc solid-liquid phase composite board
CN102021285B (en) Uniform post processing method for steel and aluminum 7 graphite semi-solid composite plate
CN102010948B (en) Homogenization postprocessing method for steel-aluminium semi-solid clad plate
CN102011071B (en) Uniform post-processing method of steel BFe 30 cupronickel semi-solid composite board
CN102021291B (en) Uniform after-treatment method for steel/magnesium bronze 3-3.5 boron nitride semisolid composite board
CN102010953B (en) Homogenization post-processing method of steel-red copper semisolid composite plate
CN102021290B (en) Homogeneous post-processing method of steel magnesium bronze 3-3.5 graphite semi-solid composite plate
CN102021287B (en) Uniform post-processing method of steel/zinc 3.5 boron nitride semi-solid composite board
CN102010945B (en) Uniform post-treatment method for steel-aluminum 5 graphite semi-solid composite plate
CN102010960B (en) Homogenizing post-treatment method of steel aluminum-7-graphite solid-liquid composite board
CN102010947B (en) Homogenization postprocessing method of steel zinc semisolid composite board
CN102010946B (en) Even post-treatment method for steel-aluminum 4-graphite semi-solid composite plate
CN102021283B (en) Method for uniformly post processing steel BFe30 cupronickel solid and liquid phase compound plate
CN102021284B (en) Homogeneous post-processing method of steel red copper solid-liquid phase composite plate
CN102021286B (en) Uniform aftertreatment method of steel HSi80 brass solid-liquid phase composite board
CN102010955B (en) Homogenizing postprocessing method for steel zinc 3-Graphite semi-solid composite panel
CN102010959A (en) Homogenizing post-treatment method of steel aluminum-9-boron nitride semi-solid composite board

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120711

Termination date: 20121230