CN107900347A - A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering - Google Patents

A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering Download PDF

Info

Publication number
CN107900347A
CN107900347A CN201711367239.2A CN201711367239A CN107900347A CN 107900347 A CN107900347 A CN 107900347A CN 201711367239 A CN201711367239 A CN 201711367239A CN 107900347 A CN107900347 A CN 107900347A
Authority
CN
China
Prior art keywords
powder
sintering
silicon steel
hotforging
steel band
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.)
Withdrawn
Application number
CN201711367239.2A
Other languages
Chinese (zh)
Inventor
罗丰华
吴若晴
张湘葵
贾吉祥
李益民
王生凯
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.)
Central South University
Original Assignee
Central South 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 Central South University filed Critical Central South University
Priority to CN201711367239.2A priority Critical patent/CN107900347A/en
Publication of CN107900347A publication Critical patent/CN107900347A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F3/00Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces
    • B22F3/17Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces by forging
    • B22F1/0003
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F1/00Metallic powder; Treatment of metallic powder, e.g. to facilitate working or to improve properties
    • B22F1/10Metallic powder containing lubricating or binding agents; Metallic powder containing organic material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F3/00Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces
    • B22F3/10Sintering only
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F3/00Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces
    • B22F3/10Sintering only
    • B22F3/1003Use of special medium during sintering, e.g. sintering aid
    • B22F3/1007Atmosphere
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F3/00Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces
    • B22F3/18Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces by using pressure rollers
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C33/00Making ferrous alloys
    • C22C33/02Making ferrous alloys by powder metallurgy
    • C22C33/0207Using a mixture of prealloyed powders or a master alloy
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C38/00Ferrous alloys, e.g. steel alloys
    • C22C38/02Ferrous alloys, e.g. steel alloys containing silicon
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F3/00Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces
    • B22F3/17Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces by forging
    • B22F2003/175Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sintering; Apparatus specially adapted therefor ; Presses and furnaces by forging by hot forging, below sintering temperature
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F2998/00Supplementary information concerning processes or compositions relating to powder metallurgy
    • B22F2998/10Processes characterised by the sequence of their steps

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Manufacture Of Metal Powder And Suspensions Thereof (AREA)
  • Powder Metallurgy (AREA)

Abstract

A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering, the present invention use water atomization Fe powder and Si contents for 50~70% HIGH-PURITY SILICON iron powder, Fe Si mixed powders are formed, HIGH-PURITY SILICON iron powder is adhered to by water-atomized iron powder surface by bonding agent and dispersant.By being molded squarely base; it is heated to 970~1040 DEG C and realizes Fe phase austenitizings; repeatedly final forging temperature is 870~940 DEG C after forging again; powder hotforging base is subjected to vacuum or protection of reducing atmosphere sintering in 1020~1120 DEG C of temperature ranges; by multiple cold rolling, low-temperature sintering, finally sintered in 1200~1300 DEG C of High temperature diffusions, realize homogeneous alloy; it is thick to obtain 0.1~0.5mm containing 4.5~6.7%Si, density >=7.39g/cm3High silicon steel band.

Description

A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering
Technical field
Preparation and manufacture field the invention belongs to metal material, and in particular to the powder hotforging of high silicon steel thin belt material and roll The method for making deformation.
Technical background
Remanent magnetism and coercive force all very littles of soft magnetic material, i.e. hysteresis curve is very narrow, it and fundamental magnetization curve are almost Overlap, be mainly used for the iron core of inductance coil, transformer, relay and motor.Fe-Si alloys maximum permeability is sent out with Si contents Changing, respectively Si mass percent it is (the same below) for 2% and 6.5% nearby there is the peak of two maximum permeabilities Value, respectively reaches 10000 and 25000.The maximum permeability of Fe-Si alloys does not have absolute predominance, such as slope in soft magnetic materials The maximum permeability of alloy can not reach 200000.But the Fe-Si lattens of Si < 4.5% manufacture cost is low, therefore Silicon steel sheet is also known as electrical sheet or silicon steel thin slice, is a kind of very important magnetic material.
And Si>When 4.5%, below 540 DEG C of temperature B can occur for Fe-Si alloys2The eutectoid decomposition reaction of ordered phase, it is raw Into the unordered phases of α-Fe and DO3Ordered phase so that alloy becomes fragile and is difficult to deform.
For iron Si system alloy of the Si contents between 4.5~6.7%, commonly referred to as high silicon steel, wherein silicone content 6.5% High silicon steel it is mostly important.Its reason is Fe-Si alloy grains edge<100>The magnetostriction coefficient in direction is with the increase of Si contents And reduce, disappear substantially at about 6.3%, and<111>The magnetostriction coefficient in direction increases and increases with Si contents, about When 6.1% with<100>The magnetostriction coefficient in direction is equal so that high silicon steel shows excellent low in higher frequency operation Iron loss characteristic.
The transformer of normal operation can occur continuous uniform " drone " sound, this is because alternating current by transformer around Group when, in the core between generate periodically variable alternating flux, cause iron core magnetostriction and shake the sound sent.Greatly The sound that amount or large-scale iron core are sent in vibrations not only causes the loss of energy, also creates noise pollution.Especially It is to play particularly important role in the military aviation such as spacecraft, submarine and guided missile field, Fe-Si systems alloy.20th century 60 Age Mo, the alloy of Si contents 6.5% are appeared on No. 11 airships of Apollo as transformer material, are completed the mankind and are landed on the moon first Heroic undertaking.As it can be seen that high silicon steel is the environment-friendly type soft magnetic materials of a kind of consumption reduction of function admirable, noise reduction.
Compared to other alloys, the research and development process of high silicon steel is relatively very long.Late 1920s A.Schulze studies discovery first, and the iron Si system alloy of silicone content 6.5% has the almost nil characteristic of magnetostriction coefficient. In the 1980s, professor K.I.Arail etc. has found the high silicon steel alloy low compared to traditional Si content in exchange dynamic magnetic field In there is the magnetic conductivity of lower iron loss and higher.Hereafter between many decades, in order to overcome the brittleness of high silicon steel, in technology of preparing side There are many trials in face.As the special rolled method of jacket or temperature control, rapid solidification method, chemical vapour deposition technique (CVD method), Plasma chemical vapor deposition (PCVD methods), hot dipping ooze a diffusion annealing method, powder metallurgic method, microalloying and are modified Etc. various methods.
Wherein CVD is the successful example of comparison.NKK companies of Japan in 1988 have produced thickness for the first time using CVD technology It is the No yield point 6.5%Si steel discs of 400mm to spend for 0.1~0.5mm, width.Phase early 1990s, global first commercialization Can realize that the CVD production lines of continuous siliconising are developed, the product size of production can reach 0.1~0.3mm × 600mm。
The principle of CVD is:Under specific temperature conditions, silicon-containing gas (SiCl4) can react generation Fe- with silicon strip Si compounds, and alloy is reached required content to alloy diffusion inside by elevated furnace temperature.Although oneself uses this Technology realizes small-scale industrialized production, but its scale and yield all can not much meet the need in international soft magnetic materials market Ask, and this preparation method technical process is sufficiently complex, energy consumption and of high cost, operating environment and its severe, it is impossible to meet ring Guaranteed request.
High silicon steel is " the steel art work ", its technology of preparing is all always and everywhere state-of-the-art steel and iron manufacturing technology, and It is the hot spot of development and exploitation.For 6.5%Si high silicon steel, its excellent magnetic performance and wide application prospect are even more to inhale Draw scientific worker and carry out substantial amounts of research-and-development activity.The development of preparation process and ripe and can be cost-effectively Production, is that 6.5%Si high silicon steel move towards to be commercialized widely applied key, also the always emphasis of research work.Once grope Go out simple, economic, effective, ripe preparation process, will just produce huge economic benefit and social benefit.
The content of the invention
The method for preparing high silicon steel band is sintered the object of the present invention is to provide a kind of powder hotforging and High temperature diffusion, for Fe-4.5~6.7%Si alloy thin band materials are difficult to the problem of shaping, using water atomization Fe powder and Si contents as 50~70% it is high-purity Ferrosilicon powder is raw material, is molded into hot forging green compact after adding binder, then prepare certain thickness plate using powder hotforging method Base, is acted on using the large deformation of powder hotforging and causes green density raising, structure refinement, and realizes part under thermal diffusion effect Alloying, forms the α-Fe crystal grain of poor Si and the heterogeneous structure of the high Si phases of brittleness with plastic deformation ability.Follow-up warp is excessive Thin plate is obtained after passage cold rolling-sintering, is finally sintered using High temperature diffusion and obtains the high silicon steel band of homogeneous single phase.
The present invention is achieved by the following technical solutions:Use subsphaeroidal water-atomized iron powder, fine Si contents for 50~70% HIGH-PURITY SILICON iron powder is raw material, forms Fe-4.5~6.7%Si mixed powders.By suitable bonding agent, disperse Fine HIGH-PURITY SILICON iron powder is adhered to water-atomized iron powder surface by agent in mixed process.Since water atomization Fe powder is with high pressure The big particle of contracting, occupies larger volume ratio in mixed powder, its plastic deformation ability is not significantly reduced after adding ferrosilicon powder Power, can be by being molded squarely base.It is heated to 970~1040 DEG C and realizes Fe phase austenitizings, then places into closed die Has hot forging, repeatedly final forging temperature is 870~940 DEG C after forging so that pressed compact is close complete fine and close, about 6.89~7.21g/cm3。 Then powder hotforging base is subjected to vacuum in 1020~1120 DEG C of temperature ranges or protection of reducing atmosphere sinters, make Fe powder particles smeltings Gold combine, and ferrosilicon powder particles realized with Fe it is partially-alloyed, formed densification, with the poor Si of plastic deformation ability α-Fe crystalline substance The high silicon steel blank of heterogeneous structure of grain and the high Si phases of brittleness.Sintered subsequently through multiple cold rolling, low temperature diffusion, the density liter of slab High, plate thickness is reduced, and the alloying level of Si is also continuously improved.Finally vacuum or reduction in 1200~1300 DEG C of temperature ranges Gas-protecting sintering, realizes the homogeneous alloy of high silicon steel with the help of thermal diffusion, obtain containing 4.5~6.7%Si 0.1~ 0.5mm is thick, density >=7.39g/cm3High silicon steel band.
The method specifically comprises the following steps:
(1) raw material powder prepares
Using -100 mesh water-atomized iron powders, Fe >=99.0% in water-atomized iron powder, remaining for Si, Mn, P, S and other can not The impurity avoided, uses Si contents as 50~70% HIGH-PURITY SILICON iron powder, particle diameter≤6 μm, this ferrosilicon powder except containing 50~ Beyond 70%Si, major impurity is~0.24%Al ,~0.07%Ca and~0.02%C, remaining is Fe.
Water atomization Fe powder is a kind of widely used Industrial iron powder, has subsphaeroidal pattern, impurity content is less than reduction Fe Powder, has the compressibility and mobility of higher, is conducive to the Uniform Flow of powder extrusion process course powder.Water atomization Fe powder In low impurity content it is favourable to the soft magnetic characteristic of high silicon steel.
Fe-50~70%Si high purity ferrosilicons in process of setting there are two eutectic reactions, when rich Si sides are at 1207 DEG C Form the β-FeSi with tP3 structures2With Si phase eutectic structures, form when rich Fe sides are at 1212 DEG C and tied with tP3 β-the FeSi of structure2With the FeSi eutectic structures of cP8 structures;At 982 DEG C and 937 DEG C, also there are β-FeSi2Decomposition and oC48- FeSi2Two solid-state phase changes processes of formation of phase.Therefore it is easy in process of setting of the Fe-50~70%Si after refining crisp Change, form trickle Fe-Si or Si heterogeneous structures, it is easy to refine by Mechanical Crushing technique.Fe-50~70%Si is high-purity Ferrosilicon is crushed to≤6 μm of ferrosilicon powder, the Si phases in its actual tissue, FeSi2, FeSi phases it is more tiny, be conducive to subsequent high temperature The thermal diffusion homogenization of Si elements, forms homogeneous Fe-6.5%Si single-phase alloys during sintering.Meanwhile exist in high purity ferrosilicon powder 30~50%Fe can effectively reduce the degree of oxidation of Si, be conducive to improve the product quality of high silicon steel.
By Fe-50~70%Si high purity ferrosilicons Mechanical Crushing to particle diameter≤6 μm, be conducive to it and be adhered to water atomization Fe powder Surface is filled in the hole of water atomization Fe powder, tiny Si, FeSi2, FeSi phases Dispersed precipitate in blank, play tissue The Strengthening and Toughening effect of refinement, is conducive to improve follow-up blank toughness, cracking is not easily caused in densification process is rolled.But Still contain a small amount of Si phases in Fe-50~70%Si high purity ferrosilicons, Si is easily absorbing oxygen, and SiO is formed in exposed Si phase surfaces2 Film, therefore in the preparation, storage and transfer process of Fe-50~70%Si HIGH-PURITY SILICON iron powders, and follow-up batch mixing, hot forging, Inert gas shielding should be used in the operation of rolling, used instrument must also take dehydration, drying process in advance.
On the premise of oxygen content is controlled, influence of the impurity such as other Al, Ca, Mn to alloy magnetic property is little, during The possibility for introducing other alloying elements is also little.
(2) powder mixes
According to the ratio of Fe-4.5~6.7%Si, water atomization Fe powder and Fe-50~70%Si HIGH-PURITY SILICON iron powders are weighed; Mixed under inert protective atmosphere using low energy mixer, mixing velocity and time, should try one's best mitigation depending on mixing uniformity Processing hardening occurs in mixed process for Fe powder.
(3) powder hotforging
Square pressed compact is prepared using compression-moulding methods, the green density of acquisition is 6.57~6.74g/cm3;Before hot forging Molding square billet is heated to 970~1040 DEG C under nitrogen protective effect, keeps the temperature 2~4h, the hot forging densification in square dies, Repeatedly final forging temperature is 870~940 DEG C after forging, and pressed compact is close complete fine and close, and density reaches 6.89~7.21g/cm3
Under impact force action, hot forging pressed compact is close complete fine and close.Make the plasticity of plate after hot forging in order to avoid alloying Decline, relatively low heating-up temperature is have selected before hot forging.Fe phase and complexity FeSi phase composition of the alloy structure for high-ductility after hot forging Complex tissue, which possesses the high-ductility characteristic of simple substance Fe.
(4) cold rolling-sintering
By above-mentioned hot forged plate cold rolling-sintering, progressively it is thinned.
Single pass rolling reduction≤8%, after multi- pass rolling reaches 30~50% to total reduction, then in sintering furnace in 1020~1120 DEG C of 0.5~2h of heat preservation sintering, after multiple cold rolling-sintering, the thickness of plate reaches 0.1~0.5mm, with Si's Alloying is gradually completing, and strip density improves, and reaches 7.38~7.52g/cm3
There are a large amount of deformable Fe phases in blank, slab can bear cold-rolling deformation.But there is also more in slab High Si phases, its performance is more crisp, therefore amount cannot be too high under every time rolling, and accumulation total reduction reaches 30~50%, takes around 8 ~25 passages.
Since existing hard crisp phase, cold deformation process can form some micro-cracks.In order to realize the closing of pores and crackle Repair, and the homogenization diffusion of a degree of Si elements.Cold rolling reduction accumulation needs to sinter 1 again to a certain extent afterwards It is secondary, 0.1~0.5mm is rolled down to from 36~54mm hot forging plates, takes around and sinters 12~20 times again.
Sintering temperature is too low, is unfavorable for metallurgical binding and the Si element thermal diffusions of Fe powder particles;And sintering temperature is excessive then Si elements can be caused quickly to spread, cause crystal grain excessive high hardness, embrittlement, follow-up rolling deformation is difficult to realize.
Take reproducibility, inert gas shielding or vacuum-sintering.W, Mo, heat resisting steel etc. can be used during sintering as support Plate (or burning boat), can also use the ceramic wafers such as corundum, zirconium oxide, but metallic plate thermal conductivity is good, and be beneficial to Even Sintering.
The texture of coarse crystal containing the second phase is formed after sintering.X-ray diffraction Discriminating materials are heterogeneous Fe (Si) Phase, body-centred cubic several characteristic peaks have obvious separating phenomenon, illustrate there are 2 kinds of different Fe phases of Si solid solubility, wherein must There are the Si contents in a kind of Fe phases low, there is plastic deformation ability.
(5) full alloying high temperature sintering
Vacuum or restitutive protection 1~4h of atmosphere sintering in 1200~1300 DEG C of temperature ranges, in the effect of thermal diffusion Under, to realize the full alloyings of Si, form single-phase alloy, obtain the high silicon steel of homogeneous, the thickness of plate is almost unchanged after densification sintering, For 0.1~0.5mm, density reaches 7.39~7.53g/cm3
The HIGH-PURITY SILICON iron powder of particle diameter≤6 μm is by high-energy ball milling or rushes the acquisition of rotation method.
The low energy mixer is conical mixer, V-arrangement batch mixer or drum mixer.
The square pressed compact prepared in step (3), length and width are respectively 100~300mm, are highly 40~60mm, using table The pressure that surface pressure is 400~600MPa is suppressed.The thickness of blank is 36~54mm after hot forging, and three point bending test shows to mould Property, bending strength reaches 159~240MPa.
Step (2) adds cellulose, paraffin micro mist when mixing or zinc stearate is water-insoluble adds as binder, binder Dosage total amount is no more than the 0.8% of mixed-powder gross mass, while adds grease and absolute ethyl alcohol does passivator, plays passivation Si Powder, bonding Fe-Si powder, the effect for strengthening powder flowbility and compact strength, the additive amount total amount of passivator are no more than mixed powder The 2% of last gross mass.
Support plate described in step (4) uses molybdenum plate, W plates, heat resisting steel, corundum or zirconia ceramics plate.
During high temperature sintering described in step (6), overlapping places sintering plate, and interlayer is laid with MgO powder, and plate tiling is placed, Tablet weight is placed on plate, prevents from deforming in sintering process.
In addition to Si contents, content of element such as grain size, crystal grain orientation, C etc. also has the magnetic behavior of high silicon steel Large effect, can subsequently be annealed, the technological means such as normalizing treatment is controlled by by wet hydrogen.
Essence of the invention is by with the addition of certain body in the water atomization Fe powder of the big volumetric portion with good plasticity Fine Fe-50~70%Si HIGH-PURITY SILICONs iron powder of product ratio, forms Fe-4.5~6.7%Si alloys basis powder.Using powder Hot forging obtains high green density into slab.Since hot forging is organized as incomplete alloying tissue, except small part is rich in tissue Outside Si phases, main constituent is yielding Fe phases, therefore subsequently can improve even tissue by multi-pass cold rolling and sintering Property and compactness, then high-temperature diffusion process, realize the homogenization of Si, so as to obtain the single-phase high silicon steel band of high quality.The party Method realizes Technics Process Automation, continuous production by technique and equipment Design, and can be mass-produced 0.1~0.5mm thickness, Density >=7.39g/cm3High silicon steel band.
Brief description of the drawings
Fig. 1 be the embodiment of the present invention 1 powder hotforging after blank three-point bending curve map.
Fig. 2 is metallographic structure figure after powder hotforging-cold rolling-sintering of the embodiment of the present invention 2;
Fig. 3 is XRD diffraction curve figures after powder hotforging-cold rolling-sintering of the embodiment of the present invention 2;
Fig. 4 is XRD diffraction curve figures after powder hotforging-cold rolling-high temperature sintering of the embodiment of the present invention 4.
Embodiment
The present invention is described in further detail with reference to the accompanying drawings and detailed description.
Embodiment 1
By the water atomization Fe powder of -100 mesh and the Fe-70%Si high-purity powders of granularity≤6 μm according to 90.43:9.57 ratio Example mixing, forms the mixed-powder of Fe-6.7%Si.The paraffin micro mist of raw material total amount 0.6%, 0.1% machine are added during mixing Oil.Absolute ethyl alcohol is added according to 200ml/ tons of amount.Using V-arrangement batch mixer by above-mentioned powder mixing 4h.
Square pressed compact is prepared using compression-moulding methods, and pressed compact size is 100 × 100 × 40mm, surface pressing 600MPa, green density 6.57g/cm3
Molding square billet is heated to 970 DEG C under nitrogen protective effect, keeps the temperature 4h.Using power forging machine, in square dies Middle hot forging densification, repeatedly final forging temperature is 870 DEG C after forging, and the thickness of blank is about 36mm, and density reaches 6.89g/cm3。 Three point bending test shows plasticity, sees Fig. 1, and bending strength reaches 159MPa.
By above-mentioned hot forged plate cold rolling-sintering, progressively it is thinned.Specifically pressure-annealing schedule is:36mm→24mm→17mm→ 12mm → 9.5mm → 7.2mm → 5mm → 3.5mm → 2.4mm → 1.6mm → 1.02mm → 1.02mm → 0.71mm → 0.49mm, Sintered through 13 cold rollings and 12 times.
Multi-pass cold rolling is thick in 1020 DEG C of heat preservation sintering 2h, plate to after 30~50%, then in vacuum sintering furnace Degree is thinned to 0.49mm, and density reaches 7.38g/cm3
4h is sintered in 1300 DEG C of Temperature Vacuums, realizes the full alloyings of Si, forms single-phase alloy, thickness 0.5mm, density reaches 7.39g/cm3, Si contents are 6.7%.
Embodiment 2
By the water atomization Fe powder of -100 mesh and the Fe-50%Si high-purity powders of granularity≤10 μm according to 91:9 ratio is mixed Close, form the mixed-powder of Fe-4.5%Si.The zinc stearate of raw material total amount 0.7%, 0.1% machine oil are added during mixing.Nothing Water-ethanol is added according to 400ml/ tons of amount.Using drum mixer by above-mentioned powder mixing 6h.
Square pressed compact is prepared using compression-moulding methods, and pressed compact size is 300 × 300 × 60mm, surface pressing 600MPa, green density 6.74g/cm3
Molding square billet is heated to 1040 DEG C under nitrogen protective effect, keeps the temperature 2h.Using power forging machine, in square dies Middle hot forging densification, repeatedly final forging temperature is 940 DEG C after forging, and the thickness of blank is about 54mm, and density reaches 7.21g/cm3。 Three point bending test shows plasticity, and bending strength reaches 240MPa.
By above-mentioned hot forged plate cold rolling-sintering, progressively it is thinned.Specifically pressure-annealing schedule is:54mm→36mm→36mm→ 24mm→17mm→12mm→9.5mm→7.2mm→5mm→3.5mm→2.4mm→1.6mm→1.02mm→1.02mm→ 0.71mm → 0.49mm → 0.39mm → 0.25mm → 0.17mm → 0.13mm → 0.10mm, i.e., burn through 20 cold rollings and 19 times Knot.
Multi-pass cold rolling is to after 30~50% total reductions, then is burnt in hydrogen shield sintering furnace in 1120 DEG C of insulations 0.5h is tied, sheet metal thickness is thinned to 0.10mm, and density reaches 7.52g/cm3
The texture of coarse crystal containing the second phase is formed after sintering, sees Fig. 2.X-ray diffraction Discriminating materials are heterogeneous Fe (Si) phase, as seen in Figure 3, body-centred cubic several characteristic peaks have obvious separating phenomenon, illustrate there are Si solid solubility it is different 2 Kind Fe phases, wherein must have the Si contents in a kind of Fe phases low, have plastic deformation ability.
4h is sintered in 1200 DEG C of Temperature Vacuums, realizes the full alloyings of Si, forms single-phase alloy, thickness 0.1mm, density reaches 7.53g/cm3, Si contents are 4.5%.
Embodiment 3
By the water atomization Fe powder of -100 mesh and the Fe-60%Si high-purity powders of granularity≤6 μm according to 89.17:10.83 ratio Example mixing, forms the mixed-powder of Fe-6.5%Si.The paraffin micro mist of raw material total amount 0.4%, 0.2% methyl are added during mixing Cellulose, 0.1% machine oil.Absolute ethyl alcohol is added according to 400ml/ tons of amount.Above-mentioned powder is mixed using drum mixer Close 6h.
Square pressed compact is prepared using compression-moulding methods, and pressed compact size is 200 × 200 × 50mm, surface pressing 500MPa, green density 6.59g/cm3
Molding square billet is heated to 980 DEG C under nitrogen protective effect, keeps the temperature 2h.Using power forging machine, in square dies Middle hot forging densification, repeatedly final forging temperature is 880 DEG C after forging, and the thickness of blank is about 46mm, and density reaches 6.92g/cm3。 Three point bending test shows plasticity, and bending strength reaches 140MPa.
By above-mentioned hot forged plate cold rolling-sintering, progressively it is thinned.Specifically pressure-annealing schedule is:46mm→36mm→24mm→ 17mm→12mm→9.5mm→7.2mm→5mm→3.5mm→2.4mm→1.6mm→1.02mm→1.02mm→0.71mm→ 0.49mm → 0.39mm → 0.27mm, i.e., sinter through 16 cold rollings and 15 times.
Multi-pass cold rolling is to after 30~50% total deformations, then is burnt in nitrogen protective sintering stove in 1060 DEG C of insulations 1h is tied, sheet metal thickness is thinned to 0.27mm, and density reaches 7.39g/cm3
2h is sintered in 1280 DEG C of Temperature Vacuums, realizes the full alloyings of Si, forms single-phase alloy, thickness 0.27mm, density reaches To 7.40g/cm3, Si contents are 6.5%,
Embodiment 4
By the water atomization Fe powder of -100 mesh and the Fe-62%Si high-purity powders of granularity≤10 μm according to 90.64:9.36 ratio Example mixing, forms the mixed-powder of Fe-5.8%Si.The paraffin micro mist of raw material total amount 0.6%, 0.2% machine are added during mixing Oil.Absolute ethyl alcohol is added according to 400ml/ tons of amount.Using drum mixer by above-mentioned powder mixing 3h.
Square pressed compact is prepared using compression-moulding methods, and pressed compact size is 220 × 220 × 55mm, surface pressing 450MPa, green density 6.62g/cm3
Molding square billet is heated to 1020 DEG C under nitrogen protective effect, keeps the temperature 2h.Using power forging machine, in square dies Middle hot forging densification, repeatedly final forging temperature is 920 DEG C after forging, and the thickness of blank is about 52mm, and density reaches 6.96g/cm3。 Three point bending test shows plasticity, and bending strength reaches 160MPa.
By above-mentioned hot forged plate cold rolling-sintering, progressively it is thinned.Specifically pressure-annealing schedule is:52mm→39mm→26mm→ 18mm→13mm→10.5mm→8.2mm→5mm→3.2mm→2.4mm→2.0mm→1.3mm→0.90mm→0.63→ 0.43mm→0.32mm→0.21mm.Sintered through 17 cold rollings and 16 times.
Multi-pass cold rolling is to after 30~50% total deformations, then is burnt in hydrogen shield sintering furnace in 1060 DEG C of insulations 1h is tied, sheet metal thickness is thinned to 0.21mm, and density reaches 7.42g/cm3
2h is sintered in 1250 DEG C of Temperature Vacuums, realizes the full alloyings of Si, forms single-phase alloy, thickness 0.21mm, density reaches To 7.43g/cm3, Si contents are 5.8%, and the XRD analysis figure of its final plate is shown in Fig. 4, is the high silicon steel of single-phase homogeneous.

Claims (7)

1. a kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that comprise the following steps:
(1) raw material powder prepares
Using -100 mesh water-atomized iron powders, Fe >=99.0% in water-atomized iron powder, remaining is Si, Mn, P, S and other are inevitable Impurity, using Si contents, particle diameter≤6 μm, this ferrosilicon powder is except containing 50~70% for 50~70% HIGH-PURITY SILICON iron powder Beyond Si, major impurity is~0.24%Al ,~0.07%Ca and~0.02%C, remaining is Fe;
(2) powder mixes
According to the ratio of Fe-4.5~6.7%Si, water atomization Fe powder and Fe-50~70%Si HIGH-PURITY SILICON iron powders are weighed;In inertia Mixed under protective atmosphere using low energy mixer;
(3) powder hotforging
Square pressed compact is prepared using compression-moulding methods, green density is 6.57~6.74g/cm3;Square billet will be molded before hot forging 970~1040 DEG C are heated under nitrogen protective effect, keeps the temperature 2~4h, repeatedly final forging temperature is 870~940 DEG C after forging, pressure Base reaches 6.89~7.21g/cm close to full densification, density3
(4) cold rolling-sintering
By above-mentioned hot forged plate cold rolling-sintering, progressively it is thinned, single pass rolling reduction≤8%, is reached through multi- pass rolling to total reduction To after 30~50%, then in sintering furnace after 1020~1120 DEG C of 0.5~2h of heat preservation sintering, multiple cold rolling-sintering, plate Thickness reaches 0.1~0.5mm, and after the completion of the alloy of Si, strip density brings up to 7.38~7.52g/cm3
(5) full alloying high temperature sintering
Vacuum or restitutive protection 1~4h of atmosphere sintering in 1200~1300 DEG C of temperature ranges, it is real under the action of thermal diffusion The existing full alloyings of Si, form single-phase alloy, obtain the high silicon steel of homogeneous, and the thickness of plate is 0.1~0.5mm after densification sintering, Density reaches 7.39~7.53g/cm3
2. the method that powder hotforging as claimed in claim 1 prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that: The HIGH-PURITY SILICON iron powder of particle diameter≤6 μm is by high-energy ball milling or rushes the acquisition of rotation method.
3. the method that powder hotforging as claimed in claim 1 prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that The low energy mixer is conical mixer, V-arrangement batch mixer or drum mixer.
4. the method that powder hotforging as claimed in claim 1 prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that: The square pressed compact prepared in step (3), length and width are respectively 100~300mm, are highly 40~60mm, use surface pressing for The pressure compacting of 400~600MPa.The thickness of blank is 36~54mm after hot forging, and three point bending test shows plasticity, bending Intensity reaches 159~240MPa.
5. the method that powder hotforging as claimed in claim 1 prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that: Step (2) adds cellulose, paraffin micro mist or the water-insoluble binder of zinc stearate when mixing, and the additive amount total amount of binder does not surpass The 0.8% of mixed-powder gross mass is crossed, while adds grease and absolute ethyl alcohol does passivator, plays passivation Si powder, bonding Fe-Si The effect of powder, enhancing powder flowbility and compact strength, the additive amount total amount of passivator are no more than mixed-powder gross mass 2%.
6. the method that powder hotforging as claimed in claim 1 prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that: Support plate described in step (4) uses molybdenum plate, W plates, heat resisting steel, corundum or zirconia ceramics plate.
7. the method that powder hotforging as claimed in claim 1 prepares high silicon steel band with High temperature diffusion sintering, it is characterised in that: During high temperature sintering described in step (6), overlapping places sintering plate, and interlayer is laid with MgO powder, and plate tiling is placed, on plate Tablet weight is placed, prevents from deforming in sintering process.
CN201711367239.2A 2017-12-18 2017-12-18 A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering Withdrawn CN107900347A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201711367239.2A CN107900347A (en) 2017-12-18 2017-12-18 A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201711367239.2A CN107900347A (en) 2017-12-18 2017-12-18 A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering

Publications (1)

Publication Number Publication Date
CN107900347A true CN107900347A (en) 2018-04-13

Family

ID=61870228

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201711367239.2A Withdrawn CN107900347A (en) 2017-12-18 2017-12-18 A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering

Country Status (1)

Country Link
CN (1) CN107900347A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111421137A (en) * 2020-06-09 2020-07-17 宁波海特技术转移有限公司 Electric heating forging and sintering integrated method for powder sintered part blank
CN116532648A (en) * 2023-03-17 2023-08-04 金富族(海南)贵金属研究院有限公司 Method for manufacturing full-compact multicolor nonferrous noble metal section bar

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1273611A (en) * 1998-05-29 2000-11-15 住友特殊金属株式会社 Method for producing high silicon steel and silicon steel
CN1528921A (en) * 2003-09-25 2004-09-15 武汉理工大学 High-silica silicon-steel sheet heat treatment and multiple cold-rolling method
CN103014613A (en) * 2012-12-31 2013-04-03 上海大学 Method for continuous preparation of high-silicon sheet iron by thermal diffusion and high-silicon sheet iron continuous rolling device
CN104962798A (en) * 2015-07-24 2015-10-07 北京科技大学 Method for preparing high-silicon steel by powder sleeve forming
CN106191499A (en) * 2016-09-08 2016-12-07 福建省上杭县九洲硅业有限公司 Powder metallurgic method prepares the method for silumin
CN106808159A (en) * 2015-11-27 2017-06-09 安徽中龙节能科技有限公司 A kind of preparation method of high-silicon silicon steel sheet
CN107282928A (en) * 2017-07-17 2017-10-24 贵州理工学院 Powder Diffusion prepares the method and device of high-silicon steel thin strip under magnetic field

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1273611A (en) * 1998-05-29 2000-11-15 住友特殊金属株式会社 Method for producing high silicon steel and silicon steel
CN1528921A (en) * 2003-09-25 2004-09-15 武汉理工大学 High-silica silicon-steel sheet heat treatment and multiple cold-rolling method
CN103014613A (en) * 2012-12-31 2013-04-03 上海大学 Method for continuous preparation of high-silicon sheet iron by thermal diffusion and high-silicon sheet iron continuous rolling device
CN104962798A (en) * 2015-07-24 2015-10-07 北京科技大学 Method for preparing high-silicon steel by powder sleeve forming
CN106808159A (en) * 2015-11-27 2017-06-09 安徽中龙节能科技有限公司 A kind of preparation method of high-silicon silicon steel sheet
CN106191499A (en) * 2016-09-08 2016-12-07 福建省上杭县九洲硅业有限公司 Powder metallurgic method prepares the method for silumin
CN107282928A (en) * 2017-07-17 2017-10-24 贵州理工学院 Powder Diffusion prepares the method and device of high-silicon steel thin strip under magnetic field

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
员文杰,沈强,张联盟: "粉末轧制法制备Fe-6.5%Si硅钢片的研究", 《粉末冶金技术》 *
员文杰: "粉末轧制法制备高硅硅钢片的工艺及过程原理的研究", 《中国博士学位论文全文数据库工程科技Ⅰ辑》 *
周勇: "铁、硅复合粉末的轧制成型与后续热处理", 《中国优秀博硕士学位论文全文数据库 (硕士) 工程科技Ⅰ辑》 *
张翔: "粉末冶金法制备高硅硅钢片的轧制和热处理工艺研究", 《中国博士学位论文全文数据库 工程科技Ⅰ辑》 *

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111421137A (en) * 2020-06-09 2020-07-17 宁波海特技术转移有限公司 Electric heating forging and sintering integrated method for powder sintered part blank
CN116532648A (en) * 2023-03-17 2023-08-04 金富族(海南)贵金属研究院有限公司 Method for manufacturing full-compact multicolor nonferrous noble metal section bar
CN116532648B (en) * 2023-03-17 2024-03-08 金富族(海南)贵金属研究院有限公司 Method for manufacturing full-compact colorful nonferrous noble metal section bar

Similar Documents

Publication Publication Date Title
CN107900345A (en) A kind of Powder hot isostatic pressure manufacture method of high silicon steel thin belt material
CN107829036A (en) A kind of powder hot-pressing sintering manufacture method of high silicon steel thin belt material
CN108097961A (en) A kind of method that High temperature diffusion sintering prepares high silicon steel band with Powder hot isostatic pressure
CN107900347A (en) A kind of method that powder hotforging prepares high silicon steel band with High temperature diffusion sintering
CN107999757A (en) A kind of method that powder hot-pressing sintering prepares single-phase Fe-6.5%Si silicon steel
CN107971494A (en) A kind of method that powder hot-pressing sintering prepares Fe-6.5%Si soft magnetic materials thin strips
CN107971495A (en) A kind of method that Powder hot isostatic pressure prepares Fe-6.5%Si soft magnetic materials thin strips
CN108097965A (en) A kind of powder extruding method for making of high silicon steel thin belt material
CN108103390A (en) A kind of method that Powder hot isostatic pressure prepares single-phase Fe-6.5%Si silicon steel
CN107900349A (en) A kind of method that powder hotforging prepares Fe 6.5%Si soft magnetic materials thin strips
CN107900346A (en) A kind of method that Powder hot isostatic pressure prepares high silicon steel thin belt material
CN107900348A (en) A kind of method that powder hotforging prepares single-phase Fe 6.5%Si silicon steel
CN108044106A (en) A kind of method that Powder hot isostatic pressure prepares high silicon steel band with High temperature diffusion sintering
CN107855532A (en) A kind of method that powder hot-pressing sintering prepares high silicon steel thin belt material
CN108044107A (en) A kind of Powder hot isostatic pressure preparation method of Fe-6.5%Si soft magnetic materials thin strip
CN107900354A (en) A kind of method that powder extruding prepares high silicon steel thin belt material
CN107999760A (en) A kind of method that diffusion-sintering prepares Fe-6.5%Si bands with powder hotforging
CN107999763A (en) A kind of method that powder hotforging prepares Fe-6.5%Si bands with diffusion-sintering
CN108044098A (en) A kind of method that powder hotforging prepares high silicon steel thin belt material
CN107999761A (en) A kind of powder hotforging manufacture method of high silicon steel thin belt material
CN108080641A (en) A kind of powder rolling preparation method of Fe-6.5%Si soft magnetic materials thin strip
CN108044099A (en) A kind of method that High temperature diffusion sintering prepares high silicon steel band with powder hotforging
CN108044108A (en) A kind of method that powder hot-pressing sintering prepares high silicon steel band with High temperature diffusion sintering
CN108097966A (en) A kind of method that High temperature diffusion sintering prepares high silicon steel band with powder warm-rolling
CN107999762A (en) A kind of powder hotforging preparation method of Fe-6.5%Si soft magnetic materials thin strip

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WW01 Invention patent application withdrawn after publication

Application publication date: 20180413

WW01 Invention patent application withdrawn after publication