CN102424934B - Manufacturing method of steel forged component of 18CrNiMo7-6 large gear - Google Patents

Manufacturing method of steel forged component of 18CrNiMo7-6 large gear Download PDF

Info

Publication number
CN102424934B
CN102424934B CN2011103642834A CN201110364283A CN102424934B CN 102424934 B CN102424934 B CN 102424934B CN 2011103642834 A CN2011103642834 A CN 2011103642834A CN 201110364283 A CN201110364283 A CN 201110364283A CN 102424934 B CN102424934 B CN 102424934B
Authority
CN
China
Prior art keywords
steel
insulation
stove
18crnimo7
heated
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.)
Active
Application number
CN2011103642834A
Other languages
Chinese (zh)
Other versions
CN102424934A (en
Inventor
冯桂萍
秋立鹏
阚志
王连海
刘金鑫
程丽杰
薛井恒
段永生
郭晓俊
马群
赵敏
陈明
纪肖
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.)
Fushun Special Steel Shares Co., Ltd.
Original Assignee
FUSHUN SPECIAL STEEL SHARES Co Ltd
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 FUSHUN SPECIAL STEEL SHARES Co Ltd filed Critical FUSHUN SPECIAL STEEL SHARES Co Ltd
Priority to CN2011103642834A priority Critical patent/CN102424934B/en
Publication of CN102424934A publication Critical patent/CN102424934A/en
Application granted granted Critical
Publication of CN102424934B publication Critical patent/CN102424934B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

Landscapes

  • Forging (AREA)
  • Heat Treatment Of Articles (AREA)

Abstract

The invention discloses a manufacturing method of a steel forged component of an 18CrNiMo7-6 large gear. The process route comprises: electric furnace, LF (low frequency), VD (voltage detection), ingots of 9-27t, production with a 3500 quick forging machine, heat treatment, straightening and rough turning. The narrow composition scope of chemical elements such as C, Mn, Nb, Al and N with significant impact on the steel hardenability and grain size is strictly controlled to achieve dual purposes of narrow hardenability band, qualified grain size and grain size durability; the smelting process is strictly implemented to improve the steel purity; and the isothermal annealing and heat treatment with the furnace cooling speed controlled are adopted to achieve dual purposes of dehydrogenation and preparation of a structure with F and P. The invention has the advantages that the 18CrNiMo7-6 steel completely meeting technical requirements can be developed via improving the purity, ensuring the narrow hardenability band, realizing the grain size durability and adopting the unique heat treatment process, and the quality problems of manufacturing large gears such as difficulty in steel cutting, quenching cracks, coarse grains and white spots can be solved.

Description

18CrNiMo7-6 large gear steel forgings manufacture method
Technical field
The invention belongs to metallic substance and make the field, disclose a kind of large gear steel forgings manufacture method, be mainly used in the production of structural alloy steel 18CrNiMo7-6 Pinion Steel.
Background technology
18CrNiMo7-6 is the German trade mark, the former trade mark is 17CrNiMo6, fast development along with speed reduction unit machinery industry and wind-powered electricity generation industry, high ferro industry, 18CrNiMo7-6 is as the leading Material Used of gear or gear shaft key component, be high efficiency, the security operation of guaranteeing its product, the user constantly proposes Secretary to the quality of materials technical indicator, for reducing the large gear distortion, the forging hardenability band is reduced into 5HRC by original 7HRC, and proposes the requirement of banded structure; For improving machining efficient, require the steel condition of delivery to be organized as the F+P balanced weave; Be used for the weather resistance (namely be incubated 80h under 950 ℃ of pyroprocessing, grain fineness number reaches 8 grades~6 grades and do not grow up) that the wind power speed increaser Pinion Steel requires grain fineness number, have not yet to see the research work that the home and abroad bibliographical information is correlated with therewith.
18CrNiMo7-6 is the responsive steel grade of white point, adopts common dehydrogenation to be prone to white-spot defects (or the white point hysteresis phenomenon occurring).Owing to adopting the red annealing of sending after forging process for fuel, austenite structural transformation in process of cooling is insufficient, and residual austenite changes part, and hydrogen solubleness in austenite is maximum, As time goes on, and residual austenite generation martensitic transformation, form larger structural stress, crack.
The overall dimension Φ 750mm of the 18CrNiMo7-6 forging that 3500 tons of quick forging machines of present domestic employing are produced, the maximum outside diameter Φ 1250mm of hole cake forging.Application along with large ingot shape, easily exist be mingled with, the segregation problem of composition and tissue is more aobvious outstanding, the homogeneity of composition and tissue is the two large principal elements that affect finished product gear quenching hardness and distortion, therefore the user proposes requirements at the higher level to hardening capacity, be that hardenability band is not more than 5HRC, this is that common process is difficult to realize.
18CrNiMo7-6 is bainitic steel, and according to its CCT curve, the F+P transformetion range is narrow, and fringe time is long, and the tissue that adopts isothermal normalizing technique to obtain is B or B+F+P mixed structure.
Address the above problem the key measures that should take two aspects: the thermal treatment process of formulating on the one hand science is to determine that can the 18CrNiMo7-6 steel obtain the core technology that F+P organized and went the white point effect, and reasonably chemical composition design is effective control method of hardening capacity and grain fineness number weather resistance on the other hand.To not finding the information of relevant valuable annealing process information and grain fineness number weather resistance assurance aspect in the literature search of home and abroad; The white point hysteresis phenomenon appearred in Fushun special steel limited-liability company in batches in adopting the prior art research and development, producing, can not guarantee the weather resistance of grain fineness number, and non-equilibrium and bainite structure often appears, banded structure and hardening capacity often have indivedual points to exceed specialized range.
Summary of the invention
For the 18CrNiMo7-6 steel, the difficult point of processing annealing process is namely will guarantee to obtain F+P, also wants simultaneously to guarantee to have the dehydrogenation function; The difficult point of chemical composition design is namely will guarantee grain fineness number and grain fineness number weather resistance, also wants simultaneously to guarantee narrow hardenability band; And grain fineness number and grain fineness number weather resistance also depend on the control of final forging temperature.
The present invention seeks to disclose a kind of 18CrNiMo7-6 large gear steel forgings manufacture method, by adopting the thermal treatment process of isothermal annealing, control speed of furnace cooling, reach dehydrogenation and obtain the dual purpose that F+P organizes; By strict control, hardenability of steel and grain fineness number there are chemical element C, Mn, Nb, the Al of great effect, the close limit of N, reach the dual purpose with narrow hardenability band and qualified grain fineness number and grain fineness number weather resistance; The strict implement smelting technology improves the purity of steel; Develop and reach the 18CrNiMo7-6 steel that client's technical quality requires fully, solution large gear steel difficult cutting, quenching crack, coarse grains and white point quality problems.
For achieving the above object, the present invention is by the following technical solutions:
1. operational path is: electric furnace → LF → VD → ingot casting 9t~27t → 3500 quick forging machine production → thermal treatment → alignings → rough turn comprise process for making, forging process and thermal treatment process;
2. concrete technology measure:
⑴ process for making
1. chemical composition design
According to the SEP1664 hardening capacity software for calculation of U.S. ASTMA255 and Germany, in conjunction with actual end quenching test result, use the mass data regression analysis, formulate 18CrNiMo7-6 chemical composition inner quality standard, see Table 1.
Table 1
2. eaf process
Batching is selected high-quality steel scrap, the pig iron (molten iron) 〉=30%; Tapping temperature 〉=1630 ℃, P≤0.010%, end point carbon is controlled by 〉=0.08%, and 3min before tapping~5min reduces and use oxygen intensity, increases and sprays carbon consumption, every stove 300kg~400kg; The steel final deoxygenation adds aluminium 2.5kg/t~3.0kg/t; Guarantee freeboard 〉=800mm, forbid lower oxidation sludge;
3. LF technique
Put in place and feed aluminium, whole process using carbon dust+Al grain diffusive deoxidation, first batch of add-on 20Kg~30Kg, white slag hold-time 〉=30min by 0.08%; According to the full aluminium result of sample 1 (considering in stove), by 0.06% hello aluminium, consider before vacuum to feed aluminium by 0.05% in stove, after assurance VD processes, aluminium content is greater than 0.02%, and all the other times are not fed aluminum steel as far as possible; Calculate by 0.03% and add Nb-Fe; Tapping temperature 〉=1690 ℃, S≤0.010%;
4. VD technique
Skim on a small quantity before entering tank, vacuum tightness≤100Pa, lower hold-time of vacuum 〉=20min; Add N-Cr after removing vacuum, N-Cr is baking fully, does not consider that in stove, N adds by 0.007% calculating, soft blow time 〉=30min;
5. cast
Ar protects cast, teeming temperature: 1585 ℃ ± 5 ℃, adopt mould cold greater than 9 tons of above steel ingots of ingot, mould cool time 84h;
⑵ forging process
1210 ℃ ± 10 ℃ of Heating Steel Ingots temperature, temperature keep 8h~10h by 1220 ℃ of controls of the upper limit; Twice upsetting pull of steel ingot opened and forged 1080 ℃ of temperature, guarantees the excision amount: ingot head 〉=15%, ingot butt 〉=5%; Intermediate blank is heated to 1180 ℃ ± 10 ℃, and soaking time is greater than 4h, 850 ℃ ± 20 ℃ of final forging temperatures.
⑶ thermal treatment process
Steel diameter Ф<350mm only walks II section in curve, and diameter Ф 〉=350mm walks curve I section+II section.
Steel diameter Ф=250mm(only walks II section in curve): H1(is soaking time at 890 ℃ of temperature) time 15h, H2(is soaking time at 650 ℃ of temperature) time is 40h; The every increase of steel diameter 100mm, the H2 time lengthens 25 hours; Hole cake forging final annealing technique is walked II section curve.
Advantage of the present invention and innovative point are:
⑴ improve purity
For guaranteeing 18CrNiMo7-6 large gear steel interior tissue, need the above large ingot shape of use 9t to produce, guarantee the processing ratio, and easily there is Inclusion Problem in large ingot smelting, the qualified rank of users specification regulation non-metallic inclusion should meet the regulation of table 2.
Table 2
Figure GDA00002881157900031
For improving Molten Steel Cleanliness, close the following three link of key control process for making:
1. control the electric furnace steel tapping amount, freeboard 〉=800mm when guaranteeing the VD vacuum-treat so that the large argon gas of VD stirs, fully floats inclusion and gas;
2. LF white slag time 〉=30min, transfer aluminium before the VD vacuum, guarantees that VD processes rear aluminium content and reaches the control target, do not feed aluminum steel after VD as far as possible;
3. soft blow time 〉=30min, be as the criterion not reveal the molten steel face; Go out 1585 ℃ ± 5 ℃ of tank temperature, press 1580 ℃ of cast of lower limit temperature, rationally control pouring speed, adopt argon for protecting pouring.
Assay nonmetallic inclusionsin steel 100% conformance with standard regulation; The method of inspection adopts the extreme value analysis method of the high reliability of domestic initiation, proves that this technique satisfies standard-required fully.
⑵ guarantee narrow hardenability band
The user sees Table 3 to the requirement of end hardening capacity and the end hardening capacity contrast of European standard regulation, the distribution trend correlation curve is seen Fig. 2, European standard requires J9 point hardenability band≤10HRC, and users specification requires hardenability band≤5HRC, has certain difficulty from controlling.
Table 3
Fushun special steel limited-liability company is according to the SEP1664 hardening capacity software for calculation of U.S. ASTMA255 and Germany, in conjunction with actual end quenching test result, carry out the comparison comparative analysis of mass data, in the design mix process, both considered to make this material to obtain higher hardening capacity and narrow hardenability band, take into account again simultaneously large gear quenching crack sensitive question, the final best proportioning of determining appropriate chemical composition C, Mn, Cr, the alloying element contents such as Ni, Mo satisfies the user to the requirement of hardening capacity.
⑶ realize the grain fineness number weather resistance
Low-carbon (LC) Pinion Steel Examining Austenite Grain Size ordinary method has 2 kinds, cementing process and direct method.The cementing process general requirement is in 930 ℃ of insulation 6h, the cold rear Examining Austenite Grain Size of stove; Directly rule is incubated certain hour (soaking time general requirement 1h~4h scope), Examining Austenite Grain Size after shrend at 930 ℃ of temperature.And be used for wind power gear steel 18CrNiMo7-6, Secretary is proposed grain fineness number, it is grain fineness number blank sample, 950 ℃ of insulation 80h, be cooled to subsequently 860 ℃ of insulation 2h, quiet oil quenching, autstenitic grain size 〉=5 grade, this kind method is mainly simulated large gear for obtaining certain cementation zone, need at high temperature long-time carburizing, and crystal grain is not grown up.For reaching for wind power gear steel 18CrNiMo7-6 grain fineness number endurance test requirement, carry out the long-time grain fineness number test of 950 ℃ the longest insulation 100h, and to the grain fineness number trend analysis of growing up, reach a conclusion: 1. chemical composition should add the crystal grain thinning element, Nb adds by 0.03%, Al controls by 0.02%~0.04%, and the equivalent thickness of aluminium is between 0.030%-0.050%; 2. guarantee enough processing ratio and deflection, control final forging temperature at 870 ℃ ± 10 ℃; 3. the original structure of steel should be the F+P tissue.Use above-mentioned technology measure in actual production, guaranteed 950 ℃ under the autstenitic grain size 〉=6 grades of insulation 80h steel, satisfied the needs of the long-time carburizing of large gear high temperature to the grain fineness number weather resistance.
⑷ the thermal treatment process of uniqueness
18CrNiMo7-6 is the responsive steel grade of white point; 18CrNiMo7-6 is bainitic steel, for improving machinability, requires the steel condition of delivery to be organized as the F+P balanced weave.Have anti-white point for solving the white point problem and obtain the F+P tissue, making, obtain the heat treatment cycle curve that typical F+P organizes the uniqueness of dual-use function.
Description of drawings
Below in conjunction with the drawings and specific embodiments, the present invention is elaborated.
Fig. 1 is 18CrNiMo7-6 large gear steel forgings heat treatment cycle curve figure, and wherein curve is divided into two sections: I section, II section;
Fig. 2 is that the user is to the end hardening capacity distribution trend correlation curve schematic diagram of the requirement of 18CrNiMo7-6 large gear steel forgings end hardening capacity and European standard regulation.
Embodiment
Embodiment 1
Heat (batch) number: 10203011386, hole cake trimmed size: external diameter 1129mm * internal diameter 442mm * height 291mm, forging ratio 11.8.
The fast forging finished hole cake → hole cake of forging of technical process: the electric furnace → LF → VD → ingot casting → fast forging forging of batch-type furnace heating → 3500 (technique is pulled out in two upsettings two) → intermediate blank annealing → intermediate blank blanking → batch-type furnace heating → 3500 is annealed.
⑴ process for making
1. chemical composition
18CrNiMo7-6 chemical composition standard sees Table 4.
Table 4
Figure GDA00002881157900051
2. eaf process
Select steel scrap, the pig iron amount of allocating into 30%; 1670 ℃ of tapping temperatures, P content are 0.010%, end point carbon 0.010%, and 3min reduction oxygen intensity before tapping increases spray carbon consumption 378Kg; Final deoxygenation adds aluminium 162kg; Freeboard 810mm does not descend oxidation sludge.
2. LF technique
Put in place and feed aluminium, whole process using carbon dust+Al grain diffusive deoxidation, first batch of add-on 30Kg, white slag hold-time 30min by 0.08%; According to the full aluminium result of sample 1, feed aluminium by 0.06%.Feed aluminium by 0.05% before vacuum, add Nb-Fe by 0.03% calculating; 1700 ℃ of tapping temperatures, S:0.003%.
4. VD technique
Skim on a small quantity before entering tank, vacuum tightness≤100Pa, 20min of lower hold-time of vacuum.Add N-Cr after removing vacuum, N calculates by 0.007% and adds; Soft blow time 35min.
5. cast
Ar protects cast, teeming temperature: 1587 ℃; 27 tons of ingots of ingot shape, mould cool time 84h.
6. forging process
1210 ℃ ± 10 ℃ of Heating Steel Ingots temperature keep 10h; Twice upsetting pull of steel ingot, wide anvil production is adopted in pulling, opens 1080 ℃ of temperature, ingot head excision amount 18%, the ingot butt excision amount 5.5% of forging;
Intermediate blank is heated to 1180 ℃ ± 10 ℃, soaking time 4.5h, 860 ℃ ± 10 ℃ of finish-forging temperature.
7. thermal treatment process
The hole cake is heated to 890 ± 10 ℃ of insulations 20 hours, and per hour 70 ℃ cool to 660 ℃, are incubated 80 hours, and 30 ℃/h cools to 500 ℃ of air coolings of coming out of the stove.
8. production testing result:
The inclusion assay sees Table 5.
Table 5
Figure GDA00002881157900061
Grain fineness number adopts 8 grades~6 grades of 930 ℃ of insulation 4h grain fineness numbers of direct method; 950 ℃ are incubated 80 hours, are cooled to subsequently 860 ℃ of insulation 2h, quiet oil quenching, 7 grades~6 grades of grain fineness numbers.
End hardening capacity assay sees Table 6.
Table 6
Figure GDA00002881157900062
Table 6(is continuous)
Figure GDA00002881157900071
Be organized as ferrite+perlite.
Mechanical properties test the results are shown in Table 7.
Table 7
Figure GDA00002881157900072
Delivery hardness (HBW) 179,182,200,187.
Embodiment 2
Heat (batch) number: 10203022144, trimmed size φ 390mm, forging ratio 9.9; The fast forging of technical process: electric furnace → LF → VD → ingot casting → batch-type furnace heating → 2000 forged (technique is pulled out in a upsetting one) → steel annealing.
⑴ process for making
1. chemical composition
18CrNiMo7-6 chemical composition standard sees Table 8.
Table 8
Figure GDA00002881157900073
2. eaf process
Select steel scrap, the pig iron amount of allocating into 30%; 1680 ℃ of tapping temperatures, P content are 0.0093%, end point carbon 0.072%, and 3min reduction oxygen intensity before tapping increases spray carbon consumption 400Kg; Final deoxygenation adds aluminium 150kg; Freeboard 820mm does not descend oxidation sludge.
3. LF technique
Put in place and feed aluminium, whole process using carbon dust+Al grain diffusive deoxidation, first batch of add-on 30Kg, white slag hold-time 33min by 0.08%; According to the full aluminium result of sample 1, feed aluminium by 0.06%; Feed aluminium by 0.05% before vacuum, add Nb-Fe by 0.03% calculating; 1692 ℃ of tapping temperatures, S:0.006%.
4. VD technique
Skim on a small quantity before entering tank, vacuum tightness≤100Pa, 25min of lower hold-time of vacuum.Add N-Cr after removing vacuum, N calculates by 0.007% and adds; Soft blow time 30min.
5. cast
Ar protects cast, teeming temperature: 1588 ℃; 15 tons of ingots of ingot shape, mould cool time 84h.
6. forging process
1210 ℃ ± 10 ℃ of Heating Steel Ingots temperature keep 10h; Twice upsetting pull of steel ingot, wide anvil production is adopted in pulling, opens 1080 ℃ of temperature, ingot head excision amount 16%, the ingot butt excision amount 5% of forging; In
Between base be heated to 1180 ℃ ± 10 ℃, soaking time 5.0h, 870 ℃ ± 10 ℃ of finish-forging temperature.
7. thermal treatment process
650 ℃ of guarantor 5h of steel heating are cooled to 290 ℃~320 ℃ and protect 8h, protect 5h for 680 ℃, 890 ℃ ± 10 ℃ insulation 10h are cooled to 290 ℃~310 ℃ and protect 12h, to 890 ℃ ± 10 ℃ insulation 15h, per hour 70 ℃ cool to 660 ℃, are incubated 78 hours, and 30 ℃/h cools to 500 ℃ of air coolings of coming out of the stove.
4. production testing result:
The inclusion assay sees Table 9.
Table 9
Grain fineness number adopts 7 grades of 930 ℃ of insulation 4h grain fineness numbers of direct method; 950 ℃ are incubated 80 hours, are cooled to subsequently 860 ℃ of insulation 2h, quiet oil quenching, 7 grades~6 grades of grain fineness numbers.
End hardening capacity assay sees Table 10.
Table 10
Figure GDA00002881157900082
Be organized as ferrite+perlite.
Mechanical properties test the results are shown in Table 11.
Table 11
Delivery hardness (HBW) 202,196,192,187.

Claims (1)

1. 18CrNiMo7-6 large gear steel forgings manufacture method, operational path is electric furnace → LF → VD → ingot casting 9t~27t → 3500 quick forging machine production → thermal treatment → alignings → rough turn, manufacturing process comprises process for making, forging process and thermal treatment process, it is characterized in that:
Described process for making:
1. 18CrNiMo7-6 chemical composition (%) inner quality standard: C0.16~0.19, Mn0.55~0.65, Si0.20~0.30, S≤0.005, P≤0.015, Ni1.55~1.65, Cr1.65~1.75, Mo0.25~0.30, Al0.02~0.04, N0.008~0.015;
2. electric steelmaking process: batching is selected high-quality steel scrap, the pig iron or molten iron 〉=30%; Tapping temperature 〉=1630 ℃, P≤0.010%, end point carbon is controlled by 〉=0.08%, and 3min before tapping~5min reduces and use oxygen intensity, increases and sprays carbon consumption, every stove 300kg~400kg; The steel final deoxygenation adds aluminium 2.5kg/t~3.0kg/t; The high-quality lime satisfies the above specification of quality CaO of one-level 〉=90%, raw burn rate≤10%, and activity 〉=300ml guarantees freeboard 〉=800mm, forbids lower oxidation sludge;
3. LF stove refinery practice: put in place and feed aluminium, whole process using carbon dust+Al grain diffusive deoxidation, first batch of add-on 20kg~30kg, white slag hold-time 〉=30min by 0.08%; ,, consider before vacuum to feed aluminium by 0.05% in stove by 0.06% hello aluminium comprising the full aluminium result in stove according to sample 1, after assurance VD processes, aluminium content is greater than 0.02%, and all the other times are not fed aluminum steel as far as possible; Calculate by 0.03% and add Nb-Fe; Tapping temperature 〉=1690 ℃, S≤0.010%;
4. VD treatment process: skim on a small quantity before entering tank, vacuum tightness≤100Pa, lower hold-time of vacuum 〉=20min; Add N-Cr after removing vacuum, N-Cr is baking fully, does not consider that in stove, N adds by 0.007% calculating, soft blow time 〉=30min;
5. pouring technology: Ar protects cast, teeming temperature: 1585 ℃ ± 5 ℃, adopt mould cold greater than 9 tons of above steel ingots of ingot, mould cool time 84h;
Described forging process:
1210 ℃ ± 10 ℃ of Heating Steel Ingots temperature, temperature keep 8h~10h by 1220 ℃ of controls of the upper limit; Twice upsetting pull of steel ingot opened and forged 1080 ℃ of temperature, guarantees the excision amount: ingot head 〉=15%, ingot butt 〉=5%; Intermediate blank is heated to 1180 ℃ ± 10 ℃, and soaking time is greater than 4h, 875 ℃ ± 25 ℃ of final forging temperatures;
Described thermal treatment process:
Steel diameter Ф<350mm is heated to 890 ℃ ± 10 ℃, and insulation cools to 650 ℃ ± 10 ℃ with 30 ℃/h, and insulation cools to 500 ℃ with 30 ℃/h, the air cooling of coming out of the stove;
Diameter Ф 〉=350mm is heated to 650 ℃ ± 10 ℃, insulation 5h, cool to 280 ℃~320 ℃, insulation 8h is heated to 680 ℃ ± 10 ℃, insulation 5h is heated to 890 ℃ ± 10 ℃, soaking time 10h, cool to 280 ℃~320 ℃, insulation 12h is heated to 890 ℃ ± 10 ℃, insulation cools to 650 ℃ ± 10 ℃ with 30 ℃/h, insulation, cool to 500 ℃ with 30 ℃/h, the air cooling of coming out of the stove;
When steel diameter Ф=250mm, be heated to 890 ℃ ± 10 ℃, soaking time 15h cools to 650 ℃ ± 10 ℃ with 30 ℃/h, and insulation 40h cools to 500 ℃ with 30 ℃/h, the air cooling of coming out of the stove; The every increase of steel diameter 100mm, 650 ℃ ± 10 ℃, soaking time lengthens 25h;
Hole cake forging final annealing technique is to be heated to 650 ℃ ± 10 ℃, and insulation 40h cools to 500 ℃ with 30 ℃/h, the air cooling of coming out of the stove.
CN2011103642834A 2011-11-16 2011-11-16 Manufacturing method of steel forged component of 18CrNiMo7-6 large gear Active CN102424934B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011103642834A CN102424934B (en) 2011-11-16 2011-11-16 Manufacturing method of steel forged component of 18CrNiMo7-6 large gear

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011103642834A CN102424934B (en) 2011-11-16 2011-11-16 Manufacturing method of steel forged component of 18CrNiMo7-6 large gear

Publications (2)

Publication Number Publication Date
CN102424934A CN102424934A (en) 2012-04-25
CN102424934B true CN102424934B (en) 2013-06-05

Family

ID=45958961

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011103642834A Active CN102424934B (en) 2011-11-16 2011-11-16 Manufacturing method of steel forged component of 18CrNiMo7-6 large gear

Country Status (1)

Country Link
CN (1) CN102424934B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105543644A (en) * 2015-12-03 2016-05-04 抚顺特殊钢股份有限公司 Novel manufacturing technology of super-large size gear steel SCM822H for industrial speed reducer

Families Citing this family (34)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102990290A (en) * 2012-08-22 2013-03-27 昌利锻造有限公司 Processing method of idler shaft
CN102990291A (en) * 2012-08-22 2013-03-27 昌利锻造有限公司 Forging method of idler shaft for gearbox
CN103352173A (en) * 2013-06-30 2013-10-16 贵州安大航空锻造有限责任公司 Preheat treatment method for 18CrNiMo7-6 alloy steel forged pieces
CN103350202B (en) * 2013-07-12 2017-08-29 抚顺特殊钢股份有限公司 The high-quality Automobile Gear Steels manufacture methods of SCr420HB
CN103468887B (en) * 2013-08-02 2017-05-31 浙江吉利汽车研究院有限公司 The heat treatment method after forging of steel alloy
CN103468913B (en) * 2013-09-06 2014-12-10 内蒙古北方重工业集团有限公司 Heat treatment method for steel grain refinement of ultrahigh pressure vessel
CN104060056B (en) * 2014-04-01 2016-04-20 江苏联峰能源装备有限公司 A kind of expansion hydrogen annealing method for operation after the forging of forging material
CN104532102B (en) * 2014-12-09 2017-01-11 抚顺特殊钢股份有限公司 Manufacturing technology of large-sized carburized bearing steel G20Cr2Ni4A for wind electricity
CN104611502B (en) * 2015-03-03 2016-07-13 中天钢铁集团有限公司 A kind of sulfur-bearing Series Gear steel smelting technique in aluminum
CN105969949B (en) * 2016-06-02 2018-09-14 溧阳市金昆锻压有限公司 18CrNiMo7-6 gear forging shaft the pre-heat treatment isothermal annealed processes
CN105969962A (en) * 2016-06-02 2016-09-28 溧阳市金昆锻压有限公司 Control process of gear steel strip-shaped structure
CN106011619A (en) * 2016-06-07 2016-10-12 东北特钢集团大连特殊钢有限责任公司 Manufacturing method of SXQ550D-Z35 forged thick plate for fixed guide vane
CN105861951B (en) * 2016-06-07 2017-11-03 东北特钢集团大连特殊钢有限责任公司 Nickel and stainless steel super large-scale continuous casting billet manufacture method
CN106048139B (en) * 2016-07-11 2019-10-22 宝钢特钢有限公司 The nitrogen flushing alloyage process of 18CrNiMo7-6 steel
CN106312000A (en) * 2016-10-12 2017-01-11 中原特钢股份有限公司 18CrNiMo7-6 round billet continuous casting method for vertical type continuous casting production gear steel
CN106424524B (en) * 2016-10-14 2018-10-12 太原科技大学 A kind of forging method of 17CrNiMo6 steel wind-power electricity generation gear
CN106929653B (en) * 2017-03-01 2019-05-07 上海电气上重铸锻有限公司 A kind of 25Cr2Ni2MoV rotor made of steel forging heat treatment method after forging
CN107299293A (en) * 2017-06-16 2017-10-27 马鞍山钢铁股份有限公司 A kind of harmonious locomotive gear blank and preparation method thereof
CN108203759B (en) * 2017-12-26 2019-05-21 中车戚墅堰机车车辆工艺研究所有限公司 A kind of conditioning treatment method of heavy-duty gear
CN109355459B (en) * 2018-11-26 2020-09-18 抚顺特殊钢股份有限公司 All-solid material smelting method for electric arc furnace
CN109454211A (en) * 2018-11-26 2019-03-12 抚顺特殊钢股份有限公司 The method of electric furnace smelting high quality pinion steel
CN110227778B (en) * 2019-07-09 2021-11-09 中国航发哈尔滨东安发动机有限公司 High-strength gear steel forging method
CN110628988A (en) * 2019-10-21 2019-12-31 马鞍山钢铁股份有限公司 Method for smelting nitrogen-containing steel
CN111534669B (en) * 2020-06-16 2021-08-03 宝钢特钢韶关有限公司 Method for machining gear part from round gear steel and gear part
CN112620560A (en) * 2020-12-02 2021-04-09 南京迪威尔高端制造股份有限公司 18CrNiMo7-6 gear forging and manufacturing method and detection method for overcoming subcutaneous defects of forging
CN112853206B (en) 2020-12-31 2021-11-09 大冶特殊钢有限公司 Wind power gear steel for improving purity and reliability and smelting method thereof
CN115369315A (en) * 2021-05-21 2022-11-22 宝山钢铁股份有限公司 High-temperature carburization high-hardenability gear steel and manufacturing method thereof
CN113652611A (en) * 2021-08-17 2021-11-16 山西太钢不锈钢股份有限公司 High-speed rail gear steel and preparation method thereof
CN113621886B (en) * 2021-08-23 2022-05-31 浙江杰德机械科技有限公司 Manufacturing method of 18CrNiMo7-6 carburizing and quenching steel
CN113684354A (en) * 2021-08-26 2021-11-23 重庆长征重工有限责任公司 Method for improving banded structure of alloy structural steel 17CrNiMo6 forge piece
CN113981321A (en) * 2021-10-29 2022-01-28 江苏联峰能源装备有限公司 Low-carbon CrNiMo gear steel and banded structure control method thereof
CN114317928B (en) * 2021-12-18 2023-11-28 张家港广大特材股份有限公司 Heat treatment method for 18CrNiMo7-6 wind power gear steel material
CN114959415A (en) * 2022-05-08 2022-08-30 江阴兴澄特种钢铁有限公司 Manufacturing method of microalloyed wind power transmission gear steel
CN116043111B (en) * 2023-01-04 2024-09-20 山东钢铁股份有限公司 Gear steel for wind power and production method thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1554791A (en) * 2003-12-26 2004-12-15 太原钢铁(集团)有限公司 Method for increasing quenching degree and heat processing performance of gear steel
CN102071367A (en) * 2010-11-24 2011-05-25 南京迪威尔重型锻造股份有限公司 Steel forging manufacturing process for deep-sea Christmas tree equipment connectors
CN102226254A (en) * 2011-06-10 2011-10-26 钢铁研究总院 High-strength high-toughness anticorrosion high-temperature bearing/pinion steel and preparation method thereof
CN102234744A (en) * 2010-04-23 2011-11-09 宝山钢铁股份有限公司 Ultra-pure alloy and method for manufacturing turbine rotor forging by using same

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1554791A (en) * 2003-12-26 2004-12-15 太原钢铁(集团)有限公司 Method for increasing quenching degree and heat processing performance of gear steel
CN102234744A (en) * 2010-04-23 2011-11-09 宝山钢铁股份有限公司 Ultra-pure alloy and method for manufacturing turbine rotor forging by using same
CN102071367A (en) * 2010-11-24 2011-05-25 南京迪威尔重型锻造股份有限公司 Steel forging manufacturing process for deep-sea Christmas tree equipment connectors
CN102226254A (en) * 2011-06-10 2011-10-26 钢铁研究总院 High-strength high-toughness anticorrosion high-temperature bearing/pinion steel and preparation method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105543644A (en) * 2015-12-03 2016-05-04 抚顺特殊钢股份有限公司 Novel manufacturing technology of super-large size gear steel SCM822H for industrial speed reducer
CN105543644B (en) * 2015-12-03 2017-11-21 抚顺特殊钢股份有限公司 Industrial reductor super large-scale pinion steel SCM822H manufacturing process

Also Published As

Publication number Publication date
CN102424934A (en) 2012-04-25

Similar Documents

Publication Publication Date Title
CN102424934B (en) Manufacturing method of steel forged component of 18CrNiMo7-6 large gear
CN104120332B (en) High-intensity high-tenacity spheroidal graphite cast-iron 600-10 and production technology thereof
CN104775065B (en) A kind of high toughness wear resistant magnesium iron rocking arm and preparation method thereof
CN101289731B (en) CrMnTi narrow hardenability strip pinion steels and method of manufacture
CN102363859B (en) Method for producing wear-resisting steel plate
CN102352466B (en) High-carbon chromium bearing steel GCr15 and production method thereof
CN103556069B (en) A kind of gas cylinder seamless large-diameter pipes and manufacture method thereof
CN104109816A (en) Carburizing alloy steel, and preparation method and application thereof
CN109321712A (en) A kind of high-hardenability carburized gears 20CrNiB steel
CN105525226A (en) Martensitic stainless steel wire rod and production method thereof
CN103436808B (en) A kind of low-carbon-equivalent high-strong toughness cast steel and preparation method thereof
CN103966515B (en) A kind of method utilizing electric arc furnace to prepare low-alloy high-strength toughness cast steel adding
CN102703817A (en) Free-machining pinion steel and production technique thereof
CN102107215A (en) Resource-saving boron-containing high-speed steel composite roll and preparation method thereof
CN105112804A (en) AISI410SS martensite stainless steel for valve and preparation process of AISI410SS martensite stainless steel
CN105908086A (en) Extremely-thick low-alloy steel plate with low compression ratio and preparation method thereof
CN104726759A (en) Production method of as-cast high-strength gray cast iron
CN101168824A (en) Leadless easy-cutting steel for medium-hard tooth face heavy load gear wheel and preparation method thereof
CN103966498B (en) A kind of high chromium white antifriction cast iron high-abrasive material and manufacture method thereof
CN104911494B (en) Boron-contained wear-resisting steel casting material and preparation method thereof
CN114438394A (en) Production process of pre-hardened high-polishing plastic mold steel
CN110055470B (en) Container corner fitting and heat treatment process thereof
CN102260767A (en) Method for producing minus 40 DEG C low temperature casting-state nodular graphite cast iron with large cross section
CN104651731B (en) A kind of large-size ball mill liner plate and preparation method thereof
CN103725975A (en) Novel low-cost high-strength Q500 series steel plate and production method thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
ASS Succession or assignment of patent right

Owner name: FUSHUN SPECIAL STEEL SHARES CO., LTD

Free format text: FORMER OWNER: DONGBEI SPECIAL STEEL GROUP CO., LTD.

Effective date: 20130320

C41 Transfer of patent application or patent right or utility model
COR Change of bibliographic data

Free format text: CORRECT: ADDRESS; FROM: 116031 DALIAN, LIAONING PROVINCE TO: 113001 FUSHUN, LIAONING PROVINCE

TA01 Transfer of patent application right

Effective date of registration: 20130320

Address after: The eastern section of Anshan road Wanghua District 113001 Liaoning city of Fushun province No. 8

Applicant after: Fushun Special Steel Shares Co., Ltd.

Address before: 116031 No. 4 Gong Xing Road, Ganjingzi District, Liaoning, Dalian

Applicant before: Dongbei Special Steel Group Co., Ltd.

C14 Grant of patent or utility model
GR01 Patent grant