CN110014136A - A kind of method that the independent water mold of nesting realizes electroslag smelting casting removal subsidy - Google Patents

A kind of method that the independent water mold of nesting realizes electroslag smelting casting removal subsidy Download PDF

Info

Publication number
CN110014136A
CN110014136A CN201910328515.7A CN201910328515A CN110014136A CN 110014136 A CN110014136 A CN 110014136A CN 201910328515 A CN201910328515 A CN 201910328515A CN 110014136 A CN110014136 A CN 110014136A
Authority
CN
China
Prior art keywords
water mold
independent water
subsidy
independent
nested
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
CN201910328515.7A
Other languages
Chinese (zh)
Other versions
CN110014136B (en
Inventor
陈瑞
熊云龙
娄延春
王安国
张春铭
宋照伟
王云霞
田雨
赵黎廷
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.)
Shenyang Foundry Research Institute Co Ltd Of China National Machinery Research Institute Group
Original Assignee
Shenyang Research Institute of Foundry 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 Shenyang Research Institute of Foundry Co Ltd filed Critical Shenyang Research Institute of Foundry Co Ltd
Priority to CN201910328515.7A priority Critical patent/CN110014136B/en
Publication of CN110014136A publication Critical patent/CN110014136A/en
Application granted granted Critical
Publication of CN110014136B publication Critical patent/CN110014136B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22DCASTING OF METALS; CASTING OF OTHER SUBSTANCES BY THE SAME PROCESSES OR DEVICES
    • B22D23/00Casting processes not provided for in groups B22D1/00 - B22D21/00
    • B22D23/06Melting-down metal, e.g. metal particles, in the mould
    • B22D23/10Electroslag casting

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Abstract

A kind of control method for realizing ESR Process removal subsidy by nested independent water mold, it is characterized by: subsidizing shape and position according to product, manufacture can automatically adjust the independent water mold of subsidy size, every piece of crystallizer height about 120~300mm.Independent water mold can realize removal subsidy task in main body crystallizer realization body founding task by elevating mechanism safely insertion slag.Independent water mold can be controlled separately Inlet and outlet water, can be 1,2 or multiple.Each independent water mold can control Inlet and outlet water, be vortexed based on shape within water-cooling structure;Its water inlet pipe is located at the intermediate region in Base Heat quantity set, and outlet pipe is located at bottom region low in calories.

Description

A kind of method that the independent water mold of nesting realizes electroslag smelting casting removal subsidy
Technical field
The present invention relates to the control methods of casting field high temperature removal subsidy, especially provide a kind of electroslag smelting casting shaped piece With the control method of crystallizer high temperature removal subsidy.
Background technique
The fusing of electroslag smelting casting collection, refining, nearly final set are integrally formed admittedly, are the Special Processes of Metal Castings methods for producing high-quality casting One of.In today that equipment manufacture rapidly develops, the demand of electroslag smelting casting part is growing day by day.As electroslag smelting casting shaped piece produces Product production difficulty is increasing, and profit is lower and lower, how under the conditions of not influencing casting quality, effectively removes casting subsidy, Saving casting molten steel becomes the key generated profit.
Because shaped piece structure is relative complex, corresponding electroslag smelting casting crystallizer and independent water mold working face copper Plate, water seam, jacket structure for water are complicated, and applying working condition is severe.Especially electroslag smelting casting independence water mold, multiple faces when using With high-temperature slag or liquid metal contacts.Technical staff summarizes the water route form of conventional art and inventive improvements water seam, water jacket, By reinforcing the cooling effect of working face, independent water mold use reliability and service life are improved.
By literature search, the pertinent literature to prolong the service life both at home and abroad is (such as " China YouSe Acta Metallurgica Sinica " 2012 years the The phase of volume 22 the 8th, Meng Xiangning, Wang Weiling, Zhu Miaoyong, influence of the cooling structure to continuous casting crystallizer copper plate stress distribution;" metallurgy is set It is standby " the 6th phase in 2001, Shen Xianguang, Zhang Yujun, Meng Minzhong, influence of the crystallizer relevant parameter to its service life;" Shenyang aviation work Industry institute journal " the 3rd phases of volume 19 in 2002, Li Qingzhong, Wang Zheming, Yu Xiukun, billet mould cavity shape local improvement And life test research etc..
The advantages of above-mentioned technology, mainly applicable continuous casting class crystallizer, solution are mostly local parameter fine tuning, it is difficult to effectively It is applied to the design and manufacture of electroslag smelting casting special-shaped casts crystallizer.
Summary of the invention
It is an object of the invention to reduce the subsidy amount in shaped piece ESR Process, its molten steel Utilization rate is improved, it is real Existing profit maximization.
The use process controllability of independent water mold is high, validity is good, stability is good, and long service life is the hair Bright key.
To achieve the above object, the present invention provides a kind of independent water molds of nesting to realize electroslag smelting casting removal subsidy Method, shape and position are subsidized according to product, manufacture can automatically adjust the independent water mold of subsidy size, and every agllutination is brilliant Device height about 120~300mm.Independent water mold can ensure that ESR Process is independent by elevating mechanism up and down adjustment In a part safety insertion slag of water mold.Main body crystallizer realization body founding task, independent water mold are real Subsidy task is now removed, the two is used in combination.Independent water mold can be controlled separately Inlet and outlet water, and independent water mold can be with It is 1,2 or multiple.Each independent water mold can require individually control disengaging taps and water size according to founding, It is vortexed based on shape within water-cooling structure.Water inlet pipe is located in independent water mold Base Heat quantity set when interior vortex shape water-cooling structure Intermediate region, outlet pipe is located at independent water mold bottom region low in calories.
The purpose of the present invention is what is realized by following measures and step:
Step 1: subsidizing shape and position according to product, manufacture can automatically adjust the independent water mold of subsidy size;
Step 2: subsidizing shape and position according to product, independent water mold is equipped with elevating mechanism moving up and down, Determine the face structure of independent water mold and its preset clearance d (generally 3~15mm) of working face and lower crystallizer, Its internal watercourses structure, every piece of crystallizer height about 120~300mm, according to actual process need are established according to crystallizer working face Determine the specific nested position of independent water mold.
Step 3: main body crystallizer realization body founding task, independent water mold realizes removal subsidy task, the two In conjunction with completion.Threaded hole (13) test independence water of independent water mold upper end is driven by the thread spindle of elevating mechanism lower end Cooling crystallizer e depth into lower crystallizer, and can be by U-type groove (14) and limited screw hole (16), it will be independent with limited screw Water mold test position is locked.The e depth is 30~150mm.
The independent water mold height is 120~300mm.
The core of the elevating mechanism is one of speed reducer or hydraulic press.
The number of the independent water mold is 1-100, and each independent water mold is equipped with separate valve and pressure Table, independent water mold can be 1,2 or multiple, can adjust valve switch and influent pressure at any time according to the technological requirements Power.
The independent water mold water-cooling structure is that formula is returned at the water seam bottom of interior eddy current type, Z-shaped Zigzag type or routine.
When eddy current type is main within the independent water mold water-cooling structure is preferred, water inlet pipe is located at the crystallization of independent water cooling Intermediate region in device Base Heat quantity set, outlet pipe are located at independent water mold bottom region low in calories.
The independent water mold ensures a part of ESR Process independence water mold by elevating mechanism In safety insertion slag.
Independent water mold is usually not involved in the cooling of other crystallizers.Whirlpool within independent water mold water-cooling structure It flows based on shape.
Compared with prior art, the present invention possessed advantage is as follows:
(1) in main body crystallizer realization body founding task, nested independent water mold is to suitable position to remove Subsidy, reference current technology can greatly save molten steel amount.
(2) independent water mold uses independent water cooling mode compared with the mode of series connection water pipe is returned at existing water seam bottom, cold But the pressure loss of system is low, and safety is higher.
(3) independent water mold is usually not involved in the cooling of other crystallizers.Independent water mold water-cooling structure with Based on interior eddy current type, formula mode is returned at the existing water seam bottom of reference, and the water cooling of working face highest temperature area is more concentrated.
Detailed description of the invention
In order to illustrate the technical solution of the embodiments of the present invention more clearly, below will be to needed in the embodiment attached Figure is briefly described, it should be understood that the following drawings illustrates only certain embodiments of the present invention, therefore is not construed as pair The restriction of range for those of ordinary skill in the art without creative efforts, can also be according to this A little attached drawings obtain other relevant attached drawings.
Independence water mold and linkage figure (upper and lower crystallizer is free of in figure) when Fig. 1 inoperative
Independence water mold hydrographic chart (upper and lower crystallizer is free of in figure) when Fig. 2 inoperative
Independence water mold and linkage figure (containing upper and lower crystallizer in figure) when Fig. 3 works
Independence water mold and crystallizer location diagram in main body when Fig. 4 works
Independence water mold and crystallizer location diagram under main body when Fig. 5 works
Wherein, 11 speed reducers are the elevating mechanism of core, 12 hydraulic presses are the elevating mechanism of core, 13 threaded holes, 14U type Slot, 15 independent water molds, 16 limited screw holes.
Specific embodiment
It in order to make the object, technical scheme and advantages of the embodiment of the invention clearer, below will be in the embodiment of the present invention Technical solution be clearly and completely described.The person that is not specified actual conditions in embodiment, according to normal conditions or manufacturer builds The condition of view carries out.Production firm person is not specified in instrument, is the conventional products that can be obtained by commercially available purchase.
The control that ESR Process removal subsidy is realized by nested independent water mold a kind of to the present invention below Method is specifically described.
The purpose of the present invention is what is realized by following measures and step:
Step 1: subsidizing shape and position according to product, manufacture can automatically adjust the independent water mold of subsidy size;
Step 2: subsidizing shape and position according to product, independent water mold is equipped with elevating mechanism moving up and down, Determine the face structure of independent water mold and its preset clearance d (generally 3~15mm) of working face and lower crystallizer, Its internal watercourses structure, every piece of crystallizer height about 120~300mm, according to actual process need are established according to crystallizer working face Determine the specific nested position of independent water mold.
Step 3: main body crystallizer realization body founding task, independent water mold realizes removal subsidy task, the two In conjunction with completion.Threaded hole (13) test independence water of independent water mold upper end is driven by the thread spindle of elevating mechanism lower end Cooling crystallizer e depth into lower crystallizer, and can be by U-type groove (14) and limited screw hole (16), it will be independent with limited screw Water mold test position is locked.The e depth is 30~150mm.
The independent water mold height is 120~300mm.
The core of the elevating mechanism is one of speed reducer or hydraulic press.
The number of the independent water mold is 1-100, and each independent water mold is equipped with separate valve and pressure Table, independent water mold can be 1,2 or multiple, can adjust valve switch and influent pressure at any time according to the technological requirements Power.
The independent water mold water-cooling structure is that formula is returned at the water seam bottom of interior eddy current type, Z-shaped Zigzag type or routine.
When eddy current type is main within the independent water mold water-cooling structure is preferred, water inlet pipe is located at the crystallization of independent water cooling Intermediate region in device Base Heat quantity set, outlet pipe are located at independent water mold bottom region low in calories.
The independent water mold ensures a part of ESR Process independence water mold by elevating mechanism In safety insertion slag.
Independent water mold is usually not involved in the cooling of other crystallizers.Whirlpool within independent water mold water-cooling structure It flows based on shape.
Feature and performance of the invention are described in further detail with reference to embodiments.
Embodiment 1:
The martensitic stain less steel guide vane that material is 06Cr13Ni4Mo is chosen, is prepared by the method for electroslag smelting casting.
(1) according to the geomery of guide vane and technical requirements, design technology subsidy amount determines main body crystallizer, independent water The working face size of cooling crystallizer.
(2) main body crystallizer is the split modular structure of copper steel welding, and upper crystallizer is simple straight tube shape, using normal Advise design method;Lower crystallizer main part uses conventional design method, and independent water mold shape of working surface and product are mended It is similar to repay area's shape, independent water mold working face and main body crystallizer gap d are 8~15mm.Working face copper sheet and water stitch Between width be 23~30mm, crystallizer internal cavity copper sheet is the preparation of metal hot bending+machining manufacturing process, 16~20mm of thickness.
(3) it is 1500mm that whole body height is crystallized under, and conventional design is divided into 5 layers, every layer height 300mm.Crystallizer is cold But peak width 1100mm walks water space 25mm between gusset and flanged plate.
(4) independent water mold manufacturing process: working face copper sheet is vortexed shape water route by being molded integrally formed preparation When plate, flanged plate preparation and working face copper sheet is soldered to one.
(5) upper flange drilling welding inlet and outlet pipes.
(6) elevating mechanism that upper flange welded and configured motor, speed reducer drives, elevating mechanism ensure electroslag smelting casting Independent water mold can move up and down in journey.
(7) fusion-casting process
1. slag system and the quantity of slag match, CaF2: 70%, Al2O3: 30%, slag charge weight is the 2% of guide vane weight.
2. using the solid slag starting the arc, starting the arc material chemical component is TiO with mass percent2: 45%, CaF2: 53%, MgO: 2%.
3. power supply parameter selects: according to the geometric parameter and founding of casting dimension, electrode and crystallizer, determining distribution Parameter.
4. electroslag smelting casting is to when just replacing with crystallizer, at the beginning of melting long axial electrode, starting fits over crystallizer bottom Elevating mechanism on flange, it is 140~150mm that elevating mechanism, which drives the independent downward crystallizer of water mold to probe into depth e,.
Entire electroslag casting guide blade process, electroslag when the same routine of electroslag smelting casting electrical power technique is without independent water mold Founding guide vane technique.
Embodiment 2:
The martensitic stain less steel guide vane that material is 06Cr13Ni4Mo is chosen, is prepared by the method for electroslag smelting casting.
(1) according to the geomery of guide vane and technical requirements, design technology subsidy amount determines main body crystallizer, independent water The working face size of cooling crystallizer.
(2) main body crystallizer is the split modular structure of copper steel welding, and upper crystallizer is simple straight tube shape, using normal Advise design method;Lower crystallizer main part uses conventional design method, and independent water mold shape of working surface and product are mended It is similar to repay area's shape, independent water mold working face and main body crystallizer gap d are 3~8mm.Between working face copper sheet and water seam Width is 15~23mm, and crystallizer internal cavity copper sheet is metal hot bending+machining manufacturing process preparation, 8~15mm of thickness.
(3) it is 560mm that whole body height is crystallized under, and conventional design is divided into 3 layers, and from top to bottom, every layer height is respectively 120mm (independent water mold), 300mm, 140m.Crystallizer cooled region width 1100mm, is walked between gusset and flanged plate Water space 20mm.
(4) independent water mold manufacturing process: working face copper sheet is vortexed shape water route by being molded integrally formed preparation When plate, flanged plate preparation and working face copper sheet is soldered to one.
(5) upper flange drilling welding inlet and outlet pipes.
(6) elevating mechanism that upper flange welded and configured motor, speed reducer drives, elevating mechanism ensure electroslag smelting casting Independent water mold can move up and down in journey.
(7) fusion-casting process
1. slag system and the quantity of slag match, CaF2: 70%, Al2O3: 30%, slag charge weight is the 2% of guide vane weight.
2. using the melt cinder starting the arc, starting the arc material chemical component is TiO with mass percent2: 50%, CaF2: 50%.
3. power supply parameter selects: according to the geometric parameter and founding of casting dimension, electrode and crystallizer, determining distribution Parameter.
4. electroslag smelting casting is to when just replacing with crystallizer, at the beginning of melting long axial electrode, starting fits over crystallizer bottom Elevating mechanism on flange, it is 30~35mm that elevating mechanism, which drives the independent downward crystallizer of water mold to probe into depth e,.
Entire electroslag casting guide blade process, electroslag when the same routine of electroslag smelting casting electrical power technique is without independent water mold Founding guide vane technique.
The above embodiments merely illustrate the technical concept and features of the present invention, and its object is to allow person skilled in the art Scholar cans understand the content of the present invention and implement it accordingly, and it is not intended to limit the scope of the present invention.It is all according to the present invention The equivalent change or modification that Spirit Essence is done, should be covered by the protection scope of the present invention.

Claims (10)

1. a kind of control method for realizing ESR Process removal subsidy by nested independent water mold, feature exist In: specific step is as follows:
Step 1: subsidizing shape and position according to product, manufacture can automatically adjust the independent water mold of subsidy size;
Step 2: subsidizing shape and position according to product, independent water mold is determined independent by elevating mechanism up and down adjustment Preset clearance d, internal watercourses structure and the nested position of the face structure of water mold, working face and lower crystallizer;
Step 3: main body crystallizer realization body founding task, independent water mold realizes that removal subsidy task, the two combine It completes.
2. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: the independent water mold height is 120~300mm.
3. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: preset clearance d is 3-15mm in the step 2.
4. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: the core of the elevating mechanism is one of speed reducer or hydraulic press.
5. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: the number of the independent water mold is 1-100, and each independent water mold is equipped with separate valve With pressure gauge.
6. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: the independent water mold water-cooling structure is that the water seam bottom of interior eddy current type, Z-shaped Zigzag type or routine is returned Formula.
7. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: the independent water mold water-cooling structure is interior eddy current type, and water inlet pipe is located at independent water mold bottom The intermediate region that portion's heat is concentrated, outlet pipe are located at independent water mold bottom region low in calories.
8. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: the independent water mold ensures ESR Process independence water mold by elevating mechanism In a part of safety insertion slag.
9. according to the controlling party for realizing ESR Process removal subsidy described in claim 1 by nested independent water mold Method, it is characterised in that: threaded hole (13) test of independent water mold upper end is driven by the thread spindle of elevating mechanism lower end Independent water mold e depth into lower crystallizer, and limited screw can be used by U-type groove (14) and limited screw hole (16) Independent water mold test position is locked.
10. according to the control for realizing ESR Process removal subsidy described in claim 9 by nested independent water mold Method, it is characterised in that: the e depth is 30~150mm.
CN201910328515.7A 2019-04-23 2019-04-23 Method for removing subsidies in electroslag casting by nesting independent water-cooled crystallizers Active CN110014136B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910328515.7A CN110014136B (en) 2019-04-23 2019-04-23 Method for removing subsidies in electroslag casting by nesting independent water-cooled crystallizers

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910328515.7A CN110014136B (en) 2019-04-23 2019-04-23 Method for removing subsidies in electroslag casting by nesting independent water-cooled crystallizers

Publications (2)

Publication Number Publication Date
CN110014136A true CN110014136A (en) 2019-07-16
CN110014136B CN110014136B (en) 2021-05-04

Family

ID=67192212

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201910328515.7A Active CN110014136B (en) 2019-04-23 2019-04-23 Method for removing subsidies in electroslag casting by nesting independent water-cooled crystallizers

Country Status (1)

Country Link
CN (1) CN110014136B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114643347A (en) * 2020-12-17 2022-06-21 沈阳铸造研究所有限公司 Method for controlling thickness of slag bath of variable cross-section casting of electroslag casting

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1391258A (en) * 1971-04-27 1975-04-16 Ass Elect Ind Electroslag moulds
US3902543A (en) * 1972-11-10 1975-09-02 British Steel Corp Process of electroslag remelting
CN85109612A (en) * 1985-12-23 1987-07-01 江西黎川特钢厂 Melten-casting method with deformable electroslah for crankshaft at one go
DD256238A3 (en) * 1984-12-10 1988-05-04 Vniieto CRYSTALLIZER FOR MELTING BLOBS WITH RELATIVE SHIFTING OF THE CRYSTALLIZER
CN1557584A (en) * 2003-01-21 2004-12-29 沈阳铸造研究所 Electroslag smelting casting guide vanes method
CN2710798Y (en) * 2004-07-28 2005-07-20 沈阳铸造研究所 Combination type crystallizer used for electroslag smelting casting guide blade
CN201132211Y (en) * 2007-09-24 2008-10-15 沈阳铸造研究所 Crystallizer for electroslag casting of diaphram pump bent shaft
CN201442974U (en) * 2009-05-26 2010-04-28 潍坊亚东冶金设备有限公司 Electroslag furnace crystallizer used for smelting rollers
CN201442971U (en) * 2009-05-26 2010-04-28 潍坊亚东冶金设备有限公司 Combined crystallizer of electroslag furnace
CN203320082U (en) * 2013-06-26 2013-12-04 江油市重鑫特冶制品有限公司 Zero-draft electro-slag re-melting slab crystallizer
CN107790685A (en) * 2016-08-31 2018-03-13 沈阳铸造研究所 Electroslag smelting casting method without public die cavity casting is prepared using the molten group equipment of intelligence
CN207770803U (en) * 2017-12-13 2018-08-28 沈阳市盛华特种铸造有限公司 A kind of device of rotary wheel of water turbine three-dimension curved surface blade electroslag smelting casting straight forming
CN109604566A (en) * 2019-01-18 2019-04-12 潍坊亚东冶金设备有限公司 The sectionally assembled seperated special-shaped crystallizer of electroslag smelting casting blade multilayer

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1391258A (en) * 1971-04-27 1975-04-16 Ass Elect Ind Electroslag moulds
US3902543A (en) * 1972-11-10 1975-09-02 British Steel Corp Process of electroslag remelting
DD256238A3 (en) * 1984-12-10 1988-05-04 Vniieto CRYSTALLIZER FOR MELTING BLOBS WITH RELATIVE SHIFTING OF THE CRYSTALLIZER
CN85109612A (en) * 1985-12-23 1987-07-01 江西黎川特钢厂 Melten-casting method with deformable electroslah for crankshaft at one go
CN1557584A (en) * 2003-01-21 2004-12-29 沈阳铸造研究所 Electroslag smelting casting guide vanes method
CN2710798Y (en) * 2004-07-28 2005-07-20 沈阳铸造研究所 Combination type crystallizer used for electroslag smelting casting guide blade
CN201132211Y (en) * 2007-09-24 2008-10-15 沈阳铸造研究所 Crystallizer for electroslag casting of diaphram pump bent shaft
CN201442974U (en) * 2009-05-26 2010-04-28 潍坊亚东冶金设备有限公司 Electroslag furnace crystallizer used for smelting rollers
CN201442971U (en) * 2009-05-26 2010-04-28 潍坊亚东冶金设备有限公司 Combined crystallizer of electroslag furnace
CN203320082U (en) * 2013-06-26 2013-12-04 江油市重鑫特冶制品有限公司 Zero-draft electro-slag re-melting slab crystallizer
CN107790685A (en) * 2016-08-31 2018-03-13 沈阳铸造研究所 Electroslag smelting casting method without public die cavity casting is prepared using the molten group equipment of intelligence
CN207770803U (en) * 2017-12-13 2018-08-28 沈阳市盛华特种铸造有限公司 A kind of device of rotary wheel of water turbine three-dimension curved surface blade electroslag smelting casting straight forming
CN109604566A (en) * 2019-01-18 2019-04-12 潍坊亚东冶金设备有限公司 The sectionally assembled seperated special-shaped crystallizer of electroslag smelting casting blade multilayer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114643347A (en) * 2020-12-17 2022-06-21 沈阳铸造研究所有限公司 Method for controlling thickness of slag bath of variable cross-section casting of electroslag casting
CN114643347B (en) * 2020-12-17 2023-08-18 沈阳铸造研究所有限公司 Method for controlling thickness of slag pool of electroslag casting variable-section casting

Also Published As

Publication number Publication date
CN110014136B (en) 2021-05-04

Similar Documents

Publication Publication Date Title
CN102380588B (en) Intermediate-frequency induction and directional solidification ingot casting process and equipment utilizing same
KR101477845B1 (en) Process for manufacturing copper alloy products and equipment therefor
CN105018761A (en) Continuous casting method for high-manganese and high-aluminum type austenite low-magnetic steel
CN111590054B (en) Device and method for preparing bimetal clad roller by ingot drawing type electroslag remelting method
CN113547102B (en) Device and method for preparing large steel ingot by conductive crystallizer electroslag remelting method
CN110724841B (en) Preparation method of immiscible alloy and continuous casting equipment
CN102380518A (en) New production process for producing oxygen-free transformer copper strip
CN104152709B (en) A kind of thickness is less than the non-corrosive metal electroslag remelting plate blank production technology and equipments of 200mm
CN104498804A (en) Preparation method of high-temperature alloy and high-temperature alloy thereof
CN101664801B (en) Method and device for low overheat composite casting aluminum alloy under action of steady magnetic field
CN113426970A (en) Vertical semi-continuous production device and production process of large round billets with phi of 1000 mm-2000 mm
CN111715858A (en) Production method for realizing low-superheat-degree continuous casting
CN110014136A (en) A kind of method that the independent water mold of nesting realizes electroslag smelting casting removal subsidy
CN113798786A (en) Preparation method of bimetal composite board
CN100400198C (en) Double roll super high speed continuous casting production line for thin magnesium strip
CN105238936B (en) Vacuum consumable-electrode arc melting ingot pulling device for metal material melting
CN111408708A (en) Tundish molten steel low-temperature constant-temperature intelligent casting system with plasma heating function
CN102974794B (en) Device and method for reducing superheat degree of molten steel of continuous casting ladle or intermediate ladle
CN1171692C (en) Continuous casting process and conticaster for producing composite metal slab and square blank
CN107790655A (en) Improve the continuous cast method of the austenite stainless steel of surface defect
CN201150979Y (en) Electromagnetic control and low superheat device for twin-roll casting strip
CN111375736B (en) Casting method of martensite precipitation hardening stainless steel
CN1254552C (en) Device for preparing semisolid metal and alloy pulp or blank
CN1483532A (en) Subcurrent type oxygen-free copper horizontal continuous casting technology and production eguipment thereof
CN102179494A (en) Continuous casting method and device for aluminum alloy compounded ingot

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
GR01 Patent grant
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: 110000 No.17, Yunfeng South Street, Tiexi District, Shenyang City, Liaoning Province

Patentee after: Shenyang Foundry Research Institute Co., Ltd. of China National Machinery Research Institute Group

Address before: 110000 No.17, Yunfeng South Street, Tiexi District, Shenyang City, Liaoning Province

Patentee before: SHENYANG RESEARCH INSTITUTE OF FOUNDRY Co.,Ltd.

CP01 Change in the name or title of a patent holder