CN103506543A - Horizontal opposite-extrusion hot forging ball production line - Google Patents

Horizontal opposite-extrusion hot forging ball production line Download PDF

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CN103506543A
CN103506543A CN201310458990.9A CN201310458990A CN103506543A CN 103506543 A CN103506543 A CN 103506543A CN 201310458990 A CN201310458990 A CN 201310458990A CN 103506543 A CN103506543 A CN 103506543A
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oil cylinder
piston rod
forging die
extrusion oil
ball
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CN103506543B (en
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冯红喜
阴文行
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Goldpro New Materials Co ltd
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Abstract

The invention discloses a horizontal opposite-extrusion hot forging ball production line. The horizontal opposite-extrusion hot forging ball production line comprises a blank heating device (1), a hot blank conveying device (2), a horizontal opposite-extrusion hot forging ball machine (3), a forged ball conveying device (4) and a quenching device (5), wherein an inlet of the hot blank conveying device (2) and an outlet of the blank heating device (1) are in butt joint, an outlet of the hot blank conveying device (2) and a feeding inlet of the horizontal opposite-extrusion hot forging ball machine (3) are in butt joint, an inlet of the forged ball conveying device (4) and a ball outlet of the horizontal opposite-extrusion hot forging ball machine (3) are in butt joint, an outlet of the forged ball conveying device (4) and an inlet of the quenching device (5) are in butt joint, the blank heating device (1) is a heating device which carries out continuous heating and constant-frequency discontinuous discharging, and the discharging frequency of the blank heating device (1) is equal to the extrusion frequency of the horizontal opposite-extrusion hot forging ball machine (3). Compared with the prior art, the horizontal opposite-extrusion hot forging ball production line has the advantages of being high in production efficiency and low in production cost.

Description

Horizontal to extruding forge hot ball production line
Technical field
The present invention relates to a kind of forging ball production equipment, especially a kind of horizontal to extruding forge hot ball production line.
Background technology
At present, the equipment of producing forging ball has two kinds, and a kind of is rotary-cut roll forging machine, and another kind is rectilinear die forging machine.Rotary-cut roll forging machine highly efficient in productivity, but the steel ball that this device fabrication goes out to be easily with little tail be burr, must have the equipment of another deburr to carry out deburr, that is to say and many procedures, increased production cost; Though the steel ball that rectilinear die forging machine is produced does not have burr, the production efficiency of this equipment is lower, and corresponding production cost is higher.Therefore, designing horizontal to extruding forge hot ball production line that a kind of production efficiency is high, production cost is low, is the current technical issues that need to address.
Summary of the invention
Technical problem to be solved by this invention is to provide horizontal to extruding forge hot ball production line that a kind of production efficiency is high, production cost is low.
The technical scheme that the present invention solves its technical problem is:
Horizontal to extruding forge hot ball production line, comprise blank heater, hot blank conveying arrangement, horizontal to extruding forge hot ball machine, forge ball conveying device and quenching unit, the entrance of hot blank conveying arrangement docks with the outlet of blank heater, the outlet of hot blank conveying arrangement is docked with the horizontal charging aperture to extruding forge hot ball machine, the entrance of forging ball conveying device docks with the horizontal ball mouth to extruding forge hot ball machine, the outlet of forging ball conveying device is docked with the entrance of quenching unit, described blank heater is laser heating, determine frequency discontinuity discharging heater, the discharging frequency of blank heater is identical with the horizontal extruding frequency to extruding forge hot ball machine.
As a preferred embodiment of the present invention, described is horizontal to pushing forge hot ball machine by support, left extrusion oil cylinder, right extrusion oil cylinder, left forging die, right forging die, oil cylinder connects material, head and the hydraulic system of connecting material forms, support is concave shape, the left and right sides protuberance of concave shape support has the circular hole of the left extrusion oil cylinder of symmetrical installation and right extrusion oil cylinder, left extrusion oil cylinder and right extrusion oil cylinder are fixedly mounted in corresponding circular hole, on the concave shape support pedestal corresponding with recess, there is the connect material circular hole of oil cylinder of vertical installation, the oil cylinder that connects material is fixedly mounted in this vertical hole, left forging die is fixedly connected with the piston rod of left extrusion oil cylinder, right forging die is fixedly connected with the piston rod of right extrusion oil cylinder, the head that connects material is fixedly connected with the piston rod of the oil cylinder that connects material, from the port of export of hot blank conveying arrangement blank material out, fall and connect material head, the piston rod of left extrusion oil cylinder and the piston rod of right extrusion oil cylinder stretch out respectively and drive left forging die and right forging die subtend to move, when left forging die and right forging die are held the left and right end of blank material jointly, the piston rod retraction of oil cylinder of connecting material drives the head that connects material to decline, the piston rod of left extrusion oil cylinder and the piston rod of right extrusion oil cylinder continue to stretch out the left forging die of drive and right forging die subtend moves, the balling-up of extrusion blank material, then the piston rod of left extrusion oil cylinder and the piston rod of right extrusion oil cylinder bounce back, continue respectively to drive left forging die and right forging die oppositely to move, forge hot ball drops and is forging in ball conveying device, and be transported in quenching unit by forging ball conveying device.
As a preferred embodiment of the present invention, the connect material center line in vertical hole of oil cylinder of installation departs from the cross central line of concave shape support left, forge ball conveying device and be located at the vertical Kong right side that the oil cylinder that connects material is installed, after blank material is fallen on the head that connects material, the piston rod of left extrusion oil cylinder stretches out in advance and drives left forging die to move right, then the piston rod of left extrusion oil cylinder continues to stretch out and drives left forging die to move right, the piston rod of right extrusion oil cylinder stretches out and drives right forging die to be moved to the left to connect material, the piston rod retraction of oil cylinder of connecting material drives a decline return that connects material, the piston rod of left extrusion oil cylinder continues to stretch out the left forging die of drive and moves right, the piston rod of right extrusion oil cylinder stretches out and drives right forging die to be moved to the left, by blank material extruding balling-up, piston rod retraction with rear left extrusion oil cylinder drives left forging die to be moved to the left, the piston rod of right extrusion oil cylinder of while continues to stretch out the right forging die of drive and is moved to the left, the speed of stretching out of the piston rod of right extrusion oil cylinder is identical with the retraction speed of the piston rod of left extrusion oil cylinder, when forge hot ball arrives the top of forging ball conveying device, the piston rod of left extrusion oil cylinder continues retraction and drives left forging die to be moved to the left return, the piston rod retraction of right extrusion oil cylinder drives the right forging die return that moves right, forge hot ball drops to be forged in ball conveying device, the piston rod of oil cylinder of connecting material stretches out, the drive head that connects material moves up and connects material, enter second leg.
As a preferred embodiment of the present invention, the connect material center line in vertical hole of oil cylinder of installation departs from the cross central line of concave shape support to the right, forging ball conveying device is located at the left side in the vertical hole that the oil cylinder that connects material is installed, after blank material is fallen on the head that connects material, the piston rod of right extrusion oil cylinder stretches out in advance and drives right forging die to be moved to the left, then the piston rod of right extrusion oil cylinder continues to stretch out and drives right forging die to be moved to the left, the piston rod of left extrusion oil cylinder stretches out and drives left forging die to move right to connect material, the piston rod retraction of oil cylinder of connecting material drives a decline return that connects material, the piston rod of right extrusion oil cylinder continues to stretch out the right forging die of drive and is moved to the left, the piston rod of left extrusion oil cylinder stretches out and drives left forging die to move right, by blank material extruding balling-up, piston rod retraction with rear right extrusion oil cylinder drives right forging die to move right, the piston rod of left extrusion oil cylinder of while continues to stretch out the left forging die of drive and moves right, the speed of stretching out of the piston rod of left extrusion oil cylinder is identical with the retraction speed of the piston rod of right extrusion oil cylinder, when forge hot ball arrives the top of forging ball conveying device, the piston rod of right extrusion oil cylinder continues retraction and drives the right forging die return that moves right, the piston rod retraction of left extrusion oil cylinder drives left forging die to be moved to the left return, forge hot ball drops to be forged in ball conveying device, the piston rod of oil cylinder of connecting material stretches out, the drive head that connects material moves up and connects material, enter second leg.
As a preferred embodiment of the present invention, described hot blank conveying arrangement is hot woollen slideway, hot woollen slideway has the downward inclination angle of 1~2 ° to horizontal to extruding forge hot ball machine from blank heater, described forging ball conveying device is forge hot ball slideway, forge hot ball slideway has the downward inclination angle of 1~2 ° from horizontal to extruding forge hot ball machine to quenching unit, be provided with anti-blank material and tumble plate on the head that connects material.
Compared with prior art, the present invention has advantages of that production efficiency is high, production cost is low.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention (systematic schematic diagram);
Fig. 2 is the top view of Fig. 1;
Fig. 3 is that the A-A of Fig. 1 is to cutaway view;
Fig. 4 is that the B-B of Fig. 2 is to cutaway view;
Fig. 5 is the horizontal operation program figure (embodiment 1) to extruding forge hot ball machine of the present invention;
Fig. 6 is the horizontal operation program figure (embodiment 2) to extruding forge hot ball machine of the present invention.
The specific embodiment
As shown in Figure 1, horizontal to extruding forge hot ball production line, comprise blank heater 1, hot blank conveying arrangement 2, horizontal to extruding forge hot ball machine 3, forge ball conveying device 4 and quenching unit 5, the entrance of hot blank conveying arrangement 2 docks with the outlet of blank heater 1, the outlet of hot blank conveying arrangement 2 is docked with the horizontal charging aperture to extruding forge hot ball machine 3, the entrance of forging ball conveying device 4 docks with the horizontal ball mouth to extruding forge hot ball machine 3, the outlet of forging ball conveying device 4 is docked with the entrance of quenching unit 5, described blank heater 1 is laser heating, determine frequency discontinuity discharging heater, the discharging frequency of blank heater 1 is identical with the horizontal extruding frequency to extruding forge hot ball machine 3.
As in Figure 2-4, described is horizontal to pushing forge hot ball machine 3 by support 3-1, left extrusion oil cylinder 3-5, right extrusion oil cylinder 3-2, left forging die 3-4, right forging die 3-3, oil cylinder 3-7 connects material, a 3-6 and the hydraulic system of connecting material forms, support 3-1 is concave shape, the left and right sides protuberance of concave shape support has the circular hole of the left extrusion oil cylinder 3-5 of symmetrical installation and right extrusion oil cylinder 3-2, left extrusion oil cylinder 3-5 and right extrusion oil cylinder 3-2 are fixedly mounted in corresponding circular hole, on the concave shape support pedestal corresponding with recess, there is the connect material circular hole of oil cylinder 3-7 of vertical installation, the oil cylinder 3-7 that connects material is fixedly mounted in this vertical hole, left forging die 3-4 is fixedly connected with the piston rod of left extrusion oil cylinder 3-5, right forging die 3-3 is fixedly connected with the piston rod of right extrusion oil cylinder 3-2, a 3-6 that connects material is fixedly connected with the piston rod of the oil cylinder 3-7 that connects material, from the port of export of hot blank conveying arrangement 2 blank material out, fall and connect material a 3-6, the piston rod of the piston rod of left extrusion oil cylinder 3-5 and right extrusion oil cylinder 3-2 stretches out respectively and drives left forging die 3-4 and right forging die 3-3 subtend to move, when left forging die 3-4 and right forging die 3-3 hold the left and right end of blank material jointly, the piston rod retraction of oil cylinder 3-7 of connecting material drives a 3-6 that connects material to decline, the piston rod of the piston rod of left extrusion oil cylinder 3-5 and right extrusion oil cylinder 3-2 continues to stretch out the left forging die 3-4 of drive and right forging die 3-3 subtend moves, the balling-up of extrusion blank material, then the piston rod of the piston rod of left extrusion oil cylinder 3-5 and right extrusion oil cylinder 3-2 bounces back, continue respectively to drive left forging die 3-4 and right forging die 3-3 oppositely to move, forge hot ball drops and is forging in ball conveying device 4, and be transported in quenching unit 5 by forging ball conveying device 4.
As in Figure 2-4, the connect material center line in vertical hole of oil cylinder 3-7 of installation departs from the cross central line of concave shape support left, forge ball conveying device 4 and be located at the vertical Kong right side that the oil cylinder 3-7 that connects material is installed, after blank material is fallen on a 3-6 that connects material, the piston rod of left extrusion oil cylinder 3-5 stretches out in advance and drives left forging die 3-4 to move right, then the piston rod of left extrusion oil cylinder 3-5 continues to stretch out and drives left forging die 3-4 to move right, the piston rod of right extrusion oil cylinder 3-2 stretches out and drives right forging die 3-3 to be moved to the left to connect material, the piston rod retraction of oil cylinder 3-7 of connecting material drives a 3-6 decline return that connects material, the piston rod of left extrusion oil cylinder 3-5 continues to stretch out the left forging die 3-4 of drive and moves right, the piston rod of right extrusion oil cylinder 3-2 stretches out and drives right forging die 3-3 to be moved to the left, by blank material extruding balling-up, piston rod retraction with rear left extrusion oil cylinder 3-5 drives left forging die 3-4 to be moved to the left, the piston rod of right extrusion oil cylinder 3-2 of while continues to stretch out the right forging die 3-3 of drive and is moved to the left, the speed of stretching out of the piston rod of right extrusion oil cylinder 3-2 is identical with the retraction speed of the piston rod of left extrusion oil cylinder 3-5, when forge hot ball arrives the top of forging ball conveying device 4, the piston rod of left extrusion oil cylinder 3-5 continues retraction and drives left forging die 3-4 to be moved to the left return, the piston rod retraction of right extrusion oil cylinder 3-2 drives the right forging die 3-3 return that moves right, forge hot ball drops to be forged in ball conveying device 4, the piston rod of oil cylinder 3-7 of connecting material stretches out, a drive 3-6 that connects material moves up and connects material, enter second leg.
As in Figure 2-4, the connect material center line in vertical hole of oil cylinder 3-7 of installation departs from the cross central line of concave shape support to the right, forging ball conveying device 4 is located at the left side in the vertical hole that the oil cylinder 3-7 that connects material is installed, after blank material is fallen on a 3-6 that connects material, the piston rod of right extrusion oil cylinder 3-2 stretches out in advance and drives right forging die 3-3 to be moved to the left, then the piston rod of right extrusion oil cylinder 3-2 continues to stretch out and drives right forging die 3-3 to be moved to the left, the piston rod of left extrusion oil cylinder 3-5 stretches out and drives left forging die 3-4 to move right to connect material, the piston rod retraction of oil cylinder 3-7 of connecting material drives a 3-6 decline return that connects material, the piston rod of right extrusion oil cylinder 3-2 continues to stretch out the right forging die 3-3 of drive and is moved to the left, the piston rod of left extrusion oil cylinder 3-5 stretches out and drives left forging die 3-4 to move right, by blank material extruding balling-up, piston rod retraction with rear right extrusion oil cylinder 3-2 drives right forging die 3-3 to move right, the piston rod of left extrusion oil cylinder 3-5 of while continues to stretch out the left forging die 3-4 of drive and moves right, the speed of stretching out of the piston rod of left extrusion oil cylinder 3-5 is identical with the retraction speed of the piston rod of right extrusion oil cylinder 3-2, when forge hot ball arrives the top of forging ball conveying device 4, the piston rod of right extrusion oil cylinder 3-2 continues retraction and drives the right forging die 3-3 return that moves right, the piston rod retraction of left extrusion oil cylinder 3-5 drives left forging die 3-4 to be moved to the left return, forge hot ball drops to be forged in ball conveying device 4, the piston rod of oil cylinder 3-7 of connecting material stretches out, a drive 3-6 that connects material moves up and connects material, enter second leg.
As in Figure 2-4, described hot blank conveying arrangement 2 is hot woollen slideway, hot woollen slideway has the downward inclination angle of 1~2 ° to horizontal to extruding forge hot ball machine 3 from blank heater 1, described forging ball conveying device 4 is forge hot ball slideway, forge hot ball slideway has the downward inclination angle of 1~2 ° from horizontal to extruding forge hot ball machine 3 to quenching unit 5, be provided with anti-blank material and tumble plate 3-8 on a 3-6 that connects material.

Claims (5)

1. horizontal to extruding forge hot ball production line, comprise blank heater (1), hot blank conveying arrangement (2), horizontal to extruding forge hot ball machine (3), forge ball conveying device (4) and quenching unit (5), it is characterized in that, the entrance of hot blank conveying arrangement (2) docks with the outlet of blank heater (1), the outlet of hot blank conveying arrangement (2) is docked with the horizontal charging aperture to extruding forge hot ball machine (3), the entrance of forging ball conveying device (4) docks with the horizontal ball mouth to extruding forge hot ball machine (3), the outlet of forging ball conveying device (4) is docked with the entrance of quenching unit (5), described blank heater (1) is laser heating, determine frequency discontinuity discharging heater, the discharging frequency of blank heater (1) is identical with the horizontal extruding frequency to extruding forge hot ball machine (3).
2. according to claim 1 horizontal to extruding forge hot ball production line, it is characterized in that, described is horizontal to pushing forge hot ball machine (3) by support (3-1), left extrusion oil cylinder (3-5), right extrusion oil cylinder (3-2), left forging die (3-4), right forging die (3-3), oil cylinder (3-7) connects material, head (3-6) and the hydraulic system of connecting material forms, support (3-1) is concave shape, the left and right sides protuberance of concave shape support has the circular hole of the left extrusion oil cylinder of symmetrical installation (3-5) and right extrusion oil cylinder (3-2), left extrusion oil cylinder (3-5) and right extrusion oil cylinder (3-2) are fixedly mounted in corresponding circular hole, on the concave shape support pedestal corresponding with recess, there is the connect material circular hole of oil cylinder (3-7) of vertical installation, the oil cylinder (3-7) that connects material is fixedly mounted in this vertical hole, left forging die (3-4) is fixedly connected with the piston rod of left extrusion oil cylinder (3-5), right forging die (3-3) is fixedly connected with the piston rod of right extrusion oil cylinder (3-2), the head (3-6) that connects material is fixedly connected with the piston rod of the oil cylinder that connects material (3-7), from the port of export of hot blank conveying arrangement (2) blank material out, fall and connect material head (3-6), the piston rod of the piston rod of left extrusion oil cylinder (3-5) and right extrusion oil cylinder (3-2) stretches out respectively and drives left forging die (3-4) and right forging die (3-3) subtend to move, when left forging die (3-4) and right forging die (3-3) are held the left and right end of blank material jointly, the piston rod retraction of oil cylinder (3-7) of connecting material drives the head (3-6) that connects material to decline, the piston rod of the piston rod of left extrusion oil cylinder (3-5) and right extrusion oil cylinder (3-2) continues to stretch out drive left forging die (3-4) and right forging die (3-3) subtend moves, the balling-up of extrusion blank material, then the piston rod of the piston rod of left extrusion oil cylinder (3-5) and right extrusion oil cylinder (3-2) bounces back, continue respectively to drive left forging die (3-4) and right forging die (3-3) oppositely to move, forge hot ball drops and is forging in ball conveying device (4), and be transported in quenching unit (5) by forging ball conveying device (4).
3. according to claim 2 horizontal to extruding forge hot ball production line, it is characterized in that, the connect material center line in vertical hole of oil cylinder (3-7) of installation departs from the cross central line of concave shape support left, forge ball conveying device (4) and be located at the vertical Kong right side that the oil cylinder (3-7) that connects material is installed, after blank material is fallen on the head (3-6) that connects material, the piston rod of left extrusion oil cylinder (3-5) stretches out in advance and drives left forging die (3-4) to move right, then the piston rod of left extrusion oil cylinder (3-5) continues to stretch out and drives left forging die (3-4) to move right, the piston rod of right extrusion oil cylinder (3-2) stretches out and drives right forging die (3-3) to be moved to the left to connect material, the piston rod retraction of oil cylinder (3-7) of connecting material drives head (3-6) decline return that connects material, the piston rod of left extrusion oil cylinder (3-5) continues to stretch out the left forging die of drive (3-4) and moves right, the piston rod of right extrusion oil cylinder (3-2) stretches out and drives right forging die (3-3) to be moved to the left, by blank material extruding balling-up, piston rod retraction with rear left extrusion oil cylinder (3-5) drives left forging die (3-4) to be moved to the left, the piston rod of right extrusion oil cylinder of while (3-2) continues to stretch out the right forging die of drive (3-3) and is moved to the left, the speed of stretching out of the piston rod of right extrusion oil cylinder (3-2) is identical with the retraction speed of the piston rod of left extrusion oil cylinder (3-5), when forge hot ball arrives the top of forging ball conveying device (4), the piston rod of left extrusion oil cylinder (3-5) continues retraction and drives left forging die (3-4) to be moved to the left return, the piston rod retraction of right extrusion oil cylinder (3-2) drives right forging die (3-3) return that moves right, forge hot ball drops to be forged in ball conveying device (4), the piston rod of oil cylinder (3-7) of connecting material stretches out, the drive head (3-6) that connects material moves up and connects material, enter second leg.
4. according to claim 2 horizontal to extruding forge hot ball production line, it is characterized in that, the connect material center line in vertical hole of oil cylinder (3-7) of installation departs from the cross central line of concave shape support to the right, forging ball conveying device (4) is located at the left side in the vertical hole that the oil cylinder (3-7) that connects material is installed, after blank material is fallen on the head (3-6) that connects material, the piston rod of right extrusion oil cylinder (3-2) stretches out in advance and drives right forging die (3-3) to be moved to the left, then the piston rod of right extrusion oil cylinder (3-2) continues to stretch out and drives right forging die (3-3) to be moved to the left, the piston rod of left extrusion oil cylinder (3-5) stretches out and drives left forging die (3-4) to move right to connect material, the piston rod retraction of oil cylinder (3-7) of connecting material drives head (3-6) decline return that connects material, the piston rod of right extrusion oil cylinder (3-2) continues to stretch out the right forging die of drive (3-3) and is moved to the left, the piston rod of left extrusion oil cylinder (3-5) stretches out and drives left forging die (3-4) to move right, by blank material extruding balling-up, piston rod retraction with rear right extrusion oil cylinder (3-2) drives right forging die (3-3) to move right, the piston rod of left extrusion oil cylinder of while (3-5) continues to stretch out the left forging die of drive (3-4) and moves right, the speed of stretching out of the piston rod of left extrusion oil cylinder (3-5) is identical with the retraction speed of the piston rod of right extrusion oil cylinder (3-2), when forge hot ball arrives the top of forging ball conveying device (4), the piston rod of right extrusion oil cylinder (3-2) continues retraction and drives right forging die (3-3) return that moves right, the piston rod retraction of left extrusion oil cylinder (3-5) drives left forging die (3-4) to be moved to the left return, forge hot ball drops to be forged in ball conveying device (4), the piston rod of oil cylinder (3-7) of connecting material stretches out, the drive head (3-6) that connects material moves up and connects material, enter second leg.
5. according to claim 2 horizontal to extruding forge hot ball production line, it is characterized in that, described hot blank conveying arrangement (2) is hot woollen slideway, hot woollen slideway has the downward inclination angle of 1~2 ° to horizontal to extruding forge hot ball machine (3) from blank heater (1), described forging ball conveying device (4) is forge hot ball slideway, forge hot ball slideway has the downward inclination angle of 1~2 ° from horizontal to extruding forge hot ball machine (3) to quenching unit (5), be provided with anti-blank material and tumble plate (3-8) on the head (3-6) that connects material.
CN201310458990.9A 2013-10-07 2013-10-07 Horizontal opposite-extrusion hot forging ball production line Active CN103506543B (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107553141A (en) * 2017-09-05 2018-01-09 四川鸿舰重型机械制造有限责任公司 Full-automatic more specifications extrude round as a ball grinding ball production
CN107598049A (en) * 2017-10-18 2018-01-19 叶进军 A kind of horizontal heated work pieces press
CN113102673A (en) * 2021-03-05 2021-07-13 山东中天重工有限公司 Forging ball production is with secondary heat treatment forging and pressing adjusting device

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CN102489646A (en) * 2011-12-23 2012-06-13 攀枝花钢城集团瑞矿工业有限公司 Method for processing steel ball
CN102537069A (en) * 2012-03-13 2012-07-04 江苏力星通用钢球股份有限公司 Steel ball special for bearing of large-scale offshore wind power generator group and manufacturing process for steel ball
RU2465978C1 (en) * 2011-07-22 2012-11-10 Открытое акционерное общество "ПРОМКО" Method of making steel grinding balls and die for flash-free forming of steel grinding balls
CN103031486A (en) * 2012-12-18 2013-04-10 鞍钢集团矿业公司 High-carbon and medium-carbon large-diameter forged grinding ball and production process thereof
CN203508896U (en) * 2013-10-07 2014-04-02 冯红喜 Horizontal type face-to-face extruding hot forged ball production line

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Publication number Priority date Publication date Assignee Title
CN2910959Y (en) * 2005-11-15 2007-06-13 上海嘉仕久企业发展有限公司 Soaking high-temp. quenching of automotive knuckle after being forged
RU2465978C1 (en) * 2011-07-22 2012-11-10 Открытое акционерное общество "ПРОМКО" Method of making steel grinding balls and die for flash-free forming of steel grinding balls
CN102489646A (en) * 2011-12-23 2012-06-13 攀枝花钢城集团瑞矿工业有限公司 Method for processing steel ball
CN102537069A (en) * 2012-03-13 2012-07-04 江苏力星通用钢球股份有限公司 Steel ball special for bearing of large-scale offshore wind power generator group and manufacturing process for steel ball
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107553141A (en) * 2017-09-05 2018-01-09 四川鸿舰重型机械制造有限责任公司 Full-automatic more specifications extrude round as a ball grinding ball production
CN107598049A (en) * 2017-10-18 2018-01-19 叶进军 A kind of horizontal heated work pieces press
CN113102673A (en) * 2021-03-05 2021-07-13 山东中天重工有限公司 Forging ball production is with secondary heat treatment forging and pressing adjusting device

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