EP4616973A1 - Gewindewalzmaschine mit einem kühlsystem - Google Patents
Gewindewalzmaschine mit einem kühlsystemInfo
- Publication number
- EP4616973A1 EP4616973A1 EP24189965.7A EP24189965A EP4616973A1 EP 4616973 A1 EP4616973 A1 EP 4616973A1 EP 24189965 A EP24189965 A EP 24189965A EP 4616973 A1 EP4616973 A1 EP 4616973A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- unit
- working
- cooler
- thread
- working channel
- 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.)
- Pending
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21H—MAKING PARTICULAR METAL OBJECTS BY ROLLING, e.g. SCREWS, WHEELS, RINGS, BARRELS, BALLS
- B21H3/00—Making helical bodies or bodies having parts of helical shape
- B21H3/02—Making helical bodies or bodies having parts of helical shape external screw-threads ; Making dies for thread rolling
- B21H3/06—Making by means of profiled members other than rolls, e.g. reciprocating flat dies or jaws, moved longitudinally or curvilinearly with respect to each other
Definitions
- This invention relates to a thread-rolling machine and relates particularly to a thread-rolling machine having a cooling system.
- a conventional thread rolling machine 1 includes a base unit 11 , a feeding track 12 disposed on the base unit 11 and adapted to feed screw blanks 2 , a thread-rolling unit 13 disposed on the base unit 11 and adapted to form threads on the screw blanks 2 , and a transmission device 14 linked with the thread-rolling unit 13.
- the base unit 11 includes a base 111 on which the thread-rolling unit 13 is installed and a transmission box 112 located on one side of the base 111 and linked with the transmission device 14.
- the thread-rolling unit 13 includes a movable rolling die 132 slidably disposed on the base 111 and a stationary rolling die 131 disposed on the base 111 and opposite the movable rolling die 132.
- screw blanks 2 are sequentially fed from the feeding track 12 into the thread-rolling unit 13.
- the sliding motion of the movable rolling die 132 is driven by the operation of the transmission device 14 , which causes the screw blanks 2 to be pressed by rolling between the movable rolling die 132 and the stationary rolling die 131.
- the rolling process forms threads on each screw blank 2 to produce each screw product 5.
- each screw blanks 2 is subjected to strong squeezing and rolling forces between the movable rolling die 132 and the stationary rolling die 131 , which generates heat because of mutual friction.
- the movable rolling die 132 slides incessantly under the high-speed transmission of the transmission device 14 , which causes heat on the base unit 11.
- the heat expansion of the base unit 11 occurs by the heat, which not only affects the precision of the thread rolling operation of the movable rolling die 132 but also causes the concern over the poor quality of the screw product 5.
- the overheated base unit 11 incurs the abrasion problem, with the result that the service life of the thread rolling machine 1 is affected. Thus, the improvement is required.
- An object of this invention is to provide a thread-rolling machine with a cooling system capable of reducing the temperature of the base during a thread rolling operation, thereby increasing the thread rolling quality and prolonging the service life of the thread rolling machine.
- a thread-rolling machine with a cooling system of this invention is as defined in claim 1 and includes a base, a feeding track disposed on the base, a thread-rolling unit disposed on the base, and a transmission assemblage linked with the thread-rolling unit.
- the base includes a transmission portion and a working portion.
- the transmission assemblage is installed on the transmission portion, and the thread-rolling unit is disposed on the working portion and driven by the transmission assemblage.
- the thread-rolling unit includes a movable rolling die and a stationary rolling die opposite the movable rolling die.
- the working portion includes a body unit and a shield unit disposed on the body unit.
- the movable rolling die is slidably disposed on the body unit and covered by the shield unit.
- the thread-rolling machine further includes a cooling system connected to the base.
- the cooling system includes a cooler, at least one working channel formed in the working portion, a pipe unit connected to the cooler and the working channel, and a working fluid flowing through the cooler, the working channel, and the pipe unit.
- the cooler includes a cooler body, at least one inlet formed through the cooler body, and at least one outlet formed through the cooler body.
- the working fluid is sent to the cooler body by passing through the inlet, and the working fluid is sent out by passing through the outlet.
- the pipe unit is connected to the working channel, the inlet, and the outlet, thereby communicating the pipe unit with the working portion and the cooler and allowing the working fluid to flow through and circulate between the working channel and cooler body.
- the working fluid is cooled by the cooler body, and the cooled working fluid is sent to the working channel for executing a heat exchanging process, thereby attaining a cooling circulation capable of reducing the temperature of the working portion.
- the working channel is formed in the body unit.
- the working channel is formed in the shield unit.
- more than one working channel can be formed.
- a working channel is formed in the body unit, and another working channel is formed in the shield unit.
- the pipe unit is connected to each of the working channels and also connected to the inlet and the outlet of the cooler body. It is possible that the pipe unit is disposed between the working channel of the shield unit and the working channel of the body unit so that the cooled working fluid can pass through the outlet, flow between the shield unit and the body unit, and thence return back to the cooler body by flowing through the inlet.
- a first collecting tank is disposed under the base and adapted to store cutting fluid
- a second collecting tank is disposed under the base and adapted to store lubricating oil.
- the pipe unit is connected to the inlet of the cooler body and the first collecting tank so that the cutting fluid can be sent from the first collecting tank into the cooler body, which allows the cutting fluid to be defined as the working fluid for attaining a cooling effect.
- the pipe unit is connected to the inlet of the cooler body and the second collecting tank so that the lubricating oil can be sent from the second collecting tank into the cooler body, which allows the lubricating oil to be defined as the working fluid for attaining a cooling effect.
- the transmission portion when the lubricating oil is defined as the working fluid, it is possible that the transmission portion includes a transmission box on which the transmission assemblage is disposed, and a heat-dissipating channel is formed in the transmission box.
- the pipe unit is connected to the working channel and the heat-dissipating channel, which allows the lubricating oil to flow through the cooler body of the cooler, the working channel, and the heat-dissipating channel and then return back to the second collecting tank.
- a first preferred embodiment of this invention is related to a thread-rolling machine 3.
- the thread-rolling machine 3 includes a base 31 , a feeding track 32 disposed on the base 31 and supplying screw blanks 4 , a thread-rolling unit 33 disposed on the base 31 for forming threads on the screw blanks 4 , a transmission assemblage 34 linked with the thread-rolling unit 33 , and a cooling system 35 connected to the base 31.
- the base 31 is mainly divided into two portions. In other words, the base 31 includes a transmission portion 312 and a working portion 311 .
- the transmission assemblage 34 is installed on the transmission portion 312, and the thread-rolling unit 33 is disposed on the working portion 311 and driven by the transmission assemblage 34.
- the working portion 311 includes a body unit 3111 and a shield unit 3112 disposed on the body unit 3111.
- the thread-rolling unit 33 includes a movable rolling die 331 slidably installed on the body unit 3111 and a stationary rolling die 332 disposed on the base 31 and opposite the movable rolling die 331.
- the movable rolling die 331 is actuated by the transmission assemblage 34 to execute a reciprocating sliding motion with respect to the stationary rolling die 3 3 2 for forming threads on the screw blanks 4 , thereby producing screw products 5.
- the shield unit 3112 can be disposed on a top surface of the body unit 3111 , and the thread-rolling unit 33 can be partially covered by the shield unit 3112 , thereby protecting the thread-rolling unit 33 with the shield unit 3112.
- the cooling system 35 includes a cooler 351 , at least one working channel 352 formed in the working portion 311 , a pipe unit 353 connected to the cooler 351 and the working channel 352 , and a working fluid flowing through the cooler 351 , the working channel 352 , and the pipe unit 353.
- the cooler 351 includes a cooler body 3510 , at least one inlet 3511 formed through the cooler body 3510 , and at least one outlet 3512 formed through the cooler body 3510. Take for example the cooler body 3510 has one inlet 3511 and one outlet 3512 formed thereon in the preferred embodiments.
- the working fluid is a cooling substance which flows and is not solid, and herein the working fluid is briefly shown by arrows illustrated in Fig. 5 , Fig. 6 , etc.
- the working fluid can be stored in the cooler 351 or be introduced into the cooler 351 by an external device.
- the cooler body 3510 serves to cool down the working fluid, i.e. reduce the temperature of the working fluid.
- the working fluid is sent out by passing through the outlet 3512.
- the pipe unit 353 can be comprised of a plurality of pipes. Owing to these pipes, the pipe unit 353 is connected to the working channel 352 , the inlet 3511 , and the outlet 3512 , thereby communicating the pipe unit 353 with an interior of the working portion 311 and an interior of the cooler 351 and allowing the working fluid to flow through and circulate between the working channel 352 and cooler body 3510.
- the cooled working fluid is sent to the working channel 352 , and a heat exchanging process is conducted in the working channel 352 by the flow of the working fluid.
- one or more than one working channel 352 can be adopted according to demand.
- Fig. 2 shows that the working channel 352 is formed in the body unit 3111.
- Fig. 4 shows that the working channel 352 is formed in the shield unit 3112.
- a working channel 352 is formed in the body unit 3111
- another working channel 352 is formed in the shield unit 3112 , as shown in Fig. 5 .
- the pipe unit 353 is connected to each working channel 352 and also connected to the inlet 3511 and the outlet 3512 of the cooler body 3510 .
- the pipe unit 353 can be further disposed between the working channel 352 of the shield unit 3112 and the working channel 352 of the body unit 3111 so that the working fluid can flow through the outlet 3512 , flow between the shield unit 3112 and the body unit 3111 , and thence return back to the cooler body 3510 by flowing through the inlet 3511.
- the working channel 352 can include at least one first port 3521 which allows the working fluid to flow in and at least one second port 3522 which allows the working fluid to flow out.
- the first scenario shown in Fig. 5 is that the pipe line 353 is connected to the outlet 3512 and the first port 3521 of the shield unit 3112. Then, the pipe line 353 is connected to the second port 3522 of the shield unit 3112 and the first port 3521 of the body unit 3111. Finally, the pipe line 353 is connected to the second port 3522 of the body unit 3111 and the inlet 3511. Accordingly, as traveled by arrows in Fig.
- the flowing route of the working fluid can be, sequentially, from the cooler 351 , the shield unit 3112 , the body unit 3111 , and thence back to the cooler 351.
- the second scenario shown in Fig. 6 is that the pipe line 353 is connected to the outlet 3512 and the first port 3521 of the body unit 3111. Then, the pipe line 353 is connected to the second port 3522 of the body unit 3111 and the first port 3521 of the shield unit 3112. Finally, the pipe line 353 is connected to the second port 3522 of the shield unit 3112 and the inlet 3511. Accordingly, as traveled by arrows in Fig. 6 , the flowing route of the working fluid can be, sequentially, from the cooler 351 , the body unit 3111 , the shield unit 3112 , and thence back to the cooler 351.
- the cooling system 35 includes the cooler 351 adapted to reduce the temperature of the working fluid and also includes the working channel 352 formed in the body unit 3111 , the working fluid cooled by the cooler body 3510 of the cooler 351 is sent to the working channel 352 by means of the pipe unit 353.
- a heat exchange process caused by the flowing action of the working fluid is conducted in the working channel 352 to reduce the temperature of the body unit 3111 efficiently, thereby attaining a cooling effect.
- the temperature of the shield unit 3112 which is in contact with the body unit 3111 can also be reduced. Accordingly, the use of the cooling system 35 attains a preferable cooling effect to prevent the working portion 311 from getting too hot and prevent the occurrence of the heat expansion, which facilitates an increase in the precision of the thread rolling operation and prolongs the service life of the thread rolling machine 3.
- a second preferred embodiment of this invention is shown.
- the correlated elements of the first preferred embodiment are applied to the second preferred embodiment and herein are not repeated.
- the second preferred embodiment is characterized in that a first collecting tank 313 is disposed under the base 31 and adapted to store cutting fluid, and a second collecting tank 314 is disposed under the base 31 and adapted to store lubricating oil.
- the pipe unit 353 is connected to the inlet 3511 of the cooler 351 and the second connecting tank 314 , so the lubricating oil is sent from the second collecting tank 314 into the cooler body 3510.
- this feature can be combined with the arrangement, the working channel 352 of which is only formed in the body unit 3111 or is only formed in the shield unit 3112 , and the combinations are respectively shown in Fig. 7 and Fig. 8 .
- This feature can also be combined with the arrangement, the working channels 3 5 2 of which are respectively formed in the body unit 3111 and the shield unit 3112 , and the combination is shown in Fig. 9 .
- the lubricating oil can be defined as the working fluid for reducing the temperature, thereby attaining a cooling effect. Accordingly, the working fluid, i.e. the lubricating oil, flows through the cooler body 3510 and then enters the working channel 352. After the heat exchange process, the lubricating oil passes through the second port 3522 so that the lubricating oil can be discharged from the working channel 352 into the second collecting tank 314 , as for example shown by arrows in Fig. 7 . The lubricating oil inside the second collecting tank 314 can be sent to the cooler 351 repetitively to attain a circulating effect, thereby reducing the temperature of the body unit 3111 and the shield unit 3112.
- a third preferred embodiment of this invention is shown.
- the correlated elements of the second preferred embodiment are applied to the third preferred embodiment and herein are not repeated.
- the third preferred embodiment is characterized in that the transmission portion 312 includes a transmission box 36 on which the transmission assemblage 34 is disposed.
- a heat-dissipating channel 36a is formed in the transmission box 36.
- the pipe unit 353 is not only connected to the second collecting tank 314 and the cooler body 3510 but also connected to the working channel 352 and the heat-dissipating channel 36a.
- the pipe unit 353 is extended from the second port 35 2 2 of the working channel 352 to the heat-dissipating channel 36a , thereby allowing the lubricating oil to flow through the cooler 351 , the working channel 352 , and the heat-dissipating channel 36a of the transmission box 36 and then return back to the second collecting tank 314.
- this feature can be respectively combined with the arrangement, the working channel 352 of which is only formed in the body unit 3111 or is only formed in the shield unit 3 1 12, and the combinations are respectively shown in Fig. 10 and Fig. 11 .
- This feature can also be combined with the arrangement, the working channels 352 of which are respectively formed in the body unit 3111 and the shield unit 3112, and the combination is shown in Fig. 12 .
- the lubricating oil flows through the cooler 351 , so the temperature of the lubricating oil is reduced to prevent the lubricating oil from decaying because of high temperature.
- the temperatures of the shield unit 3112 , the body unit 3111 , the transmission box 36 , and the transmission portion 312 can be reduced.
- the temperature of the thread-rolling unit 33 disposed on the body unit 3111 can also be reduced. Thus, a decrease in the temperature of the whole thread-rolling machine 3 is attained while conducting the thread rolling operation, which facilitates a long-term use of the thread-rolling machine 3.
- the lubricating oil serves as the working fluid whereby the temperatures of the working portion 311 and the transmission portion 312 can be efficiently reduced for attaining a cooling effect.
- the lubricating oil can be directly discharged from the working channel 352 into the second collecting tank 314 (as for example shown by arrows in Fig. 7 ) or be discharged from the working channel 352 , then the transmission box 36 , and thence into the second collecting tank 314 (as for example shown by arrows in Fig. 10 ), thereby attaining the circulation of the lubricating oil and preventing the lubricating oil from mixing with other substances, such as cutting fluid.
- the lubricating oil and cutting fluid can be respectively collected, and the decay of the lubricating oil caused by the mixing behavior is also prevented.
- a fourth preferred embodiment of this invention is shown.
- the correlated elements of the first preferred embodiment are applied to the fourth preferred embodiment and herein are not repeated.
- the fourth preferred embodiment is characterized in that a first collecting tank 313 is disposed under the base 31 and adapted to store cutting fluid, and a second collecting tank 314 is disposed under the base 31 and adapted to store lubricating oil.
- the pipe unit 353 is connected to the inlet 3511 and the first connecting tank 313 , so the cutting fluid is sent from the first collecting tank 313 into the cooler body 3510.
- this feature can be combined with the arrangement, the working channel 352 of which is only formed in the body unit 3111 or is only formed in the shield unit 3112 , and the combinations are respectively shown in Fig. 13 and Fig. 14 .
- This feature can also be combined with the arrangement, the working channels 352 of which are respectively formed in the body unit 3111 and the shield unit 3112 , and the combination is shown in Fig. 15 .
- the cutting fluid flows through the cooler 351 , so the temperature of the cutting fluid is reduced.
- the temperatures of the shield unit 3112 , the body unit 3111 , and the thread-rolling unit 33 can be reduced.
- a decrease in the temperature of the whole thread-rolling machine 3 is attained while conducting the thread rolling operation, which facilitates a long-term use of the thread-rolling machine 3.
- the cutting fluid serves as the working fluid whereby the temperatures of the working portion 311 can be efficiently reduced for attaining a cooling effect.
- the cutting fluid can be directly sent from the working channel 352 to the first collecting tank 313 for attaining the circulation of the cutting fluid and preventing the cutting fluid from mixing with other substances, such as lubricating oil.
- the lubricating oil and cutting fluid can be respectively collected, and the decay of the lubricating oil caused by the mixing behavior is also prevented.
- the thread rolling machine of this invention is characterized in that the cooling system includes a working channel formed in the working portion of the base and also includes a cooler communicating with the working channel by means of a pipe unit and serving to cool a working fluid.
- the cooled working fluid is sent to the working channel and subjected to a heat exchanging process in the working channel, thereby reducing the temperatures of the working portion and the thread-rolling unit, which prevents the occurrence of the heat expansion efficiently, increases the precision of the thread rolling operation, and prolongs the service life of the whole thread-rolling machine.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Transmission Devices (AREA)
- Fluid-Pressure Circuits (AREA)
- Auxiliary Devices For Machine Tools (AREA)
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| TW113109490A TWI878056B (zh) | 2024-03-14 | 2024-03-14 | 具冷卻裝置之螺絲搓牙機 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4616973A1 true EP4616973A1 (de) | 2025-09-17 |
Family
ID=91961911
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP24189965.7A Pending EP4616973A1 (de) | 2024-03-14 | 2024-07-22 | Gewindewalzmaschine mit einem kühlsystem |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4616973A1 (de) |
| CN (1) | CN120644596A (de) |
| TW (1) | TWI878056B (de) |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN204620965U (zh) * | 2015-04-24 | 2015-09-09 | 浙江科佳机械有限公司 | 新型搓丝机 |
| CN205147190U (zh) * | 2015-11-19 | 2016-04-13 | 天津市远野科技发展有限公司 | 一种组合式高耐久搓丝板 |
| TWI644743B (zh) * | 2015-12-22 | 2018-12-21 | 鍵財機械企業股份有限公司 | 搓牙機 |
| CN212239056U (zh) * | 2020-05-28 | 2020-12-29 | 太仓恒康实业有限公司 | 用于钻尾螺钉加工的搓丝机 |
| CN217701168U (zh) * | 2022-01-17 | 2022-11-01 | 河北邯旺不锈钢制品有限公司 | 一种带有冷却机构的螺栓搓丝设备 |
Family Cites Families (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP4152945B2 (ja) | 2002-06-13 | 2008-09-17 | 甲府精鋲株式会社 | ねじ供給装置 |
| TWM378062U (en) * | 2009-12-07 | 2010-04-11 | Top Stability Machine Industry Co Ltd | Thread rolling machine |
| TWM515431U (zh) * | 2015-06-12 | 2016-01-11 | Chuan Yi Sheng Machinery Co Ltd | 輾牙機之冷卻裝置 |
| CN207900392U (zh) * | 2018-02-28 | 2018-09-25 | 巫建烽 | 一种便于清理铁屑的钢筋直螺纹滚丝机 |
-
2024
- 2024-03-14 TW TW113109490A patent/TWI878056B/zh active
- 2024-07-22 EP EP24189965.7A patent/EP4616973A1/de active Pending
- 2024-07-30 CN CN202411028202.7A patent/CN120644596A/zh active Pending
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN204620965U (zh) * | 2015-04-24 | 2015-09-09 | 浙江科佳机械有限公司 | 新型搓丝机 |
| CN205147190U (zh) * | 2015-11-19 | 2016-04-13 | 天津市远野科技发展有限公司 | 一种组合式高耐久搓丝板 |
| TWI644743B (zh) * | 2015-12-22 | 2018-12-21 | 鍵財機械企業股份有限公司 | 搓牙機 |
| CN212239056U (zh) * | 2020-05-28 | 2020-12-29 | 太仓恒康实业有限公司 | 用于钻尾螺钉加工的搓丝机 |
| CN217701168U (zh) * | 2022-01-17 | 2022-11-01 | 河北邯旺不锈钢制品有限公司 | 一种带有冷却机构的螺栓搓丝设备 |
Also Published As
| Publication number | Publication date |
|---|---|
| TW202535588A (zh) | 2025-09-16 |
| TWI878056B (zh) | 2025-03-21 |
| CN120644596A (zh) | 2025-09-16 |
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