CN215943606U - High-efficient cooling dysmorphism mould water route - Google Patents
High-efficient cooling dysmorphism mould water route Download PDFInfo
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- CN215943606U CN215943606U CN202121810259.4U CN202121810259U CN215943606U CN 215943606 U CN215943606 U CN 215943606U CN 202121810259 U CN202121810259 U CN 202121810259U CN 215943606 U CN215943606 U CN 215943606U
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Abstract
The utility model discloses a high-efficiency cooling special-shaped mold waterway, which relates to the technical field of mold cooling and comprises a water inlet joint and a common waterway, the special-shaped waterway is arranged on the outer side of the common waterway, the water inlet joint is provided with a first water conveying pipe, the first water conveying pipe is provided with a first opening and a second opening, the first opening is connected with the water inlet end of the common waterway, the second opening is connected with the water inlet end of the special-shaped waterway, the water inlet end of the common waterway is provided with a hollow plug, the water outlet end is provided with a second water conveying pipe which extends out of the mold and is connected with the common waterway water outlet valve, and the water outlet end of the special-shaped waterway is provided with a third water conveying pipe which extends out of the mold and is connected with the special-shaped waterway water outlet valve.
Description
Technical Field
The utility model relates to the technical field of mold cooling, in particular to a water way for efficiently cooling a special-shaped mold.
Background
The production shaping to the section bar is usually cooled through the heat transfer of mould and section bar in industrial production process, and the cooling of mould is cooled through the recirculated cooling water in the mould, if the pressure and the flow of cooling water are big more then the cooling effect is better, each functional dimension of section bar is more standard, now, discharge and the water pressure between ordinary water route and the special-shaped water route in the mould differ very greatly, the temperature of cooling water in different water routes is inconsistent in production process, seriously influence the cooling effect, because of the water pressure is little easy to block up, the online production time of mould is short, it is high frequently to clear up the mould, notch portion position is easily cracked in production process.
The prior art refers to the chinese utility model patent that authorizes the public number to be CN209599736U, it discloses a high-efficient cooling die dysmorphism water route, including the mould base, the water route base plate, the screw, the water course of intaking, the water inlet, go out the water course, the delivery port, special-shaped waterway structure, annular waterway structure and connection water route, install at mould base top through the screw at four angles of water route base plate, special-shaped waterway structure and annular waterway structure all imbed in water route base plate middle part, special-shaped waterway structure comprises many special-shaped waterways with circuitous formula structure, first annular waterway has been set up in the special-shaped waterway structure outside, the first annular waterway outside has set up second annular waterway, be connected through being connected the water route between first annular waterway and second annular waterway and the special-shaped waterway structure. The utility model discloses a design cooperation dysmorphism waterway structure of surrounding type layer upon layer carries out cooling work, has increased cooling water course contact die product area, nevertheless has following not enough: the water channel structure is small in water pressure and easy to block, the groove opening part is easy to crack in the production process, the water pressure of the same water inlet feeding special-shaped water hole is smaller than that of a common water hole, and a water outlet valve of the special-shaped water hole and the common water hole flow out at the same position.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects in the prior art, the utility model aims to provide the water channel for efficiently cooling the special-shaped mold, increase the water pressure and water flow of the special-shaped water channel, improve the cooling effect and solve the problems that the water channel of the mold is easy to block and the mold is easy to crack in the production process in the prior art.
The utility model is realized by the following technical scheme: a high-efficiency cooling special-shaped mold waterway comprises a water inlet joint, a common waterway, a special-shaped waterway, a common waterway outlet valve and a special-shaped waterway outlet valve, wherein the special-shaped waterway is arranged on the outer side of the common waterway, the water inlet joint is provided with a first water pipe, the first water pipe is provided with a first opening and a second opening, the first opening is connected with the water inlet end of the common waterway, the second opening is connected with the water inlet end of the special-shaped waterway, the water inlet end of the common waterway is provided with a hollow plug, the water outlet end of the common waterway is provided with a second water pipe, the second water pipe extends out of the mold and is connected with the common waterway outlet valve, the water outlet end of the special-shaped waterway is provided with a third water pipe, the third water pipe extends out of the mold and is connected with the special-shaped waterway outlet valve, and the water inlet joint and the special-shaped waterway outlet valve are arranged at two ends of the same side of the mold, the common waterway water outlet valve is arranged between the water inlet joint and the special-shaped waterway water outlet valve and is close to the special-shaped waterway water outlet valve.
Through the above scheme, locate ordinary water route outside with the dysmorphism water route, the velocity of flow of cooling water in the dysmorphism water route has been increased, set up a hollow plug with the end of intaking in ordinary water route again, further reduce ordinary water route pressure, increase dysmorphism water route pressure, owing to set up special-shaped water route outlet valve specially, can not make the dysmorphism water route velocity of flow too big yet, the flow is too big and cause the water route to collapse, the operation of a whole set of system has effectively been protected, it is nearer to ordinary water route outlet valve to advance water connectors, the faster change in turn in large-traffic ordinary water route cooling water has been guaranteed, advance water connectors far away to special-shaped water route outlet valve, it is little to have guaranteed the flow, the fast special-shaped water route cooling water in the dysmorphism water route can provide furthest's cooling efficiency.
Furthermore, an extension pipe is arranged at the water outlet end of the common water channel, one end of the extension pipe is connected with the water outlet end of the common water channel, the other end of the extension pipe is connected with a third water conveying pipe, and a solid plug is arranged in the extension pipe.
Through above-mentioned scheme, set up the extension pipe to at the intraductal solid plug that sets up of extension, during ordinary water route internal cooling water flows in special-shaped water route when avoiding normal operating, influence the normal operating in special-shaped water route, can dismantle solid plug when needs are cleared up special-shaped water route simultaneously, wash with big rivers in ordinary water route.
Further, the solid plug is arranged in the extension pipe close to the third water delivery pipe.
Through the scheme, a certain space is reserved in the extension pipe for cooling water in the common water channel to serve as buffering, and the water pressure of the cooling water in the common water channel is reduced.
Furthermore, the ordinary waterway water outlet valve is higher than the special waterway water outlet valve.
Through above-mentioned scheme, effectively increase the water pressure of dysmorphism water route play water department for the water route circulation.
Further, the common waterway is a circular waterway channel.
By the scheme, the cooling water with the smallest volume ratio and larger flow is used.
Furthermore, the special-shaped waterway is a similar circular waterway channel with the diameter smaller than that of the common waterway.
Through above-mentioned scheme, set up the type circular passageway that sets up that corresponds with second opening on the first raceway, can be more smooth and easy when making the cooling water wash into first raceway back in the same direction as second opening entering dysmorphism water route, effectively reduced the buffering for the velocity of flow of cooling water in special-shaped water route, accelerate the circulation.
The utility model has the following beneficial effects:
1. the water inlet end of the common waterway is provided with the hollow plug, so that the pressure of the common waterway is reduced, the pressure of the special waterway is increased, the special waterway outlet valve is specially arranged, the water flow of the special waterway is further increased, and the cooling efficiency is improved;
2. compared with the prior art, the improved water channel structure has the advantages that the extension pipe is arranged, the water channel is convenient to clean, the solid plug is arranged in the extension pipe in order to not influence the operation of the two water channels, the water pressure and the water flow of the special-shaped water channel are balanced, the water channel is prevented from being blocked, the shutdown and cleaning of the mold are reduced, and the production efficiency is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic side view of the present invention;
FIG. 3 is an enlarged partial schematic view of the side structure of FIG. 2;
reference numerals: 1. a water inlet joint; 2. a common waterway; 3. a special-shaped waterway; 4. a common waterway outlet valve; 5. a special-shaped waterway outlet valve; 6. a first water delivery pipe; 61. a first opening; 62. a second opening; 7. hollow pipe plugs; 8. a second water delivery pipe; 9. a mold; 10. a third water delivery pipe; 11. an extension tube; 12. and (4) solid plug.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Example 1
Referring to fig. 1, the embodiment provides a high-efficiency cooling special-shaped mold waterway, which comprises a water inlet joint 1, a common waterway 2, a special-shaped waterway 3, a common waterway outlet valve 4 and a special-shaped waterway outlet valve 5, wherein the special-shaped waterway 3 is arranged outside the common waterway 2, the special-shaped waterway 3 is longer than the common waterway 2, so as to increase the flow time of cooling water in the special-shaped waterway 3, the water inlet joint 1 is provided with a first water pipe 6, the first water pipe 6 is provided with a first opening 61 and a second opening 62, the first opening 61 is connected with the water inlet end of the common waterway 2, the second opening 62 is connected with the water inlet end of the special-shaped waterway 3, a hollow plug 7 is arranged at the water inlet end of the common waterway 2, so as to reduce the pressure of the common waterway 2 and increase the pressure of the special-shaped waterway 3, the water outlet end of the common waterway 2 is provided with a second water pipe 8 extending out of a mold 9 to be connected with the common waterway outlet valve 4, the water outlet end of the special-shaped waterway 3 is provided with a third water pipe 10 which extends out of the mold 9 and is connected with a special-shaped waterway water outlet valve 5, the situation that only one water outlet valve is arranged in a traditional cooling waterway is changed, the water pressure and the water flow in the special-shaped waterway 3 are further improved, the waterway is convenient to clean, an extension pipe 11 which is communicated with the water outlet end of the common waterway 2 and the water outlet end of the special-shaped waterway 3 is arranged, in order to not influence the technical effect, a solid plug 12 is arranged at the position, close to the third water pipe 10, of the extension pipe 11 to prevent cooling water in the common waterway 2 from flowing out of the third water pipe 10, a water inlet connector 1 and the special-shaped waterway water outlet valve 5 are arranged at the left end and the right end of the same side of the mold 9, the common waterway water outlet valve 4 is arranged between the water inlet connector 1 and the special-shaped waterway water outlet valve 5 and is close to the special-shaped waterway water outlet valve 5, the common waterway water outlet valve 4 is higher than the special-shaped waterway water outlet valve 5, the length of the two waterways in the mold 9 is increased, and the length of the waterway is further increased And a water outlet pressure.
Referring to fig. 2, ordinary water route 2 is circular waterway, and ordinary water route 2 below is arranged in to dysmorphism water route 3, is less than the circular waterway of the class of ordinary water route 2 for the diameter, and ordinary water route 2 increases discharge as the cooling masterpiece, adopts circular waterway to increase discharge, and the passageway of dysmorphism water route 3 is established to the circular waterway of class and has reduced discharge, has increased the water velocity for the circulation of cooling water in the special-shaped water route 3.
Referring to fig. 3, which mainly shows a partial enlarged schematic view of a side structure in fig. 2, wherein the extension pipe 11 has the same thickness as the common waterway 2, and the solid plug 12 is attached to the inner wall of the extension pipe 11.
The working principle of the utility model is as follows: when the water cooling device is used, cooling water is injected through the water inlet connector 1, the cooling water flows into the common water channel 2 and the special-shaped water channel 3 respectively along the first water conveying pipe 6, the water pressure flowing to the common water channel 2 is weakened due to the existence of the hollow plug 7, the water pressure of the cooling water in the special-shaped water channel 3 is strengthened, the cooling water in the common water channel 2 impacts the solid plug 12 to enter the second water conveying pipe 8 and flow out of the common water channel water outlet valve 4, the cooling water in the special-shaped water channel 3 is not influenced by the solid plug 12 and flows out of the special-shaped water channel water outlet valve 5 arranged additionally along the third water conveying pipe 10.
Claims (6)
1. A high-efficiency cooling special-shaped mold waterway comprises a water inlet joint (1), a common waterway (2) and a special-shaped waterway (3), and is characterized by further comprising a common waterway water outlet valve (4) and a special-shaped waterway water outlet valve (5), wherein the special-shaped waterway (3) is arranged on the outer side of the common waterway (2), the water inlet joint (1) is provided with a first water pipe (6), the first water pipe (6) is provided with a first opening (61) and a second opening (62), the first opening (61) is connected with the water inlet end of the common waterway (2), the second opening (62) is connected with the water inlet end of the special-shaped waterway (3), the water inlet end of the common waterway (2) is provided with a hollow plug (7), the water outlet end of the common waterway (2) is provided with a second water pipe (8), and the second water pipe (8) extends out of a mold (9) and is connected with the common waterway water outlet valve (4), the water outlet end of the special-shaped water path (3) is provided with a third water pipe (10), the third water pipe (10) extends out of the die (9) and is connected with the special-shaped water path water outlet valve (5), the water inlet connector (1) and the special-shaped water path water outlet valve (5) are arranged at two ends of the same side of the die (9), and the common water path water outlet valve (4) is arranged between the water inlet connector (1) and the special-shaped water path water outlet valve (5) and is close to the special-shaped water path water outlet valve (5).
2. The special-shaped mold water channel for efficient cooling according to claim 1, characterized in that the common water channel (2) is provided with an extension pipe (11) at the water outlet end, one end of the extension pipe (11) is connected with the water outlet end of the common water channel (2), the other end of the extension pipe is connected with a third water pipe (10), and a solid plug (12) is arranged in the extension pipe (11).
3. The high-efficiency cooling special-shaped mold waterway according to the claim 2, wherein the solid plug (12) is arranged in the extension pipe (11) near the third water conveying pipe (10).
4. The efficient cooling special-shaped mold waterway according to claim 1, wherein the common waterway outlet valve (4) is higher than the special-shaped waterway outlet valve (5).
5. The efficient cooling special-shaped mold waterway according to claim 1, wherein the common waterway (2) is a circular waterway channel.
6. The efficient cooling special-shaped mold waterway according to claim 1, wherein the special-shaped waterway (3) is a circular-like waterway channel with a smaller diameter than the common waterway (2).
Priority Applications (1)
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CN202121810259.4U CN215943606U (en) | 2021-08-04 | 2021-08-04 | High-efficient cooling dysmorphism mould water route |
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CN202121810259.4U CN215943606U (en) | 2021-08-04 | 2021-08-04 | High-efficient cooling dysmorphism mould water route |
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CN215943606U true CN215943606U (en) | 2022-03-04 |
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