Cutting tool cooling circulation device of glass bottle mouth aligning machine

By designing a cooling circulation device for the cutting blades of a glass bottle rimming machine, the problem of the coolant being difficult to reuse after recycling was solved, achieving efficient recycling of the coolant, avoiding blockage by impurities, ensuring the cooling effect of the blades, extending the blade life, and improving production continuity and stability.

CN121199752APending Publication Date: 2025-12-26CHONGQING SYNTHWARE GLASS INC
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Patent Information

Application Number
CN202511743097.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-25
Publication Date
2025-12-26

AI Technical Summary

Technical Problem

In existing technologies, coolant is difficult to reuse after recovery and requires separate cooling treatment, which increases the difficulty of coolant utilization.

Method used

A cooling circulation device for the cutting blades of a glass bottle sizing machine was designed, including a cooling tank, a filtration unit, a cooling unit, and an adjustment unit. The filtration tank, inlet pipe, cover plate, mounting rod, limit bolts, filter plate, and partition hollow rod work together to achieve filtration and circulating cooling of the coolant. The support column, recovery tank, support platform, circulation pump, input pipe, and spray pipe work together to achieve continuous cooling of the recovered coolant. The mounting bracket, fixed mounting column, sliding connecting column, U-shaped lifting plate, rotating rod, support mounting block, and mounting crossbar work together to achieve lifting and adjustment of the nozzle, flexibly adapting to different specifications of cutting blades. The lifting and adjustment ensures the stability and adaptability of the coolant.

Benefits of technology

It achieves efficient recycling of coolant, avoids clogging by impurities, ensures effective tool cooling, extends tool life, improves production continuity and stability, balances operability and maintenance in the face of equipment failure, reduces labor costs, avoids cooling effect attenuation due to untimely cleaning of the 306 filter plate, ensures that the tool is in the best cooling state during cutting, improves the edge smoothness of glass bottle flush cutting and production continuity, and balances impurity handling efficiency and maintenance convenience.

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Abstract

The invention discloses a cutting tool cooling circulation device of a glass bottle mouth aligning machine, and relates to the technical field of cooling equipment. The cutting tool cooling circulation device of the glass bottle mouth aligning machine comprises a cooling box, a filtering unit, a cooling unit and an adjusting unit, and a hollow column is fixedly installed at the top of the cooling box. According to the cutting tool cooling circulation device of the glass bottle opening aligning machine, through cooperative use of the supporting column, the recycling box, the supporting platform, the circulating pump, the input pipe and the output pipe, recycled cooling liquid can be continuously cooled, the low-temperature state of the cooling liquid is maintained, the stable cooling effect on a cutting tool is ensured, and the situation that the cooling capacity is attenuated due to temperature rise of the cooling liquid is avoided; abrasion and deformation caused by overheating of the cutter are reduced, the smoothness and precision of the cutting edge are guaranteed, when the temperature of cooling liquid is high, ice blocks can be placed in the cooling cavity between the cooling box and the recycling box, and the temperature of the cooling liquid is rapidly reduced through the melting heat absorption characteristic of the ice blocks.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cooling equipment, in particular to a cutting tool cooling circulation device of a glass bottle mouth aligning machine. BACKGROUND

[0002] The cutting tool cooling device for machine tool machining in Chinese patent document CN118123571A includes a recovery tank located on one side of the machine tool body and a backflow tank located below the machining table. The backflow tank is connected to the recovery tank on one side. A cooling liquid barrel is provided on the machine tool body and is connected to a distribution pipe on one side of the tool holder. A universal pipe is connected to the end of the distribution pipe away from the cooling liquid barrel. The universal pipe is connected to a cooling nozzle facing the cutting tool. The universal pipe is axially provided with a first liquid flow cavity and a second liquid flow cavity separated from each other. The cooling nozzle includes a cooling liquid port connected to the first liquid flow cavity. A plurality of liquid spray ring ports connected to the second liquid flow cavity are provided in the peripheral direction of the cooling liquid port. The cooling liquid port can cool the cutting tool while the liquid spray ring ports can prevent the cutting debris from falling down. The present application can recover the cooling liquid, accurately control the flow direction of the cooling liquid, prevent the cooling liquid and cutting debris from drifting and scattering, and facilitate the cleaning of the cutting debris.

[0003] Although the cutting tool cooling device for machine tool machining can filter impurities in the cooling liquid, the cooling liquid is difficult to be reused after recovery because it absorbs heat from the tool during use. The cooling liquid needs to be cooled separately, which increases the difficulty of utilizing the cooling liquid and reduces its practicality. SUMMARY

[0004] The present application aims to at least solve one of the technical problems in the prior art, and provides a cutting tool cooling circulation device of a glass bottle mouth aligning machine, which can solve the problem of difficulty in reusing the cooling liquid after recovery, the need for separate cooling treatment of the cooling liquid, and the increased difficulty of utilizing the cooling liquid.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a cutting tool cooling circulation device of a glass bottle mouth aligning machine, comprising a cooling tank, a filtering unit, a cooling unit and an adjusting unit, a hollow column is fixedly installed on the top of the cooling tank; The filtering unit is arranged on the hollow column, and the filtering unit comprises a filtering tank and filtering plates. The number of filtering plates is two groups, and both groups of filtering plates are located inside the filtering tank; The cooling unit is arranged on the cooling tank, and the cooling unit comprises a recovery tank. The recovery tank is arranged inside the cooling tank, and a cooling cavity is arranged between the recovery tank and the cooling tank; The adjusting unit is arranged on one side of the cooling box, and the adjusting unit comprises a mounting frame, a fixed sleeve plate, a worm and a worm wheel arranged on the mounting frame, and the worm and the worm wheel are used to drive the fixed sleeve plate to rotate.

[0006] Preferably, the filtering unit further comprises a liquid inlet pipe, a cover plate, a mounting rod, a limiting bolt, a partitioning hollow rod, a liquid outlet pipe, a fixed block, a first U-shaped plate, a first damping spring and a first pull rod, the top of the hollow column is fixedly provided with a filtering box, the top of the filtering box is provided with the cover plate, the front side of the filtering box is fixedly provided with the liquid inlet pipe, one end of the liquid inlet pipe extends into the filtering box, the bottom of the cover plate is fixedly provided with the mounting rod, the bottom of the mounting rod is threadedly provided with the limiting bolt, the outer wall of the mounting rod is movably provided with the filtering plate and the partitioning hollow rod, the partitioning hollow rod is located between the two groups of filtering plates, the bottom of the filtering box is fixedly provided with the liquid outlet pipe, one end of the liquid outlet pipe extends into the filtering box.

[0007] Preferably, the bottom of the cover plate is fixedly provided with the fixed block, one side of the filtering box is fixedly provided with the first U-shaped plate, the inside of the first U-shaped plate is provided with an opening through which the fixed block is movable, the inside of the first U-shaped plate is further provided with a movable slot, one side inner wall of the movable slot is fixedly provided with the first damping spring, one side of the first damping spring is fixedly provided with a first movable plate, one side of the first movable plate is fixedly provided with the first pull rod, one end of the first pull rod extends to one side of the first U-shaped plate and the first pull rod is slidingly installed on the first U-shaped plate.

[0008] Preferably, the other side of the first movable plate is fixedly provided with a strip-shaped limiting block, the inside of the fixed block is provided with an opening through which the strip-shaped limiting block is movable, and the strip-shaped limiting block is located in the opening in the fixed block.

[0009] Preferably, the cooling unit further comprises a support column, a support platform, a circulating pump, an input pipe, an output hose and a liquid spraying pipe, the inner bottom of the cooling box is fixedly provided with the support column, the top of the support column is fixedly provided with the recovery box, the other end of the liquid outlet pipe extends through the hollow column and the top of the cooling box and extends into the inside of the recovery box, one side of the cooling box is fixedly provided with the support platform, the top of the support platform is fixedly provided with the circulating pump, the input end of the circulating pump is fixedly provided with the input pipe, one end of the input pipe extends into the inside of the recovery box, the other end of the circulating pump is fixedly connected with the output hose, one end of the output hose is fixedly connected with the liquid spraying pipe, and one end of the liquid spraying pipe is fixedly connected with a spray head.

[0010] Preferably, one side of the cooling box is fixedly provided with a drain pipe, one end of the drain pipe extends into the inside of the cooling box and is located in the cooling cavity between the cooling box and the support column, and a stop valve is arranged on the drain pipe.

[0011] Preferably, the top of the cooling box is hingedly provided with two groups of doors through hinges, and a handle is fixedly arranged on each of the two groups of doors.

[0012] Preferably, the adjusting unit further comprises a fixed mounting column, a sliding connecting column, a U-shaped lifting plate, a rotating rod, a supporting mounting block, a mounting cross rod, a gear box, a second U-shaped plate, a second damping spring, a second movable plate, a limiting cylinder and a second pull rod, the bottom of the mounting frame is fixedly installed with the fixed mounting column, the inside of the fixed mounting column is slidingly installed with the sliding connecting column, the bottom of the sliding connecting column is fixedly installed with the U-shaped lifting plate, the front side inner wall and the rear side inner wall of the U-shaped lifting plate are rotationally installed with the rotating rod, the outer wall of the rotating rod is fixedly installed with the supporting mounting block, one side of the supporting mounting block is fixedly installed with the mounting cross rod, and one end of the mounting cross rod is fixedly installed with the fixed sleeve plate, and the fixed sleeve plate is fixedly installed with the liquid spraying pipe.

[0013] Preferably, the front side inner wall of the U-shaped lifting plate is fixedly installed with the gear box, the two side inner walls of the gear box are rotationally installed with the worm, the outer wall of the rotating rod is fixedly installed with the worm wheel, the worm is engaged with the worm wheel, and one end of the worm extends to one side of the gear box and is fixedly installed with the rotating handle.

[0014] Preferably, one side of the fixed mounting column is fixedly installed with the second U-shaped plate, the side inner wall of the second U-shaped plate is fixedly installed with the second damping spring, one side of the second damping spring is fixedly installed with the second movable plate, one side of the second movable plate is fixedly installed with the limiting cylinder, the other side of the second movable plate is fixedly installed with the second pull rod, one end of the second pull rod extends to one side of the second U-shaped plate and is fixedly installed with the pulling handle, the inside of the fixed mounting column is provided with a hole through which the limiting cylinder can move, the inside of the sliding connecting column is provided with a limiting hole through which the limiting cylinder can move, and one end of the limiting cylinder extends through the hole in the fixed mounting column and into the limiting hole in the sliding connecting column.

[0015] Compared with the prior art, the present application has the following advantages: The cutting tool cooling circulation device of the glass bottle mouth trimming machine can accurately intercept glass debris, metal powder and other impurities mixed in the cooling liquid, avoid blockage caused by impurities entering the pipeline or nozzle, prevent impurities from adhering to the surface of the cutting tool to cause cutting precision to decrease or the cutting tool to wear out, ensure the cleanliness of the cooling liquid to maintain stable cooling efficiency, reduce equipment failure caused by impurities, prolong the service life of the cutting tool and the circulation system, and at the same time, the limiting bolt is provided, the filter plate can be quickly disassembled without professional tools, the impurities accumulated on the filter plate can be cleaned regularly or the filter plate can be directly replaced, the maintenance time is greatly shortened, the labor cost is reduced, the cooling effect is prevented from being attenuated due to the failure to clean the filter plate in time, the cutting tool is ensured to be in the best cooling state during the cutting process, the edge smoothness of the glass bottle mouth cutting is improved, and the production continuity is improved, and the impurity treatment efficiency and maintenance convenience are considered.

[0016] The cutting tool cooling circulation device of this glass bottle trimming machine, through the coordinated use of support columns, a recovery tank, a support platform, a circulation pump, and input pipes, can continuously cool the recovered coolant, maintaining its low temperature and ensuring a stable cooling effect on the cutting tool. This prevents the cooling capacity from decreasing due to coolant temperature rise, reduces tool wear and deformation caused by overheating, and ensures the smoothness and precision of the cutting edge. When the coolant temperature is high, ice blocks can be placed in the cooling chamber between the cooling tank and the recovery tank. The heat absorption property of melting ice blocks can be used to quickly lower the coolant temperature, making up for the shortcomings of conventional cooling under high-load production, and promptly addressing the problem of sudden temperature rises to prevent cooling failure. This design not only ensures the continuous effectiveness of coolant circulation but also flexibly responds to extreme temperature conditions, extends tool life, reduces downtime caused by cooling problems, improves production continuity and stability, and balances cooling efficiency with ease of operation.

[0017] The cooling circulation device for the cutting blades of this glass bottle trimming machine, through the coordinated use of a mounting frame, fixed mounting column, sliding connecting column, U-shaped lifting plate, rotating rod, support mounting block, and mounting crossbar, allows for the lifting and angle adjustment of the nozzle. This flexibly adapts to different specifications of cutting blades. The lifting adjustment precisely adjusts the nozzle distance according to the blade height, ensuring optimal cooling spacing for blades of different diameters and heights. The angle adjustment covers multiple parts of the blade, including the cutting edge and body, eliminating cooling blind spots common with traditional fixed nozzles. This ensures even cooling coverage of the heat-prone areas of the blade, significantly improving cooling range and targeting, preventing overheating and deformation due to insufficient localized cooling, accelerating wear, reducing the risk of blade breakage, and extending blade life. Simultaneously, it adapts to the cutting needs of different glass bottle models, enhancing equipment versatility, reducing cooling system setup time when changing blades, and ensuring consistent smoothness of the cut edges. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a perspective view of the present invention; Figure 2 This is a schematic diagram of the structure of the present invention; Figure 3 This is a cross-sectional view of the U-shaped lifting plate of the present invention; Figure 4 This is an enlarged view of part A of the present invention; Figure 5 This is an enlarged view of part B of the present invention; Figure 6 This is an enlarged view of part C of the present invention; Figure 7 For the present invention Figure 1 A bottom view.

[0019] 1, cooling box; 2, hollow column; 3, filtering unit; 301, filter box; 302, liquid inlet pipe; 303, cover plate; 304, mounting rod; 305, limiting bolt; 306, filter plate; 307, partition hollow rod; 308, liquid outlet pipe; 309, fixing block; 310, first U-shaped plate; 311, first damping spring; 312, first pull rod; 313, first movable plate; 4, cooling unit; 401, support column; 402, recovery box; 403, support platform; 404, circulating pump; 405, input pipe; 406, output hose; 407, liquid spraying pipe; 5, adjusting unit; 501, mounting frame; 502, fixed mounting column; 503, sliding connection column; 504, U-shaped lifting plate; 505, rotating rod; 506, support mounting block; 507, mounting cross rod; 508, fixed sleeve plate; 509, gear box; 510, worm; 511, worm gear; 512, second U-shaped plate; 513, second damping spring; 514, second movable plate; 515, limiting cylinder; 516, second pull rod. DETAILED DESCRIPTION

[0020] This part will describe the specific embodiments of the present application in detail, the preferred embodiments of the present application are shown in the drawings, the role of the drawings is to supplement the description of the text part with graphics, so that people can intuitively and visually understand each technical feature and the overall technical solution of the present application, but it cannot be understood as a limitation on the protection scope of the present application.

[0021] Please refer to Figures 1-7 The present application provides a technical solution: a cutting tool cooling circulation device of a glass bottle necking machine, comprising a cooling box 1, a filtering unit 3, a cooling unit 4 and an adjusting unit 5, a hollow column 2 is fixedly installed on the top of the cooling box 1; the filtering unit 3 is arranged on the hollow column 2, the filtering unit 3 comprises a filter box 301 and a filter plate 306, the number of the filter plate 306 is two groups, and the two groups of filter plates 306 are located inside the filter box 301; the cooling unit 4 is arranged on the cooling box 1, the cooling unit 4 comprises a recovery box 402, the recovery box 402 is arranged inside the cooling box 1, and a cooling cavity is arranged between the recovery box 402 and the cooling box 1; the adjusting unit 5 is arranged on one side of the cooling box 1, and the adjusting unit 5 comprises a mounting frame 501, the mounting frame 501 is provided with a fixed sleeve plate 508, a worm 510 and a worm gear 511, and the worm 510 and the worm gear 511 are used to drive the fixed sleeve plate 508 to rotate.

[0022] Further, the filtering unit 3 further includes a liquid inlet pipe 302, a cover plate 303, a mounting rod 304, a limiting bolt 305, a partition hollow rod 307, a liquid outlet pipe 308, a fixed block 309, a first U-shaped plate 310, a first damping spring 311 and a first pull rod 312, the top of the hollow column 2 is fixedly installed with the filtering box 301, the top of the filtering box 301 is placed with the cover plate 303, the front side of the filtering box 301 is fixedly installed with the liquid inlet pipe 302, one end of the liquid inlet pipe 302 extends to the inside of the filtering box 301, the bottom of the cover plate 303 is fixedly installed with the mounting rod 304, the bottom of the mounting rod 304 is threadedly installed with the limiting bolt 305, the outer wall of the mounting rod 304 is movably installed with the filter plate 306 and the partition hollow rod 307, the partition hollow rod 307 is located between the two groups of filter plates 306, the bottom of the filtering box 301 is fixedly installed with the liquid outlet pipe 308, one end of the liquid outlet pipe 308 extends to the inside of the filtering box 301, the bottom of the cover plate 303 is fixedly installed with the fixed block 309, one side of the filtering box 301 is fixedly installed with the first U-shaped plate 310, an opening through which the fixed block 309 moves is formed in the inside of the first U-shaped plate 310, the inside of the first U-shaped plate 310 is also formed with a movable slot, the first damping spring 311 is fixedly installed on one side of the inside wall of the movable slot, the first movable plate 313 is fixedly installed on one side of the first damping spring 311, the first pull rod 312 is fixedly installed on one side of the first movable plate 313, one end of the first pull rod 312 extends to one side of the first U-shaped plate 310 and the first pull rod 312 is slidingly installed with the first U-shaped plate 310, a strip-shaped limiting block is fixedly installed on the other side of the first movable plate 313, an opening through which the strip-shaped limiting block moves is formed in the inside of the fixed block 309, and the strip-shaped limiting block is located in the opening in the fixed block 309, so that the glass debris, metal powder and other impurities mixed in the cooling liquid can be accurately intercepted, the impurities are prevented from entering the pipeline or the nozzle to cause blockage, the impurities are prevented from adhering to the cutter surface to cause cutting precision to decrease or the cutter to be severely worn, the cooling liquid cleanliness is ensured to maintain stable cooling efficiency, equipment failures caused by impurities are reduced, the service life of the cutter and the circulating system is prolonged, meanwhile, the limiting bolt 305 is arranged, the filter plate 306 can be quickly disassembled without professional tools, the impurities accumulated on the filter plate 306 can be conveniently cleaned or the filter plate 306 can be directly replaced, the maintenance time is greatly shortened, the labor cost is reduced, the cooling effect is prevented from being attenuated due to the filter plate 306 not being cleaned in time, the cutter is ensured to be in the best cooling state during the cutting process, the edge smoothness of the glass bottle mouth cutting is improved and the production continuity is improved, and the impurity treatment efficiency and the maintenance convenience are considered.

[0023] Further, the cooling unit 4 further comprises a support column 401, a support platform 403, a circulating pump 404, an input pipe 405, an output hose 406 and a liquid spraying pipe 407, the inner bottom of the cooling box 1 is fixedly installed with the support column 401, the top of the support column 401 is fixedly installed with the recovery box 402, the other end of the liquid outlet pipe 308 extends to the inside of the recovery box 402 through the hollow column 2 and the top of the cooling box 1, one side of the cooling box 1 is fixedly installed with the support platform 403, the top of the support platform 403 is fixedly installed with the circulating pump 404, the input end of the circulating pump 404 is fixedly installed with the input pipe 405, one end of the input pipe 405 extends to the inside of the recovery box 402, the other end of the circulating pump 404 is fixedly connected with the output hose 406, one end of the output hose 406 is fixedly connected with the liquid spraying pipe 407, one end of the liquid spraying pipe 407 is fixedly connected with the spray head, the front side of the cooling box 1 is fixedly installed with a drain pipe, one end of the drain pipe extends to the inside of the cooling box 1 and the cooling cavity between the cooling box 1 and the support column 401, a stop valve is arranged on the drain pipe, the top of the cooling box 1 is hingedly installed with two groups of doors through hinges, and a handle is fixedly installed on each of the two groups of doors, so that the recovered cooling liquid can be continuously cooled, the low-temperature state of the cooling liquid can be maintained, the stable cooling effect of the cutting tool can be ensured, the cooling capacity can be prevented from being attenuated due to the temperature rise of the cooling liquid, the wear and deformation of the tool due to overheating can be reduced, the smoothness and precision of the cutting edge can be ensured, when the temperature of the cooling liquid is relatively high, ice blocks can be placed in the cooling cavity between the cooling box 1 and the recovery box 402, the ice blocks can be used to rapidly reduce the temperature of the cooling liquid by using the heat absorption characteristics of the ice blocks, the deficiencies of the conventional cooling in high-load production can be made up, the temperature rise problem can be timely responded, and cooling failure can be prevented, which not only ensures the continuous effectiveness of the cooling liquid circulation, but also flexibly responds to extreme temperature conditions, prolongs the service life of the tool, reduces downtime caused by cooling problems, improves production continuity and stability, and balances cooling efficiency and operation convenience.

[0024] Further, the adjusting unit 5 further includes a fixed mounting column 502, a sliding connecting column 503, a U-shaped lifting plate 504, a rotating rod 505, a supporting mounting block 506, an installation cross rod 507, a gear box 509, a second U-shaped plate 512, a second damping spring 513, a second movable plate 514, a limiting cylinder 515 and a second pull rod 516, the bottom of the mounting frame 501 is fixedly installed with the fixed mounting column 502, the inside of the fixed mounting column 502 is slidingly installed with the sliding connecting column 503, the bottom of the sliding connecting column 503 is fixedly installed with the U-shaped lifting plate 504, the front side inner wall and the rear side inner wall of the U-shaped lifting plate 504 are rotationally installed with the rotating rod 505, the outer wall of the rotating rod 505 is fixedly installed with the supporting mounting block 506, one side of the supporting mounting block 506 is fixedly installed with the installation cross rod 507, one end of the installation cross rod 507 is fixedly installed with the fixed sleeve plate 508, the fixed sleeve plate 508 is fixedly installed with the outer wall of the liquid spraying pipe 407, the front side inner wall of the U-shaped lifting plate 504 is fixedly installed with the gear box 509, the two side inner walls of the gear box 509 are rotationally installed with the worm 510, the outer wall of the rotating rod 505 is fixedly installed with the worm wheel 511, the worm 510 is engaged with the worm wheel 511, one end of the worm 510 extends to one side of the gear box 509 and is fixedly installed with a rotating handle, one side of the fixed mounting column 502 is fixedly installed with the second U-shaped plate 512, one side inner wall of the second U-shaped plate 512 is fixedly installed with the second damping spring 513, one side of the second damping spring 513 is fixedly installed with the second movable plate 514, one side of the second movable plate 514 is fixedly installed with the limiting cylinder 515, the other side of the second movable plate 514 is fixedly installed with the second pull rod 516, one end of the second pull rod 516 extends to one side of the second U-shaped plate 512 and is fixedly installed with a pulling handle, the inside of the fixed mounting column 502 is provided with a hole through which the limiting cylinder 515 can move, the inside of the sliding connecting column 503 is provided with a limiting hole through which the limiting cylinder 515 can move, one end of the limiting cylinder 515 passes through the hole in the fixed mounting column 502 and extends into the limiting hole in the sliding connecting column 503, this arrangement can lift and angle-adjust the spray head, can flexibly adapt to cutting tools of different specifications, can accurately adjust the distance of the spray head according to the height of the tool, can ensure that the cooling liquid can evenly cover the tool and can keep the best cooling distance for tools of different diameters and heights, this design can greatly improve the cooling range and pertinence, can avoid overheating and deformation of the tool due to insufficient local cooling, can reduce the risk of tool blade cracking, and can prolong the service life of the tool. At the same time, it can meet the cutting needs of glass bottles of different models, can enhance the universality of the equipment, can reduce the debugging time of the cooling system when replacing the tool, and can ensure the stability of the smoothness of the cutting edge.

[0025] Working principle: when using, the mounting frame 501 is fixed in the appropriate position, the second pull rod 516 is pulled, the second pull rod 516 moves to drive the second movable plate 514 and the limiting cylinder 515 to move, thereby canceling the limiting of the fixed mounting column 502 and the sliding connecting column 503, adjusting the position of the sliding connecting column 503, then rotating the worm 510, the worm 510 rotates to drive the worm gear 511 to rotate, the worm gear 511 rotates to drive the fixed sleeve plate 508 to rotate through the supporting mounting block 506 and the mounting cross bar 507, thereby adjusting the angle of the liquid spraying pipe 407, the cooled cooling liquid is added to the inside of the filter box 301 through the liquid inlet pipe 302, and the cooling liquid is filtered through the filter plate 306, the filtered cooling liquid is transported to the inside of the recovery box 402 through the liquid outlet pipe 308, then the door on the cooling box 1 is opened, water is added to the cooling cavity between the cooling box 1 and the recovery box 402, and when the temperature of the cooling liquid is high, ice blocks are appropriately added to the inside of the cooling cavity, when the cooling liquid in the recovery box 402 is cooled, the circulating pump 404 is started to draw the cooling liquid out through the input pipe 405, then the cooling liquid is sprayed out through the output hose 406 and the liquid spraying pipe 407 to cool the tool, when the filter plate 306 needs to be replaced, the first pull rod 312 is pulled, the first pull rod 312 moves to drive the first movable plate 313 and the strip-shaped limiting block to move, thereby canceling the limiting of the filter box 301 and the cover plate 303, then the cover plate 303 is moved upwards to move the filter plate 306, finally the limiting bolt 305 is rotated to separate the limiting bolt 305 from the mounting rod 304, then the filter plate 306 is taken out by moving the filter plate 306 and the partition hollow rod 307 gradually.

[0026] The above describes the embodiments of the application in detail in combination with the drawings, but the application is not limited to the above-described embodiments, and various changes can be made within the knowledge of those skilled in the art in the technical field without departing from the purpose of the application.

Claims

1. A cutting tool cooling circulation device of a glass bottle finisher, characterized by, The utility model relates to a cooling device for cooling box, which comprises the following: a cooling box (1), a hollow column (2) is fixedly installed on the top of the cooling box (1); a filtering unit (3) is arranged on the hollow column (2), the filtering unit (3) comprises a filtering box (301) and filtering plates (306), the number of the filtering plates (306) is two groups, and the two groups of filtering plates (306) are located inside the filtering box (301); a cooling unit (4) is arranged on the cooling box (1), the cooling unit (4) comprises a recovery box (402), the recovery box (402) is arranged inside the cooling box (1), and a cooling cavity is arranged between the recovery box (402) and the cooling box (1); an adjusting unit (5) is arranged on one side of the cooling box (1), the adjusting unit (5) comprises a mounting frame (501), a fixed sleeve plate (508), a worm (510) and a worm wheel (511) are arranged on the mounting frame (501), and the worm (510) and the worm wheel (511) are used to drive the fixed sleeve plate (508) to rotate.

2. A cutting tool cooling circulation device for a glass bottle finisher according to claim 1, characterized in that: The filtering unit (3) further comprises an inlet pipe (302), a cover plate (303), a mounting rod (304), a limiting bolt (305), a partition hollow rod (307), an outlet pipe (308), a fixed block (309), a first U-shaped plate (310), a first damping spring (311) and a first pull rod (312), the top of the hollow column (2) is fixedly installed with the filtering box (301), the top of the filtering box (301) is placed with the cover plate (303), the front side of the filtering box (301) is fixedly installed with the inlet pipe (302), one end of the inlet pipe (302) extends to the inside of the filtering box (301), the bottom of the cover plate (303) is fixedly installed with the mounting rod (304), the bottom of the mounting rod (304) is threadedly installed with the limiting bolt (305), the outer wall of the mounting rod (304) is movably installed with the filtering plate (306) and the partition hollow rod (307), the partition hollow rod (307) is located between the two groups of filtering plates (306), the bottom of the filtering box (301) is fixedly installed with the outlet pipe (308), one end of the outlet pipe (308) extends to the inside of the filtering box (301).

3. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 2, characterized in that: The bottom of the cover plate (303) is fixedly installed with the fixed block (309), one side of the filtering box (301) is fixedly installed with the first U-shaped plate (310), an opening, through which the fixed block (309) can move, is formed in the inside of the first U-shaped plate (310), a movable groove is further formed in the inside of the first U-shaped plate (310), the first damping spring (311) is fixedly installed on the inner wall of one side of the movable groove, the first movable plate (313) is fixedly installed on one side of the first damping spring (311), the first pull rod (312) is fixedly installed on one side of the first movable plate (313), one end of the first pull rod (312) extends to one side of the first U-shaped plate (310), and the first pull rod (312) and the first U-shaped plate (310) are slidingly installed.

4. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 3, characterized in that: The other side of the first movable plate (313) is fixedly provided with a strip-shaped limiting block, and the inside of the fixed block (309) is provided with an opening in which the strip-shaped limiting block is movable.

5. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 4, characterized in that: The cooling unit (4) further comprises a supporting column (401), a supporting platform (403), a circulating pump (404), an input pipe (405), an output hose (406) and a liquid spraying pipe (407). The inside bottom of the cooling box (1) is fixedly provided with the supporting column (401), the top of the supporting column (401) is fixedly provided with the recovery box (402), the other end of the liquid outlet pipe (308) penetrates through the hollow column (2) and the top of the cooling box (1) and extends into the inside of the recovery box (402), one side of the cooling box (1) is fixedly provided with the supporting platform (403), the top of the supporting platform (403) is fixedly provided with the circulating pump (404), the input end of the circulating pump (404) is fixedly provided with the input pipe (405), one end of the input pipe (405) extends into the inside of the recovery box (402), the other end of the circulating pump (404) is fixedly connected with the output hose (406), one end of the output hose (406) is fixedly connected with the liquid spraying pipe (407), and one end of the liquid spraying pipe (407) is fixedly connected with the spray head.

6. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 5, characterized in that: The front side of the cooling box (1) is fixedly provided with a drain pipe, one end of the drain pipe extends into the inside of the cooling box (1) and the cooling cavity between the cooling box (1) and the supporting column (401), and a stop valve is arranged on the drain pipe.

7. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 6, characterized in that: The top of the cooling box (1) is hingedly provided with two groups of doors through hinges, and the two groups of doors are both fixedly provided with handles.

8. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 7, characterized in that: The adjusting unit (5) further comprises a fixed mounting column (502), a sliding connecting column (503), a U-shaped lifting plate (504), a rotating rod (505), a supporting mounting block (506), an installation cross rod (507), a gear box (509), a second U-shaped plate (512), a second damping spring (513), a second movable plate (514), a limiting cylinder (515) and a second pull rod (516). The bottom of the mounting frame (501) is fixedly provided with the fixed mounting column (502), the inside of the fixed mounting column (502) is slidingly provided with the sliding connecting column (503), the bottom of the sliding connecting column (503) is fixedly provided with the U-shaped lifting plate (504), the front side inner wall and the rear side inner wall of the U-shaped lifting plate (504) are rotatably provided with the rotating rod (505), the outer wall of the rotating rod (505) is fixedly provided with the supporting mounting block (506), one side of the supporting mounting block (506) is fixedly provided with the installation cross rod (507), one end of the installation cross rod (507) is fixedly provided with the fixed sleeve plate (508), and the fixed sleeve plate (508) is fixedly provided with the outer wall of the liquid spraying pipe (407).

9. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 8, characterized in that: The inner wall of the front side of the U-shaped lifting plate (504) is fixedly installed with a gear box (509), the inner walls of the two sides of the gear box (509) are rotatably installed with a worm (510), the outer wall of the rotating rod (505) is fixedly installed with a worm wheel (511), the worm (510) is engaged with the worm wheel (511), one end of the worm (510) extends to one side of the gear box (509) and is fixedly installed with a rotating handle.

10. A cutting tool cooling circulation device for a glass bottle finisher as defined in claim 9, characterized in that: One side of the fixed mounting column (502) is fixedly installed with a second U-shaped plate (512), the inner wall of one side of the second U-shaped plate (512) is fixedly installed with a second damping spring (513), one side of the second damping spring (513) is fixedly installed with a second movable plate (514), one side of the second movable plate (514) is fixedly installed with a limiting cylinder (515), the other side of the second movable plate (514) is fixedly installed with a second pull rod (516), one end of the second pull rod (516) extends to one side of the second U-shaped plate (512) and is fixedly installed with a pulling handle, the inside of the fixed mounting column (502) is provided with a hole through which the limiting cylinder (515) can move, the inside of the sliding connection column (503) is provided with a limiting hole through which the limiting cylinder (515) can move, one end of the limiting cylinder (515) extends through the hole in the fixed mounting column (502) and extends into the limiting hole in the sliding connection column (503).

Citation Information

Patent Citations

  • Cutting tool cooling device for machine tool machining

    CN118123571A