Single-bridge glass cooling device
By designing a single-bridge glass cooling device with adjustable pipe spacing and activated carbon/zeolite filter cartridge filtration system, the problems of inconvenient adjustment and water impurity cleaning of existing devices are solved, achieving flexible use and high-quality cooling effect.
Patent Information
- Application Number
- CN202422608033.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-10-28
AI Technical Summary
Existing single-bridge glass cooling devices are not convenient for flexible nozzle adjustment, and impurities in the water are not effectively cleaned during the cooling process, leading to pipe blockage and affecting glass quality.
A single-bridge glass cooling device with adjustable pipe spacing was designed, which combines an activated carbon and zeolite filter system. The pipes are moved by a slider and a chute, and cooling is achieved by semiconductor cooling chips and heat dissipation fins to ensure water cleanliness.
It improves the flexibility and convenience of using the cooling device, avoids pipe blockage, ensures the quality of the glass surface, and reduces the contamination of the glass by impurities.
Smart Images

Figure CN223592599U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to single bridge glass cooling field, especially relate to a single bridge glass cooling device. BACKGROUND
[0002] Single bridge glass is a kind of strengthened glass, according to definition, it is a kind of glass made of single piece toughened glass, and the glass edge of at least one side is a complete round angle.Single bridge glass is usually used in watch manufacturing, as a kind of protective mirror surface, can resist scratch and impact in daily use.Single bridge glass design makes it maintain transparency and strength, provides better durability and protection.Single bridge glass production process is complex, and cooling process is also a quite important link, it directly influences the surface quality of glass and overall uniformity.At present, the cooling device is inconvenient to adjust the spray head flexibly when cooling the glass made, and the impurities in water body cannot be cleaned quickly in the process of circulating cooling, there is the situation of pipe blockage and glass pollution. UTILITY MODEL CONTENTS
[0003] The utility model discloses a single bridge glass cooling device, and its advantages improve the use flexibility of the cooling device, adjust according to the placement condition of single bridge glass in the shell, increase the use convenience, filter the material of single bridge glass surface, avoid the blockage condition, and avoid the influence of more impurities in the shell on the quality of glass.
[0004] The above technical purpose of the utility model is realized by the following technical scheme: a single bridge glass cooling device, including the casing, both sides of the casing top are respectively fixedly installed with side plate no.1 and side plate no.2, be equipped with pipeline between side plate no.1 and side plate no.2, one end of the pipeline is fixedly installed with block no.1, the surface of the other end of the pipeline is fixedly sleeved with block no.2, block no.1 and block no.2 are located inside side plate no.1 and side plate no.2 respectively, one side of block no.1 is fixedly installed with screw rod, one side of the casing is equipped with shell no.1, the bottom of shell no.1 is equipped with shell no.2, one side of shell no.1 and shell no.2 is fixedly installed with the installation ring of mutual bolt connection, the inside of shell no.1 is clamped with activated carbon filter element, the inside of shell no.2 is clamped with zeolite filter element.
[0005] The technical scheme is as follows: when the single-bridge glass cooling device is used, an operator firstly places the single-bridge glass into the shell, and the distance between the pipes can be adjusted according to the specific use condition. The operator rotates the knob, and the knob moves on the surface of the screw rod. When the knob is out of contact with the side plate one, the movement adjustment of the pipe can be realized. The block one and the block two move in the side plate one and the side plate two respectively, and the sliding block and the sliding groove guide the movement of the block one and the block two. When the pipe is moved to the required position, the knob can be tightened again, and the pipe can be fixed and limited when the knob is in contact with the side plate one. Through the above arrangement, the use flexibility of the cooling device can be improved, the adjustment can be facilitated according to the placement condition of the single-bridge glass in the shell, and the use convenience is improved. When the single-bridge glass cooling device is used, the water in the shell is cooled by the semiconductor refrigerating sheet, and the heat dissipation fins are used for heat dissipation together with the semiconductor refrigerating sheet. The water pump transfers the water in the shell to the connecting pipe two through the water inlet pipe, and then the connecting pipe two transfers the cooling water to the outer shell two. At this time, the water is firstly filtered by the zeolite filter element, and then filtered by the activated carbon filter element. The filtered clean water is transferred through the wave pipe and the pipe, and finally sprayed out by the spray head. Through the above arrangement, the material on the surface of the single-bridge glass can be filtered, the blockage can be avoided, and the quality of the glass can be improved.
[0006] The utility model further sets up, block one and block two's top and bottom all are fixedly installed the sliding block, side plate one and side plate two's inside all are seted up the sliding slot that cooperates sliding block's use.
[0007] The technical scheme is as follows: through the sliding connection of the sliding block and the sliding groove, the block one and the block two are guided to move in the side plate one and the side plate two respectively.
[0008] The utility model further sets up, the pipe's bottom equidistance installation has the spray head, the shell's bottom fixedly installed has the support leg.
[0009] The technical scheme is as follows: the spray head can be used for spraying together with the pipe, and the support leg supports the shell.
[0010] The utility model further sets up, the screw rod's surface screw thread connection has with the knob that side plate one contacted.
[0011] The technical scheme is as follows: through the rotation of the knob, the screw rod is moved on the surface.
[0012] The utility model further sets up, the top of shell one is connected with the connecting pipe one through the flange bolt, and the top of the connecting pipe one is connected with the wave pipe which is communicated with the pipe.
[0013] The above technical solution involves transferring water from inside the outer casing to the wave tube via a connecting pipe.
[0014] The present invention is further configured such that a connecting pipe is bolted to the bottom of the outer shell second via a flange.
[0015] The above technical solution is adopted: cooling water is transferred to the interior of the outer casing through the second connecting pipe.
[0016] The present invention is further configured such that a semiconductor cooling chip is embedded in the bottom of the housing, and heat dissipation fins are fixedly bonded to the bottom of the semiconductor cooling chip.
[0017] The above technical solution involves using a semiconductor cooling chip in conjunction with water inside the casing for cooling, while heat dissipation fins work in conjunction with the semiconductor cooling chip for heat dissipation.
[0018] The present invention is further configured such that a water pump is fixedly installed on one side of the housing, the outlet of the water pump is connected to the connecting pipe 2, and the inlet of the water pump is connected to an inlet pipe connected to the housing.
[0019] The above technical solution involves using a water pump to transfer water from the inlet pipe to the outlet.
[0020] In summary, this utility model has the following beneficial effects:
[0021] 1. When using the single-bridge glass cooling device, the operator should first place the single-bridge glass inside the housing. During use, the pipe spacing can be adjusted according to the specific application. Rotating the knob until it disengages from side plate one allows for pipe movement adjustment. Block one and block two will move within side plate one and side plate two respectively. After the pipe is moved to the desired position, the knob can be tightened again to fix the pipe in place. This design improves the flexibility of the cooling device, facilitating adjustments based on the placement of the single-bridge glass inside the housing and increasing ease of use.
[0022] 2. When using this utility model for a single-bridge glass cooling device, the water pump operates to transfer water from inside the housing to the connecting pipe 2 via the inlet pipe. The connecting pipe 2 then transfers the cooling water to the inside of the outer housing 2. At this point, the water undergoes initial filtration through a zeolite filter, followed by secondary filtration through an activated carbon filter. The filtered water then passes through a waveguide and pipes, and is finally sprayed out from the nozzle. This design facilitates the filtration of the surface material of the single-bridge glass, preventing clogging and avoiding the impact of excessive impurities inside the housing on the glass quality. Attached Figure Description
[0023] Figure 1It is the whole structure schematic diagram of the utility model;
[0024] Figure 2 It is the shell schematic diagram of the utility model;
[0025] Figure 3 It is the pipeline schematic diagram of the utility model;
[0026] Figure 4 It is the front view partial section enlarged schematic diagram of the utility model.
[0027] Reference signs: 1, shell, 2, side plate one, 3, side plate two, 4, pipeline, 5, spray head, 6, block one, 7, block two, 8, sliding block, 9, sliding slot, 10, knob, 11, shell one, 12, shell two, 13, mounting ring, 14, activated carbon filter element, 15, zeolite filter element, 16, connecting pipe one, 17, connecting pipe two, 18, semiconductor refrigeration sheet, 19, radiating fin, 20, supporting leg, 21, screw rod, 22, wave tube, 23, water pump, 24, water inlet pipe. DETAILED DESCRIPTION
[0028] The utility model is further explained in detail below in combination with the drawings.
[0029] Example 1:
[0030] Reference Figure 1 、 Figure 2 and Figure 3 A single bridge glass cooling device, including shell 1, the both sides of the top of shell 1 are fixedly installed with side plate one 2 and side plate two 3, and pipeline 4 is equipped between side plate one 2 and side plate two 3, one end of pipeline 4 is fixedly installed with block one 6, the surface of the other end of pipeline 4 is fixedly sleeved with block two 7, block one 6 and block two 7 are located at the inner side of side plate one 2 and side plate two 3 respectively, and screw rod 21 is fixedly installed on the side of block one 6, when the single bridge glass cooling device is used, the operator places the single bridge glass to the inside of shell 1 first, and the interval of pipeline 4 can be adjusted according to the specific use condition in use.
[0031] Reference Figure 3The top and bottom of the block one 6 and the block two 7 are fixedly installed with the sliding block 8, the inner side of the side plate one 2 and the side plate two 3 are respectively provided with the sliding groove 9 matched with the sliding block 8, and the sliding block 8 and the sliding groove 9 are slidably connected, so that the block one 6 and the block two 7 are guided to move in the inner side of the side plate one 2 and the side plate two 3 respectively.
[0032] With reference to Figure 3 The bottom of the pipeline 4 is installed with the nozzle 5 at equal intervals, and the bottom of the shell 1 is fixedly installed with the supporting leg 20, so that the nozzle 5 can be matched with the pipeline 4 for spraying, and the supporting leg 20 supports the shell 1.
[0033] With reference to Figure 3 The surface of the screw rod 21 is threadedly connected with the knob 10 in contact with the side plate one 2, and the knob 10 is rotated to be threadedly connected with the surface of the screw rod 21, so that the movement of the screw rod 21 is realized.
[0034] The use process is briefly described as follows: when the single-bridge glass cooling device is used, the operator firstly places the single-bridge glass into the shell 1, and the distance between the pipelines 4 can be adjusted according to the specific use condition. The operator rotates the knob 10 to move the knob 10 on the surface of the screw rod 21, and after the knob 10 is out of contact with the side plate one 2, the movement of the pipeline 4 can be adjusted. The block one 6 and the block two 7 move in the side plate one 2 and the side plate two 3 respectively, and the sliding block 8 and the sliding groove 9 guide the movement of the block one 6 and the block two 7 respectively. After the pipeline 4 is moved to the required position, the knob 10 can be tightened again, and after the knob 10 is in contact with the side plate one 2, the pipeline 4 can be limited and fixed. Through the above setting, the use flexibility of the cooling device can be improved, the adjustment according to the placement of the single-bridge glass in the shell 1 is facilitated, and the use convenience is improved.
[0035] Example 2:
[0036] With reference to Figure 1 and Figure 4The utility model provides a single bridge glass cooling device, including the casing 1, one side of casing 1 is equipped with shell one 11, the bottom of shell one 11 is equipped with shell two 12, and the one side of shell one 11 and shell two 12 is fixedly installed with the mounting ring 13 of mutual bolt connection, and the inside of shell one 11 is clamped with activated carbon filter element 14, and the inside of shell two 12 is clamped with zeolite filter element 15, when using single bridge glass cooling device, the operation of water pump 23 will pass through water inlet pipe 24 and be transmitted to connecting pipe two 17 with the water body in the inside of casing 1, and then connecting pipe two 17 will be transmitted to the inside of shell two 12 with cooling water, at this time, the water body will be preferentially filtered with zeolite filter element 15, and then be filtered with activated carbon filter element 14 for the second time, and then the filtered clean water body will pass through wave pipe 22 and pipeline 4, and finally be sprayed out by shower head 5, through the setting, the material of the surface of single bridge glass is conveniently filtered, avoids the jamming condition, and avoids the influence of more impurities in the inside of casing 1 on the quality of glass.
[0037] Reference Figure 1 The top of shell one 11 is bolted with connecting pipe one 16 through flange, the top of connecting pipe one 16 is communicated with wave pipe 22 communicated with pipeline 4, and the water body in the inside of shell one 11 is transmitted to wave pipe 22 through connecting pipe one 16.
[0038] Reference Figure 1 The bottom of shell two 12 is bolted with connecting pipe two 17 through flange, and cooling water is transmitted to the inside of shell two 12 through connecting pipe two 17.
[0039] Reference Figure 4 The bottom of casing 1 is embeddedly installed with semiconductor refrigerating sheet 18, the bottom of semiconductor refrigerating sheet 18 is fixedly bonded with radiating fin 19, and the water body in the inside of casing 1 is cooled through semiconductor refrigerating sheet 18, and radiating fin 19 is used for radiating with semiconductor refrigerating sheet 18.
[0040] Reference Figure 1 One side of casing 1 is fixedly installed with water pump 23, and the water outlet of water pump 23 is communicated with connecting pipe two 17, and the water inlet of water pump 23 is connected with water inlet pipe 24 communicated with casing 1, and the water in water inlet pipe 24 is transmitted to the water outlet end through the operation of water pump 23.
[0041] Brief description of use: when the single-bridge glass cooling device is used, the water in the shell 1 is cooled by the semiconductor refrigeration sheet 18, and the heat dissipation fin 19 is used in cooperation with the semiconductor refrigeration sheet 18. The operation of the water pump 23 transmits the water in the shell 1 to the connecting pipe two 17 through the water inlet pipe 24, and then the connecting pipe two 17 transmits the cooling water to the outer shell two 12. At this time, the water will be preferentially filtered by the zeolite filter element 15, and then filtered by the activated carbon filter element 14. Subsequently, the filtered clean water will pass through the wave tube 22 and the pipeline 4, and finally be sprayed out by the spray head 5. Through the setting, the material of the single-bridge glass surface is filtered, avoiding blockage, and avoiding the influence of too many impurities in the shell 1 on the quality of the glass.
[0042] The specific embodiment is only an explanation of the utility model, and is not a limitation of the utility model. Those skilled in the art can make modifications to the embodiment without creative contribution after reading the specification, but as long as it is within the scope of the claims of the utility model, it is protected by the patent law.
Claims
1. A single-bridge glass cooling device, comprising a housing (1), characterized in that: Side plate 1 (2) and side plate 2 (3) are fixedly installed on the top two sides of the shell (1), respectively. A pipe (4) is provided between side plate 1 (2) and side plate 2 (3). Block 1 (6) is fixedly installed at one end of the pipe (4), and block 2 (7) is fixedly sleeved on the surface of the other end of the pipe (4). Block 1 (6) and block 2 (7) are located inside side plate 1 (2) and side plate 2 (3), respectively. A screw (21) is fixedly installed on one side of block 1 (6). A shell 1 (11) is provided on one side of the shell (1). A shell 2 (12) is provided at the bottom of the shell 1 (11). A mounting ring (13) is fixedly installed on one side of both shell 1 (11) and shell 2 (12). An activated carbon filter element (14) is snapped into the inside of shell 1 (11), and a zeolite filter element (15) is snapped into the inside of shell 2 (12).
2. The single-bridge glass cooling device according to claim 1, characterized in that: The top and bottom of block 1 (6) and block 2 (7) are fixedly installed with sliders (8), and the inner sides of side plate 1 (2) and side plate 2 (3) are provided with sliding grooves (9) for sliding with sliders (8).
3. The single-bridge glass cooling device according to claim 1, characterized in that: The bottom of the pipe (4) is equipped with nozzles (5) at equal intervals, and the bottom of the housing (1) is fixedly equipped with support legs (20).
4. The single-bridge glass cooling device according to claim 1, characterized in that: The screw (21) has a threaded connection on its surface with a knob (10) that contacts the side plate (2).
5. A single-bridge glass cooling device according to claim 1, characterized in that: The top of the outer casing (11) is bolted with a connecting pipe (16) via a flange, and the top of the connecting pipe (16) is connected to a wave tube (22) that is connected to the pipe (4).
6. A single-bridge glass cooling device according to claim 1, characterized in that: The bottom of the outer casing 2 (12) is bolted with connecting pipe 2 (17) via a flange.
7. A single-bridge glass cooling device according to claim 1, characterized in that: A semiconductor cooling chip (18) is embedded in the bottom of the housing (1), and heat dissipation fins (19) are fixedly attached to the bottom of the semiconductor cooling chip (18).
8. A single-bridge glass cooling device according to claim 1, characterized in that: A water pump (23) is fixedly installed on one side of the housing (1). The outlet of the water pump (23) is connected to the connecting pipe (17). The inlet of the water pump (23) is connected to the inlet pipe (24) which is connected to the housing (1).