Rapid cooling device for glass rod production
By designing a glass rod production rapid cooling device combining loading components and refrigeration components, the problem of glass rod conveying drop and inconvenient discharge after cooling in the prior art is solved, and the smooth conveying and convenient discharge of glass rods are achieved, which improves production efficiency and operational convenience.
Patent Information
- Application Number
- CN202421694026.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing glass rod cooling devices have a large drop during the transportation process, and it is not convenient to remove the glass rod after cooling, which affects production efficiency.
A glass rod production rapid cooling device is designed, including the device base and cooling box, and the loading assembly and refrigeration assembly are used in combination, so that the smooth transition conveying and convenient fishing out of the glass rod are achieved through the design of the loading assembly.
It realizes smooth conveying and convenient fishing out of glass rods, improves production efficiency, and ensures the stability of collection and convenience of operation through the limit structure.
Smart Images

Figure CN222834204U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass rod production, in particular to a rapid cooling device for glass rod production. Background Art
[0002] A glass rod is a glass instrument that can be used to stir and accelerate the dissolution of solutes, drain during filtration, and evaporate and crystallize a small amount of solution. It is especially commonly used in chemical experiments and is an indispensable experimental item. It is also suitable for other stirring and drainage occasions. After forming, the glass rod needs to be cooled quickly so that it can be completely fixed.
[0003] According to a cooling device for producing glass rods disclosed in Chinese patent announcement No. CN218269803U, the patent can quickly cool the glass rods by first air cooling and then water cooling, thereby improving the efficiency of production and processing. During the water cooling process, the glass rod needs to enter the water tank through the transition of the blanking plate. Since the blanking plate is arranged on one side of the processing table, there is a large height difference between the top of the conveying device and the blanking plate, and the overall conveying process is not smooth enough. At the same time, after the glass rod enters the water tank for cooling, it is not convenient to fish it out, which affects the overall production efficiency, resulting in a certain room for improvement in the practicality of the existing glass rod cooling device. Utility Model Content
[0004] 1. Technical issues to be resolved
[0005] In view of the shortcomings of the prior art, the utility model provides a rapid cooling device for glass rod production, which has the advantages of enabling the glass rod to be smoothly transported and conveniently fished out after cooling, thereby solving the problem that the existing glass rod cooling device has a large drop during transportation and is inconvenient to conveniently fish out the glass rod after cooling.
[0006] (II) Technical solution
[0007] In order to achieve the above-mentioned purpose of enabling glass rods to be smoothly transported and conveniently fished out after cooling, the utility model provides the following technical solutions: a glass rod production rapid cooling device, comprising a device base and a cooling box, a transmission mechanism for transporting glass rods and pre-cooling them is installed on the outer side of the device base, the cooling box is located on the left side of the device base, a refrigeration assembly for cooling is installed on the inner side of the cooling box, and a loading assembly for loading glass rods is installed on the inner side of the cooling box;
[0008] The loading assembly includes a hollow box movably connected to the inner side of the cooling box, a transition piece fixed to the top of the cooling box and extending to the top of the hollow box on the left side, four raising blocks fixed to the top of the hollow box, a support plate fixed to the top of the raising block and capable of being fitted with the top of the cooling box, a handle fixedly installed between the tops of two support plates on the same side, two limit plates respectively fixed to the bottoms of two support plates on the side away from the transition piece, two docking blocks fixed to the outside of the cooling box and the tops of which can be fitted with the bottoms of two support plates on the side close to the transition piece, two latches respectively inserted between the two docking blocks and the tops of the corresponding support plates, and a connecting rope fixed between the ends of the latches and the outside of the cooling box.
[0009] Furthermore, the transmission mechanism includes a conveying box fixed to the top of the device base, a cooling fan fixedly installed on the top of the conveying box, an air outlet pipe fixedly installed on the inner side of the conveying box and fixedly connected to the output end of the cooling fan, and a conveying mechanism fixedly installed on the top of the device base and located inside the conveying box.
[0010] Furthermore, the refrigeration assembly includes a mounting plate fixed to the inner side of the cooling box, a refrigerator fixedly mounted on the top of the mounting plate, a delivery pipe fixedly mounted on the output end of the refrigerator, and a water pumping pipe fixedly mounted on the input end of the refrigerator.
[0011] Furthermore, the end of the delivery pipe passes through the left side of the cooling box and extends to the interior of the cooling box, and the end of the water pumping pipe passes through the top of the mounting plate and extends to the interior of the cooling box.
[0012] Furthermore, both sides of the conveying box are opened, and the air inlet surface of the cooling fan is detachably connected with a filter screen.
[0013] Furthermore, the top of the hollow box is open, the top of the transition piece is inclined, and an auxiliary block is fixed between the bottom of the transition piece and the inner side of the conveying box, and the top of the transition piece is detachably connected with two limit baffles that can limit the glass rod.
[0014] Furthermore, the opposite sides of the two limit plates are respectively located on the front and back sides of the cooling box, and the latch is composed of a circular block and a cylindrical rod. The diameter of the circular block is larger than the diameter of the cylindrical rod, and the end of the cylindrical rod passes through the top of the corresponding support plate and the docking block in sequence.
[0015] (III) Beneficial effects
[0016] Compared with the prior art, the utility model provides a rapid cooling device for glass rod production, which has the following beneficial effects:
[0017] The rapid cooling device for glass rod production can smoothly transfer the glass rods and conveniently fish them out after cooling through the cooperation between the refrigeration component and the loading component in the cooling box, so that the production and transportation process of the glass rods can become very smooth. At the same time, the structure for collecting the cooled glass rods can be limited so that the collection work can be carried out stably. Moreover, by limiting the size, the glass rods can directly enter the collection structure, and it is also convenient to move the collection structure out, so that the operator can easily and simply operate it, which improves the convenience of using the rapid cooling device for glass rod production and also improves the overall practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the utility model;
[0019] Figure 2 It is a top view schematic diagram of the hollow box connection structure in the structure of the utility model;
[0020] Figure 3 It is a three-dimensional schematic diagram of the hollow box connection structure in the structure of the utility model.
[0021] In the figure: 1 device base, 201 conveying box, 202 cooling fan, 203 air outlet pipe, 204 conveying mechanism, 3 cooling box, 400 refrigeration component, 401 mounting plate, 402 refrigerator, 403 conveying pipe, 404 suction pipe, 500 loading component, 501 hollow box, 502 transition piece, 503 raising block, 504 support plate, 505 handle, 506 limit plate, 507 docking block, 508 latch, 509 connecting rope. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0023] See also Figures 1 to 3The utility model provides a technical solution: a glass rod production rapid cooling device, comprising a device base 1 and a cooling box 3, the outer side of the device base 1 is equipped with a transmission mechanism for conveying glass rods and pre-cooling them, the cooling box 3 is located on the left side of the device base 1, the inner side of the cooling box 3 is equipped with a refrigeration assembly 400 for cooling, and the inner side of the cooling box 3 is equipped with a loading assembly 500 for loading glass rods; through the cooperation between the refrigeration assembly 400 and the loading assembly 500 inside the cooling box 3, the glass rods can be smoothly transferred and conveyed, and can be conveniently fished out after cooling, so that the production and conveying process of the glass rods can become very smooth, and at the same time, the structure for collecting the cooled glass rods can be limited, so that it can stably perform the collection work, and by limiting the size, the glass rods can directly enter the interior of the collection structure, and it is also convenient to move the collection structure out, so that the operator can easily and simply operate, which improves the convenience of using the glass rod production rapid cooling device while also improving the overall practicality.
[0024] In this embodiment, the loading assembly 500 is a structure for collecting glass rods and facilitating their removal together after cooling.
[0025] like Figure 1 , Figure 2 and Figure 3 As shown, the loading assembly 500 includes a hollow box 501 movably connected to the inner side of the cooling box 3, a transition piece 502 fixed to the top of the cooling box 3 and extending on the left side to the top of the hollow box 501, four raising blocks 503 fixed to the top of the hollow box 501, a support plate 504 fixed to the top of the raising block 503 and capable of being fitted with the top of the cooling box 3, a handle 505 fixedly installed between the tops of two support plates 504 on the same side, two limiting plates 506 respectively fixed to the bottoms of the two support plates 504 on the side away from the transition piece 502, two docking blocks 507 fixed to the outer side of the cooling box 3 and the tops of the two support plates 504 on the side close to the transition piece 502, two latches 508 respectively inserted between the two docking blocks 507 and the tops of the corresponding support plates 504, and a connecting rope 509 fixed between the ends of the latches 508 and the outer side of the cooling box 3.
[0026] It should be noted that the top of the hollowing box 501 is open, the top of the transition piece 502 is inclined, and an auxiliary block is fixed between the bottom of the transition piece 502 and the inner side of the conveying box 201, and the top of the transition piece 502 is detachably connected with two limit baffles that can limit the glass rod, so that the transition piece 502 can perform the function of transitional conveyance of the glass rod and enable it to move stably to the inside of the hollowing box 501.
[0027] In addition, the opposite sides of the two limiting plates 506 are respectively located on the front and back sides of the cooling box 3, so that the limiting plates 506 can play a certain limiting role on the hollow box 501, allowing the hollow box 501 to be normally placed inside the cooling box 3 through the support plate 504.
[0028] At the same time, the latch 508 is composed of a circular block and a cylindrical rod. The diameter of the circular block is larger than the diameter of the cylindrical rod. The ends of the cylindrical rod pass through the tops of the corresponding support plates 504 and the docking blocks 507 in sequence, so that the latch 508 can be normally plugged in through the limiting effect of the circular block, thereby playing a limiting role between the corresponding support plates 504 and the docking blocks 507, so that the hollow box 501 can stably carry out loading and collection work, wherein the connecting rope 509 can facilitate the position of the latch 508 after it is pulled out.
[0029] In this embodiment, the transmission component is a structure for transporting the glass rod and pre-cooling it.
[0030] like Figure 1 As shown, the transmission mechanism includes a conveying box 201 fixed on the top of the device base 1, a cooling fan 202 fixedly installed on the top of the conveying box 201, an air outlet duct 203 fixedly installed on the inner side of the conveying box 201 and fixedly connected to the output end of the cooling fan 202, and a conveying mechanism 204 fixedly installed on the top of the device base 1 and located inside the conveying box 201.
[0031] It should be noted that both sides of the conveying box 201 are open, and the air inlet surface of the cooling fan 202 is detachably connected with a filter screen, so that the outside air can be filtered through the filter screen, and then transported to the inside of the air outlet pipe 203 through the cooling fan 202, and finally discharged through the air outlet pipe 203 for blowing and heat dissipation. Among them, a number of blowing pipes connected to the inside of the air outlet pipe 203 are fixed at the bottom of the air outlet pipe 203, and both ends are open, so that the air can be discharged normally.
[0032] In addition, the conveying mechanism 204 includes a driving motor, a rotating shaft, a conveying roller, a conveying belt, a transmission component and a side baffle; the driving motor drives the rotating shaft to rotate, and under the action of the transmission component, each rotating shaft can rotate, thereby allowing the conveying roller to rotate and drive the conveying belt to perform transmission work, and under the action of the side baffle, the glass rod can be blocked and limited, and the conveying work of the glass rod can be completed. Among them, the transmission component can be a matching structure of a sprocket and a chain or a matching structure of a synchronous wheel and a synchronous belt, so as to realize the synchronous transmission of multiple rotating shafts, and the conveying mechanism 204 is an existing publicly available conveying equipment. At the same time, the bottom side of the transition piece 502 away from the cooling box 3 is tangent to the leftmost side of the conveying belt, so that the glass rods on the conveying belt can slide down through the transition piece 502.
[0033] In this embodiment, the refrigeration assembly 400 is a structure for cooling the glass rod.
[0034] like Figure 1 As shown, the refrigeration assembly 400 includes a mounting plate 401 fixed to the inner side of the cooling box 3, a refrigerator 402 fixedly mounted on the top of the mounting plate 401, a delivery pipe 403 fixedly mounted on the output end of the refrigerator 402, and a water extraction pipe 404 fixedly mounted on the input end of the refrigerator 402.
[0035] It should be noted that the end of the delivery pipe 403 passes through the left side of the cooling box 3 and extends to the interior of the cooling box 3, and the end of the pumping pipe 404 passes through the top of the mounting plate 401 and extends to the interior of the cooling box 3, so that the refrigerator 402 can extract the coolant inside the cooling box 3 through the pumping pipe 404, and then transport it back to the interior of the cooling box 3 through the delivery pipe 403 after cooling.
[0036] In addition, the refrigerator 402 includes a water pump, a refrigeration device and a pipeline; the suction force of the water pump is used to enable the pumping pipe 404 to pump water, and the coolant is transported to the inside of the refrigeration device through the pipeline for cooling, and finally, under the action of pressure, it is transported back to the inside of the cooling box 3 through the delivery pipe 403, wherein the refrigeration equipment is an existing publicly available device such as a refrigerator that can refrigerate liquids, so that each component inside the refrigerator 402 is an existing publicly available technology, so it will not be elaborated in detail.
[0037] The working principle of the above embodiment is:
[0038] When the glass rods are to be cooled quickly, the produced glass rods are placed on the conveying mechanism 204 for conveying, and the cooling fan 202 is started so that the outside air is conveyed to the inside of the air outlet pipe 203 through the cooling fan 202 and then blown to the conveying mechanism 204, and the glass rods on the conveying mechanism 204 are air-cooled so that they can be pre-cooled. After being conveyed by the conveying mechanism 204, the glass rods are guided by the transition piece 502 to move to the inside of the hollow box 501 in the cooling box 3 for loading, and are cooled by a water bath with the coolant in the cooling box 3. Under the action of the refrigerator 402, the coolant in the cooling box 3 can be pumped into the inside of the refrigerator 402 through the pumping pipe 404 for cooling, and then discharged into the cooling box 402 through the conveying pipe 403. The inside of the box 3 realizes the circulation refrigeration of the coolant, so that it can ensure a good refrigeration effect. When the number of glass rods loaded in the hollow box 501 is large and the cooling is completed, pull out the pin 508 and slide the hollow box 501 to the side close to the mounting plate 401. The hollow box 501 can be taken out from the inside of the cooling box 3 through the two handles 505, and the spare hollow box 501 is placed in the cooling box 3. Through the limiting effect between the corresponding two limiting plates 506 and the outer side of the cooling box 3, the hollow box 501 can be moved smoothly, and the corresponding support plate 504 is moved to the top of the docking block 507, and the pin 508 is inserted to complete the limiting between the docking block 507 and the corresponding support plate 504, so that the hollow box 501 can load the glass rods normally and stably.
[0039] Compared with the prior art, the rapid cooling device for glass rod production, through the coordinated use of the refrigeration assembly 400 and the loading assembly 500 inside the cooling box 3, can make the glass rods smoothly transition and be transported, and can also be conveniently fished out after cooling, so that the production and transportation process of the glass rods can become very smooth, and at the same time, the structure for collecting the cooled glass rods can be limited so that the collection work can be carried out stably, and by limiting the size, the glass rods can directly enter the collection structure, and it is also convenient to move the collection structure out, so that the operator can operate it easily and simply, which improves the convenience of using the rapid cooling device for glass rod production and also improves the overall practicality, and solves the problem that the existing glass rod cooling device has a large drop during transportation and is inconvenient to conveniently fish out the glass rods after cooling.
[0040] The electrical components appearing in the article are all electrically connected to the main controller and the power supply. The provision of power supply is common knowledge in the field. The main controller can be a conventional known device for control such as a computer, which can be realized through simple programming by technicians in the field. They are all existing public power connection technologies and will not be described in detail in the article.
[0041] It should be noted that the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or device including the element.
[0042] Although the embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that many changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention.
Claims
1. A rapid cooling device for glass rod production, comprising a device base (1) and a cooling box (3), characterized in that: A conveying mechanism for conveying glass rods and pre-cooling the glass rods is installed on the outside of the device base (1); the cooling box (3) is located on the left side of the device base (1); a refrigeration assembly (400) for cooling is installed on the inside of the cooling box (3); and a loading assembly (500) for loading glass rods is installed on the inside of the cooling box (3); The loading assembly (500) comprises a hollow box (501) movably connected to the inner side of the cooling box (3), a transition piece (502) fixed to the top of the cooling box (3) and extending to the top of the hollow box (501) on the left side, four raising blocks (503) fixed to the top of the hollow box (501), a support plate (504) fixed to the top of the raising block (503) and capable of being attached to the top of the cooling box (3), a handle (505) fixedly installed between the tops of two support plates (504) on the same side, and two handles (506) fixed to the top of the lifting block (503). Two limit plates (506) at the bottom of the two support plates (504) on the side away from the transition piece (502), two docking blocks (507) fixed to the outside of the cooling box (3) and the tops of which can be respectively attached to the bottoms of the two support plates (504) on the side close to the transition piece (502), two latches (508) respectively inserted between the two docking blocks (507) and the tops of the corresponding support plates (504), and a connecting rope (509) fixed between the ends of the latches (508) and the outside of the cooling box (3).
2. A rapid cooling device for glass rod production according to claim 1, characterized in that: The transmission mechanism comprises a conveying box (201) fixed to the top of the device base (1), a cooling fan (202) fixedly installed on the top of the conveying box (201), an air outlet pipe (203) fixedly installed on the inner side of the conveying box (201) and fixedly connected to the output end of the cooling fan (202), and a conveying mechanism (204) fixedly installed on the top of the device base (1) and located inside the conveying box (201).
3. A rapid cooling device for glass rod production according to claim 1, characterized in that: The refrigeration assembly (400) comprises a mounting plate (401) fixed to the inner side of the cooling box (3), a refrigerator (402) fixedly mounted on the top of the mounting plate (401), a delivery pipe (403) fixedly mounted on the output end of the refrigerator (402), and a water pumping pipe (404) fixedly mounted on the input end of the refrigerator (402).
4. A rapid cooling device for glass rod production according to claim 3, characterized in that: The end of the delivery pipe (403) passes through the left side of the cooling box (3) and extends to the interior of the cooling box (3), and the end of the water pumping pipe (404) passes through the top of the mounting plate (401) and extends to the interior of the cooling box (3).
5. A rapid cooling device for glass rod production according to claim 2, characterized in that: Both sides of the conveying box (201) are opened, and the air inlet surface of the cooling fan (202) is detachably connected to a filter screen plate.
6. A rapid cooling device for glass rod production according to claim 1, characterized in that: The top of the hollow box (501) is open, the top of the transition piece (502) is inclined, and an auxiliary block is fixed between the bottom of the transition piece (502) and the inner side of the conveying box (201), and the top of the transition piece (502) is detachably connected with two limit baffles that can limit the glass rod.
7. A rapid cooling device for glass rod production according to claim 1, characterized in that: The opposite sides of the two limit plates (506) are respectively located on the front and back sides of the cooling box (3), and the latch (508) is composed of a circular block and a cylindrical rod, the diameter of the circular block is larger than the diameter of the cylindrical rod, and the end of the cylindrical rod passes through the top of the corresponding support plate (504) and the docking block (507) in sequence.
Citation Information
Patent Citations
Cooling device for producing glass rods
CN218269803U