Circulating cooling equipment with filtering function for glass production
By designing the interaction between the vertical air hood and the side air hood in the circulating cooling equipment and the filtration of the filter element and moisture absorption plate, the problem of dust and moisture adhesion during air cooling is solved, the clean drying and uniform cooling of glass products are achieved, and the quality and strength of glass products are improved.
Patent Information
- Application Number
- CN202510931521.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-09-16
AI Technical Summary
During the glass production process, dust and moisture in the air will adhere to the surface of the glass products during air cooling, resulting in quality degradation and reduced strength. Existing cooling equipment cannot effectively filter and dry the air, resulting in defects such as cracks and reduced strength.
A circulating cooling device was designed, which uses the interaction between the vertical air hood and the side air hood to change the direction of the airflow, forming an arc and tilting it to contact the glass products. The air is filtered through the filter element and moisture absorption plate to ensure that the air is clean and dry, and to prevent dust and moisture from contacting the glass.
It keeps the air clean and dry, avoids dust adhesion and moisture contact, ensures the surface quality of glass products, prevents cracks and strength loss, and provides a uniform cooling effect.
Smart Images

Figure CN120647129A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cooling equipment, and in particular to a circulating cooling equipment for glass production with a filtering function. Background Art
[0002] The cooling process in glass production is a key process that has a significant impact on the quality and performance of the glass. After the glass is formed, it needs to be cooled gradually to room temperature through a specific cooling method. Usually, air cooling or water cooling is used to cool the glass evenly, avoiding the internal stress caused by excessive temperature gradients and preventing defects such as cracks and deformation in the glass. At the same time, the control of the cooling rate is also very important. Different types of glass require different cooling rates to achieve ideal physical and chemical properties. When air cooling is used, if there are impurities such as dust in the air, the impurities will adhere to the surface of the uncooled glass products, causing the surface quality of the glass to deteriorate. Therefore, filtration is required. If the cooling environment is too humid, the humid water vapor will adhere to the surface of the glass products, causing cracks, strength loss, surface defects, etc. Therefore, we have proposed a circulating cooling equipment for glass production with filtering function. Summary of the Invention
[0003] In order to solve the above technical problems, the present invention provides a circulating cooling device for glass production with a filtering function, comprising: Conveying rollers, each end of which is provided with a side plate, a plurality of conveying rollers are provided at the interval between the two side plates, and the surface of the conveying roller is rotatably connected to the inner side of the side plate, and the bottom of the two side plates are fixedly connected to support legs; A cooling mechanism, which is arranged around the conveying roller and is fixedly connected to the surface of the supporting leg; Wherein, the cooling mechanism comprises: Side air hoods, wherein a plurality of side air hoods are provided on the side of the two side plates away from the support legs, and a fixing plate is fixedly connected to the side of the side plates away from the support legs, and the inner side surface of the fixing plate is fixedly connected to the outer side surfaces of the plurality of side air hoods; Two vertical air hoods are provided at the interval between the two side plates, and the two vertical air hoods are symmetrically arranged with the conveying roller as the center; An air jet assembly, wherein the air jet assembly is fixedly connected to the surface of the support leg, and an output end of the air jet assembly is fixedly connected to a plurality of side air covers; An air suction component, wherein the air suction component is fixedly connected to the surface of the support leg, and the output end of the air suction component is fixedly connected to the side of the two vertical air hoods that are away from each other, and the air injection component is in communication with the air suction component; The conveyor roller is driven to rotate, and the glass products are conveyed on the top of the conveyor roller. The jet assembly is started and blows air from the side air hoods on the top of the two side plates. The suction assembly drives the vertical air hoods on the upper and lower sides of the conveyor roller to suck air. The air sucked and ejected by the vertical air hoods and the side air hoods interact with each other to change the flow direction of the airflow, so that the air does not contact the glass products vertically, but contacts the glass products with an arc and an angle, which can prevent the high-speed air from causing deformation of the glass products. The air passes through the vertical air hoods, the suction assembly, the jet assembly, and the side air hoods in sequence, thus forming a cycle to cool the glass products. The circulating air cooling structure, after the vertical air hoods suck air, the side air hoods quickly replenish the air, avoiding pressure changes around the glass products. Only the air in the space enclosed by the side air hoods and the vertical air hoods is used for cooling, preventing dust and moisture outside the enclosed space from contacting the glass products. After one filtration, the air can be ensured to be clean and dry, preventing dust from adhering to the surface of the glass products, which may cause deterioration of the surface quality of the glass products, and preventing moisture from contacting the glass products, which may cause cracks, strength reduction, surface defects or even breakage.
[0004] Furthermore, the conveying roller is part of the conveying structure on the glass production line, and the conveying roller is driven by the conveying structure of the glass production line. The side plate is part of the supporting structure of the glass production line. The conveying structure of the glass production line drives the conveying roller to roll, driving the glass above it to move.
[0005] Furthermore, the side air hood is fixedly connected to a filter plate on the side away from the jet assembly, the surface of the filter plate is densely covered with filter holes, and a filter element is arranged inside the side air hood, and the filter element is fixedly connected to the inner side of the side air hood, the filter element is arranged to be corrugated, and the filter element is provided with a plurality of filter elements, and the plurality of filter elements are evenly distributed in the side air hood, and the filter element filters the air sprayed from the side air hood, filters out impurities therein, and prevents the impurities from contacting the glass products. After a long period of filtration, the impurities on the surface of the filter element may agglomerate, and the setting of the filter plate can prevent large-volume impurities from agglomerating and leaving the inside of the side air hood, and the setting of the corrugated filter element, the bending parts of two adjacent filter elements cooperate to limit the impurities, prevent impurities from agglomerating under the action of wind, and enable impurities to adhere to the surface of the filter element more evenly. At the same time, the corrugated structure can distribute a larger filtration area inside the side air hood, thereby achieving better filtering effect.
[0006] Furthermore, the jet assembly includes a branch pipe, and several side air hoods are fixedly connected to a branch pipe on one side away from the filter plate. Two groups of branch pipes are provided, and the two groups of branch pipes are respectively provided on the side away from each other of the two side plates, and each group of branch pipes is provided with several corresponding side air hoods. A main pipe is provided on the side away from the side air hood of the two groups of branch pipes. The surface of the main pipe is fixedly connected to the side away from the side air hood of several branch pipes in the same group, and the inner cavity of the main pipe is connected to the branch pipe. The main pipe is fixedly connected to the surface of the fixed plate, and one end of the main pipe is closed and the other end is open. The open ends of the two main pipes are fixedly connected to a bent pipe, and air is injected into the two bent pipes. The air passes through the bent pipe, the main pipe, and the branch pipe in turn, and is then ejected from the side air hood to achieve air cooling of the glass products.
[0007] Furthermore, a tee is provided at the interval between the two bent pipes, and the tee is provided at the end of the bent pipe away from the main pipe. The inner side of the tee is fixedly connected to the outer side of the bent pipe. Air enters the tee and then enters the inside of the two bent pipes synchronously, so that the side air hoods on both sides can spray synchronously and at the same speed, so that the air flow converges in the middle of the conveying roller, ensuring that the glass products on both sides of this axis obtain the same cooling effect.
[0008] Furthermore, the end of the three-way pipe away from the elbow is fixedly connected to the pump body, the pump body is arranged at the interval between the two supporting legs, the surface of the pump body is fixedly connected to a fixing frame, the two sides of the fixing frame are respectively fixedly connected to the surfaces of the two supporting legs, the side of the pump body away from the three-way pipe is fixedly connected to the first connecting pipe, the end of the first connecting pipe away from the pump body is connected to the suction component, the air enters the first connecting pipe through the suction component, and then passes through the pump body and the three-way pipe in turn, and after being diverted by the three-way pipe, passes through the elbow, the main pipe, the branch pipe, and the side air hood in turn to achieve jet cooling.
[0009] Furthermore, the air intake assembly includes an air intake pipe, and the two vertical air hoods are fixedly connected to the air intake pipe on the sides away from each other, the air intake pipe away from the supporting leg has one end fixedly connected to the vertical air hood, and the surface of the air intake pipe away from the supporting leg is fixedly connected to the lifting assembly, and the side of the lifting assembly close to the supporting leg is fixedly connected to the side of the fixed plate away from the side plate, and the end of the air intake pipe close to the supporting leg away from the vertical air hood is fixedly connected to the end of the telescopic tube close to the supporting leg, and a second connecting pipe is provided at the interval between the two supporting legs, and the second connecting pipe is fixedly connected to the side of the fixed plate close to the supporting leg. On the surface of the suction pipe of the leg, the end of the second connecting pipe away from the suction pipe is fixedly connected with a filter assembly, and the end of the filter assembly away from the second connecting pipe is fixedly connected to the end of the first connecting pipe away from the pump body. The vertical air hood above passes through the suction pipe and the telescopic pipe in turn, and then enters another suction pipe and the vertical air hood below. Finally, the gas converges and enters the second connecting pipe, and then enters the filter assembly, and then enters the jet assembly through the first connecting pipe. The lifting assembly is started to drive the upper suction pipe to rise and fall, and the telescopic pipe to extend and retract, and finally drives the upper vertical air hood to rise and fall, ensuring the passage of glass products of different heights.
[0010] Furthermore, the lifting assembly includes a lifting frame, the inner side surface of the lifting frame is fixedly connected to the outer side surface of the intake pipe away from the supporting leg, the lifting frame is fixedly connected to a bent rod on the side away from the intake pipe, and the bent rod is fixedly connected to an end of the telescopic rod away from the lifting frame, the output end of the telescopic rod is fixedly connected to the bent rod, and the end of the telescopic rod away from the bent rod is connected to a side of the fixed plate away from the side plate. When the telescopic rod is started, the output end of the telescopic rod drives the bent rod to rise and fall, drives the lifting frame to rise and fall, and finally drives the upper intake pipe to rise and fall. The setting of the bent rod ensures that the fulcrum is at the center of the lifting frame during lifting, ensuring the smooth lifting and lowering of the lifting frame, thereby ensuring the smooth lifting and lowering of the intake pipe and the vertical air hood, ensuring the parallel intake of the vertical air hood above, and ensuring uniform cooling.
[0011] Furthermore, the side of the bent rod close to the fixed plate is fixedly connected to a limit rod, and the surface of the limit rod is slidably connected to a slide, and a column is provided on the side of the slide away from the limit rod, the column is fixedly connected to the side of the slide close to the fixed plate, and the side of the column away from the slide is fixedly connected to the top of the fixed plate, and the outer sleeve of the limit rod is provided with a spring, and the spring is fixedly connected to the side of the slide close to the fixed plate, and the end of the spring away from the slide is fixedly connected to the surface of the limit rod, and the bent rod is raised and lowered, driving the limit rod to rise and fall, and the limit rod slides inside the slide, driving the spring to expand and contract, thereby buffering the lifting of the bent rod and obtaining a more stable lifting effect, and the limit rod and the slide cooperate with each other to limit, ensuring the vertical lifting of the bent rod.
[0012] Furthermore, the filter assembly includes a filter box, both sides of which are fixedly connected to the ends of the first connecting pipe and the second connecting pipe that are close to each other, the inner side of the filter box is fixedly connected with an inclined plate, both sides of the inclined plate are fixedly connected with moisture absorption plates, and several moisture absorption plates are provided, and the moisture absorption plates are bent toward the side close to the second connecting pipe. Gas enters the filter box, the air contacts the moisture absorption plates, and then enters the first connecting pipe. The moisture absorption plates absorb moisture in the air to prevent moisture from contacting the glass products. Several moisture absorption plates can obtain better filtering effects, and the moisture absorption plates facing the second connecting pipe can contact the airflow at an angle that is closer to vertical, thereby further obtaining better moisture absorption effects.
[0013] The present invention has the beneficial effects: 1. The present invention provides a cooling mechanism. The air sucked in and ejected by the vertical air hood and the side air hood interact with each other and change the direction of the airflow, so that the air does not contact the glass products vertically, but contacts the glass products at an angle with an arc, which can prevent the high-speed air from causing deformation of the glass products. The circulating air cooling structure prevents the pressure around the glass products from changing by quickly ejecting air from the side air hood after the vertical air hood inhales air. Only the air in the space enclosed by the side air hood and the vertical air hood is used for cooling, which prevents dust, moisture, etc. outside the enclosed space from contacting the glass products. After one filtration, the cleanliness and dryness of the air can be ensured, which prevents dust from adhering to the surface of the glass products and causing a decrease in the surface quality of the glass products, and prevents moisture from contacting the glass products and causing cracks, strength reduction, surface defects or even breakage.
[0014] 2. The present invention sets a filter element, which filters the air sprayed from the side air hood to remove impurities therein and prevent the impurities from contacting the glass products. After a long period of filtration, the impurities on the surface of the filter element may agglomerate. The setting of the filter plate can prevent large-volume impurities from agglomerating and leaving the inside of the side air hood. The setting of the corrugated filter element and the bending parts of the two adjacent filter elements cooperate to limit the impurities, preventing the impurities from agglomerating under the action of wind, so that the impurities can adhere to the surface of the filter element more evenly. At the same time, the corrugated structure can distribute a larger filtration area inside the side air hood to achieve better filtering effect.
[0015] 3. The present invention is provided with a lifting assembly, which drives the vertical air hood above to rise and fall, ensuring the passage of glass products of different heights. The setting of the bending rod makes the fulcrum at the center of the lifting frame during lifting, ensuring the smooth lifting of the lifting frame, thereby ensuring the smooth lifting of the suction pipe and the vertical air hood, ensuring that the vertical air hood above is sucked in parallel, ensuring uniform cooling, the limit rod slides inside the slide, and the spring expands and contracts, thereby buffering the lifting of the bending rod, obtaining a more stable lifting effect, and the limit rod and the slide cooperate with each other to limit, ensuring the vertical lifting of the bending rod.
[0016] 4. The present invention sets a filter component, and the air contacts the moisture absorption plate, which absorbs moisture in the air to prevent moisture from contacting the glass products. Several moisture absorption plates can achieve better filtering effects, and the moisture absorption plate facing the second connecting pipe can contact the airflow at an angle closer to vertical, further achieving better moisture absorption effects. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A schematic diagram of a circulating cooling device for producing glass with filtering function according to the present invention; Figure 2 A schematic diagram showing another perspective of the circulating cooling equipment for producing glass with filtering function according to the present invention; Figure 3 This is a schematic diagram of the cross-sectional structure of the side air hood of the present invention; Figure 4 This is a schematic diagram of the structure of the conveying roller of the present invention; Figure 5 This is a schematic diagram of the structure of the jet assembly of the present invention; Figure 6 This is a schematic diagram of the structure of the air-intake assembly of the present invention; Figure 7 This is a schematic diagram of the lifting assembly structure of the present invention; Figure 8 Schematic diagram of the limiting rod structure of the present invention; Figure 9 This is a schematic diagram of the filter assembly structure of the present invention.
[0018] In the figure: 1. conveyor roller; 2. side plate; 3. support leg; 4. cooling mechanism; 41. side air hood; 42. fixing plate; 43. vertical air hood; 44. jet assembly; 441. branch pipe; 442. main pipe; 443. elbow pipe; 444. tee pipe; 445. pump body; 446. fixing frame; 447. first connecting pipe; 45. suction assembly; 451. suction pipe; 453. telescopic pipe; 455. second connecting pipe; 456. lifting assembly; 4561. lifting frame; 4562. bending rod; 4563. telescopic rod; 4564. limiting rod; 4565. slide plate; 4566. column; 4567. spring; 457. filter assembly; 4571. filter box; 4572. inclined plate; 4573. moisture absorption plate; 46. filter plate; 47. filter element. DETAILED DESCRIPTION
[0019] The present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described to better illustrate the principles of the invention and its practical application, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for specific applications. Example 1, please refer to Figure 1-Figure 3 The present invention is a circulating cooling device for glass production with a filtering function, comprising: Conveyor roller 1, both ends of the conveyor roller 1 are provided with side plates 2, a plurality of conveyor rollers 1 are provided at the interval between the two side plates 2, and the surface of the conveyor roller 1 is rotatably connected to the inner side of the side plate 2, and the bottom of the two side plates 2 are fixedly connected to support legs 3; The cooling mechanism 4 is arranged around the conveying roller 1 and is fixedly connected to the surface of the supporting leg 3; Wherein, the cooling mechanism 4 includes: Side air hoods 41, a plurality of side air hoods 41 are provided on the side of the two side panels 2 away from the support legs 3, and a fixing plate 42 is fixedly connected to the side of the side panels 2 away from the support legs 3, and the inner side surface of the fixing plate 42 is fixedly connected to the outer side surfaces of the plurality of side air hoods 41; Two vertical air hoods 43 are provided at the interval between the two side plates 2, and the two vertical air hoods 43 are symmetrically arranged with the conveying roller 1 as the center; The jet assembly 44 is fixedly connected to the surface of the support leg 3, and the output end of the jet assembly 44 is fixedly connected to the plurality of side air covers 41; The air suction component 45 is fixedly connected to the surface of the support leg 3, and the output end of the air suction component 45 is fixedly connected to the side of the two vertical air covers 43 away from each other, and the air injection component 44 is connected to the air suction component 45; The conveying roller 1 is driven to rotate, and the glass products are conveyed on the top of the conveying roller 1. The jet assembly 44 is started, and the jet assembly 44 blows out air from the side air hoods 41 on the top of the two side plates 2. The suction assembly 45 drives the vertical air hoods 43 on the upper and lower sides of the conveying roller 1 to suck air. The air sucked and ejected by the vertical air hoods 43 and the side air hoods 41 interact with each other to change the flow direction of the airflow, so that the air does not contact the glass products vertically, but contacts the glass products with an arc, which can avoid deformation of the glass products caused by high-speed air. The gas passes through the vertical air hoods 43, the suction assembly 45, the jet assembly 44, and the side air hoods in sequence. 41. Thus, a cycle is formed to cool down the glass products. In the circulating air cooling structure, the vertical air hood 43 sucks air and then the side air hood 41 quickly sprays air to replenish it, so as to avoid pressure changes around the glass products. Only the air in the space enclosed by the side air hood 41 and the vertical air hood 43 is used for cooling, so as to avoid dust, moisture and the like outside the enclosed space from contacting the glass products. After one filtration, the cleanliness and dryness of the air can be ensured, so as to avoid dust adhering to the surface of the glass products and causing the surface quality of the glass products to deteriorate, and to avoid moisture from contacting the glass products and causing cracks, strength reduction, surface defects or even breakage.
[0020] The conveying roller 1 is part of the conveying structure on the glass production line, and the conveying roller 1 is driven by the conveying structure of the glass production line. The side plate 2 is part of the supporting structure of the glass production line. The conveying structure of the glass production line drives the conveying roller 1 to roll, driving the glass above it to move.
[0021] The filter element 47 is arranged in a wave-shaped structure, and a plurality of filter elements 47 are provided. The plurality of filter elements 47 are evenly distributed in the side air cover 41. The filter element 47 filters the air ejected from the side air cover 41, removes impurities therein, and prevents the impurities from contacting the glass products. After a long period of filtration, the impurities on the surface of the filter element 47 may agglomerate. The arrangement of the filter plate 46 can prevent large-volume impurities from agglomerating and leaving the inside of the side air cover 41. The arrangement of the wave-shaped filter element 47 and the bending parts of two adjacent filter elements 47 cooperate to limit the impurities, prevent the impurities from agglomerating under the action of wind, and enable the impurities to adhere more evenly to the surface of the filter element 47. At the same time, the wave-shaped structure can distribute a larger filtration area in the side air cover 41, thereby achieving a better filtering effect.
[0022] Example 2, please refer to Figures 1-9The jet assembly 44 includes a branch pipe 441, and several side air hoods 41 are fixedly connected to the side of the filter plate 46. The branch pipe 441 is provided with two groups. The two groups of branch pipes 441 are respectively arranged on the side of the two side plates 2 away from each other, and each group of branch pipes 441 is provided with several corresponding side air hoods 41. The two groups of branch pipes 441 are provided with a main pipe 442 on the side away from the side air hood 41. The surface of the main pipe 442 is fixedly connected to the side of several branch pipes 441 in the same group away from the side air hood 41, and the inner cavity of the main pipe 442 is connected to the branch pipe 441. The main pipe 442 is fixedly connected to the surface of the fixed plate 42, and one end of the main pipe 442 is closed and the other end is open. The open ends of the two main pipes 442 are fixedly connected to the two bent pipes 443, and air is injected into the two bent pipes 443. The air passes through the bent pipe 443, the main pipe 442, and the branch pipe 441 in turn, and then is ejected from the side air hood 41 to achieve air cooling of the glass products.
[0023] A tee pipe 444 is provided at the interval between the two curved pipes 443, and the tee pipe 444 is provided at the end of the curved pipe 443 away from the main pipe 442. The inner side surface of the tee pipe 444 is fixedly connected to the outer side surface of the curved pipe 443. Air enters the tee pipe 444 and then enters the two curved pipes 443 synchronously, so that the side air hoods 41 on both sides can spray synchronously and at the same speed, so that the air flow converges in the middle of the conveying roller 1, ensuring that the glass products on both sides of this axis obtain the same cooling effect.
[0024] One end of the three-way pipe 444 away from the elbow 443 is fixedly connected to the pump body 445, and the pump body 445 is arranged at the interval between the two supporting legs 3. The surface of the pump body 445 is fixedly connected to a fixing frame 446, and the two sides of the fixing frame 446 are respectively fixedly connected to the surfaces of the two supporting legs 3. The side of the pump body 445 away from the three-way pipe 444 is fixedly connected to the first connecting pipe 447, and the end of the first connecting pipe 447 away from the pump body 445 is connected to the suction component 45. The air enters the first connecting pipe 447 through the suction component 45, and then passes through the pump body 445 and the three-way pipe 444 in turn. After being diverted by the three-way pipe 444, it passes through the elbow 443, the main pipe 442, the branch pipe 441, and the side air hood 41 in turn to achieve jet cooling.
[0025] The suction assembly 45 includes an suction pipe 451, and the two vertical air hoods 43 are fixedly connected to the suction pipe 451 on the sides away from each other, the suction pipe 451 away from the supporting leg 3 has one end fixedly connected to the vertical air hood 43 with a telescopic tube 453, and the surface of the suction pipe 451 away from the supporting leg 3 is fixedly connected with a lifting assembly 456, and the side of the lifting assembly 456 close to the supporting leg 3 is fixedly connected to the side of the fixed plate 42 away from the side plate 2, and the end of the suction pipe 451 close to the supporting leg 3 away from the vertical air hood 43 is fixedly connected to the end of the telescopic tube 453 close to the supporting leg 3. A second connecting pipe 455 is provided at the interval between the two supporting legs 3, and the second connecting pipe 455 is fixedly connected to the surface of the suction pipe 451 close to the supporting leg 3. One end of the second connecting pipe 455 away from the suction pipe 451 is fixedly connected to a filter assembly 457, and the end of the filter assembly 457 away from the second connecting pipe 455 is fixedly connected to the end of the first connecting pipe 447 away from the pump body 445. The upper vertical air hood 43 passes through the suction pipe 451 and the telescopic pipe 453 in sequence, and then enters another suction pipe 451 and the lower vertical air hood 43. Finally, the gas converges and enters the second connecting pipe 455, and then enters the filter assembly 457, and then enters the jet assembly 44 through the first connecting pipe 447. The lifting assembly 456 is started to drive the upper suction pipe 451 to rise and fall, and the telescopic pipe 453 to extend and retract, and finally drives the upper vertical air hood 43 to rise and fall, ensuring the passage of glass products of different heights.
[0026] The lifting assembly 456 includes a lifting frame 4561, the inner side of the lifting frame 4561 is fixedly connected to the outer side of the suction pipe 451 away from the support leg 3, the lifting frame 4561 is fixedly connected to a bent rod 4562 on the side away from the suction pipe 451, the bent rod 4562 is fixedly connected to the end away from the lifting frame 4561 with a telescopic rod 4563, the output end of the telescopic rod 4563 is fixedly connected to the bent rod 4562, and the end of the telescopic rod 4563 away from the bent rod 4562 is fixedly connected to the fixed plate 42 is on the side away from the side panel 2, and the telescopic rod 4563 is started. The output end of the telescopic rod 4563 drives the bending rod 4562 to move up and down, and drives the lifting frame 4561 to move up and down, and finally drives the upper suction pipe 451 to move up and down. The setting of the bending rod 4562 makes the fulcrum at the center of the lifting frame 4561 during lifting, ensuring the smooth lifting of the lifting frame 4561, thereby ensuring the smooth lifting of the suction pipe 451 and the vertical air hood 43, ensuring that the upper vertical air hood 43 inhales air in parallel, and ensuring uniform cooling.
[0027] The side of the bent rod 4562 close to the fixed plate 42 is fixedly connected to the limit rod 4564, and the surface of the limit rod 4564 is slidably connected to the slide plate 4565. The side of the slide plate 4565 away from the limit rod 4564 is provided with a column 4566. The column 4566 is fixedly connected to the side of the slide plate 4565 close to the fixed plate 42, and the side of the column 4566 away from the slide plate 4565 is fixedly connected to the top of the fixed plate 42. The outer sleeve of the limit rod 4564 is provided with a spring 4567, and the spring 4567 is connected to the slide plate. 4565 is fixedly connected to the side close to the fixed plate 42, and the end of the spring 4567 away from the slide 4565 is fixedly connected to the surface of the limit rod 4564. The bending rod 4562 rises and falls, driving the limit rod 4564 to rise and fall. The limit rod 4564 slides inside the slide 4565, driving the spring 4567 to expand and contract, thereby buffering the rise and fall of the bending rod 4562 and obtaining a more stable lifting effect. The limit rod 4564 and the slide 4565 cooperate with each other to limit, ensuring the vertical rise and fall of the bending rod 4562.
[0028] The filter assembly 457 includes a filter box 4571, and both sides of the filter box 4571 are fixedly connected to the first connecting pipe 447 and the second connecting pipe 455 at one end close to each other. The inner side of the filter box 4571 is fixedly connected with an inclined plate 4572, and both sides of the inclined plate 4572 are fixedly connected with a moisture absorption plate 4573, and there are several moisture absorption plates 4573. The moisture absorption plates 4573 are bent toward the side close to the second connecting pipe 455. The gas enters the filter box 4571, and the air contacts the moisture absorption plates 4573, and then enters the first connecting pipe 447. The moisture absorption plates 4573 absorb moisture in the air to prevent moisture from contacting the glass products. Several moisture absorption plates 4573 can achieve better filtering effect, and the moisture absorption plates 4573 facing the second connecting pipe 455 can contact the airflow at an angle closer to vertical, thereby further achieving better moisture absorption effect.
[0029] When in use, the conveying structure of the glass production line drives the conveying roller 1 to roll, and the glass products are conveyed on the top of the conveying roller 1, and the telescopic rod 4563 is started. The output end of the telescopic rod 4563 drives the bending rod 4562 to rise and fall, and drives the lifting frame 4561 to rise and fall, and finally drives the upper suction pipe 451 to rise and fall, adjusts the appropriate height, and starts the pump body 445. The upper vertical air hood 43 passes through the suction pipe 451 and the telescopic pipe 453 in turn, and then enters another suction pipe 451 and the lower vertical air hood 43. Finally, the gas converges and enters the second connecting pipe 455, and then enters the filter assembly 457, and then enters the pump body 445 through the first connecting pipe 447. The air then enters the T-tube 444 and then enters the two curved pipes 443 simultaneously. The air passes through the curved pipe 443, the main pipe 442, and the branch pipe 441 in turn, and then is ejected from the side air hood 41, thus forming a cycle to achieve air cooling of the glass products.
[0030] Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without making creative efforts should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention shall be implemented in accordance with conventional means in the field unless otherwise specified or limited.
Claims
1. A circulating cooling device for glass production with filtering function, characterized in that: include: A conveying roller (1), wherein both ends of the conveying roller (1) are provided with side plates (2), a plurality of conveying rollers (1) are provided at the interval between the two side plates (2), and the surface of the conveying roller (1) is rotatably connected to the inner side of the side plate (2), and the bottoms of the two side plates (2) are fixedly connected with support legs (3); A cooling mechanism (4), wherein the cooling mechanism (4) is arranged around the conveying roller (1), and the cooling mechanism (4) is fixedly connected to the surface of the supporting leg (3); Wherein, the cooling mechanism (4) comprises: Side air hoods (41), wherein a plurality of side air hoods (41) are provided on a side of the two side plates (2) away from the support legs (3); a fixing plate (42) is fixedly connected to the side of the side plates (2) away from the support legs (3); and an inner side surface of the fixing plate (42) is fixedly connected to an outer side surface of the plurality of side air hoods (41); A vertical air hood (43), wherein two vertical air hoods (43) are provided at the interval between the two side plates (2), and the two vertical air hoods (43) are symmetrically arranged with the conveying roller (1) as the center; An air jet assembly (44), the air jet assembly (44) is fixedly connected to the surface of the support leg (3), and the output end of the air jet assembly (44) is fixedly connected to a plurality of side air covers (41); An air suction component (45) is fixedly connected to the surface of the support leg (3), and an output end of the air suction component (45) is fixedly connected to a side of the two vertical air hoods (43) that is away from each other, and the air injection component (44) is communicated with the air suction component (45).
2. The circulating cooling equipment for glass production with filtering function according to claim 1, characterized in that: The conveying roller (1) is part of a conveying structure on a glass production line, and the conveying roller (1) is driven by the conveying structure of the glass production line; the side plate (2) is part of a supporting structure of the glass production line.
3. The circulating cooling equipment for glass production with filtering function according to claim 2, characterized in that: A filter plate (46) is fixedly connected to a side of the side air hood (41) away from the jet assembly (44), and the surface of the filter plate (46) is densely covered with filter holes. A filter element (47) is provided inside the side air hood (41), and the filter elements (47) are fixedly connected to the inner side of the side air hood (41). The filter elements (47) are arranged in a corrugated shape, and a plurality of the filter elements (47) are provided, and the plurality of the filter elements (47) are evenly distributed inside the side air hood (41).
4. The circulating cooling equipment for glass production with filtering function according to claim 3, characterized in that: The jet assembly (44) includes a branch pipe (441), and a plurality of the side air covers (41) are fixedly connected to a branch pipe (441) on one side away from the filter plate (46). Two groups of branch pipes (441) are provided, and the two groups of branch pipes (441) are respectively provided on the side away from each other of the two side plates (2), and each group of branch pipes (441) is provided with a plurality of corresponding side air covers (41). A main pipe (442) is provided on the side away from the side air covers (41) of the two groups of branch pipes (441). The surface of the main pipe (442) is fixedly connected to the side of the plurality of branch pipes (441) in the same group away from the side air covers (41), and the inner cavity of the main pipe (442) is communicated with the branch pipe (441). The main pipe (442) is fixedly connected to the surface of the fixed plate (42), and one end of the main pipe (442) is closed and the other end is open. The open ends of the two main pipes (442) are fixedly connected to a bent pipe (443).
5. The circulating cooling equipment for glass production with filtering function according to claim 4, characterized in that: A tee pipe (444) is provided at the interval between the two curved pipes (443), and the tee pipe (444) is provided at one end of the curved pipe (443) away from the main pipe (442), and the inner side surface of the tee pipe (444) is fixedly connected to the outer side surface of the curved pipe (443).
6. The circulating cooling equipment for glass production with filtering function according to claim 5, characterized in that: One end of the three-way pipe (444) away from the elbow (443) is fixedly connected to a pump body (445), and the pump body (445) is arranged at the interval between the two supporting legs (3). A fixing frame (446) is fixedly connected to the surface of the pump body (445), and both sides of the fixing frame (446) are respectively fixedly connected to the surfaces of the two supporting legs (3). One side of the pump body (445) away from the three-way pipe (444) is fixedly connected to a first connecting pipe (447), and one end of the first connecting pipe (447) away from the pump body (445) is communicated with the suction component (45).
7. The circulating cooling equipment for glass production with filtering function according to claim 6, characterized in that: The air suction assembly (45) includes an air suction pipe (451), and the two vertical air hoods (43) are fixedly connected to the air suction pipe (451) on the sides away from each other. The air suction pipe (451) away from the support leg (3) is fixedly connected to the end of the vertical air hood (43) away from the telescopic pipe (453), and the surface of the air suction pipe (451) away from the support leg (3) is fixedly connected to the lifting assembly (456). The side of the lifting assembly (456) close to the support leg (3) is fixedly connected to the side of the fixed plate (42) away from the side plate (2). The air suction pipe (451) close to the support leg (3) is fixedly connected to the side of the fixed plate (42) away from the side plate (2). 1) One end away from the vertical air hood (43) is fixedly connected to one end of the telescopic tube (453) close to the support leg (3); a second connecting tube (455) is provided at the interval between the two support legs (3); the second connecting tube (455) is fixedly connected to the surface of the suction pipe (451) close to the support leg (3); one end of the second connecting tube (455) away from the suction pipe (451) is fixedly connected to a filter assembly (457); and one end of the filter assembly (457) away from the second connecting tube (455) is fixedly connected to one end of the first connecting tube (447) away from the pump body (445).
8. The circulating cooling equipment for glass production with filtering function according to claim 7, characterized in that: The lifting assembly (456) includes a lifting frame (4561), the inner side surface of the lifting frame (4561) is fixedly connected to the outer side surface of the suction pipe (451) away from the support leg (3), the side of the lifting frame (4561) away from the suction pipe (451) is fixedly connected to a bent rod (4562), the end of the bent rod (4562) away from the lifting frame (4561) is fixedly connected to a telescopic rod (4563), the output end of the telescopic rod (4563) is fixedly connected to the bent rod (4562), and the end of the telescopic rod (4563) away from the bent rod (4562) is connected to the side of the fixed plate (42) away from the side plate (2).
9. The circulating cooling equipment for glass production with filtering function according to claim 8, characterized in that: The side of the bent rod (4562) close to the fixed plate (42) is fixedly connected to the limiting rod (4564), the surface of the limiting rod (4564) is slidably connected to the slide plate (4565), and the side of the slide plate (4565) away from the limiting rod (4564) is provided with a column (4566), the column (4566) is fixedly connected to the side of the slide plate (4565) close to the fixed plate (42), and the side of the column (4566) away from the slide plate (4565) is fixedly connected to the top of the fixed plate (42), and the outer sleeve of the limiting rod (4564) is provided with a spring (4567), the spring (4567) is fixedly connected to the side of the slide plate (4565) close to the fixed plate (42), and the end of the spring (4567) away from the slide plate (4565) is fixedly connected to the surface of the limiting rod (4564).
10. The circulating cooling equipment for glass production with filtering function according to claim 9, characterized in that: The filter assembly (457) comprises a filter box (4571), the two sides of the filter box (4571) being fixedly connected to the first connecting pipe (447) and the second connecting pipe (455) at one end close to each other, the inner side surface of the filter box (4571) being fixedly connected to an inclined plate (4572), both sides of the inclined plate (4572) being fixedly connected to moisture absorption plates (4573), and a plurality of moisture absorption plates (4573) being provided, and the moisture absorption plates (4573) being bent toward the side close to the second connecting pipe (455).