Water cooling device and water cooling method for processing Fotiaoqiang wall
By designing a water-cooling device that combines clamping and spraying cooling, the problem of water contamination during the cooling process of Buddha Jumps Over the Wall was solved, achieving a highly efficient and uniform cooling effect and ensuring the taste and quality of the dish.
Patent Information
- Application Number
- CN202511489984.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2025-12-09
AI Technical Summary
Existing water-cooling devices for Buddha Jumps Over the Wall are prone to incomplete sealing during the cooling process, allowing cooling water to enter the Buddha Jumps Over the Wall, affecting the taste and resulting in poor cooling effect.
A water-cooling device was designed, comprising a placement component, a clamping component, a water supply component, and a water-cooling component. By clamping and fixing the Buddha Jumps Over the Wall pot, the device utilizes sprayed cooling water flow combined with ice cubes to cool the pot, ensuring that water does not enter the pot while achieving uniform cooling.
This effectively prevents water from contaminating the Buddha Jumps Over the Wall, maintains the cooling effect, and improves cooling efficiency and processing quality.
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Figure CN121089348A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of water cooling, in particular to a water cooling device and method for processing Buddha jumps over the wall. BACKGROUND
[0002] Buddha jumps over the wall, also known as Fushouquan, is a characteristic dish in Fuzhou, Fujian Province, and belongs to the Fujian cuisine. Buddha jumps over the wall usually selects abalone, sea cucumber, fish lips, yak leather, pleurotus eryngii, tendon, flower mushroom, cuttlefish, jade pillar, quail egg, etc. into a pottery jar, and adds high soup and Fujian old wine, and is cooked with a slow fire. The Buddha jumps over the wall after being made has a high temperature and a long cooling time.
[0003] For example, the patent with the publication number CN222393144U, the publication date of January 24, 2025, and the name of "a multi-stage water cooling device for processing Buddha jumps over the wall" includes a first water cooling bin, a second water cooling bin, and a third water cooling bin. The first water cooling bin is connected to a water inlet bin on one side, and a hanging rod is connected to a receiving frame that can move left and right along the hanging rod. A discharge pipe is connected between the three water cooling bins, and the water outlet of the third cooling bin leads to the third discharge pipe. The third discharge pipe is connected to the transition pipe, and the end of the transition pipe is installed in the liquid inlet of the filter. The filter is connected to a return pipe, and the return end of the return pipe is connected to the water inlet end of the water inlet bin. The utility model discloses a three-stage water cooling bin for circulating water flow and consuming the heat in the water during the circulation process to restore the normal temperature of the water. At the same time, the water that has washed the Buddha jumps over the wall product is cooled again by using the refrigeration plate to maintain the cooling water state after cooling, which facilitates the water cooling bin and the reuse of the water.
[0004] The water cooling device for Buddha jumps over the wall in the prior art generally cools the pre-packaging and packaging of Buddha jumps over the wall, and the pre-packaging and packaging of Buddha jumps over the wall is immersed in water during cooling. If the packaging is not tight and firm, the cooling water may enter the Buddha jumps over the wall, causing changes in the taste of the Buddha jumps over the wall or even contaminating the Buddha jumps over the wall. At the same time, the water cooling method by immersing the Buddha jumps over the wall in water has a high water temperature after cooling, which makes it difficult to maintain the cooling effect of the subsequent Buddha jumps over the wall. SUMMARY
[0005] The purpose of the present application is to provide a water cooling device and method for processing Buddha jumps over the wall to solve the above-mentioned deficiencies in the prior art.
[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical solutions: The utility model provides a kind of water cooling device for Buddha jumps wall processing, including water tank, the water tank is provided with placing assembly, the placing assembly is provided with compression assembly above, the compression assembly is arranged at the side of the water tank, the compression assembly and the placing assembly are used to clamp and fix the pot for Buddha jumps wall processing, the water tank is provided with water supply component, the water supply component is arranged in the lower end of the placing assembly, the placing assembly upper end is provided with water cooling component, the water cooling component, the compression assembly are communicated with the water supply component, the water supply component is used to transport the water in the water tank to the water cooling component and the compression assembly, so that the water cooling component and the compression assembly are sprayed to the pot for Buddha jumps wall processing placed on placing assembly.
[0007] The placing assembly includes a placing plate, a plurality of placing blocks are uniformly arranged on the upper end of the placing plate along the length direction, and the placing blocks are rotatably arranged on the placing plate.
[0008] The upper end of the placing block is arc-shaped, and an anti-skid pattern is arranged on the placing block.
[0009] The compression assembly includes a vertical rod, the vertical rod is slidably arranged on one side outside the water tank, a first spring is arranged between the lower end of the vertical rod and the water tank, a pressing plate is arranged on the upper end of the vertical rod, a plurality of pressing covers are uniformly arranged on the lower end of the pressing plate along the length direction, and the pressing covers are rotatably arranged on the lower end of the pressing plate.
[0010] A plurality of sealing blocks are uniformly arranged on the inner wall of the pressing cover in the circumferential direction, the sealing blocks are slidably arranged on the inner wall of the pressing cover, a second spring is arranged between each sealing block and the pressing cover, each sealing block is connected to one end of a steel wire rope, and the other end of each steel wire rope is concentrated at a point.
[0011] The water supply assembly includes a water pump, which is arranged in the middle of the lower end of the placing assembly. The water tank is internally provided with a filter, which is used to filter the water in the water tank. The filter and the water pump are connected in communication through a water inlet pipe. The water tank is also internally provided with an ice shelf, which is symmetrically arranged about the filter and arranged at the bottom of the water tank. The water pump is connected in communication with the water cooling assembly through a water outlet pipe.
[0012] The water cooling assembly includes two horizontal plates, which are symmetrically and slidably arranged at the upper end of the placing assembly. The end of the placing assembly is provided with a second driving element. The output end of the second driving element is provided with an adjusting rod through a shaft coupling. The adjusting rod is provided with opposite threads. The two ends of each horizontal plate are connected with an end thread. A plurality of semicircular baffles are uniformly arranged on each horizontal plate along the length direction. The plurality of semicircular baffles on the same horizontal plate are connected in communication through a distribution pipe. The distribution pipe is connected with the water pump through the water outlet pipe.
[0013] The plurality of semicircular baffles on the horizontal plate are symmetrically arranged about the placing block. Two semicircular baffles at the same placing block can form a hollow ellipsoid. The semicircular baffle is internally provided with a water channel. The inner side of the semicircular baffle is provided with a plurality of water injection holes, which are connected in communication with the water channel.
[0014] A water cooling method for Buddha Jumps Over the Wall processing, which is applicable to the water cooling device for Buddha Jumps Over the Wall processing, includes the following steps. Firstly, a plurality of pots still in a high-temperature state after processing Buddha Jumps Over the Wall are placed on the plurality of placing blocks on the placing plate. After the Buddha Jumps Over the Wall processing pots are placed, the pressing plate is rotated to drive the vertical rod to rotate at the side of the water tank so that the pressing plate cooperates with the guide rod. At this time, the pressing plate is pressed downward to drive the vertical rod to extrude the first spring to vertically descend along the water tank. Meanwhile, the locking sleeve is threadedly rotated and fixed on the guide rod to extrude and fix the pressing plate so that the pressing plate drives the pressing cover to descend and cooperates with the placing block to clamp and fix the Buddha Jumps Over the Wall processing pot. When the pressing cover and the placing block clamp and fix the Buddha Jumps Over the Wall processing pot, the pot cover of the Buddha Jumps Over the Wall processing pot can extrude the concentration point of the steel wire rope to drive the steel wire rope to pull the plurality of sealing blocks so that the sealing blocks extrude the second spring to move on the inner wall of the pressing cover, thereby extruding and sealing the joint between the pot cover and the pot body of the Buddha Jumps Over the Wall processing pot to avoid water flow into the pot when spraying; The second step: after the Buddha jumps over the wall processing tank clamping and fixing and sealing the joint between the tank body and the tank cover, the water pump is operated, so that the water pump sucks the cold water in the water tank through the water inlet pipe, and pumps it to the distribution pipe and the pressure cover through the water outlet pipe. When the water pump is working, the water in the water tank is filtered by the filter, so that the pure water flows into the distribution pipe through the water inlet pipe, the water pump and the water outlet pipe in turn, so that the distribution pipe guides and transports the water flow into the semicircular baffle and the water inlet interface, so that the semicircular baffle sprays water flow to cool the tank body part of the Buddha jumps over the wall processing tank, and the pressure cover sprays water flow to cool the tank cover part of the Buddha jumps over the wall processing tank. By placing ice blocks on the ice shelf, the temperature of the water flow in the water tank is lowered when the ice blocks melt, so that the water flow sprayed by the semicircular baffle and the pressure cover to the Buddha jumps over the wall processing tank is lower in temperature, so as to improve the processing efficiency of the Buddha jumps over the wall. At the same time, when the semicircular baffle sprays water flow to cool the tank body part of the Buddha jumps over the wall processing tank, the second driving element drives the adjusting rod to rotate, so that the adjusting rod drives the two horizontal plates to move closer to each other through the opposite threads provided thereon, so that the two horizontal plates drive the semicircular baffles on them to move closer to each other, so that the semicircular baffles gradually approach the Buddha jumps over the wall processing tank, and the water flow transported into the semicircular baffles through the distribution pipe flows in the water channel provided in the semicircular baffles and sprays from the water spray hole to the tank body of the Buddha jumps over the wall processing tank. In addition, the first driving element drives the drive shaft to rotate, so that the drive shaft drives the plurality of worms to rotate synchronously, so that the worms drive the worms to rotate, so that the worms drive the placing block connected thereto to rotate, and then the placing block drives the Buddha jumps over the wall processing tank placed thereon to rotate. When the Buddha jumps over the wall processing tank rotates, the pressure cover can rotate synchronously with the Buddha jumps over the wall processing tank, so that the water flow sprayed by the semicircular baffle uniformly covers the Buddha jumps over the wall processing tank, so that the Buddha jumps over the wall processing tank can be uniformly cooled by the water flow; Third step: after the Buddha jumps over the wall through a period of water cooling, the Buddha jumps over the wall processing canister temperature is fully reduced, the water pump stops working, while the second drive member drives the adjusting rod reverse rotation, so that the adjusting rod is provided with the opposite thread drives two horizontal plate away from each other, so that the two horizontal plate drives the semicircular baffle on it away from each other, so that the semicircular baffle gradually away from the Buddha jumps over the wall processing canister, and the first drive member stops rotating, so that the drive shaft on the plurality of worm stops rotating, so that the worm and the worm wheel on the placement block is locked, in turn, so that the placement block and the Buddha jumps over the wall processing canister placed on it stop rotating, in addition, reverse rotation locking nut, so that the locking nut and the guide rod is separated, so that the locking nut is locked and fixed to the pressing plate, so that the pressure cover and the placement block is removed from the Buddha jumps over the wall processing canister clamping fixed, so as to take down the cooled Buddha jumps over the wall processing canister collection.
[0015] In the above technical solutions, the beneficial effects of the present application are that: 1. The present application is sealed and clamped to the bottom and upper end of the Buddha jumps over the wall processing canister by the placement assembly and the pressing assembly, respectively, to avoid water pollution of the Buddha jumps over the wall when the water flow cools the Buddha jumps over the wall processing canister. 2. The present application is cooled by the water supply assembly and the water cooling assembly, which avoids soaking the Buddha jumps over the wall in the cooling water, ensures that the water temperature after cooling is easy to heat, and thus maintains the cooling effect of the subsequent Buddha jumps over the wall. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments or prior art, the following will briefly introduce the drawings needed in the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art based on these drawings.
[0017] Figure 1 The three-dimensional structure schematic diagram of the water cooling device for Buddha jumps over the wall processing provided by the embodiment of the present application; Figure 2 The top view of the water cooling device for Buddha jumps over the wall processing provided by another embodiment of the present application; Figure 3 The A-A section view of the water cooling device for Buddha jumps over the wall processing provided by another embodiment of the present application; Figure 2 Figure 4 The three-dimensional structure schematic diagram of the placement assembly (except the placement plate) provided by another embodiment of the present application; Figure 5 A sectional view between the placing assembly and the water cooling assembly provided for another embodiment of the present application; Figure 6 A perspective structural schematic view between the pressing cover, the sealing block, the second spring, the steel wire rope and the water inlet interface provided for another embodiment of the present application; Figure 7 A sectional view between the pressing cover, the sealing block, the second spring, the steel wire rope and the water inlet interface provided for another embodiment of the present application; Figure 8 A perspective structural schematic view between the pressing cover, the sealing block, the second spring, the steel wire rope and the water inlet interface provided for another embodiment of the present application; Figure 3 A partial enlarged schematic view of M of the water cooling assembly provided for another embodiment of the present application; Figure 9 A perspective structural schematic view between the pressing cover, the sealing block, the second spring, the steel wire rope and the water inlet interface provided for another embodiment of the present application; Figure 3 A partial enlarged schematic view of N of the water cooling assembly provided for another embodiment of the present application.
[0018] Explanation of reference signs: 1, water tank; 2, placing assembly; 20, placing plate; 21, placing block; 22, worm gear; 23, first driving member; 24, driving shaft; 25, worm; 3, pressing assembly; 30, vertical rod; 31, first spring; 32, pressing plate; 33, pressing cover; 330, sealing block; 331, second spring; 332, steel wire rope; 333, water inlet interface; 34, guide rod; 35, locking sleeve; 4, water supply assembly; 40, water pump; 41, filtering member; 42, water inlet pipe; 43, ice shelf; 44, water outlet pipe; 5, water cooling assembly; 50, horizontal plate; 51, second driving member; 52, adjusting rod; 53, semicircular baffle; 530, water channel; 531, water spraying hole; 54, distribution pipe. DETAILED DESCRIPTION
[0019] In order for those skilled in the art to better understand the technical solutions of the present application, the present application will be further described in detail below in conjunction with the drawings.
[0020] In the description of the present application, it should be understood that the terms "upper", "lower", "vertical", "horizontal", "lateral", "inner", "outer", "one end", "the other end" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0021] As Figures 1-9As shown, the water cooling device for Buddha jumps wall processing provided by the embodiment of the application comprises a water tank 1, the water tank 1 is internally provided with a placing assembly 2, the placing assembly 2 is provided with a pressing assembly 3 above, the pressing assembly 3 is arranged on one side of the water tank 1, the pressing assembly 3 and the placing assembly 2 are used for clamping and fixing the pot for Buddha jumps wall processing, the water tank 1 is internally provided with a water supply assembly 4, the water supply assembly 4 is arranged at the lower end of the placing assembly 2, the placing assembly 2 is provided with a water cooling assembly 5 at the upper end, the water cooling assembly 5 and the pressing assembly 3 are both in communication with the water supply assembly 4, and the water supply assembly 4 is used for conveying the water in the water tank 1 to the water cooling assembly 5 and the pressing assembly 3, so that the water cooling assembly 5 and the pressing assembly 3 spray the pot for Buddha jumps wall processing placed on the placing assembly 2.
[0022] In another embodiment provided by the application, the placing assembly 2 comprises a placing plate 20, a plurality of placing blocks 21 are uniformly arranged on the upper end of the placing plate 20 along the length direction of the placing plate 20, and the placing blocks 21 are arranged on the placing plate 20 in a rotating manner, the lower end of each placing block 21 is provided with a worm gear 22, the inside of the placing plate 20 is provided with a first driving member 23 such as a motor, the output end of the first driving member 23 is provided with a driving shaft 24 through a shaft coupling, the driving shaft 24 is arranged in the inside of the placing plate 20 in a rotating manner, and a plurality of worm gears 25 are uniformly arranged on the driving shaft 24 along the length direction of the driving shaft 24, the number of the worm gears 25 is the same as that of the worm gears 22, and each worm gear 25 is engaged with a worm gear 22; Specific implementation is that a plurality of pots for processing Buddha jumps wall are placed on the plurality of placing blocks 21 on the placing plate 20 at one time, after the pots for processing Buddha jumps wall are placed, the plurality of pots for processing Buddha jumps wall are clamped and fixed at the same time through the cooperation of the pressing assembly 3 and the placing plate 20 and the placing blocks 21, after the pots for processing Buddha jumps wall are clamped and fixed, water is pumped to the water cooling assembly 5 through the water supply assembly 4, so that the water cooling assembly 5 sprays the water in the water tank 1 to the pots for processing Buddha jumps wall, so as to cool the pots for processing Buddha jumps wall, and when the pots for processing Buddha jumps wall are sprayed, the first driving member 23 drives the driving shaft 24 to rotate, so that the driving shaft 24 drives the plurality of worm gears 25 arranged thereon to rotate synchronously, so that the worm gears 25 drive the worm gears 22 engaged therewith to rotate, so that the worm gears 22 drive the placing blocks 21 connected therewith to rotate synchronously, so that the placing blocks 21 drive the pots for processing Buddha jumps wall placed on the upper end thereof to rotate, so as to uniformly cool the pots for processing Buddha jumps wall, and the pots for processing Buddha jumps wall after rotating can automatically adjust the position of Buddha jumps wall in the pots, so that Buddha jumps wall in the middle of the pot approaches the inner wall of the pot under the action of centrifugal force, so as to accelerate the cooling speed of Buddha jumps wall.
[0023] In another embodiment provided by the application, the upper end of the placing block 21 is in the shape of a circular arc, and the placing block 21 is provided with anti-skid lines; The specific embodiment is: the arc-shaped placing plate 20 is convenient for accommodating the bottom of the pot for processing Buddha Jumps Over the Wall, so that the placing block 21 wraps the bottom, and the anti-skid pattern on the upper end of the placing block 21 can reduce or even avoid relative sliding between the placing block 21 and the bottom of the pot, and ensure that the placing block 21 can smoothly drive the bottom to rotate.
[0024] In another embodiment provided by the application, the pressing assembly 3 comprises a vertical rod 30 which is arranged on one side of the water tank 1 in a sliding manner, a first spring 31 is arranged between the lower end of the vertical rod 30 and the water tank 1, a pressing plate 32 is arranged at the upper end of the vertical rod 30, a plurality of pressing covers 33 are uniformly arranged on the lower end of the pressing plate 32 along the length direction of the pressing plate 32, and the pressing covers 33 are arranged on the lower end of the pressing plate 32 in a rotating manner, the number of the pressing covers 33 is the same as that of the placing blocks 21, two guide rods 34 are symmetrically arranged on the upper end of the placing plate 20, the upper ends of the guide rods 34 are arranged in the pressing plate 32 in a sliding manner, and the upper end of at least one guide rod 34 is arranged in a threaded fitting manner with a locking sleeve 35. The specific embodiment is as follows: the pot for processing Buddha Jumps Over the Wall is placed on the placing block 21, the pressing plate 32 is manually rotated, the pressing plate 32 drives the vertical rod 30 to rotate on the side of the water tank 1, until the pressing plate 32 is aligned with the guide rod 34, and the upper end of the guide rod 34 is sleeved in the pressing plate 32, at this time, the pressing plate 32 is pressed downward, the pressing plate 32 drives the vertical plate to extrude the first spring 31, so that the vertical plate descends along the water tank 1, and the locking sleeve 35 is installed on the upper end of the guide rod 34 in a threaded manner, the locking sleeve 35 is continuously rotated, so that the locking sleeve 35 continues to descend along the guide rod 34 in a threaded manner, thereby extruding the pressing plate 32, and the pressing plate 32 and the vertical rod 30 extrude the first spring 31 and continue to descend along the water tank 1, in this way, the pressing plate 32 drives the pressing cover 33 to descend, and the pressing cover 33 is attached to and extrudes the pot cover of the pot for processing Buddha Jumps Over the Wall, so as to realize sealing and prevent cooling water from seeping into the Buddha Jumps Over the Wall; after cooling is completed, the locking sleeve 35 is reversely rotated, so that the locking sleeve 35 is separated from the guide rod 34, the locking and fixing of the pressing plate 32 are released, the first spring 31 is reset, the vertical rod 30 is driven to ascend along the water tank 1, the pressing plate 32 is separated from the guide rod 34, the pressing plate 32 is manually rotated to one side of the water tank 1 to make room, and the cooled Buddha Jumps Over the Wall and the pot are conveniently taken out.
[0025] In another embodiment provided by the application, the inner wall of the pressing cover 33 is uniformly arranged with a plurality of sealing blocks 330 in a circumferential direction, the sealing blocks 330 are arranged on the inner wall of the pressing cover 33 in a sliding manner, one second spring 331 is arranged between each sealing block 330 and the pressing cover 33, one end of each sealing block 330 is connected with a steel wire rope 332, the other end of each steel wire rope 332 is concentrated at a point, and a water inlet 333 is arranged on the outer side of the pressing cover 33. The specific implementation is as follows: the steel wire ropes 332 are arranged in a star shape, that is, one end of the steel wire ropes 332 converges, and the other end diverges into a plurality of bundles, each bundle of the steel wire ropes 332 is connected with a sealing block 330, the second spring 331 is sleeved outside the steel wire ropes 332, and the end, away from the inner wall of the pressure cover 33, of the sealing block 330 is provided with a high-temperature-resistant silica gel layer. After the pot for processing Buddha-jumps-wall is placed on the placing block 21, the pressing plate 32 drives the pressure cover 33 to descend, so that the pressure cover 33 descends and is attached to the pot cover of the pot for processing Buddha-jumps-wall, the locking sleeve 35 is rotated to extrude the pressing plate 32 and drive the pressure cover 33 to continuously descend, so that the pressure cover 33 is attached to the pot cover of the pot for processing Buddha-jumps-wall and extrudes one end of the steel wire ropes 332 connected with each other, the steel wire ropes 332 are extruded and moved, and then the converging end of the steel wire ropes 332 synchronously pulls each bundle of the steel wire ropes 332, each bundle of the steel wire ropes 332 pulls the sealing block 330 connected therewith to extrude the second spring 331 and move along the inner wall of the pressure cover 33. In this way, the sealing block 330 moves along the inner wall of the pressure cover 33 while descending with the pressure cover 33, so that the high-temperature-resistant silica gel layer on the sealing block 330 is close to and attached to the outside of the pot for processing Buddha-jumps-wall, the extrusion sealing of the sealing block 330 on the joint between the pot body and the pot cover of the pot for processing Buddha-jumps-wall is realized, the water inlet interface 333 is connected with the water supply assembly 4, water flow is sprayed to the pot cover through the water inlet interface 333, so as to accelerate the cooling of the Buddha-jumps-wall, and the water inlet interface 333 is connected with the water supply assembly 4, so that water flow is sprayed to the pot cover through the water inlet interface 333, so as to accelerate the cooling of the Buddha-jumps-wall; after the Buddha-jumps-wall is cooled, the locking sleeve 35 is reversely rotated to be separated from the guide rod 34 and to release the locking and fixing of the pressing plate 32, the first spring 31 restores the deformation and drives the vertical rod 30 to move upwards along the water tank 1, the pressing plate 32 drives the pressure cover 33 to move upwards, when the pressure cover 33 moves upwards, the pot cover of the pot for processing Buddha-jumps-wall is gradually away from the steel wire ropes 332, the second spring 331 restores the deformation and extrudes the sealing block 330 to reversely move along the inner wall of the pressure cover 33, so that the sealing block 330 is reset, meanwhile, the pressure cover 33 drives the sealing block 330 to be away from the pot cover, so as to take down the cooled Buddha-jumps-wall and the pot.
[0026] In another embodiment of the present application, the water supply assembly 4 comprises a water pump 40, the water pump 40 is arranged at the middle of the lower end of the placing assembly 2, a filtering piece 41 is arranged in the water tank 1, the filtering piece 41 is used for filtering water in the water tank 1, the filtering piece 41 and the water pump 40 are connected through a water inlet pipe 42, an ice shelf 43 is further arranged in the water tank 1, the ice shelf 43 is symmetrically arranged about the filtering piece 41 and is arranged at the bottom of the water tank 1, and the water pump 40 is connected with the water cooling assembly 5 through a water outlet pipe 44; The specific implementation is as follows: after the pot containing Buddha Jumps Wall is clamped and fixed by the pressing cover 33 and the placing block 21, the water pump 40 is started, so that the water in the water tank 1 flows into the water inlet pipe 42 after being filtered by the filter 41, then flows into the water outlet pipe 44 through the water pump 40, and the water outlet pipe 44 delivers the cooling water to the water cooling assembly 5, so that the water cooling assembly 5 sprays the water flow to the pot containing Buddha Jumps Wall, thereby achieving the cooling of the pot. In addition, in order to improve the cooling rate of Buddha Jumps Wall, ice blocks are placed on the ice shelf 43 to contact with the water in the water tank 1, and the ice blocks are used to reduce the temperature of the water in the water tank 1. In this way, the water pump 40, the water inlet pipe 42 and the water outlet pipe 44 deliver the cold water to the water cooling assembly 5, so that the water cooling assembly 5 sprays the water flow with a lower temperature, so as to accelerate the cooling speed of Buddha Jumps Wall.
[0027] In another embodiment of the present application, the water cooling assembly 5 comprises two horizontal plates 50, which are symmetrically and slidably arranged on the upper end of the placing assembly 2. The end of the placing assembly 2 is provided with a second driving member 51. The output end of the second driving member 51 is provided with an adjusting rod 52 through a shaft coupling. The adjusting rod 52 is provided with opposite threads. The two ends of each horizontal plate 50 are connected with the opposite threads. A plurality of semicircular baffles 53 are uniformly arranged on each horizontal plate 50 along the length direction of the horizontal plate 50. The plurality of semicircular baffles 53 on the same horizontal plate 50 are connected through a distribution pipe 54. The distribution pipe 54 is connected with the water pump 40 through the water outlet pipe 44. The specific implementation is as follows: when the pot containing Buddha Jumps Wall is cooled by water, the first driving member 23 drives the driving shaft 24 to rotate, and then drives the plurality of worms 25 installed on the driving shaft 24 to rotate synchronously. After the worms 25 rotate, the worms 25 drive the worm gears 22 engaged with the worms 25 to rotate, and then the worm gears 22 drive the placing blocks 21 connected with the worm gears 22 to rotate synchronously. In this way, the placing blocks 21 drive the pot containing Buddha Jumps Wall placed on the upper end of the placing blocks 21 to rotate, so as to uniformly cool the pot containing Buddha Jumps Wall. At the same time, the pot containing Buddha Jumps Wall after rotating can automatically adjust the position of Buddha Jumps Wall in the pot, so that Buddha Jumps Wall in the middle of the pot is close to the inner wall of the pot under the action of centrifugal force, thereby accelerating the cooling speed of Buddha Jumps Wall. At the same time, the second driving member 51 drives the adjusting rod 52 to rotate, so that the adjusting rod 52 drives the two horizontal plates 50 to approach each other through the opposite threads arranged on the adjusting rod 52. Then, the two horizontal plates 50 drive the semicircular baffles 53 on the two horizontal plates 50 to approach each other, so that the semicircular baffles 53 gradually approach the pot containing Buddha Jumps Wall. The water flow in the water tank 1 is delivered to the semicircular baffles 53 through the distribution pipe 54 and sprayed to the pot from the inside of the semicircular baffles 53. The water flow from far to near facilitates the evaporation of water vapor in the evaporation space of the pot when the pot is in a high-temperature state, so as to more quickly cool the pot containing Buddha Jumps Wall.
[0028] In another embodiment of the present invention, a plurality of semicircular baffles 53 on the horizontal plate 50 are symmetrically arranged about the placement block 21, and two semicircular baffles 53 located at the same placement block 21 can form a hollow ellipsoid. A water channel 530 is provided inside the semicircular baffle 53, and a plurality of water spray holes 531 are provided on the inner side of the semicircular baffle 53. The water spray holes 531 are connected to the water channel 530. The specific implementation method is as follows: The water pump 40 delivers water from the water tank 1 to the semi-circular baffle 53, and the water flows through the water channel 530 inside the semi-circular baffle 53. At the same time, the water nozzles evenly arranged on the water channel 530 facilitate spraying the water flowing in the water channel 530 onto the can containing Buddha Jumps Over the Wall, thereby achieving water cooling of the can containing Buddha Jumps Over the Wall.
[0029] A water-cooling method for processing Buddha Jumps Over the Wall, applicable to a water-cooling device for processing Buddha Jumps Over the Wall, includes the following steps: Step 1: First, place multiple cans, still at a high temperature after processing Buddha Jumps Over the Wall, onto multiple placement blocks 21 on the placement plate 20. After placing the cans, rotate the pressure plate 32, causing it to rotate the vertical rod 30 on the side of the water tank 1. This allows the pressure plate 32 to engage with the guide rod 34. Then, press down on the pressure plate 32, causing it to push the vertical rod 30 to compress the first spring 31 and descend vertically along the water tank 1. Simultaneously, fix the locking nut 35 to the guide rod 34 via threaded rotation. This causes the locking nut 35 to compress and fix the pressure plate 32, allowing the pressure plate 32 to push down the guide rod 34. When the cover 33 descends and works with the placement block 21 to clamp and fix the Buddha Jumps Over the Wall processing can, the lid of the Buddha Jumps Over the Wall processing can can squeeze the concentration point of the steel wire rope 332, causing the lid of the Buddha Jumps Over the Wall processing can pull the steel wire rope 332, causing the steel wire rope 332 to pull multiple sealing blocks 330 at the same time, causing the sealing blocks 330 to squeeze the second spring 331 to move on the inner wall of the cover 33, thereby causing the sealing blocks 330 to squeeze and seal the joint between the lid of the Buddha Jumps Over the Wall processing can and the can body, preventing water from entering the can during spraying; The second step: after the Buddha jumps over the wall processing tank clamping and fixing and sealing the joint between the tank body and the tank cover, the water pump 40 is operated, so that the water pump 40 sucks the cold water in the water tank 1 through the water inlet pipe 42, and pumps to the distribution pipe 54 and the pressure cover 33 through the water outlet pipe 44, and when the water pump 40 works, the water in the water tank 1 is filtered through the filter 41, so that the pure water flows into the distribution pipe 54 through the water inlet pipe 42, the water pump 40 and the water outlet pipe 44 in turn, so that the distribution pipe 54 guides and transports the water flow into the semicircular baffle 53 and the water inlet interface 333, so that the semicircular baffle 53 sprays water flow to cool the tank body part of the Buddha jumps over the wall processing tank, and the pressure cover 33 sprays water flow to cool the tank cover part of the Buddha jumps over the wall processing tank, and the ice blocks are placed on the ice shelf 43, so that the temperature of the water flow in the water tank 1 is reduced when the ice blocks melt, so that the water flow sprayed by the semicircular baffle 53 and the pressure cover 33 to the Buddha jumps over the wall processing tank is lower in temperature, so as to improve the processing efficiency of the Buddha jumps over the wall, and when the semicircular baffle 53 sprays water flow to cool the tank body part of the Buddha jumps over the wall processing tank, the second driving part 51 drives the adjusting rod 52 to rotate, so that the adjusting rod 52 drives the two horizontal plates 50 to approach each other through the opposite threads arranged thereon, so that the two horizontal plates 50 drive the semicircular baffles 53 arranged thereon to approach each other, so that the semicircular baffles 53 gradually approach the Buddha jumps over the wall processing tank, and the water flow transported into the semicircular baffles 53 through the distribution pipe 54 flows in the water channel 530 arranged in the semicircular baffles 53 and sprays from the water spray hole 531 to the tank body of the Buddha jumps over the wall processing tank, in addition, the first driving part 23 drives the driving shaft 24 to rotate, so that the driving shaft 24 drives the plurality of worms 25 to rotate synchronously, so that the worm 25 drives the worm wheel 22 engaged with it to rotate, so that the worm wheel 22 drives the placement block 21 connected with it to rotate, and then the placement block 21 drives the Buddha jumps over the wall processing tank placed thereon to rotate, when the Buddha jumps over the wall processing tank rotates, the pressure cover 33 can rotate synchronously with the Buddha jumps over the wall processing tank, so that the water flow sprayed by the semicircular baffle 53 uniformly covers the Buddha jumps over the wall processing tank, so that the Buddha jumps over the wall processing tank can be uniformly cooled by the water flow; Third step: after the Buddha jumps over the wall is cooled for a period of time, the Buddha jumps over the wall processing tank temperature is fully reduced, the water pump 40 stop working, while the second drive member 51 drives the adjusting rod 52 reverse rotation, so that the adjusting rod 52 through its set has the opposite screw drive two horizontal plate 50 away from each other, so that the two horizontal plate 50 drive its on semicircular baffle 53 away from each other, so that the semicircular baffle 53 gradually away from the Buddha jumps over the wall processing tank, and the first drive member 23 stop rotating, so that the drive shaft 24 on a plurality of worm 25 stop rotating, so that the worm 25 and worm wheel 22 on the block 21 are locked, in turn, so that the block 21 and placed on the Buddha jumps over the wall processing tank stop rotating, in addition, reverse rotation locking sleeve 35, so that the locking sleeve 35 and guide rod 34 is separated, so that the locking sleeve 35 to the pressure plate 32 is locked fixed, so that the cover 33 and block 21 to the Buddha jumps over the wall processing tank is removed from the clamping fixed, in order to remove the cooled Buddha jumps over the wall processing tank collection.
[0030] The above description of the application only through the way of describing some exemplary embodiments, without doubt, for those skilled in the art, without departing from the spirit and scope of the present invention, can be described in various ways to modify the embodiment. Therefore, the above description and description are illustrative in nature, should not be construed as limiting the scope of the claims of the present invention.
Claims
1. A water-cooling device for processing Buddha Jumps Over the Wall, comprising a water tank (1), wherein a placement assembly (2) is disposed within the water tank (1), characterized in that, A clamping component (3) is provided above the placement component (2). The clamping component (3) is located on one side of the water tank (1). The clamping component (3) and the placement component (2) are used to clamp and fix the jar for processing Buddha Jumps Over the Wall. A water supply component (4) is provided inside the water tank (1). The water supply component (4) is located at the lower end of the placement component (2). A water cooling component (5) is provided at the upper end of the placement component (2). The water cooling component (5) and the clamping component (3) are both connected to the water supply component (4). The water supply component (4) is used to transport water from the water tank (1) to the water cooling component (5) and the clamping component (3) so that the water cooling component (5) and the clamping component (3) spray water onto the jar for processing Buddha Jumps Over the Wall placed on the placement component (2).
2. The water-cooling device for processing Buddha Jumps Over the Wall according to claim 1, characterized in that, The placement assembly (2) includes a placement plate (20). Multiple placement blocks (21) are evenly arranged on the upper end of the placement plate (20) along its length direction. The placement blocks (21) are rotatably arranged on the placement plate (20). Each placement block (21) has a worm gear (22) at its lower end. A first driving member (23) is arranged inside the placement plate (20). The output end of the first driving member (23) is connected to a driving shaft (24) via a coupling. The driving shaft (24) is rotatably arranged inside the placement plate (20). Multiple worms (25) are evenly arranged on the driving shaft (24) along its length direction. The number of worms (25) is the same as the number of worm gears (22). Each worm (25) meshes with one worm gear (22).
3. The water-cooling device for processing Buddha Jumps Over the Wall according to claim 2, characterized in that, The upper end of the placement block (21) is arc-shaped, and the placement block (21) is provided with anti-slip texture.
4. The water-cooling device for processing Buddha Jumps Over the Wall according to claim 3, characterized in that, The clamping assembly (3) includes a vertical rod (30), which is slidably disposed on the outside of the water tank (1). A first spring (31) is disposed between the lower end of the vertical rod (30) and the water tank (1). A pressure plate (32) is disposed at the upper end of the vertical rod (30). Multiple pressure covers (33) are evenly disposed along the length of the lower end of the pressure plate (32). The pressure covers (33) are rotatably disposed at the lower end of the pressure plate (32). The number of pressure covers (33) is the same as the number of placement blocks (21). Two guide rods (34) are symmetrically disposed at the upper end of the placement plate (20). The upper end of the guide rods (34) is slidably disposed inside the pressure plate (32). At least one of the guide rods (34) has a locking sleeve (35) disposed at the upper end in a threaded manner.
5. The water-cooling device for processing Buddha Jumps Over the Wall according to claim 4, characterized in that, The inner wall of the pressure cover (33) is uniformly arranged with a plurality of sealing blocks (330) along the circumference. The sealing blocks (330) are slidably disposed on the inner wall of the pressure cover (33). A second spring (331) is provided between each sealing block (330) and the pressure cover (33). Each sealing block (330) is connected to one end of a steel wire rope (332), and the other ends of each steel wire rope (332) are concentrated at a point. A water inlet (333) is provided on the outer side of the pressure cover (33).
6. The water-cooling device for processing Buddha Jumps Over the Wall according to claim 5, characterized in that, The water supply component (4) includes a water pump (40), which is located in the middle of the lower end of the placement component (2). A filter element (41) is provided in the water tank (1), which is used to filter the water in the water tank (1). The filter element (41) is connected to the water pump (40) through an inlet pipe (42). An ice rack (43) is also provided in the water tank (1). The ice rack (43) is symmetrically arranged about the filter element (41) and located at the bottom of the water tank (1). The water pump (40) is connected to the water cooling component (5) through an outlet pipe (44).
7. A water-cooling device for processing Buddha Jumps Over the Wall according to claim 6, characterized in that, The water-cooling assembly (5) includes two horizontal plates (50). The horizontal plates (50) are symmetrically and slidably arranged on the upper end of the placement assembly (2). Each end of the placement assembly (2) is provided with a second driving member (51). The output end of the second driving member (51) is provided with an adjusting rod (52) through a coupling. The adjusting rod (52) is provided with opposite threads. Each end of the horizontal plate (50) is connected to one end thread. Each horizontal plate (50) is provided with multiple semi-circular baffles (53) evenly arranged along its length. The multiple semi-circular baffles (53) on the same horizontal plate (50) are connected to each other through a distribution pipe (54). The distribution pipe (54) is connected to the water pump (40) through the water outlet pipe (44).
8. A water-cooling device for processing Buddha Jumps Over the Wall according to claim 7, characterized in that, The multiple semicircular baffles (53) on the horizontal plate (50) are symmetrically arranged about the placement block (21), and two semicircular baffles (53) located at the same placement block (21) can form a hollow ellipsoid. A water channel (530) is provided inside the semicircular baffle (53), and multiple water spray holes (531) are provided on the inner side of the semicircular baffle (53). The water spray holes (531) are connected to the water channel (530).
9. A water-cooling method for processing Buddha Jumps Over the Wall, characterized in that, The water-cooling method for processing Buddha Jumps Over the Wall is applicable to the water-cooling device for processing Buddha Jumps Over the Wall as described in claim 8, and includes the following steps: Step 1: First, place multiple cans that are still at a high temperature after processing Buddha Jumps Over the Wall onto multiple placement blocks (21) on the placement plate (20). After the cans for processing Buddha Jumps Over the Wall are placed, rotate the pressure plate (32) so that the pressure plate (32) drives the vertical rod (30) to rotate on the side of the water tank (1) so that the pressure plate (32) cooperates with the guide rod (34). At this time, press down on the pressure plate (32) so that the pressure plate (32) drives the vertical rod (30) to squeeze the first spring (31) and descend vertically along the water tank (1). At the same time, fix the locking nut (35) on the guide rod (34) by rotating the thread so that the locking nut (35) squeezes and fixes the pressure plate (32) so that the pressure plate (32) can be pressed down. The plate (32) drives the pressure cover (33) to descend and cooperate with the placement block (21) to clamp and fix the Buddha Jumps Over the Wall processing can. When the pressure cover (33) and the placement block (21) clamp and fix the Buddha Jumps Over the Wall processing can, the can lid of the Buddha Jumps Over the Wall processing can can squeeze the concentration point of the wire rope (332), so that the can lid of the Buddha Jumps Over the Wall processing can pull the wire rope (332), so that the wire rope (332) pulls multiple sealing blocks (330) at the same time, so that the sealing blocks (330) squeeze the second spring (331) to move on the inner wall of the pressure cover (33), so that the sealing blocks (330) squeeze and seal the joint between the can lid and the can body of the Buddha Jumps Over the Wall processing can, preventing water from entering the can during spraying. Step 2: After clamping and fixing the jar used for Buddha Jumps Over the Wall processing and sealing the joint between the jar body and the jar lid, the water pump (40) is run, so that the water pump (40) draws the cool water in the water tank (1) through the inlet pipe (42) and pumps it through the outlet pipe (44) to the distribution pipe (54) and the pressure cover (33). When the water pump (40) is working, the water in the water tank (1) is filtered by the filter element (41), so that the pure water flows through the inlet pipe (42), the water pump (40) and the outlet pipe (44) in sequence into the distribution pipe (54), so that the distribution pipe (54) can process the water flow into it. The water is diverted and conveyed through a semi-circular baffle (53) and a water inlet (333) so that the water jet from the semi-circular baffle (53) cools the body of the Buddha Jumps Over the Wall processing container, while the water jet from the pressure cover (33) cools the lid of the Buddha Jumps Over the Wall processing container. By placing ice blocks on the ice rack (43), the temperature of the water in the water tank (1) is reduced when the ice blocks melt, so that the water jet from the semi-circular baffle (53) and the pressure cover (33) sprays onto the Buddha Jumps Over the Wall processing container is even lower in temperature, thereby improving the processing efficiency of Buddha Jumps Over the Wall. At the same time, the water jet from the semi-circular baffle (53) cools the body of the Buddha Jumps Over the Wall processing container. At the same time, the second driving member (51) drives the adjusting rod (52) to rotate, so that the adjusting rod (52) drives the two horizontal plates (50) to move closer to each other through the opposite thread provided on it, so that the two horizontal plates (50) drive the semi-circular baffles (53) on them to move closer to each other, so that the semi-circular baffles (53) gradually approach the Buddha Jumps Over the Wall processing tank, and the water flow delivered into the semi-circular baffles (53) through the distribution pipe (54) flows in the water channel (530) provided in the semi-circular baffles (53) and is sprayed onto the tank body of the Buddha Jumps Over the Wall processing tank from the spray hole (531). In addition, the first driving member (23) drives the driving rod to rotate. The rotating shaft (24) causes the drive shaft (24) to drive multiple worms (25) on it to rotate synchronously, thereby causing the worm (25) to drive the worm wheel (22) meshing with it to rotate, causing the worm wheel (22) to drive the placement block (21) connected to it to rotate, thereby causing the placement block (21) to drive the Buddha Jumps Over the Wall processing can placed on it to rotate. When the Buddha Jumps Over the Wall processing can rotate, the pressure cover (33) can rotate synchronously with the Buddha Jumps Over the Wall processing can, so that the water flow sprayed by the semi-circular baffle (53) can evenly cover the Buddha Jumps Over the Wall processing can, so that the Buddha Jumps Over the Wall processing can dissipate heat evenly through the water flow. Step 3: After the Buddha Jumps Over the Wall has been water-cooled for a period of time, the temperature of the processing container is measured. After the temperature of the processing container has dropped sufficiently, the water pump (40) stops working. At the same time, the second driving component (51) drives the adjusting rod (52) to rotate in the opposite direction, so that the adjusting rod (52) drives the two horizontal plates (50) to move away from each other through the opposite thread on it. This causes the two horizontal plates (50) to drive the semi-circular baffles (53) on them to move away from each other, so that the semi-circular baffles (53) gradually move away from the processing container of Buddha Jumps Over the Wall. The first driving component (23) stops rotating, so that the drive shaft (24) on it... Multiple worm gears (25) stop rotating, thereby locking the placement block (21) with the worm wheel (22), and thus stopping the rotation of the placement block (21) and the Buddha Jumps Over the Wall processing jar placed on it. In addition, the locking sleeve (35) is rotated in the opposite direction, causing the locking sleeve (35) to separate from the guide rod (34), thereby releasing the locking sleeve (35) from locking the pressure plate (32), and releasing the clamping fixation of the pressure cover (33) and the placement block (21) on the Buddha Jumps Over the Wall processing jar, so that the cooled Buddha Jumps Over the Wall processing jar can be removed and collected.
Citation Information
Patent Citations
Multi-stage water cooling device for processing Fotiaoqiang wall
CN222393144U