A ceiling-mounted air cooler for cold storage in a broiler processing workshop

By installing a turbulence device on the evaporative cooler and optimizing the ceiling design, the problem of frost formation on the ceiling-mounted evaporative cooler in high humidity environments was solved, thereby improving the stability of the storage temperature and maintenance efficiency.

CN121206808BActive Publication Date: 2026-03-06FUJIAN SUNNER FOOD CO LTD
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Patent Information

Application Number
CN202511785212.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-12-01
Publication Date
2026-03-06
Estimated Expiration
2045-12-01

AI Technical Summary

Technical Problem

Existing ceiling-mounted air coolers for cold storage are prone to frost formation in high humidity environments. Electric defrosting consumes a lot of energy and affects the stability of the storage temperature. Maintenance requires disassembling the ceiling, resulting in long downtime.

Method used

Installing a turbulence device on the evaporative cooler, with the turbulence device positioned between the fins, causes the fins to undergo elastic deformation through airflow impact, creating localized turbulence, disrupting the continuity of the condensate film, and delaying the nucleation and growth of frost crystals; the ceiling device design allows for maintenance without disassembling the ceiling.

Benefits of technology

It effectively delays the nucleation and growth of frost crystals, ensures stable storage temperature, shortens maintenance time, and reduces operating costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a ceiling-mounted air cooler for a broiler processing workshop cold storage, comprising an air cooler with a ceiling device installed above it. An internal casing is housed within the air cooler, and several protective covers are installed on the surface of the casing, each covering a fan. A controller is located next to one of the protective covers. A dustproof mesh swivel joint is nested outside the protective covers. A water-guiding assembly is fixed to the bottom of the casing. An even number of auxiliary suspension rods are installed on the surface of the casing. An even number of connecting lugs are provided on both sides of the casing. A flow-dispersing device is nested at the top of the casing. A cover plate is installed inside the flow-dispersing device, and an even number of shaft mounting seats are evenly installed on both sides of the cover plate. This invention, by installing the flow-dispersing device on the casing and positioning it perpendicular to the plane of the fins, causes the fins to elastically deform within the mounting seats under the impact of airflow. This creates localized turbulence in the surrounding air, disrupting the continuity of the condensate film, slowing down the nucleation and growth rate of frost crystals, and indirectly ensuring the stability of the storage temperature.
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Description

Technical Field

[0001] This invention relates to the field of condenser technology, specifically to a ceiling-mounted air cooler for a broiler processing workshop cold storage. Background Technology

[0002] In broiler processing, ceiling-mounted air coolers are suitable for different stages: the DL type is used at around 0℃ for cooling and temporary storage of cut chicken to maintain freshness; the DD type is suitable for cold storage at -18℃ for storing pre-processed products; and the DJ type is used for quick-freezing warehouses at -25℃ and below to rapidly freeze chicken and lock in freshness. As a D-series air cooler, its ceiling installation saves space, provides uniform cooling, and meets the precise temperature control requirements of each processing stage, providing a reliable guarantee for chicken quality.

[0003] However, the existing technology has the following shortcomings: the current ceiling-mounted air coolers for cold storage have obvious shortcomings in use: the evaporator is prone to frost in high humidity environments. If electric heating is used for defrosting, not only will the energy consumption be high, but the cooling will also be interrupted, affecting the stability of the storage temperature; in addition, when the evaporator, water tray and other components need to be maintained and repaired, the ceiling must be disassembled, resulting in long downtime and further increasing the operating cost. Summary of the Invention

[0004] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and other accompanying drawings.

[0005] The purpose of this invention is to overcome the above-mentioned shortcomings and provide a ceiling-mounted air cooler for cold storage in broiler processing workshops. By installing a turbulence device on the casing and placing the turbulence device between the fins, the fins undergo elastic deformation under the impact of airflow, causing the surrounding air to form local turbulence, disrupting the continuity of the condensate film, delaying the nucleation and growth rate of frost crystals, and indirectly ensuring the stability of the storage temperature.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a ceiling-mounted air cooler for a broiler processing workshop cold storage, comprising an air cooler, a ceiling device installed above the air cooler, an internal housing inside the air cooler, several protective covers installed on the surface of the housing, each protective cover containing a fan, a controller located next to one of the protective covers, a dustproof mesh swivel joint nested outside the protective cover, a water guiding assembly fixed to the bottom of the housing, and an even number of auxiliary suspension rods installed on the surface of the housing. An even number of connecting lugs are provided on both sides of the casing, and a baffle device is nested on the top of the casing. A cover plate is installed inside the baffle device, and an even number of shaft supports are evenly installed on both sides of the cover plate. Each shaft support has a rotating block, and each rotating block has a locking bolt. An even number of upper connecting cylinders are fixed to the surface of the cover plate. Several baffles are fixed to the inner surface of the cover plate, and each baffle has a fixing seat. A connecting cover is connected to the fixing seat, and a baffle rod is installed on the connecting cover. The cover plate is mainly used to adapt to the slots on the upper surface of the casing. The purpose of the slots is to allow the baffles fixed below the cover plate to be positioned within the casing, thereby disturbing the airflow between the fins and disrupting the conditions for frost growth.

[0007] A further improvement to the present invention is that the fixed base has a seat groove, and both ends of the seat groove are embedded with arc-shaped top springs. A shaft is provided inside the diverting rod, and a diverting plate is embedded outside the shaft. A limiting block is fixed to the top of the shaft. The arc-shaped top springs are mainly used to fix the two ends of the limiting block, thereby limiting the swing of the diverting plate on the shaft and preventing excessive swing angle of the diverting plate from causing airflow blockage.

[0008] In a further improvement to the present invention, the limiting movable block is nested in the slot on the seat, and the two sides of the limiting movable block are fixed by the arc-shaped top springs. The shaft is connected to the connecting cover, the connecting cover is connected to the fixed seat, the fixed seat is fixed to the inner surface of the cover plate, the cover plate cooperates with the body shell, and the body shell is connected to the ceiling device through the connecting lugs. The body shell is mainly hoisted by auxiliary lifting rods and connecting lugs. The auxiliary lifting rods are separated by a threaded rotation mechanism. After the fixed rod is separated, the body shell is raised and lowered as a whole with the cooperation of the connecting lugs.

[0009] A further improvement to the present invention includes an inner cavity within the casing, in which an evaporator is installed. An even number of actuating blocks are fixed to the rear wall of the casing, and a water tray engages in front of each actuating block. A drain box is fixed to the outer wall of the water tray. The water tray has a certain incline, allowing condensate to flow into the drain box, where the collected water is then guided and discharged.

[0010] A further improvement to the present invention includes an evaporator frame inside the evaporator, with a distributor installed between the evaporator frames. One end of the distributor is connected to a liquid inlet pipe, and the other end is connected to a gas return pipe. Several fins are embedded in the distributor, and a flow guiding device is provided in front of the fins. The fins are fixed to the surface of the distributor and arranged in a straight line.

[0011] A further improvement to the present invention is that the flow guiding device is provided with an even number of auxiliary fixing plates, and an even number of support rod through blocks are installed on the even number of auxiliary fixing plates and the outer frame wall of the evaporator. Support rods are erected between the support rod through blocks, and several guide plates are fixed to the surface of the support rods. Support spring blocks are fixed to both ends of the support rods, and top blocks are connected to the ends of the support spring blocks. The support rods are mainly used to fix several guide plates, which are separated by the auxiliary fixing plates, and their front faces the fan.

[0012] In a further improvement to the present invention, the top block is fixed to the inner wall surface of the evaporator outer frame, several guide plates are separated by auxiliary fixing plates, the spring block has its own spring, the mounting rod is mounted between the evaporator outer frames through the rod through block, the guide plates cooperate with the fins, the distributor and the fins are turbulently stirred by the vertical baffle, and the drain box is connected to the water guiding assembly. The spring on the spring block is mainly used to connect with the top block, thereby limiting and supporting the maximum swing of the mounting rod and preventing the guide plates from tilting.

[0013] A further improvement to the present invention is that a fixed plate is provided inside the water guiding assembly, a first guide groove is formed on the fixed plate, a second guide groove is formed below the first guide groove, and a collection box is fixed to the outer surface of the end of the second guide groove. An even number of water guiding pipes are installed on the collection box. The first guide groove is in a semi-closed state, and the second guide groove is in the state of an inclined hollow groove on a plate, which allows the first guide groove plate to guide condensate water. The collection box is directly opposite the drain box and cooperates with it. The second guide groove is mainly opened on the lower partition of the fixed plate, and adopts an inclined groove method, so that the condensate and water droplets on the lower partition slide down into the collection box to form a collection, minimizing the hanging dripping surface of condensate water.

[0014] A further improvement to the present invention includes a ceiling device with a hanging frame. A fixed drive plate is positioned at the center of the hanging frame, and a bidirectional winding machine is mounted on the lower surface of the fixed drive plate. Auxiliary rope pulleys are provided on both sides of the bidirectional winding machine. Grooved beams are fixed at each of the four corners of the hanging frame, and an auxiliary lifting slide is supported between an even number of grooved beams. An even number of mounting rods are installed below the auxiliary lifting slides. The grooved beams are fixed at the four corners of the hanging frame and allow the auxiliary lifting slides to move vertically through their built-in slots. The mounting rods are all located on the outer wall surface of the grooved beams.

[0015] In a further improvement to the invention, the lifting rod on the seat is connected to the connecting lug, the auxiliary lifting slide is suspended by the bidirectional winding machine cable, the auxiliary lifting slide is vertically displaced on the grooved beam, the bidirectional winding machine cable passes through the auxiliary rope pulley, and the lifting frame and the fixed drive plate are both fixed to the roof with expansion bolts. The auxiliary rope pulley is mainly used to provide auxiliary winding for the bidirectional winding machine cable, thereby preventing cable deviation and causing the bidirectional winding machine to cross the cable during winding.

[0016] Compared with the prior art, the present invention has the following beneficial effects;

[0017] 1. This invention installs a turbulence device on the housing and makes the turbulence device perpendicular to the plane between the fins. Under the impact of the airflow, the fins undergo elastic deformation in the fixed seat, causing the surrounding air to form local turbulence, which disrupts the continuity of the condensate film, slows down the nucleation and growth rate of frost crystals, and indirectly ensures the stability of the storage temperature.

[0018] 2. This invention installs the ceiling device on the roof, requiring only three steps for routine maintenance: detach the auxiliary hanging rod and connected pipes, trigger the bidirectional winding machine to release the cable, and the air cooler below the mounting rod will descend with the cooperation of the auxiliary lifting slide and the grooved beam rod for personnel to inspect. This design allows maintenance to be completed without disassembling the ceiling, effectively shortening downtime. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of a ceiling-mounted air cooler for a broiler processing workshop according to the present invention;

[0020] Figure 2 This is a front view schematic diagram of the air cooler in the ceiling-mounted air cooler of a broiler processing workshop according to the present invention;

[0021] Figure 3 This is a rear view schematic diagram of the casing structure of a ceiling-mounted air cooler for a broiler processing workshop according to the present invention.

[0022] Figure 4 This is a schematic diagram of the internal structure of the inner cavity of the shell of a ceiling-mounted air cooler for a broiler processing workshop according to the present invention.

[0023] Figure 5 This is a three-dimensional structural diagram of the water guiding component in the ceiling-mounted air cooler of a broiler processing workshop according to the present invention;

[0024] Figure 6 This is a bottom view of the evaporator structure in a ceiling-mounted air cooler for a broiler processing workshop according to the present invention.

[0025] Figure 7 For the present invention Figure 6 A magnified schematic diagram of the partial structure at point A in the middle;

[0026] Figure 8 This is a schematic diagram of the internal cross-sectional structure of the fixed base in the ceiling-mounted air cooler of the cold storage in a broiler processing workshop according to the present invention;

[0027] Figure 9 This is a partial three-dimensional structural diagram of the air guiding device in the ceiling-mounted air cooler of a broiler processing workshop according to the present invention;

[0028] Figure 10 For the present invention Figure 9 A magnified schematic diagram of the local structure at point B;

[0029] Figure 11 This is a three-dimensional structural diagram of the ceiling device in a cold storage evaporator for a broiler processing workshop according to the present invention.

[0030] In the diagram: Ceiling assembly-1, Air cooler-2, Hanging frame-11, Fixed drive plate-12, Two-way winding machine-13, Auxiliary rope pulley-14, Grooved beam rod-15, Auxiliary lifting slide-16, On-seat lifting rod-17, Housing-21, Controller-22, Protective cover-23, Dustproof net swivel joint-24, Fan-25, Water guiding assembly-26, Auxiliary lifting rod-27, Connecting lifting lug-28, Turbidifier-29, Housing cavity-211, Evaporator-212, Actuating stop-block-213, Water tray-214, Drainage box-215, Fixed plate base-261, First guide groove-262, Second guide groove-263, Collection box-264, Water guide pipe-265, Shaft base-291, Rotating block-292, Lock 293, 294, 295, 2121, 2122, 2123, 2124, 2125, 2126, 2941, 2941, 2941, 2941, 2941, 2941, 2941, 2941, 2941, 2941, 2941, 2941, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 2126, 29411, 29411, 29413, 29413, 29413, 294133, 294133. Detailed Implementation

[0031] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0032] Furthermore, in the description of this invention, it should be understood that the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0033] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral unit; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. However, specifying a direct connection indicates that the two main bodies are not connected through a transitional structure, but rather formed as a whole through a connecting structure. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0034] In this invention, unless otherwise expressly specified and limited, the first feature "on" or "below" the second feature may be in direct contact with the first and second features, or indirect contact through an intermediate medium. In the description of this specification, references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0035] The present invention will be further described below with reference to the accompanying drawings: Example 1

[0036] As attached Figure 1 To be continued Figure 8 As shown:

[0037] This embodiment provides a ceiling-mounted air cooler for a broiler processing workshop cold storage, including an air cooler 2, a ceiling device 1 installed above the air cooler 2, an internal housing 21 inside the air cooler 2, several protective covers 23 installed on the surface of the housing 21, each of the protective covers 23 covering a fan 25, a controller 22 installed next to one of the protective covers 23, a dustproof mesh swivel seat 24 nested outside the protective cover 23, a water guiding component 26 fixed at the bottom of the housing 21, an even number of auxiliary hanging rods 27 installed on the surface of the housing 21, an even number of connecting lugs 28 on both sides of the housing 21, and a turbulence device 29 nested at the top of the housing 21.

[0038] Furthermore, the auxiliary suspension rods 27 are arranged in a straight line on the upper surface of the housing 21, and are used to connect with the external suspension rods by thread, thereby completing the auxiliary reinforcement of the housing 21 and forming a double-sided protection for the suspension of the housing 21.

[0039] Furthermore, the dustproof net and the net fixing plate can be threaded and fixed on the dustproof net screw seat 24, thereby completing the dustproof work when the cold air is output.

[0040] The casing 21 has an inner cavity 211, in which an evaporator 212 is installed. At least two actuating blocks 213 are fixed on the rear wall of the casing 21. A water tray 214 is engaged in front of the actuating blocks 213. A drain box 215 is fixed on the outer wall of the water tray 214.

[0041] Furthermore, the toggle block 213 is mainly hinged to the rear wall surface of the housing 21. Through its own hinged swing, it limits the water tray 214, preventing the water tray 214 from shifting, and also facilitates the disassembly and assembly of the water tray 214.

[0042] Furthermore, the drain box 215 is installed on the outer wall of the water tray 214, and the two are integrated structures. The drain box 215 is connected to the collection box 264 below through a pipe.

[0043] The water guiding component 26 is provided with a fixed plate seat 261, a first guide groove 262 is formed on the fixed plate seat 261, a second guide groove 263 is formed below the first guide groove 262, a collection box 264 is fixed on the outer surface of the end of the second guide groove 263, and an even number of water guiding pipes 265 are installed on the collection box 264.

[0044] Furthermore, the fixed plate base 261 has a double-layer partition. The first partition has a first guide groove 262 formed in the fixed plate base 261, while the second guide groove 263 is opened on the second partition and is opened at an angle to minimize the adhesion of condensate. According to the angle setting of the second guide groove 263, the condensate generated below the partition is guided into the collection box 264.

[0045] Furthermore, the collecting box 264 is formed in the fixed plate base 261, and the collected water flow is discharged from the water pipe 265 through the cooperation of the first guide groove 262 and the second guide groove 263.

[0046] The device 29 includes a cover plate 294, on which an even number of shaft supports 291 are evenly installed on both sides. Each shaft support 291 is equipped with a rotating block 292, and each rotating block 292 is equipped with a locking bolt 293. An even number of plate connecting cylinders 295 are fixed on the surface of the cover plate 294. Several spoilers 2941 are fixed on the inner surface of the cover plate 294. Each spoiler 2941 has a fixed seat 29411, and a connecting cover 29412 is connected to the fixed seat 29411. A spoiler rod 29413 is installed on the connecting cover 29412.

[0047] Furthermore, the fixing seat 29411 is mainly fixed to the inner surface of the cover plate 294 and is arranged in a "V" shape. Multiple sets are provided to complete the insertion and matching of the mating fins 2125 at the intervals.

[0048] The evaporator 212 is provided with an evaporator frame 2121, and a liquid distributor 2124 is installed between the evaporator frames 2121. One end of the liquid distributor 2124 is connected to an inlet pipe 2122, and the other end of the liquid distributor 2124 is connected to a return gas pipe 2123. Several fins 2125 are embedded on the liquid distributor 2124, and a flow guiding device 2126 is provided in front of the fins 2125.

[0049] Furthermore, the fin spacing 2125 is typically 2-3 mm, the fin spacing between fins 2125 is 6-10 mm, and the dividing rod 29413 is perpendicular to the interval between the fin planes.

[0050] The fixed base 29411 has a seat groove 294111 inside, and both ends of the seat groove 294111 are embedded with arc-shaped top springs 294112. The split rod 29413 is provided with a shaft 294132, and the shaft 294132 is embedded with a disc 294131. The top of the shaft 294132 is fixed with a limit block 294133.

[0051] Furthermore, the arc-shaped top spring 294112 is disposed at both ends of the seat groove 294111, and is engaged with both ends of the limiting movable block 294133 by the arc-shaped top spring 294112, thereby limiting the range of motion of the limiting movable block 294133 in the seat groove 294111.

[0052] Furthermore, the sway plate 294131 fixed on the shaft 294132 is a strip with a certain angle and is divided into two pieces with a hollow sleeve in the middle. It is embedded in the surface of the shaft 294132 and works with the wind to complete the airflow disturbance and destroy the conditions for frost growth.

[0053] The specific working principle is as follows:

[0054] In this invention, the air cooler 2 is suspended by a ceiling device 1. An evaporator 212, installed in the inner cavity 211 of the casing 21, generates cooling through the cooperation of the evaporator frame 2121, liquid distributor 2124, liquid inlet pipe 2122, return pipe 2123, and fins 2125. The generated cold air is output by a fan 25. A dustproof net is installed on the dustproof net screw mount 24 around the outer casing 23 of the fan 25 to prevent dust output. During gas operation, a flow-dispersing device 29 is activated. The baffles 294131 on the flow-dispersing rod 29413 positioned between the fins 2125 contact the airflow, causing the limiting movable block 294133 at the bottom of the shaft 294132 to engage in the mounting groove 294111. The device is active and supported, buffered, and reset by arc-shaped top springs 294112 on both sides. During refrigeration operation, the fan drives the airflow through the fins 2125 to form a swirl plate 294131. The swirl plate 294131 undergoes elastic deformation due to the impact of the airflow, which drives the surrounding air to form local turbulence, disrupting the continuity of the condensate film and delaying the nucleation and growth rate of frost crystals. When it is necessary to replace or adjust the swirl plate 294131, it is only necessary to remove the locking bolt 293 in the rotating block 292 installed on the shaft seat 291 on the surface of the housing 21, so that the locking bolt 293 is separated from the connecting cylinder 295 on the plate, and then the cover plate 294 is directly removed from the slot on the housing 21, and the swirl plate 2941 is removed together. Example 2

[0055] As attached Figure 2 Appendix Figure 6 Appendix Figure 9 To be continued Figure 10 As shown:

[0056] The air cooler 2 has a housing 21 inside, and several protective covers 23 are installed on the surface of the housing 21. Each protective cover 23 is covered with a fan 25. A controller 22 is installed next to one of the protective covers 23. A dustproof mesh screw seat 24 is nested outside the protective cover 23. A water guide component 26 is fixed at the bottom of the housing 21. An even number of auxiliary hanging rods 27 are installed on the surface of the housing 21. An even number of connecting lugs 28 are provided on both sides of the housing 21. A turbulence device 29 is nested at the top of the housing 21. An evaporator frame 2121 is installed inside the evaporator 212. A liquid distributor 2124 is installed between the evaporator frames 2121. One end of the liquid distributor 2124 is connected to an inlet pipe 2122. The other end of the liquid distributor 2124 is connected to a return pipe 2123. Several fins 2125 are embedded on the liquid distributor 2124. A flow guide device 2126 is provided in front of the fins 2125.

[0057] The flow guiding device 2126 is provided with an even number of auxiliary fixing plates 21261. An even number of support rod through blocks 21262 are installed on the even number of auxiliary fixing plates and the wall of the evaporator outer frame 2121. A support rod 21264 is erected between the support rod through blocks 21262. Several guide plates 21265 are fixed on the surface of the support rod 21264. Spring blocks 21266 are fixed at both ends of the support rod 21264. A top block 21263 is connected to the end of the spring block 21266.

[0058] Furthermore, the support rods 21264 pass through the support rod through block 21262 and are limited at both ends to the outer wall of the evaporator frame 2121. At least three guide plates 21265 are fixed on the surface of each rod, and the guide plates 21265 are separated by the auxiliary fixing plate 21261.

[0059] Furthermore, the surface of the support spring block 21266 is equipped with a support spring. By connecting the end of the support spring to the top block 21263, it is subjected to force, thereby allowing the guide plate 21265 on the mounting rod 21264 to form a support and reset when blown by the flowing gas. At the same time, the guide plate 21265 uses gas to complete automatic angle adjustment to prevent continuous directional output.

[0060] The specific working principle is as follows:

[0061] In this invention, when the air cooler 2 is working, the fan 25 works in conjunction with the internal structure of the housing 21 to complete the operation. During the operation, the air guide device 2126 located in front of the fins 2125 blows the guide plate 21265 with the assistance of the flowing air. During the blowing process, the spring blocks 21266 set at both ends of the support rod 21264 provide support for it and apply pressure to the guide plate 21265 according to the size of the airflow to make it swing. At the same time, the spring blocks 21266 are fixed on the top block 21263, forming a swing support and reset function for the support rod 21264, preventing the output gas from blowing directly. With the change of the angle of the spring blocks 21266, the fan 25 completes the airflow output work at different angles. Example 3

[0062] As attached Figure 2 Appendix Figure 11 As shown:

[0063] The ceiling device includes a hanging frame 11, a fixed drive plate 12 in the center of the hanging frame 11, a bidirectional winding machine 13 on the lower surface of the fixed drive plate 12, auxiliary rope wheels 14 on both sides of the bidirectional winding machine 13, grooved beam rods 15 fixed at the four corners of the hanging frame 11, an auxiliary lifting slide 16 between an even number of grooved beam rods 15, and an even number of seat-mounted lifting rods 17 installed below the auxiliary lifting slide 16.

[0064] Furthermore, the bidirectional winding machine 13 can be operated by hand, mainly to realize the synchronous winding of the two cables, thereby driving its auxiliary lifting slide 16 to rise or fall vertically on the grooved beam 15.

[0065] Furthermore, the auxiliary lifting slide 16 is installed on the grooved beam 15 by a snap-fit ​​method. The grooved beam 15 has a certain arc groove at the grooved part of its outer wall. The arc groove allows the lifting rod 17 on the seat to be raised and lowered together.

[0066] The air cooler 2 has a housing 21 inside, and several protective covers 23 are installed on the surface of the housing 21. Each protective cover 23 is covered with a fan 25. A controller 22 is installed next to one of the protective covers 23. A dustproof mesh swivel seat 24 is nested outside the protective cover 23. A water guiding component 26 is fixed at the bottom of the housing 21. An even number of auxiliary hanging rods 27 are installed on the surface of the housing 21. An even number of connecting lugs 28 are provided on both sides of the housing 21. A turbulence device 29 is nested at the top of the housing 21.

[0067] The specific working principle is as follows:

[0068] This invention uses expansion bolts to fix the suspended frame 11 and the fixed drive plate 12 to the roof. Then, the grooved beam rods 15 fixed at the four corners are engaged with the auxiliary lifting slide 16. The seat-mounted lifting rod 17 fixed on the auxiliary lifting slide 16 is connected to the connecting lug 28 on the housing 21. During maintenance, the auxiliary lifting rod 27 on the housing 21 is disassembled, and the connected pipes and wiring harnesses are plugged and unplugged. Then, the handheld console of the bidirectional winding machine 13 is operated to release or wind up the cable. The cable passes through the auxiliary rope wheel 14 and moves the auxiliary lifting slide 16 up or down in the grooved beam rod 15. Thus, the height of the housing 21 can be adjusted without removing the ceiling, which facilitates the inspection and maintenance of the air cooler.

[0069] It should be understood that the embodiments disclosed herein are not limited to the specific processing steps or materials disclosed herein, but should be extended to equivalent substitutions of such features as understood by those skilled in the art. It should also be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting.

[0070] The term "embodiment" in this specification means that a specific feature or characteristic described in connection with an embodiment is included in at least one embodiment of the invention. Therefore, phrases or "embodiments" appearing in various places throughout the specification do not necessarily refer to the same embodiment.

[0071] Furthermore, the described features or characteristics can be incorporated into one or more embodiments in any other suitable manner. In the above description, specific details, such as thickness, quantity, etc., are provided to provide a comprehensive understanding of embodiments of the invention. However, those skilled in the art will understand that the invention can be implemented without the aforementioned specific details or may be implemented using other methods, components, materials, etc.

Claims

1. A broiler processing plant cooler ceiling ceiling mounted air cooler characterized by, Including the air cooler (2), the ceiling device (1) is installed above the air cooler (2), the organism shell (21) is provided in the air cooler (2), the organism shell (21) surface is provided with a plurality of shroud (23), the shroud (23) all are provided with fan (25), one of the shroud (23) is provided with controller (22), the shroud (23) is nested with dust screen screw joint seat (24) outside, the organism shell (21) bottom is fixed with water guide assembly (26), the organism shell (21) surface is provided with even root auxiliary boom (27), the organism shell (21) both sides are provided with even a plurality of connecting lug (28), the organism shell (21) top is nested with the turbulence device (29), the turbulence device (29) is provided with cover plate (294), the cover plate (294) both sides are evenly provided with even root axle fixed seat (291), the axle fixed seat (291) all are provided with rotating block (292), the rotating block (292) all are installed with lock bolt (293), the cover plate (294) surface is fixed with even root board on the bolt cylinder (295), the cover plate (294) inner surface is fixed with a plurality of turbulence generators (2941), the turbulence generator (2941) is provided with fixed seat (29411), the fixed seat (29411) is connected with connecting cover (29412), the connecting cover (29412) is installed with the disturbance bar (29413), the fixed seat (29411) is provided with seat on the clamping groove (294111), the seat on the clamping groove (294111) both ends are embedded with arc top spring (294112), the disturbance bar (29413) is provided with shaft (294132), the shaft (294132) is embedded with turbulence piece (294131), the shaft (294132) top is fixed with limit movable block (294133), the limit movable block (294133) is nested in the seat on the clamping groove (294111), the limit movable block (294133) both sides are top fixed by the arc top spring (294112), the shaft (294132) is connected with the connecting cover (29412), the fixed seat (29411) is fixed in the cover plate (294) inner surface, the organism shell (21) is provided with shell cavity (211), the shell cavity (211) is installed with evaporator (212), the evaporator (212) is provided with evaporator outer frame (2121), the evaporator outer frame (2121) is installed with distributor (2124), the distributor (2124) is embedded with a plurality of fins (2125), the disturbance bar (29413) is arranged between the fin (2125). The cover plate (294) cooperates with the organism shell (21), the organism shell (21) is connected with the ceiling device (1) through the connecting lug (28). ​ ​ ​ ​ ​ ​ 2. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 1 wherein: ​ 3. A broiler processing plant cooler ceiling ceiling mounted air cooler as claimed in claim 2 wherein: The back wall of the body shell (21) is fixed with even number of push block (213), the front of push block (213) is clamped with water tray (214), the outer wall of water tray (214) is fixed with drainage box (215).

4. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 3 wherein: One end of the distributor (2124) is connected with liquid inlet pipe (2122), the other end of the distributor (2124) is connected with back gas pipe (2123), the front of fin (2125) is provided with flow guide device (2126).

5. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 4 wherein: The flow guide device (2126) is provided with even number of auxiliary fixed plates (21261), even number of auxiliary fixed plates (21261) and the wall of evaporator outer frame (2121) are both installed with even number of frame rod penetrating blocks (21262), the frame rod penetrating blocks (21262) are erected with frame rod (21264), the surface of frame rod (21264) is fixed with a plurality of guide pieces (21265), the both ends of frame rod (21264) are fixed with support spring block (21266), the tail end of support spring block (21266) is connected with top block (21263).

6. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 5 wherein: The top block (21263) is fixed on the inner wall surface of evaporator outer frame (2121), a plurality of guide pieces (21265) are separated by auxiliary fixed plates (21261), the support spring block (21266) is provided with support spring, the frame rod (21264) is erected between the evaporator outer frame (2121) through the frame rod penetrating block (21262), the guide piece (21265) cooperates with the fin (2125), the drainage box (215) is connected into the water guide assembly (26).

7. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 6 wherein: The water guide assembly (26) is provided with fixed disc seat (261), the fixed disc seat (261) is formed with first guide groove (262), the lower part of first guide groove (262) is formed with second guide groove (263), the outer surface of the tail end of second guide groove (263) is fixed with collection box (264), a plurality of water guide pipes (265) are installed on the collection box (264), the second guide groove (263) is a plate on inclined hollow groove state, which is used for guiding the condensate water of first guide groove plate body, the upper part of collection box (264) is opposite to drainage box (215) and cooperates with it.

8. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 2 wherein: The ceiling device (1) is provided with hanging frame (11), the middle position of hanging frame (11) is provided with fixed drive plate (12), the lower surface of fixed drive plate (12) is installed with bidirectional winding machine (13), the both sides of bidirectional winding machine (13) are provided with auxiliary rope wheel (14), the four corners of hanging frame (11) are fixed with grooved beam rod (15), a plurality of grooved beam rods (15) are erected with auxiliary lifting slide (16), a plurality of seat lifting rods (17) are installed below auxiliary lifting slide (16).

9. A broiler processing plant chill room ceiling mounted air cooler as claimed in claim 8 wherein: The lifting rod (17) is connected to the connecting lifting lug (28), the auxiliary lifting slide (16) is lifted by the bidirectional winding machine (13) cable, the auxiliary lifting slide (16) vertically displaces on the beam rod (15) with a groove, the bidirectional winding machine (13) cable penetrates through the auxiliary rope wheel (14), and the lifting frame (11) and the fixed driving plate (12) are fixed on the roof by expansion bolts.

Citation Information

Patent Citations

  • Air cooling type heat exchanger structure with shunting and heat conduction functions

    CN120846111A

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    CN212274687U