Refrigeration equipment for broiler processing workshop
By adjusting the height and angle of the air outlet of the evaporative air cooler through an electronic and hydraulic system, the problem of uneven temperature caused by a fixed air outlet is solved, maintenance efficiency is improved, and it can adapt to different workshop environments.
Patent Information
- Application Number
- CN202610017463.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-07
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2046-01-07
AI Technical Summary
The existing air cooler has a fixed air outlet height, which cannot be adapted to the variable height of the workshop shelves. This results in higher temperatures at the bottom of the shelves, and maintenance requires carrying a ladder and performing installation and disassembly, which prolongs the maintenance time.
The cable reel is driven by the electrical control box to wind or release the cable, which in turn drives the side brackets of the cover to rise and fall in conjunction with the inner slide rail, changing the height of the second bend cover to adapt to the height of the variable shelving in the workshop. The angle of the blade shelf is adjusted by the sensor to change the orientation of the air outlet. At the same time, the hydraulic equipment box door and the tilting platform enable maintenance without the need to carry a ladder.
It enables flexible adjustment of the air outlet height of the air cooler, preventing excessively high temperatures at the bottom of the shelves, improving maintenance efficiency, and simplifying the maintenance process.
Smart Images

Figure CN121474797A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of refrigeration equipment technology, specifically a refrigeration equipment for a broiler processing workshop. Background Technology
[0002] Refrigeration equipment in broiler processing workshops is a core component in ensuring product hygiene, safety, and quality. It mainly covers key steps such as pre-cooling, freezing, refrigeration, and cold storage management. The air coolers in processing workshops are specialized refrigeration equipment adapted to large spaces. They rapidly cool down the area through forced convection, meeting the constant temperature requirement of 0-4℃ in the processing area. They also have dehumidification functions, ensuring the freshness and quality of raw chicken meat and finished products. They are commonly used equipment for temperature control and preservation in large-space workshops.
[0003] However, the existing technology has the following shortcomings: The existing air cooler has two shortcomings: First, the air outlet height is fixed and cannot be adapted to the variable shelf height of 1.5-3m in the workshop, resulting in the bottom shelf temperature being too high and affecting the preservation of products. Second, the internal electronic modules of the air cooler are mostly fixed to the top or side of the box with bolts, which means that a ladder must be carried and the ladder must be installed and disassembled during maintenance, which prolongs the maintenance time. 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 refrigeration equipment for a broiler processing workshop. The equipment uses an electrical control box to open a bidirectional motor box, which drives the cable reel connected to the front to wind or release the cable. This, in turn, drives the side bracket ears of the cover to move up and down in coordination with the inner slide rail, thus stretching the bellows cover to change the height of the second elbow cover. Ultimately, this adapts to the variable shelf height in the workshop and prevents the bottom shelf from getting too hot.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a refrigeration device for a broiler processing workshop, comprising an equipment mounting frame, on which a refrigeration device is mounted; a frame is provided within the equipment mounting frame; an even number of frame-side ladder boxes are mounted on the frame; a cold air fan is provided inside the refrigeration device; a fan duct is connected to the front of the cold air fan; a lower fixed frame is provided within the frame; an even number of vertical beams are connected to the rear of the lower fixed frame; an even number of partition wall connecting rods are fixed to both ends of the rear of the even number of vertical beams; an upper fixed frame is fixed to the top of the even number of vertical beams; an even number of connecting columns are connected between the lower fixed frame and the upper fixed frame; an even number of locking cylinders are fixed to the surface of the vertical beams; a locking block is connected inside the locking cylinder; and an inner... Guide rail; a concave frame is connected to the rear of the upper fixed frame, an even number of cable lugs are fixed on the concave frame, an electrical control box is fixed below the concave frame, a bidirectional motor box is installed on the surface of the concave frame, cable drums are connected to both ends of the bidirectional motor box, an even number of frame upper sliding grooves are opened on the upper fixed frame, an inner slide rail is provided in the frame upper sliding groove, a connecting rod pulley is installed in the inner slide rail, and a limit block is provided at the end of the inner slide rail; a sealing lock sleeve is fixed on the surface of the air cooler, several suspension cables are installed above the air cooler, a first elbow cover is provided inside the air guide cover of the fan, a tension bellows cover is installed below the first elbow cover, a connecting cover plate is installed at the bottom of the tension bellows cover, a second elbow cover is connected below the connecting cover plate, and locking lugs are fixed on both sides of the connecting cover plate.
[0007] In a further improvement to the present invention, an even number of air guide components are installed inside the second elbow cover, and a sensor is provided next to each of the air guide components. Side brackets are installed on both sides of the second elbow cover, and a number of partition plates are embedded inside the second elbow cover, with an even number of air outlet slots formed between the partition plates.
[0008] In a further improvement to the present invention, a drive motor is provided inside the wind guide assembly, a shaft sleeve is installed below the drive motor, and an auxiliary rotating sleeve is provided directly below and opposite to the shaft sleeve. Blade holder plates are fixed on the surfaces of both the shaft sleeve and the auxiliary rotating sleeve. Several fastening rings are fixed on the blade holder plates, and guide plates are installed between the fastening rings.
[0009] In a further improvement to the present invention, the guide plate is connected to the blade support plate for angle adjustment, wherein one blade support plate cooperates with the auxiliary rotating sleeve, and the other blade support plate is fixed to the shaft sleeve, the drive motor is electrically connected with the sensor, and the electrical control box is electrically connected with the sensor.
[0010] In a further improvement to the present invention, each of the air outlet slots is independently equipped with the air guide component, the second elbow cover is connected to the lock lug through the cover side bracket lug, the first elbow cover is connected to the sealing lock sleeve and they are sealed together, and the air cooler is mounted on the upper surface of the upper fixed frame.
[0011] In a further improvement to the present invention, a rear connecting plate is provided inside the cover side frame ear, an even number of lifting rings are installed on the rear connecting plate, an even number of fixing blocks are fixed below the rear connecting plate, a number of integrated reinforcing blocks are provided on the inner side of the rear connecting plate, and an even number of through wheel frame bars are fixed on the front wall of the rear connecting plate, with rail pulleys installed at the ends of the through wheel frame bars.
[0012] In a further improvement to the present invention, the through-wheel frame bar passes through the inner guide rail, the inner pulley of the rail slides in a sliding fit with the inner guide rail, the top of the reinforcing block is fixed to the outer wall surface of the second elbow cover, and the top of the fixing block is welded to the side bracket lug of the cover.
[0013] In a further improvement to the present invention, the lifting ring is positioned opposite to the cable threading ear on the platform, the cable on the cable drum passes through the cable threading ear on the platform and is then fixed to the lifting ring, the bidirectional motor box is electrically connected to the electrical control box, and the connecting rod pulley slides in the inner slide rail.
[0014] A further improvement to the present invention is that a tilting platform is provided inside the frame-side ladder box, and an inner groove is formed on the inner surface of the tilting platform. An even number of fixed hinge seats are installed in the inner groove, and a hydraulic push rod is installed in front of each of the even number of fixed hinge seats. A telescopic staircase is connected to the front of each of the even number of hydraulic push rods. A lifting railing is embedded in the tilting platform, and an outwardly protruding matching frame is installed on the outer wall of the tilting platform. A hydraulic equipment box door is installed on the outer wall of the tilting platform.
[0015] In a further improvement to the present invention, the hydraulic equipment box door is equipped with a hydraulic component, the hydraulic equipment box door cooperates with the hydraulic push rod, the lifting railing can be height adjusted, the telescopic staircase is triggered to open by the hydraulic push rod, the tilting platform is rotated and adjusted by the connecting column, and both ends of the connecting column are connected to the connecting rod pulley.
[0016] Compared with the prior art, the present invention has the following beneficial effects; 1. This invention opens the bidirectional motor box through the electrical control box, driving the cable reel connected to its front to wind or release the hanging cable, thereby driving the side bracket ears to move up and down in conjunction with the inner slide rail, completing the stretching of the bellows cover to change the height of the second elbow cover, ultimately adapting to the variable shelf height in the workshop and preventing the bottom shelf from getting too hot. Furthermore, the drive motor can be driven by the sensor, thereby indirectly driving the blade frame plate connected by the shaft sleeve to adjust the angle, completing the reversal of the guide plate, changing the orientation of the air outlet, and completing the output of air at different angles in the processing workshop.
[0017] 2. This invention provides frame-side ladder boxes on both sides of the frame. In use, the connecting columns assist in rotating the tilting platform, and then the hydraulic equipment box door is opened to supply fluid to drive the hydraulic push rod to lift, causing the telescopic ladder to extend from the groove inside the platform. The tilting platform is then pushed to the front and below the air cooler, allowing maintenance personnel to use it directly without having to carry a ladder or perform installation and disassembly, thereby improving maintenance efficiency. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of a refrigeration equipment for a broiler processing workshop according to the present invention; Figure 2 This is a front view schematic diagram of a refrigeration equipment for a broiler processing workshop according to the present invention; Figure 3 This is a side view of the fan duct cover in a refrigeration equipment for a broiler processing workshop according to the present invention. Figure 4 For the present invention Figure 3 A magnified schematic diagram of the partial structure at point A in the middle; Figure 5 This is a rear view schematic diagram of the frame structure in a refrigeration equipment for a broiler processing workshop according to the present invention; Figure 6 This is a top view schematic diagram of the vertical beam structure in a refrigeration equipment for a broiler processing workshop according to the present invention; Figure 7 This is a side view of the frame-side ladder box in a refrigeration equipment for a broiler processing workshop according to the present invention. Figure 8 For the present invention Figure 7 A magnified schematic diagram of the structure at point B in the middle.
[0019] In the diagram: Equipment mounting frame 1, refrigeration equipment 2, frame 11, frame-side ladder box 12, air cooler 21, fan air guide cover 22, lower fixed frame 111, vertical frame beam 112, partition wall connecting rod 113, connecting column 114, upper fixed frame 115, tilting box platform 121, platform inner groove 122, fixed hinge seat 123, hydraulic push rod 124, telescopic ladder 125, lifting railing 126, outwardly protruding matching frame 127, hydraulic equipment box door 128, sealing lock sleeve 211, hoisting cable 212, first elbow cover 221, stretching bellows cover 222, connecting cover plate 223, second elbow cover 224, lock clamp 1121, lock block 1122, inner guide slide rail 1123, concave frame platform 1151, platform 1152 cable lug, 1153 electrical control box, 1154 bidirectional motor box, 1155 cable drum, 1156 upper frame slide groove, 1157 connecting rod pulley, 1158 inner slide rail, 1159 limit block, 2231 locking lug, 2241 sensor, 2242 air guide assembly, 2243 side bracket lug, 2244 air outlet, 2245 partition plate, 22421 drive motor, 22422 shaft sleeve, 22423 auxiliary rotating sleeve, 22424 blade support plate, 22425 fastening ring, 22426 guide plate, 22431 lifting ring, 22432 rear connecting plate, 22433 fixing block, 22434 reinforcing block, 22435 through wheel frame bar, 22436 inner rail pulley. Detailed Implementation
[0020] 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.
[0021] 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.
[0022] 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.
[0023] 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.
[0024] The present invention will be further described below with reference to the accompanying drawings: Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown: This embodiment provides a refrigeration equipment for a broiler processing workshop, including an equipment mounting frame 1, a refrigeration device 2 mounted on the equipment mounting frame 1, a frame 11 inside the equipment mounting frame 1, an even number of frame-side ladder boxes 12 mounted on the frame 11, a cold air fan 21 inside the refrigeration device 2, and a fan duct 22 connected to the front of the cold air fan 21; a lower fixed frame 111 inside the frame 11, an even number of vertical frame beams 112 connected to the rear of the lower fixed frame 111, an even number of partition wall connecting rods 113 fixed at both ends of the rear of the even number of vertical frame beams 112, an upper fixed frame 115 fixed to the top of the even number of vertical frame beams 112, and an even number of connecting columns 114 connecting the lower fixed frame 111 and the upper fixed frame 115.
[0025] Furthermore, the air cooler 21 can be used in conjunction with the installation of temperature sensors at different locations or heights within the broiler processing workshop. The temperature sensors transmit signals, and together with the fan shroud 22, cold air is output at different heights and angles.
[0026] Furthermore, the connecting column 114 is provided with two columns, one of which is a movable column and the other is a fixed column. The movable column is used for the installation of the frame-side ladder box 12 and is used to assist the frame-side ladder box 12 in rotating and displacing.
[0027] Among them, a sealing lock sleeve 211 is fixed on the surface of the air cooler 21, several hanging cables 212 are installed above the air cooler 21, a first elbow cover 221 is provided inside the fan air guide cover 22, a stretch bellows cover 222 is installed below the first elbow cover 221, a connecting cover plate 223 is installed at the bottom of the stretch bellows cover 222, a second elbow cover 224 is connected below the connecting cover plate 223, and locking lugs 2231 are fixed on both sides of the connecting cover plate 223.
[0028] Furthermore, the stretch accordion cover 222 is mainly used to connect the first bend cover 221 and the second bend cover 224. Through its stretchability, the stretch accordion cover 222 can match and adjust the height of the connection between the first bend cover 221 and the second bend cover 224.
[0029] Furthermore, the connecting cover plate 223 is disposed between the stretch accordion cover 222 and the second elbow cover 224, and is fastened together with the second elbow cover 224 by the locking lugs 2231 fixed on both sides of the connecting cover plate 223.
[0030] Among them, an even number of locking cylinders 1121 are fixed on the surface of the vertical frame beam 112, and a locking block 1122 is connected inside the locking cylinder 1121. An inner guide rail 1123 is fixed in front of the locking block 1122. A concave frame 1151 is connected to the rear of the upper fixed frame 115. An even number of cable lugs 1152 are fixed on the concave frame 1151. An electrical control box 1153 is fixed below the concave frame 1151. A bidirectional motor box 1154 is installed on the surface of the concave frame 1151. Both ends of the bidirectional motor box 1154 are connected to cable drums 1155. An even number of frame sliding grooves 1156 are opened on the upper fixed frame 115. An inner slide rail 1158 is set in the frame sliding groove 1156. A connecting rod pulley 1157 is installed in the inner slide rail 1158. A limit block 1159 is set at the end of the inner slide rail 1158.
[0031] Furthermore, the locking cylinder 1121 mainly fixes the inner guide rail 1123 through the locking block 1122, and the inner guide rail 1123 assists the second elbow cover 224 to slide, thereby realizing the height adjustment of the second elbow cover 224.
[0032] Furthermore, the electrical control box 1153 can receive signals from temperature sensors installed at different heights and angles in the broiler processing plant. When a temperature sensor at a certain height sends a signal, the electrical control box 1153 controls the bidirectional motor box 1154 to drive it.
[0033] Furthermore, the inner slide 1158 is mainly used for the connecting rod pulley 1157 to slide, and the connecting rod pulley 1157 is connected to the top of the connecting column 114, and works with the slide groove 1156 on the frame to push the connecting column 114 to form displacement.
[0034] The second bend cover 224 is equipped with an even number of air guide components 2242, and a sensor 2241 is provided next to each air guide component 2242. Side brackets 2243 are installed on both sides of the second bend cover 224. Several partition plates 2245 are embedded in the second bend cover 224, and an even number of air outlet slots 2244 are formed between the partition plates 2245.
[0035] Furthermore, the sensor 2241 triggers the air guide component 2242 by sending a signal through the electrical control box 1153, thereby changing the position of the air outlet 2244 to adapt to the cold air delivery needs of different areas.
[0036] Furthermore, the partition plate 2245 mainly divides the integrated second bend cover 224 into at least four air outlet slots 2244, and the air guide components 2242 and sensors 2241 independently equipped in the air outlet slots 2244 realize the delivery of cold air at different angles.
[0037] The wind guide assembly 2242 is equipped with a drive motor 22421. A shaft sleeve 22422 is installed below the drive motor 22421. An auxiliary rotating sleeve 22423 is installed directly below the shaft sleeve 22422. Blade support plates 22424 are fixed on the surfaces of both the shaft sleeve 22422 and the auxiliary rotating sleeve 22423. Several fastening rings 22425 are fixed on the blade support plate 22424. Guide plates 22426 are installed between the fastening rings 22425.
[0038] Furthermore, the blade support plate 22424 is divided into two parts, which are respectively installed on the auxiliary rotating sleeve 22423 and the shaft sleeve 22422. The surface has fastening rings 22425 arranged in a row, and the guide plate 22426 is fixed between the fastening rings 22425, so that the guide plate 22426 is perpendicular to the blade support plate 22424.
[0039] Furthermore, the drive motor 22421 is used to drive the shaft sleeve 22422, so that the shaft sleeve 22422 rotates the blade support plate 22424 during the driving process, changing the position of the guide plate 22426 and realizing the adjustment of the wind direction.
[0040] Among them, a rear connecting plate 22432 is provided inside the side bracket lug 2243, an even number of lifting rings 22431 are installed on the rear connecting plate 22432, an even number of fixing blocks 22433 are fixed below the rear connecting plate 22432, several integrated reinforcing blocks 22434 are provided on the inner side of the rear connecting plate 22432, and an even number of through wheel frame strips 22435 are fixed on the front wall of the rear connecting plate 22432, and an inner rail pulley 22436 is installed at the end of each through wheel frame strip 22435.
[0041] Furthermore, the rear connecting plate 22432 is fixed below by a fixing block 22433, and the reinforcing block 22434 between the fixing blocks 22433 is fixed to the outer wall of the second elbow cover 224 to form reinforcement. Then, with the assistance of the lifting ring 22431, the rear connecting plate 22432 is pulled and lowered.
[0042] Furthermore, the through wheel frame 22435 fixed inside the front wall of the rear connecting plate 22432 and the fixing block 22433, together with the rail pulley 22436 installed at the end, forms a sliding displacement between the inner guide rail 1123 and the interior, indirectly assisting the inner guide rail 1123 in completing the lifting and lowering.
[0043] The specific working principle is as follows: This invention uses a mounting frame 1 to install and fix the refrigeration equipment 2. The frame 11 is mounted on both sides by side ladder boxes 12. When not in use, the frames 11 are enclosed. The air cooler 21 is fixed to the first bend cover 221 in the fan guide shroud 22 by a sealing locking sleeve on its surface. Temperature monitors need to be placed at different angles and heights within the processing workshop. These temperature monitors, in conjunction with the electrical control box 1153, transmit signals. When the height needs to change, the electrical control box 1153 triggers the bidirectional motor box 1154 to rotate the cable reel 1155, releasing the cable on the cable reel 1155. With the release of the cable, the connecting plate and the through-wheel frame strips 22435 are then connected. The pulley 22436 in the end rail moves in the inner guide rail 1123, and indirectly stretches the bellows cover 222 so that the height of the second elbow cover 224 under the cover plate 223 is adjusted. When there is a temperature deviation at different angles, the control box 1153 triggers the sensor 2241 to complete the operation of the wind guide component 2242 independently equipped in the air outlet slot 2244. The drive motor 22421 drives the shaft sleeve 22422 to drive the blade frame plate 22424 to rotate. The lower auxiliary rotating sleeve 22423 assists in the rotation. The guide plate 22426 fixed between the fastening rings 22425 completes the angle change, and completes the variable supply of cold air as the temperature deviates.
[0044] Example 2: As shown in the attached document Figure 5 Appendix Figure 7 To be continued Figure 8 As shown: The lower fixed frame 111 is connected to an even number of vertical beams 112 at its rear. An even number of partition wall connecting rods 113 are fixed to both ends of each of the even number of vertical beams 112. An upper fixed frame 115 is fixed to the top of each of the even number of vertical beams 112. An even number of connecting columns 114 connect the lower fixed frame 111 and the upper fixed frame 115. A tilting platform 121 is provided inside the frame-side ladder box 12, and a platform is formed on the inner surface of the tilting platform 121. An even number of fixed hinge seats 123 are installed in the inner groove 122. A hydraulic push rod 124 is installed in front of each of the even number of fixed hinge seats 123. A telescopic staircase 125 is connected to the front of the even number of hydraulic push rods 124. A fixed lifting railing 126 is embedded in the tilting box platform 121. An outwardly protruding matching frame 127 is installed on the outer wall of the tilting box platform 121. A hydraulic equipment box door 128 is installed on the outer wall of the tilting box platform 121.
[0045] Furthermore, the lower fixed frame 111 and the upper fixed frame 115 are provided with the same arrangement of frame sliding groove 1156, inner slide 1158, connecting rod pulley 1157 and limiting block 1159 at the same position.
[0046] Furthermore, the tilting platform 121 is mainly nested on the movable column of the connecting column 114, and can swing at any angle less than 330°, thereby completing the adjustment of the tilting platform 121 to match the maintenance orientation requirements.
[0047] Furthermore, the fixed hinge seat 123 mainly fixes the end of the hydraulic push rod 124 through the hinge shaft, thereby forming an angle change when the hydraulic push rod 124 is lifted, allowing the hydraulic push rod 124 to lift the telescopic staircase 125 to complete the extension.
[0048] Furthermore, the hydraulic equipment box door 128 contains a hydraulic cylinder, a drive pump, and a valve body to supply hydraulic fluid to the hydraulic push rod 124, allowing the hydraulic push rod 124 to extend or retract.
[0049] Furthermore, the lifting railing 126 is nested inside the tilting box platform 121. The lifting railing 126 is pulled up with the ring of the lifting railing 126 to form a locking mechanism with the tilting box platform 121. After being pulled outward, it is locked in place, thus realizing the operation of the guardrail.
[0050] The upper frame 115 is connected to a concave platform 1151 at the rear. An even number of cable lugs 1152 are fixed on the concave platform 1151. An electrical control box 1153 is fixed below the concave platform 1151. A bidirectional motor box 1154 is installed on the surface of the concave platform 1151. Both ends of the bidirectional motor box 1154 are connected to cable drums 1155. An even number of frame sliding grooves 1156 are opened on the upper frame 115. An inner slide rail 1158 is provided in the frame sliding groove 1156. A connecting rod pulley 1157 is installed in the inner slide rail 1158. A limit block 1159 is provided at the end of the inner slide rail 1158.
[0051] Furthermore, the electrical control box 1153 mainly controls the bidirectional motor box 1154 to achieve synchronous rotation of the bidirectional cable drum 1155, thereby driving the cable installed inside the cable drum 1155 to complete the winding and lowering.
[0052] Furthermore, the inner slide 1158 provided in the upper slide groove 1156 of the frame is mainly for the connecting rod pulley 1157 to slide, and the connecting rod pulley 1157 is connected to the end of the connecting column, so as to realize the longitudinal displacement of the connecting column on the upper slide groove 1156 of the frame.
[0053] The specific working principle is as follows: This invention allows for manual swinging of the upper frame ladder box 12 on the connecting column 114 between the lower fixed frame 111 and the upper fixed frame 115 when the refrigeration equipment 2 needs maintenance. After the swinging platform 121 swings, the hydraulic equipment inside the hydraulic equipment door 128 triggers the hydraulic push rod 124, which is hinged to the fixed hinge seat 123 on the surface of the inner groove 122 of the platform. This pushes the telescopic ladder 125, extending it into a staircase configuration for maintenance personnel to climb. Once the top of the swinging platform 121 is reached, the railing 126 is pulled up to provide protection. Finally, the swinging platform 121 is pushed, causing the connecting rod pulley 1157 at the end of the connecting column 114 nested in the swinging platform 121 to move to the front and below the air cooler 21 via the inner slide 1158 and the upper slide groove 1156. This allows maintenance personnel to use the equipment directly without carrying a ladder or performing installation and disassembly, thus improving maintenance efficiency.
[0054] 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.
[0055] 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.
[0056] 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 refrigeration equipment for a broiler processing workshop, characterized in that, The equipment includes a mounting frame (1), on which a refrigeration device (2) is installed. A frame (11) is provided inside the mounting frame (1), and an even number of frame-side ladder boxes (12) are installed on the frame (11). A cold air blower (21) is provided inside the refrigeration device (2), and a fan duct (22) is connected to the front of the cold air blower (21). The frame (11) is provided with a lower fixed frame (111), and an even number of vertical frame beams (112) are connected to the rear of the lower fixed frame (111). An even number of partition wall connecting rods (113) are fixed at both ends of the even number of vertical frame beams (112). An upper fixed frame (115) is fixed at the top of the even number of vertical frame beams (112). An even number of connecting columns (114) are connected between the lower fixed frame (111) and the upper fixed frame (115). An even number of locking cylinders (1121) are fixed on the surface of the vertical frame beams (112). A locking block (1122) is connected inside the locking cylinder (1121). An inner guide rail (1123) is fixed in front of the locking block (1122). A concave frame (1151) is connected to the rear of the upper fixed frame (115). An even number of cable lugs (1152) are fixed on the concave frame (1151). An electrical control box (1153) is fixed below the concave frame (1151). A bidirectional motor box (1154) is installed on the surface of the concave frame (1151). Both ends of the bidirectional motor box (1154) are connected to cable reels (1155). An even number of frame sliding grooves (1156) are opened on the upper fixed frame (115). An inner slide rail (1158) is provided in the frame sliding groove (1156). A connecting rod pulley (1157) is installed in the inner slide rail (1158). A limit block (1159) is provided at the end of the inner slide rail (1158). The surface of the air cooler (21) is fixed with a sealing lock sleeve (211). Several suspension cables (212) are installed above the air cooler (21). A first elbow cover (221) is provided inside the fan air guide cover (22). A stretch bellows cover (222) is installed below the first elbow cover (221). A connecting cover plate (223) is installed at the bottom of the stretch bellows cover (222). A second elbow cover (224) is connected below the connecting cover plate (223). Locking lugs (2231) are fixed on both sides of the connecting cover plate (223).
2. The refrigeration equipment for a broiler processing workshop according to claim 1, characterized in that: An even number of air guide components (2242) are installed inside the second elbow cover (224). A sensor (2241) is provided next to each of the air guide components (2242). Side brackets (2243) are installed on both sides of the second elbow cover (224). Several partition plates (2245) are embedded inside the second elbow cover (224). An even number of air outlet slots (2244) are formed between the partition plates (2245).
3. The refrigeration equipment for a broiler processing workshop according to claim 2, characterized in that: The wind guide assembly (2242) is equipped with a drive motor (22421). A shaft sleeve (22422) is installed below the drive motor (22421). An auxiliary rotating sleeve (22423) is provided directly below the shaft sleeve (22422) at the opposite position. Blade support plates (22424) are fixed on the surfaces of both the shaft sleeve (22422) and the auxiliary rotating sleeve (22423). Several fastening rings (22425) are fixed on the blade support plate (22424). Guide plates (22426) are installed between the fastening rings (22425).
4. A refrigeration equipment for a broiler processing workshop according to claim 3, characterized in that: The guide plate (22426) is angle-adjustable via the blade support plate (22424), one of the blade support plates (22424) is engaged with the auxiliary rotating sleeve (22423), and the other blade support plate (22424) is fixed with the shaft sleeve (22422). The drive motor (22421) is electrically engaged with the sensor (2241), and the electrical control box (1153) is electrically engaged with the sensor (2241).
5. A refrigeration equipment for a broiler processing workshop according to claim 2, characterized in that: Each air outlet (2244) is independently equipped with the air guide assembly (2242). The second elbow cover (224) is connected to the lock ear (2231) through the cover side bracket ear (2243). The first elbow cover (221) is connected to the sealing lock sleeve (211) and sealed together. The air cooler (21) is mounted on the upper surface of the upper fixed frame (115).
6. A refrigeration equipment for a broiler processing workshop according to claim 5, characterized in that: A rear connecting plate (22432) is provided inside the side bracket lug (22433). An even number of lifting rings (22431) are installed on the rear connecting plate (22432). An even number of fixing blocks (22433) are fixed below the rear connecting plate (22432). Several integrated reinforcing blocks (22434) are provided on the inner side of the rear connecting plate (22432). An even number of through wheel frame strips (22435) are fixed on the front wall of the rear connecting plate (22432). Each through wheel frame strip (22435) is equipped with an inner rail pulley (22436) at its end.
7. A refrigeration equipment for a broiler processing workshop according to claim 6, characterized in that: The through-wheel frame bar (22435) passes through the inner guide rail (1123), the inner pulley (22436) slides in cooperation with the inner guide rail (1123), the top of the reinforcing block (22434) is fixed to the outer wall surface of the second elbow cover (224), and the top of the fixing block (22433) is welded to the cover side bracket lug (2243).
8. A refrigeration equipment for a broiler processing workshop according to claim 6, characterized in that: The lifting ring (22431) is positioned opposite to the cable threading ear (1152) on the platform. The cable on the cable drum (1155) passes through the cable threading ear (1152) on the platform and is then fixed to the lifting ring (22431). The bidirectional motor box (1154) is electrically connected to the electrical control box (1153). The connecting rod pulley (1157) slides in the inner slide rail (1158).
9. A refrigeration equipment for a broiler processing workshop according to claim 1, characterized in that: The frame-side ladder box (12) is provided with a swing platform (121). The inner surface of the swing platform (121) is provided with an inner groove (122). An even number of fixed hinge seats (123) are installed in the inner groove (122). A hydraulic push rod (124) is installed in front of each of the even number of fixed hinge seats (123). A telescopic staircase (125) is connected in front of the even number of hydraulic push rods (124). A fixed lifting railing (126) is embedded in the swing platform (121). An outwardly protruding matching frame (127) is installed on the outer wall of the swing platform (121). A hydraulic equipment box door (128) is installed on the outer wall of the swing platform (121).
10. A refrigeration equipment for a broiler processing workshop according to claim 9, characterized in that: The hydraulic equipment box door (128) has a built-in hydraulic component. The hydraulic equipment box door (128) cooperates with the hydraulic push rod (124). The lifting railing (126) can be height adjusted. The telescopic staircase (125) is triggered to open by the hydraulic push rod (124). The tilting box platform (121) is rotated and adjusted by the connecting column (114). Both ends of the connecting column (114) are connected to the connecting rod pulley (1157).
Citation Information
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