Stock ventilation control equipment for logistics

The design of hydraulic drive parts and transverse fixers solves the problems of inconvenient installation and low safety of ventilation control equipment, achieves fast and stable ventilation device fixation and gas exchange, and improves the versatility and usage intensity of the equipment.

CN120799588APending Publication Date: 2025-10-17JIANGSU MARITIME INST
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Patent Information

Application Number
CN202511272341.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

Existing ventilation control equipment has a simple structure, is inconvenient to install, has low safety, cannot provide multi-functional features, and the installation process is cumbersome and unstable.

Method used

The design incorporates hydraulic drive components combined with an electrically conductive groove. The control panel enables electro-hydraulic control, and the hydraulic slide rod drives the positioning structure to slide upwards. Combined with a horizontal fixing device, the ventilation device is fixed to the warehouse wall. Rapid assembly is achieved through the fixed cooperation between the base plate and the vertical plate.

Benefits of technology

It improves the installation convenience of the ventilation device, replaces the tedious installation process of climbing ladders, enhances the multifunctional characteristics and usage intensity of the equipment, and ensures the stable fixation of the ventilation device and the gas exchange effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of logistics inventory ventilation, in particular to logistics inventory ventilation control equipment which comprises a locking body, a bottom plate, a vertical plate, a control panel and an installation auxiliary structure. A hydraulic driving piece is combined with an electrifying groove to enable a control panel to achieve the electric control hydraulic characteristic, a hydraulic sliding rod drives a positioning structure to slide upwards, a supporting plate of the positioning structure communicates with air in a warehouse through an empty groove, a ventilation device is fixed through a transverse fixator, and the ventilation device can communicate with the empty groove; then the position height is convenient to control through height adjustment of a hydraulic sliding rod, then the ventilation device is stably pushed into the wall of the warehouse through a transverse fixator to complete overlapping, and finally the effect of rapid assembly is achieved through fixed cooperation of a bottom plate and a vertical plate; the position installation convenience of the ventilation device by the control equipment can be improved, and the original tedious manual installation process of a climbing ladder is replaced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of logistics inventory ventilation, in particular to a logistics inventory ventilation control device. BACKGROUND

[0002] Logistics inventory refers to the goods and materials temporarily stored in the logistics process to meet production and sales needs. As a buffer mechanism, it helps maintain supply and demand balance and ensures the smooth operation of production and sales activities. Therefore, the logistics inventory area needs ventilation equipment to exchange air inside and outside the warehouse, prevent explosion risks caused by continuous high temperature and closed environment in the warehouse, and discharge the hot and odor air in the warehouse to improve the air quality inside the warehouse. The ventilation equipment can adjust its wind speed in combination with related control equipment to ensure air improvement stability in the warehouse according to appropriate wind speed operation. As found by the present inventor, the existing ventilation control equipment mainly has the following defects: the structure of the current ventilation control equipment can only control the wind speed of the ventilation device and suppress the noise during operation without other auxiliary functions, which reflects the single structure of the current control equipment. It is located on the wall of the warehouse together with the ventilation device and needs to be installed at a position determined by the installation height of the ventilation device, which makes installation inconvenient. In addition, the installation of the ventilation device and the control equipment also needs to use a climbing ladder for auxiliary climbing installation, which reduces the safety factor during installation due to the complexity of installation and the instability of the climbing ladder, thereby reducing the multifunctional characteristics and use intensity of the control equipment. No solutions have been proposed to address these related technical problems. SUMMARY

[0003] To overcome the above technical problems existing in the prior art, the present application provides a logistics inventory ventilation control device. The purpose of the present application is to achieve electric hydraulic characteristics of the control panel by combining hydraulic drive with power supply slot, so that the hydraulic slide rod drives the positioning structure to slide up. The branch plate of the positioning structure is in communication with the air inside the warehouse through the air slot. The ventilation device is fixed by the horizontal fixer, so that the ventilation device can communicate with the air slot. The height adjustment of the hydraulic slide rod achieves convenient control of the position height. Then the horizontal fixer stably pushes the ventilation device into the wall of the warehouse to complete the overlap. Finally, the bottom plate and the vertical plate are fixed and matched to achieve the effect of quick assembly, which can improve the position installation convenience of the control equipment for the ventilation device and replace the original manual and tedious installation process of the climbing ladder.

[0004] In order to achieve the above object, the present application provides the following technical scheme: a warehouse inventory ventilation control device for logistics, comprising a locking body, a bottom plate, a vertical plate, a control panel and a mounting auxiliary structure, the vertical plate is arranged on one side of the bottom plate, the bottom plate and the vertical plate are connected by welding, a plurality of locking bodies are arranged on the bottom plate and the vertical plate, the control panel and the mounting auxiliary structure are arranged on the vertical plate, and the control panel controls the mounting auxiliary structure electrically; The mounting auxiliary structure comprises a support column, a hydraulic drive, a hydraulic slide rod and a positioning structure, a power supply groove is formed in the surface of one side of the support column, the hydraulic drive is arranged on the other side of the support column, the hydraulic slide rod is arranged in the interior of the support column, the hydraulic drive is connected with the hydraulic slide rod, and the positioning structure is arranged on the top of the hydraulic slide rod. The positioning structure comprises a fixed end, a support plate, a power supply block and a transverse fixer, the fixed end is arranged at the bottom of the support plate, a hollow groove is formed in one side of the support plate, two power supply blocks are arranged on the left and right sides of the hollow groove respectively, and the transverse fixer is arranged on the other side of the support plate. The hydraulic drive of the mounting auxiliary structure is controlled by the control panel, so that the hydraulic slide rod carries the positioning structure to slide upward, forces the ventilation device of the positioning structure to slide upward, and the hollow groove of the support plate of the positioning structure is communicated with the ventilation device, and the ventilation device is positioned by the transverse fixers on the left and right sides and is pushed horizontally and embedded in the warehouse wall.

[0005] Preferably, a plurality of locking bodies are distributed at the edge positions of the bottom plate and the vertical plate, the bottom plate and the vertical plate form an L-shaped structure by welding, and the mounting auxiliary structure is vertically positioned.

[0006] Preferably, the shape of the power supply groove and the shape of the control panel match each other, a vertical groove is further formed in the support column, and the hydraulic slide rod slides up and down under the control of the hydraulic drive.

[0007] Preferably, the width of the fixed end is smaller than the width of the support plate, the fixed end and the plate are perpendicular to each other, the hollow groove is circularly arranged, the power supply block is loaded with a power supply line and is connected with the control panel in a penetrating line mode.

[0008] Preferably, the transverse fixer includes an insulating plate, an assembly block, a first slide rail, a pulley, an energized shaft, a connecting block, a fixed structure, a balance bar and a second slide rail, the assembly block is arranged on one side of the insulating plate, the first slide rail is arranged at the center of the insulating plate, the pulley is arranged on the first slide rail, the energized shaft is connected to one side of the pulley, one end of the energized shaft is connected to the connecting block, the connecting block and the energized block are electrically connected through interlacing, the fixed structure is arranged on the surface of the pulley, balance bars are arranged at both upper and lower ends of the fixed structure, two second slide rails are provided, and are respectively located on both side inner walls of the insulating plate, and the end of the balance bar away from the fixed structure is connected to the second slide rail; The insulating plate is inserted into the support plate through the assembly block, allowing the connecting block of the energized shaft to pass through. The pulley is provided with an electric motor, and the fixed structure is driven to move laterally through the first slide rail. The connecting portion between the balance bar and the second slide rail is equipped with a ball bearing.

[0009] Preferably, the fixing structure includes a solid plate, slots are provided at the upper and lower ends of the solid plate, a power ring is provided at the center of the solid plate, edge blocks are provided at the upper and lower ends of the power ring, one end of the balance bar is inserted into the slot and connected to the edge block, line shafts are provided on the left and right sides of the power ring, and the line shafts are electrically connected to the output fixing module; The slot is opened in a vertical direction and allows the balance rod to be inserted vertically. The connection position between the edge block and the power ring is arc-shaped. The power ring covers and positions the edge of the electric motor of the pulley and connects it electrically. The line axes on the left and right of the power ring guide the electric energy of the power block to the output fixing module to power the ventilation device. The output fixing module is a square raised solid shape embedded in the ventilation device for insertion and fixed electrical connection.

[0010] Preferably, one end of the support plate located in the empty slot is further provided with a first splicing body and a second splicing body, the surfaces of the first splicing body and the second splicing body are both provided with a threaded rod and a locking sleeve, the first splicing body and the second splicing body are connected by a folding tube, and the centers of the first splicing body and the second splicing body are both provided with a ventilation slot, and the ventilation slot is respectively connected to the folding tube and the empty slot; The first splicing body is spliced ​​with the center edge of one end of the support plate through a threaded rod and a locking sleeve, and the second splicing body is connected to one end of the ventilation device through a threaded rod and a locking sleeve. The ventilation slot is opened in a vertical direction and connected to the empty slot and the ventilation device. Four groups of the threaded rods and locking sleeves are provided on both the first splicing body and the second splicing body.

[0011] Preferably, the splicing body one and the splicing body two each comprise a magnetic suction disc, a plurality of positioning blocks are arranged on the magnetic suction disc, an inner surface of the magnetic suction disc is provided with a fusion layer, the fusion layer is fused with one end of the folded pipe, and the fusion layer is in spacing cooperation with the positioning blocks. The diameter of the positioning blocks is greater than the diameter of the threaded rod, the positioning blocks and the threaded rod are vertically connected through welding, and the diameter of the fusion layer is consistent with the diameters of upper and lower ends of the folded pipe.

[0012] Compared with the prior art, the present application has the following advantages: (1) The present application is a warehouse ventilation control device for logistics. By setting the installation auxiliary structure, the hydraulic drive member combines the power supply groove to achieve the electric control and hydraulic characteristics of the control panel, so that the hydraulic slide rod drives the positioning structure to slide up, the supporting plate of the positioning structure is in communication with the air inside the warehouse through the air slot, and then the transverse fixer is used to fix the ventilation device, so that the ventilation device can communicate with the air slot. Subsequently, the height adjustment of the hydraulic slide rod achieves the convenient control of the position height, and then the transverse fixer stably pushes the ventilation device into the wall body of the warehouse to complete the overlap, and finally the fixing cooperation of the bottom plate and the vertical plate achieves the effect of rapid assembly, so that the position installation convenience of the control device for the ventilation device is improved, and the original manual and tedious installation process of the climbing ladder is replaced, so that the multifunctional characteristics and use intensity of the control device are improved. (2) The present application is a warehouse ventilation control device for logistics. By setting the transverse fixer, the cooperation of the slide rail one and the slide rail two on the insulating plate can make the fixing structure move in parallel in combination with the pulley, so that the pulley can displace the remaining line of the power supply shaft when the electric motor is working, preventing power failure during displacement. The fixing structure is fixedly connected with the ventilation device through the output fixing module of the solid plate, so that the control panel can supply power to the ventilation device, and then the cooperation of the pulley and the slide rail one can stably embed the ventilation device in the warehouse wall body for assembly. (3) The present application is a warehouse ventilation control device for logistics. The splicing body one carried by the center edge of one end of the supporting plate is used as the basis, the threaded rod and the locking sleeve of the splicing body one are used for firmly detachable connection with the supporting plate, and the splicing body two is also connected with one end of the ventilation device through the threaded rod and the locking sleeve, so that the folded pipe and the cavity can be aligned with the center of the ventilation device. After the ventilation device is embedded in the wall body through the fixing structure and the pulley, the warehouse internal air can be guided through the folded pipe and the air slot, the stability of the internal and external gas exchange is improved, and the instability of the gas guidance caused by the spacing between the ventilation device and the air slot after the ventilation device is embedded in the wall body is prevented. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a structural schematic diagram of the present application. Figure 2 Structure diagram of installation auxiliary structure of the present application; Figure 3 Structure diagram of positioning structure of the present application; Figure 4 Structure diagram of crosswise fixer section of the present application; Figure 5 Structure diagram of fixing structure section of the present application; Figure 6 Structure diagram of support plate of the present application; Figure 7 Structure diagram of splice body one and splice body two of the present application. Explanation of reference signs

[0014] 1, locking body; 2, bottom plate; 3, vertical plate; 4, control panel; 5, installation auxiliary structure; 51, power supply groove; 52, support column; 53, hydraulic drive; 54, hydraulic slide; 55, positioning structure; 551, fixed end; 552, support plate; 553, hollow groove; 554, power supply block; 555, crosswise fixer; 5551, insulating plate; 5552, assembly block; 5553, slide rail; 5554, pulley; 5555, power supply shaft; 5556, linking block; 5557, fixing structure; 5558, balance bar; 5559, slide rail two; 5571, solid plate; 5572, insertion slot; 5573, edge block; 5574, power supply ring; 5575, line shaft; 5576, output fixing module; 5521, splice body one; 5522, splice body two; 5523, threaded rod; 5524, locking sleeve; 5525, folding pipe; 5526, ventilation groove; 5211, positioning block; 5512, magnetic suction disc; 5513, fusion layer. DETAILED DESCRIPTION

[0015] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. EMBODIMENT

[0016] Please refer to Figures 1-5As shown in the figure, the present application provides a technical scheme of a logistics inventory ventilation control device: a logistics inventory ventilation control device, comprising a locking body 1, a bottom plate 2, a vertical plate 3, a control panel 4 and a mounting auxiliary structure 5, the vertical plate 3 is arranged on one side of the bottom plate 2, the bottom plate 2 and the vertical plate 3 are connected by welding, and a plurality of locking bodies 1 are arranged on the bottom plate 2 and the vertical plate 3; the control panel 4 and the mounting auxiliary structure 5 are arranged on the vertical plate 3, and the control panel 4 controls the mounting auxiliary structure 5 electrically. The mounting auxiliary structure 5 comprises a support column 52, a hydraulic drive 53, a hydraulic slide rod 54 and a positioning structure 55, a power supply groove 51 is formed on one side surface of the support column 52, the hydraulic drive 53 is arranged on the other side of the support column 52, the hydraulic slide rod 54 is arranged in the inside of the support column 52, the hydraulic drive 53 is connected with the hydraulic slide rod 54, and the positioning structure 55 is arranged on the top of the hydraulic slide rod 54. The positioning structure 55 comprises a fixed end 551, a support plate 552, a power supply block 554 and a transverse fixer 555, the fixed end 551 is arranged at the bottom of the support plate 552, a hollow groove 553 is formed on one side of the support plate 552, two power supply blocks 554 are arranged on the left and right sides of the hollow groove 553 respectively, and the transverse fixer 555 is arranged on the other side of the support plate 552, the power supply block 554 is used for power supply positioning of the transverse fixer 555. The hydraulic drive 53 of the mounting auxiliary structure 5 is controlled by the control panel 4 to make the hydraulic slide rod 54 carry the positioning structure 55 to slide upward, so that the ventilation device of the positioning structure 55 slides upward, and the hollow groove 553 of the support plate 552 of the positioning structure 55 is communicated with the ventilation device and is positioned by the left and right transverse fixers 555 and pushes the ventilation device horizontally and embeds into the warehouse wall.

[0017] As shown in the figure, Figure 1 Further, the plurality of locking bodies 1 are distributed at the edge positions of the bottom plate 2 and the vertical plate 3, and the bottom plate 2 and the vertical plate 3 form an L-shaped structure by welding to vertically position the mounting auxiliary structure 5.

[0018] As shown in the figure, Figure 2 Further, the shape of the power supply groove 51 and the shape of the control panel 4 match each other, and a vertical groove is further formed on the support column 52, so that the hydraulic slide rod 54 slides up and down under the control of the hydraulic drive 53.

[0019] As shown in the figure, Figure 3 Further, the width of the fixed end 551 is smaller than the width of the support plate 552, the fixed end 551 and the support plate 552 are perpendicular to each other, the hollow groove 553 is circularly arranged, the power supply block 554 is loaded with a power supply line to be connected with the control panel 4 in a penetrating line mode.

[0020] As shown in the figure, Figure 4As shown, further, the lateral fixer 555 includes an insulating plate 5551, an assembling block 5552, a sliding rail one 5553, a pulley 5554, a power supply shaft 5555, a connecting block 5556, a fixing structure 5557, a balance bar 5558 and two sliding rail twos 5559. The assembling block 5552 is arranged at one side of the insulating plate 5551, the sliding rail one 5553 is arranged at the center of the insulating plate 5551, the pulley 5554 is arranged on the sliding rail one 5553, the power supply shaft 5555 is connected with one side of the pulley 5554, one end of the power supply shaft 5555 is connected with the connecting block 5556, the connecting block 5556 is electrically connected with the power supply block 554, the fixing structure 5557 is arranged on the surface of the pulley 5554, the balance bar 5558 is arranged at both ends of the fixing structure 5557, and the two sliding rail twos 5559 are arranged at the inner walls of the two sides of the insulating plate 5551, and one end of the balance bar 5558 away from the fixing structure 5557 is connected with the sliding rail two 5559. The insulating plate 5551 is inserted into the supporting plate 552 through the assembling block 5552, the connecting block 5556 of the power supply shaft 5555 is penetrated, the pulley 5554 is provided with an electric motor, the fixing structure 5557 is driven by the sliding rail one 5553 to move laterally, and the connecting parts of the balance bar 5558 and the sliding rail two 5559 are loaded with balls.

[0021] Please refer to Figure 5 As shown, further, the fixing structure 5557 includes a solid plate 5571, the upper and lower ends of the solid plate 5571 are provided with insertion grooves 5572, the center of the solid plate 5571 is provided with a power supply ring 5574, the upper and lower ends of the power supply ring 5574 are provided with edge blocks 5573, one end of the balance bar 5558 is inserted into the insertion groove 5572 and connected with the edge block 5573, the left and right sides of the power supply ring 5574 are provided with line shafts 5575, and the line shafts 5575 are electrically connected with output fixing modules 5576. The insertion groove 5572 is opened in a vertical direction and the balance bar 5558 is vertically penetrated, the edge blocks 5573 and the connecting position of the power supply ring 5574 are arc-shaped, the power supply ring 5574 covers and positions the edge of the electric motor of the pulley 5554 and is electrically connected, the line shafts 5575 on the left and right sides of the power supply ring 5574 guide the electric energy of the power supply block 554 to the output fixing modules 5576 for power supply of the ventilation device, and the output fixing modules 5576 are four square convex solid shapes embedded in the ventilation device for penetrating and fixing electrical connection.

[0022] The specific functions and operation processes of the embodiment are as follows: The warehouse inventory ventilation control device can position the bottom plate 2 at the edge of the warehouse floor by locking the body 1, fix the vertical plate 3 on the wall, vertically position the bottom plate 2 and the vertical plate 3 to the installation auxiliary structure 5, enable the control panel 4 to control the ventilation device and the whole part of the installation auxiliary structure 5 through the installation auxiliary structure 5, fix the support column 52 of the installation auxiliary structure 5 perpendicular to the surface of the bottom plate 2 and the surface of the vertical plate 3, fix the electric connection groove 51 and the control panel 4, control the hydraulic drive 53 in the control panel 4, make the hydraulic control system of the hydraulic drive 53 drive the hydraulic slide rod 54 to vertically slide in the support column 52 according to the program instructions, fix the ventilation device through the positioning structure 55 during the upward sliding of the hydraulic slide rod 54, push the ventilation device to the top position, achieve the height adjustment effect of the ventilation device, replace the original manual carrying and complicated installation by using the climbing ladder, improve the height control convenience effect of the ventilation device, fix the support plate 552 of the positioning structure 55 through the fixed end 551 and the top of the hydraulic slide rod 54, fix the ventilation device through the air slot 553 of the support plate 552 and the horizontal fixer 555 to achieve the air exchange effect of the warehouse interior, control the horizontal fixer 555 through the electric block 554, electrically connect the electric block 554 and the control panel 4 through the line, fix the ventilation device in the connecting slot of the wall through the sliding wheel 5554 and the fixed structure 5557 when the insulation plate 5551 of the horizontal fixer 555 is connected with the support plate 552, the sliding block 5556 of the electric shaft 5555 of the center sliding rail one 5553 is embedded in the electric block 554, the electric motor of the sliding wheel 5554 drives the sliding wheel 5554 to slide horizontally in the center sliding rail one 5553, and the fixed structure 5557 is driven to slide by the sliding wheel 5554, so that the ventilation device can be pushed horizontally to the connecting slot of the wall through the sliding wheel 5554 when the fixed structure 5557 is connected with the ventilation device, the height position of the ventilation device is positioned conveniently, the stability during horizontal pushing is improved when the upper and lower balance bars 5558 are embedded in the sliding rail two 5559 during the movement of the fixed structure 5557, the solid plate 5571 at the back of the fixed structure 5557 is inserted into the edge block 5573 through the upper and lower insertion slots 5572, the position of the electric ring 5574 of the edge block 5573 is determined, the sliding wheel 5554 and the electric motor are positioned at the edge, the electric shaft 5555 is used to supply power to the electric motor, the line shaft 5575 on the left and right sides of the electric ring 5574 guides the electric energy to the output fixed module 5576,So that the output fixed module 5576 is embedded in the internal position of the surface ventilation device through the corner position of the solid plate 5571, and the electrical connection is inserted, so that the control panel 4 can control the wind speed and direction of the ventilation device, thereby improving the control strength of the control equipment on the ventilation device and improving the multifunctional use effect of itself. Embodiments

[0023] As shown in Figures 6-7 The technical scheme of the application provides a warehouse inventory ventilation control device for logistics: As shown in Figure 6 Further, one end of the support plate 552 located in the air slot 553 is also provided with a splicing body one 5521 and a splicing body two 5522, the surfaces of the splicing body one 5521 and the splicing body two 5522 are provided with threaded rods 5523 and locking sleeves 5524, the splicing body one 5521 and the splicing body two 5522 are connected through a folding pipe 5525, and the centers of the splicing body one 5521 and the splicing body two 5522 are provided with ventilation grooves 5526, which are respectively communicated with the folding pipe 5525 and the air slot 553. The splicing body one 5521 is spliced with the center edge of one end of the support plate 552 through the threaded rods 5523 and the locking sleeves 5524, the splicing body two 5522 is connected with one end of the ventilation device through the threaded rods 5523 and the locking sleeves 5524, the ventilation grooves 5526 are opened in a vertical direction and are communicated with the air slot 553 and the ventilation device, and the splicing body one 5521 and the splicing body two 5522 are both provided with four groups of threaded rods 5523 and locking sleeves 5524.

[0024] As shown in Figure 7 Further, the splicing body one 5521 and the splicing body two 5522 both include a magnetic suction disc 5212, a plurality of positioning blocks 5211 are arranged on the magnetic suction disc 5212, an inner surface of the magnetic suction disc 5212 is provided with a fusion layer 5213, the fusion layer 5213 is fused with one end of the folding pipe 5525, and the fusion layer 5213 is spaced apart from the positioning blocks 5211. The diameter of the positioning block 5211 is greater than that of the threaded rod 5523, the positioning block 5211 and the threaded rod 5523 are vertically connected through welding, and the diameter of the fusion layer 5213 is consistent with the diameters of the upper and lower ends of the folding pipe 5525.

[0025] The specific functions and operation processes of the embodiment are as follows: The splicing body one 5521 carried at the center of one end surface of the support plate 552 can be position-locked by penetrating the surface through the threaded rod 5523 and then using the locking sleeve 5524, ensuring the firmness of mutual parallelism, and then the splicing body two 5522 will be attached to the edge position of the ventilation device, so that the threaded rod 5523 can also be locked through the locking sleeve 5524 after penetrating the round plate at the edge position of the ventilation device, and then the folding pipe 5525 carried in the space between the splicing body one 5521 and the splicing body two 5522 can be pulled when the ventilation device is horizontally pushed into the wall, so that the air slot 553 has the intervention of the folding pipe 5524 to improve the centering accuracy effect with the ventilation device, preventing the spacing from affecting the normal ventilation and air exchange when the ventilation device is pushed, so that the ventilation device can combine the ventilation slot 5526 and the air slot 553 to stably exchange the air inside and outside, and the magnetic suction disc 5212 of the splicing body one 5521 and the splicing body two 5522 can improve the adhesion strength with the support plate 552 and the edge of the ventilation device according to the magnetic suction characteristics of itself, prevent the position deviation caused by the locking force during locking, and then the positioning ring 5211 can improve the verticality of the threaded rod 5523, prevent tilting, and then the fusion layer 5213 position can be integrated with the end of the folding pipe 5525 to improve the stability of the folding pipe 5525 when pulled by the ventilation device.

[0026] In the description of the present application, it should be understood that the terms "coaxial", "bottom", "one end", "top", "middle", "the other end", "upper", "one side", "top", "inner", "front", "central", "both ends" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0027] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "setting", "connecting", "fixing", "screwed" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication or interaction relationship between two elements, unless otherwise explicitly limited, and those skilled in the art can understand the specific meaning of the above-mentioned terms in the present application according to the specific circumstances.

[0028] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. A logistics inventory ventilation control device, comprising a locking body (1), a base plate (2), a vertical plate (3), a control panel (4) and an auxiliary installation structure (5), wherein the vertical plate (3) is arranged on one side of the base plate (2), the base plate (2) and the vertical plate (3) are connected by welding, a plurality of locking bodies (1) are arranged on the base plate (2) and the vertical plate (3), the control panel (4) and the auxiliary installation structure (5) are both arranged on the vertical plate (3), and the control panel (4) electrically controls the auxiliary installation structure (5), characterized in that: The auxiliary installation structure (5) includes a support column (52), a hydraulic drive component (53), a hydraulic slide rod (54) and a positioning structure (55), wherein a power supply groove (51) is provided on the surface of one side of the support column (52), the hydraulic drive component (53) is arranged on the other side of the support column (52), the hydraulic slide rod (54) is arranged inside the support column (52), the hydraulic drive component (53) is connected to the hydraulic slide rod (54), and the positioning structure (55) is arranged on the top of the hydraulic slide rod (54); The positioning structure (55) comprises a fixed end (551), a support plate (552), an energizing block (554) and a transverse fixer (555); the fixed end (551) is arranged at the bottom of the support plate (552); a slot (553) is provided on one side of the support plate (552); two energizing blocks (554) are provided and are respectively located on the left and right sides of the slot (553); the transverse fixer (555) is arranged on the other side of the support plate (552); and the energizing block (554) energizes and positions the transverse fixer (555); The control panel (4) controls the hydraulic drive member (53) of the installation auxiliary structure (5) to allow the hydraulic slide rod (54) to carry the positioning structure (55) to slide upward, forcing the ventilation device of the positioning structure (55) to slide upward. At the same time, the empty slot (553) of the support plate (552) of the positioning structure (55) is connected to the ventilation device and is positioned by using the horizontal fixers (555) on the left and right sides and the ventilation device is pushed horizontally to be embedded in the warehouse wall.

2. A logistics inventory ventilation control device according to claim 1, characterized in that: A plurality of locking bodies (1) are distributed at the edge positions of the bottom plate (2) and the vertical plate (3); the bottom plate (2) and the vertical plate (3) are welded to form an L-shaped structure, and the auxiliary installation structure (5) is vertically positioned.

3. The logistics inventory ventilation control device according to claim 1, characterized in that: The shape of the power supply slot (51) matches the shape of the control panel (4), and a vertical slot is also provided on the support column (52), so that the hydraulic slide rod (54) can slide up and down under the control of the hydraulic drive member (53).

4. The logistics inventory ventilation control device according to claim 1, characterized in that: The width of the fixed end (551) is smaller than the width of the support plate (552); the fixed end (551) and the plate (552) are perpendicular to each other; the empty slot (553) is arranged in a circular shape; and the power block (554) is equipped with a power line for interlaced connection with the control panel (4).

5. The logistics inventory ventilation control device according to claim 1, characterized in that: The transverse fixer (555) includes an insulating plate (5551), an assembly block (5552), a slide rail (5553), a pulley (5554), an energized shaft (5555), a connection block (5556), a fixing structure (5557), a balance bar (5558) and a slide rail (5559), wherein the assembly block (5552) is arranged on one side of the insulating plate (5551), the slide rail (5553) is arranged at the center of the insulating plate (5551), the pulley (5554) is arranged on the slide rail (5553), and the energized shaft (5555) and the pulley (5559) are connected to each other. 5554), one end of the power-carrying shaft (5555) is connected to the connecting block (5556), the connecting block (5556) and the power-carrying block (554) are electrically connected through insertion, the fixed structure (5557) is arranged on the surface of the pulley (5554), and the upper and lower ends of the fixed structure (5557) are both provided with balance bars (5558), two slide rails (5559) are provided, and are respectively located on the inner walls of both sides of the insulating plate (5551), and the end of the balance bar (5558) away from the fixed structure (5557) is connected to the slide rail (5559); The insulating plate (5551) is inserted into the support plate (552) through the assembly block (5552), allowing the connecting block (5556) of the energized shaft (5555) to pass through. The pulley (5554) is provided with an electric motor, and the fixed structure (5557) is driven to move laterally through the slide rail 1 (5553). The connecting portion between the balance bar (5558) and the slide rail 2 (5559) is equipped with a ball bearing.

6. The logistics inventory ventilation control device according to claim 5, characterized in that: The fixing structure (5557) comprises a solid plate (5571), wherein slots (5572) are provided at both upper and lower ends of the solid plate (5571), an electric ring (5574) is provided at the center of the solid plate (5571), and edge blocks (5573) are provided at both upper and lower ends of the electric ring (5574), one end of the balance bar (5558) is inserted into the slot (5572) and connected to the edge block (5573), and line shafts (5575) are provided on both left and right sides of the electric ring (5574), and the line shafts (5575) are electrically connected to the output fixing module (5576); The slot (5572) is opened in a vertical direction and allows the balance rod (5558) to be vertically inserted. The connection position between the edge block (5573) and the power ring (5574) is arc-shaped. The power ring (5574) covers and positions the edge of the electric motor of the pulley (5554) and connects it electrically. The line axes (5575) on the left and right of the power ring (5574) guide the electric energy of the power block (554) to the output fixing module (5576) to power the ventilation device. The output fixing module (5576) is a square raised solid shape embedded in the ventilation device for insertion and fixed electrical connection.

7. The logistics inventory ventilation control device according to claim 1, characterized in that: One end of the support plate (552) located in the empty slot (553) is further provided with a splicing body 1 (5521) and a splicing body 2 (5522), and the surfaces of the splicing body 1 (5521) and the splicing body 2 (5522) are both provided with a threaded rod (5523) and a locking sleeve (5524), and the splicing body 1 (5521) and the splicing body 2 (5522) are connected via a folding tube (5525), and a ventilation groove (5526) is provided at the center of the splicing body 1 (5521) and the splicing body 2 (5522), and the ventilation groove (5526) is respectively communicated with the folding tube (5525) and the empty slot (553); The first splicing body (5521) is spliced ​​with the center edge of one end of the support plate (552) through a threaded rod (5523) and a locking sleeve (5524); the second splicing body (5522) is connected to one end of the ventilation device through a threaded rod (5523) and a locking sleeve (5524); the ventilation slot (5526) is opened in a vertical direction and communicates with the empty slot (553) and the ventilation device; and four sets of the threaded rod (5523) and the locking sleeve (5524) are provided on each of the first splicing body (5521) and the second splicing body (5522).

8. The logistics inventory ventilation control device according to claim 7, characterized in that: The first splicing body (5521) and the second splicing body (5522) both include a magnetic suction cup (5212), a plurality of positioning blocks (5211) are provided on the magnetic suction cup (5212), and a fusion layer (5213) is provided on the inner surface of the magnetic suction cup (5212), the fusion layer (5213) is fused with one end of the folding tube (5525), and the fusion layer (5213) and the positioning blocks (5211) are matched in spacing; the diameter of the positioning blocks (5211) is larger than the diameter of the threaded rod (5523), the positioning blocks (5211) and the threaded rod (5523) are vertically connected by welding, and the diameter of the fusion layer (5213) is consistent with the diameters of the upper and lower ends of the folding tube (5525).