An autonomous industrial air generating device

Through the installation mechanism, cutting mechanism and push mechanism of the independent industrial air generator, the automatic installation and fixation of the drying pipe is achieved, the complex and loose drying cylinder replacement is solved, and the efficiency and reliability of the equipment are improved.

CN116808738BActive Publication Date: 2025-09-02NANJING HUASHUI TECH CO LTD
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Patent Information

Application Number
CN202310806649.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-03
Publication Date
2025-09-02
Estimated Expiration
2043-07-03

AI Technical Summary

Technical Problem

The drying cylinder replacement process in existing air generators is complicated, and insufficient strength of the operator may cause the drying cylinder to loosen, affecting the normal use of the equipment.

Method used

An independent industrial air generator is designed, including an installation mechanism, a feeding mechanism and a feed pushing mechanism, which automatically installs and fixes the drying pipe through mechanized means, simplifying the replacement process.

Benefits of technology

It improves the installation convenience and stability of the drying pipe, reduces the loosening problem caused by insufficient operating force, and ensures the normal use of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an autonomous industrial air generating device, which relates to the technical field of autonomous industrial air generating devices. The key points of its technical solution include: an installation mechanism, which is used to be inserted into the placement cavity of the air generator and install the drying tube, and the installation mechanism is installed in the placement cavity, and is used to install and fix the drying tube; a feeding mechanism, which is installed on the air generator, and is used to assist the operator in feeding the drying tubes one by one; and a pushing mechanism, which is installed on the feeding mechanism. An autonomous industrial air generating device has the effect that, compared with the method of manually tightening the drying tube, the installation mechanism provided on the air generating device can make the process simpler, so that after the drying tube is installed, the problem of the drying tube loosening due to insufficient strength of the operator is reduced to a certain extent, thereby relatively maintaining the normal use of the drying tube.
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Description

Technical Field

[0001] The present invention relates to the technical field of air generators, and more particularly to an autonomous industrial air generating device. Background Art

[0002] An air generator is a device that generates air. It heats a certain material through electricity or other heating methods to generate air-forming gases, which are then mixed to form air.

[0003] Air generators are widely used in daily life. They use a compressor to compress air (or other gases) and store them in a gas storage tube for easy use. They are mainly composed of a compressor, gas storage tube, filter, and drying chamber.

[0004] In order to maximize the functionality of the air generator, it is also necessary to maintain the air generator in daily use, which includes the replacement of the drying tube. The drying tube, as the name suggests, needs to be replaced when it changes color. The replacement of the drying tube is generally done by the operator unscrewing it clockwise, then placing a new drying tube in it, and finally sealing it with filter cotton. Then, the sealing cover is rotated and tightened onto the silicone tube, and finally the drying tube is installed on the air generator.

[0005] At present, in the existing relevant solutions, the replacement of the drying tube has the following problems: the replacement process of the drying tube is complicated, and the operator needs to pour out the discolored silica gel and then install new silica gel and filter cotton. Finally, the drying tube needs to be installed on the generator and tightened. However, the drying tube may be loosened due to insufficient strength of the operator, resulting in a large area of ​​the drying tube in the drying tube being in contact with oxygen, which accelerates the volatilization speed of the drying tube and affects the normal use of the drying tube for the air generator. Summary of the Invention

[0006] In view of the shortcomings of the prior art, the present invention aims to provide an autonomous industrial air generating device.

[0007] To achieve the above objectives, the present invention provides the following technical solutions, including:

[0008] An installation mechanism, the installation mechanism is used to be inserted into the placement cavity of the air generator and install the drying tube. The installation mechanism is installed in the placement cavity and is used to install and fix the drying tube;

[0009] An installation mechanism, the installation mechanism is installed in the placement cavity, and the installation mechanism is used to install and fix the drying tube;

[0010] A material unloading mechanism is installed on the air generator and is used to assist the operator in unloading the drying tubes one by one;

[0011] The pushing mechanism is installed on the blanking mechanism. The pushing mechanism pushes the drying tube into the placement cavity through the cooperation of the blanking mechanism, and installs the drying tube on the installation mechanism.

[0012] Preferably, the installation mechanism includes a clamping assembly and a lifting assembly, both of which are installed in the placement cavity. The clamping assembly is used to clamp the drying tube, and the lifting assembly is used to place the drying tube and assist the clamping assembly to continuously stabilize the drying tube so that the drying tube can be installed quickly.

[0013] Preferably, the clamping assembly includes a cover plate, a circular groove, a sleeve, a positioning groove, a movable column, a clamping hand and a clamping block. The cover plate is fixedly connected to the air generator through a placement cavity, the circular groove is opened on the cover plate, the sleeve is spaced apart in the cover plate, the positioning groove is opened on the sleeve, the movable column is movably connected to the sleeve, the clamping hand is fixedly connected to the movable column, and the clamping block is movably connected to the clamping hand. The clamping block is used to contact the drying tube and clamp the drying tube through the cooperation of the clamping hand.

[0014] Preferably, the clamping assembly also includes a center plate, a center column, an elastic member, a positioning block and a sealing plate. The center plate is fixedly connected to the cover plate, the center column is spaced apart inside the sleeve, and the center column is fixedly connected to the center plate. The elastic member is fixedly connected to the center plate and the sleeve respectively, the positioning block is fixedly connected to the center column, and the positioning block is slidably connected to the positioning groove. The positioning block and the positioning groove are used to assist the sleeve in sliding outside the center column.

[0015] Preferably, the top material assembly includes a telescopic part, a bottom plate and a material plate. The telescopic part is fixedly connected to the air generator through the placement cavity, and the bottom plate is fixedly connected to the air generator through the placement cavity. The bottom plate assists in the disassembly and assembly of the drying tube through the extension and contraction of the telescopic part. The material plate is rotatably connected to the bottom plate, and the material plate is also movably connected to the telescopic part. The material plate is used to place the drying tube, and through the contraction of the telescopic part, the telescopic part drives the material plate to rotate into the placement cavity, thereby converting the horizontal plane of the material plate from an inclined state to a state parallel to the placement cavity.

[0016] Preferably, the unloading mechanism includes a fixing component and a unloading component, the fixing component is installed on the air generator, the fixing component is used to support and plan the unloading component, the unloading component is installed on the fixing component, and the unloading component is used to assist the drying tube in unloading one by one.

[0017] Preferably, the fixing assembly includes a base frame, a transverse plate and a sleeve plate. The base frame is fixedly connected to the air generator, and the transverse plate and the sleeve plate are both fixedly connected to the base frame.

[0018] Preferably, the unloading assembly includes a unloading barrel, a unloading port, a motor and a material part. The unloading barrel is fixedly connected to the sleeve plate. The unloading barrel is used to place the drying tube to be installed. The unloading port is opened on the unloading barrel. The unloading port is used to assist in unloading the drying tube. The motor is fixedly connected to the horizontal plate. The material part is fixedly connected to the output end of the motor. The material part is used to place the drying tubes at equal intervals. The material part is driven to rotate by the output end of the motor. The motor and the material part are used together to assist in automatic unloading of the drying tube.

[0019] Preferably, the pushing mechanism includes a cylinder, a positioning frame, a positioning column, an arc plate and a feeding channel. The cylinders are arranged on the base frame at intervals, the positioning frames are fixedly connected to the cylinder and the base frame respectively, the positioning columns are slidably connected in the positioning frame, the arc plates are fixedly connected to the positioning columns and the cylinder respectively, and the arc plates are driven to move back and forth by the extension and contraction of the cylinder. The arc plates are used to push the drying tube onto the material plate and the clamping block, and the feeding channel is fixedly connected to the base frame. The feeding channel is used to receive the drying tube discharged from the lower barrel, and the feeding channel is also used to assist the arc plates in pushing the drying tube onto the material plate and the clamping block.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] 1. An autonomous industrial air generating device, which is equipped with an installation mechanism on the air generating device, can make the process simpler than manually tightening the drying tube. After the drying tube is installed, the problem of the drying tube loosening due to insufficient strength of the operator is reduced to a certain extent, thereby relatively maintaining the normal use of the drying tube.

[0022] 2. An autonomous industrial air generating device, which is used in conjunction with a feeding mechanism and a pushing mechanism to automatically load and install the drying tube, thereby making the installation of the drying tube more convenient and enabling the drying tube to be installed on the air generator more quickly. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic structural diagram of an air generator in an autonomous industrial air generating device of the present invention;

[0024] Figure 2 The present invention is an autonomous industrial air generating device Figure 1 A schematic diagram of the enlarged structure of part A;

[0025] Figure 3 This is a schematic diagram of the structure of the material parts in an autonomous industrial air generating device of the present invention;

[0026] Figure 4 This is a schematic structural diagram of a lower barrel in an autonomous industrial air generating device of the present invention;

[0027] Figure 5 This is a schematic structural diagram of a positioning frame in an autonomous industrial air generating device of the present invention;

[0028] Figure 6 This is a schematic structural diagram of a material plate in an autonomous industrial air generating device of the present invention;

[0029] Figure 7 This is a schematic structural diagram of a feed channel in an autonomous industrial air generating device of the present invention;

[0030] Figure 8 This is a schematic structural diagram of a sealing plate in an autonomous industrial air generating device of the present invention;

[0031] Figure 9 This is a schematic structural diagram of a central column in an autonomous industrial air generating device of the present invention;

[0032] Figure 10 This is a schematic structural diagram of a sleeve in an autonomous industrial air generating device of the present invention;

[0033] Figure 11 This is a schematic structural diagram of a cover plate in an autonomous industrial air generating device of the present invention.

[0034] 1. Air generator; 2. Placement chamber; 3. Drying tube; 4. Cover plate; 5. Circular groove; 6. Sleeve; 7. Positioning groove; 8. Movable column; 9. Clamping hand; 10. Clamping block; 11. Center plate; 12. Center column; 13. Elastic part; 14. Positioning block; 15. Sealing plate; 16. Telescopic part; 17. Bottom plate; 18. Material plate; 19. Base frame; 20. Horizontal plate; 21. Sleeve plate; 22. Unloading barrel; 23. Unloading port; 24. Motor; 25. Material part; 26. Cylinder; 27. Positioning frame; 28. Positioning column; 29. ​​Arc plate; 30. Feeding channel. DETAILED DESCRIPTION

[0035] Reference Figures 1 to 11 An embodiment of an autonomous industrial air generating device of the present invention is further described.

[0036] In the description of the present invention, it should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention.

[0037] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, a feature specified as "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.

[0038] An autonomous industrial air generating device comprising:

[0039] The installation mechanism is used to be inserted into the placement cavity 2 of the air generator 1 and install the drying tube 3. The installation mechanism is installed in the placement cavity 2 and is used to install and fix the drying tube 3.

[0040] The air generator 1 is mainly composed of compressor, air storage pipe, filter, drying chamber and other main parts;

[0041] The air generator 1 is used for the use of oil chromatography carrier gas. Generally, air has multiple uses: on the one hand, FID, FPD and NPD all need to use air as a combustion-supporting gas; on the other hand, when the gas chromatograph is equipped with an automatic six-way valve or other devices, air can be used as the driving gas for switching the driving switching device;

[0042] The drying tube 3 needs to be used in conjunction with the air generator 1. Usually, the drying tube 3 is composed of a drying tube 3 and filter cotton. The end of the drying tube 3 is connected to the air generator 1 through the placement cavity.

[0043] An installation mechanism, the installation mechanism is installed in the placement chamber 2, and the installation mechanism is used to install and fix the drying tube 3;

[0044] A material unloading mechanism is installed on the air generator 1 and is used to assist the operator in unloading the drying tubes 3 one by one;

[0045] The pushing mechanism is installed on the blanking mechanism. The pushing mechanism pushes the drying tube 3 into the placement chamber 2 through the cooperation of the blanking mechanism, and installs the drying tube 3 on the installation mechanism.

[0046] The installation mechanism includes a clamping assembly and a lifting assembly, both of which are installed in the placement cavity 2. The clamping assembly is used to clamp the drying tube 3, and the lifting assembly is used to place the drying tube 3 and assist the clamping assembly to continuously stabilize the drying tube 3 so that the drying tube 3 can be quickly installed.

[0047] The clamping assembly includes a cover plate 4, a circular groove 5, a sleeve 6, a positioning groove 7, a movable column 8, a clamping hand 9 and a clamping block 10. The cover plate 4 is fixedly connected to the air generator 1 through the placement cavity 2. The circular groove 5 is opened on the cover plate 4. The sleeve 6 is arranged at intervals in the cover plate 4. The positioning groove 7 is opened on the sleeve 6. The movable column 8 is movably connected to the sleeve 6. The clamping hand 9 is fixedly connected to the movable column 8. The clamping block 10 is movably connected to the clamping hand 9. The clamping block 10 is used to contact the drying tube 3 and clamp the drying tube 3 through the cooperation of the clamping hand 9.

[0048] Specific reference Figure 8 and Figure 11 The cover plate 4 is in the shape of a truncated cone with a small top and a large bottom, and three circular grooves 5 are opened on the cover plate 4 at equal intervals;

[0049] The number of positioning slots 7, movable columns 8, clamping hands 9 and clamping blocks 10 must be consistent. To ensure the sealing effect and stability of the drying tube 3, the number of clamping blocks 10 must not be less than two, and can be increased according to actual usage.

[0050] The circular groove 5 is used to stabilize the movable column 8 and assist the movable column 8 in moving;

[0051] When the drying tube 3 moves onto the material plate 18, the top of the drying tube 3 squeezes the sealing plate 15, so that the sleeve 6 is assisted by the positioning groove 7 and the positioning block 14 to move closer to the center plate 11. At this time, the elastic member 13 is also squeezed. When the sleeve 6 moves upward, the movable column 8 connected thereto is limited by the circular groove 5 and presents a shape with one end high and the other end low (the end connected to the sleeve 6 is high, and the end connected to the clamping hand 9 is low), and then the ends of the three clamping hands 9 connected to the clamping block 10 are moved closer to the center, and then the sealing block fixes the drying tube 3.

[0052] The clamping assembly further includes a center plate 11, a center column 12, an elastic member 13, a positioning block 14, and a sealing plate 15. The center plate 11 is fixedly connected to the cover plate 4, the center column 12 is spaced apart inside the sleeve 6, and the center column 12 is fixedly connected to the center plate 11. The elastic member 13 is fixedly connected to the center plate 11 and the sleeve 6, respectively. The positioning block 14 is fixedly connected to the center column 12, and the positioning block 14 is slidably connected to the positioning groove 7. The positioning block 14 and the positioning groove 7 are used to assist the sleeve 6 in sliding outside the center column 12.

[0053] The center plate 11 and the cover plate 4 are concentrically arranged, and the center plate 11 is used to connect and fix the center column 12;

[0054] The center column 12 and the center plate 11 are also concentrically arranged;

[0055] When the end of the drying tube 3 presses or separates the sealing plate 15, the sleeve 6 also slides outside the central column 12, and the elastic member 13 is also compressed or expanded, and the positioning block 14 also slides in the positioning groove 7;

[0056] The positioning block 14 and the positioning groove 7 are used to stabilize the movement trajectory of the sleeve 6 on the central column 12 to assist the movement of the sleeve 6;

[0057] The diameter of the sealing plate 15 can be adjusted according to the actual diameter of the drying tube 3;

[0058] The elastic member 13 itself has a certain degree of supporting force and resilience. When the drying tube 3 and the sealing plate 15 are in contact, the elastic member 13 squeezes the sleeve 6 through its own tension, so that the sealing plate 15 continues to squeeze the drying tube 3 to achieve a sealing effect.

[0059] The lifting assembly includes a telescopic member 16, a bottom plate 17 and a material plate 18. The telescopic member 16 is fixedly connected to the air generator 1 through the placement chamber 2. The bottom plate 17 is fixedly connected to the air generator 1 through the placement chamber 2. The bottom plate 17 assists in the disassembly and assembly of the drying tube 3 by the extension and contraction of the telescopic member 16. The material plate 18 is rotatably connected to the bottom plate 17. At the same time, the material plate 18 is also movably connected to the telescopic member 16. The material plate 18 is used to place the drying tube 3. Through the contraction of the telescopic member 16, the telescopic member 16 drives the material plate 18 to rotate into the placement chamber 2, thereby converting the horizontal plane of the material plate 18 from an inclined state to a state parallel to the placement chamber 2.

[0060] The use of the telescopic member 16 requires the start and stop control of itself through an external control switch;

[0061] The telescopic member 16 is used to cooperate with the arc plate 29 to install and fix the drying tube 3. The size of the material plate 18 can be adjusted according to the actual diameter of the drying tube 3.

[0062] The cylinder 26 cooperates with the arc plate 29 to continuously push the drying tube 3 from the feeding channel 30 to the material plate 18, so that the position of the originally tilted material plate 18 changes;

[0063] The bottom plate 17 is used to support and assist the movement of the material plate 18 .

[0064] The unloading mechanism includes a fixed component and a unloading component. The fixed component is installed on the air generator 1, and is used to support and plan the unloading component. The unloading component is installed on the fixed component, and is used to assist the drying tube 3 in unloading one by one.

[0065] The fixing assembly includes a base frame 19, a transverse plate 20 and a sleeve plate 21. The base frame 19 is fixedly connected to the air generator 1, and the transverse plate 20 and the sleeve plate 21 are fixedly connected to the base frame 19;

[0066] The base frame 19 only needs to fix the transverse plate 20 , the sleeve plate 21 , and the feeding channel 30 , and the shape of the base frame 19 is not specifically limited here.

[0067] The unloading assembly includes a unloading barrel 22, an unloading port 23, a motor 24 and a material piece 25. The unloading barrel 22 is fixedly connected to the sleeve plate 21. The unloading barrel 22 is used to place the drying tube 3 to be installed. The unloading port 23 is opened on the unloading barrel 22. The unloading port 23 is used to assist in unloading the drying tube 3. The motor 24 is fixedly connected to the cross plate 20. The material piece 25 is fixedly connected to the output end of the motor 24. The material piece 25 is used to place the drying tubes 3 at equal intervals. The material piece 25 is driven to rotate by the output end of the motor 24. The motor 24 and the material piece 25 cooperate to assist in automatic unloading of the drying tube 3.

[0068] Specific reference Figure 4 , the discharge barrel 22 is a hollow circular column, and the discharge port 23 is also circular, in order to facilitate the discharge of the circular cylindrical drying tube 3;

[0069] The discharge port 23 must be aligned with the feed channel 30 so that the drying tube 3 can be accurately dropped onto the feed channel 30;

[0070] The use of the motor 24 needs to be controlled by an external control switch;

[0071] Specific reference Figure 1 and Figure 3 , a plurality of open arc-shaped grooves (not marked in the figure) are provided in the material part 25, which are used to place the drying tubes 3 at equal intervals, so as to facilitate the temporary storage and unloading of the drying tubes 3;

[0072] When the external control switch starts the motor 24, the output end of the motor 24 drives the material piece 25 to rotate. When the arc groove at the bottom of the material piece 25 coincides with the discharge port 23 on the discharge barrel 22, the drying tube 3 is placed on the feed channel 30.

[0073] The pushing mechanism includes a cylinder 26, a positioning frame 27, a positioning column 28, a curved plate 29 and a feeding channel 30. The cylinder 26 is arranged on the base frame 19 at intervals, and the positioning frame 27 is fixedly connected to the cylinder 26 and the base frame 19 respectively. The positioning column 28 is slidably connected in the positioning frame 27. The curved plate 29 is fixedly connected to the positioning column 28 and the cylinder 26 respectively. The curved plate 29 is driven to reciprocate by the extension and contraction of the cylinder 26. The curved plate 29 is used to push the drying tube 3 onto the material plate 18 and the clamping block 10. The feeding channel 30 is fixedly connected to the base frame 19. The feeding channel 30 is used to receive the drying tube 3 discharged from the lower barrel 22. The feeding channel 30 is also used to assist the curved plate 29 in pushing the drying tube 3 onto the material plate 18 and the clamping block 10;

[0074] The use of cylinder 26 needs to be controlled by an external control switch;

[0075] The length of the cylinder 26 can be adjusted according to the length of the feeding channel 30;

[0076] The positioning frame 27 and the positioning column 28 cooperate to stabilize the extension and contraction of the cylinder 26, making the movement of the arc plate 29 more stable;

[0077] The feeding channel 30 is used to cooperate with the arc plate 29 to push the drying tube 3.

[0078] Working principle:

[0079] Step 1: First, the air generator 1 is started by an external control switch, and the oil chromatography carrier gas is generated by the operator;

[0080] Step 2: When installing the drying tube 3, after the drying tube 3 has been used for a period of time, the drying tube 3 as a whole changes from blue to red. At this time, in order to ensure the normal function of the drying tube 3, it needs to be replaced. At this time, the motor 24 is started by the external control switch, and then the motor 24 drives the material part 25 connected thereto to rotate, so that the drying tube 3 in the material part 25 moves synchronously with the material part 25 until the drying tube 3 moves to coincide with the discharge port 23. Then, the drying tube 3 is placed under the discharge port 23 into the loading channel 30;

[0081] Step 3: The cylinder 26 is then activated, and the cylinder 26, with the assistance of the positioning frame 27 and the positioning column 28, drives the curved plate 29 to move toward the placement chamber 2. At this time, the curved plate 29 contacts the drying tube 3 and also pushes the drying tube 3 to move synchronously until the drying tube 3 moves between the material plate 18 and the clamping block 10.

[0082] Step 4: Then start the telescopic member 16, so that the telescopic member 16 contracts and drives the material plate 18 from the inclined state to the horizontal state with the placement chamber 2. At this time, the drying tube 3 is used for the horizontal change of the material plate 18 to gradually contact the sealing plate 15, and squeeze the sealing plate 15 to make the sleeve 6 on the sealing plate 15 slide toward the center plate 11. In the process of approaching the center plate 11, the movable column 8 drives the three connected clamping hands 9 to move toward the center until the clamping block 10 contacts the outside of the drying tube 3 and fixes the drying tube 3. Then the installation of the drying tube 3 is completed.

[0083] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, various improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of the present invention.

Claims

1. An autonomous industrial air generating device, characterized in that: include: An installation mechanism, the installation mechanism being used to be inserted into the placement cavity (2) of the air generator (1) and to install the drying tube (3), the installation mechanism being installed in the placement cavity (2), and the installation mechanism being used to install and fix the drying tube (3); The installation mechanism comprises a clamping assembly and a lifting assembly, both of which are installed in the placement cavity (2), the clamping assembly is used to clamp the drying tube (3), and the lifting assembly is used to place the drying tube (3) and assist the clamping assembly to continuously stabilize the drying tube (3) so that the drying tube (3) can be quickly installed; The clamping assembly includes a cover plate (4), a circular groove (5), a sleeve (6), a positioning groove (7), a movable column (8), a clamping hand (9) and a clamping block (10), wherein the cover plate (4) is fixedly connected to the air generator (1) through the placement cavity (2), the circular groove (5) is provided on the cover plate (4), the sleeve (6) is spaced apart in the cover plate (4), the positioning groove (7) is provided on the sleeve (6), the movable column (8) is movably connected to the sleeve (6), the clamping hand (9) is fixedly connected to the movable column (8), the clamping block (10) is movably connected to the clamping hand (9), and the clamping block (10) is used to contact the drying tube (3) and clamp the drying tube (3) through the cooperation of the clamping hand (9); The clamping assembly further comprises a center plate (11), a center column (12), an elastic member (13), a positioning block (14) and a sealing plate (15), wherein the center plate (11) is fixedly connected to the cover plate (4), the center column (12) is spaced apart inside the sleeve (6), and the center column (12) is fixedly connected to the center plate (11), the elastic member (13) is fixedly connected to the center plate (11) and the sleeve (6), respectively, the positioning block (14) is fixedly connected to the center column (12), and the positioning block (14) is slidably connected to the positioning groove (7), and the positioning block (14) and the positioning groove (7) are used to assist the sleeve (6) in sliding outside the center column (12); A material unloading mechanism, the material unloading mechanism being mounted on the air generator (1), and being used to assist an operator in unloading the drying tubes (3) one by one; The unloading mechanism comprises a fixing assembly and an unloading assembly, wherein the fixing assembly is mounted on the air generator (1), the fixing assembly is used to support and fix the unloading assembly, the unloading assembly is mounted on the fixing assembly, and the unloading assembly is used to assist the drying tube (3) in unloading one by one; A pushing mechanism, the pushing mechanism being mounted on the blanking mechanism, the pushing mechanism pushing the drying tube (3) into the placement chamber (2) through cooperation with the blanking mechanism, and mounting the drying tube (3) on the mounting mechanism; The pushing mechanism includes a cylinder (26), a positioning frame (27), a positioning column (28), an arc plate (29) and a feeding channel (30), wherein the cylinder (26) is spaced apart and arranged on the base frame (19), the positioning frame (27) is fixedly connected to the cylinder (26) and the base frame (19), the positioning column (28) is slidably connected to the positioning frame (27), the arc plate (29) is fixedly connected to the positioning column (28) and the cylinder (26), and the cylinder (26) is pushed forward by the cylinder. The telescopic drive of (26) drives the arc plate (29) to move back and forth. The arc plate (29) is used to push the drying tube (3) onto the material plate (18) and the clamping block (10). The feeding channel (30) is fixedly connected to the base frame (19). The feeding channel (30) is used to receive the drying tube (3) discharged from the lower barrel (22). The feeding channel (30) is also used to assist the arc plate (29) in pushing the drying tube (3) onto the material plate (18) and the clamping block (10).

2. The autonomous industrial air generating device according to claim 1, characterized in that: The top material assembly includes a telescopic member (16), a bottom plate (17) and a material plate (18). The telescopic member (16) is fixedly connected to the air generator (1) through the placement chamber (2). The bottom plate (17) is fixedly connected to the air generator (1) through the placement chamber (2). The bottom plate (17) assists in the disassembly and assembly of the drying tube (3) through the extension and contraction of the telescopic member (16). The material plate (18) is rotatably connected to the bottom plate (17). At the same time, the material plate (18) is also movably connected to the telescopic member (16). The material plate (18) is used to place the drying tube (3). Through the contraction of the telescopic member (16), the telescopic member (16) drives the material plate (18) to rotate into the placement chamber (2), thereby converting the horizontal plane of the material plate (18) from an inclined state to a state parallel to the placement chamber (2).

3. The autonomous industrial air generating device according to claim 1, characterized in that: The fixed assembly comprises a base frame (19), a transverse plate (20) and a sleeve plate (21); the base frame (19) is fixedly connected to the air generator (1); and the transverse plate (20) and the sleeve plate (21) are both fixedly connected to the base frame (19).

4. The autonomous industrial air generating device according to claim 1, characterized in that: The unloading assembly includes a unloading barrel (22), an unloading port (23), a motor (24) and a material part (25), wherein the unloading barrel (22) is fixedly connected to the sleeve plate (21), and the unloading barrel (22) is used to place the drying tube (3) to be installed, and the unloading port (23) is opened on the unloading barrel (22), and the unloading port (23) is used to assist in unloading the drying tube (3), and the motor (24) is fixedly connected to the transverse plate (20), and the material part (25) is fixedly connected to the output end of the motor (24), and the material part (25) is used to place the drying tubes (3) at equal intervals, and the material part (25) is driven to rotate by the output end of the motor (24), and the motor (24) and the material part (25) cooperate to assist in automatic unloading of the drying tube (3).

Citation Information

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