Disassembling and assembling type artificial hail suppression and precipitation enhancement rocket projectile storage rack

By designing a rocket storage frame with multi-directional restriction and slidable conical abutment plate, the problem of rocket shaking during transportation is solved, and stable restrictions and safe transportation of rockets of different lengths are achieved.

CN222895629UActive Publication Date: 2025-05-23HOTAN PREFECTURE METEOROLOGICAL BUREAU
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Patent Information

Application Number
CN202422042520.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-05-23
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

During transportation, the rocket has a shaking due to the lack of clamping mechanism of the storage rack, which poses safety hazards.

Method used

An unloading artificial hail-resistant rain-increasing rocket storage frame is designed, using frame body, cover body, arc-shaped bearing plate, tail abutment plate and conical abutment plate. Through the multi-directional limitation of these components and the slidable conical abutment plate, it adapts to rockets of different lengths to prevent shaking.

Benefits of technology

It effectively prevents rockets from shaking during transportation, improves the stability and safety of transportation, and is suitable for rockets of different lengths.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a loading and unloading type artificial hail suppression and precipitation enhancement rocket projectile storage rack, relates to the field of artificial weather influence operation, and is used for solving the problem that rocket projectiles shake when being stored and transported in the rocket projectile storage rack. The detachable artificial hail suppression and precipitation enhancement rocket projectile storage rack comprises a frame body, a cover body, rocket projectiles, a first arc-shaped bearing plate, a second arc-shaped bearing plate, a tail abutting plate and a conical abutting plate. A storage area is arranged in the frame body, and an opening is formed in one side of the frame body and communicates with the storage area; the cover body covers the opening and is clamped with the frame body; the rocket projectile is placed in the storage area; the first arc-shaped bearing plate is arranged in the storage area; the second arc-shaped bearing plate is arranged in the cover body, the rocket projectile is arranged between the first arc-shaped bearing plate and the second arc-shaped bearing plate, and at least part of the cylindrical surface of the rocket projectile abuts against the first arc-shaped bearing plate and the second arc-shaped bearing plate; the tail abutting plate is arranged on one side of the storage area and abuts against the tail of the rocket projectile.
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Description

Technical Field

[0001] The present application relates to the field of artificial weather modification operations, and in particular to a storage rack for artificial hail prevention and rain enhancement rockets. Background Art

[0002] The unloading and loading artificial hail prevention and rain enhancement rocket storage rack is a device specially used to store such rockets. It has the characteristics of good stability, good protection and good ventilation. At the same time, it can store the rockets in an orderly manner, reduce the risk of accidental triggering and facilitate access.

[0003] However, there are differences in the types of rockets. Although the maximum diameter of the rockets on the same rocket rack is the same, the lengths of different types of rockets will be different, and there will also be differences in structure. The rocket storage rack will have a circumferential elastic protection structure in the storage area of ​​the rocket, which can not only ensure the safety of the rocket, but also ensure the stability of the rocket's position.

[0004] However, due to the difference in lengths of different types of rockets, and the lack of corresponding clamping mechanisms in the length direction of the rocket storage rack, the rockets will shake during storage and transportation, posing a danger. Utility Model Content

[0005] The present application provides a dismountable artificial hail prevention and rain enhancement rocket storage rack, which is used to solve the problem of rockets shaking during storage and transportation in the rocket storage rack.

[0006] The present application provides a removable artificial hail prevention and rain enhancement rocket storage rack, comprising a frame, a cover, a rocket, a first arc-shaped receiving plate, a second arc-shaped receiving plate, a tail abutment plate and a conical abutment plate; an internal storage area of ​​the frame, one side of the frame is provided with an opening, the opening is connected to the storage area; the cover is arranged at the opening, and the cover is snap-connected with the frame; the rocket is placed in the storage area; the first arc-shaped receiving plate is arranged in the storage area; the second arc-shaped receiving plate is arranged in the cover, the rocket is arranged between the first arc-shaped receiving plate and the second arc-shaped receiving plate, and at least part of the cylindrical surface of the rocket abuts against the first arc-shaped receiving plate and the second arc-shaped receiving plate; the tail abutment plate is arranged on one side of the storage area, and the tail abutment plate abuts against the tail of the rocket; the conical abutment plate is arranged on the other side of the storage area, the opening of the conical abutment plate faces the tail abutment plate, the conical abutment plate is slidably connected to the frame, and the rocket at least partially abuts against the inner conical surface of the conical abutment plate.

[0007] The frame body, the first arc-shaped receiving plate, the second arc-shaped receiving plate, the tail abutment plate and the conical abutment plate in the cover body in the present application can restrict the rocket in multiple directions, ensure the position of the rocket, and avoid bumps during the transportation of the rocket; the tail abutment plate and the conical abutment plate can abut the head and tail of the rocket along the axial direction of the rocket, and the installation position of rockets of different lengths can be adjusted through the sliding conical abutment plate, so that rockets of different lengths can be well restricted to avoid shaking during transportation.

[0008] In some embodiments of the present application, the unloading and loading artificial hail prevention and rain enhancement rocket storage rack also includes a slide rail, which is arranged on one side wall of the storage area, and extends along the axial direction of the first arc-shaped supporting plate; a slide groove is formed on one side wall of the conical abutment plate, and the slide groove is slidably connected to the slide rail.

[0009] The slide rail can facilitate the sliding of the conical abutment plate, thereby making the sliding of the conical abutment plate more convenient and the sliding direction more accurate, thereby making the conical abutment plate more stably abutting against the warhead of the rocket.

[0010] In some embodiments of the present application, two slide rails are provided, the two slide rails are provided on two opposite side walls of the storage area, two slide grooves are provided, the two slide grooves correspond to the two slide rails one by one, and the slide rails extend into the corresponding slide grooves.

[0011] The two slide rails can further determine the sliding direction of the conical abutment plate, thereby making the position of the conical abutment plate more stable.

[0012] In some embodiments of the present application, the slide rail includes a connecting shaft and a retaining plate, one end of the connecting shaft extends into the frame, the connecting shaft extends along the axial direction of the first arc-shaped supporting plate, the retaining plate is arranged in the storage area, and the other end of the connecting shaft is fixedly connected to the retaining plate; the conical abutment plate is arranged on the side of the retaining plate away from the tail abutment plate, and the conical abutment plate is slidably connected to the connecting shaft.

[0013] The connecting shaft and the retaining plate can make the sliding of the conical abutment plate more stable. At the same time, the structure can stabilize the position of the connecting shaft in the storage area, stabilize the position of the conical abutment plate during the transportation of the rocket, and thus make the transportation of the rocket more stable.

[0014] In some embodiments of the present application, an external thread is provided on the outer ring wall of the connecting shaft, and the slide rail also includes a nut, which is threadably connected to the external thread. The nut is provided on the side of the conical abutment plate away from the retaining plate, and the nut abuts against the side wall of one side of the conical abutment plate.

[0015] The nut can limit the conical abutment plate, thereby making the position of the rocket more stable during transportation and preventing the rocket from shaking during transportation.

[0016] In some embodiments of the present application, a plurality of nuts are provided, and the plurality of nuts are all threadedly connected to the connecting shaft. The plurality of nuts can further enhance the limiting effect on the conical abutment plate.

[0017] In some embodiments of the present application, the unloading type artificial hail prevention and rain enhancement rocket storage rack further includes a flexible layer, which is arranged on the inner wall of the conical abutment plate and abuts against the rocket. The flexible layer can avoid the rocket from being rigidly connected to the conical abutment plate, thereby improving the protection effect of the conical rocket.

[0018] In some embodiments of the present application, the flexible layer is further arranged on a side wall of the tail abutment plate facing the conical abutment plate, and the flexible layer abuts against the rocket. In this case, the rocket and the tail abutment plate are prevented from being rigidly connected, thereby improving the protection effect on the conical rocket.

[0019] In some embodiments of the present application, the flexible layer is also disposed on the curved surface of the first curved receiving plate and the curved surface of the second curved receiving plate. In this case, the rocket can be prevented from being rigidly connected to the first curved receiving plate and the second curved receiving plate, thereby improving the protection effect on the conical rocket.

[0020] In some embodiments of the present application, a plurality of storage areas are provided. The plurality of storage areas can store a plurality of rockets at the same time, thereby improving the storage efficiency and space utilization of the rocket storage rack. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The accompanying drawings are used to provide a further understanding of the technical solution of the utility model and constitute a part of the specification. Together with the embodiments of the present application, they are used to explain the technical solution of the utility model and do not constitute a limitation on the technical solution of the utility model.

[0022] Figure 1 A schematic diagram of a removable artificial hail prevention and rain enhancement rocket storage rack provided in an embodiment of the present application.

[0023] Figure markings: 1-frame; 2-opening; 3-cover; 4-rocket; 5-first arc-shaped receiving plate; 6-second arc-shaped receiving plate; 7-tail abutment plate; 8-conical abutment plate; 81-slide groove; 82-flexible layer; 9-slide rail; 91-retaining plate; 92-connecting shaft; 93-nut. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0025] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back...) are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0026] 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 indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise specified, "plurality" means two or more.

[0027] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances. In addition, when describing a pipeline, the "connected" and "connection" used in this application have the meaning of conduction. The specific meaning needs to be understood in conjunction with the context.

[0028] In the embodiments of the present application, words such as "exemplary" or "for example" are used to indicate examples, illustrations or descriptions. Any embodiment or design described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as being more preferred or more advantageous than other embodiments or designs. Specifically, the use of words such as "exemplary" or "for example" is intended to present related concepts in a specific way.

[0029] The unloading and loading artificial hail prevention and rain enhancement rocket storage rack is a device specially used to store such rockets. It has the characteristics of good stability, good protection and good ventilation. At the same time, it can store the rockets in an orderly manner, reduce the risk of accidental triggering and facilitate access.

[0030] However, there are differences in the types of rockets. Although the maximum diameter of the rockets on the same rocket rack is the same, the lengths of different types of rockets will be different, and there will also be differences in structure. The rocket storage rack will have a circumferential elastic protection structure in the storage area of ​​the rocket, which can not only ensure the safety of the rocket, but also ensure the stability of the rocket's position.

[0031] However, since different types of rockets have different lengths, and the rocket storage rack lacks a corresponding clamping mechanism in the length direction, the rockets will shake during storage and transportation, posing a danger.

[0032] To do this, please refer to Figure 1The present application provides a storage rack for artificial hail prevention and rain enhancement rockets 4, which includes a frame 1, a cover 3, a rocket 4, a first arc-shaped receiving plate 5, a second arc-shaped receiving plate 6, a tail abutment plate 7 and a conical abutment plate 8.

[0033] Please refer to Figure 1 , the internal storage area of ​​the frame 1, one side of the frame 1 is provided with an opening 2, and the opening 2 is connected to the storage area. The frame 1 can be a metal frame 1 or a non-metal frame 1, and its material can be iron or wood; the frame 1 can be a rectangular parallelepiped, and the direction of the opening 2 can be perpendicular to the axis direction of the rocket 4.

[0034] Please refer to Figure 1 The cover 3 is covered at the opening 2, and the cover 3 is snap-fitted with the frame 1. The cover 3 can be a conventional rocket 4 storage rack cover 3, which can be plate-shaped, and a card block is provided at the connection with the frame 1 to facilitate snap-fitting with the cover 3.

[0035] Please refer to Figure 1 , rocket 4 is placed in the storage area. Rocket 4 can be a conventional rocket 4.

[0036] Please refer to Figure 1 The first arc-shaped receiving plate 5 is arranged in the storage area. The first arc-shaped receiving plate 5 can be a metal plate or a non-metal plate, and can be made of the same material as the frame 1 or a different material; one side of the first arc-shaped receiving plate 5 can form an arc surface to facilitate contact with the rocket 4; the first arc-shaped receiving plate 5 can be fixedly connected to the frame 1 to ensure the support stability of the rocket 4; the first arc-shaped receiving plate 5 can be set to multiple, and the multiple first arc-shaped receiving plates 5 can be distributed at intervals to stably support the rocket 4.

[0037] Please refer to Figure 1 , the second curved receiving plate 6 is arranged in the cover body 3, the rocket 4 is arranged between the first curved receiving plate 5 and the second curved receiving plate 6, and at least part of the cylindrical surface of the rocket 4 abuts against the first curved receiving plate 5 and the second curved receiving plate 6. The second curved receiving plate 6 can be arranged corresponding to the first curved receiving plate 5, the second curved receiving plate 6 can be arranged in the cover body 3, and the curved surface on the second curved receiving plate 6 can be arranged corresponding to the curved surface of the first curved receiving plate 5.

[0038] Please refer to Figure 1 The tail abutment plate 7 is arranged at one side of the storage area, and the tail abutment plate 7 abuts against the tail of the rocket 4. The tail abutment plate 7 can be a flat plate, or a protrusion can be formed on the tail abutment plate 7; the tail abutment plate 7 can be formed by a side wall of the storage area of ​​the frame 1.

[0039] Please refer to Figure 1The conical abutment plate 8 is arranged at the other side of the storage area, the opening 2 of the conical abutment plate 8 faces the tail abutment plate 7, the conical abutment plate 8 is slidably connected to the frame 1, and the rocket 4 at least partially abuts against the inner conical surface of the conical abutment plate 8. The material of the conical abutment plate 8 can be set corresponding to the material of the frame 1, and it can be a metal material or a non-metal material.

[0040] Please refer to Figure 1 The conical surface of the conical abutment plate 8 can be set to multiple arcs. Along the direction of the rocket 4 toward the warhead, the arc of the conical abutment plate 8 can be gradually increased to enable it to cooperate with more types of warheads and abut against the warhead at the same time.

[0041] Please refer to Figure 1 The sliding connection can achieve the sliding effect by setting a plurality of slots in the frame 1 to achieve position change, or the sliding effect can be achieved by a slide rail 9 or a sliding surface.

[0042] Please refer to Figure 1 The frame body 1 and the first arc-shaped receiving plate 5, the second arc-shaped receiving plate 6, the tail abutment plate 7 and the conical abutment plate 8 in the cover body 3 in the present application can restrict the rocket 4 in multiple directions, ensure the position of the rocket 4, and avoid collision during transportation of the rocket 4; the tail abutment plate 7 and the conical abutment plate 8 can abut the head and tail of the rocket 4 along the axial direction of the rocket 4, and the installation position of rockets 4 of different lengths can be adjusted through the slidable conical abutment plate 8, so that rockets 4 of different lengths can be well restricted to avoid shaking during transportation.

[0043] Please refer to Figure 1 In some examples, the storage rack for the unloading type artificial hail prevention and rain enhancement rocket 4 also includes a slide rail 9, which is arranged on a side wall of the storage area, and the slide rail 9 extends along the axial direction of the first arc-shaped supporting plate 5; a slide groove 81 is formed on one side wall of the conical abutment plate 8, and the slide groove 81 is slidably connected to the slide rail 9.

[0044] Please refer to Figure 1 The slide rail 9 can facilitate the sliding of the conical abutment plate 8, thereby making the sliding of the conical abutment plate 8 more convenient and the sliding direction more accurate, thereby making the conical abutment plate 8 more stably abutting the warhead of the rocket 4.

[0045] Please refer to Figure 1 In some examples, the slide rail 9 may be a protrusion or a groove; or may be a track-type structure installed in the frame 1. The slide groove 81 may be a concave structure matched with the slide rail 9, which may be square, circular or other shapes, as long as they can slide against each other.

[0046] Please refer to Figure 1In some examples, two slide rails 9 are provided, and the two slide rails 9 are provided on two opposite side walls of the storage area. Two slide grooves 81 are provided, and the two slide grooves 81 correspond to the two slide rails 9 one by one, and the slide rails 9 extend into the corresponding slide grooves 81 .

[0047] Please refer to Figure 1 The two slide rails 9 can further determine the sliding direction of the conical abutment plate 8, thereby making the position of the conical abutment plate 8 more stable.

[0048] In some examples, the two slide rails 9 may be completely identical or partially identical; the position of the slide groove 81 may be set corresponding to the slide rail 9 so that the conical abutment plate 8 slides along the slide rail 9 .

[0049] Please refer to Figure 1 In some examples, the slide rail 9 includes a connecting shaft 92 and a retaining plate 91, one end of the connecting shaft 92 extends into the frame 1, and the connecting shaft 92 extends along the axial direction of the first arc-shaped supporting plate 5. The retaining plate 91 is arranged in the storage area, and the other end of the connecting shaft 92 is fixedly connected to the retaining plate 91; the conical abutment plate 8 is arranged on the side of the retaining plate 91 away from the tail abutment plate 7, and the conical abutment plate 8 is slidably connected to the connecting shaft 92.

[0050] The connecting shaft 92 and the retaining plate 91 can make the sliding of the conical abutment plate 8 more stable. At the same time, this structure can make the position of the connecting shaft 92 stable in the storage area, so that the position of the conical abutment plate 8 is stable during the transportation of the rocket 4, thereby making the transportation of the rocket 4 more stable.

[0051] In some examples, the connecting shaft 92 may be a metal shaft or a non-metal shaft, and the retaining plate 91 may be a metal plate or a non-metal plate;

[0052] When the connecting shaft 92 and the retaining plate 91 are both made of metal, they can be both made of iron, and corresponding anti-rust structures can be provided outside the connecting shaft 92 and the retaining plate 91. At this time, the connecting shaft 92 and the retaining plate 91 should be fixedly connected to the frame 1, for example, by welding or bolting.

[0053] Please refer to Figure 1 In some examples, a corresponding slide groove 81 can be set on the conical abutment plate 8 of the conical abutment plate 8. The slide groove 81 can be opened on the side wall of the conical abutment plate 8, or can be opened on the conical abutment plate 8 and form a through hole in a through form so that the conical abutment plate 8 can slide on the connecting shaft 92.

[0054] Please refer to Figure 1In some examples, an external thread is provided on the outer ring wall of the connecting shaft 92, and the slide rail 9 also includes a nut 93, which is threadably connected to the external thread. The nut 93 is provided on the side of the conical abutment plate 8 away from the retaining plate 91, and the nut 93 abuts against the side wall of one side of the conical abutment plate 8.

[0055] The nut 93 can limit the conical abutment plate 8, thereby making the position of the rocket 4 more stable during transportation and preventing the rocket 4 from shaking during transportation.

[0056] In some examples, the external thread can be provided on the entire outer ring wall of the connecting shaft 92 , or can be provided only on a partial area of ​​the connecting shaft 92 , so that only this part of the connecting shaft 92 forms a partial adjustable space of the conical abutment plate 8 .

[0057] In some examples, the nut 93 is provided in plurality, and the plurality of nuts 93 are all threadedly connected to the connecting shaft 92. The plurality of nuts 93 can further enhance the limiting effect on the conical abutment plate 8.

[0058] Please refer to Figure 1 In some examples, the number of nuts 93 on each connecting shaft 92 may be 2 or 3, and the materials and types of different nuts 93 may be the same or different.

[0059] Please refer to Figure 1 In some examples, the unloading type artificial hail prevention and rain enhancement rocket 4 storage rack further includes a flexible layer 82, which is arranged on the inner wall of the conical abutment plate 8, and the flexible layer 82 abuts against the rocket 4. The flexible layer 82 can avoid the rocket 4 from being rigidly connected to the conical abutment plate 8, thereby improving the protection effect of the conical rocket 4.

[0060] In some examples, the flexible layer 82 may cover the entire inner wall of the conical abutment plate 8 or may only cover a portion of the inner wall;

[0061] The flexible layer 82 may be a rubber layer, or a plastic layer or a foam layer. The flexible layer 82 may be fixedly connected to the conical abutment plate 8, such as by bonding, or may be detachably connected, such as by snapping or directly placing.

[0062] Please refer to Figure 1 In some examples, the flexible layer 82 is also provided on the side wall of the tail abutment plate 7 facing the conical abutment plate 8, and the flexible layer 82 abuts against the rocket 4. In this case, the rocket 4 can be prevented from being rigidly connected to the tail abutment plate 7, thereby improving the protection effect on the conical rocket 4.

[0063] Please refer to Figure 1In some examples, the flexible layer 82 may cover the entire plane of the tail abutment plate 7, or may only be provided with one or more circular ring structures in a circular ring manner, so as to achieve a flexible connection effect.

[0064] Please refer to Figure 1 In some examples, the flexible layer 82 is also disposed on the arc surface of the first arc receiving plate 5 and the arc surface of the second arc receiving plate 6. In this case, the rocket 4 can be prevented from being rigidly connected to the first arc receiving plate 5 and the second arc receiving plate 6, thereby improving the protection effect of the conical rocket 4.

[0065] Please refer to Figure 1 In some examples, the flexible layer 82 can be fixedly connected to the curved surface of the first curved receiving plate 5 and the curved surface of the second curved receiving plate 6, for example, by bonding or other connection methods. The thickness of the flexible layer 82 can be 2 mm or other thicknesses.

[0066] In some examples, the storage area is set to be multiple. Multiple storage areas can store multiple rockets 4 at the same time, improving the storage efficiency and space utilization of the rocket 4 storage rack.

[0067] In some examples, the number of storage areas may be 3 to 8, or 10 or more, and the multiple storage areas may be completely identical.

[0068] Multiple storage areas can be distributed in the same direction, such as along the side of the rocket 4, or can be distributed in an array.

[0069] In the description of this specification, specific features, structures, materials or characteristics may be combined in an appropriate manner in any one or more embodiments or examples.

[0070] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto. Any changes or substitutions within the technical scope disclosed in the present application should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.

Claims

1. A dismountable artificial hail prevention and rain enhancement rocket storage rack, characterized in that: include: A frame body, and a storage area therein, wherein one side of the frame body is provided with an opening, and the opening is communicated with the storage area; A cover body, which is disposed at the opening and is snap-connected with the frame body; rockets, placed in the storage area; A first arc-shaped receiving plate is arranged in the storage area; A second arc-shaped receiving plate is disposed in the cover body, the rocket is disposed between the first arc-shaped receiving plate and the second arc-shaped receiving plate, and at least a portion of the cylindrical surface of the rocket abuts against the first arc-shaped receiving plate and the second arc-shaped receiving plate; A tail abutment plate, disposed on one side of the storage area, the tail abutment plate abutting against the tail of the rocket; A conical abutment plate is arranged on the other side of the storage area, the opening of the conical abutment plate faces the tail abutment plate, the conical abutment plate is slidably connected to the frame, and the rocket is at least partially abutted against the inner conical surface of the conical abutment plate.

2. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 1 is characterized in that: The unloading type artificial hail prevention and rain enhancement rocket storage rack further includes a slide rail, which is arranged on a side wall of the storage area and extends along the axis direction of the first arc-shaped receiving plate; A sliding groove is formed on one side wall of the conical abutting plate, and the sliding groove is slidably connected to the sliding rail.

3. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 2 is characterized in that: The slide rails are provided in pairs, and the two slide rails are provided on two opposite side walls of the storage area. There are two slide grooves, and the two slide grooves correspond to the two slide rails one by one, and the slide rails extend into the corresponding slide grooves.

4. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 2 is characterized in that: The slide rail includes a connecting shaft and a retaining plate, one end of the connecting shaft extends into the frame, the connecting shaft extends along the axis direction of the first arc-shaped receiving plate, the retaining plate is arranged in the storage area, and the other end of the connecting shaft is fixedly connected to the retaining plate; The conical abutment plate is arranged on a side of the retaining plate away from the tail abutment plate, and the conical abutment plate is slidably connected to the connecting shaft.

5. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 4 is characterized in that: An external thread is arranged on the outer ring wall of the connecting shaft, and the slide rail also includes a nut, which is threadably connected to the external thread. The nut is arranged on a side of the conical abutment plate away from the retaining plate, and the nut abuts against a side wall of one side of the conical abutment plate.

6. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 5 is characterized in that: The nut is provided in plurality, and the plurality of nuts are all threadedly connected to the connecting shaft.

7. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to any one of claims 1 to 6, characterized in that: The unloading and loading type artificial hail prevention and rain enhancement rocket storage rack also includes a flexible layer, which is arranged on the inner wall of the conical abutment plate, and the flexible layer abuts against the rocket.

8. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 7 is characterized in that: The flexible layer is also arranged on a side wall of the tail abutment plate facing the conical abutment plate, and the flexible layer abuts against the rocket.

9. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to claim 8 is characterized in that: The flexible layer is also arranged on the arc surface of the first arc-shaped receiving plate and the arc surface of the second arc-shaped receiving plate.

10. The unloading type artificial hail prevention and rain enhancement rocket storage rack according to any one of claims 1 to 6, characterized in that: The storage area is provided in plurality.