Ammunition box structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-14
- Publication Date
- 2026-08-14
AI Technical Summary
[0005]本实用新型的目的在于提供弹药箱结构,以解决上述背景技术中提出在工作过程中,容易影响导弹装配组装的稳定性,且箱体装配时难以进行密封装配,影响存放导弹时的安全性的问题
[0014]1.该弹药箱结构,设置有便于相对卡合嵌套密封组装的箱体和箱盖,并通过其分别组装的加强架一和加强架二的使用,控制缓冲组件一和缓冲组件二使用时的稳定性,通过锁紧扣四的使用,提高上层弹药本体装配稳定性,防止弹药本体发生错位或者晃动,并通过内置的干燥剂,进行干燥放置,并配合箱体外表面侧面分别组装的防护部件,提高放置弹药本体时的安全性。
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Figure CN224635922U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ammunition box technology, specifically to ammunition box structure. Background Technology
[0002] High-density ammunition boxes are an important component of missile transportation, primarily providing safe and reliable protection for missiles during storage, transportation, and other logistical processes. They serve as buffers and load-bearing structures during loading, unloading, transportation, and storage, isolating missiles from the external environment and ensuring the safety of ammunition, thus meeting the requirements for long-term ammunition storage integrity. However, during use, it is inconvenient to control the stability of missile assembly and difficult to guarantee the safety of the ammunition box when carrying missiles.
[0003] To overcome the above-mentioned defects, the prior art (Chinese patent application with application number CN202020232706.1 and application date of 20200228) provides an ammunition box that, by setting a counting mechanism inside the box, allows personnel to easily determine the amount of ammunition inside the box by its appearance, avoiding the hassle of opening the box and reducing the frequency of opening the box, effectively ensuring the environment for storing ammunition and preventing ammunition from becoming ineffective. Although the prior art can complete the loading work, it is easy to affect the stability of missile assembly during the operation, and it is difficult to seal the box during assembly, affecting the safety of storing missiles.
[0004] To address the aforementioned issues, there is an urgent need for innovative design based on the existing ammunition box structure. Utility Model Content
[0005] The purpose of this utility model is to provide an ammunition box structure to solve the problems mentioned in the background art, which are that during the working process, the stability of missile assembly is easily affected, and the box assembly is difficult to seal, affecting the safety of missile storage.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an ammunition box structure, comprising a box body and a box cover assembled from the box body; including: a lifting component installed on the outer surface of the box body, and a locking buckle installed on the outer surface of the box body, and the box body is connected to the box cover through a limiting locking mechanism; at the same time, a reinforcing frame is installed on the inner surface of the box body, and the reinforcing frame supports the ammunition body through a limiting support mechanism; and detection port one and detection port two are respectively installed on both sides of the outer surface of the box body.
[0007] Preferably, the limiting locking mechanism further includes a second lock buckle installed on the outer surface of the box, a positioning buckle is installed on the upper surface of the box cover, and a nesting buckle is installed on the upper surface of the box body. Meanwhile, a nesting groove is opened on the lower surface of the box cover, and a sealing strip is nested and connected to the inner surface of the nesting groove.
[0008] Preferably, the boxes can be connected when stacked by the second latch, and the boxes are stacked and locked by the first positioning latch. The boxes and the lid form a nested sealing structure by the nested latch, the nested groove and the sealing strip.
[0009] Preferably, the limiting support mechanism further includes a support seat mounted on the upper surface of the reinforcing frame one, and a buffer component one connected to the upper surface of the support seat, and a rubber pad nested on the inner surface of the buffer component one. Simultaneously, a buffer component two is positioned and connected to the upper surface of the buffer component one. A guide plate is mounted on the side of the reinforcing frame one, and the guide plate is connected to the buffer component two via an assembled latch three. The reinforcing frame one and the housing form a threaded locking structure, and the reinforcing frame one forms a support structure with the buffer component one via the support seat. The buffer component one and the rubber pad form an embedded structure. Simultaneously, the buffer component one and the buffer component two are symmetrically stacked vertically, and the reinforcing frame one forms a locking and limiting structure with the buffer component two via the guide plate and the latch three.
[0010] Preferably, a positioning buckle 2 is installed on the upper surface end of the buffer component 2, and a pressure block is nested on the outer surface of the positioning buckle 2. A reinforcing frame 2 is installed on the upper surface of the pressure block and is installed on the inner surface of the box cover. At the same time, a locking buckle 4 is assembled on the upper surface of the buffer component 2, and an ammunition body is nested on the inner surface of the buffer component 2. A positioning interior block is attached to the outer surface of the ammunition body and is assembled on the inner surface of the box. A document bag is installed on the inner surface of the box.
[0011] Preferably, the second buffer assembly forms a compression structure with the second reinforcing frame through the second positioning buckle and the pressure block, and the second reinforcing frame forms a threaded locking structure with the box cover. The second buffer assembly forms a locking structure with the ammunition body through the fourth locking buckle. At the same time, the ammunition body forms a protective structure with the box body through the positioning interior block, and the box body forms an embedded installation setting with the document bag.
[0012] Preferably, a desiccant is nested and connected to the inner surface of the box, and a detection port, a pressure regulating valve, an air exchange valve and a humidity indicator are installed on the left side of the outer surface of the box, and a detection port, a QR code covering area, an air filling valve and a grounding device are installed on the right side of the outer surface of the box.
[0013] Compared with the prior art, the beneficial effects of this utility model are:
[0014] 1. The ammunition box structure is equipped with a box body and a box cover that facilitate relative interlocking and sealing assembly. The use of reinforcing frame one and reinforcing frame two, which are assembled separately, controls the stability of buffer component one and buffer component two during use. The use of locking buckle four improves the assembly stability of the upper ammunition body and prevents the ammunition body from being misaligned or shaking. The built-in desiccant is used for drying and placement. In conjunction with the protective components assembled on the outer surface of the box, the safety of placing the ammunition body is improved.
[0015] 2. This ammunition box structure is equipped with a limit locking mechanism, which controls the stability of the assembly between the box body and the box cover through the first lock. Combined with the use of nesting buckles, nesting grooves, and sealing strips, it improves the stability of the sealing during assembly. Furthermore, a limit support mechanism is provided, which effectively supports the first buffer component through the support base assembled with the first reinforcing frame, and simultaneously supports the second buffer component, improving the safety and stability of the box body during use. Combined with the second positioning buckle and the pressure block, and the use of the second reinforcing frame installed thereon, it increases the safety of the ammunition body during use. Furthermore, the use of the fourth lock on the second buffer component controls the stability of the upper ammunition body assembly, and the use of the positioning inner block prevents collisions between the tail end of the ammunition body and the box body.
[0016] 3. The ammunition box structure includes: an external inspection port for the upper ammunition (for securing the non-opening inspection cable); a humidity indicator for real-time display of humidity levels inside the box; a pressure regulating valve to balance the air pressure inside and outside the box, maintaining the packaging within safe limits regardless of changes in ambient temperature and altitude; a ventilation valve for rapid depressurization after inflation testing, facilitating quick opening, and also functioning to replace gas inside the box when used with the inflation valve; an external inspection port for the lower ammunition body (for connecting and securing the non-opening inspection cable); an inflation valve for inflating the box and performing airtightness testing; a grounding device to connect the missile inside the box to the ground, discharging charge and preventing charge buildup on the missile surface, ensuring missile safety; and a QR code affixing area, a stainless steel plate for affixing the QR code. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of the box body of this utility model;
[0018] Figure 2 This is a right-side perspective three-dimensional structural diagram of the box body of this utility model;
[0019] Figure 3 This is a three-dimensional half-section view of the box body of this utility model;
[0020] Figure 4 This is a partial cross-sectional three-dimensional structural diagram of the reinforcing frame of this utility model;
[0021] Figure 5 This is a partial cross-sectional three-dimensional structural diagram of the reinforcing frame of this utility model;
[0022] Figure 6 This is a three-dimensional structural diagram of the positioning interior block of this utility model;
[0023] Figure 7 This is a three-dimensional structural diagram of the buffer component of this utility model.
[0024] In the diagram: 1. Box body; 2. Lifting component; 3. Lock 1; 4. Box lid; 5. Lock 2; 6. Positioning buckle 1; 7. Nesting buckle; 8. Nesting groove; 9. Sealing strip; 10. Reinforcing frame 1; 11. Support base; 12. Buffer assembly 1; 13. Rubber pad; 14. Buffer assembly 2; 15. Guide plate; 16. Lock 3; 17. Positioning buckle 2; 18. Pressure block; 19. Reinforcing frame 2; 20. Ammunition body; 21. Positioning interior block; 22. Document bag; 23. Lock 4; 24. Desiccant; 25. Detection port 1; 26. Pressure regulating valve; 27. Ventilation valve; 28. Humidity indicator; 29. Detection port 2; 30. QR code affixing area; 31. Inflation valve; 32. Grounding device. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figures 1-7 The present invention provides the following technical solution: an ammunition box structure, comprising a box body 1 and a box cover 4 assembled from the box body 1.
[0027] Example 1: As Figures 1-7 The present invention provides the following technical solution: an ammunition box structure, comprising: a lifting component 2, installed on the outer surface of the box body 1, and a latch 3 installed on the outer surface of the box body 1, and a box cover 4 connected to the box body 1 through a limiting locking mechanism; a reinforcing frame 10 installed on the inner surface of the box body 1, and the reinforcing frame 10 supporting the ammunition body 20 through a limiting support mechanism; and detection ports 25 and 29 respectively installed on both sides of the outer surface of the box body 1.
[0028] During use, the lifting component 2 assembled on the outside of the box 1 facilitates lifting during transportation. The locking buckle 3 assembled on the box 1 facilitates the sealing assembly of the box cover 4 after the ammunition body 20 is assembled. During the assembly of the box cover 4 into the box 1, the nesting groove 8 opened on the box cover 4 and the sealing strip 9 nested on the inner surface of the nesting groove 8 are effectively assembled on the outer surface of the positioning buckle 6 assembled on the box 1, improving the stability of the nesting and sealing assembly between the box 1 and the box cover 4. After assembly, the locking buckle 25 can be used for later stacking and placement, improving the stability of stacking. When assembling the ammunition body 20, the working of the reinforcing frame 10 and the detection port 25 and detection port 29 improves the stability after assembly, and detects data such as internal pressure and humidity, as well as the internal safety before opening the box.
[0029] Example 2: Figures 1-7 The technical solution shown, based on Embodiment 1, also discloses the safety of the assembly of the ammunition body 20 and improves its adaptability to different working environments, avoiding storage damage to the ammunition body 20, and solving the problem that the stability of missile assembly is easily affected during the working process, and that it is difficult to perform sealed assembly during the assembly of the box. The specific contents are as follows: The limiting locking mechanism also includes a second lock 5 installed on the outer surface of the box 1, and a positioning buckle 6 installed on the upper surface of the box cover 4, and a nesting buckle 7 installed on the upper surface of the box 1. At the same time, a nesting groove 8 is opened on the lower surface of the box cover 4, and a sealing strip 9 is nested and connected to the inner surface of the nesting groove 8.
[0030] like Figure 1 and Figure 2 As shown, the box 1 can be connected when stacked by the second latch 5, and the box 1 is stacked and locked by the first positioning latch 6. The box 1 and the box cover 4 form a nested sealing structure by the nested latch 7, the nested groove 8 and the sealing strip 9.
[0031] like Figure 4 and Figure 7As shown, the limiting support mechanism also includes a support base 11 mounted on the upper surface of the reinforcing frame 10, and a buffer component 12 connected to the upper surface of the support base 11. A rubber pad 13 is nested within the inner surface of the buffer component 12, and a second buffer component 14 is positioned and docked to the upper surface of the buffer component 12. A guide plate 15 is mounted on the side of the reinforcing frame 10, and the guide plate 15 is connected to the second buffer component 14 via an assembled latch 16. The reinforcing frame 10 and the housing 1 form a threaded locking structure, and the reinforcing frame 10 forms a support structure with the buffer component 12 via the support base 11. The buffer component 12 and the rubber pad 13 form an embedded structure. The buffer component 12 and the second buffer component 14 are symmetrically stacked vertically, and the reinforcing frame 10 forms a locking and limiting structure with the second buffer component 14 via the guide plate 15 and the latch 16. Figure 5 and Figure 7 As shown, a positioning buckle 2 17 is installed on the upper end of the buffer assembly 2 14, and a pressure block 18 is nested on the outer surface of the positioning buckle 2 17. A reinforcing frame 2 19 is installed on the upper surface of the pressure block 18, and the reinforcing frame 2 19 is installed on the inner surface of the box cover 4. At the same time, a locking buckle 4 23 is assembled on the upper surface of the buffer assembly 2 14, and an ammunition body 20 is nested on the inner surface of the buffer assembly 2 14. A positioning interior block 21 is attached to the outer surface of the ammunition body 20, and the positioning interior block 21 is assembled on the inner surface of the box 1. A document bag 22 is installed on the inner surface of the box 1. Figure 6 As shown, the second buffer assembly 14 forms a compression structure with the second reinforcing frame 19 through the second positioning buckle 17 and the pressure block 18, and the second reinforcing frame 19 forms a threaded locking structure with the box cover 4. The second buffer assembly 14 forms a locking structure with the ammunition body 20 through the fourth locking buckle 23. At the same time, the ammunition body 20 forms a protective structure with the box body 1 through the positioning interior block 21, and the box body 1 forms an embedded installation setting with the document bag 22.
[0032] In use, the reinforcing frame 10 is stably assembled on the lower inner surface of the housing 1, and a support base 11 is installed on the upper surface of the reinforcing frame 10. A buffer assembly 12 is installed on the upper surface of the support base 11 to support the stability of the housing 1. The lower ammunition body 20 is assembled using the rubber pad 13 built into the buffer assembly 12. A second buffer assembly 14 is nested on top of the buffer assembly 12 to limit the upper side of the lower ammunition body 20 and prevent it from shaking. A set of positioning interior blocks 21 is assembled at the tail end of the lower ammunition body 20 to improve the stability of its installation. After the second buffer assembly 14 is installed, the upper ammunition body 20 is placed on it, and the ends of the upper and lower ammunition bodies 20 are interchanged. The assembly reduces the space required for assembling the ammunition body 20. The locking mechanism 23, assembled with the buffer assembly 2 14, engages the upper ammunition body 20, improving engagement stability. During the assembly of the buffer assembly 2 14, the guide plate 15 mounted on the side of the reinforcing frame 1 10 and the locking mechanism 3 16 limit the buffer assembly 2 14, improving the support safety of the ammunition body 20. After all ammunition bodies 20 are assembled, they are recorded using a document bag 22. The box cover 4 is installed on the box body 1, and the positioning interior block 21, mounted on the reinforcing frame 2 19 assembled with the box cover 4, nests and limits the top of the buffer assembly 2 14, improving the stability of the assembly between the box body 1 and the box cover 4. The locking mechanism 3, combined with the locking mechanism 3, ensures a sealed assembly, enhancing the safety of the ammunition body 20 during assembly and use.
[0033] Example 3: Figure 1 , Figure 2 and Figure 6 The technical solution shown, based on Embodiment 2, also discloses the sealing and storage safety of the ammunition body 20 after assembly, solving the problem of easy dampness or unstable sealing during storage. The specific contents are as follows: the inner surface of the box 1 is nested with a desiccant 24, and the left side of the outer surface of the box 1 is equipped with a detection port 25, a pressure regulating valve 26, an air exchange valve 27 and a humidity indicator 28, and the right side of the outer surface of the box 1 is equipped with a detection port 29, a QR code covering area 30, an air filling valve 31 and a grounding device 32.
[0034] In use, a desiccant 24 is assembled on the inner surface of the box 1 to control the dryness inside the box 1. A detection port 25 for the upper ammunition body 20 is designed on the outside of the box 1 for fixing and connecting the non-opening detection cable. A humidity indicator 28 is used to display the humidity inside the box in real time. A pressure regulating valve 26 is used to balance the air pressure inside and outside the box, keeping the packaging box within a safe range when the ambient temperature and altitude change. A ventilation valve 27 allows for rapid depressurization after inflation testing, facilitating quick opening of the box. This is in conjunction with... The inflation valve 31 can replace the gas inside the box. The outer side of the box is designed with a detection port 29 for the lower ammunition body, which is used to connect and fix the non-open box detection cable. The inflation valve 31 can inflate the box to perform airtightness testing on the packaging box. The grounding device 32 is used to connect the missile inside the box to the ground to realize the discharge of charge, prevent the charge from accumulating on the surface of the missile, and ensure the safety of the missile. The QR code covering area 31 is a stainless steel plate for covering the QR code. They work together to adapt to different environments.
[0035] The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0036] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. Ammunition box structure, comprising a box body (1) and a box cover (4) assembled from the box body (1); characterized in that include: The hoisting component (2) is installed on the outer surface of the box (1), and the outer surface of the box (1) is equipped with a latch (3), and the box (1) is connected to the box cover (4) through a limiting locking mechanism. Meanwhile, the inner surface of the box (1) is equipped with a reinforcing frame (10), and the reinforcing frame (10) supports the ammunition body (20) through a limiting support mechanism. The outer surfaces of the box (1) are respectively equipped with a detection port (25) and a detection port (29).
2. The ammunition can structure of claim 1, wherein: The limiting locking mechanism also includes a second lock (5) installed on the outer surface of the box body (1), a positioning buckle (6) installed on the upper surface of the box cover (4), a nesting buckle (7) installed on the upper surface of the box body (1), and a nesting groove (8) opened on the lower surface of the box cover (4), and a sealing strip (9) nested on the inner surface of the nesting groove (8).
3. The ammunition can structure of claim 2, wherein: The box (1) can be connected when stacked by the second lock (5), and the box (1) is stacked and locked by the first positioning buckle (6). The box (1) and the box cover (4) form a nested sealing structure by the nested buckle (7), the nested groove (8) and the sealing strip (9).
4. The ammunition box structure according to claim 1, characterized in that: The limiting support mechanism also includes a support base (11) mounted on the upper surface of the reinforcing frame one (10), and a buffer component one (12) is connected to the upper surface of the support base (11), and a rubber pad (13) is nested and connected to the inner surface of the buffer component one (12). Meanwhile, a buffer component two (14) is positioned and docked to the upper surface of the buffer component one (12), and a guide plate (15) is mounted on the side of the reinforcing frame one (10), and the guide plate (15) is connected to the buffer component through the assembled latch three (16). 2 (14); The first reinforcing frame (10) and the box (1) form a threaded locking structure, and the first reinforcing frame (10) and the first buffer assembly (12) form a supporting structure through the support base (11), and the first buffer assembly (12) and the rubber pad (13) form an embedded structure. At the same time, the first buffer assembly (12) and the second buffer assembly (14) are symmetrically stacked on top of each other, and the first reinforcing frame (10) and the second buffer assembly (14) form a locking and limiting structure through the guide plate (15) and the third latch (16).
5. The ammunition box structure according to claim 4, characterized in that: The upper surface of the buffer assembly 2 (14) is equipped with a positioning buckle 2 (17), and the outer surface of the positioning buckle 2 (17) is nested with a pressure block (18). The upper surface of the pressure block (18) is equipped with a reinforcing frame 2 (19), and the reinforcing frame 2 (19) is installed on the inner surface of the box cover (4). At the same time, the upper surface of the buffer assembly 2 (14) is assembled with a lock 4 (23), and the inner surface of the buffer assembly 2 (14) is nested with an ammunition body (20). The outer surface of the ammunition body (20) is fitted with a positioning interior block (21), and the positioning interior block (21) is assembled on the inner surface of the box body (1). The inner surface of the box body (1) is equipped with a document bag (22).
6. The ammunition box structure of claim 5, wherein: The second buffer assembly (14) forms a compression structure with the second reinforcing frame (19) through the second positioning buckle (17) and the pressure block (18), and the second reinforcing frame (19) forms a threaded locking structure with the box cover (4). The second buffer assembly (14) forms a locking structure with the ammunition body (20) through the fourth locking buckle (23). At the same time, the ammunition body (20) forms a protective structure with the box body (1) through the positioning interior block (21), and the box body (1) forms an embedded installation setting with the document bag (22).
7. The ammunition can structure of claim 1, wherein: The inner surface of the box (1) is nested with a desiccant (24), and the left side of the outer surface of the box (1) is equipped with a detection port (25), a pressure regulating valve (26), an air exchange valve (27) and a humidity indicator (28), and the right side of the outer surface of the box (1) is equipped with a detection port (29), a QR code covering area (30), an air filling valve (31) and a grounding device (32).
Citation Information
Patent Citations
Ammunition box
CN211783093U