Explosion-proof shield with multiple holding postures

By setting up a "L"-shaped connecting post and a removable sleeve design on the back of the explosion-proof shield, the multiple grip posture switching of the shield is achieved, solving the problem of limited adjustment range of the traditional shield grip posture, and improving the flexibility and operating efficiency of the shield.

CN222938378UActive Publication Date: 2025-06-03JIANGSU GUOWEIXING PLASTIC TECH CO LTD
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Patent Information

Application Number
CN202422082885.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-06-03
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The grip posture adjustment range of traditional explosion-proof shields is limited, making it difficult to meet the flexibility of different combat environments and tactical needs.

Method used

A multi-holding posture explosion-proof shield is designed. By setting three "L"-shaped connecting columns on the back of the shield body, and using three removable sleeve designs, the handles can be quickly switched to three states: horizontal, vertical and tilted.

Benefits of technology

The flexibility and adaptability of the explosion-proof shield is achieved. The operator can choose the most comfortable and effective holding method according to different usage scenarios and personal preferences, which improves the practicality and operating efficiency of the shield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of security and protection, in particular to an anti-explosion shield with multiple holding postures. According to the scheme, the three connecting columns are arranged on the back face of the shield body, the L-shaped arrangement mode is adopted, and the design of the three detachable sleeves is combined, so that rapid switching of the horizontal holding posture, the vertical holding posture and the inclined holding posture is achieved, and the flexibility and adaptability of the anti-explosion shield are greatly improved. Due to the design of multiple holding postures, the flexibility and adaptability of the anti-explosion shield are greatly improved, an operator can select the most comfortable and effective holding mode according to different use scenes and personal preferences, and therefore the practicability and operation efficiency of the anti-explosion shield are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of security, and particularly relates to a multi-grip posture explosion-proof shield. Background Art

[0002] An explosion-proof shield is an important protective equipment for law enforcement officers, special forces, and security personnel when dealing with dangerous situations. Traditional explosion-proof shields usually adopt a single gripping method, such as a fixed horizontal or vertical handle. However, in actual use, different combat environments and tactical requirements often require flexible adjustment of the gripping posture of the shield.

[0003] In the prior art, a common design is to use a hinge structure, which allows the handle to rotate on a fixed axis, but its adjustment range is limited and usually can only switch between two states: horizontal and vertical.

[0004] Therefore, there is an urgent need for an explosion-proof shield design that can quickly and easily adjust the gripping posture while maintaining a simple structure, light weight, and reliable strength. Summary of the Utility Model

[0005] To solve the above problems, the utility model discloses a multi-grip posture explosion-proof shield.

[0006] To achieve the above object, the utility model provides a multi-grip posture explosion-proof shield, including:

[0007] A shield body;

[0008] Three connecting columns are arranged on the back of the shield body, two of which are horizontally arranged, and the other two are vertically arranged, forming an "L" shape arrangement;

[0009] A handle, on one side of which there are three sleeves, and the positions of the three sleeves respectively correspond to the positions of the three connecting columns when they are horizontal, vertical, and obliquely connected;

[0010] Wherein, the sleeve can be detachably installed on the connecting column, and by installing different two sleeves on different connecting columns, the handle forms three states: horizontal, vertical, and inclined.

[0011] In a specific scheme, the detachable cooperation mode between the plug pin and the jack is a threaded connection.

[0012] The detachable cooperation mode between the plug pin and the jack is magnetic adsorption.

[0013] In a possible solution, four connecting columns are provided. The four connecting columns are arranged in a rectangle. Two of the connecting columns are located in the upper half of the back of the shield body and are arranged horizontally, and the other two connecting columns are located in the lower half of the back of the shield body and are arranged horizontally. The vertical distance between the upper and lower groups of connecting columns is sufficient to accommodate a variety of holding postures.

[0014] In the solution of this application, by providing three connecting columns on the back of the shield body and adopting an "L" - shaped arrangement method, combined with the design of three detachable sleeves, the rapid switching among horizontal, vertical, and inclined holding postures is realized, greatly increasing the flexibility and adaptability of the explosion - proof shield. The design of multiple holding postures greatly increases the flexibility and adaptability of the explosion - proof shield, enabling the operator to select the most comfortable and effective holding method according to different usage scenarios and personal preferences, thereby improving the practicality and operation efficiency of the explosion - proof shield. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three - dimensional view of the explosion - proof shield in the embodiment of this application;

[0016] Figure 2 is a schematic diagram of an inclined state of the handle in the embodiment of the application;

[0017] Figure 3 is a schematic diagram of the cooperation between the plug pin and the connecting column in the embodiment of the application. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] The following further clarifies the present utility model in conjunction with the detailed embodiments. It should be understood that the following detailed embodiments are only used to illustrate the present utility model and not to limit the scope of the present utility model. It should be noted that the terms "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the terms "inner" and "outer" respectively refer to the directions towards or away from the geometric center of a specific component.

[0019] Embodiment 1: As Figures 1 - 3 shown, a multi - holding - posture explosion - proof shield includes:

[0020] A shield body 100; the shield body 100 is the main protective part of the explosion - proof shield, and its material can be bullet - proof materials, such as steel plates, composite materials, etc., to provide sufficient protection ability.

[0021] Three connecting columns 101, which are arranged on the back of the shield body 100. Two of the connecting columns are arranged horizontally, and the other two connecting columns are arranged vertically, forming an "L" - shaped arrangement; specifically, two of the connecting columns are arranged horizontally, and the other two connecting columns are arranged vertically.

[0022] The handle 102 has three sleeves 103 provided on one side thereof, and the positions of the three sleeves 103 respectively correspond to the positions of the three connecting columns 101 when they are horizontally, vertically and obliquely connected;

[0023] Among them, the sleeve 103 can be detachably mounted on the connecting column 101. By mounting two different sleeves 103 on different connecting columns 101, the handle 102 can be formed into three states: horizontal, vertical and inclined.

[0024] The sleeve 103 can be detachably mounted on the connecting column 101. The detachable design allows the operator to adjust the position of the handle as needed. By mounting two different sleeves 103 on different connecting columns 101, the handle 102 can be formed into three states: horizontal, vertical and inclined.

[0025] For example, when horizontal gripping is required, two sleeves 103 can be mounted on two horizontally arranged connecting columns 101; when vertical gripping is required, two sleeves 103 can be mounted on two vertically arranged connecting columns 101; when inclined gripping is required, two sleeves 103 can be respectively mounted on a horizontal connecting column and a vertical connecting column.

[0026] The design of multiple gripping postures greatly increases the flexibility and adaptability of the riot shield, enabling the operator to select the most comfortable and effective gripping method according to different usage scenarios and personal preferences, thereby improving the practicality and operation efficiency of the riot shield.

[0027] In a possible solution,

[0028] Layout of the connecting column 101:

[0029] On the back of the shield body 100, the three connecting columns 101 are arranged in an isosceles right triangle layout.

[0030] Let the connecting column at the right-angled vertex be A, and the two connecting columns on the hypotenuse be B and C respectively.

[0031] The lengths of AB and AC are equal.

[0032] BC is the hypotenuse and its length is greater than AB or AC.

[0033] Layout of the sleeve 103:

[0034] The length of the handle 102 is equal to the hypotenuse BC.

[0035] Two sleeves are located at both ends of the handle 102, corresponding to the connecting columns B and C respectively. We mark these two sleeves as D and E.

[0036] Position of the third sleeve (marked as F):

[0037] F is located on the DE segment and can be located at the midpoint of DE.

[0038] In a possible solution, four connecting posts 101 are provided, and the four connecting posts 101 are distributed in a rectangular shape, wherein two connecting posts 101 are located in the upper half of the back side of the shield body 100 and are arranged horizontally, and the other two connecting posts 101 are located in the lower half of the back side of the shield body 100 and are arranged horizontally, and the vertical distance between the upper and lower groups of connecting posts 101 is sufficient to adapt to a variety of holding postures.

[0039] When the number of connecting posts 101 increases from three to four, more ways of using the shield are provided to the user. The user can choose to hold the shield with two upper posts, two lower posts, or two diagonal posts as needed. This diversity enables the shield to adapt to different tactical needs and personal preferences.

[0040] It can be easily switched between the high position (two upper connecting posts) and the low position (two lower connecting posts). This flexibility allows the shield to be quickly adapted to different defensive needs, such as protecting the upper body or lower limbs.

[0041] Example 2: Figures 1 - 3 As shown, the connecting column 101 is provided with a concave annular groove 104, and the sleeve 103 is provided with a socket 105 which is aligned with the annular groove 104, and a pin 106 is detachably inserted into the socket 105. When the sleeve 103 is sleeved on the connecting column 101, one side of the pin 106 can be partially located in the annular groove 104.

[0042] The annular groove 104 extends along the circumference of the connecting column 101 to form a complete annular structure. The inner opening of the plug hole 105 corresponds to the annular groove 104. When the sleeve 103 is sleeved on the connecting column 101, the inner opening of the plug hole 105 will correspond to the position of the annular groove 104 to form a through passage.

[0043] In actual use:

[0044] The sleeve 103 is sleeved on the connecting column 101 .

[0045] After the sleeve 103 is put in place, the inner opening of the insertion hole 105 will naturally correspond to the annular groove 104 .

[0046] The latch 106 is inserted into the insertion hole 105. Since the inner opening of the insertion hole 105 corresponds to the annular groove 104, the latch 106 can smoothly enter the annular groove 104.

[0047] After the latch pin 106 is partially located in the annular groove 104 , the sleeve 103 is firmly fixed on the connecting column 101 .

[0048] When the bolt 106 is inserted, the sleeve 103 cannot fall off the connecting column 101. When disassembly is required, simply pull out the bolt 106, and the sleeve 103 and the connecting column 101 can be easily separated.

[0049] In a specific solution, the detachable cooperation mode between the bolt 106 and the jack 105 is a threaded connection. Internal threads are provided on the inner wall of the jack 105.

[0050] Corresponding external threads matching the internal threads of the jack 105 are provided on the outer surface of the bolt 106.

[0051] By rotating the bolt 106, reliable connection and separation between it and the jack 105 can be achieved.

[0052] In addition, the detachable cooperation mode between the bolt 106 and the jack 105 can also be magnetic adsorption. Specifically, the bolt 106 consists of two parts: a magnetic part and a non-magnetic handle part. A layer of soft magnetic material, such as pure iron or silicon steel sheet, is inlaid on the inner wall of the jack 105 to enhance the magnetic adsorption effect.

[0053] When connecting, the sleeve 103 is sleeved on the connecting column 101 to align the jack 105 with the annular groove 104. Hold the non-magnetic handle part of the bolt 106 and align its magnetic end with the jack 105. As the bolt 106 approaches, the magnetic force will automatically draw it into the jack 105.

[0054] The technical means disclosed in the solution of the present utility model are not limited to the technical means disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present utility model.

Claims

1. A multi-holding posture explosion-proof shield, characterized in that: include: Shield body (100); Three connecting posts (101) are arranged on the back of the shield body (100), two of which are arranged horizontally and the other two are arranged vertically to form an "L" shape; A handle (102) is provided with three sleeves (103) on one side, and the positions of the three sleeves (103) respectively correspond to the positions of the three connecting columns (101) when they are connected in a horizontal, vertical and inclined line; The sleeve (103) can be detachably mounted on the connecting column (101), and by mounting two different sleeves (103) on different connecting columns (101), the handle (102) can be placed in three states: horizontal, vertical and inclined.

2. The multi-holding posture explosion-proof shield according to claim 1, characterized in that: The connecting column (101) is provided with an inwardly concave annular groove (104), the sleeve (103) is provided with a plug hole (105) aligned with the annular groove (104), a plug pin (106) is detachably inserted into the plug hole (105), and when the sleeve (103) is sleeved on the connecting column (101), one side of the plug pin (106) can be partially located in the annular groove (104).

3. The multi-holding posture explosion-proof shield according to claim 2, characterized in that: The removable matching mode of the latch pin (106) and the insertion hole (105) is a threaded connection.

4. The multi-holding posture explosion-proof shield according to claim 2, characterized in that: The removable matching mode of the plug pin (106) and the plug hole (105) is magnetic adsorption.

5. The multi-holding posture explosion-proof shield according to claim 1, characterized in that: The connecting posts (101) are provided with four, and the four connecting posts (101) are distributed in a rectangular shape, wherein Two connecting posts (101) are located at the upper half of the back of the shield body (100) and are arranged horizontally, and another two connecting posts (101) are located at the lower half of the back of the shield body (100) and are arranged horizontally, and the vertical distance between the upper and lower groups of connecting posts (101) is sufficient to adapt to a variety of holding postures.