Window breaking type fuming lachrymator feeding equipment

By designing a window-breaking tear gas delivery device, and utilizing the coordinated operation of the energy storage component and the window-breaking component, the problem of tear gas canisters being unable to break windows has been solved, enabling effective control in emergency situations and ensuring public safety.

CN224051173UActive Publication Date: 2026-03-27SHANDONG RUIJING POLICE EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Current tear gas canisters cannot break through vehicle windows to enter the vehicle and be effective in emergency situations, making it difficult for drivers to be affected by the tear gas, which poses a safety hazard.

Method used

Design a window-breaking tear gas delivery device, comprising a window-breaking component, a handheld body, and a power-accumulating component. The power-accumulating component stores energy, which drives the tear gas smoke grenade and the window-breaking component to work together to break the car window and release tear gas smoke.

Benefits of technology

It enables effective window breaking in emergency situations, allowing tear gas to enter the vehicle and force the driver to leave, thus improving the effectiveness of public safety control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of lacrimation agent feeding equipment, in particular to window breaking type fuming lacrimation agent feeding equipment which comprises a window breaking assembly. A bearing space with an opening in one end is formed in the handheld main body, and the handheld main body is used for sequentially bearing the lachrymatory smoke bomb and the window breaking assembly in the first direction; the potential storage assembly is arranged between the lacrimation smoke bomb and the bottom of the bearing space and used for applying acting force in the first direction to the lacrimation smoke bomb and the window breaking assembly; wherein the direction of the bearing space towards the opening is a first direction. When starting is needed, the lachrymatory smoke bomb and the window breaking assembly are pushed in the first direction, the window breaking assembly impacts window glass and breaks a vehicle window under the action force, and after the vehicle window is broken, the lachrymatory smoke bomb continues to be pushed into the vehicle in the first direction, pops up and begins to release lachrymatory smoke. According to the tear bomb, through cooperative work of the window breaking assembly, the handheld body, the bearing space of the handheld body and the potential storage assembly, the problem that an existing tear bomb cannot break a window is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to tear agent throwing equipment technical field especially relates to a window breaking type smoke tear agent throwing equipment. BACKGROUND

[0002] In the maintenance of public order and the response to emergency situations, the effective control of the possible public safety endangering behaviors of the vehicle drivers in driving is very critical, for example, when the emergency situation of driving against the crowd and other serious threats to the safety of others occurs, the law enforcement personnel urgently need to have the corresponding means to quickly and effectively control the vehicle drivers, force the drivers to leave the vehicle, and thus maximize the harm to the surrounding personnel and public safety.

[0003] At present, in the response technology of such emergency situations, tear gas is a commonly used non-lethal control means, tear gas can make the human body produce strong discomfort by releasing irritant substances, so as to force the relevant personnel to comply, although tear gas can play a certain role in many scenes, but in the control scene of vehicles, it has obvious limitations.

[0004] In the prior art, the main problem of tear gas is that it cannot realize the window breaking function, in emergency situations, the vehicle windows are usually closed, which is a common setting for self-protection of the driver, when the law enforcement personnel try to use tear gas to control the driver, since the tear gas cannot break the window and enter the vehicle to play the effect, the driver in the vehicle is difficult to be affected by the irritant substances of the tear gas, and can still continue to drive the vehicle to implement the harmful behavior; therefore, a window breaking type smoke tear agent throwing equipment is proposed. CONTENT OF THE UTILITY MODEL

[0005] In view of the above-mentioned shortcomings and deficiencies of the prior art, the utility model provides a window breaking type smoke tear agent throwing equipment, which solves the technical problem that the tear gas cannot realize the window breaking function in the prior art.

[0006] In order to achieve the above-mentioned purpose, the utility model adopts the main technical scheme including:

[0007] The utility model embodiment provides a window breaking type smoke tear agent throwing equipment.

[0008] The utility model embodiment provides a window breaking type smoke tear agent throwing equipment.

[0009] The window breaking assembly comprises:

[0010] The hand-held main body is internally formed with a bearing space with one end opening, which is used for sequentially bearing the tear smoke bomb and the window breaking assembly along the first direction;

[0011] The potential assembly is arranged between the tear smoke grenade and the bottom of the bearing space, and is used to apply a first direction force to the tear smoke grenade and the window breaking assembly.

[0012] The first direction is the direction of the opening of the bearing space.

[0013] Optionally, the window breaking type smoke tear agent launching device further comprises:

[0014] The pressing one-way assembly is arranged between the handheld main body and the window breaking assembly. When the potential assembly is in the potential state, the window breaking assembly slides in the bearing space. When the potential assembly is in the stable state, the window breaking assembly abuts against the pressing one-way assembly.

[0015] Optionally, the potential assembly comprises:

[0016] The bearing plate is slidingly installed in the bearing space.

[0017] The first elastic member is arranged between the bearing plate and the bearing space, and is used to move the bearing plate in the direction of the tear smoke grenade.

[0018] Optionally, the pressing one-way assembly comprises:

[0019] The inclined block is slidingly installed in the side wall of the window breaking assembly, and the inclined surface of the inclined block faces away from the opening.

[0020] The second elastic member is arranged between the inclined block and the side wall of the window breaking assembly, and is used to move the inclined block in the direction away from the window breaking assembly.

[0021] The hemispherical member is slidingly installed in the inner wall of the handheld main body, and the inclined block abuts against or slidingly connects with the hemispherical member.

[0022] Optionally, the hemispherical member comprises:

[0023] The first hemisphere is slidingly connected with the spherical surface of the first hemisphere through the inclined surface of the inclined block, and the inclined block abuts against the plane of the first hemisphere.

[0024] The second hemisphere is arranged opposite to the plane of the first hemisphere, and the first hemisphere and the second hemisphere are coaxially slidingly installed in the inner wall of the handheld main body, and the inclined block slidingly connects with the second hemisphere.

[0025] Optionally, the window breaking assembly comprises:

[0026] The window breaking shell is slidingly installed in the bearing space, and the window breaking shell is formed with an inclined protrusion on one side.

[0027] The boss pipe is slidingly installed in the port of the window breaking shell, and the boss pipe is formed with a window breaking hole in the direction away from the potential assembly.

[0028] The window breaking nail is arranged in the window breaking shell, and the boss pipe abuts against the boss pipe.

[0029] A third elastic member is arranged between the window breaking spike and the window breaking housing, and is used for applying a force to the window breaking spike in the direction of the window breaking hole.

[0030] Optionally, the window breaking assembly further comprises:

[0031] A boss is coaxially fixedly installed on the window breaking spike, and the boss is in sliding contact with the inclined protrusion.

[0032] Optionally, the window breaking smoke tear agent throwing device further comprises:

[0033] A limiting ring is coaxially arranged in the interior of the window breaking housing, and the window breaking spike is slidingly penetrated through the limiting ring.

[0034] Optionally, the pressing one-way assembly is at least two groups, and the two groups of pressing one-way assemblies are symmetrically arranged on two sides of the bearing space.

[0035] Optionally, the tear smoke grenade carried in the bearing space is a tear smoke grenade without a pull ring.

[0036] The window breaking smoke tear agent throwing device of the utility model has the advantages that when facing a vehicle with tightly closed windows, the window breaking assembly can break the barrier of the window glass, and create conditions for the subsequent tear smoke grenade to enter the vehicle, in the overall working process, the energy storage assembly accumulates energy, when it is necessary to start, the tear smoke grenade and the window breaking assembly are pushed in the first direction, the window breaking assembly impacts the window glass under the action force, breaks the window, after the window is broken, the tear smoke grenade is continuously pushed into the vehicle in the first direction, is popped out and starts to release tear smoke, through the cooperative work of the window breaking assembly, the handheld main body, the bearing space thereof and the energy storage assembly, the problem that the existing tear grenade cannot break the window is solved. BRIEF DESCRIPTION OF DRAWINGS

[0037] Figure 1 It is a three-dimensional structure schematic view of the window breaking smoke tear agent throwing device of the utility model;

[0038] Figure 2 It is a front view cross-sectional structure schematic view of the window breaking smoke tear agent throwing device of the utility model;

[0039] Figure 3 It is Figure 2 A enlarged structure schematic view of the A part in the figure.

[0040] LEGEND

[0041] 100-window breaking assembly, 200-handheld main body, 300-energy storage assembly, 400-pressing one-way assembly;

[0042] 110 - broken window shell, 120 - inclined protrusion, 130 - boss tube, 140 - broken window nail, 150 - third elastic member, 160 - boss, 170 - limiting ring;

[0043] 310 - bearing plate, 320 - first elastic member;

[0044] 410 - inclined block, 420 - second elastic member, 430 - hemispherical member;

[0045] 431 - first hemisphere, 432 - second hemisphere;

[0046] 101 - broken window hole, 201 - bearing space. DETAILED DESCRIPTION

[0047] In order to better explain the utility model, so as to facilitate understanding, the following specific embodiments, combined with the drawings, the utility model is described in detail. In this paper, the "upper", "lower"...... and other orientation terms with Figure 1 The orientation as a reference.

[0048] In order to better understand the above technical solutions, the following will be described in more detail with reference to the exemplary embodiments of the utility model. Although the exemplary embodiments of the utility model are shown in the drawings, it should be understood that the utility model can be implemented in various forms and should not be limited by the embodiments described herein. On the contrary, these embodiments are provided in order to more clearly and thoroughly understand the utility model, and to convey the scope of the utility model to those skilled in the art.

[0049] As Figures 1 to 3 shown, according to the embodiments of the present application, a broken window type smoke tear agent delivery device is provided, comprising: a broken window assembly 100; a handheld main body 200, which forms a bearing space 201 with one end open inside, for sequentially bearing a tear smoke bomb 500 and a broken window assembly 100 in a first direction; a potential assembly 300 is arranged between the above-mentioned tear smoke bomb 500 and the bottom of the above-mentioned bearing space 101, for applying a force in the above-mentioned first direction to the above-mentioned tear smoke bomb 500 and the above-mentioned broken window assembly 100; wherein the direction of the opening of the above-mentioned bearing space 201 is the above-mentioned first direction.

[0050] The window breaking smoke tear agent throwing device provided by the embodiments of the present application comprises a window breaking assembly 100, a handheld main body 200 and a potential storage assembly 300. When facing a vehicle with tightly closed windows, the window breaking assembly 100 can break the window glass barrier, thus creating conditions for the subsequent smoke tear bomb to enter the vehicle. The handheld main body 200 serves as a carrier and support for the whole device, and has a one-end-opened carrying space 201 formed inside, which sequentially carries the smoke tear bomb 500 and the window breaking assembly 100 in the first direction. The potential storage assembly 300 is arranged between the smoke tear bomb 500 and the bottom of the carrying space 201, and mainly serves to apply a force in the first direction to the smoke tear bomb 500 and the window breaking assembly 100. The potential storage assembly 300 can store energy and release it at the appropriate time to push the smoke tear bomb 500 and the window breaking assembly 100 to move towards the vehicle window. The force can make the window breaking assembly 100 have enough kinetic energy to impact the window glass, thus completing the window breaking action. After that, the smoke tear bomb 500 will also be pushed into the vehicle through the channel formed after the window breaking of the window breaking assembly 100, and release the smoke tear, thus achieving the purpose of forcing the driver to leave the vehicle. Through the action of the potential storage assembly 300, the whole device realizes the effective linkage of the window breaking and smoke tear functions.

[0051] The smoke tear bomb 500 carried in the carrying space 201 is a smoke tear bomb without a pull ring. When the smoke tear bomb without a pull ring is discharged from the carrying space 201, the detonator directly detonates to generate smoke. When the smoke tear bomb is in the carrying space 201, the space in the carrying space 201 is limited, and the detonator cannot detonate.

[0052] In summary, in the whole working process, the potential storage assembly 300 accumulates energy, and when it is necessary to start, it pushes the smoke tear bomb 500 and the window breaking assembly 100 in the first direction. The window breaking assembly 100 impacts the window glass under the action of the force, breaks the window, and after the window is broken, the smoke tear bomb 500 continues to be pushed into the vehicle in the first direction, is ejected and starts to release the smoke tear. Through the cooperative work of the window breaking assembly 100, the handheld main body 200, the carrying space 201 and the potential storage assembly 300, the device solves the problem that the existing smoke tear bomb cannot break the window, and provides an effective solution to the emergency, thus maintaining the social public safety and order.

[0053] As shown in Figure 2 and Figure 3 in some examples, the window breaking smoke tear agent throwing device further comprises a pressing one-way assembly 400 arranged between the handheld main body 200 and the window breaking assembly 100. When the potential storage assembly 300 is in the potential storage state, the window breaking assembly 100 slides in the carrying space 201. When the potential storage assembly 300 is in the stable state, the window breaking assembly 100 abuts against the pressing one-way assembly 400.

[0054] In the technical solution, the pressing one-way assembly 400 is arranged between the handheld main body 200 and the window breaking assembly 100, and is arranged between the handheld main body 200 and the window breaking assembly 100, so as to form a stable connection and support structure with the handheld main body 200, and to be closely associated with the window breaking assembly 100 and to control the window breaking assembly 100 in real time.

[0055] When the energy storage assembly 300 is in the energy storage state, it means that the energy storage assembly 300 is storing energy for subsequent pushing of the window breaking assembly 100 and the tear smoke grenade 500. In this stage, the window breaking assembly 100 slides in the bearing space 201, and the pressing one-way assembly 400 temporarily does not limit the sliding of the window breaking assembly 100, so that the window breaking assembly 100 can smoothly slide in the bearing space 201 under the action of the force applied by the energy storage assembly 300, thereby gradually accumulating sufficient kinetic energy. This mechanism ensures the smoothness of the window breaking assembly 100 in the energy storage process, and ensures that it has enough power to complete the window breaking task in the subsequent action. At the same time, the sliding of the window breaking assembly 100 can also drive the tear smoke grenade 500 to move synchronously, laying a foundation for the subsequent coherent action.

[0056] When the energy storage assembly 300 is in the stable state, in this case, the window breaking assembly 100 abuts against the pressing one-way assembly 400. This abutting relationship can prevent the window breaking assembly 100 from continuing to slide out of the bearing space 201, effectively locking the position of the window breaking assembly 100. The pressing one-way assembly 400 acts as a locking element here, ensuring that the window breaking assembly 100 cannot move outward at will, avoiding accidental ejection of the window breaking assembly 100 due to accidental triggering, thereby improving the safety and stability of the device, and ensuring that when the window breaking action is needed, the window breaking assembly 100 can move in the predetermined direction accurately and without error under the force pushing of the energy storage assembly 300.

[0057] As shown in Figure 2 and Figure 3 In some examples, the energy storage assembly 300 includes a bearing plate 310 slidingly installed in the bearing space 201, and a first elastic member 320 arranged between the bearing plate 310 and the bearing space 201 and used for moving the bearing plate 310 in the direction of the tear smoke grenade 500.

[0058] In the technical solution, the bearing plate 310 is slidingly installed in the bearing space 201 and is in close contact with the tear smoke grenade 500, and is indirectly associated with the tear smoke grenade 500 and the window breaking assembly 100. By sliding in the bearing space 201, the bearing plate 310 can drive the components connected thereto, such as the tear smoke grenade 500 and the window breaking assembly 100, to move together. The first elastic member 320 is the energy source and power generation component of the energy storage assembly 300. It is arranged between the bearing plate 310 and the bearing space 201. The main function of the first elastic member 320 is to exert a moving force on the bearing plate 310 in the direction of the tear smoke grenade 500. When the elastic member stores energy (for example, is compressed), the release of energy can push the bearing plate 310 to move in the predetermined direction.

[0059] When the device is in the energy storage stage, the first elastic member 320 is elastically deformed, for example, by external force, such as being compressed. At this time, the first elastic member 320 stores elastic potential energy. In this process, the energy stored by the first elastic member 320 is gradually transmitted to the tear smoke grenade 500 and the window breaking assembly 100 through the sliding of the bearing plate 310 in the bearing space 201. This energy transmission and component movement process is the process in which the energy storage assembly 300 works.

[0060] The first elastic member 320 starts to release the stored energy and pushes the bearing plate 310 to slide in the direction of the tear smoke grenade 500. Since the bearing plate 310 is associated with the tear smoke grenade 500 and the window breaking assembly 100, the window breaking assembly 100 is driven to move towards the car window to achieve the window breaking function, and then the tear smoke grenade 500 is pushed into the car to implement the tear action.

[0061] As Figure 2 and Figure 3As shown, in some examples, the pressing one-way assembly 400 includes: an inclined block 410 slidingly installed in the side wall of the window breaking assembly 100, the inclined surface of the inclined block 410 faces away from the opening; a second elastic member 420 arranged between the inclined block 410 and the side wall of the window breaking assembly 100, for moving the inclined block 410 away from the window breaking assembly 100; a hemispherical member 430 slidingly installed in the inner wall of the handheld main body 200, and the inclined block 410 and the hemispherical member 430 are in abutment or sliding connection. The pressing one-way assembly 400 is at least two groups, and the two groups of pressing one-way assemblies 400 are symmetrically arranged on both sides of the bearing space 201. The hemispherical member 430 includes: a first hemisphere 431, the inclined surface of the inclined block 410 and the spherical surface of the first hemisphere 431 are in sliding connection, and the inclined block 410 and the flat surface of the first hemisphere 431 are in abutment; and a second hemisphere 432, which is arranged opposite to the flat surface of the first hemisphere 431, and the first hemisphere 431 and the second hemisphere 432 are coaxially slidingly installed in the inner wall of the handheld main body 200, and the inclined block 410 and the second hemisphere 432 are in sliding connection.

[0062] In the technical scheme, the inclined block 410 is slidingly installed in the side wall of the window breaking assembly 100, and the inclined surface of the inclined block 410 faces away from the opening. The direction of the inclined surface of the inclined block 410 is arranged to cooperate with the hemispherical member 430 to realize the one-way limiting function of the movement of the window breaking assembly 100. The second elastic member 420 is arranged between the inclined block 410 and the side wall of the window breaking assembly 100, and is used to move the inclined block 410 away from the window breaking assembly 100. The hemispherical member 430 is slidingly installed in the inner wall of the handheld main body 200 and cooperates with the inclined block 410. The hemispherical member 430 includes the first hemisphere 431 and the second hemisphere 432.

[0063] The inclined surface of the inclined block 410 and the spherical surface of the first hemisphere 431 are in sliding connection, and the inclined block 410 and the flat surface of the first hemisphere 431 are in abutment. When the window breaking assembly 100 is pushed by an external force (such as when the coiled spring assembly 300 pushes), the inclined block 410 can smoothly move along the spherical surface of the first hemisphere 431. In this process, the first hemisphere 431 guides the movement of the inclined block 410 to ensure the stability of the movement direction of the window breaking assembly 100. The second hemisphere 432 is arranged opposite to the flat surface of the first hemisphere 431, and the first hemisphere 431 and the second hemisphere 432 are coaxially slidingly installed in the inner wall of the handheld main body 200. The inclined block 410 and the second hemisphere 432 are in sliding connection.

[0064] The pressing one-way assembly 400 is at least two groups, and is symmetrically arranged on both sides of the bearing space 201. The two groups of symmetrically arranged pressing one-way assemblies 400 can provide more uniform and stable force.

[0065] During operation, the user holds the main body 200 and presses the window-breaking component 100 against the car window. During this pressing, the window-breaking component 100 generates an interaction force, which is transmitted to the tear gas canister 500. Under the influence of this force, the window-breaking component 100 and the tear gas canister 500 move towards the power-accumulating component 300, which then accumulates power. During this process, the window-breaking component 100 moves the tilting block 410 into the bearing space 201, first contacting the second hemisphere 432. Under the action of the tilting surface of the tilting block 410, the tilting block... 410 retracts into the window breaking assembly 100. When it moves to the spherical surface of the second hemisphere 432, the tilting block 410 pops out under the action of the second elastic element 420. When the power storage assembly 300 stores enough force, the window breaking assembly 100 breaks the car window. At this time, the window breaking assembly 100 and the tear gas smoke grenade 500 enter the car body along the window opening. During the movement, the tilting block 410 drives the second hemisphere 432 and the first hemisphere 431 to form a complete sphere, which allows the tilting block 410 to be unrestricted and allows the window breaking assembly 100 and the tear gas smoke grenade 500 to pop out smoothly from the carrying space 201.

[0066] like Figures 1 to 3 As shown, in some examples, the aforementioned window-breaking assembly 100 includes: a window-breaking housing 110, slidably mounted within the aforementioned bearing space 201, with an inclined protrusion 120 formed on one side of the window-breaking housing 110; a boss tube 130, slidably mounted at the port of the window-breaking housing 110, with a window-breaking hole 101 formed in the boss tube 130 away from the aforementioned power storage assembly 300; a window-breaking pin 140, disposed within the aforementioned window-breaking housing 110, with the boss tube 130 abutting against the boss tube 130; a third elastic member 150, disposed between the window-breaking pin 140 and the aforementioned window-breaking housing 110, for applying a force to the window-breaking pin 140 in the direction of the window-breaking hole 101; and a boss 160, coaxially fixedly mounted on the window-breaking pin 140, with the boss 160 in slidable contact with the inclined protrusion 120. The window-breaking type tear gas dispensing device also includes: a limiting ring 170, coaxially disposed inside the aforementioned window-breaking housing 110, wherein the aforementioned window-breaking nail 140 slides through the limiting ring 170.

[0067] In this technical solution, the window breaking housing 110 is slidably installed in the bearing space 201. During the stable phase, the window breaking nail 140 is stuck at the protrusion of the boss tube 130 under the action of the third elastic element 150. When in use, by pressing the boss tube 130, the window breaking nail 140 is driven to squeeze the third elastic element 150, and the window breaking nail 140 drives the boss 160 to move along the inclined protrusion 120. During the gradual movement, the window breaking nail 140 is no longer stuck at the protrusion of the boss tube 130. At this time, under the action of the third elastic element 150, it pops out from the window breaking hole 101 and breaks the car window.

[0068] In the description of the present application, it is to be understood that the terms "first", "second", "third" and the like in the description and in the claims, if any, are used for distinguishing between similar elements and not necessarily for describing a sequential or chronological order. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application described herein are, for example, capable of use in either order. It is also to be understood that the terminology "at least one" is used herein to describe any one of a plurality of items, a plurality of items, or any combination of the items. By using the term "at least one" it is intended that the features so described can be present one or more times in the compositions, methods, and systems described herein.

[0069] In the present application, unless specifically defined otherwise, the terms "mounting", "connected", "connecting", "fixed", "fixedly connected", "connection", "joint", "jointly connected", "connecting", "fixed", and the like, should be interpreted broadly, for example, can be fixed connection, can also be detachable connection, or integrated; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium; can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0070] In the present application, unless specifically defined otherwise, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through an intermediate medium. Moreover, the first feature is "above", "upper" and "upper" of the second feature, which can be directly above or obliquely above the first feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature is "below", "below" and "below" of the second feature, which can be directly below or obliquely below the first feature, or only indicates that the horizontal height of the first feature is lower than that of the second feature.

[0071] In the description of the present application, the description of the terms "one embodiment", "some embodiments", "embodiment", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in the present application and the features of different embodiments or examples without contradiction.

[0072] Although the embodiments of the utility model have been shown and described above, it can be understood that the above-mentioned embodiments are exemplary and cannot be understood as limiting the utility model, and the ordinary skilled in the art can change, modify, replace and transform the above-mentioned embodiments within the scope of the utility model.

Claims

1. A break window type smoke and tear agent dispensing apparatus, characterized by, The application relates to a window-breaking type smoke tear agent throwing device. The application comprises: a window-breaking assembly; a hand-held main body, which is internally formed with a load space with an opening, and is used for sequentially loading a smoke tear bomb and the window-breaking assembly in a first direction; a potential storage assembly, which is arranged between the smoke tear bomb and the bottom of the load space, and is used for applying a force in the first direction to the smoke tear bomb and the window-breaking assembly; 2. The break-shatter smoke and tear agent dispensing device of claim 1, wherein, wherein the direction of the opening of the load space is the first direction. The application further comprises:

3. The break-shatter smoke grenade launching device of claim 1, wherein, a pressing one-way assembly, which is arranged between the hand-held main body and the window-breaking assembly, and is used for sliding the window-breaking assembly in the load space when the potential storage assembly is in a potential storage state, and is used for abutting the window-breaking assembly and the pressing one-way assembly when the potential storage assembly is in a stable state. The potential storage assembly comprises: a load plate, which is slidingly installed in the load space; 4. The break-shatter smoke and tear agent dispensing device of claim 2, wherein: a first elastic member, which is arranged between the load plate and the load space, and is used for moving the load plate to the smoke tear bomb. The pressing one-way assembly comprises: an inclined block, which is slidingly installed in the side wall of the window-breaking assembly, and has an inclined surface facing away from the opening; a second elastic member, which is arranged between the inclined block and the side wall of the window-breaking assembly, and is used for moving the inclined block to a direction away from the window-breaking assembly; 5. The break-shatter smoke and tear agent dispensing device of claim 4, wherein, a hemispherical member, which is slidingly installed in the inner wall of the hand-held main body, and abuts or slidingly connects the inclined block and the hemispherical member. The hemispherical member comprises: a first hemisphere, which slidingly connects the inclined surface of the inclined block and the spherical surface of the first hemisphere, and abuts the inclined block and the plane of the first hemisphere; 6. The break-shatter smoke grenade launching device of claim 1, wherein, a second hemisphere, which is arranged opposite to the plane of the first hemisphere, and is coaxially slidingly installed in the inner wall of the hand-held main body, and slidingly connects the inclined block and the second hemisphere. The window-breaking assembly comprises: a window-breaking shell, which is slidingly installed in the load space, and has an inclined protrusion on one side; a boss pipe, which is slidingly installed in the port of the window-breaking shell, and has a window-breaking hole formed in a direction away from the potential storage assembly; a window-breaking nail, which is arranged in the window-breaking shell, and abuts the boss pipe in the boss pipe; 7. The break-shatter smoke and tear agent dispensing device of claim 6, wherein, a third elastic member, which is arranged between the window-breaking nail and the window-breaking shell, and is used for applying a force to the window-breaking nail in a direction of the window-breaking hole. The window-breaking assembly further comprises:

8. The break-shatter smoke and tear agent dispensing device of claim 7, wherein, a boss, which is coaxially fixedly installed on the window-breaking nail, and slidingly contacts the inclined protrusion. The application further comprises: a limiting ring, which is coaxially arranged in the interior of the window-breaking shell, and is slidingly penetrated by the window-breaking nail.

9. The window-breaking type smoke tear agent throwing device according to claim 4, wherein: the pressing one-way assembly is at least two groups, and the two groups of the pressing one-way assembly are symmetrically arranged on two sides of the load space.

10. The window-breaking type smoke tear agent throwing device according to claim 1, wherein: the smoke tear bomb loaded in the load space is a smoke tear bomb without a pull ring.