Airgun target device and rack
Patent Information
- Application Number
- JP2026002268U
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-06-30
- Publication Date
- 2026-08-27
- Estimated Expiration
- 2036-06-30
AI Technical Summary
【0026】 本考案によれば、遊技者の利便性を向上させ、かつ屋内射撃の遊技性を高めることができる。
Smart Images

Figure 0003257238000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a target device for an air gun for receiving a projectile fired by shooting and performing confirmation, display, or determination of a hit, etc., and a rack provided with the target device for an air gun.
Background Art
[0002] Conventionally, a target device for an air gun for receiving a projectile fired by an air gun (air gun) or the like and performing confirmation, display, or determination of a hit has been known. In this specification, the "projectile" means a general term for objects fired from a gun, injection device, etc., and for example, refers to pellets of an air gun, BB bullets, resin bullets of an air gun, pachinko balls, bullets, and other flying objects.
[0003] Particularly, when playing games indoors, existing target devices for air guns, for example, those made of empty cans, paper cups, cardboard, etc. have been used. Also, a target device for an air gun made of paper and having a configuration in which a projectile penetrates the paper is known.
[0004] However, in order to enhance the gaming performance of shooting indoors, there are various problems regarding the target device for an air gun as follows.
[0005] For example, when shooting indoors, there is a risk that a projectile that misses the target of the target device for an air gun hits an object or a wall behind.
[0006] For example, it is necessary to change the height of the target device for an air gun by standing shooting or sitting shooting.
[0007] [[ID=**]] For example, a projectile fired by an air gun (air gun) or the like hits the target device for an air gun and reflects or falls to the floor, etc., giving a sense of discomfort different from actual live shooting as seen by the player, and also the projectiles are scattered indoors and need to be collected.
[0008] For example, airsoft target devices often use easily damaged or deteriorated materials such as plastic, cardboard, and mesh, resulting in a lack of durability. Furthermore, the airsoft target devices themselves can be cumbersome indoors when not being used for shooting. [Prior art documents] [Patent Documents]
[0009] [Patent Document 1] Japanese Utility Model Publication No. 06-048799 [Patent Document 2] Japanese Utility Model Publication No. 06-055097 [Patent Document 3] Japanese Utility Model Publication No. 06055098 [Patent Document 4] Utility Model Registration No. 3081691 [Overview of the project] [Problems that the invention aims to solve]
[0010] Therefore, the present invention aims to solve at least one of the above problems and to provide an air gun target device and a rack equipped with the air gun target device that can improve the convenience of the player and enhance the gameplay. [Means for solving the problem]
[0011] The first present invention is an air gun target device that receives projectiles fired from an air gun, Frame and, A bullet receiving section provided inside the frame, It has, The projectile receiving portion is characterized by being composed of an impact-absorbing member that absorbs the impact force caused by the collision of the projectile.
[0012] The impact-absorbing member is characterized by being a flexible sheet member.
[0013] Provided at the lower part of the frame, It further has a recovery part for recovering the projectile, which is characterized in that.
[0014] The recovery part is characterized in that it is detachable from the frame body.
[0015] It has an interference member provided in front of the shock absorption member, which contacts the projectile when the projectile penetrates to decelerate the projectile, and suppresses the scattering of the projectile reflected by colliding with the shock absorption member.
[0016] The interference member is characterized in that it has a frame part installed on the frame body and an interference part main body attached to the frame part.
[0017] The interference part main body is a string-shaped member wound around the frame part, and a predetermined gap through which the projectile can enter is provided between adjacent string-shaped members wound around the frame part.
[0018] The frame part is characterized in that it has a groove part into which at least a part of the string-shaped member enters when the string-shaped member is wound to position the string-shaped member.
[0019] It is provided in front of the shock absorption member, and is characterized in that a target part for hitting the projectile is arranged.
[0020] It is provided in front of the interference member, and is characterized in that a target part for hitting the projectile is arranged.
[0021] The target part is characterized in that a plurality of them are arranged at different heights.
[0022] The target part is characterized in that it is composed of a plate.
[0023] It has a guiding member that guides the projectile to the shock absorption member side by capturing the projectile reflected by hitting the target part.
[0024] The guiding member is characterized by being composed of a reflective material.
[0025] The second invention of the present invention is each of the target devices for air guns as described above, a housing portion, a rack body provided with the housing portion, and a rack characterized by having the above.
Effect of the Invention
[0026] According to the present invention, the convenience of the player can be improved, and the playability of indoor shooting can be enhanced.
[0027] According to the present invention, for example, the projectile does not come off from the target device for air guns and can be recovered inside the frame body. Also, for example, even when a projectile fired by an air gun hits the projectile receiving portion, the impact force is absorbed by the shock absorbing member, so that the reflection or scattering of the projectile can be suppressed. Further, for example, since the flight trajectory of the projectile is blocked by the interference member and the player cannot see the projectile, the scene of live firing can be reproduced pseudo - visually. Furthermore, for example, by attaching a rack to the target device for air guns, the target device for air guns itself becomes an indoor interior when not in use for shooting.
[0028] According to the present invention, since it is a rack provided with a target device for air guns that can improve the convenience of the player and enhance the playability of shooting, it can be used as a rack (furniture) when not in use for shooting.
Brief Explanation of Drawings
[0029] [Figure 1] (A) is a front view of a target device for an air gun according to the first embodiment of the present invention, and (B) is a side view thereof. ... [Figure 2] It is a front view of a state in which an interference portion main body is attached to a frame portion constituting an interference member of a target device for an air gun according to the first embodiment of the present invention. [Figure 3] This is a front view of the frame portion constituting the interference member of an air gun target device according to the first embodiment of the present invention. [Figure 4] (A) is a front view of an air gun target device according to a second embodiment of the present invention, and (B) is a side view thereof. [Figure 5] (A) is a front view of an air gun target device according to a third embodiment of the present invention, and (B) is a side view thereof. [Figure 6] (A) is a diagram showing the configuration of a rifle rack (for standing shooting) equipped with an air gun target device according to the first embodiment of the present invention, (B) is a diagram showing the configuration of a shelf (for standing shooting) equipped with an air gun target device according to the first embodiment of the present invention, and (C) is a diagram showing the configuration of a shelf (for seated shooting) equipped with an air gun target device according to the first embodiment of the present invention. [Figure 7] (A) is a diagram showing the configuration of a rifle rack (for standing shooting) equipped with an air gun target device according to the second embodiment of the present invention, (B) is a diagram showing the configuration of a shelf (for standing shooting) equipped with an air gun target device according to the second embodiment of the present invention, and (C) is a diagram showing the configuration of a shelf (for seated shooting) equipped with an air gun target device according to the second embodiment of the present invention. [Figure 8] (A) is a front view of a rack (for standing shooting) equipped with an air gun target device according to the third embodiment of the present invention, and (B) is a side view thereof. [Modes for carrying out the invention]
[0030] A target device for an air gun according to the first embodiment of the present invention will be described with reference to the drawings.
[0031] In this specification, "air gun target device" refers to a toy, such as a device that allows the user to confirm the impact point of a projectile fired from an air gun.
[0032] In this specification, "air gun" refers to a firing device (e.g., an air gun) that uses the pressure of compressed air or compressed gas to fire projectiles. In this specification, "air gun" also includes airsoft guns.
[0033] In this specification, "projectile velocity" refers to the speed at which the projectile flies (flight speed) (for example, 50-90 m / s).
[0034] As shown in Figure 1, the air gun target device 10 has a frame 12 and a projectile receiving section 14 provided inside the frame 12, and the projectile receiving section 14 is composed of an impact absorbing member 20 that absorbs the impact force caused by the collision of the projectile B.
[0035] The frame 12 has, for example, a flat plate portion 16 and four side portions 18 that rise vertically from the outer edge of the flat plate portion 16. The flat plate portion 16 and the side portions 18 can be made of wood, iron, aluminum or other metals, but wood is preferred. The frame 12 is formed in a box shape as a whole.
[0036] The impact-absorbing member 20, which constitutes the bullet-receiving portion 14, is detachably attached to the flat plate portion 16. The impact-absorbing member 20 can be attached to the flat plate portion 16 by well-known means such as adhesive, glue, screws, or nails. Furthermore, the impact-absorbing member 20 is preferably a flexible material, and more preferably a flexible sheet material (flexible sheet).
[0037] The material of the shock-absorbing member 20 will now be described. The shock-absorbing member 20 can be made of, for example, a polyvinyl chloride sheet, a cloth sheet, a fiber sheet, a resin foam sheet, a rubber sheet, or any other sheet material capable of absorbing the impact of a projectile.
[0038] The shock-absorbing member 20 may also be a member or sheet equipped with an elastic material. Examples of elastic sheets include rubber, springs, foamed urethane, elastomer, etc.
[0039] The impact-absorbing member 20 is also called the projectile receiving layer.
[0040] When a projectile fired from an air gun collides with the shock-absorbing member 20, the shock-absorbing member 20 absorbs the impact force of the projectile B. As a result, the projectile B is less likely to reflect or scatter violently, and the projectile B falls downward and is collected by the recovery unit 22 described later.
[0041] The frame 12 has a projectile body B recovery section 22. The recovery section 22 is provided in the frame 12 so as to be retractable (removable). The recovery section 22 is located at the bottom of the frame 12. When the projectile body B recovered in the recovery section 22 is to be reused, the projectile body B can be easily obtained by removing the recovery section 22 from the frame 12. The recovery section 22 may be, for example, a recovery box. The material of the recovery section 22 can be wood, metal, etc., but wood is preferred.
[0042] As shown in Figures 1 to 3, the impact absorbing member 20 has an interference member 24 provided in front of it, which comes into contact with the projectile B when it penetrates, slowing down the speed of the projectile B, and also prevents the scattering of projectile B that collides with the impact absorbing member 20 and is reflected.
[0043] The interference member 24 is detachably attached to the frame 12. Preferably, the interference member 24 has, for example, a frame portion 26 installed on the frame 12 and an interference member body 28 attached to the frame portion 26.
[0044] As shown in Figure 3, the frame section 26 is constructed by assembling four frame members, for example, an upper frame 26A, a lower frame 26B, a right frame 26C, and a left frame 26D. The frame section 26 is preferably made of wood.
[0045] As shown in Figure 2, the interference body 28 employs, for example, a string-like member 30 that is wound around the frame portion 26. When wound around the right frame 26C and left frame 26D of the frame portion 26, a predetermined gap D is formed between adjacent string-like members 30, through which the projectile B can enter. The direction in which the string-like members 30 are adjacent is perpendicular to the direction in which the projectile B enters.
[0046] The interference section body 28, as seen in the side view in Figure 1, has a configuration in which two layers of string-like members 30 are arranged. In other words, the string-like members 30 consist of an outer string-like member 30A located on the outside and an inner string-like member 30B located on the inside.
[0047] The interference part body 28 is also called a rope-like member or a long member, in addition to the string-like member 30.
[0048] As shown in Figure 3, multiple grooves 27 are formed on the outer periphery of the right frame 26C and the left frame 26D. The grooves 27 may be semicircular in a front view, or they may be formed in a V-shape or other shape. The shape of the grooves 27 in a front view and the number of grooves 27 are not particularly limited.
[0049] As shown in Figure 2, as the string-like member 30 is wound around the right frame 26C and the left frame 26D of the frame portion 26, at least a portion of the string-like member 30 enters the groove portion 27 and is positioned relative to the frame portion 26. This prevents the string-like member 30 from moving (misaligning) in the vertical direction of the right frame 26C and the left frame 26D. In this way, the groove portion 27 functions as a positioning part for positioning the string-like member 30.
[0050] As shown in Figure 2, when the string-like members 30 are wound around the right frame 26C and the left frame 26D of the frame portion 26, it is preferable that a predetermined gap D is formed between adjacent string-like members 30, allowing the projectile body B to enter.
[0051] The dimensions of the "predetermined gap" are set to be less than or equal to the diameter of the projectile B, for example. Specifically, for example, if the front view dimension of the string-like member 30 is 4 mm, then the front view dimension of the predetermined gap D formed between adjacent string-like members 30 is 1 mm. For example, if the diameter of the projectile B is 6 mm, when the projectile B enters the predetermined gap D, the projectile B will inevitably come into contact with the string-like member 30. As a result, a frictional force is generated between the projectile B and the string-like member 30, which reduces the velocity of the projectile B fired from the air gun. The string-like member 30 constitutes an interference member 24 positioned on the flight trajectory of the projectile B, and therefore has the function of reducing the velocity of the projectile B fired from the air gun.
[0052] Furthermore, when projectile B collides with the string-like member 30, the string-like member 30 shakes slightly, allowing the player to confirm the point of contact of projectile B.
[0053] Furthermore, as shown in Figure 1, an inclined portion 26B1 is formed on the upper surface of the lower frame 26B, which slopes downward from the front to the rear of the frame body 12. As a result, the projectile B that collides with the lower frame 26B is guided by the inclined portion 26B1 of the lower frame 26B and moves towards the impact absorbing member 20 inside the frame body 12, and is eventually recovered by the recovery unit 22.
[0054] The interference members 24 may be configured in a multi-member arrangement. This allows the string-like members 30 to be arranged in a straight line, improving the deceleration effect and scattering prevention effect of the projectile B.
[0055] The interference member 24 is also called a deceleration layer. The deceleration layer also has a function to prevent the projectile B from scattering.
[0056] Next, the operation of the air gun target device 10 according to the first embodiment of the present invention will be described.
[0057] When projectile B is fired from the air gun, it collides with the outer string-like member 30A located on the outside. Then, projectile B enters the interior of the frame 12 through the gap D between adjacent outer string-like members in a direction perpendicular to the direction of entry of projectile B. At this time, because projectile B comes into contact with the outer string-like member 30A, the frictional force between projectile B and the outer string-like member 30A slows down the velocity of projectile B.
[0058] Furthermore, as projectile B enters and moves inside the outer string-like member 30A, it collides with the inner string-like member 30B located on the inside. Then, projectile B enters further into the frame 12 through the gap D between adjacent inner string-like members in a direction perpendicular to the direction in which projectile B entered. At this time, because projectile B comes into contact with the inner string-like member 30B, the frictional force between projectile B and the inner string-like member 30B slows down the velocity of projectile B.
[0059] In this way, projectile B is decelerated at least twice by contacting the double string-like members, the outer string-like member 30A and the inner string-like member 30B. Then, the decelerated projectile B continues on its way and collides with the shock-absorbing member 20. The projectile B is then absorbed by the shock-absorbing member 20.
[0060] Here, when projectile B collides with the shock-absorbing member 20, the impact force of the collision is absorbed by the shock-absorbing member 20. Because projectile B is decelerated before colliding with the shock-absorbing member, the impact force (kinetic energy at the time of collision) of projectile B on the shock-absorbing member 20 can be reduced. This reduces the impact sound when projectile B collides with the shock-absorbing member 20. In addition, the speed (momentum) at which projectile B is reflected and scattered when it collides with the shock-absorbing member 20 can be reduced. As a result, projectile B does not scatter widely and falls into the recovery unit 22 for recovery.
[0061] Furthermore, when the projectile B collides with the shock-absorbing member 20 and reflects, some of the projectile B collides with the inner string-like member 30B. At this time, because the kinetic energy of the projectile B is reduced, some of the projectile B collides with the inner string-like member 30B and falls without being able to pass through the predetermined gap D, and is recovered by the recovery unit 22. Also, some of the projectile B enters the gap D between adjacent inner string-like members and collides with the outer string-like member 30A. At this time, because the kinetic energy of the projectile B is further reduced, the projectile B collides with the outer string-like member 30A and falls without being able to pass through the predetermined gap D, hits the inclined portion 26B1 of the lower frame 26B, and is guided to the recovery unit 22 side and recovered.
[0062] Furthermore, there are almost no projectiles B that enter the gap D between adjacent outer string-like members and are exposed to the player. Therefore, the player does not see the projectiles B that have hit the shock-absorbing member 20 and been reflected, thus creating a simulated scene of live ammunition firing.
[0063] According to the first embodiment of the air gun target device 10 of this invention, for example, projectiles fired from an air gun can be recovered inside the frame 12 of the air gun target device 10. Also, for example, even if a projectile B fired from an air gun collides with the shock-absorbing member 20, the impact force is absorbed, thus suppressing the reflection or scattering of the projectile B. Furthermore, for example, if the projectile B enters the inside of the interference member 24, the trajectory of the projectile B is blocked by the interference member 24, so the trajectory of the projectile is no longer visible to the player. This makes it possible to simulate the scene of live-fire shooting.
[0064] As described above, the air gun target device 10 of the first embodiment of the present invention, by providing a bullet receiving layer and a deceleration layer, improves the convenience of the player and enhances the playability of indoor shooting.
[0065] Furthermore, since the air gun target device 10 is constructed by assembling components made of wood, its aesthetic appeal as part of the room's interior is enhanced.
[0066] In the first embodiment of the air gun target device 10, a configuration with an interference member 24 was illustrated, but the device is not limited to this, and a configuration in which the interference member 24 is removed from the frame 12 is also possible. In this case, the air gun target device 10 receives the projectile B with only the shock-absorbing member 20 and recovers it in the recovery unit 22.
[0067] Next, an air gun target device according to the second embodiment of the present invention will be described with reference to the drawings. Components that overlap with the components of the air gun target device according to the first embodiment are denoted by the same reference numerals, and their descriptions are omitted.
[0068] The air gun target device according to the second embodiment has all the components of the air gun target device according to the first embodiment, and further includes the following components.
[0069] As shown in Figure 4, the air gun target device 50 according to the second embodiment has a configuration in which a game frame 52 is detachably attached in front of the interference member 24.
[0070] The game frame 52 has, for example, an upper side section, a lower side section, a right side section, and a left side section, and is configured as a rectangular frame. It does not have a so-called flat plate section, and the inside of the game frame 52 has through holes (a cylindrical shape). Therefore, when the game frame 52 is attached in front of the interference member 24, the projectile B entering from the game frame 52 can pass through the through holes and eventually reach the shock absorbing member 20.
[0071] The game frame 52 can be made of, for example, wood or metal, but it is preferable that it be made of wood.
[0072] A target section 54 is positioned inside the game frame 52. The target section 54 is the target that the player uses as a target when shooting. The target section 54 is set and mounted to a predetermined height and position. Specifically, an arm member 56 is attached to the flat plate section 16 of the frame body 12, and the target section 54 is detachably attached to the tip of the arm member 56. Other means may be used for mounting the target section 54.
[0073] The target section 54 is positioned with a downward slope toward the depth direction of the game frame 52. The upper end of the target section 54 is located on the entrance side of the game frame 52, and the lower end is located on the depth side of the game frame 52. Therefore, when the projectile B collides with the target section 54, it falls toward the lower side of the game frame 52 and is collected by the frame 12.
[0074] The inclination angle of the target portion 54 is preferably about 65 degrees with respect to the horizontal direction, but is not limited to this angle.
[0075] The target section 54 and the arm member 56 can be made of metal, plastic resin, etc., but from the viewpoint of producing metallic sounds, durability, and strength, it is preferable to make them of metal.
[0076] A reflective material 58 is placed inside the game frame 52. The reflective material 58 is located below the target section 54 and has the function of capturing the projectile B that has collided with the target section 54 and fallen, and guiding it towards the recovery section 22.
[0077] The reflective material 58 is preferably made of a flexible material such as resin or paper. This allows the reflective material 58 to be positioned in a curved state, thereby improving the guidance function of the projectile B to the recovery section 22.
[0078] The reflective material 58 is one embodiment of the "guiding member" of the present invention.
[0079] Next, the operation of the air gun target device according to the second embodiment of the present invention will be described. This device inherits the operation of the air gun target device according to the first embodiment of the present invention. The explanation of the overlapping parts of the operation will be omitted.
[0080] According to the air gun target device 50 of the second embodiment of the present invention, the player can aim at the target section 54 and shoot. When the projectile B hits the target section 54, a reflected sound is generated, allowing the player to feel the impact. When the projectile B misses the target section 54, it collides with the shock-absorbing member 20 and is eventually recovered by the recovery section 22.
[0081] When some of the projectile B collides with the target section 54 and reflects, it falls towards the reflector 58. Once the projectile B is captured by the reflector 58, it rolls over the reflector 58, passes over the inclined section 26B1 of the lower frame 26B of the frame section 26, and is guided to the recovery section 22.
[0082] As described above, the air gun target device 50 according to the second embodiment is equipped with a target section 54, which allows for the recreation of target shooting games. Furthermore, when the projectile B hits the target section 54, an impact sound (for example, a metallic sound) is generated, creating a realistic feel of live-fire shooting.
[0083] Next, an air gun target device according to the third embodiment of the present invention will be described with reference to the drawings. Components that overlap with the components of the air gun target device according to the first and second embodiments are denoted by the same reference numerals, and their descriptions are omitted.
[0084] The air gun target device according to the third embodiment of the present invention has a configuration in which the interference member is removed from the configuration of the air gun target device according to the first embodiment, and the target section of the air gun target device according to the second embodiment is provided with a plurality of units (for example, two units).
[0085] As shown in Figure 5, the air gun target device 100 according to the third embodiment includes a first target section 102 and a second target section 104. The first target section 102 is positioned at a higher height than the second target section 104.
[0086] The shape of the first target section 102 is round when viewed from the player's front, and the shape of the second target section 104 is square, but the shape of the target sections is not limited to these.
[0087] The area of the first target section 102 is smaller than the area of the second target section 104 when viewed from the front by the player, and the area of the second target section 104 is larger than the area of the first target section 102; however, the relative relationship of the areas is not limited to this.
[0088] The first target section 102 is detachably attached to the frame 12 by a first arm member 106. The first target section 102 and the first arm member 106 are preferably made of metal to produce a metallic sound and improve durability.
[0089] The second target section 104 is detachably attached to the frame 12 by a second arm member 108. The second target section 104 and the second arm member 108 are preferably made of metal to produce a metallic sound and improve durability.
[0090] The inclination angles of the first target section 102 and the second target section 104 are the same as the inclination angles of the target section 54 shown in Figure 4.
[0091] A first reflector 110 is positioned below the first target section 102 and near the back side of the second target section 104. The first reflector 110 is designed to capture the projectile B that has struck and reflected off the first target section 102. Once the projectile B is captured by the first reflector 110, it rolls along the reflector 110 and is guided to the recovery section 22.
[0092] A second reflector 112 is positioned below the second target section 104 and near the recovery section 22. The second reflector 112 is designed to capture the projectile B that has struck the second target section 104 and been reflected. Once the projectile B is captured by the second reflector 112, it rolls along the reflector 112 and is guided to the recovery section 22.
[0093] Next, the operation of the air gun target device according to the third embodiment of the present invention will be described.
[0094] According to the air gun target device 100 of the third embodiment, it is equipped with a first target section 102 and a second target section 104, and since there are multiple targets for shooting, it is possible to increase the variety of shooting and, consequently, the fun of shooting.
[0095] Furthermore, even if projectile B collides with the first target section 102 and the second target section 104 and reflects, it is captured by the first reflector 110 and the second reflector 112 and ultimately guided to the recovery section 22, thus ensuring the reliable recovery of projectile B.
[0096] In addition, although the air gun target device 100 according to the third embodiment of the present invention is exemplified as having a configuration with two target sections, a configuration with three or more target sections may also be adopted.
[0097] Furthermore, the air gun target device 100 according to the third embodiment of the present invention may employ a configuration that incorporates an interference member 24 (see Figures 1 and 2).
[0098] Next, a rack equipped with the air gun target device of the present invention will be described. While the rack equipped with the air gun target device of each of the above embodiments can be used, the invention is not limited to these.
[0099] Figure 6 shows a rack 150 equipped with an air gun target device 10 according to the first embodiment of the present invention. The rack 150 comprises, for example, the air gun target device 10 and a rack body 152 equipped with a storage section 154. Here, the configuration in which the air gun target device 10 is installed on the upper surface of the rack body 152 is illustrated, but the invention is not limited to this configuration.
[0100] The rack body 152 may vary in size and other characteristics depending on the type of rack, such as the rifle rack (for standing shooting), the shelf (for standing shooting), or the shelf (for seated shooting).
[0101] Figure 7 shows a rack 200 equipped with an air gun target device 50 according to a second embodiment of the present invention. The rack 200 comprises, for example, the air gun target device 50 and a rack body 202 equipped with a storage section 204. Here, the configuration in which the air gun target device 50 is installed on the upper surface of the rack body 202 is illustrated, but the invention is not limited to this configuration.
[0102] The rack body 202 may vary in size and other specifications depending on the type of rack, such as the rifle rack (for standing shooting), the shelf (for standing shooting), or the shelf (for seated shooting).
[0103] Figure 8 shows a rack equipped with an air gun target device 100 according to a third embodiment of the present invention. The rack 250 comprises, for example, the air gun target device 100 and a rack body 252 equipped with a storage section 254. Here, the configuration in which the air gun target device 100 is installed on the upper surface of the rack body 252 is illustrated, but the invention is not limited to this configuration.
[0104] Furthermore, the configuration of the rack equipped with the air gun target device of this invention is not limited to the configurations shown in Figures 6 to 8.
[0105] It should be noted that the above configuration is merely one embodiment of the present invention, and the scope of the utility model registration claims is not intended to be limited to this configuration. The technical idea of the present invention should be protected as the scope of rights, and the extent of design modifications by those skilled in the art should be included within the scope of the utility model registration claims. [Explanation of Symbols]
[0106] 10. Target device for air guns (first embodiment) 12 Frame 14. Bullet receiving section 20 Shock-absorbing material 22 Recovery section 24 Interference member 26 Frame section 27 Groove 28 Interference Unit 30 String-like member 50. Target device for air guns (second embodiment) 54 Target part 56 Arm member 58 Reflective material (guiding element) 100 Airgun Target Device (Third Embodiment) 102 First target section (target section) 104 Second target section (target section) 106 First arm member (arm member) 108 Second arm member (arm member) 110 First reflective material (guiding member) 112 Second reflective material (guiding member) 150 racks 152 Rack Unit 154 Storage Unit 200 racks 202 Rack Unit 204 Storage Unit 250 racks 252 Rack Unit 254 Storage Unit B bullet D A predetermined gap
Claims
1. An air gun target device that receives projectiles fired from an air gun, Frame and, A bullet receiving section provided inside the frame, It has, The target device for air guns is characterized in that the projectile receiving section is composed of an impact-absorbing member that absorbs the impact force caused by the collision of the projectile.
2. The air gun target device according to claim 1, characterized in that the impact absorbing member is a flexible sheet member.
3. Provided at the lower part of the frame, The air gun target device according to claim 1, further comprising a recovery unit for recovering the projectile.
4. The target device for an air gun according to claim 3, characterized in that the recovery unit is detachably attached to the frame.
5. The air gun target device according to any one of claims 1 to 4, further comprising an interference member provided in front of the impact absorbing member, which contacts the projectile when it penetrates to decelerate the projectile and suppresses the scattering of the projectile that has collided with and reflected off the impact absorbing member.
6. The air gun target device according to claim 5, characterized in that the interference member comprises a frame portion installed on the frame and an interference member body attached to the frame portion.
7. The air gun target device according to claim 6, characterized in that the interference body is a string-like member wound around the frame, and a predetermined gap is provided between adjacent string-like members wound around the frame, allowing the projectile to enter.
8. The air gun target device according to claim 6, characterized in that the frame portion has a groove into which at least a part of the string-like member enters when the string-like member is wound, thereby positioning the string-like member.
9. The air gun target device according to any one of claims 1 to 4, characterized in that a target portion for hitting the projectile is provided in front of the shock-absorbing member.
10. The air gun target device according to claim 5, characterized in that a target section for hitting the projectile is provided in front of the interfering member.
11. The target device for an air gun according to claim 9, characterized in that the target sections are arranged in multiple locations at different heights.
12. The target device for an air gun according to claim 10, characterized in that the target sections are arranged in multiple locations at different heights.
13. The target device for an air gun according to claim 9, characterized in that the target portion is made of a plate.
14. The target device for an air gun according to claim 10, characterized in that the target portion is made of a plate.
15. The air gun target device according to claim 9, further comprising a guiding member that guides the projectile towards the shock-absorbing member by capturing the projectile that has collided with and reflected from the target portion.
16. The air gun target device according to claim 10, further comprising a guiding member that guides the projectile towards the shock-absorbing member by capturing the projectile that has collided with and reflected from the target portion.
17. The target device for an air gun according to claim 15, characterized in that the guiding member is made of a reflective material.
18. The target device for an air gun according to claim 16, characterized in that the guiding member is made of a reflective material.
19. An air gun target device according to any one of claims 1 to 4, The containment section, A rack body having the aforementioned storage section, A rack characterized by having the following features.
20. The air gun target device according to claim 5, The containment section, A rack body having the aforementioned storage section, A rack characterized by having the following features.
21. The air gun target device according to claim 9, The containment section, A rack body having the aforementioned storage section, A rack characterized by having the following features.
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