A vehicle-mounted gun and ammunition locker
By introducing sliding support plates, racks, and ammunition storage drawers into the vehicle-mounted gun and ammunition cabinet, the problem of insufficient ammunition storage in existing vehicle-mounted gun and ammunition cabinets has been solved, and the stable storage and transportation of firearms and ammunition have been achieved.
Patent Information
- Application Number
- CN202211607955.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-14
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2042-12-14
AI Technical Summary
Existing vehicle-mounted ammunition cabinets lack components for storing ammunition, making it difficult to meet usage requirements.
A vehicle-mounted gun and ammunition cabinet was designed, comprising a sliding support plate, a rack, an ammunition storage drawer, a closing mechanism, an adaptation mechanism, an automatic mechanism, a stabilizing mechanism, and a buffer mechanism. These mechanisms enable the storage, fixation, and stabilization of firearms and ammunition.
It enables the efficient storage of ammunition and the stable transportation of firearms, avoiding shaking and damage to ammunition and firearms during transportation.
Smart Images

Figure CN115817366B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of gun and ammunition cabinet technology, and more particularly to a vehicle-mounted gun and ammunition cabinet. Background Technology
[0002] After firearms and ammunition are manufactured, they are transported using vehicle-mounted gun cabinets. However, existing gun cabinets use support frames to hold firearms but lack components for holding ammunition, making it difficult to use the firearms properly after transportation. Therefore, it is necessary to design a vehicle-mounted gun cabinet.
[0003] Patent application number CN215076751U discloses a vehicle-mounted gun and ammunition cabinet. When the top door is closed, two sets of compression blocks on the top door are inserted into two sets of compression slots. Since the rear side wall of the compression slot is a sloping structure, the compression blocks push the crossbeam backward after being inserted into the compression slot. The crossbeam drives the two sets of clamping plates to move backward. The guns are clamped and fixed by the clamping slot and the placement slot. The adjustment plate can be finely adjusted back and forth by rotating the adjustment screw. When in use, the gun and ammunition cabinet stores the guns through the support frame and the placement slot. However, it lacks a component for storing ammunition, which makes it difficult to meet people's needs.
[0004] We have designed a vehicle-mounted ammunition cabinet to overcome the shortcomings of existing ammunition cabinets, which lack ammunition storage components and fail to meet user needs. Summary of the Invention
[0005] In view of the shortcomings of the prior art, the present invention provides a vehicle-mounted ammunition cabinet that can store ammunition, so as to overcome the disadvantage of existing ammunition cabinets lacking ammunition storage components.
[0006] To achieve the above objectives, the present invention provides the following solution: a vehicle-mounted gun and ammunition cabinet, comprising a cabinet body, a sliding support plate, a shelf, ammunition storage drawers, and cabinet doors. The sliding support plate is slidably connected to the bottom of the cabinet body, and the shelf is evenly connected to the top of the sliding support plate. Ammunition storage drawers are slidably connected to the upper left and right sides of the cabinet body, and cabinet doors are rotatably connected to the left and right sides of the front of the cabinet body. The cabinet also includes a closing mechanism and an adapting mechanism. The shelf is provided with a closing mechanism for securing the gun, and the closing mechanism is provided with an adapting mechanism for pressing the gun.
[0007] As an improvement to the above solution, the sliding support plate is U-shaped.
[0008] As an improvement to the above solution, the closure mechanism includes a fixed frame, a rotating shaft, and a closure plate. The fixed frame is connected to the upper left side of the placement frame, and the rotating shaft is rotatably connected to the front side of the fixed frame. The closure plate is connected to the rotating shaft.
[0009] As an improvement to the above solution, the adaptation mechanism includes an adaptation plate, a push rod, and a push plate. The push rod is slidably connected to the closed plate, the adaptation plate is connected to the rear side of the push rod, and the push plate is connected to the front side of the push rod.
[0010] As an improvement to the above solution, an automatic mechanism for rotating the sealing plate is also included. The automatic mechanism includes a pressure plate frame, a first linear spring, a sliding rod, a first rack, and a gear. The pressure plate frame is slidably connected to the upper rear side of the placement frame. The first linear spring is connected between the pressure plate frame and the placement frame and is wound around the pressure plate frame. The sliding rod is connected to the left side of the pressure plate frame. The first rack is connected to the front side of the sliding rod. The gear is connected to the lower side of the rotating shaft. The gear meshes with the first rack. When the gun drives the pressure plate frame to move backward, the first linear spring is stretched, the sliding rod and the first rack move backward, the gear and the rotating shaft rotate counterclockwise, and the sealing plate rotates counterclockwise.
[0011] As an improvement to the above solution, a one-way locking mechanism for locking the adaptation plate is also included. The one-way locking mechanism includes a fixed block, a second linear spring, a sliding frame, a pawl, a torsion spring, a second rack, and a third linear spring. A second rack is connected between the front part of the adaptation plate and the push plate. Fixed blocks are connected to the right side of the front part of the sealing plate. A sliding frame is slidably connected to each fixed block. Second linear springs are connected to both the left and right sides of the fixed blocks and the sliding frames that slide on them. The second linear springs are wound around the sliding frames. Pawls are rotatably connected to the upper left side of each sliding frame. A torsion spring is connected between the sliding frame and the rotatable pawls that rotate on it. The torsion springs are wound around the sliding frames. A third linear spring is connected between the sealing plate and the push plate. The third linear spring is wound around the push rod.
[0012] As an improvement to the above solution, a stabilizing mechanism for stabilizing the gun is also included. The stabilizing mechanism includes a motor, a rotating plate and a pressure rod. The motor is installed on the top left side of the sliding support plate, the output shaft of the motor is connected to the rotating plate, and the pressure rod is connected to the rotating plate.
[0013] As an improvement to the above solution, a buffering mechanism for damping vibration is also included. The buffering mechanism includes a reset rod and a fourth linear spring. The reset rod is connected to both the left and right sides of the lower part of the cabinet. The sliding support plate is slidably connected to the reset rod. The fourth linear spring is connected between the left and right sides of the sliding support plate and the cabinet. The fourth linear spring is wound around the reset rod.
[0014] The advantages of this invention are: 1. This invention opens the cabinet door by manually pressing a password, then people manually pull the ammunition storage drawer forward to the appropriate position, and then people put the ammunition into the ammunition storage drawer, thereby achieving the effect of storing ammunition and facilitating the subsequent use of firearms;
[0015] 2. By pushing the plate backward, the second rack and the adapting plate move backward, causing the pawl to rotate clockwise. After the torsion spring is twisted and deformed, it resets and causes the pawl to rotate counterclockwise and engage with the second rack, thus achieving the limiting effect and preventing the adapting plate from moving forward easily.
[0016] 3. When the motor is started, the output shaft of the motor rotates, causing the rotating plate to rotate backward, which in turn causes the pressure rod to rotate backward. Once the pressure rod rotates backward and contacts the gun, the motor is turned off, thus achieving a stable effect and preventing the gun from being damaged due to excessive shaking during transportation. Attached Figure Description
[0017] Figure 1 This is a first-view three-dimensional structural diagram of the present invention.
[0018] Figure 2 This is a schematic diagram of the second-view three-dimensional structure of the present invention.
[0019] Figure 3 This is a schematic diagram of the third-view three-dimensional structure of the present invention.
[0020] Figure 4 This is a schematic diagram of a portion of the three-dimensional structure of the present invention.
[0021] Figure 5 This is a three-dimensional structural diagram of the closure mechanism of the present invention.
[0022] Figure 6 This is a schematic diagram of the three-dimensional structure of the adaptable mechanism of the present invention.
[0023] Figure 7 This is a three-dimensional structural diagram of the automatic mechanism of the present invention.
[0024] Figure 8 This is a three-dimensional structural diagram of the one-way locking mechanism of the present invention.
[0025] Figure 9 This is an enlarged three-dimensional structural diagram of point A in the present invention.
[0026] Figure 10 This is a three-dimensional structural diagram of the stabilizing mechanism of the present invention.
[0027] Figure 11 This is a three-dimensional structural diagram of the buffer mechanism of the present invention.
[0028] The meanings of the reference numerals in the attached diagram are as follows: 1_cabinet body, 2_sliding support plate, 3_placement rack, 4_ammunition storage drawer, 5_cabinet door, 6_closing mechanism, 61_fixed frame, 62_rotating shaft, 63_closing plate, 7_adaptation mechanism, 71_adaptation plate, 72_push rod, 73_push plate, 8_automatic mechanism, 81_pressure plate frame, 82_first linear spring, 83_sliding rod, 84_first rack, 85_gear, 9_one-way locking mechanism, 91_fixed block, 92_second linear spring, 93_sliding frame, 94_pawl, 95_torsion spring, 96_second rack, 97_third linear spring, 10_stabilizing mechanism, 101_motor, 102_rotating plate, 103_pressure rod, 11_buffer mechanism, 111_reset rod, 112_fourth linear spring. Detailed Implementation
[0029] The present invention will now be further described with reference to the accompanying drawings and specific embodiments:
[0030] Example 1
[0031] A vehicle-mounted gun and ammunition cabinet, now for reference Figures 1-4 It includes a cabinet body 1, a sliding support plate 2, a storage rack 3, an ammunition storage drawer 4, a cabinet door 5, a closing mechanism 6, and an adaptation mechanism 7. The sliding support plate 2 is slidably connected to the bottom of the cabinet body 1. The sliding support plate 2 is U-shaped. Five storage racks 3 are evenly welded to the top of the sliding support plate 2. The ammunition storage drawers 4 are slidably connected to the upper left and right sides of the cabinet body 1. The cabinet door 5 is rotatably connected to the left and right sides of the front of the cabinet body 1. The storage rack 3 is equipped with a closing mechanism 6. The closing mechanism 6 is equipped with an adaptation mechanism 7.
[0032] For reference Figure 3 and Figure 5 The closing mechanism 6 includes a fixed frame 61, a rotating shaft 62, and a closing plate 63. Fixed frames 61 are welded to the upper left side of the placement frame 3. There are five fixed frames 61. The front side of each fixed frame 61 is rotatably connected to a rotating shaft 62. There are five rotating shafts 62. A closing plate 63 is welded to each rotating shaft 62. There are five closing plates 63. The closing plates 63 are in contact with the placement frame 3.
[0033] For reference Figure 3 and Figure 6 The adaptation mechanism 7 includes an adaptation plate 71, a push rod 72, and a push plate 73. Each of the five push rods 72 is slidably connected to the closed plate 63. Each of the five push rods 72 has an adaptation plate 71 welded to its rear side. The adaptation plate 71 is in contact with the placement frame 3 and the closed plate 63. Each of the five push rods 72 has a push plate 73 welded to its front side.
[0034] When people need to store firearms and ammunition in a vehicle, they can use this vehicle-mounted firearms cabinet. First, the cabinet is installed in the vehicle compartment. After installation, the correct password is entered on the cabinet door 5 to open it. Then, the closing plate 63 is manually rotated clockwise, causing the rotating shaft 62 and the adapting plate 71 to rotate clockwise, which in turn causes the push rod 72 and the push plate 73 to rotate clockwise. Once the closing plate 63 has rotated to the appropriate position, the firearm is placed on the storage rack 3. After placement, the closing plate 63 is manually rotated counterclockwise, causing the rotating shaft 62 and the adapting plate 71 to rotate counterclockwise, which in turn causes the push rod 72 and the push plate 73 to rotate counterclockwise. Once the closing plate 63 contacts the storage rack 3, the push plate 73 is manually moved backward, which in turn causes the push rod 72 and the adapting plate 71 to move backward. Once the adapting plate 71 has secured the firearm, the cabinet is released. Push plate 73, then manually pull ammunition storage drawer 4 forward. After ammunition storage drawer 4 moves forward to the appropriate position, people put ammunition into ammunition storage drawer 4. After placement, people manually move ammunition storage drawer 4 backward to the appropriate position, thus achieving the storage effect. Then, people manually turn cabinet door 5 in the opposite direction to close cabinet 1. When people need to take out the gun, they open cabinet 1 according to the above steps, then manually pull push plate 73 forward, causing push rod 72 and adaptation plate 71 to move forward. After adaptation plate 71 moves forward and contacts closing plate 63, people turn closing plate 63 clockwise according to the above steps, then take out the gun, and turn closing plate 63 counterclockwise according to the above steps. When people need to take out ammunition, they pull ammunition storage drawer 4 forward according to the above steps to take out the ammunition, and then close cabinet 1 according to the above steps.
[0035] Example 2
[0036] Based on Example 1, now refer to Figure 3 and Figure 7 It also includes an automatic mechanism 8, which includes a pressure plate frame 81, a first linear spring 82, a sliding rod 83, a first rack 84, and a gear 85. The pressure plate frame 81 is slidably connected to the upper rear side of the placement frame 3. There are five pressure plate frames 81. The first linear spring 82 is connected between the pressure plate frame 81 and the placement frame 3. The first linear spring 82 is wound around the pressure plate frame 81. There are five first linear springs 82. The left side of the pressure plate frame 81 is welded with a sliding rod 83. There are five sliding rods 83. The front side of the sliding rod 83 is welded with a first rack 84. There are five first racks 84. The lower side of the rotating shaft 62 is welded with a gear 85. The gear 85 meshes with the first rack 84.
[0037] For reference Figure 3 , Figure 8 and Figure 9It also includes a one-way locking mechanism 9, which includes a fixed block 91, a second linear spring 92, a sliding frame 93, a pawl 94, a torsion spring 95, a second rack 96, and a third linear spring 97. Five second racks 96 are welded between the front of the adapting plate 71 and the push plate 73. Five fixed blocks 91 are welded to the right side of the front of the sealing plate 63. Each fixed block 91 is slidably connected to a sliding frame 93. There are five sliding frames 93 on each of the fixed blocks 91 and the sliding frames 93 on them. The fixed blocks 91 and the sliding frames 93 on them are connected on both the left and right sides. A second linear spring 92 is connected, and there are ten second linear springs 92. The second linear springs 92 are wound around the sliding frame 93. Pads 94 are rotatably connected to the upper left side of the sliding frame 93. There are five pawls 94. The pawls 94 are in contact with the second rack 96. Torsion springs 95 are connected between the sliding frame 93 and the pawls 94 that rotate on it. There are five torsion springs 95. The torsion springs 95 are wound around the sliding frame 93. A third linear spring 97 is connected between the closing plate 63 and the push plate 73. There are five third linear springs 97. The third linear springs 97 are wound around the push rod 72.
[0038] For reference Figure 2 and Figure 10 It also includes a stabilizing mechanism 10, which includes a motor 101, a rotating plate 102 and a pressure rod 103. The motor 101 is fixed to the top left side of the sliding support plate 2 by bolts. The rotating plate 102 is connected to the output shaft of the motor 101. The pressure rod 103 is welded to the rotating plate 102 and contacts the sliding support plate 2.
[0039] For reference Figure 2 and Figure 11 It also includes a buffer mechanism 11, which includes a reset rod 111 and a fourth linear spring 112. Two reset rods 111 are welded to the lower left and right sides of the cabinet body 1. There are four reset rods 111. The sliding support plate 2 is slidably connected to the reset rods 111. Two fourth linear springs 112 are connected between the left and right sides of the sliding support plate 2 and the cabinet body 1. The fourth linear springs 112 are wound around the reset rods 111. There are four fourth linear springs 112.
[0040] The rotating shaft 62 rotates clockwise, causing the gear 85 to rotate clockwise, which in turn moves the first rack 84 forward. This causes the sliding rod 83 and the pressure plate frame 81 to move forward, compressing the first linear spring 82. Then, the gun is placed in the storage rack 3. When the gun contacts the pressure plate frame 81, the gun moves the pressure plate frame 81 backward, stretching the first linear spring 82. This causes the sliding rod 83 and the first rack 84 to move backward, while the gear 85 and rotating shaft 62 rotate counterclockwise. The sealing plate 63 rotates counterclockwise, thus achieving an automatic closing effect. Then, the push plate 73 is manually moved backward to press the gun firmly. When the gun needs to be removed, the push plate 73 is pulled forward following the above steps, and the sealing plate 63 is manually rotated clockwise. The pressure plate frame 81 moves forward, pushing the gun out, allowing the gun to be removed.
[0041] The push plate 73 moves backward, causing the second rack 96 to move backward, which in turn compresses the third linear spring 97. This causes the adapting plate 71 and the push rod 72 to move backward, and the pawl 94 rotates clockwise. After the torsion spring 95 twists and deforms, it causes the pawl 94 to rotate counterclockwise and return to its original position, contacting the second rack 96. This achieves a limiting effect, preventing the adapting plate 71 from moving forward easily and strengthening the fixation of the gun. When it is necessary to pull the push plate 73 forward, the user first manually moves the sliding bracket 93 downward, which compresses the second linear spring 92 and causes the pawl 94 to move downward. After the pawl 94 moves downward away from the second rack 96, the third linear spring 97 returns to its original position, causing the push plate 73 to move forward, which in turn causes the second rack 96, the adapting plate 71, and the push rod 72 to move forward. When the adapting plate 71 moves forward to the appropriate position, the user releases the sliding bracket 93, which causes the second linear spring 92 to return to its original position, causing the sliding bracket 93 to move upward, and the pawl 94 to move upward and contact the second rack 96.
[0042] When it is necessary to limit the movement of the firearm, the motor 101 can be started. The output shaft of the motor 101 rotates, causing the rotating plate 102 to rotate backward, which in turn causes the pressure rod 103 to rotate backward. When the pressure rod 103 rotates backward and contacts the firearm, the motor 101 can be turned off, thus achieving a stabilizing effect and preventing the firearm from shaking. When it is necessary to remove the firearm, the motor 101 can be started again. The output shaft of the motor 101 rotates in the opposite direction, causing the rotating plate 102 to rotate forward, which in turn causes the pressure rod 103 to rotate forward. When the pressure rod 103 rotates forward to the appropriate position, the motor 101 can be turned off, and then the firearm can be removed by following the above steps.
[0043] When the carriage vibrates, the cabinet 1 vibrates, causing the sliding support plate 2 to move left and right. The fourth linear spring 112 adapts to the deformation. During the vibration, the fourth linear spring 112 adapts to the deformation to buffer the movement of the sliding support plate 2, thereby achieving a buffering effect and preventing the gun from shaking inside the cabinet 1 and causing damage, thus improving the reliability of this vehicle-mounted gun and ammunition cabinet.
[0044] For those skilled in the art, various other corresponding changes and modifications can be made based on the technical solutions and concepts described above, and all such changes and modifications should fall within the protection scope of the claims of this invention.
Claims
1. A vehicle-mounted gun and ammunition cabinet, comprising a cabinet body (1), a sliding support plate (2), a storage rack (3), an ammunition storage drawer (4), and a cabinet door (5), wherein the sliding support plate (2) is slidably connected to the bottom of the cabinet body (1), the storage rack (3) is evenly connected to the top of the sliding support plate (2), the ammunition storage drawer (4) is slidably connected to the upper left and right sides of the cabinet body (1), and the cabinet door (5) is rotatably connected to the front left and right sides of the cabinet body (1), characterized in that, It also includes a closing mechanism (6) and an adapting mechanism (7). The mounting frame (3) is provided with a closing mechanism (6) for locking the gun, and the closing mechanism (6) is provided with an adapting mechanism (7) for pressing the gun. The closing mechanism (6) includes a fixed frame (61), a rotating shaft (62) and a closing plate (63). The fixed frame (61) is connected to the upper left side of the placement rack (3). The rotating shaft (62) is rotatably connected to the front side of the fixed frame (61). The closing plate (63) is connected to the rotating shaft (62). The adaptation mechanism (7) includes an adaptation plate (71), a push rod (72) and a push plate (73). The push rod (72) is slidably connected to the closed plate (63). The adaptation plate (71) is connected to the rear side of the push rod (72), and the push plate (73) is connected to the front side of the push rod (72). It also includes an automatic mechanism (8) for rotating the closing plate (63). The automatic mechanism (8) includes a pressure plate frame (81), a first linear spring (82), a sliding rod (83), a first rack (84), and a gear (85). The pressure plate frame (81) is slidably connected to the upper rear side of the placement frame (3). The first linear spring (82) is connected between the pressure plate frame (81) and the placement frame (3). The first linear spring (82) is wound around the pressure plate frame (81). (81) A sliding rod (83) is connected to the left side of each sliding rod (83). A first rack (84) is connected to the front side of each sliding rod (83). A gear (85) is connected to the lower side of each rotating shaft (62). The gear (85) meshes with the first rack (84). The gun drives the pressure plate frame (81) to move backward. The first linear spring (82) is stretched. The sliding rod (83) and the first rack (84) move backward. The gear (85) and the rotating shaft (62) rotate counterclockwise. The sealing plate (63) rotates counterclockwise.
2. The vehicle-mounted gun and ammunition cabinet according to claim 1, characterized in that, The sliding support plate (2) is U-shaped.
3. The vehicle-mounted gun and ammunition cabinet according to claim 2, characterized in that, It also includes a one-way locking mechanism (9) for locking the adapting plate (71). The one-way locking mechanism (9) includes a fixing block (91), a second linear spring (92), a sliding frame (93), a pawl (94), a torsion spring (95), a second rack (96), and a third linear spring (97). The front part of the adapting plate (71) is connected to the push plate (73) by the second rack (96). The front right side of the closing plate (63) is connected to the fixing block (91). The sliding frame (93) is slidably connected to the fixing block (91). A second linear spring (92) is connected to both the left and right sides of the sliding frame (93) that slides on it. The second linear spring (92) is wound around the sliding frame (93). A pawl (94) is rotatably connected to the upper left side of the sliding frame (93). A torsion spring (95) is connected between the sliding frame (93) and the pawl (94) that rotates on it. The torsion spring (95) is wound around the sliding frame (93). A third linear spring (97) is connected between the closing plate (63) and the push plate (73). The third linear spring (97) is wound around the push rod (72).
4. A vehicle-mounted gun and ammunition cabinet according to claim 3, characterized in that, It also includes a stabilizing mechanism (10) for stabilizing the gun. The stabilizing mechanism (10) includes a motor (101), a rotating plate (102) and a pressure rod (103). The motor (101) is installed on the top left side of the sliding support plate (2). The rotating plate (102) is connected to the output shaft of the motor (101), and the pressure rod (103) is connected to the rotating plate (102).
5. A vehicle-mounted gun and ammunition cabinet according to claim 4, characterized in that, It also includes a buffer mechanism (11) for damping vibration. The buffer mechanism (11) includes a reset rod (111) and a fourth linear spring (112). The reset rod (111) is connected to the lower left and right sides of the cabinet (1). The sliding support plate (2) is slidably connected to the reset rod (111). The fourth linear spring (112) is connected between the left and right sides of the sliding support plate (2) and the cabinet (1). The fourth linear spring (112) is wound around the reset rod (111).
Citation Information
Patent Citations
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