An aerial munitions storage and transport container
By designing the support and transfer beam structure for the storage and transportation container of aviation munitions, multi-layer stacking and seamless docking of guided bombs were achieved, solving the problems of low space utilization and slow transfer speed in existing technologies, and improving the combat efficiency of the troops.
Patent Information
- Application Number
- CN202411970517.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2044-12-30
AI Technical Summary
Existing technologies for storing and transporting guided bombs have low space utilization, cannot be stacked in multiple layers, require the removal of the wings for hoisting, and cannot be seamlessly connected with top-mounted vehicles, which affects the speed of troops' combat readiness.
An aviation ammunition storage and transportation container was designed, comprising a container body, a transfer beam, and a support frame. Multi-layer stacking and seamless docking are achieved through a detachably connected support frame and linkage structure. The support frame includes a column, a linkage, and a support frame. The transfer beam is detachably connected to the support frame. The support plate supports the aviation-guided bombs, and the linkage structure can be adjusted in position.
It enables multi-layer stacking of air-guided bombs, improves space utilization, avoids the need to disassemble the bomb wings, achieves seamless docking with the top trailer, and improves transfer speed and combat efficiency.
Smart Images

Figure CN119612004B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of ammunition storage and transportation, and particularly relates to an aviation ammunition storage and transportation container. BACKGROUND
[0002] The aviation guided bomb is an important military weapon, commonly known as a guided bomb, mainly used for direct attack on important ground or water surface fixed point targets and trackable moving targets, and is a kind of aviation ammunition. After the production of the aviation guided bomb is completed, it needs to be stored and transported to transfer the aviation guided bomb in good condition.
[0003] Currently, the aviation guided ammunition is generally stored, hoisted and transported in a one-bomb-one-box manner, that is, one missile box loads one aviation guided ammunition. For example, the utility model disclosed in Patent Publication No. CN211317088U discloses a missile box convenient to transport. However, this mode has low space utilization rate, cannot be stacked in multiple layers, needs to disassemble the wings of the aviation guided ammunition during loading, is complicated to operate, cannot be seamlessly connected with a top-hanging vehicle, has slow loading and unloading speed, and especially for aviation guided bombs with large size and weight, seriously affects the speed of the army's preparation for war and combat. SUMMARY
[0004] The present application provides an aviation ammunition storage and transportation container to solve the technical problems mentioned in the background.
[0005] To achieve the above purpose, the present application adopts the following technical scheme:
[0006] An aviation ammunition storage and transportation container comprises a container body comprising a box body and a sealing door; the side faces of the box body are all open structures; the sealing door is movably arranged on the opening structure of the box body; a transfer beam; a support arranged on the inner bottom surface of the box body; the two ends of the transfer beam are respectively detachably connected with the supports; the support supports the transfer beam; the length direction of the transfer beam is consistent with the length direction of the box body; and the supports are located at the two ends of the box body.
[0007] As a further improvement of the technical scheme, the support comprises a first column, a second column, a third column, a connecting rod structure and a support frame; one end of the first column is vertically connected with the middle part of the second column; one end of the third column is vertically connected with one end of the second column; the first column and the third column are located on the same side of the second column; the connecting rod structure is arranged on the end of the first column and the third column away from the second column; the support frame is arranged on the connecting rod structure; and the support frame is detachably connected with the transfer beam.
[0008] As a further improvement of the technical scheme, the connecting rod structure comprises a first rod body, a second rod body, a third rod body and a fourth rod body; the middle part of the first rod body is fixedly connected with the first column body, and the end part thereof is fixedly connected with the third column body; the middle part of the second rod body is rotatably connected with the first column body, and the two end parts thereof are rotatably connected with the third rod body respectively; one end of the fourth rod body is rotatably connected with the end of the third rod body away from the second rod body, and the other end thereof is rotatably connected with the first rod body; the support frame is arranged on the third rod body; the support frame moves with the third rod body.
[0009] As a further improvement of the technical scheme, the connecting rod structure further comprises a base; the end of the first rod body away from the third column body is rotatably connected with the fourth rod body through the base; the base is fixedly arranged on the end of the first rod body away from the third column body; the end of the fourth rod body away from the third rod body is rotatably connected with the base.
[0010] As a further improvement of the technical scheme, the support frame further comprises a fifth rod body, a winch and a steel rope; one end of the fifth rod body is vertically connected with the end of the second column body away from the third column body; the fifth rod body is located on the same side of the second column body as the first column body; the winch is arranged on the end of the fifth rod body away from the second column body; the middle part of the steel rope is wound on the winch, and the two end parts thereof are connected with the two end parts of the second rod body respectively.
[0011] As a further improvement of the technical scheme, the connecting rod structure further comprises a pulley; the pulley is arranged at the connection position of the end of the first rod body away from the third column body and the fourth rod body; the steel rope is tangent to the pulley.
[0012] As a further improvement of the technical scheme, the transfer beam comprises a beam body, a connecting pipe and a support plate; the two end parts of the connecting pipe are connected with the beam body respectively; the connecting pipe is located at the end part of the beam body; the support plate is arranged on the beam body; the support plate is arranged in an inclined manner.
[0013] As a further improvement of the technical scheme, the transfer beam further comprises a support rod; the two end parts of the support rod are movably connected with the beam bodies on the adjacent support frames respectively; when the support rod is connected with the beam body, the support rod is vertically distributed.
[0014] As a further improvement of the technical scheme, the support frame further comprises a connecting block; the support frame and the transfer beam are detachably connected through the connecting block; one end of the connecting block is hingedly connected with the end of the support frame close to the beam body, and the other end thereof is detachably connected with the support frame.
[0015] As a further improvement of the technical scheme, the connecting block further comprises a pressing rod; a threaded hole is formed in the middle of the connecting block; the threaded hole is towards the connecting pipe; the pressing rod is threadedly connected with the threaded hole.
[0016] As a further improvement of the technical scheme, the support further comprises a fixing seat; the fixing seat is arranged at the middle of the second column body near the support frame; the fixing seat is detachably connected with the support frame.
[0017] As a further improvement of the technical scheme, the box comprises a rectangular bottom plate, a column and a top plate; one end of the column is vertically connected with the top surface of the bottom plate; the top plate is connected with the end of the column away from the bottom plate, forming four openings; the sealing door is movably arranged on the openings to control the opening and closing of the openings.
[0018] As a further improvement of the technical scheme, the two ends of the bottom plate in the length direction are first openings, and the two ends of the bottom plate in the width direction are second openings; the sealing door comprises a first door frame and a second door frame; the first door frame is arranged on the first opening; the second door frame is arranged on the second opening.
[0019] As a further improvement of the technical scheme, the second door frame comprises at least two door frames; the adjacent door frames are hingedly connected; two second door frames are arranged on one second opening.
[0020] As a further improvement of the technical scheme, the column further comprises a drain pipe; the drain pipe is arranged in the column; one end of the drain pipe is in communication with the top surface of the top plate, and the other end of the drain pipe is in communication with the bottom surface of the bottom plate.
[0021] As a further improvement of the technical scheme, the top plate further comprises a water guide groove; the water guide groove is arranged on the top surface edge of the top plate; the water guide groove is in communication with the end of the drain pipe away from the bottom plate.
[0022] As a further improvement of the technical scheme, the top plate further comprises a first corner piece; the first corner piece is arranged at the four corners of the top plate; the first corner piece is internally provided with a drainage groove; the drainage groove is in communication with the water guide groove; the bottom surface of the drainage groove is lower than the bottom surface of the water guide groove; the drain pipe is in communication with the water guide groove through the drainage groove; the end port of the drain pipe away from the bottom plate extends into the first corner piece and is in communication with the drainage groove.
[0023] As a further improvement of the technical scheme, the chassis comprises a bottom plate, side plates and bottom beams; the bottom plate is a cuboid structure; two ends of the bottom plate in the width direction are connected with the plate surfaces of the side plates; two ends of the bottom plate in the length direction are connected with the top surfaces of the bottom beams; the side plates and the bottom beams support the bottom plate, and a cavity is left below the bottom plate.
[0024] As a further improvement of the technical scheme, the chassis further comprises second corner fittings; the second corner fittings are located at the four corners of the bottom plate and are connected with the end portions of the side plates and the bottom beams respectively; the interiors of the second corner fittings are drainage grooves; and one end of the drainage pipe away from the top plate is in communication with the drainage grooves.
[0025] As a further improvement of the technical scheme, the chassis further comprises slots; at least two slots are formed in the side plates; the length directions of the slots are consistent with the length and width of the bottom plate; and the slots are distributed in parallel along the length direction of the side plates.
[0026] As a further improvement of the technical scheme, the container body further comprises a fixing member; one end of the fixing member is movably connected with the inner bottom surface of the box body, and the other end of the fixing member is detachably connected with the transfer beam close to the inner bottom surface of the box body.
[0027] Compared with the prior art, the application has the following beneficial effects:
[0028] 1. The application can realize multi-layer stacking of aerial guided bombs, and a box can load multiple aerial guided bombs, thereby effectively improving the utilization rate of space; when loading the aerial guided bombs, the transfer beam is connected with the support frame, the connecting pipe is connected with the support frame, the connecting rod structure is adjusted from the fixed state to the movable state, the second rod body, the third rod body and the fourth rod body are movable, the second rod body is rotated, the second rod body changes from the original inclined direction to the nearly horizontal direction, the third rod body and the fourth rod body move with the second rod body, wherein the third rod body moves in the opposite direction, changes from the original one high and one low state to one left and one right, and is nearly horizontal, the transfer beam also changes to one left and one right position, the position space is large, and the aerial guided bombs are convenient to place, the position of the second rod body is fixed, then the aerial guided bombs are placed on the transfer beam, the aerial guided bombs are in contact with the support plate, the support plate supports the aerial guided bombs, after the aerial guided bombs are placed, the second rod body is rotated to reset, the second rod body changes to be inclined, the third rod body also changes to be one high and one low, the transfer beam also changes to be one high and one low, a double-layer storage area is formed, multi-layer stacking of the aerial guided bombs is realized, the position of the second rod body is fixed, the third rod body, the fourth rod body and the transfer beam are limited to move, the connecting rod mechanism is prevented from moving during storage or transportation, and the transfer beam is prevented from deviating.
[0029] 2. The application can realize seamless docking of the top-hanging vehicle and the aerial guided bomb, without disassembling the wings of the aerial guided bomb, effectively improving the transfer speed; when the aerial guided bomb needs to be removed, rotate the second rod body, so that the transfer beam becomes a left-right position, close to horizontal, which is convenient for the top-hanging vehicle to remove the aerial guided bomb, then disassemble the connecting pipe and the support frame, so that the connecting pipe and the support frame can be separated, then the top-hanging vehicle contacts the transfer beam on the support frame, lifts the two transfer beams, and carries away the transfer beam and the aerial guided bomb together, realizes seamless docking, shortens the transfer link, effectively improves the transfer speed, and enhances the combat.
[0030] 3. The container body of the application has a simple overall structure, four openings are provided, and is adapted to the transfer beam and the top-hanging vehicle, so that the load-bearing part of the top-hanging vehicle can extend into the box body and be connected with the transfer beam,
[0031] and be transferred away, and has a simple overall structure and is adapted to the transfer beam and the top-hanging vehicle. BRIEF DESCRIPTION OF DRAWINGS
[0032] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments, and it should be understood that the following drawings only show some embodiments of the application, and therefore should not be regarded as a limitation to the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0033] Figure 1 Structure diagram of the aerial bomb storage and transfer container provided by the application Figure 1 ;
[0034] Figure 2 Structure diagram provided by the application Figure 2 ;
[0035] Figure 3 Front view of Figure 2 ;
[0036] Figure 4 Structure diagram of the support and the transfer beam in Figure 1 ; Figure 1
[0037] Structure diagram of the support and the transfer beam in Figure 5 ; Figure 1 Figure 2
[0038] Figure 6 Structure diagram of the support and the transfer beam in Figure 1 ; Figure 3
[0039] Figure 7 Structure diagram of the support and the transfer beam in Figure 6 An enlarged view of B in FIG. 1;
[0040] Figure 8 An enlarged view of B in FIG. 1; Figure 4 An enlarged view of B in FIG. 1; Figure 1 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0041] An enlarged view of B in FIG. 1; Figure 9 An enlarged view of B in FIG. 1; Figure 4 An enlarged view of B in FIG. 1; Figure 2 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0042] An enlarged view of B in FIG. 1; Figure 10 An enlarged view of B in FIG. 1; Figure 4 An enlarged view of B in FIG. 1; Figure 3 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0043] An enlarged view of B in FIG. 1; Figure 11 An enlarged view of B in FIG. 1; Figure 1 An enlarged view of B in FIG. 1; Figure 1 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0044] An enlarged view of B in FIG. 1; Figure 12 An enlarged view of B in FIG. 1; Figure 1 An enlarged view of B in FIG. 1; Figure 2 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0045] An enlarged view of B in FIG. 1; Figure 13 An enlarged view of B in FIG. 1; Figure 12 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0046] An enlarged view of B in FIG. 1; Figure 14 An enlarged view of B in FIG. 1; Figure 1 An enlarged view of B in FIG. 1; Figure 4 An enlarged view of B in FIG. 1; An enlarged view of B in FIG. 1;
[0047] Reference numerals: 1 - container body, 11 - sealing door, 111 - first door frame, 112 - second door frame, 12 - chassis, 121 - bottom plate, 122 - side plate, 123 - bottom beam, 124 - second corner piece, 125 - slot, 13 - vertical column, 131 - drain pipe, 14 - top plate, 141 - water guide groove, 142 - first corner piece, 15 - fixing piece, 2 - transfer beam, 21 - beam body, 22 - connecting pipe, 23 - support plate, 24 - support rod, 3 - bracket, 31 - first column body, 32 - second column body, 33 - third column body, 34 - connecting rod structure, 341 - first rod body, 342 - second rod body, 343 - third rod body, 344 - fourth rod body, 345 - base, 346 - pulley, 35 - support bracket, 36 - fifth rod body, 37 - winch, 38 - connecting block, 381 - pressing rod, 39 - fixing base. DETAILED DESCRIPTION
[0048] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions of the embodiments of the present application with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. Based on the described embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort fall within the scope of the present application. Unless otherwise defined, the technical terms or scientific terms used herein should be understood as their common meanings to those having ordinary skill in the art to which the present application pertains.
[0049] The terms "first", "second", and similar terms used in the description and the claims of the present application do not denote any order, quantity, or importance, but are used to distinguish different constituent parts. Similarly, the singular forms "a", "an", and "the" do not denote the quantity limitation, but denote the existence of at least one, unless the context clearly indicates otherwise. The terms "comprise", "comprising", and similar terms mean that the elements or objects preceding the "comprise" or "comprising" encompass the features, integers, steps, operations, elements, and / or components listed after the "comprise" or "comprising", and do not exclude one or more other features, integers, steps, operations, elements, components, and / or groups thereof. The terms "up", "down", "left", "right", and the like are used only to indicate relative positional relationships, and when the absolute positions of the described objects are changed, the relative positional relationships can also be changed accordingly.
[0050] In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms such as "mount", "connect", "connection", "set", should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or indirectly connected through an intermediate medium; can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0051] Embodiment one:
[0052] As Figures 1 to 14The illustrated aerial ammunition storage and transportation container comprises a container body 1, a transfer beam 2 and a support 3, a box body and a sealing door 11, the side of the box body is an open structure, the sealing door 11 is movably arranged on the open structure of the box body, the support 3 is arranged on the inner bottom surface of the container body 1, the two ends of the transfer beam 2 are respectively detachably connected with the support 3, the support 3 supports the transfer beam 2, the support 3 comprises a first column body 31, a second column body 32, a third column body 33, a connecting rod structure 34 and a support frame 35, one end of the first column body 31 is vertically connected with the middle part of the second column body 32, one end of the third column body 33 is vertically connected with one end of the second column body 32, the first column body 31 and the third column body 33 are located on the same side of the second column body 32, the second column body 32 supports the first column body 31 and the third column body 33, the connecting rod structure 34 is arranged on the end of the first column body 31 and the third column body 33 away from the second column body 32, the support frame 35 is arranged on the connecting rod structure 34, the support frame 35 is detachably connected with the transfer beam 2, the transfer beam 2 comprises a beam body 21, a connecting pipe 22 and a support plate 23, the two ends of the connecting pipe 22 are respectively connected with the beam body 21, the connecting pipe 22 is located at the end of the beam body 21, the connecting pipe 22 is detachably connected with the support frame 35, the support plate 23 is arranged on the beam body 21, the support plate 23 is arranged obliquely and is in contact with the aerial guided bomb, and the support plate 23 is used for supporting the aerial guided bomb.
[0053] As Figures 1 to 10As shown, preferably, the connecting rod structure 34 comprises a first rod body 341, a second rod body 342, a third rod body 343 and a fourth rod body 344; the middle part of the first rod body 341 is fixedly connected with the end of the first column 31 away from the second column 32, and the other end is fixedly connected with the third column 33; optionally, the first column 31 and the third column 33 are of the same height, so that the part of the first rod body 341 close to the third column 33 is horizontal; the middle part of the second rod body 342 is rotatably connected with the first column 31, and the two ends are rotatably connected with the third rod body 343 respectively; the second rod body 342 is located between the transfer beam 2 and the first rod body 341; optionally, the first rod body 341 and the second rod body 342 are of the same length; one end of the fourth rod body 244 is rotatably connected with the end of the third rod body 343 away from the second rod body 342, and the other end is rotatably connected with the first rod body 341; the third rod body 343 is horizontally arranged, and the support frame 35 is arranged on the third rod body 343; the support frame 35 moves with the third rod body 343, that is, the transfer beam 2 moves with the third rod body 343; the connecting rod structure 34 is divided into a fixed state and a movable state; in the fixed state, the positions of the second rod body 342, the third rod body 343 and the fourth rod body 344 are fixed and cannot move, and in the movable state, the positions of the second rod body 342, the third rod body 343 and the fourth rod body 344 change and rotate and move; when the connecting rod structure 34 is in the fixed state, the second rod body 342 is inclined, so that the third rod body 343 is high and low in the vertical direction, and the support frame 35 and the transfer beam 2 on the connecting rod structure 34 are also high and low in the vertical direction, forming two layers of storage and transportation space; when the connecting rod structure 34 is in the movable state, the second rod body 342 can be rotated, the second rod body 342 drives the third rod body 343 and the fourth rod body 344 to move, changes the positions of the third rod body 343 and the fourth rod body 344, and the support frame 35 and the transfer beam 2 also move with the third rod body 343 to change the positions.
[0054] Working mode:
[0055] When the aerial guided bomb is loaded, the transfer beam 2 is connected with the support frame 35, the connecting pipe 22 is connected with the support frame 35, the connecting rod structure 34 is adjusted from the fixed state to the movable state, at this time, the second rod body 342, the third rod body 343 and the fourth rod body 344 are movable, the second rod body 342 is rotated, so that the second rod body 342 changes from the original inclined direction to the nearly horizontal direction, the third rod body 343 and the fourth rod body 344 move with the second rod body 342, wherein the third rod body 343 moves in the opposite direction, changes from the original one high and one low state to one left and one right, nearly horizontal, the transfer beam 2 also changes to one left and one right position, the position space is large, which is convenient for placing the aerial guided bomb, the position of the second rod body 342 is fixed, then the aerial guided bomb is placed on the transfer beam 2, the aerial guided bomb is in contact with the supporting plate 23, the supporting plate 23 supports the aerial guided bomb, after the aerial guided bomb is placed, the second rod body 342 is rotated to reset, the second rod body 342 changes to be inclined, the third rod body 343 also changes to be one high and one low state, the transfer beam 2 also changes to be one high and one low, forming a double-layer storage area, realizing the multi-layer stacking of the aerial guided bomb, fixing the position of the second rod body 342, limiting the movement of the third rod body 343, the fourth rod body 344 and the transfer beam 2, preventing the connecting rod mechanism 24 from moving during storage or transportation, and avoiding the deviation of the transfer beam 2; when the aerial guided bomb is transported to the corresponding place, the aerial guided bomb needs to be unloaded, the second rod body 342 is rotated, so that the transfer beam 2 changes to one left and one right position, nearly horizontal, which is convenient for the top-hanging vehicle to unload the aerial guided bomb, then the connecting pipe 22 is detached from the support frame 35, so that the connecting pipe 22 and the support frame 35 can be separated, then the top-hanging vehicle is in contact with the transfer beam 2 on the support frame 35, lifts up the two transfer beams 2, and carries away the transfer beam 2 and the aerial guided bomb together, realizes seamless docking, shortens the transfer link, effectively improves the transfer speed, and enhances the combat.
[0056] As shown in Figure 6 , Figure 7 , Figure 9 and Figure 10 , preferably, the support 3 further comprises a fixed seat 39; the fixed seat 39 is arranged at the middle of the second column body 32 close to the support frame 35; the fixed seat 39 is detachably connected with the support frame 35; when the support frame 35 is connected with the fixed seat 39, the transfer beam 2 forms two layers; the fixed seat 39 is detachably connected with the support frame 35 close to the second column body 32; the fixed seat 39 and the support frame 35 can be detachably connected through bolts and nuts; the fixed state of the connecting rod structure 34 can be realized through the connection of the fixed seat 39 and the support frame 35; when the fixed seat 39 is connected with the support frame 35, the fixed seat 39 limits the movement of the support frame 35, fixes the support frame 35, and further prevents the movement of the third rod body 343, the fourth rod body 344 and the second rod body 342, realizes the fixed state of the connecting rod structure 34, the structure is simple, the structure as a whole is coherent, and the design is reasonable.
[0057] As Figures 2 to 6 shown, preferably, the container body 1 also includes a fixing member 15; one end of the fixing member 15 is movably connected to the inner bottom surface of the box body, and the other end is detachably connected to the transfer beam near the inner bottom surface of the box body; the fixing member 15 includes a bolt and a nut, one end of the bolt is movably arranged on the inner bottom surface of the box body, and the other end is threadedly connected with the nut; the side surface of the beam body 21 is provided with a plate body connected with the fixing member, and a slot is formed on the plate body corresponding to the bolt; when the fixing member 15 is connected with the plate body, the bolt is rotated, and one end of the bolt enters the slot of the plate body, and then the nut is threadedly connected with the bolt, the nut is close to the plate body and in contact with the plate body, the slot is pressed tightly, the beam body 21 is stabilized, and the stability is enhanced.
[0058] As Figures 2 to 6 shown, preferably, the transfer beam 2 also includes a support rod 24; the connection between the transfer beams 2 can be strengthened through the support rod 24; the two ends of the support rod 24 are movably connected with the beam bodies 21 on the adjacent support frames 35, i.e. the two ends of the support rod 24 are movably connected with the beam bodies 21 on the upper and lower layers; when the support rod 24 is connected with the beam body 21, the support rod 24 is vertically distributed, i.e. when the connecting rod structure 34 is in a fixed state, the two ends of the support rod 24 are connected with the beam bodies 21 on the upper and lower layers, and the beam body 21 of the same transfer beam 2 is provided with the support rod 24, the support rod 24 strengthens the connection between the beam bodies 21 on the upper and lower layers, and further strengthens the fixed state of the connecting rod structure 34, thereby improving the stability of the connecting rod structure 34 and the beam body 21.
[0059] Example two:
[0060] As Figures 7 to 10 shown, compared with example one, the difference lies in that the first rod body 341 is rotatably connected with the fourth rod body 344 at the end away from the third column body 33; the connecting rod structure 34 further includes a base 345; the first rod body 341 is rotatably connected with the fourth rod body 344 at the end away from the third column body 33 through the base 345; the base 345 is fixedly arranged on the end of the first rod body 341 away from the third column body 33; the base 345 is provided with a bearing and a rotating shaft, and the end of the fourth rod body 344 away from the third rod body 343 is rotatably connected with the bearing and the rotating shaft on the base 345, and the overall structure is simple.
[0061] As Figures 3 to 10As shown, preferably, the support 3 further comprises a fifth rod 36, a winch 37 and a steel cable (not shown); one end of the fifth rod 36 is vertically connected to the end of the second column 32 away from the third column 33; the fifth rod 36 is located on the same side of the second column 32 as the first column 31; the winch 37 is arranged at the end of the fifth rod 36 away from the second column 32; the winch 37 is a self-locking winch with a self-locking structure; the middle part of the steel cable is wound around the winch 37, and the two ends of the steel cable are respectively connected to the two ends of the second rod 342; optionally, the fifth rod 36 is lower than the first column 31 and the third column 33; the two ends of the steel cable are always connected to the second rod 342, and the second rod 342 is driven to rotate by the steel cable.
[0062] Working mode:
[0063] When the connecting rod structure 34 is in a fixed state, the bottom end of the second rod 342 is close to the winch 37, and the top end of the second rod 342 is away from the winch 37, at this time the length of the steel cable released by the winch 37 and the bottom end of the second rod 342 is the shortest, and the length of the steel cable released by the winch 37 and the top end of the second rod 342 is the longest, when the connecting rod structure 34 is in a movable state, the winch 37 is rotated, one end of the steel cable on the winch 37 is released, and the other end is retracted, that is, the steel cable of the winch 37 and the top end of the second rod 342 begins to retract, pulling the top end of the second rod 342 to move towards the winch 37, the steel cable of the winch 37 and the bottom end of the second rod 342 is released, and the bottom end of the second rod 342 is away from the winch 37, after the second rod 342 is rotated to a certain angle, the position of the transfer beam 2 is left and right, the winch 37 is locked, the position of the second rod 342 and the transfer beam 2 is fixed, in order to place or place the aerial guided bomb, when the connecting rod structure 34 is restored to the fixed state, the winch 37 is rotated, one end of the steel cable on the winch 37 is released, and the other end is retracted, that is, the steel cable of the winch 37 and the bottom end of the second rod 342 is retracted, pulling the bottom end of the second rod 342 to move towards the winch 37, the top end of the second rod 342 is away from the winch 37, so that the second rod 342 returns to the original inclination angle, realizing the rotation of the second rod 342, the overall structure is simple, and the operation is convenient, which can be realized by manually pulling the winch 37.
[0064] As Figure 7 and Figure 10 shown, preferably, the connecting rod structure 34 further comprises a pulley 346; the pulley 346 is arranged at the connection between the first rod 341 away from the third column 33 and the fourth rod 344, that is, the pulley 346 is rotatably arranged on the base 345, and the pulley 346 is located outside the fourth rod 344; the steel cable is tangent to the pulley 346, that is, the part of the steel cable connected to the top end of the second rod 342 is tangent to the pulley 346, so as to facilitate the stretching and retracting of the steel cable and reduce the wear of the steel cable.
[0065] Example three:
[0066] AsFigures 6 to 10 As shown, compared with example one, the difference lies in that the support 3 further comprises a connecting block 38; the support frame 35 and the transfer beam 2 are detachably connected through the connecting block 38; one end of the connecting block 38 is hingedly connected to the end of the support frame 35 close to the beam body 21, and the other end is detachably connected to the support frame 35; the connecting block 38 and the support frame 35 can be connected through a latch to realize quick detachable connection; when the transfer beam 2 is connected to the support frame 35, the connecting pipe 22 is placed in the area of the support frame 35 provided with the connecting block 38, and then the connecting block 38 is rotated to connect the connecting block 38 and the support frame 35; the connecting block 38 presses the connecting pipe 22 to limit the position of the connecting pipe 22, fixes the connecting pipe 22 on the support frame 35, and realizes the connection of the support frame 35 and the transfer beam 2.
[0067] As shown in Figure 7 , Figure 9 and Figure 10 , preferably, the connecting block 38 further comprises a pressing rod 381; a threaded hole is formed in the middle of the connecting block 38; the threaded hole faces the connecting pipe 22; the pressing rod 381 is threadedly connected to the threaded hole; when the support frame 35 is connected to the connecting pipe 22, the pressing rod 381 is rotated to press the connecting pipe 22 and limit the position of the connecting pipe 22 to prevent it from moving or shaking, thereby increasing the stability of the beam body 21.
[0068] Example four:
[0069] As shown in Figures 1 to 3 , Figures 11 to 14 , compared with example one, the difference lies in that a structure form of the box body is given; the box body comprises a rectangular bottom plate 12, a vertical column 13 and a top plate 14; one end of the vertical column 13 is vertically connected to the top surface of the bottom plate 12; the top plate 14 is connected to the end of the vertical column 13 away from the bottom plate 12, forming four openings to facilitate the extension of the load-bearing components of the top-hanging vehicle into the box body, connect with the transfer beam 2 and transfer it away; the overall structure is simple, and is adapted to the transfer beam 2 and the top-hanging vehicle; the sealing door 11 is movably arranged on the opening to control the opening and closing of the opening.
[0070] As shown in Figures 1 to 3 , Figures 11 to 14As shown in the drawings, preferably, the two ends of the chassis 12 in the length direction are first openings, and the two ends of the chassis 12 in the width direction are second openings; the sealing door 11 comprises a first door frame 111 and a second door frame 112; the first door frame 111 is arranged on the first opening; the second door frame 112 is arranged on the second opening; the second door frame 112 comprises at least two door frames, and the adjacent door frames are hinged to form a folding door frame, so that when the second door frame 112 is opened, the second door frame 112 is folded to reduce the length of the second door frame 112 when it is folded; two second door frames 112 are arranged on a second opening, i.e. the two ends of the second opening are respectively provided with a second door frame 112; the first door frame 111 comprises a door frame, and a first door frame 111 is arranged on a first opening, i.e. the two ends of the first opening are respectively provided with a first door frame 111.
[0071] As shown in the drawings, Figure 14 As shown in the drawings, preferably, the column 13 further comprises a drain pipe 131; the drain pipe 131 is arranged in the column 13; the column 13 can be a hollow structure to facilitate the installation of the drain pipe 131; one end of the drain pipe 131 is in communication with the top surface of the top plate 14, and the other end is in communication with the bottom surface of the chassis 12; the rainwater on the top plate 14 enters the top end port of the drain pipe 131, and then flows out from the bottom of the chassis 12 along the drain pipe 131, so that the rainwater on the top plate 14 is discharged, ensuring that the device can work normally in rainy weather, and preventing the rainwater on the top plate 14 from extending into the sealing door 4, thereby avoiding the aviation guided ammunition from being damp.
[0072] As shown in the drawings, Figure 12 and Figure 13 As shown in the drawings, preferably, the top plate 14 further comprises a water guide groove 141; the water guide groove 141 is formed on the edge of the top surface of the top plate 14, and the bottom surface of the water guide groove 141 near the four corners of the top plate 14 is the lowest point, so as to facilitate the water on the water guide groove 141 to flow towards the drain pipe 131; the water guide groove 141 is in communication with the end of the drain pipe 131 away from the chassis 12; the water on the water guide groove 141 flows to the four corners of the top plate 14, and then enters the port of the drain pipe 131, and is discharged from the drain pipe 131.
[0073] As shown in the drawings, Figures 12 to 14 As shown in the drawings, preferably, the top plate 14 further comprises a first corner piece 142; the first corner piece 142 is arranged at the four corners of the top plate 14; the inside of the first corner piece 142 is a drain groove; the drain groove is in communication with the water guide groove 141; the bottom surface of the drain groove is lower than the bottom surface of the water guide groove 141, so that the water on the water guide groove 141 flows to the first corner piece 142; the drain pipe 131 is in communication with the water guide groove 141 through the drain groove; the port of the end of the drain pipe 131 away from the chassis 12 extends into the first corner piece 142 and is in communication with the drain groove; the side surface of the first corner piece 142 is provided with a slot, so that when the water on the water guide groove 141 flows into the first corner piece 142, part of the water is discharged from the slot of the first corner piece 142, and the other part is discharged through the drain pipe 131, thereby improving the speed and efficiency of water drainage.
[0074] Example Five:
[0075] As Figure 12 and Figure 14 shown, compared with Example Four, the difference is that a structural form of the chassis 12 is given; the chassis 12 comprises a bottom plate 121, a side plate 122 and a bottom beam 123; the bottom plate 121 is a cuboid structure; the two ends of the bottom plate 121 in the width direction are connected with the plate surface of the side plate 122; the two ends of the bottom plate 121 in the length direction are connected with the top surface of the bottom beam 123; the side plate 122 and the bottom beam 123 support the bottom plate 121, so that a cavity is left below the bottom plate 121, so as to avoid rainwater entering the sealing door 4 when the drain pipe 131 discharges water, and also to avoid rainwater entering the sealing door 4 when the water level is too high.
[0076] As Figure 12 and Figure 14 shown, preferably, the chassis 12 further comprises a second corner piece 14; the second corner piece 14 is located at the four corners of the bottom plate 121 and is connected with the end of the side plate 122 and the bottom beam 123 respectively; the inside of the second corner piece 14 is a drain groove; the end of the drain pipe 131 away from the top plate 14 is in communication with the drain groove; similarly, the side surface of the second corner piece 14 is provided with a slot, rainwater flows out from the end of the drain pipe 131 away from the top plate 14, enters the second corner piece 14, and finally is discharged from the slot on the second corner piece 14, the overall structure is simple and the design is reasonable.
[0077] As Figure 12 and Figure 14 shown, preferably, the chassis 12 further comprises a slot 125; at least two slots 125 are provided on the side plate 122; the length direction of the slot 125 is consistent with the width direction of the bottom plate 121; the slots 125 are distributed in parallel along the length direction of the side plate 122, and the interval of the slots 125 is determined according to the forklift, so as to facilitate the forklift to carry, insert the forklift into the slot 125, lift the overall chassis 12 and transfer.
[0078] The above is only a preferred embodiment of the present application, and is not intended to limit the present application, any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An aerial munitions storage and transport container, characterized in that, The container body (1) comprises a box body and a sealing door (11); the side of the box body is an open structure; the sealing door (11) is movably arranged on the open structure of the box body; The transfer beam (2); The support (3) is arranged on the inner bottom surface of the box body; the two ends of the transfer beam (2) are respectively detachably connected with the support (3); the support (3) supports the transfer beam (2); the length direction of the transfer beam (2) is consistent with the length direction of the box body; the support (3) is located at the two ends of the box body; The support (3) comprises a first column (31), a second column (32), a third column (33), a connecting rod structure (34) and a support frame (35); one end of the first column (31) is vertically connected with the middle part of the second column (32); one end of the third column (33) is vertically connected with one end of the second column (32); the first column (31) and the third column (33) are located on the same side of the second column (32); the connecting rod structure (34) is arranged on the end of the first column (31) and the third column (33) away from the second column (32); the support frame (35) is arranged on the connecting rod structure (34); the support frame (35) is detachably connected with the transfer beam (2); The connecting rod structure (34) comprises a first rod (341), a second rod (342), a third rod (343) and a fourth rod (344); the middle part of the first rod (341) is fixedly connected with the first column (31), and the end part is fixedly connected with the third column (33); the middle part of the second rod (342) is rotatably connected with the first column (31), and the two ends are rotatably connected with the third rod (343); one end of the fourth rod (344) is rotatably connected with the end of the third rod (343) away from the second rod (342), and the other end is rotatably connected with the first rod (341); the support frame (35) is arranged on the third rod (343); the support frame (35) moves with the third rod (343); The connecting rod structure (34) further comprises a base (345); the end of the first rod (341) away from the third column (33) is rotatably connected with the fourth rod (344) through the base (345); the base (345) is fixedly arranged on the end of the first rod (341) away from the third column (33); the end of the fourth rod (344) away from the third rod (343) is rotatably connected with the base (345); The support (3) further comprises a fifth rod body (36), a winch (37) and a steel rope; one end of the fifth rod body (36) is vertically connected with one end of the second column body (32) away from the third column body (33); the fifth rod body (36) is located on the same side of the second column body (32) as the first column body (31); the winch (37) is arranged at one end of the fifth rod body (36) away from the second column body (32); the middle part of the steel rope is wound on the winch (37), and both ends of the steel rope are connected with both ends of the second rod body (342) respectively. The connecting rod structure (34) further comprises a pulley (346); the pulley (346) is arranged at the connection between one end of the first rod body (341) away from the third column body (33) and the fourth rod body (344); the steel rope is tangent to the pulley (346).
2. The aerial munitions storage and transport container according to claim 1, characterized in that, The transfer beam (2) comprises a beam body (21), a connecting pipe (22) and a support plate (23); both ends of the connecting pipe (22) are connected with the beam body (21) respectively; the connecting pipe (22) is located at the end of the beam body (21); the support plate (23) is arranged on the beam body (21); the support plate (23) is arranged obliquely.
3. The aerial munitions storage and transport container according to claim 2, characterized in that, The support (3) further comprises a connecting block (38); the support frame (35) and the transfer beam (2) are detachably connected through the connecting block (38); one end of the connecting block (38) is hingedly connected with one end of the support frame (35) close to the beam body (21), and the other end of the connecting block (38) is detachably connected with the support frame (35).
4. The aerial munitions storage and transport container of claim 1, wherein, The support (3) further comprises a fixing seat (39); the fixing seat (39) is arranged at the middle part of the second column body (32) close to the support frame (35); the fixing seat (39) is detachably connected with the support frame (35).
5. An aerial munitions storage and transportation container according to any one of claims 1-4, characterized in that, The box body comprises a bottom disc (12) of a rectangular structure, a stand column (13) and a top plate (14); one end of the stand column (13) is vertically connected with the top surface of the bottom disc (12); the top plate (14) is connected with one end of the stand column (13) away from the bottom disc (12), forming four openings; the sealing door (11) is movably arranged on the openings to control the opening and closing of the openings.
Citation Information
Patent Citations
Missile box convenient to transport
CN211317088U
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