A type of quick-moving barracks for field operations
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-10
- Publication Date
- 2026-08-14
AI Technical Summary
[0003]然而,现有的野外作业营房在吊运和搬运过程中,常因内部存放工具设备导致重心偏移,进而出现吊运侧倾的情况,不仅增加了吊运风险,还可能损坏营房结构和内部设备;而且,在拖拽移动时,地面颠簸产生的冲击力容易对营房造成损害
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Figure CN224634370U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of field operation equipment technology, specifically a quick-moving barracks for field operations. Background Technology
[0002] In field operations, quick-moving barracks are widely used because of their ability to be moved quickly. Existing quick-moving barracks are usually transported by hoisting or dragging using lifting bars and towing bars.
[0003] However, existing field work barracks often experience tilting during hoisting and transport due to the shift in the center of gravity caused by the tools and equipment stored inside. This not only increases the risk of hoisting but may also damage the barracks structure and internal equipment. Furthermore, the impact force generated by ground bumps during dragging can easily damage the barracks. Utility Model Content
[0004] The purpose of this invention is to provide a quick-moving barracks for field operations to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A quick-moving barracks for field operations includes a base and a barracks structure mounted on the base. The base has towing bar assemblies on its left and right sides, and two sets of lifting bar assemblies on its front and rear sides. Each set of lifting bar assemblies consists of two lifting bars on each side. Each lifting bar is fixedly connected to an adjustment mechanism, which is mounted on the base. The barracks structure includes columns at the four corners of the base, wall panels between the columns, and a roof panel on the barracks. Two anti-hook assemblies are fixedly connected to the front and rear sides of the roof panel.
[0007] As a further embodiment of this utility model: the adjustment mechanism includes a sliding plate, a toothed plate, a gear, a connecting shaft, and a knob. The sliding plate is disposed in a first mounting groove, which is opened in the base. The sliding plate is slidably connected to the first mounting groove. A through groove for accommodating the hanging rod is opened along the first mounting groove towards the front and rear side walls of the base. The hanging rod is fixedly connected to the side of the sliding plate. A toothed plate is fixedly connected to the bottom surface of the sliding plate. A gear is meshed with the bottom of the toothed plate. The gear is disposed in a second mounting groove, which is opened below the first mounting groove. The gear is rotatably connected to the second mounting groove through the connecting shaft. The other end of the connecting shaft passes through the base and is fixedly connected to the knob.
[0008] As a further embodiment of this utility model: the adjustment mechanism is provided with a positioning component, which includes a positioning pin, a socket and a positioning hole. The knob is provided with sockets at equal intervals along the circumference. The positioning pin is inserted into the socket. The base opposite to the socket is provided with a positioning hole. The base outside the positioning hole is provided with a scale line.
[0009] As a further embodiment of this utility model: the tow bar assembly includes a tow bar body and a rubber sleeve. The tow bar body is fixedly connected to the left and right sides of the base. The rubber sleeve is fixedly connected to the outer surface of the tow bar body. Annular protective grooves are equidistantly formed on the surface of the rubber sleeve along the axial direction.
[0010] As a further embodiment of this utility model: the lower end of the column is fixedly connected to a connecting plate for connecting with the base, and the upper end is fixedly connected to a connecting column for connecting with the top plate. The connecting column has a first mounting hole, and the two adjacent side walls of the column have slots for connecting with the wall panel along the height direction.
[0011] As a further embodiment of this utility model: the wall panel is connected to the slot by insertion. The wall panel is composed of a left wall panel, a right wall panel, a front wall panel and a rear wall panel. Windows are provided on the left wall panel and the right wall panel, and a door is provided on the front wall panel.
[0012] As a further embodiment of this utility model: mounting grooves are provided at the four corners of the bottom surface of the top plate, and the mounting grooves are plugged into the connecting columns. Second mounting holes are provided at the four corners of the top plate in the horizontal direction. The mounting holes pass through the mounting grooves and are opposite to the positions of the first mounting holes. The top plate is connected to the columns by bolts installed in the second mounting holes and the first mounting holes.
[0013] As a further embodiment of this utility model: the anti-stranglement hook assembly includes a hook body and an elastic clip. The hook body is semi-circular, and an elastic clip is provided on the inner side of the hook body. One end of the elastic clip is fixedly connected to the hook body, and the other end is a free end.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: A quick-moving barracks for field operations solves the problem of tilting during lifting caused by the shift in the center of gravity due to the storage of tools and equipment inside the barracks by setting an adjustable lifting bar position adjustment mechanism on the base. It achieves the effect of balancing the lateral torque by adjusting the tension point of the wire rope, reducing the lifting risk, and protecting the barracks structure and internal equipment. By setting a rubber sleeve with an annular protective groove on the towing bar assembly, it solves the problem of damage to the barracks caused by the impact of ground bumps during towing and the problem of easy slippage of the wire rope. It achieves effective impact buffering, increases the friction between the wire rope and the towing bar assembly, and ensures the safe towing effect of the barracks. Attached Figure Description
[0015] Figure 1 This is a structural diagram of a quick-moving barracks for field operations in the hoisting state.
[0016] Figure 2 This is an exploded view of a quick-moving barracks for field operations.
[0017] Figure 3 This is a cross-sectional view of the base of a quick-moving barracks for field operations.
[0018] Figure 4 This is an enlarged view of point A in a quick-moving barracks used for field operations.
[0019] Figure 5 This is a cross-sectional view of the base of a quick-moving barracks for field operations.
[0020] Figure 6 This is an enlarged view of point B in a quick-moving barracks used for field operations.
[0021] Figure 7 This is a schematic diagram of the roof structure of a quick-moving barracks for field operations.
[0022] Figure 8 This is an enlarged view of point C in a quick-moving barracks used for field operations.
[0023] Figure 9 This is an enlarged view of point D in a quick-moving barracks used for field operations.
[0024] In the diagram: Base 1, First mounting slot 11, Through slot 12, Second mounting slot 13, Scale line 14, Barracks structure 2, Towing bar assembly 3, Towing bar body 31, Rubber sleeve 32, Anti-slip groove 33, Hanging bar assembly 4, Hanging bar 41, Adjustment mechanism 5, Sliding plate 51, Tooth plate 52, Gear 53, Connecting shaft 54, Knob 55, Positioning assembly 6, Positioning pin 61, Insertion hole 62, Positioning hole 63, Column 7, Connecting plate 71, Connecting column 72, First mounting hole 73, Slot 74, Wall panel 8, Left wall panel 81, Right wall panel 82, Front wall panel 83, Rear wall panel 84, Window 85, Door 86, Top panel 9, Insertion slot 91, Second mounting hole 92, Anti-hooking hook assembly 10, Hook body 101, Elastic clip 102. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figures 1-9In this embodiment of the utility model, a quick-moving barracks for field operations includes a base 1 and a barracks structure 2 disposed above the base 1. The base 1 has drag bar assemblies 3 on its left and right sides, and two sets of hanging bar assemblies 4 on its front and rear sides. Each set of hanging bar assemblies 4 consists of two hanging bars 41 disposed on both sides. Each hanging bar 41 is fixedly connected to an adjustment mechanism 5, which is disposed on the base 1. The barracks structure 2 includes columns 7 disposed at the four corners of the base 1, wall panels 8 disposed between the columns, and a roof panel 9 disposed on the barracks. Two anti-hook assemblies 10 are fixedly connected to the front and rear sides of the roof panel 9, respectively.
[0027] During field operations, different tools and equipment may be temporarily stored inside the barracks, which may cause the center of gravity to shift. This application can adjust the position of the boom 41 by setting the adjustment mechanism 5, thereby moving the tension point of the wire rope laterally, balancing the lateral torque, and reducing the situation of tilting during hoisting.
[0028] Specifically, such as Figures 1-6 As shown, the adjustment mechanism 5 includes a sliding plate 51, a toothed plate 52, a gear 53, a connecting shaft 54, and a knob 55. The sliding plate 51 is disposed in a first mounting groove 11, which is located within the base 1. The sliding plate 51 is slidably connected to the first mounting groove 11. A through groove 12 for accommodating a hanging rod 41 is provided along the first mounting groove 11 towards the front and rear side walls of the base 1. The hanging rod 41 is fixedly connected to the side of the sliding plate 51. A toothed plate 52 is fixedly connected to the bottom surface of the sliding plate 51. A gear 53 is meshed with the lower part of the toothed plate 52. The gear 53 is disposed in a second mounting groove 13, which is located below the first mounting groove 11. The gear 53 is rotatably connected to the second mounting groove 13 via the connecting shaft 54. The other end of the connecting shaft 54 passes through the base 1 and is fixedly connected to the knob 55. During operation, rotating the knob 55 drives the gear 53 to rotate, which in turn moves the toothed plate 52, thereby moving the sliding plate 51 and the hanging rod 41 to adjust the position of the hanging rod 41.
[0029] Specifically, to ensure the stability of the boom 41 after adjustment, a positioning component 6 is provided on the adjustment mechanism 5. The positioning component 6 includes a positioning pin 61, a socket 62, and a positioning hole 63. The knob 55 has sockets 62 evenly spaced along its circumference, and the positioning pin 61 is inserted into the socket 62. The base 1 opposite to the socket 62 has a positioning hole 63. After the boom 41 is adjusted to the correct position, the positioning pin 61 is inserted into the corresponding positioning hole 63 to prevent accidental movement.
[0030] Specifically, in order to adjust the position of the hanging bar 41 more quickly and clearly, a scale line 14 is provided on the base 1 outside the positioning hole 63. During adjustment, the position can be adjusted quickly and accurately according to the indication of the scale line.
[0031] Specifically, the tow bar assembly 3 includes a tow bar body 31 and a rubber sleeve 32. The tow bar body 31 is fixedly connected to the left and right sides of the base 1, and the rubber sleeve 32 is fixedly connected to the outer surface of the tow bar body 31. Annular protective grooves 33 are equidistantly formed along the axial direction on the surface of the rubber sleeve 32. During towing, the steel wire rope is bound to the tow bar assembly 3. The impact force generated by ground bumps is first absorbed and buffered by the deformation of the elastic rubber sleeve 32, reducing the impact on the barracks. The anti-slip grooves 33 increase the friction between the steel wire rope and the tow bar assembly 3, preventing the steel wire rope from slipping during towing.
[0032] Specifically, the lower end of the column 7 is fixedly connected to a connecting plate 71 for connecting to the base 1, and the upper end is fixedly connected to a connecting column 72 for connecting to the top plate 9. The connecting column 72 is provided with a first mounting hole 73, and the two adjacent side walls of the column 7 are provided with slots 74 for connecting to the wall panel 8 along the height direction.
[0033] Specifically, the wall panel 8 is plugged into the slot 74. The wall panel 8 is composed of a left wall panel 81, a right wall panel 82, a front wall panel 83 and a rear wall panel 84. Windows 85 are provided on the left wall panel 81 and the right wall panel 82, and a door 86 is provided on the front wall panel 83.
[0034] Specifically, such as Figure 7 , Figure 8 As shown, the top plate 9 has four corners with insertion slots 91, which are inserted into the connecting column 72. The top plate 9 also has four corners with second mounting holes 92 in the horizontal direction. The second mounting holes 92 pass through the insertion slots 91 and are opposite to the first mounting holes 73. The top plate 9 is connected to the column 7 by bolts installed in the second mounting holes 92 and the first mounting holes 73.
[0035] Specifically, such as Figure 9 As shown, the anti-hook assembly 10 includes a hook body 101 and an elastic clamping piece 102. The hook body 101 is semi-circular, and the elastic clamping piece 102 is provided on the inner side of the hook body 101. One end of the elastic clamping piece 102 is fixedly connected to the hook body 101, and the other end is a free end. When the wire rope enters the hook body 101, the elastic clamping piece 102 is squeezed open, and then the elastic clamping piece 102 automatically springs back and clamps tightly, which can absorb the vibration generated during the hoisting process in the barracks.
[0036] The working principle of this utility model is as follows: During field operations, when it is necessary to hoist a barracks, different tools and equipment may be temporarily stored inside, causing the barracks' center of gravity to shift. Therefore, the position of two or four opposing hoisting bars 41 can be adjusted according to the shift in the center of gravity through the adjusting mechanism 5. The operator rotates the knob 55. The connecting shaft 54 is rotated, which in turn causes the gear 53 to rotate in the second mounting groove 13. The toothed plate 52, which meshes with the gear 53, moves under the action of the sliding plate 51, thereby adjusting the position of the lifting bar 41. Referring to the scale line 14 on the outer side of the positioning hole 63 on the base 1, after adjusting the lifting bar 41 to the appropriate position, the positioning pin 61 is inserted into the socket 62 of the knob 55 and corresponds to the positioning hole 63 of the base 1 to fix the lifting bar 41. Then, the wire rope is connected to the four lifting bars 41, and the other end of the wire rope passes through the anti-hook assembly 10 on the opposite top plate 9, so that the lifting work can be carried out. During the lifting process, the tension point of the wire rope moves laterally with the adjusted lifting bar 41 to balance the lateral torque and reduce the tilting of the barracks during lifting. When the barracks need to be moved, the steel wire rope is tied to the towing bar assembly 3 on the base 1. The rubber sleeve 32 outside the towing bar body 31 absorbs the impact force generated by ground bumps through deformation. The annular protective groove 33 increases the friction between the steel wire rope and the towing bar assembly 3, preventing the steel wire rope from slipping and safely towing the barracks to the designated location.
[0037] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A quick-moving barracks for field operations, comprising a base (1) and a barracks structure (2) disposed above the base (1), characterized in that, The base (1) is provided with drag bar assemblies (3) on the left and right sides, and two sets of hanging bar assemblies (4) are provided on the front and rear sides of the base (1). Each set of hanging bar assemblies (4) consists of two hanging bars (41) on both sides. Each hanging bar (41) is fixedly connected to the adjustment mechanism (5). The adjustment mechanism (5) is set on the base (1). The barracks structure (2) includes columns (7) set at the four corners of the base (1), wall panels (8) set between the columns, and a roof panel (9) set on the barracks. Two anti-hook assemblies (10) are fixedly connected to the front and rear sides of the roof panel (9).
2. The quick-moving barracks for field operations according to claim 1, characterized in that, The adjusting mechanism (5) includes a sliding plate (51), a toothed plate (52), a gear (53), a connecting shaft (54), and a knob (55). The sliding plate (51) is disposed in the first mounting groove (11), which is opened in the base (1). The sliding plate (51) is slidably connected to the first mounting groove (11). A through groove (12) for accommodating the lifting rod (41) is opened along the first mounting groove (11) towards the front and rear side walls of the base (1). The lifting rod (41) is fixedly connected. On the side of the sliding plate (51), a toothed plate (52) is fixedly connected to the bottom surface of the sliding plate (51). A gear (53) is meshed below the toothed plate (52). The gear (53) is located in the second mounting groove (13), which is located below the first mounting groove (11). The gear (53) is rotatably connected to the second mounting groove (13) via a connecting shaft (54). The other end of the connecting shaft (54) passes through the base (1) and is fixedly connected to a knob (55).
3. A quick-moving barracks for field operations according to claim 2, characterized in that, The adjustment mechanism (5) is provided with a positioning component (6), which includes a positioning pin (61), a socket (62) and a positioning hole (63). The knob (55) is provided with sockets (62) at equal intervals along the circumference. The positioning pin (61) is inserted into the socket (62). The base (1) opposite to the socket (62) is provided with a positioning hole (63). The base (1) outside the positioning hole (63) is provided with a scale line (14).
4. A quick-moving barracks for field operations according to claim 3, characterized in that, The tow bar assembly (3) includes a tow bar body (31) and a rubber sleeve (32). The tow bar body (31) is fixedly connected to the left and right sides of the base (1). The outer surface of the tow bar body (31) is fixedly connected to the rubber sleeve (32). The surface of the rubber sleeve (32) is provided with annular protective grooves (33) at equal intervals along the axial direction.
5. A quick-moving barracks for field operations according to claim 4, characterized in that, The lower end of the column (7) is fixedly connected to a connecting plate (71) for connecting to the base (1), and the upper end is fixedly connected to a connecting column (72) for connecting to the top plate (9). The connecting column (72) has a first mounting hole (73), and the two adjacent side walls of the column (7) have slots (74) for connecting to the wall panel (8) along the height direction.
6. The quick-removal field operating camp according to claim 5, wherein The wall panel (8) is plugged into the slot (74). The wall panel (8) consists of a left wall panel (81), a right wall panel (82), a front wall panel (83), and a rear wall panel (84). The left wall panel (81) and the right wall panel (82) are provided with windows (85), and the front wall panel (83) is provided with a door (86).
7. The quick-removal field operating camp according to claim 6, wherein The top plate (9) has four corners with insertion slots (91) and is connected to the connecting column (72). The top plate (9) has four corners with second mounting holes (92) in the horizontal direction. The second mounting holes (92) pass through the insertion slots (91) and are opposite to the first mounting holes (73). The top plate (9) is connected to the column (7) by bolts installed in the second mounting holes (92) and the first mounting holes (73).
8. The fast-deployable field barrack of claim 1, wherein The anti-hook assembly (10) includes a hook body (101) and an elastic clip (102). The hook body (101) is semi-circular, and the elastic clip (102) is provided on the inner side of the hook body (101). One end of the elastic clip (102) is fixedly connected to the hook body (101), and the other end is a free end.