Anti-seismic reinforcing device for container house
By using fixed boxes and pole reinforcement mechanisms in container houses, the problem of insufficient seismic performance of traditional container houses is solved, achieving efficient and low-cost seismic reinforcement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA CONSTR EIGHTH ENG BUREAU TECH CONSTR CO LTD
- Filing Date
- 2025-05-21
- Publication Date
- 2026-05-15
AI Technical Summary
Traditional container houses have insufficient seismic resistance, especially in earthquake-prone areas. Existing reinforcement methods are either too space-consuming or too costly, making them difficult to promote on a large scale.
The system employs a front and rear fixed box and plug reinforcement mechanism. The dovetail groove and plug retainer resist the lateral shear force of the earthquake. Combined with the concrete base, it forms a heavy, low-center-of-gravity anti-overturning base, thus achieving seismic reinforcement.
It effectively improves the earthquake resistance of container houses, occupies little space, has low cost, and is suitable for large-scale promotion and application.
Smart Images

Figure CN224244485U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of seismic reinforcement technology for buildings, and particularly to the field of seismic reinforcement technology for container houses, specifically referring to a seismic reinforcement device for container houses. Background Technology
[0002] Container houses are widely used in temporary housing, construction site barracks, and emergency disaster relief due to their modularity, mobility, and economy. However, traditional container houses have significant deficiencies in seismic performance, especially in earthquake-prone areas, where their structural safety and stability face severe challenges.
[0003] Existing container houses are basically improved by welding steel diagonal bracing to the outside of the container to enhance their seismic resistance. However, although this can improve the resistance to lateral displacement, the steel diagonal bracing needs to be diagonally supported between the exterior of the container house and the ground, which occupies a lot of space. If hydraulic dampers or rubber seismic isolation bearings are used to absorb seismic energy, the cost is high and regular maintenance and replacement are required, resulting in high maintenance costs.
[0004] Therefore, it is desirable to provide a seismic reinforcement device for container houses that can reinforce container houses against earthquakes, while occupying little space and having low cost. Utility Model Content
[0005] In order to overcome the shortcomings of the prior art, one objective of this utility model is to provide a container house seismic reinforcement device that can reinforce container houses against seismic forces, and has a small footprint, low cost, and is suitable for large-scale application.
[0006] To achieve the above objectives, this utility model provides a seismic reinforcement device for container houses, comprising a container house body, wherein the container house body is vertically arranged and arranged in the left-right direction. The device is characterized in that it further comprises a front fixing box, a rear fixing box, front concrete, rear concrete, a front reinforcement mechanism, and a rear reinforcement mechanism, wherein:
[0007] Both the front fixed box and the rear fixed box are vertically arranged and both are arranged in the front-to-back direction. Both the top of the front fixed box and the top of the rear fixed box are provided with openings. The front concrete and the rear concrete are respectively filled in the front fixed box and the rear fixed box. The container house body is respectively supported on the top of the front fixed box and the top of the rear fixed box and is respectively set on the front concrete and the rear concrete.
[0008] The front panel of the container house body includes multiple front panel units, which are arranged vertically and along the left-right direction. The multiple front panel units are arranged to abut against each other in sequence from left to right. In two adjacent front panel units, the right end of the left front panel unit is located to the left of the left end of the right front panel unit and abuts against the left end of the right front panel unit. The rear panel of the container house body includes multiple rear panel units, which are arranged vertically and along the left-right direction. The multiple rear panel units are arranged to abut against each other in sequence from left to right. In two adjacent rear panel units, the right end of the left rear panel unit is located to the left of the left end of the right rear panel unit and abuts against the left end of the right rear panel unit.
[0009] The front reinforcement mechanism includes a first front plate and a front insert rod. The right end face of the left front panel unit and the left end face of the right front panel unit are respectively provided with a left front slot and a right front slot. The left front slot is located to the left of the right front slot and communicates with the right front slot. The front insert rod is arranged vertically and along the left-right direction. The left and right parts of the front insert rod are respectively vertically movable and inserted into the left front slot and the right front slot, and respectively limit the left front slot and the right front slot in the left-right direction. The lower end of the front insert rod is vertically inserted into the front concrete. The first front plate is arranged horizontally and along the left-right direction and is respectively located on the right end of the left front panel unit, the top of the front insert rod, and the left end of the right front panel unit.
[0010] The rear reinforcement mechanism includes a first rear plate and a rear insert rod. The right end face of the left rear panel unit and the left end face of the right rear panel unit are respectively provided with a left rear slot and a right rear slot. The left rear slot is located to the left of the right rear slot and communicates with the right rear slot. The rear insert rod is arranged vertically and along the left-right direction. The left and right parts of the rear insert rod are respectively vertically movable and inserted into the left and right rear slots and respectively limit the left and right rear slots in the left-right direction. The lower end of the rear insert rod is vertically inserted into the rear concrete. The first rear plate is arranged horizontally and along the left-right direction and is respectively located on the right end of the left rear panel unit, the top of the rear insert rod, and the left end of the right rear panel unit.
[0011] Preferably, both the left front slot and the right front slot are dovetail grooves, and the cross-section of the left part of the front insert rod and the cross-section of the right part of the front insert rod are both dovetail-shaped.
[0012] Preferably, both the left and right rear slots are dovetail grooves, and the cross-sections of the left and right portions of the rear insert rod are both dovetail-shaped.
[0013] Preferably, the front reinforcement mechanism further includes a left front fixing bolt and a right front fixing bolt. The left and right ends of the first front plate are respectively provided with a left front fixing hole and a right front fixing hole. The top surface of the right end of the left front panel unit and the top surface of the left end of the right front panel unit are respectively provided with a left front screw hole and a right front screw hole. The left front fixing hole and the right front fixing hole are respectively located on the left front screw hole and the right front screw hole. The left front fixing bolt and the right front fixing bolt are both vertically arranged. The upper end of the left front fixing bolt abuts against the left end of the first front plate. The lower end of the left front fixing bolt vertically passes through the left front fixing hole and the left front screw hole and is threaded into the left front screw hole. The upper end of the right front fixing bolt abuts against the right end of the first front plate. The lower end of the right front fixing bolt vertically passes through the right front fixing hole and the right front screw hole and is threaded into the right front screw hole.
[0014] Preferably, the rear reinforcement mechanism further includes a left rear fixing bolt and a right rear fixing bolt. The left and right ends of the first rear plate are respectively provided with a left rear fixing hole and a right rear fixing hole. The top surface of the right end of the left rear panel unit and the top surface of the left end of the right rear panel unit are respectively provided with a left rear screw hole and a right rear screw hole. The left rear fixing hole and the right rear fixing hole are respectively located on the left rear screw hole and the right rear screw hole. The left rear fixing bolt and the right rear fixing bolt are both vertically arranged. The upper end of the left rear fixing bolt abuts against the left end of the first rear plate. The lower end of the left rear fixing bolt vertically passes through the left rear fixing hole and the left rear screw hole and is threaded into the left rear screw hole. The upper end of the right rear fixing bolt abuts against the right end of the first rear plate. The lower end of the right rear fixing bolt vertically passes through the right rear fixing hole and the right rear screw hole and is threaded into the right rear screw hole.
[0015] Preferably, the container house seismic reinforcement device further includes a front auxiliary reinforcement mechanism and a rear auxiliary reinforcement mechanism, wherein:
[0016] The front reinforcement mechanism further includes a second front plate and a front fixing plate. The second front plate is horizontally arranged along the left-right direction and is located in front of and connected to the middle of the first front plate. The front fixing plate is vertically arranged along the left-right direction and is located in front of the right end of the left front panel unit and the left end of the right front panel unit, respectively, and abuts against the right end of the left front panel unit and the left end of the right front panel unit, respectively. The front fixing plate is located below the second front plate and connected to the second front plate.
[0017] The front auxiliary reinforcement mechanism includes a front X-shaped support frame, which is vertically arranged and arranged along the left-right direction. The upper left and lower left ends, as well as the upper right and lower right ends of the front X-shaped support frame, are respectively located in front of the front fixing plate of the left front reinforcement mechanism and the front fixing plate of the right front reinforcement mechanism in two adjacent front reinforcement mechanisms, and are respectively connected to the front fixing plate of the left front reinforcement mechanism and the front fixing plate of the right front reinforcement mechanism.
[0018] The rear reinforcement mechanism further includes a second rear plate and a rear fixing plate. The second rear plate is horizontally arranged along the left-right direction. The second rear plate is located behind the middle of the first rear plate and connected to the middle of the first rear plate. The rear fixing plate is vertically arranged along the left-right direction. The rear fixing plate is located behind the right end of the left rear room panel unit and the left end of the right rear room panel unit, respectively, and abuts against the right end of the left rear room panel unit and the left end of the right rear room panel unit, respectively. The rear fixing plate is located below the second rear plate and connected to the second rear plate.
[0019] The rear auxiliary reinforcement mechanism includes a rear X-shaped support frame, which is vertically arranged and arranged along the left-right direction. The upper left and lower left ends, as well as the upper right and lower right ends of the rear X-shaped support frame, are respectively located after the rear fixing plate of the left rear reinforcement mechanism and the rear fixing plate of the right rear reinforcement mechanism in two adjacent rear reinforcement mechanisms, and are respectively connected to the rear fixing plate of the left rear reinforcement mechanism and the rear fixing plate of the right rear reinforcement mechanism.
[0020] More preferably, the front auxiliary reinforcement mechanism further includes a front upper left fixing bolt and a front lower left fixing bolt. The upper left end and the lower left end of the front X-shaped support frame are respectively provided with a front upper left fixing hole and a front lower left fixing hole along the front-rear direction. The upper and lower ends of the front fixing plate of the left-side front reinforcement mechanism are respectively provided with a front upper left screw hole and a front lower left screw hole along the front-rear direction. The front upper left screw hole and the front lower left screw hole are located after the front upper left fixing hole and the front lower left fixing hole, respectively. The front upper left fixing bolt and the front lower left fixing bolt are both along the front-rear direction. The front end of the upper left fixing bolt is located in front of and abuts against the upper left end of the front X-shaped support frame. The rear end of the upper left fixing bolt passes through the upper left fixing hole and the upper left threaded hole along the front-back direction and is threaded into the upper left threaded hole. The front end of the lower left fixing bolt is located in front of and abuts against the lower left end of the front X-shaped support frame. The rear end of the lower left fixing bolt passes through the lower left fixing hole and the lower left threaded hole along the front-back direction and is threaded into the lower left threaded hole.
[0021] More preferably, the front auxiliary reinforcement mechanism further includes a front upper right fixing bolt and a front lower right fixing bolt. The upper right end and the lower right end of the front X-shaped support frame are respectively provided with a front upper right fixing hole and a front lower right fixing hole along the front-rear direction. The upper and lower ends of the front fixing plate of the right-side front reinforcement mechanism are respectively provided with a front upper right screw hole and a front lower right screw hole along the front-rear direction. The front upper right screw hole and the front lower right screw hole are located after the front upper right fixing hole and the front lower right fixing hole, respectively. The front upper right fixing bolt and the front lower right fixing bolt are both along the front-rear direction. The front end of the upper right fixing bolt is located before and abuts against the upper right end of the front X-shaped support frame. The rear end of the upper right fixing bolt passes through the upper right fixing hole and the upper right screw hole along the front-back direction and is threaded into the upper right screw hole. The front end of the lower right fixing bolt is located before and abuts against the lower right end of the front X-shaped support frame. The rear end of the lower right fixing bolt passes through the lower right fixing hole and the lower right screw hole along the front-back direction and is threaded into the lower right screw hole.
[0022] More preferably, the rear auxiliary reinforcement mechanism further includes a rear upper left fixing bolt and a rear lower left fixing bolt. The upper left end and the lower left end of the rear X-shaped support frame are respectively provided with a rear upper left fixing hole and a rear lower left fixing hole along the front-rear direction. The upper and lower ends of the rear fixing plate of the left-side rear reinforcement mechanism are respectively provided with a rear upper left screw hole and a rear lower left screw hole along the front-rear direction. The rear upper left screw hole and the rear lower left screw hole are respectively located in front of the rear upper left fixing hole and the rear lower left fixing hole. The rear upper left fixing bolt and the rear lower left fixing bolt are both along the front-rear direction. The rear end of the upper left fixing bolt is located behind and abuts against the upper left end of the rear X-shaped support frame. The front end of the upper left fixing bolt passes through the upper left fixing hole and the upper left threaded hole along the front-back direction and is threaded into the upper left threaded hole. The rear end of the lower left fixing bolt is located behind and abuts against the lower left end of the rear X-shaped support frame. The front end of the lower left fixing bolt passes through the lower left fixing hole and the lower left threaded hole along the front-back direction and is threaded into the lower left threaded hole.
[0023] More preferably, the rear auxiliary reinforcement mechanism further includes a rear upper right fixing bolt and a rear lower right fixing bolt. The upper right end and the lower right end of the rear X-shaped support frame are respectively provided with a rear upper right fixing hole and a rear lower right fixing hole along the front-rear direction. The upper and lower ends of the rear fixing plate of the rear reinforcement mechanism on the right side are respectively provided with a rear upper right screw hole and a rear lower right screw hole along the front-rear direction. The rear upper right screw hole and the rear lower right screw hole are respectively located in front of the rear upper right fixing hole and the rear lower right fixing hole. The rear upper right fixing bolt and the rear lower right fixing bolt are both along the front-rear direction. The rear end of the upper right fixing bolt is located behind and abuts against the upper right end of the rear X-shaped support frame. The front end of the upper right fixing bolt passes through the upper right fixing hole and the upper right screw hole along the front-back direction and is threaded into the upper right screw hole. The rear end of the lower right fixing bolt is located behind and abuts against the lower right end of the rear X-shaped support frame. The front end of the lower right fixing bolt passes through the lower right fixing hole and the lower right screw hole along the front-back direction and is threaded into the lower right screw hole.
[0024] The main beneficial effects of this utility model are as follows:
[0025] This utility model's container house seismic reinforcement device works by vertically inserting the left and right parts of a front insert rod into the left front slot at the right end of the left front panel unit and the right front slot at the left end of the right front panel unit, respectively. The first front panel is then connected to the right end of the left front panel unit and the left end of the right front panel unit, respectively. The front insert rod creates a self-locking effect by limiting the left and right front slots in the left and right directions, resisting lateral shear forces during earthquakes. Similarly, the left and right parts of a rear insert rod are vertically inserted into the left rear slot at the right end of the left rear panel unit and the right rear slot at the left end of the right rear panel unit, respectively. The first rear panel is then connected to the left... The right end of the rear room panel unit and the left end of the right rear room panel unit utilize the rear insert rod to limit the left and right rear slots in the left and right directions, creating a self-locking effect to resist the lateral shear force of the earthquake. By supporting the container house body on the top of the front fixed box and the top of the rear fixed box, the lower end of the front insert rod is inserted into the front fixed box, and the lower end of the rear insert rod is inserted into the rear fixed box. Concrete is poured into the front fixed box and the rear fixed box to form the front concrete and the rear concrete respectively, forming a heavy self-weight and low center of gravity anti-overturning base. Therefore, it can strengthen the container house against earthquakes, and it occupies little space and has low cost, making it suitable for large-scale promotion and application.
[0026] These and other objects, features and advantages of this utility model will be fully apparent from the following detailed description and drawings, and can be achieved by the means, devices and combinations thereof specifically pointed out in the description of the utility model. Attached Figure Description
[0027] Figure 1 This is a three-dimensional schematic diagram of a specific embodiment of the container house seismic reinforcement device of this utility model.
[0028] Figure 2 yes Figure 1 An exploded perspective view of the components of the two adjacent front roof panel units and the front reinforcement mechanism in the specific embodiment shown. Figure 1 .
[0029] Figure 3 yes Figure 1 An exploded perspective view of the components of the two adjacent front roof panel units and the front reinforcement mechanism in the specific embodiment shown. Figure 2 .
[0030] Figure 4 yes Figure 1 The diagram shows a front view of the front roof panel unit, the two adjacent front reinforcement mechanisms on the left and right sides, and the front auxiliary reinforcement mechanism in a specific embodiment.
[0031] (Symbol Explanation)
[0032] 1. Container house body; 11. Front side panel; 12. Front panel unit; 13. Left front slot; 14. Right front slot; 15. Left front screw hole; 16. Right front screw hole;
[0033] 2. Front fixed box;
[0034] 3. Front reinforcement mechanism; 31. First front plate; 32. Front insert rod; 33. Left front fixing bolt; 34. Right front fixing bolt; 35. Second front plate; 36. Front fixing plate; 37. Front upper left screw hole; 38. Front lower left screw hole; 39. Front upper right screw hole; 40. Front lower right screw hole;
[0035] 4. Rear reinforcement mechanism; 41. First rear plate; 42. Left rear fixing bolt; 43. Right rear fixing bolt;
[0036] 5. Front auxiliary reinforcement mechanism; 51. Front X-shaped support frame; 52. Front upper left fixing bolt; 53. Front lower left fixing bolt; 54. Front upper right fixing bolt; 55. Front lower right fixing bolt. Detailed Implementation
[0037] In order to better understand the technical content of this utility model, the following embodiments are provided for detailed description.
[0038] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0039] Please see Figures 1-4 As shown, in a specific embodiment of this utility model, the container house seismic reinforcement device of this utility model includes a container house body 1, a front fixed box 2, a rear fixed box (not shown in the figure), a front concrete (not shown in the figure), a rear concrete (not shown in the figure), a front reinforcement mechanism 3, and a rear reinforcement mechanism 4, wherein:
[0040] The container house body 1 is vertically arranged and arranged in the left-right direction. The front fixed box 2 and the rear fixed box are both vertically arranged and arranged in the front-back direction. The top of the front fixed box 2 and the top of the rear fixed box are both provided with openings. The front concrete and the rear concrete are respectively filled in the front fixed box 2 and the rear fixed box. The container house body 1 is supported on the top of the front fixed box 2 and the top of the rear fixed box and is respectively set on the front concrete and the rear concrete.
[0041] The front side panel 11 of the container house body 1 includes multiple front panel units 12. The front panel units 12 are arranged vertically and along the left-right direction. The multiple front panel units 12 are arranged to abut against each other in sequence. In two adjacent front panel units 12, the right end of the left front panel unit 12 is located to the left of the left end of the right front panel unit 12 and abuts against the left end of the right front panel unit 12. The rear side panel of the container house body 1 includes multiple rear panel units. The rear panel units are arranged vertically and along the left-right direction. The multiple rear panel units are arranged to abut against each other in sequence. In two adjacent rear panel units, the right end of the left rear panel unit is located to the left of the left end of the right rear panel unit and abuts against the left end of the right rear panel unit.
[0042] The front reinforcement mechanism 3 includes a first front plate 31 and a front insert rod 32. A left front slot 13 and a right front slot 14 are vertically arranged on the right end face of the left front panel unit 12 and the left end face of the right front panel unit 12, respectively. The left front slot 13 is located to the left of the right front slot 14 and communicates with it. The front insert rod 32 is vertically arranged along the left-right direction. The left and right parts of the front insert rod 32 are vertically movably inserted into the left front slot 13 and the right front slot 14, respectively. The left front slot 13 and the right front slot 14 are limited in the left and right directions (that is, the left front slot 13 cannot move left or right relative to the left part of the front insert rod 32, and the right front slot 14 cannot move left or right relative to the right part of the front insert rod 32). The lower end of the front insert rod 32 is vertically inserted into the front concrete. The first front plate 31 is horizontally arranged and arranged along the left and right directions and is respectively arranged on the right end of the front room panel unit 12 on the left, the top of the front insert rod 32 and the left end of the front room panel unit 12 on the right.
[0043] The rear reinforcement mechanism 4 includes a first rear plate 41 and a rear insert rod (not shown in the figure). The right end face of the left rear panel unit and the left end face of the right rear panel unit are respectively provided with a left rear slot and a right rear slot. The left rear slot is located to the left of the right rear slot and communicates with the right rear slot. The rear insert rod is arranged vertically and along the left-right direction. The left and right parts of the rear insert rod are respectively vertically movable and inserted into the left rear slot and the right rear slot, respectively, and respectively limit the left rear slot and the right rear slot in the left-right direction (that is, the left rear slot cannot move left or right relative to the left part of the rear insert rod, and the right rear slot cannot move left or right relative to the right part of the rear insert rod). The lower end of the rear insert rod is vertically inserted into the rear concrete. The first rear plate 41 is arranged horizontally and along the left-right direction and is respectively provided on the right end of the left rear panel unit, the top of the rear insert rod, and the left end of the right rear panel unit.
[0044] The left front slot 13, the right front slot 14, the left portion of the front insert 32, and the right portion of the front insert 32 can have any suitable shape. Please refer to [link / reference needed]. Figures 2-3 As shown, in a specific embodiment of this utility model, the left front slot 13 and the right front slot 14 are both dovetail slots, that is, the cross-section of the left front slot 13 and the cross-section of the right front slot 14 are both dovetail-shaped, or isosceles trapezoidal, and the cross-section of the left part of the front insert rod 32 and the cross-section of the right part of the front insert rod 32 are both dovetail-shaped, or isosceles trapezoidal.
[0045] The left rear slot, the right rear slot, the left portion of the rear insert rod, and the right portion of the rear insert rod can have any suitable shape. In a specific embodiment of this utility model, the left rear slot and the right rear slot are both dovetail slots, that is, the cross-section of the left rear slot and the cross-section of the right rear slot are both dovetail-shaped, or isosceles trapezoidal, and the cross-section of the left portion of the rear insert rod and the cross-section of the right portion of the rear insert rod are both dovetail-shaped, or isosceles trapezoidal.
[0046] The first front panel 31 is respectively disposed on the right end of the left front panel unit 12 and the left end of the right front panel unit 12, and can adopt any suitable structure. Please refer to [link / reference]. Figures 1-4As shown, in a specific embodiment of this utility model, the front reinforcement mechanism 3 further includes a left front fixing bolt 33 and a right front fixing bolt 34. The left and right ends of the first front plate 31 are respectively vertically provided with a left front fixing hole and a right front fixing hole. The top surface of the right end of the left front panel unit 12 and the top surface of the left end of the right front panel unit 12 are respectively vertically provided with a left front screw hole 15 and a right front screw hole 16. The left front fixing hole and the right front fixing hole are respectively located on the left front screw hole 15 and the right front screw hole 16. Both the left front fixing bolt 33 and the right front fixing bolt 34 are vertically arranged. The upper end of the left front fixing bolt 33 abuts against the left end of the first front plate 31, and the lower end of the left front fixing bolt 33 vertically passes through the left front fixing hole and the left front screw hole 15 and is threaded into the left front screw hole 15. The upper end of the right front fixing bolt 34 abuts against the right end of the first front plate 31, and the lower end of the right front fixing bolt 34 vertically passes through the right front fixing hole and the right front screw hole 16 and is threaded into the right front screw hole 16.
[0047] The first rear panel 41 is respectively disposed on the right end of the left rear room panel unit and the left end of the right rear room panel unit, and can adopt any suitable structure. Please refer to [link / reference]. Figure 1 As shown, in a specific embodiment of this utility model, the rear reinforcement mechanism 4 further includes a left rear fixing bolt 42 and a right rear fixing bolt 43. The left and right ends of the first rear plate 41 are respectively vertically provided with a left rear fixing hole and a right rear fixing hole. The top surface of the right end of the left rear panel unit and the top surface of the left end of the right rear panel unit are respectively vertically provided with a left rear screw hole and a right rear screw hole. The left rear fixing hole and the right rear fixing hole are respectively located on the left rear screw hole and the right rear screw hole. Both the rear fixing bolt 42 and the right rear fixing bolt 43 are vertically arranged. The upper end of the left rear fixing bolt 42 abuts against the left end of the first rear plate 41. The lower end of the left rear fixing bolt 42 vertically passes through the left rear fixing hole and the left rear threaded hole and is threaded into the left rear threaded hole. The upper end of the right rear fixing bolt 43 abuts against the right end of the first rear plate 41. The lower end of the right rear fixing bolt 43 vertically passes through the right rear fixing hole and the right rear threaded hole and is threaded into the right rear threaded hole.
[0048] The container house seismic reinforcement device may also include any other suitable components; please refer to [link / reference]. Figure 1 , Figure 2 and Figure 4 As shown, in a specific embodiment of this utility model, the container house seismic reinforcement device further includes a front auxiliary reinforcement mechanism 5 and a rear auxiliary reinforcement mechanism, wherein:
[0049] The front reinforcement mechanism 3 further includes a second front plate 35 and a front fixing plate 36. The second front plate 35 is horizontally arranged along the left-right direction. The second front plate 35 is located in front of the middle of the first front plate 31 and connected to the middle of the first front plate 31. The front fixing plate 36 is vertically arranged along the left-right direction. The front fixing plate 36 is located in front of the right end of the left front panel unit 12 and the left end of the right front panel unit 12, respectively, and abuts against the right end of the left front panel unit 12 and the left end of the right front panel unit 12, respectively. The front fixing plate 36 is located below the second front plate 35 and connected to the second front plate 35.
[0050] The front auxiliary reinforcement mechanism 5 includes a front X-shaped support frame 51, which is vertically arranged and arranged along the left and right direction. The upper left and lower left ends, as well as the upper right and lower right ends of the front X-shaped support frame 51, are respectively located in front of the front fixing plate 36 of the left front reinforcement mechanism 3 and the front fixing plate 36 of the right front reinforcement mechanism 3 in two adjacent front reinforcement mechanisms 3, and are respectively connected to the front fixing plate 36 of the left front reinforcement mechanism 3 and the front fixing plate 36 of the right front reinforcement mechanism 3.
[0051] The rear reinforcement mechanism 4 further includes a second rear plate and a rear fixing plate. The second rear plate is horizontally arranged along the left-right direction. The second rear plate is located behind the middle of the first rear plate 41 and connected to the middle of the first rear plate 41. The rear fixing plate is vertically arranged along the left-right direction. The rear fixing plate is located behind the right end of the left rear room panel unit and the left end of the right rear room panel unit, respectively, and abuts against the right end of the left rear room panel unit and the left end of the right rear room panel unit, respectively. The rear fixing plate is located below the second rear plate and connected to the second rear plate.
[0052] The rear auxiliary reinforcement mechanism includes a rear X-shaped support frame, which is vertically arranged and arranged along the left-right direction. The upper left and lower left ends, as well as the upper right and lower right ends of the rear X-shaped support frame, are respectively located after the rear fixing plate of the left rear reinforcement mechanism 4 and the rear fixing plate of the right rear reinforcement mechanism 4 in two adjacent rear reinforcement mechanisms 4, and are respectively connected to the rear fixing plate of the left rear reinforcement mechanism 4 and the rear fixing plate of the right rear reinforcement mechanism 4.
[0053] With the above configuration, the front auxiliary reinforcement mechanism 5 reinforces the front reinforcement mechanism 3 on the left and the front reinforcement mechanism 3 on the right, and the rear auxiliary reinforcement mechanism reinforces the rear reinforcement mechanism 4 on the left and the rear reinforcement mechanism 4 on the right.
[0054] The upper left and lower left ends of the front X-shaped support frame 51 are located in front of and connected to the front fixing plate 36 of the left-side front reinforcement mechanism 3. Any suitable structure can be used; please refer to [link / reference]. Figure 1 , Figure 2 and Figure 4 As shown, in a specific embodiment of this utility model, the front auxiliary reinforcement mechanism 5 further includes a front upper left fixing bolt 52 and a front lower left fixing bolt 53. The upper left end and the lower left end of the front X-shaped support frame 51 are respectively provided with a front upper left fixing hole and a front lower left fixing hole along the front-rear direction. The upper and lower ends of the front fixing plate 36 of the left-side front reinforcement mechanism 3 are respectively provided with a front upper left screw hole 37 and a front lower left screw hole 38 along the front-rear direction. The front upper left screw hole 37 and the front lower left screw hole 38 are respectively located after the front upper left fixing hole and the front lower left fixing hole. The front upper left fixing bolt 52 and the front lower left fixing bolt 53... All three are arranged along the front-rear direction. The front end of the upper left fixing bolt 52 is located in front of the upper left end of the front X-shaped support frame 51 and abuts against the upper left end of the front X-shaped support frame 51. The rear end of the upper left fixing bolt 52 passes through the upper left fixing hole and the upper left screw hole 37 along the front-rear direction and is threaded into the upper left screw hole 37. The front end of the lower left fixing bolt 53 is located in front of the lower left end of the front X-shaped support frame 51 and abuts against the lower left end of the front X-shaped support frame 51. The rear end of the lower left fixing bolt 53 passes through the lower left fixing hole and the lower left screw hole 38 along the front-rear direction and is threaded into the lower left screw hole 38.
[0055] The upper right end and lower right end of the front X-shaped support frame 51 are respectively located in front of and connected to the front fixing plate 36 of the front reinforcement mechanism 3 on the right side. Any suitable structure can be adopted; please refer to [link / reference]. Figures 1-4As shown, in a specific embodiment of this utility model, the front auxiliary reinforcement mechanism 5 further includes a front upper right fixing bolt 54 and a front lower right fixing bolt 55. The upper right end and the lower right end of the front X-shaped support frame 51 are respectively provided with a front upper right fixing hole and a front lower right fixing hole along the front-rear direction. The upper and lower ends of the front fixing plate 36 of the front reinforcement mechanism 3 on the right side are respectively provided with a front upper right screw hole 39 and a front lower right screw hole 40 along the front-rear direction. The front upper right screw hole 39 and the front lower right screw hole 40 are respectively located after the front upper right fixing hole and the front lower right fixing hole. The front upper right fixing bolt 54 and the front lower right fixing bolt 55... All 5 are arranged along the front-rear direction. The front end of the upper right fixing bolt 54 is located in front of the upper right end of the front X-shaped support frame 51 and abuts against the upper right end of the front X-shaped support frame 51. The rear end of the upper right fixing bolt 54 passes through the upper right fixing hole and the upper right screw hole 39 along the front-rear direction and is threaded into the upper right screw hole 39. The front end of the lower right fixing bolt 55 is located in front of the lower right end of the front X-shaped support frame 51 and abuts against the lower right end of the front X-shaped support frame 51. The rear end of the lower right fixing bolt 55 passes through the lower right fixing hole and the lower right screw hole 40 along the front-rear direction and is threaded into the lower right screw hole 40.
[0056] The upper left and lower left ends of the rear X-shaped support frame are located behind and connected to the rear fixing plate of the left-side rear reinforcement mechanism 4. Any suitable structure can be used. In a specific embodiment of this utility model, the rear auxiliary reinforcement mechanism further includes a rear upper left fixing bolt and a rear lower left fixing bolt. The upper left and lower left ends of the rear X-shaped support frame are respectively provided with a rear upper left fixing hole and a rear lower left fixing hole along the front-rear direction. The upper and lower ends of the rear fixing plate of the left-side rear reinforcement mechanism 4 are respectively provided with a rear upper left screw hole and a rear lower left screw hole along the front-rear direction. The rear upper left screw hole and the rear lower left screw hole are respectively located at the... Before the upper left fixing hole and the lower left fixing hole, the upper left fixing bolt and the lower left fixing bolt are both set along the front-back direction. The rear end of the upper left fixing bolt is located behind the upper left end of the rear X-shaped support frame and abuts against the upper left end of the rear X-shaped support frame. The front end of the upper left fixing bolt passes through the upper left fixing hole and the upper left screw hole along the front-back direction and is threaded into the upper left screw hole. The rear end of the lower left fixing bolt is located behind the lower left end of the rear X-shaped support frame and abuts against the lower left end of the rear X-shaped support frame. The front end of the lower left fixing bolt passes through the lower left fixing hole and the lower left screw hole along the front-back direction and is threaded into the lower left screw hole.
[0057] The upper right and lower right ends of the rear X-shaped support frame are located behind and connected to the rear fixing plate of the rear reinforcement mechanism 4 on the right side. Any suitable structure can be used. In a specific embodiment of this utility model, the rear auxiliary reinforcement mechanism further includes a rear upper right fixing bolt and a rear lower right fixing bolt. The upper right and lower right ends of the rear X-shaped support frame are respectively provided with a rear upper right fixing hole and a rear lower right fixing hole along the front-rear direction. The upper and lower ends of the rear fixing plate of the rear reinforcement mechanism 4 on the right side are respectively provided with a rear upper right screw hole and a rear lower right screw hole along the front-rear direction. The rear upper right screw hole and the rear lower right screw hole are respectively located at the... Before the upper right fixing hole and the lower right fixing hole, the upper right fixing bolt and the lower right fixing bolt are both set along the front-back direction. The rear end of the upper right fixing bolt is located behind the upper right end of the rear X-shaped support frame and abuts against the upper right end of the rear X-shaped support frame. The front end of the upper right fixing bolt passes through the upper right fixing hole and the upper right screw hole along the front-back direction and is threaded into the upper right screw hole. The rear end of the lower right fixing bolt is located behind the lower right end of the rear X-shaped support frame and abuts against the lower right end of the rear X-shaped support frame. The front end of the lower right fixing bolt passes through the lower right fixing hole and the lower right screw hole along the front-back direction and is threaded into the lower right screw hole.
[0058] The number of the front room panel units 12 and the number of the rear room panel units can be determined as needed. The term "multiple units" refers to two or more units. Please refer to [link to relevant documentation]. Figure 1 As shown, in a specific embodiment of this utility model, the number of the front room panel unit 12 and the number of the rear room panel unit are both 4.
[0059] In use, place the front fixing box 2 and the rear fixing box at the positions where the container house body 1 needs to be installed. After placing the container house body 1 on top of the front fixing box 2 and the rear fixing box, vertically insert the left and right parts of the front insertion rod 32 into the left front slot 13 at the right end of the left front panel unit 12 and the right front slot 14 at the left end of the right front panel unit 12 of the two adjacent front panel units 12, respectively, until the first front plate 31 on the top of the front insertion rod 32 abuts against the right end of the left front panel unit 12 and the left end of the right front panel unit 12, respectively. At this time, the lower end of the front insertion rod 32 is located inside the front fixing box 2. A front panel 31 is connected to the right end of the left front panel unit 12 and the left end of the right front panel unit 12 respectively. The front insert rod 32 is used to limit the left front slot 13 and the right front slot 14 in the left and right directions to generate a self-locking effect, resist the transverse shear force of the earthquake, and reinforce the container house body 1. The upper left and lower left ends, as well as the upper right and lower right ends of the front X-shaped support frame 51 are placed in front of the front fixing plate 36 of the left front reinforcement mechanism 3 and the front fixing plate 36 of the right front reinforcement mechanism 3 respectively, and are connected to the front fixing plate 36 of the left front reinforcement mechanism 3 and the front fixing plate 36 of the right front reinforcement mechanism 3 respectively.
[0060] Insert the left and right parts of the rear insert rod vertically into the left rear slot at the right end of the left rear panel unit and the right rear slot at the left end of the right rear panel unit, respectively, until the first rear plate 41 on the top of the rear insert rod abuts against the right end of the left rear panel unit and the left end of the right rear panel unit, respectively. At this time, the lower end of the rear insert rod is located inside the rear fixing box. Connect the first rear plate 41 to the right end of the left rear panel unit and the left end of the right rear panel unit, respectively. The rear insert rod limits the left and right rear slots in the left and right directions to create a self-locking effect, resisting the transverse shear force of the earthquake, and reinforcing the container house body 1. The upper left and lower left ends, as well as the upper right and lower right ends of the rear X-shaped support frame are placed behind the rear fixing plates of the left and right rear reinforcement mechanisms 4 respectively, and connected to the rear fixing plates of the left and right rear reinforcement mechanisms 4 respectively.
[0061] Concrete is poured into the front fixed box 2 and the rear fixed box to form the front concrete and the rear concrete respectively, thereby forming a heavy and low-center-of-gravity anti-overturning base without damaging the ground. In addition, the front fixed box 2 and the front concrete, as well as the rear fixed box and the rear concrete, also provide support and moisture protection for the container house body 1.
[0062] Therefore, the present invention has the following beneficial effects:
[0063] 1. This utility model involves vertically inserting the left and right parts of the front insert rod into the left front slot at the right end of the left front room panel unit and the right front slot at the left end of the right front room panel unit, respectively. This connects the first front panel to the right end of the left front room panel unit and the left end of the right front room panel unit. The front insert rod provides a self-locking effect by limiting the left and right front slots in the left-right direction, resisting the lateral shear force of an earthquake. The left and right parts of the rear insert rod are then vertically inserted into the left rear slot at the right end of the left rear room panel unit and the right rear room panel unit, respectively. In the right rear slot at the left end of the unit, the first rear plate is connected to the right end of the left rear room panel unit and the left end of the right rear room panel unit respectively. The rear insert rod limits the left and right rear slots in the left and right directions to create a self-locking effect, resisting the lateral shear force of the earthquake. Thus, the front reinforcement mechanism is integrated into the inside of the two front room panel units, and the rear reinforcement mechanism is integrated into the inside of the two rear room panel units, reducing the external additional structure and saving space. Moreover, the insert rod and slot are made of low-cost and readily available industrial materials, reducing the cost of the device.
[0064] 2. This utility model supports the container house body on the top of the front fixed box and the top of the rear fixed box. The lower end of the front insert rod is inserted into the front fixed box, and the lower end of the rear insert rod is inserted into the rear fixed box. Concrete is poured into the front fixed box and the rear fixed box to form front concrete and rear concrete respectively, thereby forming a heavy, low-center-of-gravity anti-overturning base. No ground damage is required. The front fixed box and the front concrete, as well as the rear fixed box and the rear concrete, also provide support and moisture protection for the container house body. Furthermore, the combination of fixed boxes and concrete uses low-cost and readily available industrial materials, reducing equipment costs.
[0065] This invention is applicable to scenarios requiring rapid deployment and zero damage to the ground, such as temporary hospitals and emergency command centers, and is especially suitable for deployment in high-risk areas after earthquakes and floods.
[0066] In summary, the container house seismic reinforcement device of this utility model can reinforce container houses against seismic forces, and it occupies little space, has low cost, and is suitable for large-scale promotion and application.
[0067] Therefore, it is evident that the objective of this utility model has been fully and effectively achieved. The function and structural principles of this utility model have been demonstrated and explained in the embodiments. Without departing from the stated principles, any modifications can be made to the implementation methods. Therefore, this utility model includes all modified embodiments based on the spirit and scope of the claims.
Claims
1. A seismic reinforcement device for a container house, comprising a container house body, wherein the container house body is vertically arranged and arranged along the left-right direction, characterized in that, The container house seismic reinforcement device also includes a front fixed box, a rear fixed box, front concrete, rear concrete, a front reinforcement mechanism, and a rear reinforcement mechanism, wherein: Both the front fixed box and the rear fixed box are vertically arranged and both are arranged in the front-to-back direction. Both the top of the front fixed box and the top of the rear fixed box are provided with openings. The front concrete and the rear concrete are respectively filled in the front fixed box and the rear fixed box. The container house body is respectively supported on the top of the front fixed box and the top of the rear fixed box and is respectively set on the front concrete and the rear concrete. The front panel of the container house body includes multiple front panel units, which are arranged vertically and along the left-right direction. The multiple front panel units are arranged to abut against each other in sequence from left to right. In two adjacent front panel units, the right end of the left front panel unit is located to the left of the left end of the right front panel unit and abuts against the left end of the right front panel unit. The rear panel of the container house body includes multiple rear panel units, which are arranged vertically and along the left-right direction. The multiple rear panel units are arranged to abut against each other in sequence from left to right. In two adjacent rear panel units, the right end of the left rear panel unit is located to the left of the left end of the right rear panel unit and abuts against the left end of the right rear panel unit. The front reinforcement mechanism includes a first front plate and a front insert rod. The right end face of the left front panel unit and the left end face of the right front panel unit are respectively provided with a left front slot and a right front slot. The left front slot is located to the left of the right front slot and communicates with the right front slot. The front insert rod is arranged vertically and along the left-right direction. The left and right parts of the front insert rod are respectively vertically movable and inserted into the left front slot and the right front slot, and respectively limit the left front slot and the right front slot in the left-right direction. The lower end of the front insert rod is vertically inserted into the front concrete. The first front plate is arranged horizontally and along the left-right direction and is respectively located on the right end of the left front panel unit, the top of the front insert rod, and the left end of the right front panel unit. The rear reinforcement mechanism includes a first rear plate and a rear insert rod. The right end face of the left rear panel unit and the left end face of the right rear panel unit are respectively provided with a left rear slot and a right rear slot. The left rear slot is located to the left of the right rear slot and communicates with the right rear slot. The rear insert rod is arranged vertically and along the left-right direction. The left and right parts of the rear insert rod are respectively vertically movable and inserted into the left and right rear slots and respectively limit the left and right rear slots in the left-right direction. The lower end of the rear insert rod is vertically inserted into the rear concrete. The first rear plate is arranged horizontally and along the left-right direction and is respectively located on the right end of the left rear panel unit, the top of the rear insert rod, and the left end of the right rear panel unit.
2. The container house seismic reinforcement device as described in claim 1, characterized in that, Both the left front slot and the right front slot are dovetail grooves, and the cross-section of the left part of the front insert rod and the cross-section of the right part of the front insert rod are both dovetail-shaped.
3. The container house seismic reinforcement device as described in claim 1, characterized in that, Both the left and right rear slots are dovetail grooves, and the cross-sections of the left and right sides of the rear insert rod are both dovetail-shaped.
4. The container house seismic reinforcement device as described in claim 1, characterized in that, The front reinforcement mechanism also includes a left front fixing bolt and a right front fixing bolt. The left and right ends of the first front plate are respectively provided with a left front fixing hole and a right front fixing hole. The top surface of the right end of the left front panel unit and the top surface of the left end of the right front panel unit are respectively provided with a left front screw hole and a right front screw hole. The left front fixing hole and the right front fixing hole are respectively located on the left front screw hole and the right front screw hole. The left front fixing bolt and the right front fixing bolt are both vertically arranged. The upper end of the left front fixing bolt abuts against the left end of the first front plate. The lower end of the left front fixing bolt passes vertically through the left front fixing hole and the left front screw hole and is threaded into the left front screw hole. The upper end of the right front fixing bolt abuts against the right end of the first front plate. The lower end of the right front fixing bolt passes vertically through the right front fixing hole and the right front screw hole and is threaded into the right front screw hole.
5. The container house seismic reinforcement device as described in claim 1, characterized in that, The rear reinforcement mechanism also includes a left rear fixing bolt and a right rear fixing bolt. The left and right ends of the first rear plate are respectively provided with a left rear fixing hole and a right rear fixing hole. The top surface of the right end of the left rear panel unit and the top surface of the left end of the right rear panel unit are respectively provided with a left rear screw hole and a right rear screw hole. The left rear fixing hole and the right rear fixing hole are respectively located on the left rear screw hole and the right rear screw hole. The left rear fixing bolt and the right rear fixing bolt are both vertically arranged. The upper end of the left rear fixing bolt abuts against the left end of the first rear plate. The lower end of the left rear fixing bolt vertically passes through the left rear fixing hole and the left rear screw hole and is threaded into the left rear screw hole. The upper end of the right rear fixing bolt abuts against the right end of the first rear plate. The lower end of the right rear fixing bolt vertically passes through the right rear fixing hole and the right rear screw hole and is threaded into the right rear screw hole.
6. The container house seismic reinforcement device as described in claim 1, characterized in that, The container house seismic reinforcement device also includes a front auxiliary reinforcement mechanism and a rear auxiliary reinforcement mechanism, wherein: The front reinforcement mechanism further includes a second front plate and a front fixing plate. The second front plate is horizontally arranged along the left-right direction and is located in front of and connected to the middle of the first front plate. The front fixing plate is vertically arranged along the left-right direction and is located in front of the right end of the left front panel unit and the left end of the right front panel unit, respectively, and abuts against the right end of the left front panel unit and the left end of the right front panel unit, respectively. The front fixing plate is located below the second front plate and connected to the second front plate. The front auxiliary reinforcement mechanism includes a front X-shaped support frame, which is vertically arranged and arranged along the left-right direction. The upper left and lower left ends, as well as the upper right and lower right ends of the front X-shaped support frame, are respectively located in front of the front fixing plate of the left front reinforcement mechanism and the front fixing plate of the right front reinforcement mechanism in two adjacent front reinforcement mechanisms, and are respectively connected to the front fixing plate of the left front reinforcement mechanism and the front fixing plate of the right front reinforcement mechanism. The rear reinforcement mechanism further includes a second rear plate and a rear fixing plate. The second rear plate is horizontally arranged along the left-right direction. The second rear plate is located behind the middle of the first rear plate and connected to the middle of the first rear plate. The rear fixing plate is vertically arranged along the left-right direction. The rear fixing plate is located behind the right end of the left rear room panel unit and the left end of the right rear room panel unit, respectively, and abuts against the right end of the left rear room panel unit and the left end of the right rear room panel unit, respectively. The rear fixing plate is located below the second rear plate and connected to the second rear plate. The rear auxiliary reinforcement mechanism includes a rear X-shaped support frame, which is vertically arranged and arranged along the left-right direction. The upper left and lower left ends, as well as the upper right and lower right ends of the rear X-shaped support frame, are respectively located after the rear fixing plate of the left rear reinforcement mechanism and the rear fixing plate of the right rear reinforcement mechanism in two adjacent rear reinforcement mechanisms, and are respectively connected to the rear fixing plate of the left rear reinforcement mechanism and the rear fixing plate of the right rear reinforcement mechanism.
7. The container house seismic reinforcement device as described in claim 6, characterized in that, The front auxiliary reinforcement mechanism further includes a front upper left fixing bolt and a front lower left fixing bolt. The upper left end and the lower left end of the front X-shaped support frame are respectively provided with a front upper left fixing hole and a front lower left fixing hole along the front-rear direction. The upper and lower ends of the front fixing plate of the left-side front reinforcement mechanism are respectively provided with a front upper left screw hole and a front lower left screw hole along the front-rear direction. The front upper left screw hole and the front lower left screw hole are located after the front upper left fixing hole and the front lower left fixing hole, respectively. Both the front upper left fixing bolt and the front lower left fixing bolt are along the front-rear direction. The front end of the upper left fixing bolt is located in front of and abuts against the upper left end of the front X-shaped support frame. The rear end of the upper left fixing bolt passes through the upper left fixing hole and the upper left threaded hole along the front-rear direction and is threaded into the upper left threaded hole. The front end of the lower left fixing bolt is located in front of and abuts against the lower left end of the front X-shaped support frame. The rear end of the lower left fixing bolt passes through the lower left fixing hole and the lower left threaded hole along the front-rear direction and is threaded into the lower left threaded hole.
8. The container house seismic reinforcement device as described in claim 6, characterized in that, The front auxiliary reinforcement mechanism further includes a front upper right fixing bolt and a front lower right fixing bolt. The upper right end and the lower right end of the front X-shaped support frame are respectively provided with a front upper right fixing hole and a front lower right fixing hole along the front-rear direction. The upper and lower ends of the front fixing plate of the front reinforcement mechanism on the right side are respectively provided with a front upper right screw hole and a front lower right screw hole along the front-rear direction. The front upper right screw hole and the front lower right screw hole are located after the front upper right fixing hole and the front lower right fixing hole, respectively. Both the front upper right fixing bolt and the front lower right fixing bolt are along the front-rear direction. The front end of the upper right fixing bolt is located in front of and abuts against the upper right end of the front X-shaped support frame. The rear end of the upper right fixing bolt passes through the upper right fixing hole and the upper right threaded hole along the front-back direction and is threaded into the upper right threaded hole. The front end of the lower right fixing bolt is located in front of and abuts against the lower right end of the front X-shaped support frame. The rear end of the lower right fixing bolt passes through the lower right fixing hole and the lower right threaded hole along the front-back direction and is threaded into the lower right threaded hole.
9. The container house seismic reinforcement device as described in claim 6, characterized in that, The rear auxiliary reinforcement mechanism further includes a rear upper left fixing bolt and a rear lower left fixing bolt. The upper left end and the lower left end of the rear X-shaped support frame are respectively provided with a rear upper left fixing hole and a rear lower left fixing hole along the front-rear direction. The upper and lower ends of the rear fixing plate of the left-side rear reinforcement mechanism are respectively provided with a rear upper left screw hole and a rear lower left screw hole along the front-rear direction. The rear upper left screw hole and the rear lower left screw hole are located in front of the rear upper left fixing hole and the rear lower left fixing hole, respectively. The rear upper left fixing bolt and the rear lower left fixing bolt are both along the front-rear direction. The rear end of the upper left fixing bolt is located behind and abuts against the upper left end of the rear X-shaped support frame. The front end of the upper left fixing bolt passes through the upper left fixing hole and the upper left threaded hole along the front-back direction and is threaded into the upper left threaded hole. The rear end of the lower left fixing bolt is located behind and abuts against the lower left end of the rear X-shaped support frame. The front end of the lower left fixing bolt passes through the lower left fixing hole and the lower left threaded hole along the front-back direction and is threaded into the lower left threaded hole.
10. The container house seismic reinforcement device as described in claim 6, characterized in that, The rear auxiliary reinforcement mechanism further includes a rear upper right fixing bolt and a rear lower right fixing bolt. The upper right end and the lower right end of the rear X-shaped support frame are respectively provided with a rear upper right fixing hole and a rear lower right fixing hole along the front-back direction. The upper and lower ends of the rear fixing plate of the rear reinforcement mechanism on the right side are respectively provided with a rear upper right screw hole and a rear lower right screw hole along the front-back direction. The rear upper right screw hole and the rear lower right screw hole are respectively located in front of the rear upper right fixing hole and the rear lower right fixing hole. The rear upper right fixing bolt and the rear lower right fixing bolt are both along the front-back direction. The rear end of the upper right fixing bolt is located behind and abuts against the upper right end of the rear X-shaped support frame. The front end of the upper right fixing bolt passes through the upper right fixing hole and the upper right screw hole along the front-back direction and is threaded into the upper right screw hole. The rear end of the lower right fixing bolt is located behind and abuts against the lower right end of the rear X-shaped support frame. The front end of the lower right fixing bolt passes through the lower right fixing hole and the lower right screw hole along the front-back direction and is threaded into the lower right screw hole.