Moisture-proof and warm-keeping type container house

By installing a U-shaped bottom frame, a central crossbeam, and a secondary beam at the bottom of the container house, combined with a double-beam side bracing structure, the problem of insufficient load-bearing capacity of the container house's side walls was solved, thus improving the structure's stability and wind resistance.

CN224016907UActive Publication Date: 2026-03-20SHANDONG DERUN GREEN BUILDING INTEGRATED HOUSE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing insulated container houses have weak sidewall load-bearing capacity, especially when facing lateral loads such as wind pressure and earthquakes, where the sidewall stability is insufficient.

Method used

A U-shaped bottom frame is installed at the bottom of the container house, and secondary support is provided by a central crossbeam and a secondary beam for reinforcement. A double-beam side bracing structure is used to support the front and rear outer walls of the house to enhance structural stability.

Benefits of technology

It enhances the overall stability of container houses, reduces the risk of overturning, improves resistance to lateral and longitudinal forces, ensures structural stability and uniform stress distribution under load, and avoids deformation or damage.

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Patent Text Reader

Abstract

The utility model discloses a moisture-proof warm-keeping type container house which comprises a warm-keeping type container house body and a lower rectangular-ambulatory-plane bottom frame arranged at the bottom end of the warm-keeping type container house body, a middle cross beam is installed at the top end of the lower rectangular-ambulatory-plane bottom frame, and auxiliary beams are installed at the positions, on the two sides of the middle cross beam, of the top end of the lower rectangular-ambulatory-plane bottom frame. The top ends of the middle cross beam and the auxiliary beam are fixedly connected with the bottom end of the heat preservation type container house body. The lower rectangular-ambulatory-plane bottom frame is adopted and combined with the middle cross beams and the auxiliary beams for supporting and reinforcing, meanwhile, the front outer wall and the rear outer wall of the house body are supported on the two sides of the bottom frame through the double-beam type side supporting structures, the gravity center of the whole container house body is lowered through the design of the lower rectangular-ambulatory-plane bottom frame, and the overall stability is enhanced; due to the introduction of the double-beam type side support structure, the stress on the front outer wall and the rear outer wall of the house body is more uniform, extra support is not provided for the house body, and deformation or damage caused by overlarge local stress is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to container house technical field, concretely is a kind of moisture-proof warm-keeping type container house. BACKGROUND

[0002] The warm-keeping type container house is an innovative building form, combining the modularization characteristics of container and efficient warm-keeping materials, and is widely used in temporary residence, office and warehouse and other places. Its basic structure adopts standard sea container, with high-strength steel frame, ensuring good compression resistance and wind resistance. In order to improve the warm-keeping effect, polystyrene foam, polyurethane foam or rock wool and other thermal insulation materials are usually added to the inner and outer walls of the container house. These materials have excellent thermal insulation properties, which can effectively prevent the intrusion of external cold air and the loss of internal heat. The warm-keeping principle of the warm-keeping type container house mainly relies on the control of heat conduction, convection and radiation. By adding thermal insulation layer to the walls, floor and roof, heat loss is significantly reduced. In addition, the sealing design of the container can reduce air flow and prevent indoor heat loss, while reasonable ventilation design can maintain fresh air. In order to further improve energy efficiency, the warm-keeping type container house can also integrate renewable energy systems such as solar energy and wind energy, using solar panels and geothermal energy and other technologies to provide support for indoor power supply and heating;

[0003] The moisture-proof warm-keeping type container house disclosed in the authorized announcement No. CN222066282U includes a house body, a heat-insulating roof is provided on the top of the house body, a moisture-proof board is provided on the inner bottom wall of the house body, a warm-keeping insulation layer is provided on the inner side wall of the house body, and a ventilation structure is provided in the warm-keeping insulation layer. The structure includes a drive screw, a drive motor, a bevel gear, a drive threaded block, a transmission rod one and a transmission rod two. A light and ventilation window is hingedly provided on the heat-insulating roof. An air vent is provided between the heat-insulating roof and the house body. A sealing door is hingedly provided on the air vent. The container house has good moisture-proof, warm-keeping and heat-insulating effects by cooperation of the heat-insulating roof, the warm-keeping insulation layer and the moisture-proof board. However, in the above technical solution, the bottom frame of the container is used as the load-bearing foundation of the house, and the side wall of the container is not supported by the bottom frame structure. The side wall of the container is mainly composed of thin steel plates, and the structure design is mainly to resist external pressure and wind load during transportation. When the container is used as a house, the load-carrying capacity of the side wall is relatively weak, especially when facing transverse loads such as wind pressure and earthquakes. The stability of the side wall is insufficient. SUMMARY

[0004] The utility model discloses a moistureproof and warm type container house, install the lower henghe bottom frame for contacting with the ground at the bottom end of the warm type container house body, and the lower henghe bottom frame and the warm type container house body are supported and reinforced twice by using the middle cross beam and vice beam, and the front and rear outer walls of the house body are supported on the lower henghe bottom frame by using the double-beam type side support structure, so as to solve the problems in the above background art.

[0005] To achieve the above object, the utility model provides the following technical scheme: a moistureproof and warm type container house, including warm type container house body and the lower henghe bottom frame of setting at the bottom end of warm type container house body, the top of lower henghe bottom frame installs middle cross beam, and the top of lower henghe bottom frame of middle cross beam both sides installs vice beam, and the top of middle cross beam, vice beam is fixedly connected with the bottom end of warm type container house body, and the both sides outer walls of lower henghe bottom frame all are provided with the double-beam type side support structure for supporting the side wall of warm type container house body.

[0006] Preferably, the lower henghe bottom frame is composed of two Y-axis joists and two X-axis joists, the two X-axis joists are fixedly welded in parallel between the two Y-axis joists, and the extension directions of the middle cross beam and the vice beam are parallel to the extension direction of the X-axis joist.

[0007] Preferably, the lower henghe bottom frame, the middle cross beam and the vice beam are made of stainless steel components, and the cross-sectional shape of the middle cross beam is T-shaped.

[0008] Preferably, a plurality of longitudinal connecting beams are installed between the opposite side outer walls of the middle cross beam and the vice beam, and a clearance is arranged between the lower henghe bottom frame and the warm type container house body.

[0009] Preferably, the double-beam type side support structure includes a plurality of U-shaped end arms fixed on one side outer wall of the lower henghe bottom frame, an inner base slidably bolted inside the U-shaped end arms, a U-shaped vertical arm fixed inside the inner base, and two parallel edge beams fixed on the side outer wall away from the lower henghe bottom frame.

[0010] Preferably, the bottom end of the U-shaped end arm is provided with a straight slot, a Z-axis locking bolt is installed at the bottom end of the U-shaped end arm, the end of the surface of the Z-axis locking bolt is provided with a nut, two auxiliary locking bolts are installed on one side outer wall of the inner base, and the end of the auxiliary locking bolt penetrates the outside of the inner base and the U-shaped vertical arm.

[0011] Compared with the prior art, the moisture-proof and warm type container house has the advantages that the lower heng-shaped bottom frame is combined with the middle transverse beam and the secondary beam to support and reinforce, the front and rear outer walls of the house body are supported by the double-beam side support structure on the two sides of the bottom frame, the design of the lower heng-shaped bottom frame lowers the gravity center of the whole container house body, enhances the stability of the whole house body, the four corners of the lower heng-shaped bottom frame are in contact with the ground to form a solid foundation, effectively disperses the weight from the house body and external loads such as wind pressure and snow pressure, the addition of the middle transverse beam and the secondary beam further enhances the rigidity of the lower heng-shaped bottom frame, so that the whole structure has higher resistance when subjected to transverse and longitudinal forces, and the risk of overturning is reduced; in the design of the container house, the internal space bears heavy furniture and equipment, the reinforcing design of the middle transverse beam, the secondary beam and the lower heng-shaped bottom frame can ensure that the structure remains stable under the action of these loads, in addition, the introduction of the double-beam side support structure makes the stress of the front and rear outer walls of the house body more uniform, and does not provide additional support for the house body, avoiding deformation or damage caused by excessive local stress. BRIEF DESCRIPTION OF DRAWINGS

[0012] Figure 1 It is a front view structural schematic diagram of the utility model;

[0013] Figure 2 It is a three-dimensional structure schematic diagram of the utility model Figure 1 ;

[0014] Figure 3 It is a three-dimensional structure schematic diagram of the utility model Figure 2 ;

[0015] Figure 4 It is a three-dimensional structure schematic diagram of the utility model's lower heng-shaped bottom frame;

[0016] Figure 5 It is a three-dimensional structure schematic diagram of the utility model Figure 3 It is an enlarged structure schematic diagram of A in the utility model;

[0017] Figure 6 It is a three-dimensional structure schematic diagram of the utility model's lower heng-shaped bottom frame.

[0018] In the drawing: 1, warm type container house body; 2, lower heng-shaped bottom frame; 201, empty block; 3, middle transverse beam; 4, secondary beam; 5, longitudinal connecting beam; 6, double-beam side support structure; 601, U-shaped end arm; 602, inner base; 603, U-shaped vertical arm; 604, edge beam; 7, straight slot; 8, Z-axis locking bolt; 9, secondary locking bolt. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present utility model. Based on the embodiments in the present utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present utility model.

[0020] Embodiment one, by Figures 1 to 3 The present utility model includes a warm type container house body 1 and a lower herringbone shaped bottom frame 2 arranged at the bottom end of the warm type container house body 1, the top end of the lower herringbone shaped bottom frame 2 is provided with a middle cross beam 3, the top end of the lower herringbone shaped bottom frame 2 on the two sides of the middle cross beam 3 is provided with a secondary beam 4, the top end of the middle cross beam 3 and the secondary beam 4 is fixedly connected with the bottom end of the warm type container house body 1, and the outer walls on the two sides of the lower herringbone shaped bottom frame 2 are both provided with a double-beam type side support structure 6 for supporting the side walls of the warm type container house body 1.

[0021] The lower herringbone shaped bottom frame 2 provides good structural stability, the shape can effectively disperse the weight of the house body, reduce the pressure on the foundation, adapt to different geological conditions, and because of the design of the lower herringbone shaped bottom frame 2, the warm type container house body 1 can bear a larger weight, and is suitable for stacking multiple containers or other building materials thereon.

[0022] The lower herringbone shaped bottom frame 2 is composed of two Y-axis joists and two X-axis joists, the two X-axis joists are fixedly welded in parallel between the two Y-axis joists, the extension direction of the middle cross beam 3 and the secondary beam 4 is parallel to the extension direction of the X-axis joist, the lower herringbone shaped bottom frame 2, the middle cross beam 3 and the secondary beam 4 are made of stainless steel components, the cross-sectional shape of the middle cross beam 3 is T-shaped, the middle cross beam 3 and the secondary beam 4 can effectively disperse the load from the roof and the wall body, so that the lower herringbone shaped bottom frame 2 can better maintain the shape and reduce the risk of deformation when subjected to external load.

[0023] A plurality of longitudinal connecting beams 5 are arranged between the opposite outer walls of the middle cross beam 3 and the secondary beam 4, an empty section 201 is arranged between the lower herringbone shaped bottom frame 2 and the warm type container house body 1, the longitudinal connecting beam 5 is located between the opposite outer walls of the middle cross beam 3 and the secondary beam 4, which can further disperse the load of the structure, so that the overall structure is more balanced, and the risk of local stress is reduced.

[0024] Embodiment two, based on embodiment one, by Figure 4 , Figure 5 and Figure 6The double-beam side support structure 6 comprises a plurality of U-shaped end arms 601 fixed on one side of the outer wall of the lower back-shaped base frame 2, an inner base 602 slidably and fixedly connected inside the U-shaped end arm 601, a U-shaped vertical arm 603 fixed inside the inner base 602, and two parallel side beams 604 fixed on the outer wall of one side of the lower back-shaped base frame 2 away from the U-shaped vertical arm 603. The bottom end of the U-shaped end arm 601 is provided with a straight slot 7, and the bottom end of the U-shaped end arm 601 is provided with a Z-axis locking bolt 8 penetrating through the straight slot 7 and outside the inner base 602. One end of the surface of the Z-axis locking bolt 8 is provided with a nut, and two auxiliary locking bolts 9 are installed on one side of the outer wall of the inner base 602, and the end of the auxiliary locking bolt 9 penetrates outside the inner base 602 and the U-shaped vertical arm 603.

[0025] When assembling the double-beam side support structure 6, the worker manually slides the inner base 602 so that the inner base 602 slides in the extension direction of the U-shaped end arm 601 until the side beam 604 contacts the outer wall of the warm-type container house body 1. After the position of the side beam 604 is adjusted, the worker locks the position of the inner base 602 by using the straight slot 7 and the Z-axis locking bolt 8 to ensure the stability of the structure.

[0026] The U-shaped vertical arm 603 is inserted into the inner base 602 until the hole positions on the U-shaped vertical arm 603 and the inner base 602 are aligned, and then the inner base 602 and the U-shaped vertical arm 603 are bolted by using the auxiliary locking bolt 9. At this time, the double-beam side support structure 6 can effectively resist lateral wind force, enhance the wind resistance of the building, ensure the safety in adverse weather conditions, and reduce the sway and deformation of the house body under the action of wind force.

[0027] In use, the worker needs to carefully review the design drawings before construction, confirm the design parameters of the lower back-shaped base frame 2, the middle cross beam 3, the auxiliary beam 4 and the double-beam side support structure 6, and prepare necessary construction tools such as cutting machines, welding machines, drills, levels, measuring tools and the like to ensure the integrity and normal function of the tools. The construction site is cleaned to remove debris, vegetation and other obstacles to ensure the flatness of the ground. The worker places the assembled lower back-shaped base frame 2 in the predetermined position, uses the level and measuring tool to ensure the levelness and perpendicularity of the base frame, and firmly connects the lower back-shaped base frame 2 with the ground through a concrete foundation or other fixing methods to ensure its stability. The installation position of the middle cross beam 3 and the auxiliary beam 4 is determined at the appropriate position of the lower back-shaped base frame 2, and the warm-type container house body 1 is stably placed on the middle cross beam 3 and the auxiliary beam 4 by using hoisting equipment, and the overall house body structure is checked and reinforced. Finally, the double-beam side support structure 6 is installed on the left and right outer walls of the lower back-shaped base frame 2, and the double-beam side support structure 6 supports the front and rear outer walls of the warm-type container house body 1, and provides additional support to make the stress of the front and rear outer walls of the house more uniform.

Claims

1. A moisture-proof and heat-insulating container house, characterized in that: The container includes an insulated container house (1) and a U-shaped bottom frame (2) at the bottom of the insulated container house (1). A central crossbeam (3) is installed at the top of the U-shaped bottom frame (2), and secondary beams (4) are installed at the top of the U-shaped bottom frame (2) on both sides of the central crossbeam (3). The tops of the central crossbeam (3) and the secondary beams (4) are fixedly connected to the bottom of the insulated container house (1). Double beam side bracing structures (6) for supporting the side walls of the insulated container house (1) are provided on both outer walls of the U-shaped bottom frame (2).

2. The moisture-proof and heat-insulating container house according to claim 1, characterized in that: The bottom frame (2) is composed of two Y-axis support beams and two X-axis support beams. The two X-axis support beams are welded and fixed between the two Y-axis support beams in parallel. The extension direction of the central crossbeam (3) and the secondary beam (4) is parallel to the extension direction of the X-axis support beams.

3. A moisture-proof and heat-insulating container house according to claim 2, characterized in that: The bottom frame (2), the central beam (3), and the secondary beam (4) are made of stainless steel. The cross-sectional shape of the central beam (3) is T-shaped.

4. A moisture-proof and heat-insulating container house according to claim 1, characterized in that: Several longitudinal connecting beams (5) are installed between the opposite outer walls of the central crossbeam (3) and the secondary beam (4), and a gap (201) is provided between the lower U-shaped bottom frame (2) and the insulated container house (1).

5. A moisture-proof and heat-insulating container house according to claim 1, characterized in that: The double-beam side bracing structure (6) includes several U-shaped end arms (601) fixed on one side of the outer wall of the lower U-shaped bottom frame (2), an inner base (602) slidably bolted inside the U-shaped end arms (601), a U-shaped vertical arm (603) fixed inside the inner base (602), and two parallel side beams (604) fixed on the outer wall of the side of the several U-shaped vertical arms (603) away from the lower U-shaped bottom frame (2).

6. A moisture-proof and heat-insulating container house according to claim 5, characterized in that: The bottom end of the U-shaped end arm (601) is provided with a straight groove (7). The bottom end of the U-shaped end arm (601) is equipped with a Z-axis locking bolt (8) whose end extends through the straight groove (7) and the outside of the inner base (602). A nut is installed on one end of the surface of the Z-axis locking bolt (8). Two auxiliary locking bolts (9) are installed on one side of the outer wall of the inner base (602). The end of the auxiliary locking bolt (9) extends through the inner base (602) and the outside of the U-shaped vertical arm (603).

Citation Information

Patent Citations

  • Moisture-proof and warm-keeping type container house

    CN222066282U