A fully enclosed firewall container
Through the combined design of modular fire protection units and heat conduction plates, a fully enclosed fire barrier is formed, which solves the weak points of traditional container fire protection design, realizes efficient fire protection and low-cost container fire protection upgrade, adapts to the transformation of old containers, and simplifies installation and maintenance.
Patent Information
- Application Number
- CN202511010590.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-22
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-07-22
AI Technical Summary
The fire protection design of traditional containers only lays a single layer of fireproof material on the side panels or the top, failing to form a fully enclosed fire barrier. Flames can easily spread from weak areas such as the bottom and corners. In addition, the existing fireproof structure is fixedly connected to the container body. Local damage requires overall replacement, resulting in high maintenance costs, difficulty in adapting to the renovation and upgrade of old containers, and poor versatility.
The fire protection unit adopts a modular design, including the first U-shaped and second U-shaped fire protection panels combined into a square frame, and forms a fully enclosed fire barrier through the heat conduction plate and the exhaust fan. The heat conduction plate increases the connection strength, the buffer filling block provides stability, the rotating block and the wedge block design are easy to install, the exhaust fan discharges heat, and the fire protection unit is removable and replaceable.
A fully enclosed fire barrier is achieved to prevent the spread of flames, reduce maintenance costs, adapt to the transformation of old containers, simplify the installation process, improve structural stability and fire protection effects, and save maintenance time and costs.
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Figure CN120504066B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of containers, in particular to a fully enclosed fire-wall container. Background Art
[0002] With the rapid development of the logistics and transportation industry, the safety, and particularly the fire resistance, of containers, the primary means of transporting goods, has received increasing attention. Traditional containers, often constructed of ordinary steel and plate materials, only meet basic structural load-bearing requirements and lack specialized fire protection. This poses a significant fire risk when transporting flammable goods such as chemical raw materials, textiles, and electronic products.
[0003] Most fireproof containers only have a single layer of fireproof material on the side panels or top, failing to form a fully enclosed fire barrier. Flames can easily spread from weak areas such as the bottom and corners, resulting in limited fireproofing effects. Existing fireproof structures are mostly fixedly connected to the container body. Once partially damaged, they need to be replaced as a whole, resulting in high maintenance costs. They are also difficult to adapt to the renovation and upgrade of old containers, resulting in poor versatility.
[0004] Therefore, it is necessary to propose a fully enclosed firewall container to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a fully enclosed fire wall container to solve the problem that most fireproof containers only have a single layer of fireproof material laid on the side panels or the top, which fails to form a fully enclosed fire barrier. The flames can easily spread from weak parts such as the bottom and corners, and the fire protection effect is limited. In addition, the existing fireproof structure is mostly fixedly connected to the container body. Once it is partially damaged, it needs to be replaced as a whole, which has high maintenance costs; it is difficult to adapt to the transformation and upgrading of old containers and has poor versatility.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a fully enclosed fire-walled container, comprising a container body and an exhaust fan arranged outside the container body, a plurality of fire-proof units connected to each other are arranged inside the container body along the length direction, and end fire-proof panels are provided at both ends of the container body;
[0007] A heat conduction mechanism is provided between two adjacent fire protection units;
[0008] The fireproof unit includes a first U-shaped fireproof plate and a second U-shaped fireproof plate, the first U-shaped fireproof plate and the second U-shaped fireproof plate are combined into a square frame, and an intermediate plate is slidably connected between both ends of the first U-shaped fireproof plate and the second U-shaped fireproof plate;
[0009] The heat conduction mechanism includes a heat conduction plate, and two adjacent first U-shaped fireproof plates and two second U-shaped fireproof plates are provided with mounting grooves on opposite sides. The mounting grooves are set to be U-shaped, and the heat conduction plates are slidably inserted into the two mounting grooves, and a cavity is provided inside the heat conduction plate. The inner side and the top end of the first U-shaped fireproof plate are respectively provided with a heat inlet and a heat exhaust port. A first docking hole and a second docking hole are provided on the heat conduction plate, and the first docking hole and the second docking hole correspond to the heat inlet and the heat exhaust port respectively. The cavity is connected to the first docking hole and the second docking hole.
[0010] Preferably, two grooves are provided at the top and bottom ends of the first U-shaped fireproof plate and the second U-shaped fireproof plate, and a rotating block is rotatably connected in the groove. A fixing bolt is provided between the grooves inside two adjacent first U-shaped fireproof plates, and the fixing bolt is embedded in the side wall of the groove.
[0011] Preferably, a wedge-shaped groove is provided on the opposite side of the rotating block on the first U-shaped fireproof plate and the second U-shaped fireproof plate, and a wedge block fits between the two wedge-shaped grooves;
[0012] The rotating blocks in the first U-shaped fireproof plate and the second U-shaped fireproof plate are arranged to rotate relative to each other and are relatively rotated and engaged in the corresponding grooves;
[0013] A pull handle is embedded in the two rotating blocks on the sides away from each other.
[0014] Preferably, a slot is provided at one end of the rotating block in the first U-shaped fireproof plate and the second U-shaped fireproof plate, and an auxiliary vertical plate is inserted into the slot.
[0015] Preferably, a first docking hole is provided on the inner side of the heat conducting plate, a second docking hole is provided on the top of the heat conducting plate, the first docking hole and the second docking hole are both connected to the cavity, a heat absorbing tube is inserted into the heat inlet, the two ends of the heat absorbing tube are connected to each other, one end of the heat absorbing tube extends into and is connected to the first docking hole, and the second docking hole is connected to the heat exhaust port;
[0016] Threaded holes are provided on the heat absorbing tube and the heat inlet, and a fixing screw is provided between the two threaded holes.
[0017] Preferably, a plurality of buffer filling blocks are fixed on the side of the first U-shaped fireproof plate and the second U-shaped fireproof plate away from each other, and the buffer filling blocks are embedded in the notches on both sides of the container body.
[0018] Preferably, a plurality of elastic resistance blocks are fixed to the top of the first U-shaped fireproof plate and the second U-shaped fireproof plate, and the plurality of elastic resistance blocks are arranged along the length direction of the first U-shaped fireproof plate and the second U-shaped fireproof plate and squeeze and resist the top of the inner part of the container body. A heat exhaust channel is formed between the two sides of the inner part of the container body and the adjacent elastic resistance blocks, the heat exhaust port is arranged in the heat exhaust channel, and the suction port of the exhaust fan is connected to the heat exhaust channel.
[0019] Preferably, the first U-shaped fireproof board and the second U-shaped fireproof board are configured as silicate fireproof boards.
[0020] Preferably, docking grooves and docking blocks are respectively provided on both sides of the middle plate along the length direction, and the ends of the first U-shaped fireproof plate and the second U-shaped fireproof plate are respectively provided with protruding blocks and sliding grooves corresponding to the docking grooves and docking blocks.
[0021] Preferably, temperature sensors are provided on the inner sides of the first U-shaped fireproof plate and the second U-shaped fireproof plate, and a door is provided at one end of the container body, one end fireproof plate is divided into two parts and is fixed to the inner side of the door by bolts, and the other end fireproof plate is fixed to the end of the container body away from the door.
[0022] The technical effects and advantages of the present invention are as follows:
[0023] 1. Multiple fire protection units adopt a modular design. Multiple fire protection units are connected to each other, which is convenient for installation inside the container body or later disassembly. They can be directly installed in existing containers without fire protection structure without modifying the container body frame, which greatly reduces the cost of fire protection upgrade of old containers. For installed fire protection units, if a single unit is damaged, only the corresponding unit needs to be replaced, avoiding the need for dismantling the entire unit, saving maintenance time and cost.
[0024] 2. After multiple fire protection units are connected along the length direction, a fully enclosed fire barrier is formed inside the container. The fire protection unit can not only wrap the internal cargo, but also effectively block the spread of external flames, play an isolation role, and at the same time increase the internal structural strength of the container;
[0025] 3. The combined design of the rotating block and the wedge block enables the rapid expansion and positioning of the fireproof board. The auxiliary vertical plate provides a fulcrum for movement. The plug-in structure of the fixing bolts and the heat conducting plate can be installed without professional tools. Ordinary workers can operate it after simple training, reducing the difficulty of construction.
[0026] 4. The heat conducting plate can increase the connection strength between the first U-shaped fireproof plate and the second U-shaped fireproof plate. At the same time, the heat conducting plate can improve the structural stability of the first U-shaped fireproof plate and the second U-shaped fireproof plate themselves, and form a heat dissipation channel between the two adjacent first U-shaped fireproof plates and the second U-shaped fireproof plates. When the internal heat dissipates to the top of the fireproof unit, the heat is extracted to the outside of the container body by the suction effect of the exhaust fan, avoiding fire caused by excessive heat.
[0027] 5. The interference fit between the buffer filling block and the container notch, the extrusion and resistance of the elastic resistance block on the top, and the transverse locking of the fixing bolts form a three-dimensional fixing system of "transverse-vertical-longitudinal", which prevents the fire protection unit from loosening during bumpy transportation and enhances the overall deformation resistance of the container.
[0028] 6. After the rotating block is reset, it is flush with the fireproof board, the fixing bolts are embedded in the groove, and the auxiliary vertical plate can be pulled out. These designs ensure that there is no protruding structure on the inside of the fireproof unit and it does not occupy the cargo storage space; the internal space of the frame-shaped structure is regular, which is convenient for cargo stacking and takes into account both fire prevention function and practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a schematic structural diagram of the fully enclosed firewall container of the present invention.
[0030] Figure 2 It is a structural schematic diagram of the fire protection unit of the present invention.
[0031] Figure 3 This is a schematic structural diagram of the first U-shaped fireproof board and the second U-shaped fireproof board of the present invention.
[0032] Figure 4 For the present invention Figure 3 Enlarged schematic diagram of point A in the middle.
[0033] Figure 5 It is a structural schematic diagram of the auxiliary vertical plate of the present invention.
[0034] Figure 6 For the present invention Figure 5 Enlarged schematic diagram of point B in the middle.
[0035] Figure 7 For the present invention Figure 5 Enlarged schematic diagram at point C in the middle.
[0036] Figure 8 Schematic diagram of the structure of the heat conducting plate of the present invention.
[0037] Figure 9 For the present invention Figure 8 Enlarged schematic diagram at point D in the middle.
[0038] Figure 10Schematic diagram of the internal structure of the heat conducting plate of the present invention.
[0039] In the figure: 1. Container body; 2. Exhaust fan; 3. Door; 4. Fireproof unit; 5. First U-shaped fireproof board; 6. Second U-shaped fireproof board; 7. Heat conduction plate; 8. Mounting groove; 9. First docking hole; 10. Second docking hole; 11. Heat exhaust port; 12. Elastic resistance block; 13. Buffer filling block; 14. Heat absorbing tube; 15. Middle plate; 16. Groove; 17. Rotating block; 18. Slot; 19. Handle; 20. Auxiliary vertical plate; 21. Wedge groove; 22. Wedge block; 23. Docking block; 24. Fixing bolt; 25. Heat inlet; 26. Threaded hole; 27. Docking groove; 28. Cavity; 29. End fireproof board. DETAILED DESCRIPTION
[0040] The present invention provides Figures 1 to 10 A fully enclosed fire-walled container is shown, comprising a container body 1 and an exhaust fan 2 arranged at the top end of the outer side of the container body 1 .
[0041] like Figure 2 As shown, a plurality of fire protection units 4 connected to each other are arranged inside the container body 1 along the length direction, wherein the fire protection unit 4 includes a first U-shaped fire protection board 5 and a second U-shaped fire protection board 6, and the U-shaped openings of the first U-shaped fire protection board 5 and the second U-shaped fire protection board 6 are arranged relative to each other.
[0042] A door 3 is provided at one end of the container body 1 , and end fireproof panels 29 are provided at both ends of the container body 1 . During installation, the two end fireproof panels 29 are installed first.
[0043] One of the end fireproof panels 29 is divided into two parts and is fixed to the inner side of the door 3 by bolts. It is used in conjunction with the two openable doors 3 and can also be installed by gluing. The other end fireproof panel 29 is fixed to the end of the container body 1 away from the door 3 by bolts or gluing, thereby forming a fully enclosed protection in conjunction with multiple fireproof units 4.
[0044] After multiple fire protection units 4 are docked along the length direction and cooperate with the two end fire protection panels 29, a fully enclosed fire protection barrier is formed inside the container body 1. The fire protection unit 4 can not only wrap the internal goods, but also effectively block the spread of external flames and play an isolation role, while increasing the internal structural strength of the container body 1, and the items can be placed inside the fire protection unit 4. At the same time, since multiple fire protection units 4 are docked with each other, they are easy to install inside the container body 1, and easy to disassemble and install later. At the same time, they can be installed inside containers that have been produced but do not have fire protection structures. When the fire protection unit 4 in a single area is damaged, only the fire protection unit 4 in the single area can be replaced, saving later maintenance and costs.
[0045] like Figure 3As shown, the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 are combined into a square frame shape, and an intermediate board 15 is slidably connected between both ends of the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6.
[0046] It should be noted that the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6, the end fireproof board 29 and the middle board 15 are all configured as silicate fireproof boards.
[0047] During installation, the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 can be pushed into the interior of the container body 1 first, and then the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 can be moved away from each other and correspond to the two sides of the interior of the container body 1, so that there is a distance between the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6, and then the middle board 15 is installed between the two. Through the interference of the middle board 15, the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 can be fixed, and at the same time, the two sides of the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 can be in contact with the interior of the container body 1, thereby forming a square frame.
[0048] Docking grooves 27 and docking blocks 23 are respectively provided on both sides of the middle plate 15 along the length direction, and the ends of the first U-shaped fire protection plate 5 and the second U-shaped fire protection plate 6 are respectively provided with protruding blocks and sliding grooves corresponding to the docking grooves 27 and the docking blocks 23, so that the middle plate 15 and the first U-shaped fire protection plate 5 and the second U-shaped fire protection plate 6 can form a bite with each other.
[0049] like Figure 5 As shown, a slot 18 is provided at one end of the rotating block 17 in the first U-shaped fireproof panel 5 and the second U-shaped fireproof panel 6, and an auxiliary vertical plate 20 is inserted into the slot 18 (either a common wooden board or metal plate corresponding to the size of the slot 18 can be used). By rotating the rotating block 17 perpendicular to the ground, the auxiliary vertical plate 20 can be inserted into the top of the slot 18, so that people can use the auxiliary vertical plate 20 to push the first U-shaped fireproof panel 5 and the second U-shaped fireproof panel 6 to move inside the container body 1, providing a fulcrum for hand pushing, which is convenient for people to push. After the installation is completed, the auxiliary vertical plate 20 can be pulled out without the need for additional tools.
[0050] like Figure 1As shown, a plurality of buffer filling blocks 13 are fixed on the side of the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 away from each other, and the buffer filling blocks 13 are embedded in the notches on both sides of the container body 1. The buffer filling blocks 13 and the notches are interference fit to form an embedded fixation, which can not only increase the structural stability of the first U-shaped fireproof board 5, the second U-shaped fireproof board 6 and the inner side of the container body 1, and prevent the fireproof unit 4 from moving due to external forces, but also play a role in buffering and sound insulation. The friction force of the buffer filling blocks 13 can help fix the fireproof unit 4 and reduce the risk of displacement. The buffer filling blocks 13 can be made of fireproof rubber material, or other elastic fireproof materials.
[0051] like Figure 3 、 4 As shown in Figures 5 and 6, two grooves 16 are provided at the top and bottom ends of the first U-shaped fireproof plate 5 and the second U-shaped fireproof plate 6, and a rotating block 17 is rotatably connected in the groove 16. The rotating blocks 17 in the first U-shaped fireproof plate 5 and the second U-shaped fireproof plate 6 are relatively rotatably arranged and relatively rotatably engaged in the corresponding grooves 16; a wedge-shaped groove 21 is provided on the opposite side of the rotating blocks 17 on the first U-shaped fireproof plate 5 and the second U-shaped fireproof plate 6, and a wedge block 22 fits between the two wedge grooves 21;
[0052] In the actual operation of the present invention, after the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 are placed into the interior of the container body 1, the rotating block 17 can be rotated and raised so that the rotating block 17 is perpendicular to the ground, and the groove 16 is opened. At this time, a wooden hammer can be used (other pressure tools can also be used) to embed the wedge block 22 into the two wedge-shaped grooves 21. Due to the obstruction of one end of the groove 16, the rotating block 17 will not rotate. The extrusion force of the wedge block 22 can make the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 move away from each other, leaving enough space between the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 for sliding and plugging the intermediate board 15. When the intermediate board 15 is installed, use a wooden hammer to hit the lower surface of the wedge block 22 from bottom to top to separate the wedge block 22 from the rotating block 17.
[0053] After the first U-shaped fireproof board 5, the second U-shaped fireproof board 6 and the two sides of the inner side of the container body 1 are respectively corresponding, the buffer filling block 13 will cause the first U-shaped fireproof board 5, the second U-shaped fireproof board 6 and the side of the container body 1 to produce a resistance force due to its own elastic force, which may easily cause the distance between the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 to become smaller, making it impossible to install the middle board 15. Through the action of the wedge block 22, there is enough space for the middle board 15 to be installed.
[0054] After the installation is completed, the elastic force of the buffer filling block 13 allows the first U-shaped fireproof board 5, the second U-shaped fireproof board 6 and the middle board 15 to be tightly connected. When the fire protection unit 4 needs to be disassembled, the wedge block 22 can also be embedded in the two wedge-shaped grooves 21 to squeeze the buffer filling blocks 13 at both ends, so that a gap is left between the first U-shaped fireproof board 5, the second U-shaped fireproof board 6 and the middle board 15, which is convenient for the middle board 15 to be detached and facilitate the later disassembly, and avoid the first U-shaped fireproof board 5, the second U-shaped fireproof board 6 and the middle board 15 from being locked, which makes the later disassembly difficult.
[0055] Compared with the direct connection between the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6,
[0056] By adding the middle plate 15, the length of the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 can be shortened. When the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 are moved into the container body 1, there will be more sufficient space for movement and rotation, which is convenient for adjustment.
[0057] like Figure 5 、 7 As shown, a fixing bolt 24 is provided between the grooves 16 inside two adjacent first U-shaped fireproof panels 5 , and the fixing bolt 24 is embedded in the side wall of the groove 16 .
[0058] When two adjacent fireproof units 4 are brought close to each other, the rotating block 17 in the groove 16 can be rotated upward to open the groove 16. The fixing bolts 24 can be used to connect and fix the two adjacent first U-shaped fireproof panels 5 and the two second U-shaped fireproof panels 6 to avoid movement after docking, forming a lock. After the rotating block 17 is rotated into the groove 16, the fixing bolts 24 are closed to avoid damage from collisions. After the rotating block 17 enters the groove 16, the rotating block 17 and the groove 16 form a plane, which will not affect the placement of goods later. It should be noted that the size of the embedded groove for the fixing bolt 24 on the inner wall of the groove 16 is sufficient for personnel to use tools (wrench or screwdriver) for fixing.
[0059] like Figure 4 As shown, a handle 19 is embedded in each of the two rotating blocks 17 on the side away from each other, which makes it convenient for people to rotate the rotating blocks 17 through the handle 19 .
[0060] like Figure 8 、 9As shown in Figure 10, a heat conduction mechanism is arranged between two adjacent fire protection units 4, and the heat conduction mechanism includes a heat conduction plate 7. Two adjacent first U-shaped fire protection plates 5 and two second U-shaped fire protection plates 6 are provided with mounting grooves 8 on opposite sides. The mounting grooves 8 are set to be U-shaped, and the heat conduction plates 7 are slidably inserted into the two mounting grooves 8, and a cavity 28 is provided inside the heat conduction plate 7. A first docking hole 9 and a second docking hole 10 are provided on the heat conduction plate 7. The first docking hole 9 and the second docking hole 10 correspond to the heat inlet 25 and the heat exhaust port 11 respectively, and the cavity 28 is connected to the first docking hole 9 and the second docking hole 10.
[0061] The heat conducting plate 7 can increase the connection strength between the first U-shaped fireproof plate 5 and the second U-shaped fireproof plate 6. At the same time, the heat conducting plate 7 is made of metal material such as 316 stainless steel or other metal materials, which can improve the structural stability of the first U-shaped fireproof plate 5 and the second U-shaped fireproof plate 6 itself, and form a heat dissipation channel between the two adjacent first U-shaped fireproof plates 5 and the two second U-shaped fireproof plates 6, so as to facilitate the dissipation of internal heat to the top of the fireproof unit 4, and then use the suction effect of the exhaust fan 2 to extract the heat to the outside of the container body 1 to avoid internal fire due to excessive heat.
[0062] Since hot air is light and easily floats up, the heat exhaust port 11 is provided at the top of the fire protection unit 4, which is more conducive to the exhaust of heat.
[0063] like Figure 9 、 10 As shown, a first docking hole 9 is formed on the inner side of the heat conducting plate 7, and a second docking hole 10 is formed on the top of the heat conducting plate 7. The first docking hole 9 and the second docking hole 10 are both connected to the cavity 28. A heat absorbing tube 14 is inserted into the heat inlet 25. The two ends of the heat absorbing tube 14 are connected to each other. One end of the heat absorbing tube 14 extends into and is connected to the first docking hole 9. The second docking hole 10 is connected to the heat exhaust port 11.
[0064] The heat absorbing tube 14 is made of copper to improve the heat conduction rate and a threaded hole 26 is provided on the heat inlet 25 , and a fixing screw is provided between the two threaded holes 26 .
[0065] The heat absorbing tube 14 can be embedded in the first U-shaped fireproof plate 5 by using fixing screws. It can be processed to prevent the heat absorbing tube 14 from falling. At the same time, it is used to connect the cavity 28 and the inside of the fireproof unit 4 to output heat. At the same time, the locking of the heat absorbing tube 14 can connect and fix the first U-shaped fireproof plate 5 and the heat conducting plate to avoid shaking between the two.
[0066] like Figure 1 、 2As shown, multiple elastic resistance blocks 12 are fixed to the top of the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6. The multiple elastic resistance blocks 12 are arranged along the length direction of the first U-shaped fireproof board 5 and the second U-shaped fireproof board 6 and squeeze and resist the top of the interior of the container body 1. A heat exhaust channel is formed between the two sides of the interior of the container body 1 and the adjacent elastic resistance blocks 12. The heat exhaust port 11 is arranged in the heat exhaust channel. The suction port of the exhaust fan 2 is connected to the heat exhaust channel. The heat dissipated from the heat exhaust port 11 can be gathered between the outermost elastic resistance block 12 and the side of the container body 1, reducing the space occupied by the heat and increasing the heat exhaust speed. It is also convenient to use with the exhaust fan 2 on the side of the actual container body 1.
[0067] Temperature sensors are provided on the inner sides of the first U-shaped fireproof panel 5 and the second U-shaped fireproof panel 6. A door 3 is provided at one end of the container body 1. The temperature sensor can monitor the temperature inside the fireproof unit 4 in real time, and the temperature sensor signal is connected to the remote control system, and the remote control system is connected to the exhaust fan 2 signal.
[0068] When the remote control system detects that the temperature signal is high, the exhaust fan 2 can be turned on to extract the internal heat.
Claims
1. A fully enclosed fire-wall container, comprising a container body (1) and an exhaust fan (2) arranged at the top end of the outer side of the container body (1), characterized in that: A plurality of fireproof units (4) that are connected to each other are provided inside the container body (1) along the longitudinal direction, and end fireproof panels (29) are provided at both ends of the container body (1); A heat conduction mechanism is provided between two adjacent fire protection units (4); The fireproof unit (4) comprises a first U-shaped fireproof plate (5) and a second U-shaped fireproof plate (6), the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6) are combined into a square frame, and an intermediate plate (15) is slidably connected between both ends of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6); The heat conduction mechanism comprises a heat conduction plate (7), and two adjacent first U-shaped fireproof plates (5) and two second U-shaped fireproof plates (6) are provided with mounting grooves (8) on opposite sides, and the mounting grooves (8) are set to be U-shaped, and the heat conduction plate (7) is slidably inserted into the two mounting grooves (8), and a cavity (28) is provided inside the heat conduction plate (7), and the inner side and top end of the first U-shaped fireproof plate (5) are respectively provided with a heat inlet (25) and a heat outlet (11), and the heat conduction plate (7) is provided with a first docking hole (9) and a second docking hole (10), and the first docking hole (9) and the second docking hole (10) correspond to the heat inlet (25) and the heat outlet (11), respectively, and the cavity (28) is communicated with the first docking hole (9) and the second docking hole (10).
2. The fully enclosed firewall container according to claim 1, characterized in that: Two grooves (16) are provided at the top and bottom ends of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6), and a rotating block (17) is rotatably connected in the groove (16). A fixing bolt (24) is provided between the grooves (16) in the two adjacent first U-shaped fireproof plates (5), and the fixing bolt (24) is embedded in the side wall of the groove (16).
3. The fully enclosed firewall container according to claim 2, characterized in that: A wedge-shaped groove (21) is provided on the opposite side of the rotating block (17) on the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6), and a wedge block (22) is fitted between the two wedge-shaped grooves (21); The rotating blocks (17) in the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6) are arranged to rotate relative to each other and are relatively rotated and engaged in the corresponding grooves (16); A pull handle (19) is embedded in each of the two rotating blocks (17) on one side away from each other.
4. The fully enclosed firewall container according to claim 2, characterized in that: One end of the rotating block (17) in the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6) is provided with a slot (18), and an auxiliary vertical plate (20) is inserted into the slot (18).
5. The fully enclosed firewall container according to claim 1, characterized in that: A heat absorbing tube (14) is inserted into the heat inlet (25), and both ends of the heat absorbing tube (14) are connected to each other. One end of the heat absorbing tube (14) extends into and is connected to the first docking hole (9), and the second docking hole (10) is docked and connected to the heat exhaust port (11); The heat absorbing tube (14) and the heat inlet (25) are both provided with threaded holes (26), and a fixing screw is provided between the two threaded holes (26).
6. The fully enclosed fire-wall container according to claim 1, characterized in that: A plurality of buffer filling blocks (13) are fixed on the side of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6) away from each other, and the buffer filling blocks (13) are embedded in the notches on both sides of the container body (1).
7. The fully enclosed firewall container according to claim 1, characterized in that: A plurality of elastic resistance blocks (12) are fixed to the top of each of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6). The plurality of elastic resistance blocks (12) are arranged along the length direction of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6) and are pressed against the top of the interior of the container body (1). A heat exhaust channel is formed between the two sides of the interior of the container body (1) and the adjacent elastic resistance blocks (12). The heat exhaust port (11) is arranged in the heat exhaust channel, and the suction port of the exhaust fan (2) is connected to the heat exhaust channel.
8. The fully enclosed fire-wall container according to claim 1, characterized in that: The first U-shaped fireproof board (5) and the second U-shaped fireproof board (6) are configured as silicate fireproof boards.
9. The fully enclosed firewall container according to claim 1, characterized in that: Both sides of the intermediate plate (15) are provided with docking grooves (27) and docking blocks (23) along the length direction, and the ends of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6) are provided with protruding blocks and sliding grooves corresponding to the docking grooves (27) and the docking blocks (23).
10. The fully enclosed fire-wall container according to claim 1, characterized in that: Temperature sensors are provided on the inner sides of the first U-shaped fireproof plate (5) and the second U-shaped fireproof plate (6). A door (3) is provided at one end of the container body (1), wherein one end fireproof plate (29) is divided into two parts and is fixed to the inner side of the door (3) by bolts, and the other end fireproof plate (29) is fixed to the end of the container body (1) away from the door (3).
Citation Information
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