Fireproof container and fireproof generator set

By installing fireproof partitions inside the box-type generator set, the dangers of fire and explosion during fuel combustion are eliminated, air circulation is quickly blocked, the spread of fire is controlled, and fire safety is improved.

CN224292385UActive Publication Date: 2026-05-29SHENZHEN DONGTAI MECHANICAL & ELECTRICAL EQUIPMENT CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN DONGTAI MECHANICAL & ELECTRICAL EQUIPMENT CO LTD
Filing Date
2025-06-27
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing box-type generator sets pose a fire and explosion hazard when fuel is burning, and it is difficult to quickly isolate the internal and external air circulation to control the spread of fire in abnormal situations.

Method used

A fireproof partition device, including a valve body and a pivotable blade, is installed inside the enclosure. It is electrically connected to the fire control device via an actuator and can quickly close the blade to cut off airflow in the event of a fire.

Benefits of technology

It enables the rapid blocking of airflow between the inside and outside of the enclosure in the event of a fire, controlling the fire within the enclosure and improving safety and fire prevention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of fireproof container, including box, main equipment and fire control device being installed in the box and shutter being set on the side wall of the box.In the shutter with the main equipment between installation can with the inside of the box and its outside isolation fireproof partition device, the fireproof partition device includes valve body, the parallel several pivotable vane being set in the valve body interior, control pivotable vane closes and opens actuating mechanism, wherein the valve body with the height adaptation of the inside of the box, the actuating mechanism with the fire control device electric connection.The fireproof container of the utility model has the advantages of quickly blocking the air flow between the inside and outside of the box and achieving rapid fire extinguishing when fire hazard occurs.In addition, the utility model further provides a fireproof generator set.
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Description

Technical Field

[0001] This utility model relates to the field of electromechanical engineering, specifically to a fireproof container and a fireproof generator set. Background Technology

[0002] In locations requiring or necessitating electricity, containerized or portable generator sets are commonly used. These sets are housed within shipping containers, allowing for convenient installation anywhere. The container contains fuel, such as diesel or natural gas, to power the generator. Air inlets and outlets are typically located on the side walls of the container to ventilate the interior and provide sufficient oxygen for combustion. However, under abnormal circumstances, combustion can pose a risk of fire and explosion within the container. Therefore, in the event of an emergency, it is necessary to isolate the space containing the generator set from other equipment within the container, or to isolate the entire container from the outside environment, to contain the danger within the container as quickly as possible and prevent it from spreading to surrounding buildings or facilities. Utility Model Content

[0003] The purpose of this invention is to provide a fireproof container that can quickly block the airflow between the inside and outside of the container body.

[0004] To achieve the objectives of this utility model, the following technical solution is adopted:

[0005] A fireproof container includes a container body, main equipment and a fire control device installed in the container body, and louvers disposed on the side wall of the container body. The container body is characterized by having a fireproof partition device installed between the louvers and the main equipment, capable of isolating the interior of the container body from its exterior. The fireproof partition device includes a valve body, a plurality of mutually parallel pivotable blades disposed inside the valve body, and an actuator for controlling the closing and opening of the pivotable blades. The valve body is height-adapted to the interior of the container body, and the actuator is electrically connected to the fire control device.

[0006] Optionally, the louvers include an air inlet louver disposed at the air inlet of the housing and an air outlet louver disposed at the air outlet of the housing.

[0007] Optionally, the actuator is fixed to one end face of the valve body.

[0008] Optionally, the valve body includes a first valve body and a second valve body arranged side by side, and the blades of the fireproof partition device include a plurality of parallel first pivotable blades disposed inside the first valve body and a plurality of parallel second pivotable blades disposed inside the second valve body, with a predetermined interval between the first valve body and the second valve body.

[0009] Optionally, there is a predetermined interval between the first valve body and the second valve body, and the actuator includes a first actuator and a second actuator, wherein the first actuator and the second actuator are disposed on opposite end faces of the first valve body and the second valve body.

[0010] Optionally, the first valve body and the second valve body are fixedly installed side by side, and the first actuator and the second actuator are respectively fixed on the mutually distant end faces of the first valve body and the second valve body.

[0011] Optionally, the first pivotable blade and the second pivotable blade share the same actuator, which is disposed between the first valve body and the second valve body and located on opposite end faces of the first valve body and the second valve body.

[0012] Optionally, the interior of the fireproof container also includes electrically operated louvers, and the fire control device includes a fire sensor.

[0013] When an abnormal fire occurs inside the enclosure, the fire sensor sends an alarm signal, and the fire control device responds to the alarm signal by controlling the fireproof partition and the electric louvers to close.

[0014] This utility model also provides a fireproof generator set, including the aforementioned fireproof container and the generator set placed inside the fireproof container.

[0015] Furthermore, the generator set is a diesel generator set or a gas generator set. Attached Figure Description

[0016] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, in which:

[0017] Figure 1 This is a structural schematic diagram of the fireproof container of this utility model;

[0018] Figure 2a This is a front structural schematic diagram of an embodiment of the fireproof partition device for a fireproof container of the present invention. In this embodiment, the valve body of the fireproof partition device includes two sub-valve bodies.

[0019] Figure 2bThis is a front structural schematic diagram of another embodiment of the fireproof partition device for the fireproof container of this utility model. In this embodiment, the valve body of the fireproof partition device does not have a sub-valve body.

[0020] Figure 3 This is a side view of the fireproof partition device of the fireproof container of this utility model;

[0021] Figure 4a This is a schematic diagram of the fireproof partition device of the fireproof container of this utility model in the open state of the blades.

[0022] Figure 4b This is a schematic diagram of the fireproof partition device of the fireproof container of this utility model in the closed state of the blades;

[0023] Figure 5a This is a schematic diagram of one embodiment of the louvers and fireproof partition device of the fireproof container of this utility model inside the container body. In this embodiment, the air inlet of the container body is located at the end of the container body.

[0024] Figure 5b This is a schematic diagram of one embodiment of the louvers and fireproof partition device of the fireproof container of this utility model inside the container body. In this embodiment, the air inlet of the container body is located on the side wall near the end of the container body.

[0025] Figure 5c This is a schematic diagram of another embodiment of the fireproof partition device of the fireproof container of this utility model inside the container. In this embodiment, the air inlet of the container is set on the side wall near the end of the container.

[0026] Figure 5d This is a schematic diagram of one embodiment of the louvers and fireproof partition device of the fireproof container of this utility model inside the container body. In this embodiment, the air inlet of the container body is set on the side wall and end near the end of the container body.

[0027] Figure 6 This is a schematic diagram of an embodiment of the installation structure for the louvers and fireproof partition device of the fireproof container of this utility model.

[0028] Figure 7 This is a schematic diagram of the electric louver structure of the fireproof container of this utility model.

[0029] Figure 8 This is a schematic diagram illustrating one embodiment of the installation structure of the electric louvers and fireproof partition device of the fireproof container of this utility model inside the container body.

[0030] Figure 9 This is a front view of one embodiment of the installation structure for the electric louvers and fireproof partition device of the fireproof container of this utility model. Detailed Implementation

[0031] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model and should not be construed as limiting this utility model.

[0032] Those skilled in the art will understand that, unless otherwise stated, the singular forms “a,” “an,” “the,” and “the” used herein may also include the plural forms. The term “and / or” as used herein includes all or any one and all combinations of one or more of the associated listed items.

[0033] It will be understood by those skilled in the art that, unless otherwise defined, all terms used herein (including technical and scientific terms) have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. It should also be understood that terms such as those defined in general dictionaries should be understood to have the same meaning as in the context of the prior art, and should not be interpreted in an idealized or overly formal sense unless specifically defined as herein.

[0034] like Figures 1 to 9 As shown, this utility model provides a fireproof container, which includes a container body 8, main equipment 9 and a fire control device (not shown) installed in the container body 8, and louvers 3 disposed on the side wall of the container body 8. A fireproof partition device 1 is installed between the louvers 3 and the main equipment 9 to isolate the interior of the container body 8 from its exterior. The fireproof partition device 1 includes a valve body 10, a plurality of mutually parallel pivotable blades 12 disposed inside the valve body 10, and an actuator 13 for controlling the opening and closing of the pivotable blades 12. The valve body 10 is adapted to the height of the interior of the container body 8, and the actuator 13 is electrically connected to the fire control device 1.

[0035] The shape of the box 8 described in this utility model includes, but is not limited to, a cuboid structure. This utility model is mainly described in detail using a cuboid box as an example. For the cuboid box, the sidewalls of the box include sidewalls in the longitudinal direction and sidewalls in the width direction (the sidewalls in the width direction are also the two ends). For the sake of distinction and ease of explanation, the sidewalls in the longitudinal direction are simply referred to as "sidewalls" and the sidewalls in the width direction are simply referred to as "ends".

[0036] The pivotable blade 12 of the fireproof partition device 1 is parallel to the bottom surface of the housing 8 when open, so that air can enter the interior of the housing 8 through the fireproof partition device 1. Of course, the pivotable blade 12 of the fireproof partition device 1 is not limited to being parallel to the bottom surface of the housing 8 when open; there may be a certain angle between them, depending on the specific situation.

[0037] like Figure 1 As shown, the louvers 3 include an air inlet louver 31 disposed at the air inlet of the housing 8 and an exhaust louver 32 disposed at the air outlet of the housing 8. Each louver 3 includes a plurality of blades, and when the blades are opened, a ventilation channel is formed between the blades. (Reference) Figure 1 The air inlet louvers 31 and the air outlet louvers 32 can be respectively installed on the two ends and / or the two side walls of the housing 8, thereby forming an air inlet 81 and an air outlet 83 in the housing 8. The air inlet and air outlet directions can be referred to by the arrows in the attached drawings. The main equipment 9 is located in the area between the air inlet 81 and the air outlet 83.

[0038] According to one embodiment, the main equipment 9 inside the fireproof container can be a generator set, such as a diesel generator set or a gas generator set. When the main equipment 9 is in operation, the louvers 3 are open, forming an air duct between the air inlet 81 and the air outlet 83 through the internal space of the container 8, creating air circulation within the container 8 and providing sufficient oxygen to the generator set to maintain stable power generation. When the main equipment 9 is not in operation, the louvers 3 are closed to seal the fireproof container. The louvers 3 can be automatically opened and closed by electric control or manually by personnel. In normal operation, a main control device is installed inside the fireproof container, which typically controls both the main equipment 9 and the louvers 3. The main control device can automatically start the fireproof container according to power demand, at which time the louvers 3 automatically open and the main equipment 9 begins operation. When the main equipment 9 stops operating, the louvers 3 also automatically close. In another embodiment, the venetian blinds 3 can remain open.

[0039] When the fire control device 1 detects a fire hazard inside the enclosure 8, it controls the actuator 13 of the fireproof partition device 1 to close the pivotable blades 12 of the fireproof partition device 1. This quickly isolates the airflow between the inside and outside of the enclosure 8 in the event of an accidental fire, confining the fire to the enclosure. In practice, closing the louvers 3 also prevents the fire from spreading to the outside of the enclosure 8 when a fire starts inside. However, in some implementations, the main equipment 9 and the louvers 3 are linked; the main equipment 9 may still be operating when a fire starts inside the enclosure, requiring manual shutdown of the main control device, which often takes time. Furthermore, there is usually a time difference between the main equipment 9 stopping operation and the louvers 3 closing. Therefore, installing a fireproof partition device 1 electrically connected to the fire control device 1 can quickly control the fire from spreading outside the enclosure.

[0040] The fireproof partition device 1 can be installed inside the louvers 3 adjacent to the air inlet 81 and / or air outlet 83 in the housing 8, or installed inside the housing 8 between the main equipment 9 and the air inlet 81 and / or air outlet 83, but not adjacent to the louvers 3. The following embodiments mainly use one end of the air inlet 81 as an example, and the louvers 3 installed on the air inlet 81 are also known as air inlet louvers.

[0041] The fireproof partition device 1 includes a valve body 10, a plurality of mutually parallel pivotable blades 12 disposed inside the valve body 10, and an actuator 13 for controlling the opening and closing of the pivotable blades 12. In one embodiment, as shown in FIG2, the valve body 10 includes upper and lower sub-valve bodies 100. In this embodiment, the actuator 13 can correspondingly be configured to include two sub-actuators 130, each of which controls the pivotable blades 12 in its corresponding sub-valve body 100. This is suitable when the housing 8 is relatively high, and when using a single actuator 130 to control all pivotable blades 12 is not very effective. In other embodiments, see reference... Figure 2b If a single actuator 13 can fully control all pivotable blades 12 in the valve body 10, then the valve body 10 only needs to be equipped with one actuator 13.

[0042] The pivotable blade 12 can pivot and rotate to achieve closing or opening. The plurality of pivotable blades 12 are interconnected. Specifically, refer to... Figure 4a and Figure 4b The actuator 13 includes a linkage rod 14, and a plurality of pivotable blades 12 are connected to the linkage rod 14 at least at the same end. The linkage rod 14 drives the plurality of pivotable blades 12 connected thereto to close or open synchronously.

[0043] The pivotable blades 12 are thin sheets made of metal. When the pivotable blades 12 are in the open state, each pivotable blade 12 rotates open and is parallel to each other, so that there is a certain distance between each pivotable blade 12, allowing air to flow through the valve body 10. When the pivotable blades 12 are in the closed state, each pivotable blade 12 rotates closed, the sides of two adjacent pivotable blades 12 abut against each other, and the edges of the pivotable blades 12 near the top and bottom of the valve body 10 abut against the top and bottom of the valve body 10, respectively, completely sealing the interior of the valve body 10 to block the airflow between the inside and outside of the housing 8.

[0044] For ease of description of the rapid closing of the fireproof partition device 1, the position of the linkage rod 14 when the pivotable blade 12 is in the open state is defined as the first position; and the position of the linkage rod 14 when the pivotable blade 12 is in the closed state is defined as the second position.

[0045] In one embodiment, the actuator 13 may be equipped with an electromagnetic relay (not shown). Under normal conditions, the electromagnetic relay magnetically attracts the linkage 14, confining the linkage 14 to the first position and keeping the pivotable blade 12 in an open state. (See reference...) Figure 4a Upon receiving an alarm signal, the actuator 13 controls the electromagnetic relay to instantly cut off the attraction force on the linkage 14, causing the linkage 14 to return to the second position, thus confining the pivotable blade 12 to a closed state. (Refer to...) Figure 4b Therefore, the position of the linkage rod 14 can be limited by the magnetic attraction of the electromagnetic relay to control the pivotable blade 12 to close instantaneously. In other embodiments, the actuator 13 may also be equipped with a limiter (not shown) and a spring (not shown). The limiter is used to restrict the linkage rod 14 to the first position, and the pivotable blade 12 is in the normal open state. In this state, the linkage rod 14 exerts a certain pressure on the spring, and the spring is in a compressed state. After receiving an alarm signal, the actuator 13 drives the limiter to release the restriction on the linkage rod 14, so that the linkage rod 14 quickly returns to the second position under the elastic force of the spring, thereby realizing the instantaneous closing of the pivotable blade 12. In other embodiments, the actuator 13 may also achieve the function of driving the pivotable blade 12 to close and open instantaneously through other mechanical structures, not limited to the two embodiments listed above. The specific structural settings of the aforementioned electromagnetic relay or limiter and spring can refer to the structure of the existing fire damper device, and will not be described in detail here.

[0046] The fire control device includes a fire sensor (not shown), which detects whether an abnormal fire has occurred inside the container body 8. If a fire occurs, it issues an alarm signal. The actuator 13 responds to the alarm signal from the fire sensor and controls the linkage 14 to switch from the first position to the second position in the shortest possible time, closing the pivotable blade 12. This allows the louvers 3 of the container body 8 to close before they do, promptly cutting off the ventilation passage in case of an emergency and controlling the spread of fire outside the container body 8 in the shortest possible time. The louvers 3 then close, further isolating the interior of the container body 8 from the outside.

[0047] The valve body 10 of the fireproof partition device 1 has a frame structure, including two end faces, a top, and a bottom.

[0048] In one embodiment, the air inlet 81 of the housing 8 is located on the side wall 801 near the end 802 of the housing 8, that is, the louvers 3 are installed only on the side wall 801 near the end 802. (Reference) Figure 1 The fireproof partition device 1 is installed on the inner side of the louver 3, meaning that the fireproof partition device 1 is perpendicular to the end 802 of the housing. The fireproof partition device 1 is height-adapted to the interior of the housing 8, and when closed, it completely blocks airflow between the interior of the housing 8 and the outside via the louver 3. In this embodiment, the fireproof partition device 1 includes a valve body 10, one end face 101 of which is fixed to the end of the housing 8. The valve body 10 covers at least all the louver blades of the louver 3. The actuator 13 is installed on the other end face 101 of the valve body 10, away from the end 802 of the housing 8. Optionally, a sound-absorbing plate with a sound-absorbing effect can also be provided between the louver 3 and the fireproof partition device 1.

[0049] In one embodiment, the air inlet 81 of the housing 8 is located on the end 802 of the housing 8. Figure 5a As shown, in this embodiment, the fireproof partition device 1 is disposed parallel to the louver 3 at a position inside the end 802 of the louver 3 or the housing 8, or at a position inside the housing 8 at a certain distance from the inside of the louver 3, for example, between the main equipment and the louver 3. The specific position can be determined according to the specific structure inside the housing 8. (Combined with...) Figure 5a and Figure 6As shown, in this embodiment, the valve body 10 of the fireproof partition device 1 includes a first valve body 1011 and a second valve body 1022 arranged side by side. The first valve body 1011 and the second valve body 1022 are respectively at the same height as the louver 3, and the first valve body 1011 and the second valve body 1022 together cover the louver blades of the louver 3. A plurality of parallel first pivotable blades 121 are arranged inside the first valve body 1011, and a plurality of parallel second pivotable blades 122 are arranged inside the second valve body 1022. One end face of the first valve body 1011 and the second valve body 1022 are respectively fixed to the side wall of the housing 8, and the other ends of the first valve body 1011 and the second valve body 1022 are spaced 6 apart from each other to allow maintenance personnel to pass through and maintain or repair the equipment inside the housing 8. Optionally, as... Figure 6 As shown, the first valve body 1011 and the second valve body 1022 each include two sub-valve bodies.

[0050] The actuator 13 includes a first actuator 131 and a second actuator 132, wherein the first actuator 131 is disposed on the end face 101 of the first valve body 1011, and the second actuator 132 is disposed on the end face 102 of the second valve body 1022. Optionally, as... Figure 6 As shown, the first actuator 131 and the second actuator 132 each include two sub-actuators, which control the pivotable blades 122 in the upper and lower sub-valve bodies respectively.

[0051] Optionally, the first valve body 1011 and the second valve body 1022 of the fireproof partition device 1 can also be fixedly installed side by side, that is, no gap is reserved between the first valve body 1011 and the second valve body 1022. In this embodiment, the first actuator 131 and the second actuator 132 are respectively fixed on the mutually distant end faces of the first valve body 1011 and the second valve body 1022.

[0052] Optionally, the first valve body 1011 and the second valve body 1022 share a single actuator 13, which is disposed between the first valve body 1011 and the second valve body 1022 and located on either end face 101 or 102 of the first valve body and the second valve body.

[0053] Alternatively, in one embodiment, reference is made to... Figure 5bThe air inlet 81 is located on two opposite side walls 801 near the end of the housing 8, i.e., the louvers 3 are located at the air inlet 81. The corresponding air intake direction of the housing 8 is indicated by the arrow in the attached drawing. In this embodiment, the valve body 10 of the fireproof partition device 1 is located inside the louvers 3 on the two side walls of the housing 8 and covers the corresponding louvers 3. The valve body 10 located inside the louvers 3 on each side wall 801 can be a single valve body 10 or include the first valve body 1011 and the second valve body 1022, depending on the size of the louvers 3. When a single valve body 10 is used, the actuator is located on the end face of the valve body 10 away from the end of the housing 8. When the valve body 10 includes the first valve body 1011 and the second valve body 1022, any of the structures described above can be used. Of course, as Figure 5c As shown, the fireproof partition device 1 can also be installed in the horizontal direction inside the housing 8 to separate all the louvers 3 on the two side walls 801 of the main equipment 9 and the air inlet 81.

[0054] In another embodiment, the louvers 3 are respectively disposed on the end 802 of the housing 8 and on the opposite side wall 801 near the end 802, such as... Figure 5d As shown, two air inlets 81 are formed on the end 802 and the side wall 801 near the end of the housing 8, allowing airflow to enter the housing 8 from the side wall 801 and the end 802 respectively, referring to the arrow directions in the attached drawings. In this embodiment, the fireproof partition device 1 is horizontally arranged inside the housing 8, separating the main equipment 9 and all the louvers 3 on the side wall 801 and the end 802 of the air inlet 81. When closed, the fireproof partition device 1 can completely block the airflow between the inside of the housing 8 and the outside of the housing 8 through the louvers 3.

[0055] Optionally, in one embodiment, the interior of the fireproof container body 8 may further include electrically operated louvers 7, such as... Figure 7 and Figure 8 As shown, the motorized louver 7 and the fireproof partition device 1 are arranged horizontally side by side close to each other inside the housing 8. The motorized louver 7 is located at one end near the air inlet / outlet, and the fireproof partition device 1 is located inside the motorized louver 7, or vice versa. Here, the motorized louver 7 also has a certain degree of fireproof function.

[0056] In this embodiment, under normal conditions, the louvers 3 of the air inlet and outlet of the fireproof container 8 can be normally open or manually opened or closed according to the working status of the main equipment 9. When the main equipment 9 inside the container 8 is not working, the motorized louvers 7 are closed to ensure the interior of the container 8 is sealed, preventing dust and other impurities from entering the container 8 and ensuring a clean working environment inside the container. When an abnormal fire occurs inside the container 8, the fire sensor sends an alarm signal, and the fire control device responds to the alarm signal by controlling the fireproof partition device 1 and the motorized louvers 7 to close. When the louvers 3 on the container can be opened / closed, they are then manually closed.

[0057] Optionally, the motorized louver 7 and the fireproof partition device 1 may also be located on the side closer to the main equipment; alternatively, one of the motorized louver 7 and the fireproof partition device 1 may be located on the side closer to the main equipment, and the other may be located on the side closer to the louver on the housing 8.

[0058] The above description is only an embodiment of the installation structure of the fireproof partition device 1 in the fireproof container of this utility model within the container body 8. Without departing from the core of this utility model, the installation position and structure of the fireproof partition device 1 can also be changed according to the different design structures of the air inlet and outlet of the fireproof container, or according to the changes in other functional requirements of the fireproof container. These will not be listed one by one here.

[0059] This utility model also provides a fireproof generator set, which includes a fireproof container as described above and a generator set placed inside the fireproof container. The generator set includes a diesel generator set or a gas generator set, etc.

[0060] The fireproof container is typically equipped with fire extinguishers such as dry powder fire extinguishers, CO2 fire extinguishers, and foam fire extinguishers to extinguish flames in case of an emergency. When a fire occurs inside the container 8, the fire control device will trigger the fire extinguisher to begin extinguishing the fire and simultaneously trigger the closure of the louvers 3. However, during the time between the triggering and closing of the louvers 3, the air inside the container 8 is still in a state of rapid airflow with the outside air, still providing sufficient oxygen for diesel or gas combustion. In addition, even if the fire extinguisher has been triggered, because the extinguishing material inside the container is in powder or foam form, the rapidly flowing air can easily disperse the extinguishing material, resulting in poor extinguishing effect in a short time. Therefore, under normal circumstances, when a fire occurs inside the container, the flames cannot be extinguished quickly, posing a greater safety hazard. Therefore, the fireproof generator set provided by this utility model is equipped with a fireproof partition device installed in the fireproof container, which can promptly block the airflow when the fireproof generator set catches fire, achieving rapid fire extinguishing.

[0061] After the fire hazard is eliminated, the blades of the fireproof partition device 1 or the louver 3 can be reopened electrically or manually.

[0062] Those skilled in the art will understand that the steps, measures, and solutions in the various operations, methods, and processes discussed in this application can be alternated, modified, combined, or deleted. Furthermore, other steps, measures, and solutions in the various operations, methods, and processes discussed in this application can also be alternated, modified, rearranged, decomposed, combined, or deleted. Furthermore, steps, measures, and solutions in the prior art that are similar to those disclosed in this application can also be alternated, modified, rearranged, decomposed, combined, or deleted.

[0063] The above description is only a partial embodiment of this application. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this application, and these improvements and modifications should also be considered within the scope of protection of this application.

Claims

1. A fireproof container, comprising a container body, main equipment and fire control devices installed in the container body, and louvers disposed on the side wall of the container body, characterized in that, A fireproof partition device is installed between the louvers and the main equipment to isolate the interior of the enclosure from the exterior. The fireproof partition device includes a valve body, a plurality of mutually parallel pivotable blades disposed inside the valve body, and an actuator for controlling the opening and closing of the pivotable blades. The valve body is adapted to the height of the interior of the enclosure, and the actuator is electrically connected to the fire control device.

2. The fireproof container according to claim 1, characterized in that, The louvers include an air inlet louver located at the air inlet of the housing and an exhaust louver located at the air outlet of the housing.

3. The fireproof container according to claim 1, characterized in that, The actuator is fixed to one end face of the valve body.

4. The fireproof container according to any one of claims 1 to 3, characterized in that, The valve body includes a first valve body and a second valve body arranged in parallel. The blades of the fireproof partition device include a plurality of parallel first pivotable blades disposed inside the first valve body and a plurality of parallel second pivotable blades disposed inside the second valve body.

5. The fireproof container according to claim 4, characterized in that, The first valve body and the second valve body have a predetermined interval, and the actuator includes a first actuator and a second actuator, wherein the first actuator and the second actuator are disposed on opposite end faces of the first valve body and the second valve body.

6. The fireproof container according to claim 5, characterized in that, The first valve body and the second valve body are fixedly installed side by side, and the first actuator and the second actuator are respectively fixed on the mutually distant end faces of the first valve body and the second valve body.

7. The fireproof container according to claim 4, characterized in that, The first pivotable blade and the second pivotable blade share the same actuator, which is disposed between the first valve body and the second valve body and located on opposite end faces of the first valve body and the second valve body.

8. The fireproof container according to any one of claims 1 to 3, characterized in that, The interior of the fireproof container also includes electrically operated louvers, and the fire control device includes a fire sensor. When an abnormal fire occurs inside the enclosure, the fire sensor sends an alarm signal, and the fire control device responds to the alarm signal by controlling the fireproof partition and the electric louvers to close.

9. A fireproof generator set, characterized in that, Includes a fireproof container as described in any one of claims 1 to 8 and a generator set placed in the fireproof container.

10. The fireproof generator set according to claim 9, characterized in that, The generator set is a diesel generator set or a gas generator set.