A boxcar system integrating multiple modular rooms
By integrating a multi-module boxcar system, the problem of unstable rest areas in boxcars is solved, providing a stable and comfortable rest environment to meet the diverse needs of staff.
Patent Information
- Application Number
- CN202310012559.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2022-12-30
- Filing Date
- 2023-01-05
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2043-01-05
AI Technical Summary
The existing boxcar has a simple structure, resulting in a compact rest area for workers and no fixed area, which is inconvenient for rest.
The design integrates a multi-module boxcar system, including module houses, rotating side entry panels, track partitioning mechanisms, and locking support components. The module houses can be moved and fixed on both sides of the boxcar, and are equipped with insulation materials, a two-way ventilation system, an independent power supply, and a pressure sensor and power consumption monitoring system.
It provides staff with a more concentrated and stable rest area to meet different functional needs, ensures that the modular room does not shake during transportation, and improves comfort through independent power supply and temperature regulation.
Smart Images

Figure CN116022178B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of boxcar systems, and specifically to a boxcar system integrating multiple modular rooms. Multiple modular rooms are applied in the boxcar system to provide a more concentrated and stable rest area for workers. Background Art
[0002] A boxcar, also known as a covered wagon or, more commonly, a sealed tank car, is a type of enclosed train car, typically used to transport freight. While more complex in design and construction than a flatcar, it is one of the most versatile railway freight cars because there is no need to worry about passengers or cargo being thrown from the train. Boxcars have side doors, whose size and opening / closing method depend on their intended use. They are a general-purpose type of railway freight car, used to transport goods vulnerable to sun, rain, and snow, including various grains, daily industrial products, and valuable equipment.
[0003] For boxcars used to transport goods, since the structure of the boxcars is simpler, the rest area for the staff is compact and there is no fixed area, which makes it inconvenient for the staff to rest in the boxcars. Summary of the Invention
[0004] To this end, the present invention provides a boxcar system with integrated multi-module rooms to solve the technical problem in the prior art that the rest area for staff is compact and has no fixed area due to the simpler structure of the boxcar, making it inconvenient for staff to rest in the boxcar.
[0005] In order to solve the above technical problems, the present invention specifically provides the following technical solutions:
[0006] A boxcar system integrating multiple modular houses, comprising:
[0007] Modular room, divided into lounge, washroom and storage room according to housing function
[0008] The rotating side entry panel is hinged on the side surface of the boxcar to form the entrance to the modular room;
[0009] Track partitioning mechanisms are provided on both sides of the central axis of the floor of the boxcar, respectively forming a plurality of installation partitions for limiting the linear movement of the modular house along the floor of the boxcar;
[0010] Locking support components, arranged inside and outside the track partition mechanism, for supporting the bottom of the modular house to improve the stability of the floor of the modular house and for locking the four bottom corners of the modular house;
[0011] The modular house enters the interior of the boxcar along the rotating side entry plate and moves to different installation partitions along the track partitioning mechanism. The modular house is fixed in each installation partition by the locking support assembly so that the modular house is fixed on both sides of the boxcar and does not shake when the boxcar moves.
[0012] As a preferred solution of the present invention, two adjacent modular houses on the same side of the boxcar are fixedly connected via an interface plate.
[0013] As a preferred solution of the present invention, the side walls of the modular rooms are filled with thermal insulation materials, and each modular room is equipped with a two-way ventilation system to adjust the air temperature inside the modular room.
[0014] The walls of the modular house are made of glass fiber reinforced plastic skin and XPS thermal insulation extruded and bonded together, and keels and wiring pipes are pre-buried inside the walls of the modular house. The decorative interior walls of the modular house are bubble or cloth-textured glass fiber reinforced plastic wall panels.
[0015] As a preferred solution of the present invention, each module room is provided with a wiring system, the wiring system is provided with a plurality of parallel power terminals, and each module room is provided with a power socket on the room body.
[0016] As a preferred solution of the present invention, a battery box is also installed in the boxcar, and the output end of the battery box is connected to the power socket of each module room through parallel wiring. The battery box provides independent power supply for each module room.
[0017] As a preferred solution of the present invention, a plurality of evenly distributed pressure sensors are provided on the bottom plate of the modular house, all the pressure sensors are connected to a control system, the output end of the control system is connected to a plurality of buzzers, each of the buzzers corresponds to the installation position of a single modular house, and the control system regulates the operation of the buzzers at the same horizontal position and in a symmetrical distribution according to the position of the pressure sensor outputting data, so that the modular houses are symmetrically distributed on both sides of the boxcar.
[0018] As a preferred solution of the present invention, each module room is provided with a power consumption monitoring system, which allocates a rated power consumption to each module room and regulates the power supply of each module room according to the power consumption.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] This embodiment applies multiple modular rooms in the boxcar system to provide a more concentrated and stable rest area for workers. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are merely exemplary, and those skilled in the art can derive other implementation drawings based on the provided drawings without inventive effort.
[0022] Figure 1 A schematic diagram of the structure provided by an embodiment of the present invention.
[0023] The numbers in the figure represent the following: DETAILED DESCRIPTION
[0024] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0025] like Figure 1 As shown, the present invention provides a boxcar system integrating multiple modular houses, comprising:
[0026] Modular room, divided into lounge, washroom and storage room according to housing function
[0027] The rotating side entry panel is hinged on the side surface of the boxcar to form the entrance to the modular room;
[0028] Track partitioning mechanisms are provided on both sides of the central axis of the floor of the boxcar, respectively forming a plurality of installation partitions for limiting the linear movement of the modular house along the floor of the boxcar;
[0029] Locking support components, arranged inside and outside the track partition mechanism, for supporting the bottom of the modular house to improve the stability of the floor of the modular house and for locking the four bottom corners of the modular house;
[0030] The modular house enters the interior of the boxcar along the rotating side entry plate and moves to different installation partitions along the track partitioning mechanism. The modular house is fixed in each installation partition by the locking support assembly so that the modular house is fixed on both sides of the boxcar and does not shake when the boxcar moves.
[0031] A plurality of evenly distributed pressure sensors are provided on the bottom plate of the modular house, and all the pressure sensors are connected to a control system. The output end of the control system is connected to a plurality of buzzers, and each buzzer corresponds to the installation position of a single modular house. The control system regulates the operation of the buzzers at the same horizontal position and in a symmetrical distribution according to the position of the pressure sensor outputting data, so that the modular houses are symmetrically distributed on both sides of the boxcar.
[0032] The dimensions of the modular house are 2000mm×1500mm×2100mm. The functions of the house are divided into lounge (220kg), washroom (200kg), storage room (240kg), battery box (single group 30kg), foldable solar panel (20kg). The placement of the modular house should try to meet the requirements of the transportation center of gravity.
[0033] Modular housing features: All rooms have the same dimensions, but different internal functions and accessories. The interior can be modified according to customer needs. Multiple fixing points are located on the exterior of the rooms, allowing them to be secured like ordinary cargo during transport on a boxcar. Modular housing can be freely combined to suit the number of people on a mission, and can be dismantled at any time after the mission is completed for centralized storage, charging, and cleaning.
[0034] Among them, the two adjacent module houses on the same side of the boxcar are fixedly connected through an interface board, and the module houses can be connected at will, and the connection only requires a cable aviation plug to connect the circuit.
[0035] The side walls of the modular houses are filled with insulation material, and each modular house has a two-way ventilation system to adjust the air temperature inside the modular house. The walls of the modular houses are made of fiberglass skin and XPS insulation extruded and bonded together, and the walls of the modular houses are pre-embedded with keels and wiring pipes. The decorative interior walls of the modular houses are bubble or cloth-textured fiberglass wall panels.
[0036] Each module room is provided with a wiring system, the wiring system is provided with a plurality of parallel power terminals, and the room body of each module room is provided with a power socket.
[0037] A battery box is also installed in the boxcar, and the output end of the battery box is connected to the power socket of each module room through parallel wiring. The battery box provides independent power supply for each module room.
[0038] The wall panels are designed to be light and suitable for manual movement; the battery pack provides power for the entire house complex, which can maintain lighting and charge electronic equipment. The number of battery packs is set according to the supply cycle, and foldable solar panels are also configured to replenish the power supply at any time. In case of insufficient power (how to combine with the structural design of the simple house), emergency lighting can be used; daily maintenance requires that the dirt and gray water in the washroom be discharged through the vehicle sewage outlet. There is no large sewage storage tank inside, and domestic water needs to be replenished by oneself.
[0039] Each module room is provided with a power monitoring system, which allocates a rated power consumption to each module room and regulates the power supply of each module room according to the power consumption.
[0040] The battery box consists of four 12V500AH battery modules connected in parallel. The battery box has the following modules:
[0041] (1) Solar charging plug: connects the solar controller and the battery. Used to charge the battery with solar energy.
[0042] (2) Solar controller: The output end is connected to the battery, and the input end is connected to the solar panel through the battery's aviation plug.
[0043] (3) Battery module: provides power to the boxcar module.
[0044] (4) Battery plug: used to connect batteries for parallel connection and discharge output.
[0045] (5) Mains charging plug: used to connect the external charger and battery.
[0046] (6) Charger: Charging current 100A. One end is connected to the mains socket, and the other end is connected to the battery box connector. Used for battery charging.
[0047] (7) Inverter: Power 250W, used for heating the battery box and bathroom.
[0048] When the boxcar module needs power supply, close the power supply circuit breaker in the distribution box. When the DC12V power supply on the distribution box lights up, it means that the battery provides power to the boxcar. When the power consumption of each module room reaches the rated consumption, the power supply of the module room is immediately turned off to ensure that the power supply of the boxcar can reach the set distance.
[0049] This embodiment applies modular rooms in the boxcar system to provide a more concentrated and stable rest area for workers.
[0050] The above embodiments are merely exemplary embodiments of the present application and are not intended to limit the scope of the present application. The scope of protection of the present application is defined by the claims. Those skilled in the art may make various modifications or equivalent substitutions to the present application within the essence and scope of protection of the present application, and such modifications or equivalent substitutions shall also be deemed to fall within the scope of protection of the present application.
Claims
1. A boxcar system integrating multiple modular rooms, characterized in that: include: The modular house is divided into lounge, washroom and storage room according to the function of the house. The rotating side entry panel is hinged on the side surface of the boxcar to form the entrance to the modular room; Track partitioning mechanisms are provided on both sides of the central axis of the floor of the boxcar, respectively forming a plurality of installation partitions for limiting the linear movement of the modular house along the floor of the boxcar; Locking support components, arranged inside and outside the track partition mechanism, for supporting the bottom of the modular house to improve the stability of the floor of the modular house and for locking the four bottom corners of the modular house; The modular house enters the interior of the boxcar along the rotating side entry plate and moves to different installation partitions along the track partitioning mechanism. The modular house is fixed in each installation partition by the locking support assembly so that the modular house is fixed on both sides of the boxcar and does not shake when the boxcar moves.
2. The integrated multi-module boxcar system according to claim 1, characterized in that: Two adjacent module houses on the same side of the boxcar are fixedly connected via an interface plate.
3. The integrated multi-module boxcar system according to claim 1, characterized in that: The side walls of the modular rooms are filled with thermal insulation materials, and each modular room is equipped with a two-way ventilation system to adjust the air temperature inside the modular room; The walls of the modular house are made of glass fiber reinforced plastic skin and XPS thermal insulation extruded and bonded together, and keels and wiring pipes are pre-buried inside the walls of the modular house. The decorative interior walls of the modular house are bubble or cloth-textured glass fiber reinforced plastic wall panels.
4. The integrated multi-module boxcar system according to claim 1, characterized in that: Each module room is provided with a wiring system, the wiring system is provided with a plurality of parallel power terminals, and the room body of each module room is provided with a power socket.
5. The integrated multi-module boxcar system according to claim 4, characterized in that: A battery box is also installed in the boxcar, and the output end of the battery box is connected to the power socket of each module room through parallel wiring. The battery box provides independent power supply for each module room.
6. The integrated multi-module boxcar system according to claim 1, characterized in that: A plurality of evenly distributed pressure sensors are provided on the bottom plate of the modular house, and all the pressure sensors are connected to a control system. The output end of the control system is connected to a plurality of buzzers, and each buzzer corresponds to the installation position of a single modular house. The control system regulates the operation of the buzzers at the same horizontal position and in a symmetrical distribution according to the position of the pressure sensor outputting data, so that the modular houses are symmetrically distributed on both sides of the boxcar.
7. The integrated multi-module boxcar system according to claim 1, characterized in that: Each module room is provided with a power monitoring system, which allocates a rated power consumption to each module room and regulates the power supply of each module room according to the power consumption.
Citation Information
Patent Citations
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