Water hose storage device

By designing a hose storage device with limiting constraints and direct unfolding function inside the tank, the problem of cumbersome operation of existing fire hose storage is solved, and the efficiency of emergency rescue and firefighting is improved.

CN223831662UActive Publication Date: 2026-01-27平裕(成都)科技有限公司
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Patent Information

Application Number
CN202423304503.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing methods of storing fire hoses are cumbersome, affecting the efficiency of emergency response, and are prone to tangling, which hinders the laying work.

Method used

Design a hose storage device, including a box, a press-fit port and a pull-out port, which realizes the limiting constraint and direct unfolding of fire hoses through the components, simplifying the operation process.

Benefits of technology

By using internal limiting constraints and a direct unfolding function, the unlocking steps are reduced, improving the efficiency of emergency rescue and firefighting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a water hose storage device which comprises a box body, an inner cavity used for containing a fire hose is formed in the box body, a press-fitting opening with an upward opening is formed in the box body, a drawing opening is formed in the side face of the box body, and a passing part used for clamping the fire hose into the drawing opening from the side face of the drawing opening is arranged between the press-fitting opening and the drawing opening. The drawing opening is formed in the side face of the box body, in the using process, the fire hose connector extending out of the box body is drawn out with the help of external force, the fire hose can be directly unfolded, the unlocking step is reduced, and the efficiency of emergency rescue and fire fighting is improved.
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Description

Technical Field

[0001] This utility model relates to the field of fire-fighting equipment, specifically to a hose storage device. Background Technology

[0002] Fire hoses are an essential component of firefighting facilities, primarily used in firefighting operations, and are the most common and frequently used water supply equipment. Fire hoses can be made with an inner rubber lining and an outer layer of woven linen, or they can be made from polymer materials such as polyurethane. During use, both ends of the fire hose are equipped with compatible male and female connectors (collectively referred to as hose couplings). The use of these connectors allows for the quick connection of two fire hoses to meet different delivery distances at a fire scene.

[0003] In existing technology, when storing fire hoses, the fire hoses need to be laid straight on the ground, and both ends of the fire hoses need to be folded so that the male and female connectors are on the same end and maintain a distance of about 20cm. Then, starting from the middle fold, the hoses are wound into a round shape, and then tied with a rope or wire through the middle fold. This completes the storage process.

[0004] However, in emergency fire fighting situations, the existing methods of storing fire hoses have several drawbacks. First, at the fire scene, it is necessary to first untie the ropes or wires used for storing, which is cumbersome. Especially when using wires, tools may be needed, affecting the efficiency of the rescue. Second, when laying the hoses, the existing storage methods are prone to causing the fire hoses to get tangled, which is not conducive to completing the laying work quickly and affects the efficiency of the rescue. Utility Model Content

[0005] The purpose of this utility model is to solve the technical problem that the traditional method of untying fire hoses by binding them with ropes or wires is too cumbersome. It provides a fire hose storage device that can accommodate fire hoses in a housing and provide limiting restraint at the passageway. The fire hose can be directly unfolded by pulling on the end of the hose through the pull-out port, simplifying the unfolding process and improving rescue efficiency. The main concept is as follows:

[0006] A hose storage device includes a housing with an inner cavity for accommodating fire hoses. The housing has an upward-opening press-fit port and a pull-out port on the side of the housing. A passage is provided between the press-fit port and the pull-out port for the fire hose to be inserted into the pull-out port from the side. The internal cavity of this enclosure can accommodate a folded fire hose. The enclosure has an upward-facing press-fit port, allowing the fire hose to enter the internal cavity through the press-fit port. After the folded fire hose is stored in the internal cavity, a pull-out port is provided on the side of the enclosure. When the fire hose is stored in the internal cavity, the hose connectors at both ends need to extend from the internal cavity through the pull-out port to the outside of the enclosure for easy pulling. A passage for the fire hose to be inserted is provided on the enclosure, located between the press-fit port and the pull-out port. During use, the fire hose can be directly unfolded by pulling out the hose connectors extending outside the enclosure with external force, reducing the unlocking steps and improving the efficiency of fire fighting.

[0007] Preferably, the passage portion includes a limiting member disposed on the housing and a locking channel constructed at one end of the limiting member, with the press-fit port and the pull-out port connected through the locking channel. Under the action of the locking channel, the fire hose is inserted into the pull-out port from the press-fit port. The locking member enables the fire hose to be restrained and limited after entering the pull-out port.

[0008] Preferably, the passage portion includes two limiting members, which are arranged opposite to each other, forming the locking channel between the two limiting members.

[0009] Preferably, the passage portion includes a connecting port and a limiting member constructed in the housing. The housing is provided with a positioning portion, and the limiting member is detachably installed in the positioning portion. When the limiting member is installed in the positioning portion, the limiting member separates the pressing port and the pull-out port. When the limiting member is detached from the positioning portion, the pressing port and the pull-out port are connected through the connecting port. The limiting member is movably connected to the positioning portion. When the fire hose needs to be inserted into the pull-out port, the limiting member is removed from the locking channel position through the positioning portion. After the end of the fire hose is inserted into the pull-out port, the limiting member is installed on the upper end of the fire hose for limiting and restraining by the positioning portions provided on both sides of the pull-out port.

[0010] Preferably, the limiting member (32) is detachably connected to the positioning part (33) by fasteners; or, the positioning part (33) is provided on both sides of the communication port, and the two ends of the limiting member (32) are provided with plugs that cooperate with the positioning part (33), and at least one plug is connected to the limiting member (32) by an elastic member (34), the elastic member (34) being used to realize the extension and retraction of the plug within the limiting member (32).

[0011] Preferably, the passage portion includes a connecting port and a limiting member constructed in the housing. The housing is provided with a positioning part. One end of the limiting member is hinged to the housing, and the other end is constructed with a mating part adapted to the positioning part. The limiting member is locked to the housing by fasteners of the mating part and the positioning part, and separates the press-fit port and the pull-out port. After the limiting member is unlocked, it can rotate relative to the housing and connect the press-fit port and the pull-out port through the connecting port.

[0012] Preferably, the enclosure includes a frame and a baffle layer. The frame has several windows, and the baffle layer is disposed on the frame and covers the windows. The enclosure is assembled using the frame and the baffle layer, and the frame has several windows. A baffle layer of suitable material can be installed at the window positions.

[0013] Preferably, the pull-out opening is a rectangular hole structure, and the width of the pull-out opening is greater than the outer diameter of the fire hose; the inner cavity structure is a cuboid structure, and the width of the inner cavity is adapted to the outer diameter of the fire hose; the box structure is a cuboid structure. The frame used for supporting the box is set as a rectangular frame structure, so that the storage device can be stacked as a whole on a fire truck or shelf; the width of the pull-out opening is greater than the outer diameter of the fire hose, so that the fire hose can be easily pulled out of the pull-out opening.

[0014] Preferably, a roller is installed at the lower end of the pull-out opening, and the roller is rotatably installed on the box body; and / or, it also includes a lifting assembly, which includes a handle and a connecting part disposed on both sides of the press-fit opening, and the handle is detachably connected to the connecting part. This design incorporates a roller at the lower end face of the pull-out opening. This prevents the fire hose from directly contacting the housing when pulled out by external force. It's important to note that when the fire hose is inside the cavity at the lower end of the pull-out opening, it will continuously contact the opening's end face. The roller transforms the friction between the hose and the opening into rolling friction, preventing scratches and reducing the hose's lifespan. Furthermore, a lifting assembly is installed at the top of the storage unit's housing. The handle facilitates handling during transport, enhancing the flexibility of the storage unit. The handle is movably connected to the housing via a connector, allowing it to be detached when storing the fire hose, freeing the area above the pressure port for hose storage.

[0015] Preferably, the system also includes a fire hose, which comprises a hose and hose connectors 1 and 2 at both ends. The hose is folded inside the housing, and hose connectors 1 and 2 extend to the outside of the housing through pull-out openings. Existing technologies involve folding the hose in half before winding. In this solution, the hose is not folded in half. After leaving enough length for hose connector 1, it is directly folded into the housing through the press-fit opening. Through continuous folding within the housing, the hose body is housed within the housing. Finally, hose connector 2 is placed at one end of the pull-out opening, and hose connector 1 is placed at the other end of the pull-out opening, with the guide section providing restraint.

[0016] Preferably, the water hose is folded in a Z-shape inside the tank.

[0017] The beneficial effects of this utility model are as follows:

[0018] The inner cavity of the housing can accommodate a folded fire hose. The housing has an upward-opening press-fit port, allowing the fire hose to enter the inner cavity through the press-fit port. After the folded fire hose is stored in the inner cavity, a pull-out port is provided on the side of the housing. When the fire hose is stored in the inner cavity, the hose connectors at both ends need to extend from the inner cavity through the pull-out port to the outside of the housing for easy pulling. A passage for the fire hose to be inserted is provided on the housing, located between the press-fit port and the pull-out port. During use, the fire hose can be directly unfolded by pulling out the hose connectors extending outside the housing with external force, reducing the unlocking steps and improving the efficiency of fire fighting. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of the box body of this utility model.

[0020] Figure 2 This is a schematic diagram of the framework of this utility model.

[0021] Figure 3 This is a schematic diagram of the structure of the through part of this utility model. Figure 1 .

[0022] Figure 4 This is a schematic diagram of the structure of the through part of this utility model. Figure 2 .

[0023] Figure 5 This is a schematic diagram of the structure of the fire hose of this utility model. Figure 1 .

[0024] Figure 6 This is a schematic diagram of the structure of the fire hose of this utility model. Figure 2 .

[0025] The reference numerals in the attached drawings include: 1. Box body; 11. Pressing port; 12. Frame; 13. Retaining layer; 2. Pull-out port; 3. Pass-through part; 31. Locking channel; 32. Limiting element; 33. Positioning part; 34. Elastic element; 35. Telescopic plug; 36. Adjusting lever; 4. Lifting assembly; 41. Handle; 42. Connecting part; 5. Roller; 6. Water hose; 7. Water hose connector one; 8. Water hose connector two. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of the embodiments clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this disclosure as detailed in the appended claims.

[0027] It should be noted that all actions involving the acquisition of signals, information, or data in this application are carried out in compliance with the relevant data protection laws and policies of the country where the application is located, and with the authorization granted by the owner of the relevant device.

[0028] In this disclosure, unless otherwise stated, directional terms such as "inner" and "outer" are defined based on the contours of the corresponding components. Terms such as "first" and "second" used in this disclosure are for distinguishing one element from another and do not imply sequence or importance.

[0029] Example 1

[0030] like Figures 1-5 As shown, a hose storage device according to this embodiment includes a box 1. The box 1 has an inner cavity for accommodating fire hoses. The box 1 is provided with a pressing port 11 with the opening facing upward. A pull-out port 2 is provided on the side of the box 1. A passage is provided between the pressing port 11 and the pull-out port 2 for the fire hose to be inserted into the pull-out port 2 from the side.

[0031] The inner cavity of the housing 1 in this design can accommodate a folded fire hose. The housing 1 is equipped with an upward-opening press-fit port 11, which allows the fire hose to enter the inner cavity of the housing 1 through the press-fit port 11. After the folded fire hose is stored in the inner cavity of the housing 1, a pull-out port 2 is provided on the side of the housing 1. When the fire hose is stored in the inner cavity of the housing 1, the hose connectors at both ends of the fire hose need to extend from the inner cavity through the pull-out port 2 to the outside of the housing 1 for easy pulling. A passage part 3 for the fire hose to be inserted is provided on the housing 1. The passage part 3 is located between the press-fit port 11 and the pull-out port 2. During use, the fire hose can be directly unfolded by pulling out the hose connectors protruding outside the housing 1 with external force, reducing the unlocking steps and improving the efficiency of fire fighting.

[0032] like Figure 2 As shown, the box 1 includes a frame 12 and a barrier layer 13. The frame 12 has a number of windows, and the barrier layer 13 is disposed on the frame 12 and blocks the windows.

[0033] The box 1 is assembled with the frame 12 and the baffle layer 13. The frame 12 is constructed with several windows. The baffle layer 13 of a suitable material can be installed at the window position. The baffle layer 13 can limit the side position of the fire hose placed inside the frame 12 under the action of the baffle layer, which can prevent the hose from losing restraint and spreading outward.

[0034] The frame 12 used to support the box 1 is set as a rectangular frame structure, and the frame 12 is constructed by welding multiple profiles.

[0035] The baffle layer 13 can be made of materials such as metal plate, acrylic plate, glass plate, metal wire mesh and cloth. In this embodiment, the baffle layer 13 is made of drainage cloth. The drainage cloth can not only reduce the overall weight of the box, but also drain the water carried by the fire hose after it is stored.

[0036] The pull-out opening 2 is a rectangular hole structure, and the width of the pull-out opening 2 is greater than the outer diameter of the fire hose; the inner cavity is a cuboid structure, and the width of the inner cavity is adapted to the outer diameter of the fire hose; the box body 1 is a cuboid structure.

[0037] The frame 12 supporting the box 1 is set as a rectangular frame structure, so that the storage device can be stacked as a whole on the fire truck or shelf; the width of the pull-out port 2 is greater than the outer diameter of the fire hose, so that the fire hose can be smoothly pulled out of the pull-out port 2, and the width of the inner cavity of the box 1 is also greater than the outer diameter of the fire hose, so that the fire hose can be accommodated in the inner cavity.

[0038] Example 2

[0039] like Figures 1-2As shown, the passage part 3 in this embodiment includes a limiting member 32 disposed on the housing 1 and a locking channel 31 constructed on one end of the limiting member 32. The pressing port 11 and the pull-out port 2 are connected through the locking channel 31.

[0040] The fire hose is inserted into the pull-out port 2 through the pressure port 11 under the action of the locking channel 31. In addition, the limiting member 32 can limit and constrain the fire hose after it enters the pull-out port 2.

[0041] The passage part 3 in this embodiment includes two limiting members 32, which are arranged opposite to each other, and the locking channel 31 is formed between the two limiting members 32.

[0042] In another embodiment, a limiting member 32 can be provided through part 3. One end of the limiting member 32 is fixed to one side of the pull-out port 2, and the limiting member 32 extends to the other side of the pull-out port 2. A gap is reserved between the other end of the limiting member 32 and the other side of the pull-out port 2 to form a locking channel 31.

[0043] In this embodiment, the width of the locking channel 31 is smaller than the diameter of the fire hose, and the width of the locking channel 31 is larger than the folded thickness of the fire hose after it is flattened, so that the minimum thickness of the fire hose after it is flattened can be locked into the locking channel 31.

[0044] Since the fire hose has hose connectors with a certain volume at both ends, the fire hose will partially block the opening of the pull-out port 2 after being folded inside the housing 1. It is difficult for the hose connectors at both ends of the fire hose to extend directly through the pull-out port 2 to the outside of the housing 1. Therefore, in this embodiment, the pull-out port 2 is connected to the press-fit port 11 on the top of the housing 1, so that the hose connectors with a certain volume at both ends of the fire hose can directly enter the area of ​​the pull-out port 2 in the direction of the press-fit port 11. The part 3 can also limit and constrain the fire hose after it is stored. If the volume of the hose connectors at both ends of the fire hose is greater than the width of the pull-out port 2, both ends of the fire hose can be inserted into the pull-out port 2 through the locking channel 31.

[0045] Example 3

[0046] like Figure 3 As shown, the passage part 3 in this embodiment includes a connecting port and a limiting member 32 constructed in the box body, and the box body is provided with a positioning part 33. The connecting port is an opening formed at the connection position of the press-fit port 11 and the pull-out port 2.

[0047] In one embodiment, the limiting member 32 is detachably installed on the positioning part 33. When the limiting member 32 is installed on the positioning part 33, the limiting member 32 separates the pressing port 11 and the pull-out port 2. When the limiting member 32 is removed from the positioning part 33, the pressing port 11 and the pull-out port 2 are connected through the communication port.

[0048] When the fire hose begins to fold inside the housing 1, the connection between the limiting member 32 and the positioning part 33 is first released, so that the limiting member 32 is completely disassembled and completely separated from the positioning part 33. The fire hose connector enters the pull-out port 2 through the connecting port by pressing down. After the fire hose is completely stored, the limiting member 32 is reinstalled in the positioning part 33 for limiting and tightening.

[0049] In another embodiment, the through part 3 includes a communication port and a limiting member 32 constructed in the box body. The box body is provided with a positioning part 33. One end of the limiting member 32 is hinged to the box body, and the other end is constructed with a mating part adapted to the positioning part 33. The limiting member 32 is locked to the box body by fasteners that adapt to the mating part and the positioning part 33, and separates the press-fit port 11 and the pull-out port 2. After the limiting member 32 is unlocked, it can rotate relative to the box body 1, and the press-fit port 11 and the pull-out port 2 are connected through the communication port.

[0050] When the fire hose begins to fold inside the housing 1, the connection between the limiting member 32 and the positioning part 33 is first released, so that the limiting member 32 can rotate through the hinge structure on one side, so that the limiting member 32 does not interfere with the connecting port. The fire hose connector enters the pull-out port 2 through the connecting port by pressing down. After the fire hose is completely stored, the limiting member 32 is rotated back and reinstalled in the positioning part 33 for limiting and tightening.

[0051] The positioning part 33 can be configured as a snap-fit ​​groove and a mounting ear plate, and the mating part of the limiting member 32 is provided with a snap-fit ​​head and a positioning hole, etc.

[0052] In this embodiment, the limiting member 32 is disposed within the communicating opening; the positioning part 33 is a positioning ear plate with mounting holes, and the positioning part 33 is detachably connected to the positioning holes provided in the mating part of the limiting part 32 via bolt assemblies. In this embodiment, the positioning part 33 adopts double ear plates arranged opposite each other, and the mating part of the limiting member 32 is set as a single ear plate. The single ear plate of the limiting member 32 is inserted between the double ear plates of the positioning part 33, and the mounting holes are aligned coaxially, and a detachable connection is made by connecting bolts.

[0053] Example 4

[0054] like Figure 4 As shown, the positioning part 33 in this embodiment is a groove-shaped positioning structure, and the mating part of the limiting member 32 is a plug. The plug is installed at both ends of the limiting member 32, and the limiting part 32 is connected by inserting the plug into the positioning part 33.

[0055] In order to flexibly control the installation and removal of the mating part of the limiting member 32 in the positioning part 33, the mating part includes at least one elastic adjustment head. The elastic adjustment head includes an elastic member 34 and a telescopic plug 35. An axial guide cavity is opened at the center position on one side of the limiting member 32. The guide cavity can accommodate the elastic adjustment head and make the elastic adjustment head slide with the limiting member 32.

[0056] The elastic element 34 is a compression spring. The elastic element 34 is placed between the bottom of the guide cavity and the telescopic plug 35, so that the telescopic plug 35 can be output to the outside of the limiting element 32 and cooperate with the mounting part 33 under the action of the elastic element 34.

[0057] In order to retract the telescopic plug 35 when the elastic adjustment head cooperates with the mounting part 33, this embodiment has an adjustment lever 36 installed on the side wall of the telescopic plug 35. A strip-shaped through hole for accommodating the movement of the adjustment lever 36 is provided on the side wall of the limiting member 32. The adjustment lever 36 extends to the outside of the strip-shaped through hole, so that in actual use, the operator can move the adjustment lever 36 in the strip-shaped through hole in a direction away from the axial opening of the guide cavity, thereby driving the telescopic plug 35 to move in the direction of the guide cavity, so that the telescopic plug 35 disengages from the positioning part 33, thereby controlling the disassembly and installation of the limiting rod 32 in the positioning part 33.

[0058] When the fire hose begins to fold inside the housing 1, the operator moves the adjusting lever 36 towards the bottom of the guide cavity to drive the telescopic plug 35 back into the telescopic rod 32, thereby disengaging the connection between the limiting member 32 and the positioning part 33. The limiting member 32 is then disassembled, and the fire hose connector enters the pull-out port 2 through the connecting port by pressing down. After the fire hose is fully retracted, one side of the limiting rod 32 is first inserted into the positioning part 33. The operator releases the adjusting lever 36, and the telescopic plug 35 extends outward under the action of the adjusting member 34, allowing the telescopic plug 35 to enter the positioning part 33. The limiting member 32 is then reinstalled in the positioning part 33 for limiting and tightening.

[0059] In one embodiment, the plugs on both sides of the limiting member 32 are columnar structures, and the groove-shaped positioning structure of the positioning part 33 is set as a circular groove, so that when the limiting member 32 is installed in the positioning part 33, the limiting member 32 can rotate between the positioning parts 33. In actual use, when the fire hose is pulled out of the pull-out port 2, the tangential friction force generated by the fire hose and the limiting member 32 can drive the limiting member 32 to rotate, avoiding excessive friction between the fire hose and the limiting member 32 that prevents it from being unable to release and causing jamming, making it easier to pull the fire hose out.

[0060] Example 5

[0061] like Figure 1-2As shown, in this embodiment, a roller 5 is installed at the lower end of the pull-out opening 2, and the roller 5 is rotatably installed on the housing 1.

[0062] With the roller 5 provided in this embodiment, when the fire hose is pulled out at the pull-out port 2 by external force, the fire hose does not directly contact the housing. Furthermore, when the fire hose to be pulled out is located in the cavity 11 at the lower end of the pull-out port 2, the fire hose will continuously contact the end face of the pull-out port 2. The setting of the roller 5 changes the friction between the fire hose and the pull-out port to rolling friction, thus avoiding the fire hose being scratched and thus reducing its service life.

[0063] Example 6

[0064] like Figure 1-2 As shown, this embodiment also includes a lifting assembly 4, which includes a handle 41 and a connecting part 42 disposed on the box body. The connecting part 42 is disposed on both sides of the pressing port 11, and the handle 41 is detachably connected to the connecting part 42.

[0065] A lifting assembly 4 is installed at the upper end of the housing 11 of the storage device. During transportation, the handle 41 makes it convenient for staff to carry the device, improving the flexibility of the storage device. The handle 41 is movably connected to the housing through the connecting part 42. When the storage device is storing the fire hose, the handle 41 can be disassembled so that the top of the pressing port 11 is unobstructed and the fire hose can be stored smoothly.

[0066] Example 7

[0067] like Figure 5-6 As shown, this embodiment also includes a fire hose, which includes a hose 6 and hose connector 1 7 and hose connector 2 8 at both ends of the hose 6. The hose 6 is folded inside the housing 1, and hose connector 1 7 and hose connector 2 8 extend to the outside of the housing 1 through the pull-out port 2.

[0068] like Figures 5-6 As shown, in this embodiment, the water hose 6 is folded in a Z-shape inside the housing 1. Specifically, the water hose 6 is accommodated in the inner cavity of the housing 1 by a single-layer reciprocating folding method.

[0069] like Figure 6 As shown, in this embodiment, the hose is not folded in half. After leaving the length of the hose at one end of the hose connector 7, it is directly folded into the housing 1 through the pressing port 11. By continuously folding inside the cavity, the hose body is stored in the housing 1. Finally, the hose at one end of the hose connector 8 is placed in the pull-out port 2, and the hose at one end of the hose connector 7 is placed in the pull-out port 2. The hose is then constrained by the passage part 3.

[0070] The first end of the water hose 6 is left with a certain length and connected to the water hose connector 7 to form the first water hose positioning part; the end of the water hose 6 is left with a certain length and connected to the water hose connector 8 to form the second water hose positioning part.

[0071] The length reserved at the beginning of the water hose 6 is greater than the height of the box plus the length of the press-fit port, so that the first water hose positioning part can be wrapped around from the bottom of the cavity away from the pull-out port 2 to the position of the pull-out port 2 on one side of the box 1.

[0072] Specifically, this embodiment adopts the following... Figure 5 The folding method shown is used when storing fire hose 6:

[0073] First, place the first water hose positioning part of the water hose 6 at the bottom of the cavity 11. The first water hose positioning part extends upward along the side wall away from the pull-out port 2, and temporarily overlaps the first water hose positioning part on the outside of the side wall of the press-fit port 11.

[0074] Then, the water hose 6 extending in the opposite direction of the first water hose positioning part is folded in a Z-shape from the press-fit port 11 of the box body 1 into the cavity 1. The water hose 6 is continuously folded from bottom to top in the cavity 11 until the water hose 6 is stored in the cavity 1.

[0075] Finally, the second hose positioning part is extended towards the pull-out port 2, and the hose connector 8 of the second hose positioning part is extended to the outside of the housing 1. Then, the first hose positioning part, which is temporarily overlapped at the press-fit port 11, is laid towards the pull-out port 2, so that the hose connector 7 of the first hose positioning part also extends to the outside of the housing 1. The hose at the pull-out port 2 is passed through and limited by the passage part 3 provided at the press-fit port 11.

[0076] In addition, by slightly tightening the first water hose positioning part towards the pull-out 2, the first water hose positioning part can cover the second water hose positioning part and the water hose 6 folded inside the box 1, further improving the stability of the water hose in the storage device.

[0077] When deploying fire hose 6:

[0078] With the help of external force, the hose connector 28 extending out of the pull-out port 2 is pulled out, so that the Z-shaped hose folded inside the box 1 unfolds directly outward.

[0079] The above descriptions are merely embodiments of this utility model, and common knowledge regarding specific structures and characteristics is not elaborated upon here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the structure of this utility model, and these should also be considered within the scope of protection of this utility model. These modifications will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application shall be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.

Claims

1. A water hose storage device, characterized in that: Includes a housing (1), which has an inner cavity for accommodating fire hoses. The housing (1) is provided with a press-fit port (11) with an upward opening. A pull-out port (2) is provided on the side of the housing (1). A passage is provided between the press-fit port (11) and the pull-out port (2) for the fire hose to be inserted into the pull-out port (2) from the side.

2. The hose collection device according to claim 1, characterized in that: The passage part (3) includes a limiting member (32) disposed on the housing (1) and a locking channel (31) constructed on one end of the limiting member (32). The pressing port (11) and the pull-out port (2) are connected through the locking channel (31).

3. The water hose storage device according to claim 2, characterized in that: The passage part (3) includes two limiting members (32), which are arranged opposite to each other, and the locking channel (31) is formed between the two limiting members (32).

4. The hose storage device according to claim 1, characterized in that: The passage part (3) includes a connecting port and a limiting member (32) constructed in the box body. The box body is provided with a positioning part (33). The limiting member (32) is detachably installed in the positioning part (33). When the limiting member (32) is installed in the positioning part (33), the limiting member (32) separates the pressing port (11) and the pull-out port (2). When the limiting member (32) is removed from the positioning part (33), the pressing port (11) and the pull-out port (2) are connected through the connecting port.

5. A hose storage device according to claim 4, characterized in that: The limiting member (32) is detachably connected to the positioning part (33) by fasteners; or, Positioning parts (33) are provided on both sides of the communication port, and plugs that cooperate with the positioning parts (33) are provided at both ends of the limiting member (32). At least one plug is connected to the limiting member (32) through an elastic member (34). The elastic member (34) is used to realize the extension and retraction adjustment of the plug within the limiting member (32).

6. A hose storage device according to claim 1, characterized in that: The passage part (3) includes a communication port and a limiting member (32) constructed in the box body. The box body is provided with a positioning part (33). One end of the limiting member (32) is hinged to the box body, and the other end is constructed with a mating part adapted to the positioning part (33). The limiting member (32) is locked to the box body by fasteners of the mating part and the positioning part (33), and separates the press-fit port (11) and the pull-out port (2). After the limiting member (32) is unlocked, it can rotate relative to the box body, and the press-fit port (11) and the pull-out port (2) are connected through the communication port.

7. A hose collection device according to any one of claims 1-6, characterized in that: The box (1) includes a frame (12) and a baffle layer (13). The frame (12) has a plurality of windows, and the baffle layer (13) is disposed on the frame (12) and covers the windows. The pull-out opening (2) has a rectangular hole structure, and the width of the pull-out opening (2) is greater than the outer diameter of the fire hose; The inner cavity is a rectangular parallelepiped structure, and the width of the inner cavity is adapted to the outer diameter of the fire hose. The box (1) is constructed as a cuboid.

8. A hose collection device according to any one of claims 1-6, characterized in that: A roller (5) is installed at the lower end of the pull-out opening (2), and the roller (5) is rotatably installed on the box body (1); And / or, it also includes a lifting assembly (4), which includes a handle (41) and a connecting part (42) disposed on the box body. The connecting part (42) is disposed on both sides of the press-fit port (11), and the handle (41) is detachably connected to the connecting part (42).

9. A hose collection device according to any one of claims 1-6, characterized in that: It also includes a fire hose, which includes a hose (6) and hose connector 1 (7) and hose connector 2 (8) located at both ends of the hose (6). The hose (6) is folded inside the housing (1), and hose connector 1 (7) and hose connector 2 (8) extend to the outside of the housing (1) through the pull-out port (2).

10. A hose storage device according to claim 9, characterized in that: The water hose (6) is folded in a Z-shape inside the box (1).