Water hose guide frame

By designing a hose guide frame, the problem of unstable shape of the hose when transported at high altitudes was solved, achieving stable water delivery and convenient movement.

CN223874312UActive Publication Date: 2026-02-06CHANGSHA JINYANG HUAXUN SPECIAL PURPOSE VEHICLE MFG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423191090.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-02-06
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

In existing technologies, water hoses are difficult to maintain a stable shape when transporting water to higher ground, making them inconvenient to use.

Method used

A hose guide frame was designed, including a support body, a guide structure and a walking mechanism. The guide structure is provided with a support groove for supporting the hose and the hose outlet is fixed at the top. The walking mechanism is used to move the support body.

Benefits of technology

The hose guide frame can maintain the stable shape of the hose to deliver water upwards, improve the ease of use, and facilitate relocation through the walking mechanism.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223874312U_ABST
    Figure CN223874312U_ABST
Patent Text Reader

Abstract

The utility model provides a water hose guide frame, and relates to the technical field of drainage equipment. A guide structure of a water hose is arranged on the bracket main body; a bearing groove for supporting a water hose is formed in the guide structure; the bearing groove obliquely extends upwards from the bottom to the top, and a mounting part for fixing a water outlet of the water hose is arranged at the top of the bearing groove; a walking mechanism is arranged at the bottom of the support body and used for moving the support body. According to the water hose guide frame, the water hose guide frame can be used for lifting the drainage end of the water hose and bearing the acting force of water flow from the interior of the water hose, so that the water hose conveys water upwards in a stable form, and the use convenience of the water hose is effectively improved. In addition, when the device is used, the device can be moved by means of the walking mechanism, and transition is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of drainage equipment, and particularly relates to a water hose guide frame. BACKGROUND

[0002] The fire hose is a hose for transporting high-pressure water or foam liquid, usually made of rubber, polyurethane or other synthetic materials, and has the characteristics of pressure resistance, wear resistance and corrosion resistance. One end of the water hose is connected to a water pump during water drainage, and the other end is used for water drainage. In some application scenarios, it is necessary to deliver water flow to a high place. When the water flow is discharged to a high place, the water discharge end of the water hose needs to be lifted to a high position. However, during the water drainage process, the inside of the water hose is full of rapidly flowing water, and the water hose is difficult to maintain a stable shape for upward water delivery, which is very inconvenient to use. CONTENT OF THE UTILITY MODEL

[0003] The technical problem to be solved by the present application is that, in view of the above-mentioned deficiencies of the prior art, a water hose guide frame is provided.

[0004] A water hose guide frame, comprising: a support body; a guide structure of a water hose arranged on the support body; a supporting groove for supporting the water hose is arranged on the guide structure; the supporting groove extends from the bottom to the top, and an installation component for fixing the water outlet of the water hose is arranged at the top of the supporting groove; a walking mechanism is arranged at the bottom of the support body, and the walking mechanism is used to move the support body.

[0005] Optionally, the guide structure comprises: a lower guide structure segment at the bottom, an upper guide structure segment at the top, and a middle guide structure segment between the lower guide structure segment and the upper guide structure segment; the supporting groove is composed of a supporting groove lower segment, a supporting groove middle segment and a supporting groove upper segment, wherein the supporting groove lower segment is arranged on the lower guide structure segment, the supporting groove middle segment is arranged on the middle guide structure segment, and the supporting groove upper segment is arranged on the upper guide structure segment.

[0006] Along the extension direction of the supporting groove, the supporting groove middle segment is inclined upward at a fixed angle, the supporting groove lower segment is bent to transition to the angle of the supporting groove middle segment, and the supporting groove upper segment is bent and disconnected from the supporting groove middle segment.

[0007] Optionally, the middle guide structure segment is mounted on the support body, and the lower guide structure segment and the upper guide structure segment are respectively connected to the upper and lower ends of the middle guide structure segment.

[0008] Optionally, the connection angle between the lower guide structure segment and the middle guide structure segment is adjustable; and the connection angle between the upper guide structure segment and the middle guide structure segment is adjustable.

[0009] Optionally, a hinged relationship is provided between the upper segment of the guide structure and the middle segment of the guide structure, allowing the upper segment of the guide structure to be adjusted in rotation relative to the middle segment of the guide structure.

[0010] A first limiting connection relationship is further provided between the upper segment of the guide structure and the middle segment of the guide structure, allowing the upper segment of the guide structure to be limited at a plurality of different angular positions.

[0011] Optionally, the upper segment of the guide structure and the middle segment of the guide structure are connected through a limiting connector to form the first limiting connection relationship; the limiting connector is hinged on the middle segment of the guide structure; a first connecting hole in a strip shape is further provided on the limiting connector; the limiting connector can be bolted with the upper segment of the guide structure through different positions of the first connecting hole, so as to limit the upper segment of the guide structure at a plurality of different angular positions.

[0012] Optionally, a hinged relationship is provided between the lower segment of the guide structure and the middle segment of the guide structure, allowing the lower segment of the guide structure to be adjusted in rotation relative to the middle segment of the guide structure.

[0013] A second limiting connection relationship is further provided between the lower segment of the guide structure and the middle segment of the guide structure, allowing the lower segment of the guide structure to be limited at a plurality of different angular positions.

[0014] Optionally, a second connecting hole in a strip shape is provided on the lower segment of the guide structure; when the lower segment of the guide structure is rotated relative to the middle segment of the guide structure within a predetermined angular range, the second connecting hole is aligned with a connecting hole position on the middle segment of the guide structure, so that the lower segment of the guide structure can be bolted with the middle segment of the guide structure through different positions of the second connecting hole, so as to limit the lower segment of the guide structure at a plurality of different angular positions.

[0015] Optionally, the support body is a foldable structure.

[0016] Optionally, a lower end of the middle segment of the guide structure is hinged on the support body; the support body is provided with a telescopic device for supporting the middle segment of the guide structure to different inclination angles.

[0017] In the application, the water hose guide frame comprises a support body; a guide structure of the water hose is arranged on the support body; a supporting groove is arranged on the guide structure; the supporting groove extends from the bottom to the top; an installation component for fixing the water outlet of the water hose is arranged on the top of the supporting groove; a walking mechanism is arranged on the bottom of the support body, and the walking mechanism is used for moving the support body. The water hose guide frame can be used for lifting the water outlet of the water hose to a high position, bearing the force from the water flow in the water hose, and making the water hose keep a stable form to upwardly convey water, thereby effectively improving the convenience of using the water hose. In addition, the water hose guide frame can be moved by the walking mechanism during use, thereby facilitating the scene change. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 Fig. 1 is a structural schematic view of a water hose guide frame in the application.

[0019] Figure 2 Fig. 2 is another structural schematic view of the water hose guide frame in the application.

[0020] Figure 3 Fig. 3 is a structural schematic view of a guide structure in the application.

[0021] Figure 4 Fig. 4 is a schematic view of a connecting part between a middle section and an upper section of the guide structure in the application.

[0022] Figure 5 Fig. 5 is a schematic view of a connecting part between the middle section and a lower section of the guide structure in the application.

[0023] Reference signs: support body 10, guide structure 20, lower section of guide structure 21, second connecting hole 211, middle section of guide structure 22, upper section of guide structure 23, lower section of supporting groove 31, middle section of supporting groove 32, upper section of supporting groove 33, walking mechanism 40, limiting connecting piece 50, first connecting hole 51, telescopic device 60, installation component 70. DETAILED DESCRIPTION

[0024] The following is a specific embodiment of the application and further describes the technical solution of the application in combination with the drawings, but the application is not limited to these embodiments. In the following description, specific details such as specific configurations and components are provided only to help fully understand the embodiments of the application. Therefore, those skilled in the art should understand that various changes and modifications can be made to the embodiments described herein without departing from the protection scope of the application. In addition, the description of known functions and structures is omitted for the sake of clarity and brevity.

[0025] It should be noted that the embodiments and the features in the embodiments in the application can be combined with each other without conflict.

[0026] In some application scenarios, the fire hose needs to deliver water flow to a high place, and the water outlet of the fire hose needs to be lifted to a high position when the water flow is discharged to the high place. The application provides a fire hose guide frame which lifts the water outlet of the fire hose to a high position and bears the force from the water flow in the fire hose, so that the fire hose can maintain a stable form to deliver water upward. The following will be specifically described with reference to the accompanying drawings.

[0027] In the embodiment of the application, the fire hose guide frame comprises a support body; a guide structure of the fire hose is arranged on the support body; a supporting groove is arranged on the guide structure and used for supporting the fire hose; the supporting groove extends from the bottom to the top in an inclined manner, and an installation component for fixing the water outlet of the fire hose is arranged at the top of the supporting groove; a walking mechanism is arranged at the bottom of the support body and used for moving the support body.

[0028] In use, the fire hose is placed in the supporting groove on the guide structure, and the fire hose extends upward along the bottom of the supporting groove to the top of the supporting groove, and the installation component is used to fix the water outlet of the fire hose at the top of the supporting groove. When the water flow is delivered, the force of the water flow is borne by the guide structure, and the fire hose can maintain a stable form to deliver water upward, thereby effectively improving the convenience of use of the fire hose. In addition, the walking mechanism can be used for moving during use, thereby facilitating scene transfer.

[0029] Reference Figure 1 The fire hose guide frame comprises a support body 10; a guide structure 20 of the fire hose is arranged on the support body 10; a supporting groove is arranged on the guide structure 20 and used for supporting the fire hose; the supporting groove extends from the bottom to the top in an inclined manner, and an installation component 70 for fixing the water outlet of the fire hose is arranged at the top of the supporting groove; a walking mechanism 40 is arranged at the bottom of the support body 10 and used for moving the support body 10. In one technical solution, the support body is a foldable structure, which is convenient for storage and transportation. The support body adopts various forms of folding structures, which are not limited here. In addition, the guide structure 20 comprises a lower segment 31 of the supporting groove, a middle segment 32 of the supporting groove and an upper segment 33 of the supporting groove, and can be made of metal and various light and wear-resistant materials, which can bear the back-and-forth friction from the fire hose, such as nylon, polytetrafluoroethylene and the like.

[0030] It should be noted that the supporting groove can be a continuous structure or a multi-segment structure distributed at intervals, and the extension from the bottom to the top is only considered from the whole. Figure 1 In the structure shown in FIG. 3, the supporting groove is composed of multiple segments. In one embodiment of the application, the supporting groove is a concave circular arc structure and is a multi-segment structure arranged at intervals. Figure 1 In the structure shown in FIG. 3, the supporting groove comprises a lower segment 31 of the supporting groove, a middle segment 32 of the supporting groove and an upper segment 33 of the supporting groove, and the lower segment 31 of the supporting groove, the middle segment 32 of the supporting groove and the upper segment 33 of the supporting groove are all concave circular arc structures

[0031] Further, the walking mechanism is a roller mechanism, which can be driven by a driving source or manually pushed without any driving source. Figure 1 and Figure 2 In the structure shown in the figure, two groups of rollers are arranged at the bottom of the support body 10, two rollers in front and two rollers at the back.

[0032] Referring to Figure 3 In an embodiment of the present application, the guide structure 20 comprises a lower guide structure section 21, an upper guide structure section 23, and a middle guide structure section 22. The lower guide structure section 21 is located at the bottom, the upper guide structure section 23 is located at the top, and the middle guide structure section 22 is located between the lower guide structure section 21 and the upper guide structure section 23. Further, the support groove is composed of a lower support groove section 31, a middle support groove section 32, and an upper support groove section 33. The lower support groove section 31 is located on the lower guide structure section 21, the middle support groove section 32 is located on the middle guide structure section 22, and the upper support groove section 33 is located on the upper guide structure section 23.

[0033] Based on the above arrangement, the guide structure 20 is divided into the lower guide structure section 21, the middle guide structure section 22, and the upper guide structure section 23, which is a three-section structure. At the same time, the support groove is correspondingly divided into the lower support groove section 31, the middle support groove section 32, and the upper support groove section 33. Along the extension direction of the support groove, the middle support groove section 32 is inclined upward at a fixed angle, the lower support groove section 31 is curved to transition to the angle of the middle support groove section 32, and the upper support groove section 33 is bent from the middle support groove section 32 and disconnected from the middle support groove section 32.

[0034] The lower support groove section 31 is located at the bottom of the support groove and is the starting section of the support groove, where the water hose on the ground is first transitioned. The lower support groove section 31 is curved to transition to the angle of the middle support groove section 32, which can correspondingly fit and support the curved part of the water hose. After the water hose passes through the transition curved part of the lower support groove section 31, it enters the middle support groove section 32 upward. The upper support groove section 33 is located at the top of the support groove to bear the water hose extending from the middle support groove section 32. When placing the water hose, follow the extension direction of the support groove and place the water hose on the lower support groove section 31, the middle support groove section 32, and the upper support groove section 33 in sequence. The gravity and impact force of the water flow are borne by the support groove.

[0035] In an embodiment of the present application, the middle guide structure section 22 is installed on the support body 10, and the lower guide structure section 21 and the upper guide structure section 23 are respectively connected to the upper and lower ends of the middle guide structure section 22. Therefore, the guide structure 20 composed of the lower guide structure section 21, the middle guide structure section 22, and the upper guide structure section 23 is fixed on the support body 10 as a whole.

[0036] In an embodiment of the present application, the lower end of the middle section 22 of the guide structure is hinged on the support body 10, and the support body 10 is provided with a telescopic device 60 for lifting the middle section 22 of the guide structure to different inclination angles. When the telescopic device 60 is adjusted in extension or retraction, the middle section 22 of the guide structure can rotate around the hinged position between the middle section 22 and the support body 10, so as to change the inclination angle to adapt to the height requirement. Specifically, when the telescopic device 60 is extended, the inclination angle of the middle section 22 of the guide structure is increased, and the height of the upper section 23 of the guide structure is increased. When the telescopic device 60 is retracted, the inclination angle of the middle section 22 of the guide structure is decreased, and the height of the upper section 23 of the guide structure is decreased.

[0037] In an embodiment of the present application, the connection angle between the lower section 21 of the guide structure and the middle section 22 of the guide structure is adjustable; the connection angle between the upper section 23 of the guide structure and the middle section 22 of the guide structure is adjustable. Specifically, when the angle between the lower section 21 of the guide structure and the middle section 22 of the guide structure is adjusted, the angle between the lower section 31 of the supporting groove and the middle section 32 of the supporting groove is also changed accordingly, so as to adjust the angle between the lower section 31 of the supporting groove and the middle section 32 of the supporting groove; when the angle between the upper section 23 of the guide structure and the middle section 22 of the guide structure is adjusted, the angle between the upper section 33 of the supporting groove and the middle section 32 of the supporting groove is also changed accordingly, so as to adjust the angle between the upper section 33 of the supporting groove and the middle section 32 of the supporting groove. When placing the water hose, the water hose is sequentially placed on the lower section 31 of the supporting groove, the middle section 32 of the supporting groove and the upper section 33 of the supporting groove along the extension direction of the supporting groove, and the angle between the lower section 31 of the supporting groove and the upper section 33 of the supporting groove can be adjusted to keep the middle section 32 of the supporting groove at a required relative angle, so as to adapt to different site conditions.

[0038] Reference Figure 4 In an embodiment of the present application, the upper section 23 of the guide structure and the middle section 22 of the guide structure are provided with a hinged relationship a allowing the upper section 23 of the guide structure to rotate relative to the middle section 22 of the guide structure; and the upper section 23 of the guide structure and the middle section 22 of the guide structure are further provided with a first limiting connection relationship capable of limiting the upper section 23 of the guide structure at a plurality of different angle positions. Specifically, when the angle of the upper section 23 of the guide structure is adjusted, the upper section 23 of the guide structure is first adjusted to a required angle based on the hinged relationship between the upper section 23 of the guide structure and the middle section 22 of the guide structure, and then the relative angle between the upper section 23 of the guide structure and the middle section 22 of the guide structure is limited by the first limiting connection relationship, so that the upper section 23 of the guide structure is kept at the required angle.

[0039] Further, the upper segment 23 of the guide structure and the middle segment 22 of the guide structure form a first limiting connection relationship through the limiting connector 50; the limiting connector 50 is hinged on the middle segment 22 of the guide structure; the limiting connector 50 is further provided with a long strip-shaped first connecting hole 51, and the limiting connector 50 can be bolted with the upper segment 23 of the guide structure through different positions of the first connecting hole 51 to limit the upper segment 23 of the guide structure at a plurality of different angle positions. When adjusting the angle of the upper segment 23 of the guide structure, first, the bolt connection between the limiting connector 50 and the upper segment 23 of the guide structure is loosened so that the upper segment 23 of the guide structure can be freely adjusted in rotation based on the hinged relationship with the middle segment 22 of the guide structure. At this time, the upper segment 23 of the guide structure is adjusted to the required angle based on the hinged relationship between the upper segment 23 of the guide structure and the middle segment 22 of the guide structure, and finally the bolt connection between the limiting connector 50 and the upper segment 23 of the guide structure is tightened so that the upper segment 23 of the guide structure and the middle segment 22 of the guide structure are fixed in angle to complete the adjustment.

[0040] Reference Figure 5 In an embodiment of the present application, a hinged relationship b is provided between the lower segment 21 of the guide structure and the middle segment 22 of the guide structure to allow the lower segment 21 of the guide structure to be adjusted in rotation relative to the middle segment 22 of the guide structure; and a second limiting connection relationship is further provided between the lower segment 21 of the guide structure and the middle segment 22 of the guide structure to limit the lower segment 21 of the guide structure at a plurality of different angle positions. Specifically, when adjusting the angle of the lower segment 21 of the guide structure, first, the lower segment 21 of the guide structure is adjusted to the required angle based on the hinged relationship between the lower segment 21 of the guide structure and the middle segment 22 of the guide structure, and then the relative angle between the lower segment 21 of the guide structure and the middle segment 22 of the guide structure is limited through the second limiting connection relationship, so that the lower segment 21 of the guide structure is kept at the required angle.

[0041] Further, the guiding structure lower section 21 is provided with a long strip-shaped second connecting hole 211; when the guiding structure lower section 21 rotates relative to the guiding structure middle section 22 within a predetermined angle range, the second connecting hole 211 is aligned with the connecting hole position on the guiding structure middle section 22, so that the guiding structure lower section 21 can be bolted with the guiding structure middle section 22 by using different positions of the second connecting hole 211, so as to limit the guiding structure lower section 21 at a plurality of different angle positions. When adjusting the angle of the guiding structure lower section 21, first, the bolt connection between the guiding structure lower section 21 and the guiding structure middle section 22 is loosened so that the guiding structure lower section 21 can be freely adjusted in rotation relative to the guiding structure middle section 22 based on the hinged relationship. At this time, the guiding structure lower section 21 is adjusted to the required angle based on the hinged relationship between the guiding structure lower section 21 and the guiding structure middle section 22, and the bolt connection between the guiding structure lower section 21 and the guiding structure middle section 22 is tightened, so that the guiding structure lower section 21 and the guiding structure middle section 22 are angle-fixed to complete the adjustment.

[0042] In the above-described embodiments of the present application, the description of each embodiment has its own focus, and the parts not described in detail in a certain embodiment can be referred to the relevant description of other embodiments.

[0043] In addition, the terms "first", "second", "third", etc. are used only for descriptive purposes and should not be construed as indicating or implying relative importance or a specific number of the technical features indicated. Therefore, the features defined as "first", "second", etc. can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically limited. It should be noted that the terms used herein are only for the purpose of describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is intended to include the plural form, and furthermore, it should be understood that when the terms "comprise" and / or "include" are used in the specification, it means that the features, steps, operations, devices, components and / or combinations thereof are present.

[0044] The specific embodiments described herein are merely illustrative of the present application. Those skilled in the art can make various modifications or supplements to the described specific embodiments or use similar ways to replace them without departing from the scope defined by the claims of the present application.

Claims

1. A hose guide frame, characterized in that The water hose guide frame comprises a support body, a guide structure on which a water hose is arranged, a supporting groove on the guide structure for supporting the water hose, the supporting groove extending from the bottom to the top, and a mounting component on the top of the supporting groove for fixing the water outlet of the water hose, and a walking mechanism on the bottom of the support body for moving the support body.

2. The hose guide of claim 1, wherein, The guide structure comprises a lower guide structure segment on the bottom, an upper guide structure segment on the top, and a middle guide structure segment between the lower guide structure segment and the upper guide structure segment, and the supporting groove comprises a lower supporting groove segment, a middle supporting groove segment, and an upper supporting groove segment, wherein the lower supporting groove segment is on the lower guide structure segment, the middle supporting groove segment is on the middle guide structure segment, and the upper supporting groove segment is on the upper guide structure segment. In the extension direction of the supporting groove, the middle supporting groove segment is inclined upward at a fixed angle, the lower supporting groove segment is bent to transition to the angle of the middle supporting groove segment, and the upper supporting groove segment is folded and disconnected from the middle supporting groove segment.

3. The hose guide of claim 2, wherein, The middle guide structure segment is mounted on the support body, and the lower guide structure segment and the upper guide structure segment are connected to the upper and lower ends of the middle guide structure segment, respectively.

4. The hose guide of claim 3, wherein, The connection angle between the lower guide structure segment and the middle guide structure segment is adjustable, and the connection angle between the upper guide structure segment and the middle guide structure segment is adjustable.

5. The water hose guide frame according to claim 4, wherein a hinged relationship is provided between the upper guide structure segment and the middle guide structure segment to allow the upper guide structure segment to rotate relative to the middle guide structure segment, a first limiting connection relationship is further provided between the upper guide structure segment and the middle guide structure segment to limit the upper guide structure segment at a plurality of different angle positions.

6. The hose guide of claim 5, wherein, The upper guide structure segment and the middle guide structure segment form the first limiting connection relationship through a limiting connector, the limiting connector is hinged to the middle guide structure segment, and a long strip-shaped first connecting hole is further provided on the limiting connector, the limiting connector can be bolted to the upper guide structure segment through different positions of the first connecting hole to limit the upper guide structure segment at a plurality of different angle positions.

7. The water hose guide frame according to claim 4, wherein a hinged relationship is provided between the lower guide structure segment and the middle guide structure segment to allow the lower guide structure segment to rotate relative to the middle guide structure segment, a second limiting connection relationship is further provided between the lower guide structure segment and the middle guide structure segment to limit the lower guide structure segment at a plurality of different angle positions.

8. The hose guide of claim 7, wherein, A second connecting hole in a long strip shape is arranged on the lower section of the guide structure; when the lower section of the guide structure rotates relative to the middle section of the guide structure within a predetermined angle range, the second connecting hole is aligned with the connecting hole on the middle section of the guide structure, so that the lower section of the guide structure can be bolted with the middle section of the guide structure by using different positions of the second connecting hole, so as to limit the lower section of the guide structure at different angle positions.

9. The hose guide of claim 1, wherein, The support body is a foldable structure.

10. The hose guide of claim 3, wherein, The lower end of the middle section of the guide structure is hinged on the support body, and the support body is provided with a telescopic device for supporting the middle section of the guide structure to different inclination angles.