Fire-fighting appliance detection device
The fire hose with a slip-resistant sleeve and adjustable measurement component addresses the issue of inaccurate manual measurements by providing a precise and adaptable solution for fire hose diameter assessment.
Patent Information
- Application Number
- CN202422013986.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The traditional method of detecting firefighting tools is to manually fix the detection tool, which leads to inaccurate measurement results and makes it difficult to find a suitable measurement position.
A fire-fighting equipment detection device is designed, including fire hose, anti-slip sleeve, detection components and installation pipe. It can automatically fix and measure through clamping shells, springs, clamping plates, roof plates and other structures, and is suitable for fire hose of various specifications.
Accurate measurement of fire hoses of various specifications is achieved, and the convenience and accuracy of detection is improved.
Smart Images

Figure CN223106866U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fire-fighting appliance detection, and particularly relates to a fire-fighting appliance detection device. Background Technique
[0002] Fire-fighting appliance detection refers to the inspection and testing of various fire-fighting appliances to ensure that their performance and reliability meet relevant standards and requirements. Fire-fighting appliance detection usually includes aspects such as appearance inspection, function testing, and performance evaluation. Appearance inspection mainly checks whether the appearance of the fire-fighting appliance is intact, whether the markings are clear, and whether the components are complete. Function testing mainly tests whether the various functions of the fire-fighting appliance are normal, such as the spraying performance of fire extinguishers, the opening and closing performance of fire hydrants, and the filtering performance of smoke masks. Performance evaluation mainly evaluates whether the performance of the fire-fighting appliance meets relevant standards and requirements, such as the fire extinguishing performance of fire extinguishers, the water supply capacity of fire hydrants, and the protection performance of smoke masks. Fire-fighting appliance detection is usually carried out by professional fire detection agencies or fire departments, and the detection of the inner diameter of fire hoses is also one of them.
[0003] The problem with the existing technology is that the traditional detection method is to manually fix the detection tool to achieve detection, but this method is very likely to fail to find a suitable measurement position during measurement, resulting in inaccurate measurement results. Therefore, we propose a fire-fighting appliance detection device. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a fire-fighting appliance detection device to solve the problems raised in the above background technique.
[0005] The utility model is realized as follows. A fire-fighting appliance detection device includes a fire hose, a non-slip sleeve is sleeved on the surface of the fire hose, one end of the fire hose is fixedly connected with an installation pipe, and a detection component is detachably connected to the surface of the installation pipe. The detection component is used to measure the inner diameter of the fire hose.
[0006] Preferably, the detection component includes a clamping shell. Two groups of clamping shells are respectively detachably connected to both sides of the surface of the installation pipe. At both ends of the surface of one group of clamping shells, clamping plates are fixedly connected.
[0007] Preferably, a number of card slots are formed on the surfaces of both groups of clamping plates. At both ends of the surface of one group of clamping shells, tension springs are fixedly connected.
[0008] Preferably, at both ends of the surface of the other group of clamping shells, fixed rods are fixedly connected. At one end of both groups of fixed rods, a top plate is fixedly connected. A through hole is formed on the upper surface of the top plate. The tension spring is fixedly connected to the lower surface of the top plate.
[0009] Preferably, fixing blocks are sleeved on the surfaces of the two groups of fixing rods, second torsion springs are sleeved on the surfaces of the two groups of fixing blocks, and clamping rods corresponding to the clamping grooves are fixedly connected to the surfaces of the two groups of second torsion springs.
[0010] Preferably, one side of the surfaces of the two groups of clamping shells is fixedly connected with a fixing plate, and a baffle is fixedly connected to the middle of one side of the surface of one of the fixing plates.
[0011] Preferably, a rotating rod is fixedly connected to the middle of one side of the surface of the other fixing plate, a first torsion spring is sleeved on the surface of the rotating rod, a measuring plate corresponding to the baffle is fixedly connected to one side of the surface of the first torsion spring, and the measuring plate is used for measuring the inner diameter of the fire hose.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. Through the design of the fire hose, the anti-slip sleeve, the detection component and the installation pipe, the anti-slip sleeve is used to prevent slipping when taking the fire hose. And after the detection component is installed on the surface of the installation pipe, the thickness of the installation pipe will be automatically subtracted, so as to detect the inner diameter of the fire hose. And this detection component can be applied to fire hoses of various different thicknesses, achieving the effect of being convenient for measuring fire hoses of various different specifications and having relatively accurate detection data.
[0014] 2. Through the design of the clamping shell, the tension spring, the clamping plate, the top plate, the clamping groove, the fixing rod, the through hole, the fixing block, the second torsion spring and the clamping rod, when the two groups of clamping shells are pulled, the two groups of clamping shells can be sleeved on the surface of the installation pipe. Then the tension spring will pull the two groups of clamping shells and make them fit the installation pipe. After the installation of the installation pipe is completed, the second torsion spring will drive the clamping rod to rotate around the fixing block, and make the clamping rod clamped in the clamping groove to fix the positions of the two groups of clamping shells. The through hole is for the clamping plate to pass through, so as to be applicable to fire hoses with smaller specifications, achieving the effect of being convenient for fixing the position of the detection component.
[0015] 3. Through the design of the fixing plate, the rotating rod, the measuring plate, the baffle and the first torsion spring, after the clamping shell is installed, the first torsion spring will drive the measuring plate to rotate around the rotating rod. When it rotates to a certain position, the measuring plate will be blocked by the baffle, so as to observe the inner diameter size of the fire hose. And the design of the fixing plate can just easily subtract the thickness of the installation pipe, achieving the effect of being convenient for measuring the inner diameter size of the fire hose. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure provided by the embodiment of the present utility model;
[0017] Figure 2 It is a schematic structural diagram of a detection component provided by an embodiment of the present utility model;
[0018] Figure 3 It is a schematic partial structural diagram of a detection component provided by an embodiment of the present utility model.
[0019] In the figure: 1, fire hose; 2, anti-slip sleeve; 3, detection component; 301, clamping shell; 302, tension spring; 303, clamping plate; 304, top plate; 305, card slot; 306, fixed rod; 307, through hole; 308, fixing plate; 309, rotating rod; 310, measuring plate; 311, baffle; 312, first torsion spring; 313, fixed block; 314, second torsion spring; 315, clamping rod; 4, installation pipe. Specific implementation manners
[0020] To further understand the inventive content, features and effects of the present utility model, the following embodiments are cited and described in detail in conjunction with the accompanying drawings as follows.
[0021] The structure of the present utility model will be described in detail below with reference to the accompanying drawings.
[0022] As Figures 1 to 3 shown, a fire fighting appliance detection device provided by an embodiment of the present utility model includes a fire hose 1, an anti-slip sleeve 2 is sleeved on the surface of the fire hose 1, one end of the fire hose 1 is fixedly connected with an installation pipe 4, and a detection component 3 is detachably connected to the surface of the installation pipe 4. The detection component 3 is used to measure the inner diameter of the fire hose 1.
[0023] Adopting the above scheme: Through the design of the fire hose 1, the anti-slip sleeve 2, the detection component 3 and the installation pipe 4, the anti-slip sleeve 2 is used to prevent slipping when taking the fire hose 1, and after the detection component 3 is installed on the surface of the installation pipe 4, the thickness of the installation pipe 4 will be automatically subtracted, so as to detect the inner diameter of the fire hose 1, and the detection component 3 can be applied to fire hoses 1 of various different thicknesses, achieving the effect of facilitating the measurement of fire hoses 1 of various different specifications and having relatively accurate detection data.
[0024] Refer to Figure 2 and Figure 3, the detection component 3 includes a clamping shell 301. Two groups of clamping shells 301 are respectively detachably connected to both sides of the surface of the installation pipe 4. At both ends of the surface of one group of clamping shells 301, clamping plates 303 are fixedly connected. A number of card slots 305 are provided on the surfaces of the two groups of clamping plates 303. At both ends of the surface of one group of clamping shells 301, tension springs 302 are fixedly connected; at both ends of the surface of the other group of clamping shells 301, fixed rods 306 are fixedly connected. At one end of the two groups of fixed rods 306, top plates 304 are fixedly connected. Through holes 307 are provided on the upper surfaces of the top plates 304. The tension springs 302 are fixedly connected to the lower surfaces of the top plates 304; fixing blocks 313 are sleeved on the surfaces of the two groups of fixed rods 306. Second torsion springs 314 are sleeved on the surfaces of the two groups of fixing blocks 313. On the surfaces of the two groups of second torsion springs 314, latch rods 315 corresponding to the card slots 305 are fixedly connected.
[0025] With the above scheme: Through the design of the clamping shell 301, the tension spring 302, the clamping plate 303, the top plate 304, the card slot 305, the fixed rod 306, the through hole 307, the fixing block 313, the second torsion spring 314 and the latch rod 315, when pulling the two groups of clamping shells 301, the two groups of clamping shells 301 can be sleeved on the surface of the installation pipe 4. Subsequently, the tension spring 302 will pull the two groups of clamping shells 301 and make them fit the installation pipe 4. When the installation of the installation pipe 4 is completed, the second torsion spring 314 will drive the latch rod 315 to rotate around the fixing block 313, and make the latch rod 315 snap into the inside of the card slot 305 to fix the positions of the two groups of clamping shells 301. The through hole 307 is used for the clamping plate 303 to pass through, so as to be applicable to the fire hose 1 with a smaller specification, achieving the effect of facilitating the position fixing of the detection component 3.
[0026] Reference Figure 2 , on one side of the surfaces of the two groups of clamping shells 301, fixing plates 308 are fixedly connected. In the middle of one side of the surface of one group of fixing plates 308, a baffle 311 is fixedly connected; in the middle of one side of the surface of the other group of fixing plates 308, a rotating rod 309 is fixedly connected. A first torsion spring 312 is sleeved on the surface of the rotating rod 309. On one side of the surface of the first torsion spring 312, a measuring plate 310 corresponding to the baffle 311 is fixedly connected. The measuring plate 310 is used to measure the inner diameter of the fire hose 1.
[0027] With the above scheme: Through the design of the fixing plate 308, the rotating rod 309, the measuring plate 310, the baffle 311 and the first torsion spring 312, when the installation of the clamping shell 301 is completed, the first torsion spring 312 will drive the measuring plate 310 to rotate around the rotating rod 309. When rotating to a certain position, the measuring plate 310 will be blocked by the baffle 311, so as to observe the inner diameter size of the fire hose 1. And the design of the fixing plate 308 can just easily subtract the thickness of the installation pipe 4, achieving the effect of facilitating the measurement of the inner diameter size of the fire hose 1.
[0028] Working principle of the present utility model:
[0029] When in use, when pulling the two clamping shells 301, the two clamping shells 301 can be sleeved on the surface of the installation pipe 4. Subsequently, the tension spring 302 will pull the two clamping shells 301 and make them fit the installation pipe 4. After the installation of the installation pipe 4 is completed, the second torsion spring 314 will drive the clamping rod 315 to rotate around the fixed block 313, and make the clamping rod 315 snap into the internal card slot 305 to fix the positions of the two clamping shells 301. The through hole 307 is for the clamping plate 303 to pass through, so as to be applicable to a smaller specification fire hose 1 and facilitate the fixation of the detection component 3. After the clamping shell 301 is installed, the first torsion spring 312 will drive the measuring plate 310 to rotate around the rotating rod 309. When rotating to a certain position, the measuring plate 310 will be blocked by the baffle 311, so as to observe the inner diameter size of the fire hose 1. And the design of the fixing plate 308 can just easily subtract the thickness of the installation pipe 4, achieving the purpose of facilitating the measurement of the inner diameter size of the fire hose 1.
[0030] In summary, for this fire appliance detection device, through the structures of the detection component 3, the clamping shell 301, the tension spring 302, the clamping plate 303, the top plate 304, the card slot 305, the fixed rod 306, the through hole 307, the fixing plate 308, the rotating rod 309, the measuring plate 310, the baffle 311, the first torsion spring 312, the fixed block 313, the second torsion spring 314 and the clamping rod 315, it solves the problem that the traditional detection method is to manually fix the detection tool to achieve detection, but this method is very likely to fail to find a suitable measurement position during measurement, resulting in inaccurate measurement results.
[0031] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or sequence between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent to this process, method, article or device.
[0032] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A fire-fighting equipment detection device, including a fire hose (1), characterized in that: A non-slip sleeve (2) is sleeved on the surface of a fire hose (1). One end of the fire hose (1) is fixedly connected to an installation pipe (4). A detection component (3) is detachably connected to the surface of the installation pipe (4), and the detection component (3) is used to measure the inner diameter of the fire hose (1).
2. The fire-fighting equipment detection device according to claim 1, characterized in that: The detection component (3) includes a clamping shell (301). Two groups of the clamping shells (301) are respectively detachably connected to both sides of the surface of the installation pipe (4). At both ends of the surface of one group of the clamping shells (301), clamping plates (303) are fixedly connected respectively.
3. A fire-fighting equipment detection device according to claim 2, characterized in that: A number of card slots (305) are formed on the surfaces of the two groups of clamping plates (303). At both ends of the surface of one group of the clamping shells (301), tension springs (302) are fixedly connected respectively.
4. A fire-fighting equipment detection device according to claim 3, characterized in that: At both ends of the surface of the other group of clamping shells (301), fixed rods (306) are fixedly connected respectively. At one end of the two groups of fixed rods (306), a top plate (304) is fixedly connected. A through hole (307) is formed on the upper surface of the top plate (304), and the tension spring (302) is fixedly connected to the lower surface of the top plate (304).
5. The fire-fighting equipment detection device according to claim 4, characterized in that: Fixed blocks (313) are sleeved on the surfaces of the two groups of fixed rods (306). Second torsion springs (314) are sleeved on the surfaces of the two groups of fixed blocks (313). Card rods (315) corresponding to the card slots (305) are fixedly connected to the surfaces of the two groups of second torsion springs (314).
6. The fire-fighting equipment detection device according to claim 5, characterized in that: On one side of the surfaces of the two groups of clamping shells (301), fixing plates (308) are fixedly connected respectively. In the middle of one side of the surface of one group of the fixing plates (308), a baffle (311) is fixedly connected.
7. The detection device for fire-fighting appliances according to claim 6, characterized in that: In the middle of one side of the surface of the other group of the fixing plates (308), a rotating rod (309) is fixedly connected. A first torsion spring (312) is sleeved on the surface of the rotating rod (309). On one side of the surface of the first torsion spring (312), a measuring plate (310) corresponding to the baffle (311) is fixedly connected, and the measuring plate (310) is used to measure the inner diameter of the fire hose (1).