Blowing pipe placing tool
By designing a tooling for placing the air blowing tube, and utilizing a winding mechanism and clamping components, the automatic storage of the air blowing tube is achieved, solving the problem of inconvenient placement of the air blowing tube, improving efficiency and extending its service life.
Patent Information
- Application Number
- CN202520440233.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-13
AI Technical Summary
In existing technologies, the placement and storage of air tubes have not been effectively resolved, resulting in inconvenience in use, space occupation, easy damage, and impact on work efficiency and lifespan.
Design a tooling for placing air blowing tubes, including a base, a winding mechanism and a placement tray. The winding tray is driven by a drive motor to automatically wind up the air blowing tubes, and the guide wheels and clamping components are used to achieve neat storage.
It improves the efficiency of air hose usage, reduces space occupation, improves the cleanliness of the working environment, extends the service life of air hose, and reduces maintenance costs.
Smart Images

Figure CN223947874U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air blowing pipe technology, and in particular to an air blowing pipe placement fixture. Background Technology
[0002] In industrial production and maintenance, air hoses are widely used tools. For example, in machine manufacturing workshops, air hoses are often used to clean metal shavings and dust inside equipment to ensure its normal operation; in auto repair shops, air hoses can be used to blow away oil and debris in the engine compartment of cars to maintain a good working environment for the engine.
[0003] However, the problem of placement and storage of air hoses in daily use has not yet been effectively solved. The traditional way of storing air hoses is to randomly twist them together. Especially in some small factories or repair stations, due to the lack of special storage tools and standardized operating procedures, workers usually just randomly twist the air hoses into a ball and then pile them up in the corner of the work area.
[0004] This haphazard placement of the air hoses has several drawbacks. First, it easily leads to knots forming in the hoses themselves. This requires workers to spend considerable time untangling the hoses the next time they are needed, causing significant inconvenience and severely impacting work efficiency. Second, the randomly piled-up hoses occupy a large amount of workspace, making the work area appear cluttered and hindering standardized work management. More seriously, in a work environment with frequent personnel and equipment movement, carelessly placed hoses are easily trampled on or pulled by moving equipment. Over time, this accelerates wear and tear, significantly reducing the hoses' lifespan. Therefore, existing technologies urgently need improvement to address these issues. Utility Model Content
[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a tool for placing an air blowing pipe.
[0006] To achieve the above objectives, the technical solution adopted by the present invention is: a tooling for placing an air blowing pipe, comprising:
[0007] pedestal;
[0008] A winding mechanism is mounted on the pedestal;
[0009] A placement tray is disposed on the pedestal and located on one side of the winding mechanism;
[0010] The winding mechanism includes:
[0011] The mounting bracket is fixed to the base;
[0012] A driving motor is fixed on the mounting frame;
[0013] A rotating joint is rotatably arranged on the mounting frame, and a rotating sleeve is fixedly sleeved on the surface of the rotating joint;
[0014] A winding disc is coaxially arranged with the rotating joint and used for winding the blowing pipe, and the winding disc is fixedly connected with the bottom of the rotating sleeve;
[0015] A driving gear is fixed on the output shaft of the driving motor;
[0016] A driven gear is engaged with the driving gear and fixedly connected with the rotating sleeve.
[0017] Preferably, the winding disc is provided with a perforation for the blowing pipe to pass through, and the perforation is communicatively provided with a necessary gap for the blowing pipe to be clamped.
[0018] Preferably, the winding mechanism further comprises two guide wheels, both of which are rotatably arranged on the pedestal and located on the feeding side of the winding disc, and the two guide wheels are used for guiding the blowing pipe so that the blowing pipe can correspond to the winding surface of the winding disc.
[0019] Preferably, the pedestal is provided with a clamping assembly for clamping and fixing the free end of the blowing pipe, and the clamping assembly comprises:
[0020] A fixed clamping block is fixed on the pedestal, and a transverse sliding rod is slidably arranged on the fixed clamping block;
[0021] A movable clamping block is arranged on one side of the fixed clamping block and oppositely arranged with the fixed clamping block, and the movable clamping block is fixedly connected with the end of the transverse sliding rod;
[0022] A spring is sleeved on the surface of the transverse sliding rod, and the two ends of the spring are respectively fixedly connected with the side wall of the fixed clamping block and the surface of the transverse sliding rod, and the spring is used for driving the movable clamping block to move towards the fixed clamping block, so that the movable clamping block and the fixed clamping block cooperate to clamp the blowing pipe.
[0023] Preferably, the placement disc is located on the discharging side of the winding mechanism and used for placing the blowing gun connected with the free end of the blowing pipe.
[0024] Preferably, the driving gear is a pinion gear, and the driven gear is a gear.
[0025] Preferably, the pedestal is a box structure.
[0026] Preferably, the top of the box structure of the pedestal is the placement disc.
[0027] Compared with the prior art, the utility model have following beneficial effect: through set up winding mechanism to blow -out pipe is wound, effectively solved the problem of blowing -out pipe random winding in prior art. Specifically, the utility model discloses blowing -out pipe placing frock, through the drive motor drive winding mechanism in the winding disc rotation, can automatic winding of blowing -out pipe is received, the whole receiving process operation is simple and fast, compared with the manual winding of prior art, greatly saves manpower and time, effectively improve work efficiency, at the same time, the regular winding of winding disc to blowing -out pipe makes that the blowing -out pipe after receiving is neat and orderly, avoids blowing -out pipe own knot, significantly improves the neatness of working environment, and regular winding mode can effectively reduce the occupation space of blowing -out pipe, makes the working place more spacious, in addition, the blowing -out pipe of neat receiving avoids the accidental damage such as trample and pull of random placement, effectively prolongs the service life of blowing -out pipe, reduces maintenance cost. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 It is overall structure schematic diagram of the utility model;
[0029] Figure 2 It is structure schematic diagram of winding mechanism in the utility model;
[0030] Figure 3 It is sectional view of winding mechanism in the utility model;
[0031] Figure 4 It is structure schematic diagram of winding disc in the utility model;
[0032] Figure 5 It is A place enlarged structure schematic diagram in the utility model Figure 2
[0033] In the drawing: 1, pedestal;2, placing disc;3, winding mechanism;301, drive motor;302, mounting frame;303, driving gear;304, rotating joint;305, rotating sleeve;306, driven gear;307, winding disc;4, blowing -out pipe;5, guide wheel;6, perforation;7, inevitable gap;8, moving clamping block;9, fixed clamping block;10, spring;11, cross slide bar. DETAILED DESCRIPTION
[0034] The following description is used to disclose the utility model so that those skilled in the art can realize the utility model. The preferred embodiments in the following description are only as examples, and other obvious variants can be thought of by those skilled in the art.
[0035] In various industrial applications, such as production workshops or maintenance stations, air hoses are widely used as a common auxiliary tool. However, for a long time, the storage and placement of air hoses have generally suffered from poor management. Traditionally, air hoses are often piled up or tangled randomly, which not only leads to tangling and affects subsequent use efficiency, but also takes up space and makes the working environment look messy. Furthermore, randomly placed air hoses are easily damaged by being stepped on or accidentally dragged, shortening their lifespan. To address the shortcomings of the existing technology, this invention proposes an air hose placement fixture. This fixture uses a winding mechanism 3 to automatically wind up the air hose 4, effectively and neatly storing it, improving the working environment, and extending the service life of the air hose 4.
[0036] To better understand the technical solution of this utility model, the key structural terms involved in this utility model are explained below. The air-blowing pipe placement fixture of this utility model mainly includes a base 1, a winding mechanism 3, and a placement tray 2. The winding mechanism 3 is the core component for automatically winding the air-blowing pipe 4, and it mainly consists of a mounting frame 302, a drive motor 301, a rotating joint 304, a winding tray 307, a rotating sleeve 305, a driving gear 303, and a driven gear 306. It is understood that the air-blowing pipe placement fixture of this utility model is mainly suitable for various workplaces that require the use of the air-blowing pipe 4, such as machine shops and auto repair shops.
[0037] like Figures 1 to 5 The air blowing pipe placement fixture shown includes:
[0038] Pedestal 1;
[0039] The winding mechanism 3 is mounted on the base 1;
[0040] Placement tray 2 is set on the base 1 and located on one side of the winding mechanism 3;
[0041] The winding mechanism 3 includes:
[0042] Mounting bracket 302 is fixed on base 1;
[0043] The drive motor 301 is fixed on the mounting bracket 302;
[0044] Rotary joint 304 is rotatably mounted on mounting bracket 302, and rotating sleeve 305 is fixedly sleeved on the surface of rotary joint 304;
[0045] The winding disc 307 is coaxially arranged with the rotary joint 304 and is used to wind the air blowing pipe 4. The winding disc 307 is fixedly connected to the bottom of the rotary sleeve 305.
[0046] The driving gear 303 is fixed on the output shaft of the driving motor 301.
[0047] The driven gear 306 is engaged with the driving gear 303 and is fixedly connected with the rotating sleeve 305.
[0048] In operation, first, one end of the blowing pipe 4 is communicated with the bottom end of the rotating joint 304 through the perforation 6 passing through the inevitable gap 7, the top end of the rotating joint 304 is communicated with the external gas supply pipeline, then the driving motor 301 is started, the driving motor 301 drives the driving gear 303 to rotate, the driving gear 303 drives the driven gear 306 and the rotating sleeve 305 to rotate synchronously through the engagement transmission, the rotating sleeve 305 drives the winding disc 307 to rotate, the rotation of the winding disc 307 can wind the blowing pipe 4 on the surface of the winding disc 307, and the automatic winding of the blowing pipe 4 is realized.
[0049] As an embodiment of the utility model, the winding disc 307 is provided with a perforation 6 for the blowing pipe 4 to pass through, and the perforation 6 is communicated with an inevitable gap 7 for the blowing pipe 4 to be clamped.
[0050] In operation, in order to realize the reliable connection of the blowing pipe 4 and the rotating joint 304, as shown in the figure, the winding disc 307 is provided with the perforation 6 and the inevitable gap 7. Figure 4 The inevitable gap 7 is communicated with the perforation 6 and forms an opening for the one end of the blowing pipe 4 to pass through, so as to communicate the blowing pipe 4 with the bottom end of the rotating joint 304.
[0051] As an embodiment of the utility model, the winding mechanism 3 further comprises two guide wheels 5, the two guide wheels 5 are rotatably arranged on the pedestal 1, and the two guide wheels 5 are located on the feeding side of the winding disc 307, the two guide wheels 5 are used for guiding the blowing pipe 4, so that the blowing pipe 4 can correspond to the winding surface of the winding disc 307.
[0052] When the blowing pipe 4 is wound by the winding disc 307 in working, it will first pass between the two guide wheels 5, and the blowing pipe 4 can enter the winding area of the winding disc 307 at a predetermined angle and direction by the guiding of the guide wheels 5, thereby ensuring that the blowing pipe 4 can be wound flat and regularly on the winding disc 307; the main function of the guide wheels 5 is to guide and position limit the flexible blowing pipe 4. The specific structure of the guide wheels 5 can be diversified, for example, the guide wheels 5 can be cylindrical rollers with smooth surfaces to reduce the frictional resistance of the blowing pipe 4 as much as possible in the rolling process. In terms of material selection, the guide wheels 5 can be made of wear-resistant materials with low friction coefficients, such as engineering plastics or metal surface plating, etc. In addition, the spacing between the two guide wheels 5 can be adjusted adaptively according to the diameter of the blowing pipe 4 actually used, to ensure that the guide wheels 5 can effectively guide the blowing pipe 4 and will not cause too much hindrance to the movement of the blowing pipe 4. As an alternative embodiment, the guide wheels 5 can also be replaced by guide rods, guide blocks or other forms of guide structures as long as they can effectively guide the blowing pipe 4.
[0053] As an embodiment of the utility model, the pedestal 1 is provided with a clamping assembly for clamping and fixing the free end of the blowing pipe 4, and the clamping assembly comprises:
[0054] A fixed clamping block 9 is fixed on the pedestal 1, and a horizontal sliding rod 11 is slidably arranged on the fixed clamping block 9;
[0055] A movable clamping block 8 is arranged on one side of the fixed clamping block 9 and is arranged opposite to the fixed clamping block 9, and the movable clamping block 8 is fixedly connected with the end of the horizontal sliding rod 11;
[0056] A spring 10 is sleeved on the surface of the horizontal sliding rod 11, and the two ends of the spring 10 are fixedly connected with the side wall of the fixed clamping block 9 and the surface of the horizontal sliding rod 11 respectively, and the spring 10 is used for driving the movable clamping block 8 to move towards the fixed clamping block 9, so that the movable clamping block 8 and the fixed clamping block 9 clamp the blowing pipe 4 together.
[0057] In working, the clamping assembly mainly comprises the fixed clamping block 9, the movable clamping block 8 and the spring 10, and when the blowing pipe 4 needs to be placed in the clamping assembly, the user can pull the horizontal sliding rod 11, so that the movable clamping block 8 is driven to slide by overcoming the elastic force of the spring 10, and the movable clamping block 8 moves away from the fixed clamping block 9, so that the spacing between the fixed clamping block 9 and the movable clamping block 8 is increased, and the blowing pipe 4 is conveniently placed in the clamping assembly; after the user releases the hand, the movable clamping block 8 is driven to press the blowing pipe 4 by the restoring force of the spring 10, and cooperates with the fixed clamping block 9 to reliably clamp and fix the free end of the blowing pipe 4.
[0058] As an embodiment of the utility model, the placing disc 2 is located at the discharging side of the winding mechanism 3, and is used for placing the blowing gun connected with the free end of the blowing pipe 4.
[0059] When working, in order to realize the integrated placement and management of the blowing pipe 4 and the blowing gun used in conjunction therewith, the utility model further limits the position and function of the placing disc 2. Figure 1 As shown in the figure, the placing disc 2 is arranged on the pedestal 1, and is specifically located at the discharging side of the winding mechanism 3. The so-called "discharging side" refers to the side where the free end of the blowing pipe 4 is located after being wound by the winding mechanism 3. By arranging the placing disc 2 at the discharging side of the winding mechanism 3, the placing disc 2 can be close to the free end of the blowing pipe 4, so that the blowing gun connected with the free end of the blowing pipe 4 can also be placed on the placing disc 2.
[0060] Among them, the shape, size and material of the placing disc 2 can be selected and designed according to actual needs. For example, the shape of the placing disc 2 can be set as rectangular, circular, oval or irregular shape, etc. to adapt to the placement requirements of blowing guns of different shapes and sizes. The size of the placing disc 2 should ensure that the blowing gun can be stably placed and will not occupy too much working space. The material of the placing disc 2 can be selected from metal, plastic, rubber or wood, etc. and needs to have certain carrying capacity and durability. In order to prevent the blowing gun from sliding or falling on the placing disc 2, the surface of the placing disc 2 can be provided with anti-skid lines, grooves or retaining edges and the like. As a simple embodiment, the placing disc 2 can be set as a rectangular flat plate, fixed on the top of the pedestal 1 and close to the discharging side of the winding mechanism 3, for placing the blowing gun.
[0061] As an embodiment of the utility model, the driving gear 303 is a pinion, the driven gear 306 is a large gear, the pinion engages to drive the large gear to rotate, which can realize the effect of speed reduction and torque increase, so that the winding disc 307 can rotate at a lower speed and a larger torque, thereby more stably and reliably winding the blowing pipe 4.
[0062] As an embodiment of the utility model, the pedestal 1 is a box structure, and the top of the box structure of the pedestal 1 is the placing disc 2; in order to improve the overall structural strength and stability of the blowing pipe placing tool, the utility model limits the specific structural form of the pedestal 1, that is, the pedestal 1 adopts a box structure. Figure 1As shown, the pedestal 1 as a whole presents a box shape, and it can be understood that the box structure is not limited to a completely closed box, but refers to the box-shaped contour of the pedestal 1, and the inside can be hollow or can be provided with reinforcing ribs or other internal structures. The pedestal 1 adopting the box structure can provide more stable and reliable support for the winding mechanism 3 and the placement disc 2 mounted thereon. By arranging the placement disc 2 on the top of the box structure of the pedestal 1, the space on the top of the pedestal 1 can be fully utilized, and the function of the placement disc 2 can be realized without additional increase in floor area, so that the structure of the whole blow pipe placement tool is more compact and saves space occupation. In addition, the placement disc 2 as the top of the box structure of the pedestal 1 can also play a certain structure strengthening role, and improve the strength and rigidity of the top of the pedestal 1. In terms of specific installation mode, the placement disc 2 can be fixed on the top of the box structure of the pedestal 1 by various ways such as bolt connection, welding, clamping or bonding. As a preferred embodiment, the placement disc 2 can be detachably connected with the top of the box structure of the pedestal 1 by bolts, which is convenient for subsequent maintenance and replacement.
[0063] The utility model discloses a working principle:
[0064] When using, one end of the blow pipe 4 is communicated with the bottom end of the rotating joint 304 through the inevitable gap 7 and the perforation 6, the top end of the rotating joint 304 is communicated with the external gas supply pipeline, the driving motor 301 drives the driving gear 303 to rotate, the driving gear 303 drives the driven gear 306 to rotate, the driven gear 306 drives the rotating sleeve 305 to rotate, the rotating joint 304 bottom end is connected on the rotating sleeve 305, thereby the rotating sleeve 305 rotation drives the rotating joint 304 bottom end synchronous rotation, the rotating joint 304 is coaxial with the winding disc 307, the rotating sleeve 305 drives the winding disc 307 synchronous rotation, thereby the winding disc 307 rotation is rolled to the blow pipe 4, the blow pipe 4 is located between the two guide wheels 5 in the process of being rolled, the two guide wheels 5 cooperate and make the blow pipe 4 can keep with the winding of the winding disc 307 corresponding, thereby convenient rolling, after the blow pipe 4 is rolled, the movable clamping block 8 drives the horizontal sliding rod 11 to slide, the spring 10 is elastically compressed, thereby the movable clamping block 8 is away from the fixed clamping block 9, then the other end of the blow pipe 4 is placed between the fixed clamping block 9 and the movable clamping block 8, then the movable clamping block 8 is loosened, the elastic potential energy of the spring 10 is released, thereby the movable clamping block 8 is pressed to the blow pipe 4, the movable clamping block 8 and the fixed clamping block 9 cooperate and clamp the blow pipe 4, the placement disc 2 can be used to place the blow gun and other blow pieces connected to the other end of the blow pipe 4.
[0065] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. An air tube placement tool, characterized by, The utility model relates to a kind of air blowing pipe winding machine, including: Pedestal (1); Winding mechanism (3) is installed on the pedestal (1); Placement tray (2) is arranged on the pedestal (1), and located on the winding mechanism (3) side; The winding mechanism (3) includes: Mounting bracket (302) is fixed on the pedestal (1); Driving motor (301) is fixed on the mounting bracket (302); Rotary joint (304) is rotationally arranged on the mounting bracket (302), and the surface of the rotary joint (304) is fixedly sleeved with rotary sleeve (305); Winding disc (307) is coaxially arranged with the rotary joint (304), for winding air blowing pipe (4), and the winding disc (307) is fixedly connected with the bottom of the rotary sleeve (305); Driving gear (303) is fixed on the output shaft of the driving motor (301); Driven gear (306) is engaged with the driving gear (303), and is fixedly connected with the rotary sleeve (305).
2. The blow tube placement tool of claim 1, wherein, Perforation (6) for air blowing pipe (4) to pass through is arranged on the winding disc (307), and the perforation (6) is communicated with inevitable gap (7) for air blowing pipe (4) to be clamped.
3. The tube placement device of claim 1, wherein, The winding mechanism (3) further includes two guide wheels (5), both of which are rotationally arranged on the pedestal (1), and both of which are located on the feeding side of the winding disc (307), and both of which are used for guiding air blowing pipe (4), so that air blowing pipe (4) can correspond to the winding surface of winding disc (307).
4. The tube placement device of claim 1, wherein, Clamping assembly for clamping and fixing the free end of air blowing pipe (4) is arranged on the pedestal (1), and the clamping assembly includes: Fixed clamping block (9) is fixed on the pedestal (1), and transversely slidingly arranged on the fixed clamping block (9) is transversely slidingly arranged on the fixed clamping block (9); Movable clamping block (8) is arranged on one side of the fixed clamping block (9), and is arranged opposite to the fixed clamping block (9), and the movable clamping block (8) is fixedly connected with the end of the transversely slidingly arranged on the fixed clamping block (9); Spring (10) is sleeved on the surface of the transversely slidingly arranged on the fixed clamping block (9), and the two ends of the spring (10) are fixedly connected with the side wall of the fixed clamping block (9) and the surface of the transversely slidingly arranged on the fixed clamping block (9), and the spring (10) is used for driving the movable clamping block (8) to move towards the fixed clamping block (9), so that the movable clamping block (8) and the fixed clamping block (9) cooperate to clamp air blowing pipe (4).
5. The tube placement tool of claim 1, wherein, The placement tray (2) is located on the discharging side of the winding mechanism (3), and is used for placing air blowing gun connected with the free end of air blowing pipe (4).
6. The tube placement tool of claim 1, wherein, The driving gear (303) is a pinion, and the driven gear (306) is a large gear.
7. The tube placement device of claim 1, wherein, The pedestal (1) is a box structure.
8. The tube placement tool of claim 7, wherein, The top of the box structure of the pedestal (1) is the placement tray (2).