Traveling cleaning machine traveling air blowing and suction air pipe extension device
By designing an air duct extension device for a mobile cleaning machine that combines flexible and rigid pipes, and using an electric telescopic rod to drive the rotation of a triangular plate, the problem of interference between the wiring robot and the air duct is solved, flexible avoidance of the air duct is achieved, space is saved, and the safety and reliability of the equipment are improved.
Patent Information
- Application Number
- CN202422585305.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-25
AI Technical Summary
The wiring robot and the circulating blowing and suction air ducts interfere with each other when moving back and forth above the spinning frame, and conventional methods cannot effectively avoid them.
A roving blowing and suction air duct extension device for a roving cleaning machine is designed. It adopts a combination of flexible and rigid pipes, combined with a tilting rod and an extension device. An electric telescopic rod is used to drive the rotation of the triangular plate to achieve flexible expansion and contraction of the air duct to avoid the wiring robot.
Effectively avoid wiring robots to ensure that air ducts do not interfere with external equipment, saving space, reducing costs, and improving equipment safety and reliability.
Smart Images

Figure CN223304608U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of itinerant cleaning machines, in particular to an outreach device for a itinerant blowing and suction air duct of a itinerant cleaning machine. Background Art
[0002] At present, spinning frames are equipped with patrol cleaning machines that move back and forth. With the development of spinning frame equipment, wiring robots that match spinning frames have appeared on the market. When the wiring robots work, they move back and forth along both sides of the spinning frames. When moving back and forth, they will interfere with the patrol blowing and suction air ducts. The air ducts need to avoid the wiring robots, but the overall size of the wiring robots is large, and conventional methods cannot effectively avoid them. Utility Model Content
[0003] In order to solve the above technical problems, the utility model proposes a circulating blowing and suction air duct extension device for a circulating cleaning machine, which has a clever design and a reasonable and compact structure, and can enable the air duct to quickly and effectively avoid the wiring robot.
[0004] The technical solution of this utility model:
[0005] A circulating blowing and suction air duct extension device for a circulating cleaning machine, circulating blowing and suction air ducts are installed on both sides of the main body of the circulating cleaning machine, the circulating blowing and suction air ducts include a first flexible pipe, a first rigid pipe, a second flexible pipe, a second rigid pipe and an inward-retracting bracket, a horizontal support frame is installed on both sides of the main body of the circulating cleaning machine, the upper end of the first rigid pipe is rotatably installed on the outer side of the horizontal support frame, the upper end of the first rigid pipe is connected to the blowing and suction air outlets on both sides of the main body of the circulating cleaning machine through the first flexible pipe; the lower end of the first rigid pipe is connected to the second rigid pipe through the second flexible pipe, the inward-retracting bracket includes an upper bracket, a lower bracket and an inclined rod, the upper bracket is installed at the lower end of the first rigid pipe, and the lower bracket is installed at the second rigid pipe The upper end of the rigid pipe, the upper end of the tilting rod is fixed on the upper bracket, the tilting rod is tilted inward at a certain angle relative to the first rigid pipe, the lower end of the tilting rod is rotatably connected to the lower bracket, and the outer sides of the horizontal support frames on both sides are respectively installed with outreach devices, the outreach devices include an electric telescopic rod, a connecting rod, and a triangular plate. The rear end of the electric telescopic rod is rotatably installed on the horizontal support frame on the corresponding side of the main body of the patrol cleaning machine. One corner of the triangular plate is located above the electric telescopic rod and is rotatably installed on the horizontal support frame. The front telescopic end of the electric telescopic rod is rotatably connected to a corner of the lower end of the triangular plate, and the last corner of the triangle is rotatably connected to the upper end of the connecting rod, and the other end of the connecting rod is rotatably connected to the middle upper position of the inner side of the first rigid pipe.
[0006] The first flexible pipe and the second flexible pipe are bellows type hoses.
[0007] The first flexible pipe, the first rigid pipe, the second flexible pipe, and the second rigid pipe are connected to each other to form an air duct, and three such air ducts are designed on both sides of the main body of the patrol cleaning machine. The three air ducts are installed side by side, and the outer side of the horizontal support frame is rotatably connected to the inner upper end of the first rigid pipe of the three air ducts, the upper bracket is connected to the lower end of the first rigid pipe of the three air ducts, and the lower bracket is connected to the upper end of the second rigid pipe of the three air ducts. The upper bracket and the lower bracket are connected between the three air ducts by two inclined rods; the air ducts on two sides of the three air ducts are connected to the outward expansion device on the corresponding side.
[0008] A V-shaped avoidance groove is provided on one side of the triangular plate close to the electric telescopic rod.
[0009] An obstacle sensing photoelectric switch facing the front is installed on the front side or inner side of the second rigid pipe on the middle front side of the three air ducts, and an obstacle sensing photoelectric switch facing the front is installed on the rear side or inner side of the second rigid pipe on the middle rear side of the three air ducts; an outward reset photoelectric switch facing inward is installed on the inner side of the second rigid pipe in the middle of the three air ducts.
[0010] The circulating cleaning machine can be moved forward and backward and is installed above the spinning frame, and the air ducts on both sides are respectively located on both sides of the spinning frame.
[0011] The advantages of the utility model are:
[0012] The air duct is designed with a first and a second flexible duct. The first flexible duct ensures that the air duct can rotate outward to a certain angle, while the second flexible duct is designed to prevent the air duct from opening too wide. This ensures that the wiring robot can pass through without interfering with external equipment, ensuring safety and reliability.
[0013] The upper end of the tilt rod is fixedly connected with the lower end of the rotation connection mode, which ensures that the second rigid pipe can be close to the spinning frame when working. When it is deployed to avoid, it always hangs down to avoid over-extension and save space.
[0014] The outward expansion device pulls the lower corner of the triangular plate through the electric push rod, and rotates around the upper corner of the electric push rod. The triangular plate pulls down the upper end of the connecting rod through the last angle rotation, and the other end of the connecting rod is passively pushed outward. In this way, the first rigid pipe rotates around its upper end rotation connection point until the two corners of the connecting rod and the triangular plate are in the same straight line. At this time, the expansion angle is maximized to meet the need for air duct avoidance. Through the push-pull method of the triangular plate, the stroke of the electric push rod can be shortened, and an extra-long electric push rod does not need to be used, which saves installation space and reduces costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the present utility model.
[0016] Figure 2 It is a partially enlarged schematic diagram of the outward expansion device of the present invention.
[0017] Figure 3 It is a schematic diagram of the state of the one-side circulating blowing and suction air duct of the utility model after being unfolded.
[0018] Figure 4 The utility model is a schematic side view of the inner side of the one-side circulating blowing and suction air duct.
[0019] Figure 5 This is a schematic top view of the mobile cleaning machine of the present invention (a partial cross-sectional view of one side thereof). DETAILED DESCRIPTION
[0020] Refer to the attached Figure 1-5 , a circulating blowing and suction duct extension device for a circulating cleaning machine, circulating blowing and suction ducts 2 are installed on both sides of the main body 1 of the circulating cleaning machine, and the circulating blowing and suction ducts 2 include a first flexible pipe 21, a first rigid pipe 22, a second flexible pipe 23, a second rigid pipe 24 and an inward-retracting bracket 25. A horizontal support frame 11 is installed on both sides of the main body 1 of the circulating cleaning machine, and the upper end of the first rigid pipe 22 is rotatably installed on the outer side of the horizontal support frame 11. The upper end of the first rigid pipe 22 is connected to the blowing and suction outlets on both sides of the main body 1 of the circulating cleaning machine through the first flexible pipe 21; the lower end of the first rigid pipe 22 is connected to the second rigid pipe 24 through the second flexible pipe 23. The inward-retracting bracket 25 includes an upper bracket 251, a lower bracket 252, and a tilting rod 253. The upper bracket 251 is installed at the lower end of the first rigid pipe 22, and the lower bracket 252 is installed at the second rigid pipe 24 The upper end of the tilting rod 253 is fixed on the upper bracket 251, and the tilting rod 253 is tilted inward at a certain angle relative to the first rigid pipe 22. The lower end of the tilting rod 253 is rotatably connected to the lower bracket 252. The outer sides of the horizontal support frames 11 on both sides are respectively installed with outreach devices 20. The outreach device 20 includes an electric telescopic rod 201, a connecting rod 202, and a triangular plate 203. The rear end of the electric telescopic rod 201 is rotatably installed on the horizontal support frame 11 on the corresponding side of the main body 1 of the patrol cleaning machine. One corner of the triangular plate 203 is located above the electric telescopic rod 201 and is rotatably installed on the horizontal support frame 11. The front telescopic end of the electric telescopic rod 201 is rotatably connected to a corner of the lower end of the triangular plate 203, and the last corner of the triangle is rotatably connected to the upper end of the connecting rod 202. The other end of the connecting rod 202 is rotatably connected to the middle upper position inside the first rigid pipe 22.
[0021] The first flexible pipe 21 and the second flexible pipe 23 are bellows-type hoses. Such pipe designs ensure that the pipes can bend and stretch without being damaged or leaking.
[0022] The first flexible duct 21, the first rigid duct 22, the second flexible duct 23, and the second rigid duct 24 are interconnected to form an air duct. Three such air ducts are designed on either side of the main body 1 of the mobile cleaning machine. The three air ducts are installed side by side. The outer side of the horizontal support frame 11 is rotatably connected to the inner upper end of the first rigid duct 22 of the three air ducts. The upper bracket 251 is connected to the lower end of the first rigid duct 22 of the three air ducts, and the lower bracket 252 is connected to the upper end of the second rigid duct 24 of the three air ducts. The upper bracket 251 and the lower bracket 252 are connected to each other by two inclined rods 253. The air ducts 2 on both sides of the three air ducts are connected to the extension device 20 on the corresponding side. A mobile cleaning machine normally has three air ducts on one side. The air duct combination on both sides is a suction duct, and the air duct in the middle is a blowing duct. These are all existing technologies, and the present invention is briefly described.
[0023] The triangular plate 203 is provided with a V-shaped avoidance groove 2030 on one side close to the electric telescopic rod 201. The avoidance groove is designed to prevent the triangular plate and the electric telescopic rod from interfering with each other during operation, thereby ensuring safe and stable operation.
[0024] A forward-facing obstacle-sensing photoelectric switch 204 is installed on the front or inner side of the second rigid duct 24 in the middle front of the three air ducts. A forward-facing obstacle-sensing photoelectric switch 204 is installed on the rear or inner side of the second rigid duct in the middle rear of the three air ducts. An inward-facing extension reset photoelectric switch 205 is installed on the inner side of the second rigid duct in the middle of the three air ducts. The obstacle-sensing photoelectric switches on both sides ensure that the mobile cleaning machine can detect the presence of the wiring robot in advance when it moves, triggering the electric telescopic rod to move accordingly. The extension reset photoelectric switch ensures that the wiring robot passes through the inside of the air duct and simultaneously generates a signal to the electric telescopic rod. After a delay of several seconds, the extension device retracts the air duct, resetting the position and resuming operation.
[0025] The main body of the traveling cleaning machine is mounted above the spinning frame 3 and moves forward and backward, and the air ducts 2 on both sides are respectively located on both sides of the spinning frame 3. This is a conventional design, and the utility model is briefly described.
[0026] When the present invention is in use, the mobile cleaning machine carries the air ducts on both sides and performs mobile cleaning work above the spinning frame. During operation, the obstacle sensing photoelectric switch 204 on the side of the head senses the wiring robot 4 at a distance of about 0.5 meters. At this time, the electric telescopic rod retracts, pulling back one rotation support of the triangular plate so that the connecting rod and the other two rotation support points of the triangular plate are in a straight line. The three air ducts are pushed outward together, and the first rigid pipe rotates around the rotation support of the horizontal support frame. The lower end carries the second rigid pipe outward. During the outward swing, the second rigid pipe is always in a drooping state, allowing the three air ducts to pass outside the wiring robot 4. When the outward extension reset photoelectric switch 205 in the middle detects the wiring robot 4, the electric telescopic rod begins to extend after 2-3 seconds. The 2-3 seconds is set to ensure that this time is sufficient for the mobile cleaning machine to pass the outside of the wiring robot 4 with the air ducts. Of course, this time can be adjusted according to the actual moving speed of the mobile cleaning machine to meet different speed requirements. After the three air ducts are reset, the mobile cleaning machine continues to work.
Claims
The duct is connected to the air intake port of the second flexible pipe and the air intake port is connected to the second flexible pipe by the second flexible pipe. The outreach device includes an electric telescopic rod, a connecting rod, and a triangular plate. The rear end of the electric telescopic rod is rotatably mounted on the horizontal support frame on the corresponding side of the main body of the patrol cleaning machine. One corner of the triangular plate is located above the electric telescopic rod and is rotatably mounted on the horizontal support frame. The front telescopic end of the electric telescopic rod is rotatably connected to a corner of the lower end of the triangular plate, and the last corner of the triangle is rotatably connected to the upper end of the connecting rod. The other end of the connecting rod is rotatably connected to the upper middle position inside the first rigid pipe.
2. The device for extending the blowing and suction air ducts of a traveling cleaning machine according to claim 1, characterized in that: The first flexible pipe and the second flexible pipe are bellows type hoses.
3. The device for extending the blowing and suction air ducts of a traveling cleaning machine according to claim 1, characterized in that: The first flexible pipe, the first rigid pipe, the second flexible pipe, and the second rigid pipe are connected to each other to form an air duct, and three such air ducts are designed on both sides of the main body of the patrol cleaning machine. The three air ducts are installed side by side, and the outer side of the horizontal support frame is rotatably connected to the inner upper end of the first rigid pipe of the three air ducts, the upper bracket is connected to the lower end of the first rigid pipe of the three air ducts, and the lower bracket is connected to the upper end of the second rigid pipe of the three air ducts. The upper bracket and the lower bracket are connected between the three air ducts by two inclined rods; the air ducts on two sides of the three air ducts are connected to the outward expansion device on the corresponding side.
4. The device for extending the blowing and suction air ducts of a traveling cleaning machine according to claim 1, characterized in that: A V-shaped avoidance groove is provided on one side of the triangular plate close to the electric telescopic rod.
5. The device for extending the blowing and suction air ducts of a traveling cleaning machine according to claim 3, characterized in that: An obstacle sensing photoelectric switch facing the front is installed on the front side or inner side of the second rigid pipe on the middle front side of the three air ducts, and an obstacle sensing photoelectric switch facing the front is installed on the rear side or inner side of the second rigid pipe on the middle rear side of the three air ducts; an outward reset photoelectric switch facing inward is installed on the inner side of the second rigid pipe in the middle of the three air ducts.
6. The device for extending the blowing and suction air ducts of a traveling cleaning machine according to claim 1, characterized in that: The circulating cleaning machine can be moved forward and backward and is installed above the spinning frame, and the air ducts on both sides are respectively located on both sides of the spinning frame.