An intelligent clothing hanging system with clothing cleaning device
By using components such as blocking nets, wind pressure racks and wind pressure plates in the clothing hanging system, the clogging problem during cleaning of tassel-style clothing is solved, achieving efficient clothing transmission and cleaning effects.
Patent Information
- Application Number
- CN202311612612.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-29
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2043-11-29
AI Technical Summary
Existing clothing hanging systems are prone to clogging due to thread ends when cleaning tassel-style clothing, resulting in a decrease in the suction power of the negative pressure machine and affecting the transmission efficiency.
Using components such as blocking nets, wind pressure racks and wind pressure plates, the negative pressure airflow and wind force impact impurities, causing them to fall along the curved surface. The wind pressure plates vibrate to prevent impurities from adhering. A detachable waste hopper is designed to collect impurities.
It effectively prevents blockage, improves clothing transmission efficiency, extends the cleaning cycle of the cleaning device, and maintains system smoothness.
Smart Images

Figure CN117485830B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of clothing, in particular to an intelligent clothing hanging system with clothing cleaning device. BACKGROUND
[0002] The clothing hanging system is a system that can suspend and store or transport clothes, which is widely used in textile factories or family life. In the production of clothes, the clothing hanging system is used to suspend and transport the finished clothes. Workers only need to put the finished clothes into the clothing hanging system, so that the finished clothes are fixed by the clothing hanging system and moved out of the production line, saving the time of workers carrying clothes and reducing the labor intensity of workers. Some clothing hanging systems also have cleaning devices. After the clothes move into the cleaning device, the residual materials on the surface of the clothes are extracted by the negative pressure machine, which can quickly clean the threads, dust and other materials on the surface of the clothes, making the surface of the transported clothes more clean, saving the cleaning steps in the later stage and making the automation degree of clothing production higher.
[0003] Although the above-mentioned prior art can solve the corresponding technical problems, there are still some defects. The existing clothing hanging system with clothing cleaning device is prone to blockage when the negative pressure extraction is performed. If the suspended clothes are tassel style clothes, more threads will be generated during the production and sewing process. Since the tassel style clothes are easy to absorb threads, the clothing cleaning device is easy to suck a large number of threads attached to the clothes after the clothes are sent into the clothing cleaning device. Therefore, a large number of threads are easily absorbed in the negative pressure machine after a short time of work, which easily causes the clothing cleaning device to accumulate too many threads and be blocked, so that the suction force is greatly reduced, and the clothing hanging system needs to be frequently disassembled and cleaned, which greatly affects the transmission efficiency of the clothing hanging system. SUMMARY
[0004] The present application aims at the defects and deficiencies of the prior art, and provides an intelligent clothing hanging system with clothing cleaning device, which can prevent blockage and has high clothing transmission efficiency.
[0005] In order to achieve the above object, the technical scheme adopted by the present application is as follows: an intelligent clothes hanging system with clothes cleaning device, comprising a hanging host and a loading port arranged on one side of the hanging host for loading clothes, and an output port arranged on the other side of the hanging host for outputting clothes, wherein the hanging host comprises an isolation shell and a suspension belt arranged on the inner wall of the isolation shell and capable of moving up and down for transmitting clothes, the suspension belt is provided with a suspension block for suspending clothes, the loading port is arranged on one side of the isolation shell, the output port is arranged on the other side of the isolation shell, and a clothes cleaning device is further arranged through the bottom of the inner wall of the isolation shell, wherein the clothes cleaning device comprises an exhaust pipe arranged through the bottom of the inner wall of the isolation shell and used for discharging airflow, and a power motor arranged on the outer wall of the exhaust pipe, one end of the power motor is movably clamped with the negative pressure rotating shaft penetrating into the exhaust pipe, the clothes cleaning device further comprises a blocking mesh cover arranged on the top of the exhaust pipe, the blocking mesh cover is an arc-shaped mesh cover structure with a protruding center and sunken sides, impurities carried out by the airflow on the clothes are filtered on the blocking mesh cover, and the adhered impurities are caused to fall along the arc surface of the blocking mesh cover through the impact of the negative pressure airflow, a wind force downward pressing frame is arranged below the blocking mesh cover and fixedly connected at both ends with the top of the exhaust pipe, the wind force downward pressing frame comprises elastic supports fixedly connected at both ends with the top of the exhaust pipe and a plurality of wind pressure holes arranged on the top surface of the elastic supports, an upper impact block is arranged on the inner wall of the wind pressure hole, an elliptical elastic ball is arranged at the bottom of the wind pressure hole, a plurality of deformation elastic blocks with uniform gaps are embedded in the middle segment of the elastic support, arc-shaped grooves are arranged on the upper and lower surfaces of the deformation elastic blocks, an elastic sheet is arranged at the bottom of the deformation elastic block, the upper impact block comprises a base block fixedly connected with the inner wall of the wind pressure hole and a contact head arranged above the base block, an elastic connecting frame is arranged between the base block and the contact head, an arc-shaped hollow is arranged at the bottom of the contact head, a plurality of impact hammers are arranged above the base block and extended into the arc-shaped hollow at the bottom of the contact head, a plurality of semispherical protrusions are arranged on the top of the contact head, and blocking plates for increasing wind pressure are further arranged on both sides of the top of the contact head.
[0006] Further improvement is that the top of the exhaust pipe is further provided with a wind force impact pipe, the inner wall of the wind force impact pipe is provided with a wind pressure plate, and the top of the wind force impact pipe is fixedly connected with the edge of the blocking mesh cover.
[0007] Further improvement is that the bottom of the inner wall of the isolation shell is further provided with a detachable waste hopper.
[0008] Further improvement is that the wind pressure plate comprises a rear deformation sheet arranged on the inner wall of the wind force impact pipe and an impact block arranged on the side of the rear deformation sheet close to the inner wall of the wind force impact pipe, the other side of the rear deformation sheet is further provided with a swing sheet, and the middle segment of the swing sheet is connected with the rear deformation sheet through a movable head and movably clamped.
[0009] The beneficial effects of the present application are as follows: after the lint on the clothes is removed, the impurities on the clothes carried by the airflow are filtered on the blocking mesh cover, the impurities adhered are made to fall along the arc surface of the blocking mesh cover through the negative pressure airflow impact, and the airflow impact is used to extrude the air pressure down pressure frame, the upper impact is further used to shake off the adhering objects on the blocking mesh cover after the air extraction is completed, and the wind pressure plate is vibrated during the air extraction and cleaning process, so that the adhering objects such as the wool are more difficult to adhere to the blocking mesh cover, thereby avoiding the blockage, so that the clothes hanging system can be cleaned for a longer time, and the clothes transmission efficiency of the clothes hanging system is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0010] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor under the premise of the drawings.
[0011] Figure 1 is a three-dimensional structure schematic view of the hanging system of the present application;
[0012] Figure 2 is a structure schematic view of the front view section of the hanging main machine of the present application;
[0013] Figure 3 is a structure schematic view of the front view section of the clothes cleaning device of the present application;
[0014] Figure 4 is a structure schematic view of the front view section of the air pressure down pressure frame of the present application;
[0015] Figure 5 is a structure schematic view of the front view section of the upper impact block of the present application;
[0016] Figure 6 is a structure schematic view of the front view section of the wind pressure plate of the present application. DETAILED DESCRIPTION
[0017] The present application will be further described in combination with the drawings and specific embodiments.
[0018] Referring to Figures 1-6 the technical solutions adopted in the present embodiment are as follows: as Figures 1-3As shown, an intelligent clothes hanging system with clothes cleaning device, comprising a hanging host 1 and a loading port 3 for loading clothes arranged on one side of the hanging host 1, the other side of the hanging host 1 is also provided with an output port 2 for outputting clothes, the hanging host 1 comprises an isolation shell 11 and a suspension belt 12 for transmitting clothes movably arranged on the inner wall of the isolation shell 11, the suspension belt 12 is provided with a suspension block 13 for suspending clothes, the loading port 3 is arranged on one side of the isolation shell 11, the output port 2 is arranged on the other side of the isolation shell 11, the bottom of the inner wall of the isolation shell 11 is also provided with a clothes cleaning device 15, the clothes cleaning device 15 comprises an exhaust pipe 21 arranged through the bottom of the inner wall of the isolation shell 11 for discharging airflow and a power motor 22 arranged on the outer wall of the exhaust pipe 21, one end of the power motor 22 is movably clamped with the negative pressure rotating shaft 23 penetrating into the exhaust pipe 21, the clothes cleaning device 15 further comprises a blocking mesh cover 28 arranged on the top of the exhaust pipe 21, the blocking mesh cover 28 is an arc-shaped mesh cover structure with a protruding center and sunken sides, the impurities carried out by the airflow on the clothes are filtered on the blocking mesh cover 28, the attached impurities are made to fall along the arc surface of the blocking mesh cover 28 by the impact of the negative pressure airflow, the staff will open the clothes hanger after the clothes are produced on the assembly line, then hang the clothes hanger with the clothes on the suspension block 13, at this time, the clothes can be sent into the loading port 3 by moving the suspension block 13 driven by the suspension belt 12, and moved in the isolation shell 11 while cleaned by the clothes cleaning device 15 and then output from the output port 2 for collection, the power motor 22 provides power to make the negative pressure rotating shaft 23 rotate and then exhaust the airflow from the isolation shell 11, so that the impurities on the clothes are stripped from the clothes and blocked by the blocking mesh cover 28 along with the airflow, the impurities carried out by the airflow on the clothes are filtered on the blocking mesh cover 28, and the attached impurities are made to fall along the arc surface of the blocking mesh cover 28 by the impact of the negative pressure airflow, thereby avoiding a large amount of impurities from accumulating on the blocking mesh cover 28 and maintaining the unobstructed nature of the blocking mesh cover 28;
[0019] The blocking mesh cover 28 is below the wind force pressing frame 27 fixedly connected at both ends with the top of the exhaust pipe 21, which is beneficial to press down when air is extracted, and rebound to impact the lower surface of the blocking mesh cover 28 after air extraction is completed, thereby making the blocking mesh cover 28 more difficult to be blocked by attachments;
[0020] The top of the exhaust pipe 21 is also provided with a wind force impact pipe 25, the inner wall of the wind force impact pipe 25 is provided with a wind pressure plate 26, the top of the wind force impact pipe 25 is fixedly connected with the edge of the blocking mesh cover 28, which is beneficial to make the gas impact the wind pressure plate 26 when the gas is extracted and passes through the wind force impact pipe 25, thereby making the blocking mesh cover 28 more difficult to be blocked by attachments through the vibration of the wind pressure plate 26 caused by extrusion;
[0021] The inner wall bottom of the isolation shell 11 is also provided with a detachable waste hopper 16, which is beneficial to collect the collected waste impurities and more conveniently collect and clean them;
[0022] As shown in Figure 4 The wind pressure hole 33 is provided with an upper punch 35 on the inner wall. The elastic support 31 is pressed by the wind pressure hole 33, and after being pressed, it will deform downward and accumulate elastic force. At the same time, the upper punch 35 is pressed into the wind pressure hole 33 by the wind pressure. After the air extraction is completed, the elastic force of the elastic support 31 is released, so that it quickly recovers, thereby driving the upper punch 35 to punch upward, and under the action of inertia, the upper punch 35 continuously moves upward and hits the bottom surface of the blocking mesh cover 28, so that the bottom surface of the blocking mesh cover 28 is impacted to vibrate and shake off the attachments on the upper surface;
[0023] The bottom of the wind pressure hole 33 is provided with an oval elastic ball 34, which is beneficial to press the oval elastic ball 34 after the upper punch 35 is pressed into the wind pressure hole 33, thereby generating elastic force to make the upper punch 35 move upward at a faster speed and generate a stronger impact force;
[0024] The elastic support 31 is embedded with a plurality of deformation elastic blocks 32 with uniform gaps in the middle section, and the embodiment is provided with seven deformation elastic blocks 32. The upper and lower surfaces of the deformation elastic block 32 are provided with arc grooves, and the bottom of the deformation elastic block 32 is provided with an elastic sheet, which is beneficial to make the deformation speed of the elastic support 31 faster, thereby better and more easily accumulating elastic force;
[0025] As shown in Figure 5 The upper punch 35 includes a base block 41 fixedly connected with the inner wall of the wind pressure hole 33 and a contact head 43 arranged above the base block 41. The base block 41 and the contact head 43 are provided with an elastic connecting frame 42 therebetween. The bottom of the contact head 43 is provided with an arc hollow. The upper surface of the base block 41 is provided with a plurality of impact hammers 44, and the embodiment is provided with two impact hammers 44. The top of the impact hammer 44 extends into the arc hollow at the bottom of the contact head 43. When the upper punch 35 moves upward, the base block 41 drives the contact head 43 to continuously move upward, and after the contact head 43 contacts the blocking mesh cover 28, the blocking mesh cover 28 is impacted to shake off the attachments. The base block 41 continuously moves upward by pressing the elastic connecting frame 42, and drives the impact hammer 44 to move at the same time. Then, the impact hammer 44 hits the hollow at the bottom of the contact head 43, thereby generating secondary vibration after the contact head 43 hits the bottom surface of the blocking mesh cover 28, further shaking off the attachments;
[0026] The contact head 43 is provided with a plurality of semispherical protrusions, three in this embodiment, and is further provided with a blocking plate 45 on both sides of the top of the contact head 43 for increasing the wind pressure, which is conducive to enhancing the downward pressure of the wind after the blocking plate 45 is subjected to the wind pressure, and enhancing the unit pressure when the blocking plate 45 is bounced up through the semispherical protrusions, so as to make the impact more concentrated and avoid breaking the blocking net cover 28;
[0027] As shown in Figure 6 The wind pressure plate 26 includes a rear deformation plate 51 arranged on the inner wall of the wind impact tube 25 and an impact block 53 arranged on the side of the rear deformation plate 51 close to the inner wall of the wind impact tube 25. The other side of the rear deformation plate 51 is further provided with a swing plate 54. The swing plate 54 is connected to the rear deformation plate 51 through a movable head 55 in the middle section and is movably clamped. After the negative pressure airflow enters the wind impact tube 25, it first rapidly extrudes the rear deformation plate 51, so that the rear deformation plate 51 is bent towards the inner wall of the wind impact tube 25, and the impact block 53 impacts the inner wall of the wind impact tube 25 to produce vibration. At the same time, due to the instability of the wind pressure, the swing plate 54 can be twisted and pressed into the rear deformation plate 51 along the movable head 55 when it is subjected to a large wind pressure, and can quickly recover and swing when the wind pressure becomes small, so as to make the whole wind pressure plate 26 shake, and the shaking and vibration are simultaneously transmitted to the blocking net cover 28 to further shake off the attachments on the surface of the blocking net cover 28.
[0028] The working principle of the present application: when in use, the staff will support the clothes through the hanger after the production of the clothes on the assembly line, then hang the clothes on the hanging block 13, at this time, the clothes can be sent into the loading port 3 by moving the hanging block 13 driven by the hanging belt 12, and move in the isolation shell 11 while being cleaned by the clothes cleaning device 15, and then output from the output port 2 for collection, the power motor 22 provides power to make the negative pressure rotating shaft 23 rotate, and then the airflow is extracted from the isolation shell 11, so that the impurities on the clothes are stripped from the clothes, and are blocked by the blocking mesh cover 28 along with the airflow, the impurities on the clothes carried out by the airflow are filtered after the blocking mesh cover 28, and at the same time, the impurities adhered are made to fall along the arc surface of the blocking mesh cover 28 by the impact of the negative pressure airflow, thereby avoiding the accumulation of impurities on the blocking mesh cover 28, maintaining the smoothness of the blocking mesh cover 28, and the elastic support 31 of the air pressure downward frame 27 is extruded by the wind pressure through the wind pressure hole 33, and after being pressed, it will deform downward and accumulate elastic force, and the upper block 35 is pressed into the wind pressure through the wind pressure hole 33, after the air extraction is completed, the elastic force of the elastic support 31 is released at this time, so that it quickly recovers, thereby driving the upper block 35 to rise, and under the action of inertia, the upper block 35 continuously moves upward and hits the bottom surface of the blocking mesh cover 28, when the upper block 35 moves upward, the base block 41 drives the contact head 43 to continuously move upward, and after the contact head 43 contacts the blocking mesh cover 28, the blocking mesh cover 28 is impacted to shake off the adhering matter, the base block 41 is continuously moved upward by extruding the elastic connecting frame 42, and the impact hammer 44 is simultaneously moved, then the impact hammer 44 hits the hollow part at the bottom of the contact head 43, thereby producing secondary vibration of the contact head 43 after hitting the bottom surface of the blocking mesh cover 28, further shaking off the adhering matter, at the same time, the negative pressure airflow enters the air impact pipe 25, first extrudes the rear deformation plate 51, makes it bend towards the inner wall of the air impact pipe 25, and makes the impact block 53 impact the inner wall of the air impact pipe 25 to vibrate, at the same time, due to the instability of the wind pressure, the swing piece 54 is twisted and pressed into the rear deformation piece 51 along the movable head 55 when it is subjected to a large wind pressure, and after the wind pressure becomes small, it quickly recovers to produce swing through the elastic force, thereby making the wind pressure plate 26 shake as a whole, thereby further enhancing the cleaning effect of the adhering matter, avoiding its blockage, so that it can be cleaned for a longer time, and the clothing hanging system is guaranteed to have high clothing transmission efficiency.
[0029] The present application protects the structure of the product, the model of each element is not the content protected by the present application, and is also a known technology, and any element that can realize the above functions on the market can be used as a selection. Therefore, the model and other parameters of the element are not described in detail in the present application. The contribution of the present application is to scientifically combine each element together.
[0030] The above shows and describes the basic principles and main features of the present application and its advantages, those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, the above-mentioned embodiments and descriptions are only to illustrate the principles of the present application, and various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application, the scope of protection of the present application is defined by the appended claims and their equivalents. The present application is not described in detail, which is the known technology of those skilled in the art.
Claims
1. An intelligent clothes hanging system with clothes cleaning device, comprising a hanging host (1) and a loading port (3) for loading clothes arranged on one side of the hanging host (1), and an output port (2) for outputting clothes arranged on the other side of the hanging host (1), wherein the hanging host (1) comprises an isolation shell (11) and a suspension belt (12) for transmitting clothes movably arranged on the inner wall of the isolation shell (11), the suspension belt (12) is provided with a suspension block (13) for suspending clothes, the loading port (3) is arranged on one side of the isolation shell (11), the output port (2) is arranged on the other side of the isolation shell (11), and a clothes cleaning device (15) is further arranged through the bottom of the inner wall of the isolation shell (11), wherein the clothes cleaning device (15) comprises an exhaust pipe (21) for discharging airflow arranged through the bottom of the inner wall of the isolation shell (11) and a power motor (22) arranged on the outer wall of the exhaust pipe (21), and the negative pressure rotating shaft (23) of the power motor (22) penetrates into the exhaust pipe (21) when the power motor (22) is movably clamped on one end of the exhaust pipe (21), characterized in that: The clothes cleaning device (15) further comprises a blocking mesh cover (28) arranged at the top of the air exhaust pipe (21), the blocking mesh cover (28) is an arc-shaped mesh cover structure with a protruding center and sunken sides, impurities carried out by the airflow on the clothes are filtered on the blocking mesh cover (28), the impurities adhered are made to fall along the arc surface of the blocking mesh cover (28) through the impact of the negative pressure airflow, a wind power downward pressing frame (27) fixedly connected at both ends with the top of the air exhaust pipe (21) is arranged below the blocking mesh cover (28), the wind power downward pressing frame (27) comprises elastic supports (31) fixedly connected at both ends with the top of the air exhaust pipe (21) and a plurality of wind pressure holes (33) arranged on the top surface of the elastic supports (31), an upper impact block (35) is arranged on the inner wall of the wind pressure hole (33), an oval elastic ball (34) is arranged at the bottom of the wind pressure hole (33), a plurality of deformation elastic blocks (32) with uniform gaps are embedded in the middle segment of the elastic support (31), arc-shaped grooves are arranged on the upper and lower surfaces of the deformation elastic block (32), an elastic sheet is arranged at the bottom of the deformation elastic block (32), the upper impact block (35) comprises a base block (41) fixedly connected with the inner wall of the wind pressure hole (33) and a contact head (43) arranged above the base block (41), an elastic connecting frame (42) is arranged between the base block (41) and the contact head (43), an arc-shaped hollow is arranged at the bottom of the contact head (43), a plurality of impact hammers (44) are arranged above the base block (41), the top of the impact hammer (44) extends into the arc-shaped hollow at the bottom of the contact head (43), a plurality of semispherical protrusions are arranged on the top of the contact head (43), and blocking plates (45) for increasing wind pressure are further arranged on both sides of the top of the contact head (43).
2. The smart garment hanging system with garment cleaning device according to claim 1, wherein: The top of the air exhaust pipe (21) further comprises a wind power impact pipe (25), the inner wall of the wind power impact pipe (25) is provided with a wind pressure plate (26), and the top of the wind power impact pipe (25) is fixedly connected with the edge of the blocking mesh cover (28).
3. The smart garment hanging system with garment cleaning device of claim 1, wherein: The inner wall of the isolation shell (11) is further provided with a detachable waste hopper (16) at the bottom.
4. The smart garment hanging system with garment cleaning device of claim 2, wherein: The wind pressure plate (26) comprises a rear deformation sheet (51) arranged on the inner wall of the wind power impact pipe (25) and an impact block (53) arranged on the side of the rear deformation sheet (51) close to the inner wall of the wind power impact pipe (25), the other side of the rear deformation sheet (51) is further provided with a swing sheet (54), and the middle segment of the swing sheet (54) is connected with the rear deformation sheet (51) through a movable head (55) and is movably clamped.
Citation Information
Patent Citations
Vibrating type clothing hanging box capable of automatically cleaning dust
CN114180223A
Multifunctional dust removal device for garment materials
CN212505534U