Vacuum electric hair scissors

By combining the siphon and centrifugal principles of vacuum electric haircuts, the problem of scalp drifting is solved, efficient scalp filtration and collection is achieved, improving the haircut experience and reducing environmental pollution and energy consumption.

CN223130759UActive Publication Date: 2025-07-22ZHENGZHOU DEPENG ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202421526387.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-01
Publication Date
2025-07-22
Estimated Expiration
2034-07-01

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  • Figure CN223130759U_ABST
    Figure CN223130759U_ABST
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Abstract

The utility model discloses a pair of vacuum electric hair scissors, which comprises an electric machine body, an arc collecting box, a collecting waistband and a collecting structure, and relates to the technical field of hair scissors, and by utilizing a siphon principle and a centrifugal principle, a system can effectively intercept and remove impurities such as hair crumbs in gas; according to the siphon principle, a specific structure is designed, and gas is driven to pass through a filtering medium by utilizing gas pressure difference, so that the filtering efficiency is improved; according to the centrifugal principle, particle impurities in the gas are thrown to the wall surface of the device based on the centrifugal force effect borne by the object in the rotating process, and the filtering effect is further improved; the arc collecting box is divided into S-shaped drainage through the partition plates, the path length of gas in the filtering process is increased, the contact area of the gas and a filtering medium is increased, and therefore the filtering effect is enhanced.
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Description

Technical Field

[0001] The utility model relates to the technical field of hair clippers, in particular to a vacuum electric hair clipper. Background Art

[0002] In the wave of modern industrial development, the evolution of hair clippers is remarkable. From the initial simple scissors to more efficient hand push clippers and then to electric hand push clippers, each step marks a leap in technical efficiency. However, in the operation process of traditional electric hair clippers, the way of dealing with cut hair is quite primitive - allowing the cut hair to fall freely, which not only causes the hair scraps to scatter everywhere, making customers feel uncomfortable, such as the hair scraps adhering to the neck, ears, face and clothes, especially when the short hair scraps get into the clothes, it will bring itching and pain. What's more inconvenient is that barbers often need to clean the hair scraps after the haircut, and in this process, the hair scraps often fly up again, greatly reducing the haircut experience of customers. In view of this, in-depth research on the above problems has led to the generation of this case. Content of the Utility Model

[0003] To achieve the above purposes, the utility model is realized through the following technical solutions: a vacuum electric hair clipper, including: a motor body, an arc collection box, a collection belt and a collection structure. The arc collection box is installed on the collection belt, and the collection structure is installed on the motor body and the arc collection box;

[0004] The collection structure includes: a drainage pipe, a plurality of partition plates, a plurality of filter return blocks, a plurality of filter nets, a plurality of horn-shaped aggregation blocks, a one-way flip plate, an exhaust fan, a plurality of inner arc collection boxes, a push-pull convex arc block, two pairs of lifting limit shafts, two pairs of lifting sleeve springs and a sealing strip;

[0005] The one-way flip plate is inserted into the arc-shaped collection box, the drainage pipe is inserted into the motor body and the arc-shaped collection box, and the drainage pipe is connected to the one-way flip plate. A plurality of the partition plates are respectively installed crosswise inside the arc-shaped collection box. A plurality of the filter return blocks are respectively installed on a plurality of the partition plates and the arc-shaped collection box. A plurality of the filter nets are respectively installed on a plurality of the filter return blocks. A plurality of the horn-shaped aggregation blocks are respectively installed on a plurality of the filter return blocks. The exhaust fan is installed on the arc-shaped collection box. A plurality of the inner arc-shaped collection boxes are evenly and movably inserted inside the arc-shaped collection box. An arc-shaped lifting groove is formed on the arc-shaped collection box. The push-pull convex arc block is movably inserted inside the arc-shaped lifting groove. Two pairs of the lifting limit shafts are respectively movably inserted inside the arc-shaped lifting groove, and two pairs of the lifting limit shafts are movably inserted on the push-pull convex arc block. Two pairs of the lifting sleeve springs are respectively sleeved on two pairs of the lifting limit shafts. The sealing strip is installed on the push-pull convex arc block;

[0006] It should be noted that in the above, by operating the exhaust fan, the air inside the arc collection box is discharged. Through the arc collection box with negative pressure, the air inside the drainage pipe is drained to the inside of the arc collection box. Through the raw material pipe with negative pressure, the air in front of the motor body is drained to the inside of the drainage pipe. The arc collection box is divided into an S-shaped drainage by several partition plates, filtered by several filter return blocks and filter nets. At the same time, the flow of gas is limited by the horn-shaped aggregation block. The hair chips in the gas are filtered by the siphon principle and the centrifugal principle (although the siphon principle is mainly used for liquid flow, in gas filtration, we can draw on its principle of driving fluid flow based on pressure difference. For example, in a gas filtration system, a specific structure can be designed to use the gas pressure difference to drive the gas through the filter medium, so as to intercept and remove impurities in the gas; the centrifugal principle is based on the centrifugal force acting on an object during rotation. In centrifugal gas filtration, the gas is introduced into a rotating filtration device. Due to the action of centrifugal force, the particulate impurities in the gas are thrown towards the wall of the device, thus realizing the separation of gas and impurities. Centrifugal gas filtration usually has a high filtration efficiency and a large processing capacity). The gas is first introduced into a rotating filter net by the siphon principle, and the gas flow is driven by the gas pressure difference. Then, under the action of centrifugal force, the hair chips in the gas are thrown towards the wall of the device and intercepted, while the clean gas is discharged from the outlet of the device. At the same time, the hair chips are recovered by several inner arc collection boxes. The one-way flip plate is used for one-way drainage of the air drained inside the drainage pipe, avoiding the effect of backflow. When it is necessary to collect hair chips, by pulling the push-pull convex arc block on the stretching push-pull convex arc block, the push-pull convex arc block on it moves up and down stably along the two pairs of lifting limit shafts, and at the same time, the two pairs of lifting sleeve springs are squeezed and stretched, so as to achieve the disassembly and replacement of several inner arc collection boxes.

[0007] Preferably, a flow sensor is provided on the exhaust fan.

[0008] Preferably, filter cotton is respectively provided on several of the filter nets.

[0009] Preferably, a pair of pins is provided on the drainage pipe.

[0010] Preferably, a viewing window is provided on the arc collection box.

[0011] Preferably, conical pipes are respectively provided inside several of the horn-shaped aggregation blocks.

[0012] Beneficial effects

[0013] The utility model provides a vacuum electric hair clipper, which has the following beneficial effects: for the vacuum electric hair clipper, by using the siphon principle and the centrifugal principle, the system can effectively intercept and remove impurities such as hair scraps in the gas; through designing a specific structure, the siphon principle utilizes the gas pressure difference to drive the gas through the filter medium, thereby improving the filtration efficiency; the centrifugal principle is based on the centrifugal force acting on an object during rotation, making the particulate impurities in the gas be thrown towards the wall surface of the device, further enhancing the filtration effect; the arc collection box is divided into an S-shaped drainage by several partition plates, increasing the path length of the gas during the filtration process, improving the contact area with the filter medium, and thus enhancing the filtration effect; by combining the filter return block and the filter net, the impurities in the gas can be filtered more finely to ensure the output of clean gas; the horn-shaped aggregation block limits the flow of the gas drainage, ensuring the stability of the gas flow and the filtration effect; the one-way flip plate conducts one-way drainage of the air drained inside the drainage pipe, avoiding the backflow effect and ensuring the continuous and stable operation of the filtration system; the design of the inner arc collection box enables the effective collection of impurities such as hair scraps, and it can be disassembled and replaced by stretching the push-pull convex arc block, facilitating the maintenance and management of the system; the lifting sleeve spring and the lifting limit shaft ensure the stability and safety during the disassembly and replacement process; centrifugal gas filtration usually has a high filtration efficiency and a large processing capacity, which can meet the requirements of large-flow gas filtration; by combining multiple filtration mechanisms, the system can efficiently process the gas containing impurities such as hair scraps and ensure the cleanliness of the output gas; the system design takes into account safety and stability factors, such as the one-way flip plate preventing backflow, the lifting sleeve spring and the limit shaft ensuring stable lifting, etc., reducing the failure rate and safety risks; through effective gas filtration and hair scrap collection, the system reduces environmental pollution and meets the environmental protection requirements; the efficient gas filtration reduces energy consumption and waste, having an energy-saving effect. Brief Description of the Drawings

[0014] Figure 1 It is a top view cross-sectional schematic diagram of the vacuum electric hair clipper described in the utility model.

[0015] Figure 2 It is a front view cross-sectional schematic diagram of the arc collection box of the vacuum electric hair clipper described in the utility model.

[0016] Figure 3 It is a side view cross-sectional schematic diagram of the arc collection box of the vacuum electric hair clipper described in the utility model.

[0017] In the figure: 1, motor body; 2, arc collection box; 3, collection belt; 4, drainage pipe; 5, partition board; 6, filter return block; 7, filter screen; 8, horn-shaped aggregation block; 9, one-way flip plate; 10, exhaust fan; 11, inner arc collection box; 12, push-pull convex arc block; 13, lifting limit shaft; 14, lifting sleeve spring; 15, sealing strip. Detailed implementation mode

[0018] Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0019] Through those skilled in the art, all the electrical components in this case are connected to their adapted power supplies through wires, and appropriate controllers and encoders should be selected according to the actual situation to meet the control requirements. For the specific connection and control sequence, the electrical connection should be completed according to the sequence of the working order of each electrical component in the following working principle. The detailed connection means are well-known techniques in the art. The following mainly introduces the working principle and process, and no further description of electrical control will be made.

[0020] Embodiment

[0021] The following specifically describes the present novelty in conjunction with the attached drawings, as Figures 1-3As shown, the arc collection box 2 is installed on the collection belt 3, and the collection structure is installed on the motor body 1 and the arc collection box 2; the collection structure includes: a drainage pipe 4, a plurality of partition plates 5, a plurality of filter return blocks 6, a plurality of filter nets 7, a plurality of horn-shaped aggregation blocks 8, a one-way flip plate 9, an exhaust fan 10, a plurality of inner arc collection boxes 11, a push-pull convex arc block 12, two pairs of lifting limit shafts 13, two pairs of lifting sleeve springs 14, and a sealing strip 15; the one-way flip plate 9 is inserted into the arc collection box 2, the drainage pipe 4 is inserted into the motor body 1 and the arc collection box, and the drainage pipe is connected to the one-way flip plate 9. A plurality of the partition plates 5 are respectively cross-installed inside the arc collection box 2, a plurality of the filter return blocks 6 are respectively installed on a plurality of the partition plates 5 and the arc collection box 2, a plurality of the filter nets 7 are respectively installed on a plurality of the filter return blocks 6, a plurality of the horn-shaped aggregation blocks 8 are respectively installed on a plurality of the filter return blocks 6, the exhaust fan 10 is installed on the arc collection box 2, a plurality of the inner arc collection boxes 11 are evenly and movably inserted inside the arc collection box 2. An arc lifting groove is formed on the arc collection box 2, the push-pull convex arc block 12 is movably inserted inside the arc lifting groove, two pairs of the lifting limit shafts 13 are respectively movably inserted inside the arc lifting groove, and two pairs of the lifting limit shafts 13 are movably inserted on the push-pull convex arc block 12. Two pairs of the lifting sleeve springs 14 are respectively sleeved on two pairs of the lifting limit shafts 13, and the sealing strip 15 is installed on the push-pull convex arc block 12; a flow sensor is arranged on the exhaust fan 10; filter cotton is respectively arranged on a plurality of the filter nets 7; a pair of pins is arranged on the drainage pipe 4; a perspective window is arranged on the arc collection box 2; conical pipes are respectively arranged inside a plurality of the horn-shaped aggregation blocks 8.

[0022] According to the attached Figures 1-3It is concluded that by operating the exhaust fan 10, the air inside the arc collection box 2 is discharged. Through the negative-pressure arc collection box, the air inside the drainage pipe 4 is drained to the inside of the arc collection box. Through the negative-pressure raw material pipe, the air in front of the motor body 1 is drained to the inside of the drainage pipe 4. The arc collection box 2 is divided into an S-shaped drainage by several partition plates 5, filtered by several filter return blocks 6 and a filter net 7. At the same time, the drainage of the gas is limited by the horn-shaped aggregation block 8. The hair chips in the gas are filtered by the siphon principle and the centrifugal principle (although the siphon principle is mainly used for liquid flow, in gas filtration, we can draw on its principle of driving fluid flow based on the pressure difference. For example, in a gas filtration system, a specific structure can be designed to use the gas pressure difference to drive the gas through the filter medium, so as to intercept and remove impurities in the gas; the centrifugal principle is based on the centrifugal force acting on an object during rotation. In centrifugal gas filtration, the gas is introduced into a rotating filtration device. Due to the centrifugal force, the particulate impurities in the gas are thrown towards the wall of the device, thus realizing the separation of the gas from the impurities. Centrifugal gas filtration usually has a high filtration efficiency and a large processing capacity). The gas is first introduced into a rotating filter net 7 by the siphon principle, and the gas flow is driven by the gas pressure difference. Then, under the action of the centrifugal force, the hair chips in the gas are thrown towards the wall of the device and intercepted, while the clean gas is discharged from the outlet of the device. At the same time, the hair chips are recovered by several inner arc collection boxes 11. The one-way flip plate 9 is used to conduct one-way drainage of the air drained inside the drainage pipe 4, avoiding the reverse flow effect. When it is necessary to collect the hair chips, by pulling the push-pull convex arc block 12 on the stretch push-pull convex arc block 12, the push-pull convex arc block 12 moves up and down stably along the two pairs of lifting limit shafts 13, and at the same time, the two pairs of lifting sleeve springs 14 are squeezed and telescoped, so as to achieve the disassembly and replacement of several inner arc collection boxes 11.

[0023] Although the embodiments of the present invention 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 invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A vacuum electric hair clipper, comprising: The motor body, the arc-shaped collection box, the collection belt, and the collection structure, characterized in that the arc-shaped collection box is installed on the collection belt, and the collection structure is installed on the motor body and the arc-shaped collection box; The collection structure includes: a drainage pipe, a plurality of partition plates, a plurality of filter return blocks, a plurality of filter nets, a plurality of horn-shaped aggregation blocks, a one-way flip plate, an exhaust fan, a plurality of inner arc-shaped collection boxes, a push-pull convex arc block, two pairs of lifting limit shafts, two pairs of lifting sleeve springs, and a sealing strip; The one-way flip plate is inserted into the arc-shaped collection box, the drainage pipe is inserted into the motor body and the arc-shaped collection box, and the drainage pipe is connected to the one-way flip plate. A plurality of the partition plates are respectively cross-installed inside the arc-shaped collection box. A plurality of the filter return blocks are respectively installed on a plurality of the partition plates and the arc-shaped collection box. A plurality of the filter nets are respectively installed on a plurality of the filter return blocks. A plurality of the horn-shaped aggregation blocks are respectively installed on a plurality of the filter return blocks. The exhaust fan is installed on the arc-shaped collection box. A plurality of the inner arc-shaped collection boxes are evenly and movably inserted inside the arc-shaped collection box. An arc-shaped lifting groove is formed on the arc-shaped collection box. The push-pull convex arc block is movably inserted inside the arc-shaped lifting groove. Two pairs of the lifting limit shafts are respectively movably inserted inside the arc-shaped lifting groove, and two pairs of the lifting limit shafts are movably inserted on the push-pull convex arc block. Two pairs of the lifting sleeve springs are respectively sleeved on two pairs of the lifting limit shafts. The sealing strip is installed on the push-pull convex arc block.

2. The vacuum electric hair clipper according to claim 1, wherein A flow sensor is provided on the exhaust fan.

3. The vacuum electric hair clipper according to claim 2, characterized in that, Filter cotton is respectively provided on a plurality of the filter nets.

4. A vacuum electric hair clipper according to claim 3, characterized in that, A pair of pins is provided on the drainage pipe.

5. A vacuum electric hair clipper according to claim 4, characterized in that, A perspective window is provided on the arc-shaped collection box.

6. The vacuum electric hair clipper according to claim 5, characterized in that, Conical tubes are respectively provided inside a plurality of the horn-shaped aggregation blocks.