Brush feeding device
By designing an automated brush loading device, the automatic flip and stable clamping of the material box is achieved by using the flip rack and clamping mechanism, which solves the problems of low manual loading efficiency and poor stability, and improves production efficiency and safety.
Patent Information
- Application Number
- CN202422420588.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing brush loading process relies on manual operations, resulting in low efficiency, poor stability, and safety risks, making it difficult to match with automated production equipment.
A brush loading device is designed, including a flip rack, clamping mechanism and hoisting member. Through the hinge design of the support frame and the matching of the hoisting member, the automatic flip and stable clamping of the material box is realized, and the conveying and material collection mechanism is matched to realize automatic loading.
It improves the efficiency and accuracy of feeding, reduces labor costs, ensures production stability and safety, and adapts to the loading needs of different brush types.
Smart Images

Figure CN223175123U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of brush production devices, and specifically, to a brush feeding device. Background Art
[0002] When it is necessary to supply the brushes in the material box to the processing equipment, a large number of manual auxiliary operations are required. In order to facilitate the subsequent material taking operation of the brushes in the material box, workers often need to manually adjust the angle of the material box to make it inclined. This manual auxiliary method not only consumes a large amount of manpower and time, but also has many unstable factors.
[0003] When manually adjusting the angle of the material box, it is difficult to ensure that the material box can be adjusted to the most suitable inclination each time, which will affect the accuracy and efficiency of material taking. Moreover, due to the limitations of manual operation, during the overturning or adjustment of the material box, situations such as the material box shaking and the brushes falling are likely to occur, which not only affects the production progress, but may also damage the brushes, thereby increasing the production cost.
[0004] In addition, the speed and stability of manual feeding are difficult to match with automated production equipment, and it is easy to become a bottleneck link in the entire production process, restricting the overall efficiency of the production line. At the same time, with the continuous increase of labor costs, this feeding method relying on a large number of manual operations also brings greater economic pressure to the enterprise. Summary of the Utility Model
[0005] The utility model provides a brush feeding device, which solves the problem of manual assistance required for brush feeding in the related art.
[0006] The technical solution of the utility model is as follows:
[0007] A brush feeding device for feeding brushes from a conveyor line into a hair brushing and shearing machine, the material box is used for loading several rows of the brushes, and includes:
[0008] A frame,
[0009] A conveying frame, the conveying frame is arranged on the frame,
[0010] A flipping frame, the flipping frame includes:
[0011] A support frame, the support frame is hinged to the conveying frame, the support frame has a support frame, and the support frame drives the material box to flip after rotation,
[0012] A first clamping member and a second clamping member, the first clamping member is arranged on one side of the support frame, the second clamping member is slidably arranged on the other side of the support frame, and after the second clamping member slides, the first clamping member and the second clamping member are used for clamping or releasing the clamping of the material box,
[0013] The lifting member is arranged to move up and down relative to the frame, and is configured to abut against the support frame after rising, driving the support frame to rotate.
[0014] As a further technical solution, the conveying frame has conveying rollers, and further includes:
[0015] The flipping frame is flip - set on the conveying frame and is located in the middle of the conveying frame. The moving path of the material box passes above the flipping frame, and when passing above the flipping frame, the flipping frame is configured to flip and drive the material box to form an angle with the horizontal plane.
[0016] The transfer member is arranged to move relative to the frame, and is configured to be located above the material box or at the entrance of the hair - removing and shearing machine after moving.
[0017] The material - taking member is arranged on the transfer member. After the transfer member moves above the material box, the material - taking member abuts against the brush and grabs a row of the brushes, and then moves to the entrance of the hair - removing and shearing machine, where the material - taking member puts down a row of the brushes.
[0018] As a further technical solution, the support frame has a slide rail, and further includes:
[0019] The sliding member is slidably arranged on the slide rail.
[0020] The rotating member is hinged to the sliding member. The rotating member has a jack, and the lifting member has an insertion part. After the lifting member rises, the insertion part is inserted into the jack.
[0021] As a further technical solution, it further includes:
[0022] The reset member is an elastic member. One end acts on the sliding member, and the other end acts on the frame, providing a force for the sliding member to reset.
[0023] As a further technical solution, the insertion part has an abutting part which is arc - shaped. The abutting part penetrates the rotating member. After the lifting member rises, the abutting part abuts against the material box, and the insertion part is inserted into the jack.
[0024] As a further technical solution, the material - taking member is rotatably arranged on the transfer member. The material - taking member is an electromagnetic strip, and further includes:
[0025] The anti - detachment member is arranged to move up and down relative to the material - taking member and is located on one side of the material - taking member. When the material - taking member fixes a row of the brushes, the anti - detachment member abuts against the row of the brushes adjacent to the row of the brushes fixed by the material - taking member.
[0026] A second elastic member, one end of the second elastic member acts on the anti - detachment member, and the other end acts on the material taking member, providing a force for the anti - detachment member to move away from the material taking member.
[0027] As a further technical solution, it further includes:
[0028] A first moving bracket, the first moving bracket is arranged on the frame,
[0029] A second moving bracket, the second moving bracket is movably arranged on the first moving bracket, the transfer member is movably arranged on the second moving bracket, and after the second moving bracket moves, it approaches the turnover frame or the hair brushing and shearing machine.
[0030] The working principle and beneficial effects of the present utility model are as follows:
[0031] In the present utility model, the support frame is hinged to the conveying frame, which enables the support frame to rotate around the hinge point. The support frame has a support portion, and after rotation, the support portion can drive the material box to turn over, thereby adjusting the angle of the material box and preparing for subsequent material taking operations. The first clamping member is arranged on one side of the support frame, and the second clamping member is slidably arranged on the other side of the support frame. The second clamping member can adjust the distance from the first clamping member by sliding. After the second clamping member slides, the first clamping member and the second clamping member can act together to clamp or unclamp the material box. Such a design can ensure the stability of the material box during the turnover process, preventing the material box from accidentally slipping or moving. The lifting member is arranged to move up and down relative to the frame, which means that the lifting member can move up or down in the vertical direction. The lifting member is configured to abut against the support frame after rising, and through contact with the support frame, the lifting member can drive the support frame to rotate. The function of the lifting member is to provide the power required for turning over the material box, enabling the support frame to smoothly perform the turning - over operation.
[0032] The hinged design of the support frame and the cooperation of the lifting member enable the material box to be turned over during the conveying process. The turned - over material box can make the brush in a more convenient position for material taking, improving the working efficiency and accuracy of the feeding device. The clamping function of the first clamping member and the second clamping member can keep the material box stable during the turnover process of the material box. The clamping force can prevent the material box from shaking or slipping during turning over, ensuring the safety and reliability of the feeding process. The lifting and lowering movement of the lifting member can precisely control the turning - over angle and speed of the material box. By adjusting the rising height and speed of the lifting member, according to different brush types and feeding requirements, the best turning - over effect can be achieved. This helps to improve the adaptability and flexibility of the feeding device. The structural design and action process of the entire turnover frame can cooperate with other components of the conveying and feeding device to realize automated feeding operations. There is no need for manual intervention in the turnover and clamping of the material box, reducing labor costs and improving production efficiency and quality stability. Brief Description of the Drawings
[0033] The following will further illustrate the above-mentioned features, technical features, advantages and their implementation manners of the present utility model in a clear and understandable manner in combination with the drawings of the preferred embodiments.
[0034] Figure 1 Structural schematic diagram of the present utility model;
[0035] Figure 2 Partial structural schematic diagram of the present utility model;
[0036] Figure 3 Structural schematic diagram of the turnover frame and the conveying frame in the present utility model;
[0037] Figure 4 Internal structural schematic diagram of the turnover frame and the conveying frame in the present utility model;
[0038] Figure 5 Structural schematic diagram of the turnover frame and the conveying frame in another perspective of the present utility model;
[0039] In the figure: frame - 1, conveying frame - 2, conveying roller - 201, material box - 3, turnover frame - 4, support frame - 401, first clamping member - 402, second clamping member - 403, lifting member - 404, slide rail - 405, abutting portion - 406, inserting portion - 407, transfer member - 5, material taking member - 6, anti - detachment member - 601, second elastic member - 602, sliding member - 7, rotating member - 8, jack - 801, jack - 801, reset member - 9, first moving bracket - 10, second moving bracket - 11. Detailed Description of the Embodiments
[0040] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will describe the specific embodiments of the present utility model with reference to the drawings. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings and other embodiments can be obtained.
[0041] To make the drawings simple, only the parts related to the utility model are schematically shown in each drawing, and they do not represent the actual structure of the product. In addition, to make the drawings simple and easy to understand, in some drawings, components with the same structure or function are only schematically shown for one of them, or only one of them is marked. In this article, "one" not only means "only this one", but also can mean "more than one" situation, and "several" includes "two" and "more than two".
[0042] In this text, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", and "joined" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in this utility model can be understood according to specific situations.
[0043] In addition, in the description of this application, the terms "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0044] Referring to Figures 1 to 5 , for the embodiment of this utility model, it is proposed that the turnover frame 4 includes a support frame 401, the support frame 401 is hingedly arranged on the conveying frame 2, the support frame 401 has a support part, and after the support part rotates, it drives the material box 3 to turn over. The first clamping member 402 is arranged on one side of the support frame 401, the second clamping member 403 is slidably arranged on the other side of the support frame 401, and after the second clamping member 403 is configured to slide, the first clamping member 402 and the second clamping member 403 are used to clamp or release the clamping of the material box 3. The lifting member 404 is arranged to lift and lower relative to the frame 1, and the lifting member 404 is configured to abut against the support frame 401 after rising, driving the support frame 401 to rotate.
[0045] In this embodiment, the support frame 401 is hingedly arranged on the conveying frame 2, which enables the support frame 401 to rotate around the hinge point. The support frame 401 has a support part, and after the support part rotates, it can drive the material box 3 to turn over, so as to adjust the angle of the material box 3 and prepare for the subsequent material taking operation. The first clamping member 402 is arranged on one side of the support frame 401, and the second clamping member 403 is slidably arranged on the other side of the support frame 401. The second clamping member 403 can adjust the distance from the first clamping member 402 by sliding. After the second clamping member 403 slides, the first clamping member 402 and the second clamping member 403 can act together to clamp or release the clamping of the material box 3. Such a design can ensure the stability of the material box 3 during the turnover process and prevent the material box 3 from accidentally slipping or moving. The lifting member 404 is arranged to lift and lower relative to the frame 1, which means that the lifting member 404 can move up or down in the vertical direction. The lifting member 404 is configured to abut against the support frame 401 after rising, and through the contact with the support frame 401, the lifting member 404 can drive the support frame 401 to rotate. The function of the lifting member 404 is to provide the power required to turn over the material box 3, so that the support frame 401 can smoothly perform the turnover operation.
[0046] The hinge design of the support frame 401 and the cooperation of the lifting member 404 enable the material box 3 to be flipped during the conveying process. The flipped material box 3 can place the brush in a more convenient position for material picking, improving the working efficiency and accuracy of the feeding device. The clamping functions of the first clamping member 402 and the second clamping member 403 can keep the material box 3 stable during the flipping process of the material box 3. The clamping force can prevent the material box 3 from shaking or slipping during flipping, ensuring the safety and reliability of the feeding process. The lifting movement of the lifting member 404 can precisely control the flipping angle and speed of the material box 3. By adjusting the rising height and speed of the lifting member 404, the best flipping effect can be achieved according to different brush types and feeding requirements. This helps to improve the adaptability and flexibility of the feeding device. The structural design and operation process of the entire flipping frame 4 can work in coordination with other components of the conveying and feeding device to achieve automated feeding operations. There is no need for manual intervention in the flipping and clamping of the material box 3, reducing labor costs and improving production efficiency and quality stability.
[0047] Furthermore, the flipping frame 4 is flip - mounted on the conveying frame 2 and is located in the middle of the conveying frame 2. The moving path of the material box 3 passes above the flipping frame 4. When passing above the flipping frame 4, the flipping frame 4 is configured to drive the material box 3 to form an angle with the horizontal plane after flipping. The transfer member 5 is movably arranged relative to the machine frame 1. The transfer member 5 is configured to be located above the material box 3 or at the entrance of the hair - removing and shearing machine after moving. The material - picking member 6 is arranged on the transfer member 5. The transfer member 5 is configured that after moving above the material box 3, the material - picking member 6 abuts against the brush and grabs a row of brushes, and after moving to the entrance of the hair - removing and shearing machine, the material - picking member 6 puts down a row of brushes.
[0048] In this embodiment, the frame 1 serves as the support foundation for the entire device, providing a mounting and fixing position for other components. The conveying frame 2 is installed on the frame 1 and bears the conveying rollers 201. The conveying rollers 201 are the key components for realizing the movement of the material box 3, and drive the material box 3 to change its position on the conveying frame 2 through their rotation. The material box 3 is used to load a number of rows of brushes and can be placed on the conveying rollers 201 and move with the rotation of the conveying rollers 201. The design of the material box 3 facilitates the batch loading of brushes, improving the feeding efficiency and continuity. The flipping frame 4 is flip - set in the middle of the conveying frame 2, and the moving path of the material box 3 passes above it. When the material box 3 passes by, the flipping frame 4 can flip and drive the material box 3 to form an angle with the horizontal plane. This design may be to make the brushes in a more convenient angle for grasping and transferring during the subsequent material - taking process. The transfer member 5 can move relative to the frame 1 and can switch positions between above the material box 3 and the entrance of the hair - removing and shearing machine. This mobility makes the material - taking and feeding processes more flexible and efficient. The material - taking member 6 is installed on the transfer member 5. When the transfer member 5 moves above the material box 3, the material - taking member 6 can abut against the brushes and grasp a row of brushes. Then, as the transfer member 5 moves to the entrance of the hair - removing and shearing machine, the material - taking member 6 puts down this row of brushes, completing the conveying and feeding process of the brushes.
[0049] Through the cooperation of the conveying frame 2 and the material box 3, brushes can be batch - loaded and conveyed, reducing the time waste of frequent loading and improving the overall feeding efficiency. The coordinated work of the transfer member 5 and the material - taking member 6 can quickly transfer the brushes from the material box 3 to the entrance of the hair - removing and shearing machine, further accelerating the feeding speed. The setting of the flipping frame 4 enables the material box 3 to adjust its angle at a specific position, cooperating with the work of the material - taking member 6 to ensure that the material - taking member 6 can accurately grasp a row of brushes, improving the accuracy and stability of feeding. The special design of the material - taking member 6 can ensure the consistency of the number and position of the brushes grasped each time, which is beneficial to the smooth progress of the subsequent hair - removing and shearing processes. The various components of the entire device cooperate with each other to realize the automatic feeding process of the brushes from the conveying line to the hair - removing and shearing machine, reducing manual intervention, improving the automation level and production efficiency of production. At the same time, automatic feeding can also reduce the errors and labor intensity brought by manual operation, improving product quality and production stability.
[0050] Furthermore, the support frame 401 has a slide rail 405, and further includes a sliding member 7. The sliding member 7 is slidably arranged on the slide rail 405, and a rotating member 8 is hinged to the sliding member 7. The rotating member 8 has a jack 801, and the lifting member 404 has an insertion part 407. After the lifting member 404 rises, the insertion part 407 is inserted into the jack 801.
[0051] In this embodiment, the support frame 401 is provided with a slide rail 405. The slide rail 405 provides a moving track for the slider 7. The slider 7 is slidably arranged on the slide rail 405 of the support frame 401. The slider 7 can slide relatively on the slide rail 405, and its function is to adjust the position to cooperate with other components. The rotating member 8 is hinged to the slider 7, which enables the rotating member 8 to rotate around the hinge point. The rotating member 8 has a jack 801. After the lifting member 404 rises, the insertion portion 407 can be inserted into the jack 801. The lifting member 404 can move up and down relative to the frame 1 during operation. When the lifting member 404 rises to a certain position, its insertion portion 407 can be inserted into the jack 801 of the rotating member 8, thereby establishing a connection with the rotating member 8. The insertion portion 407 will drive the rotating member 8 to move when the lifting member 404 rises. By sliding the slider 7 on the slide rail 405, the initial position of the rotating member 8 can be adjusted, thereby affecting the flipping angle and speed of the support frame 401. This design can achieve precise control of the flipping action of the material box 3 to meet the feeding requirements of different brushes. After the insertion portion 407 of the lifting member 404 is inserted into the jack 801 of the rotating member 8, a firm connection can be formed. During the process of flipping the material box 3, this connection can ensure that the lifting member 404 effectively transmits power to the rotating member 8 and the support frame 401, improving the stability and reliability of the entire flipping mechanism. The position of the slider 7 and the angle of the rotating member 8 can be adjusted according to different specifications of the material box 3 or brushes, so that the device can adapt to a variety of working scenarios, improving the versatility and adaptability of the feeding device.
[0052] Furthermore, a reset member 9 is further included. The reset member 9 is an elastic member. One end is used for the slider 7, and the other end acts on the frame 1 to provide a force for resetting the slider 7.
[0053] In this embodiment, after the lifting member 404 drives the rotating member 8 and the support frame 401 to complete the flipping action of the material box 3, the reset member 9 can provide a force for resetting the sliding member 7. When the lifting member 404 descends, the elastic restoring force of the reset member 9 will pull the sliding member 7 back to the initial position, preparing for the next flipping operation of the material box 3. This automatic reset function can ensure the cyclic operation of the device, improving the working efficiency and stability of the feeding device. The existence of the reset member 9 can ensure that the sliding member 7 accurately returns to the predetermined position after each operation, reducing equipment failures and operation errors caused by inaccurate positions of the sliding member 7. The stability and reliability of the elastic member are relatively high, and it can maintain good performance during long-term use, improving the reliability of the entire feeding device. The elasticity of the reset member 9 can adapt to displacement changes within a certain range. When the device is subjected to external interference or different loads during operation, the reset member 9 can adjust the position of the sliding member 7 through elastic deformation to ensure the normal operation of the device. This adaptability enables the feeding device to operate stably under different working environments and conditions. The automatic reset function of the reset member 9 reduces the need for manual intervention and lowers the complexity of the operation. At the same time, the structure of the elastic member is relatively simple, easy to install and maintain, reducing the maintenance cost and difficulty of the equipment.
[0054] Further, the insertion portion 407 has an abutting portion 406. The abutting portion 406 is arc-shaped. The abutting portion 406 penetrates the rotating member 8. After the lifting member 404 rises, the abutting portion 406 abuts against the material box 3. After the abutting portion 406 abuts against the lifting member 301, the insertion portion 407 is inserted into the insertion hole 801.
[0055] In this embodiment, the insertion portion 407 has an abutting portion 406, and the abutting portion 406 is arc-shaped. The insertion portion 407 plays a key role during the rising process of the lifting member 404. The abutting portion 406 penetrates the rotating member 8. When the lifting member 404 rises, the abutting portion 406 first abuts against the material box 3. The lifting member 404 is arranged to be lifted and lowered relative to the frame body 1 and can push other components through the rising movement. When the lifting member 404 rises, the arc-shaped abutting portion 406 first abuts against the material box 3. This design can make the contact smoother and avoid rigid collisions. After the abutting, the lifting member 404 continues to rise to push the material box 3 to flip, facilitating material taking. Through this sequential control, it can be ensured that the brushes rise to the outlet of the brush-containing cavity one by one or in batches in a predetermined manner, facilitating the gripper 6 to grab, improving the accuracy and stability of feeding. When the material box 3 rotates relative to the horizontal plane, it can ensure that the relative position between the material box 3 and the box body remains unchanged, improving the versatility and adaptability of the device.
[0056] Further, the material taking member 6 is rotatably arranged on the moving member. The material taking member 6 is an electromagnetic strip. The anti - detachment member 601 is further included. The anti - detachment member 601 is arranged to move up and down relative to the material taking member 6, and the anti - detachment member 601 is located on one side of the material taking member 6. When a row of brushes is fixed by the material taking member 6, the anti - detachment member 601 abuts against an adjacent row of brushes of the fixed row of brushes. One end of the second elastic member 602 acts on the anti - detachment member 601, and the other end acts on the material taking member 6, providing a force for the anti - detachment member 601 to move away from the material taking member 6.
[0057] In this embodiment, the material taking member 6 is rotatably arranged on the moving member, which has flexibility. The material taking member 6 is an electromagnetic strip and can adsorb and fix the brushes through electromagnetic force. The anti - detachment member 601 is arranged to move up and down relative to the material taking member 6 and is located on one side of the material taking member 6. When the material taking member 6 fixes a row of brushes, the anti - detachment member 601 abuts against an adjacent row of brushes of the fixed row of brushes. One end of the second elastic member 602 acts on the anti - detachment member 601, and the other end acts on the material taking member 6, providing a force for the anti - detachment member 601 to move away from the material taking member 6. When the material taking member 6 adsorbs and fixes a row of brushes for transfer, the anti - detachment member 601 abuts against the adjacent row of brushes under the action of the second elastic member 602, playing a role in preventing other brushes from accidentally falling off. It ensures that during the transfer process, only the fixed row of brushes is accurately moved to the target position, improving the accuracy and reliability of feeding. The up - and - down arrangement of the anti - detachment member 601 and the elastic action of the second elastic member 602 can adapt to brushes of different heights. When encountering higher brushes, the anti - detachment member 601 can rise to a certain height under the action of the elastic force to maintain effective abutment with the adjacent brushes; when encountering shorter brushes, the anti - detachment member 601 can also descend to a suitable position under the action of the elastic force to ensure the anti - detachment effect. The rotatable arrangement of the material taking member 6 enables it to more flexibly adjust the angle when grasping and placing the brushes, adapting to different working scenarios. The cooperative action of the anti - detachment member 601 further enhances the stability and adaptability of the material taking process, improving the operation flexibility of the entire feeding device. The presence of the second elastic member 602 can buffer the impact force between the material taking member 6 and the anti - detachment member 601 during the working process, reducing wear and damage between components. At the same time, the action of the elastic force can keep the anti - detachment member 601 always in contact with the brushes with a certain pressure, improving the anti - detachment effect and enhancing the stability of the device.
[0058] Further, a first moving support 10 is further included. The first moving support 10 is arranged on the frame 1. The second moving support 11 is movably arranged on the first moving support 10. The moving member is movably arranged on the second moving support 11. After the second moving support 11 moves, it approaches the turning frame 4 or the wool beating and shearing machine.
[0059] In this embodiment, the first moving bracket 10 is arranged on the frame 1 to provide basic support for the entire moving system. The second moving bracket 11 is movably arranged on the first moving bracket 10 and can move in a specific direction on the first moving bracket 10. The moving member is movably arranged on the second moving bracket 11 and is responsible for driving the material taking member 6 to change its position. This design of multi-layer moving brackets increases the moving flexibility of the material taking member 6. Through the combined movement of the first moving bracket 10 and the second moving bracket 11, the material taking member 6 can be adjusted in position within a larger space range, better adapting to the bins 3 at different positions and the inlet of the wool shearing and brushing machine, and improving the adaptability of the feeding device. The movements of the first moving bracket 10 and the second moving bracket 11 can be controlled separately to achieve precise control of the position of the material taking member 6. During the material taking and feeding processes, the material taking member 6 can be accurately moved above the bin 3 and the inlet of the wool shearing and brushing machine, ensuring the accurate grasping and placement of the brush, and improving the accuracy and efficiency of feeding. The first moving bracket 10 provides stable support for the second moving bracket 11, and the second moving bracket 11 in turn provides support for the moving member. This structure can reduce the shaking and unstable factors during the movement, ensuring that the material taking member 6 remains stable during the movement and avoiding damage to the brush or affecting the accuracy of feeding. The design of the multi-layer moving brackets makes each component relatively independent, facilitating maintenance and adjustment. If a failure occurs or parameter adjustment is required, the first moving bracket 10, the second moving bracket 11 or the moving member can be operated separately, reducing the maintenance cost and difficulty.
[0060] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.
Claims
1. A brush feeding device for feeding a brush from a conveyor line into a hair brushing and shearing machine, wherein a material box (3) is used for loading a plurality of rows of the brushes, and is characterized in that, Including: A frame (1), A conveying frame (2), the conveying frame (2) is arranged on the frame (1), A flipping frame (4), the flipping frame (4) includes: A support frame (401), the support frame (401) is hinged to the conveying frame (2), the support frame (401) has a support frame (401), and after the support frame (401) rotates, it drives the material box (3) to flip, A first clamping member (402) and a second clamping member (403), the first clamping member (402) is arranged on one side of the support frame (401), the second clamping member (403) is slidably arranged on the other side of the support frame (401), and after the second clamping member (403) slides, the first clamping member (402) and the second clamping member (403) are used to clamp or release the clamping of the material box (3), A lifting member (404), the lifting member (404) is arranged to lift and lower relative to the frame (1), and the lifting member (404) is configured to abut against the support frame (401) after rising, driving the support frame (401) to rotate.
2. The brush feeding device according to claim 1, characterized in that, The conveying frame (2) has conveying rollers (201), and further includes: The flipping frame (4) is flip - set on the conveying frame (2) and is located in the middle of the conveying frame (2). The moving path of the material box (3) passes above the flipping frame (4), and when passing above the flipping frame (4), the flipping frame (4) is configured to drive the material box (3) to form an angle with the horizontal plane after flipping, A transfer member (5), the transfer member (5) is arranged to move relative to the frame (1), and the transfer member (I5) is configured to be located above the material box (3) or at the entrance of the hair - removing and shearing machine after moving, A material - taking member (6), the material - taking member (6) is arranged on the transfer member (5). After the transfer member (5) moves above the material box (3), the material - taking member (6) abuts against the brush and grabs a row of the brushes, and then moves to the entrance of the hair - removing and shearing machine, and the material - taking member (6) puts down a row of the brushes.
3. The brush feeding device according to claim 1, characterized in that, The support frame (401) has a slide rail (405), and further includes: A sliding member (7), the sliding member (7) is slidably arranged on the slide rail (405), A rotating member (8), the rotating member (8) is hinged to the sliding member (7), the rotating member (8) has a jack (801), the lifting member (404) has an insertion part (407), and after the lifting member (404) rises, the insertion part (407) is inserted into the jack (801).
4. The brush feeding device according to claim 3, characterized in that, Further including: A reset member (9), the reset member (9) is an elastic member, one end is used for the sliding member (7), and the other end acts on the frame (1) to provide a force for the sliding member (7) to reset.
5. The brush feeding device according to claim 4, characterized in that, The insertion part (407) has an abutting part (406). The abutting part (406) is arc-shaped. The abutting part (406) penetrates through the rotating part (8). After the jacking part (404) rises, the abutting part (406) abuts against the material box (3), and the insertion part (407) is inserted into the jack (801).
6. The brush feeding device according to claim 2, characterized in that, The material taking part (6) is rotatably arranged on the transfer part (5). The material taking part (6) is an electromagnetic strip. Further included are: An anti-detachment part (601). The anti-detachment part (601) is arranged to move up and down relative to the material taking part (6), and the anti-detachment part (601) is located on one side of the material taking part (6). When a row of the brushes is fixed to the material taking part (6), the anti-detachment part (601) abuts against the row of the brushes adjacent to the row of the brushes that is fixed. A second elastic part (602). One end of the second elastic part (602) acts on the anti-detachment part (601), and the other end acts on the material taking part (6), providing a force for the anti-detachment part (601) to move away from the material taking part (6).
7. The brush loading device according to claim 6, characterized in that, Further included are: A first moving support (10). The first moving support (10) is arranged on the machine frame (1). A second moving support (11). The second moving support (11) is movably arranged on the first moving support (10). The transfer part (5) is movably arranged on the second moving support (11). After the second moving support (11) moves, it approaches the turnover frame (4) or the hair brushing and shearing machine.