Magnetizer with material moving and leveling mechanism

By configuring a material leveling mechanism and a material pushing mechanism in the magnetizer, the problems of material tipping over and breaking in the magnetization cavity are solved, realizing the automation and high-efficiency production of the magnetization process.

CN223638184UActive Publication Date: 2025-12-05JIANGMEN RUIHUA INTELLIGENT CONTROL EQUIPMENT CO LTD
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Patent Information

Application Number
CN202422841958.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-12-05
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

In existing magnetizers, the magnetization cavity has a certain depth and the materials are easily uneven when manually stacked, which makes it easy for the materials to tip over and break when pushed in or out.

Method used

A magnetizer equipped with a material leveling mechanism includes a conveyor track, a pusher mechanism, and a material leveling mechanism. The material leveling mechanism moves the material to the conveyor track and levels the top of the material. The pusher mechanism pushes the material into the magnetization channel, thus realizing an automated and mechanized magnetization process.

Benefits of technology

It effectively prevents materials from tipping over, improves yield, automates and mechanizes magnetization, and enhances production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a magnetizer with a material moving and leveling mechanism, which comprises a machine base, and a conveying track, a magnetizing seat, a material pushing mechanism and the material moving and leveling mechanism which are arranged on the machine base, the conveying track extends front and back for materials to move along the conveying track, the magnetizing seat is provided with a magnetizing channel for the conveying track to pass through, and the magnetizing seat can magnetize the materials entering the magnetizing channel. The material pushing mechanism is arranged on one side of the conveying rail and used for pushing materials towards the magnetizing channel. The material moving and leveling mechanism is arranged on one side of the conveying rail and used for moving the multiple materials into the conveying rail and leveling the tops of the multiple materials. According to the utility model, the conveying track penetrating through the magnetizing base, the material moving and aligning mechanism for transferring a plurality of materials to the conveying track and aligning the tops of the materials and the material pushing mechanism for pushing the materials into the magnetizing channel are arranged on the machine base, so that the materials pushed into the magnetizing channel are uniform and are not easy to roll over, and the yield is high; and meanwhile, automation and mechanization of magnetizing are achieved, and the production efficiency is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to magnetizing equipment technical field especially with the magnetizing machine that has moved material flat mechanism. BACKGROUND

[0002] The magnetizing machine is a kind of equipment that puts the material to be magnetized into magnetic field to magnetize. The existing magnetizing machine includes base and magnetizing seat arranged on the base, and the magnetizing seat has magnetizing cavity for the material to be magnetized. When magnetizing, workers push the material to be magnetized into the magnetizing cavity after stacking, and take out the magnetized material after magnetizing. Since the magnetizing cavity has a certain depth and the material is stacked manually, it is not easy to push the manually stacked material into or out of the magnetizing cavity, which can easily cause the material to overturn and break. SUMMARY

[0003] The utility model aims at providing the magnetizing machine with material moving and flattening mechanism to solve the problem that the existing magnetizing machine pushes the material into or out of the magnetizing cavity after manually stacking the material, and the material is stacked manually and uneven in height due to the certain depth of the magnetizing cavity, which can easily cause the material to overturn and break.

[0004] The utility model is realized by the following technical solutions:

[0005] The magnetizing machine with material moving and flattening mechanism includes base, conveying track, magnetizing seat, material pushing mechanism and material moving and flattening mechanism arranged on the base, the conveying track extends forward and backward to move the material, the magnetizing seat has magnetizing channel for the conveying track to pass through, the magnetizing seat can magnetize the material entering the magnetizing channel, the material pushing mechanism is arranged on one side of the conveying track to push the material towards the magnetizing channel, and the material moving and flattening mechanism is arranged on one side of the conveying track to move several materials into the conveying track and make the top of the materials flat.

[0006] Further, the material moving and flattening mechanism includes moving and conveying part and magnetic attraction part, the moving and conveying part can move above the conveying track, the bottom surface of the moving and conveying part is defined as moving and conveying flat surface, the moving and conveying flat surface is a plane and parallel to the conveying surface of the conveying track, the magnetic attraction part can move close to or away from the moving and conveying flat surface, the magnetic attraction part moves close to the moving and conveying flat surface to make several materials adsorbed on the moving and conveying flat surface, and the magnetic attraction part moves away from the moving and conveying flat surface to release several materials on the moving and conveying flat surface.

[0007] Further, the magnetic attraction part extends in the length direction of the moving and conveying flat surface, and / or the magnetic attraction part is made of strong magnetic material.

[0008] Further, the transferring member is provided with a cylinder, the transferring member has an assembly cavity opening upward, the magnetic member is accommodated in the assembly cavity and is driven by the cylinder to approach or move away from the transferring flat surface.

[0009] Further, the transferring flat surface extends forward and backward, the output end of the cylinder is provided with a connecting member, the connecting member is provided with a positioning groove extending forward and backward, the magnetic member is magnetically attracted to the connecting member and is at least partially embedded in the positioning groove, and the magnetic member is provided with a fastener for locking the magnetic member on the connecting member.

[0010] Further, the material transferring and flattening mechanism further comprises a driving arm group for driving the transferring member to move above the conveying track, the driving arm group comprises a base arm and a moving arm, the base arm extends left and right across the conveying track, the transferring member is fixed on the moving arm, and the moving arm moves left and right along the base arm to move the transferring member above the conveying track.

[0011] Further, the conveying track has a bottom plate and two baffle plates, the bottom plate extends forward and backward and is parallel to the transferring flat surface, and the two baffle plates are opposite to each other on the bottom plate to form a conveying channel for the material.

[0012] Further, the material pushing mechanism comprises a guide arm, a pushing arm and a pushing block, the guide arm extends forward and backward and is arranged on one side of the conveying track, the pushing block is fixed on the pushing arm and has a groove matched with the shape of the outer wall of the material, and the pushing arm can move along the guide arm to push the pushing block.

[0013] Further, the base is provided with a material storage bin on one side of the conveying track, the material storage bin is used for storing materials, and the material transferring and flattening mechanism is used for transferring a plurality of materials from the material storage bin to the conveying track and flattening the top of the plurality of materials.

[0014] The technical scheme has the advantages that the conveying track penetrating through the magnetizing seat is arranged on the base, the material transferring and flattening mechanism is used for transferring a plurality of materials to the conveying track and flattening the top of the plurality of materials, and the material pushing mechanism is used for pushing the materials into the magnetizing channel, so that the plurality of materials pushed into the magnetizing channel are uniform and not easy to overturn, the yield is high, and the automation and mechanization of magnetizing are realized, and the production efficiency is high. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the drawings needed in the embodiment 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.

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0017] Figure 1 This is a perspective view of the magnetizer with a material transfer and leveling mechanism disclosed in the embodiment;

[0018] Figure 2 yes Figure 1 A magnified view of a section at point A in the middle;

[0019] Figure 3 yes Figure 1 A magnified view of a section at point B in the middle;

[0020] Figure 4 yes Figure 1 A magnified view of a section at point C;

[0021] Figure 5 This is an exploded view of the material transfer and leveling mechanism in the embodiment. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Example: Figures 1-5 As shown, the magnetizer with a material leveling mechanism includes a base 1 and a conveying track 2, a magnetizing seat 3, a pushing mechanism 4, and a material leveling mechanism 5 mounted on the base 1. The conveying track 2 extends forward and backward to allow materials to move along it. The magnetizing seat 3 has a magnetizing channel 301 through which the conveying track 2 passes. The magnetizing seat 3 can magnetize materials entering the magnetizing channel 301. The pushing mechanism 4 is located on one side of the conveying track 2 to push materials toward the magnetizing channel 301. The material leveling mechanism 5 is located on one side of the conveying track 2 to move several materials into the conveying track 2 and level the tops of several materials. The magnetizing seat 3 may, but is not limited to, adopt a coil magnetizing structure.

[0024] The magnetizing step of the magnetizing machine with the material moving and leveling mechanism is as follows: first, the material moving and leveling mechanism 5 moves to above the materials, then the material moving and leveling mechanism 5 moves down to press on the materials, so that the top of the materials pressed by the material moving and leveling mechanism 5 is leveled, then the material moving and leveling mechanism 5 moves up to suck the materials and moves the materials to the conveying track 2, the material moving and leveling mechanism 5 releases the materials when moving the materials to the conveying track 2, so that the materials fall on the conveying track 2, then the material pushing mechanism 4 pushes the materials into the magnetizing channel 301, and finally, the magnetizing seat 3 magnetizes the materials entering the magnetizing channel 301. Since the material pushing mechanism 4 continuously pushes the materials into the magnetizing channel 301, the materials that have been magnetized are pushed out of the magnetizing channel 301 by the later-entering materials, and the pushing out of the materials is completed.

[0025] In conclusion, the embodiment provides a magnetizing machine with a material moving and leveling mechanism to solve the problem that the existing magnetizing machine pushes the materials into or out of the magnetizing cavity after the materials are stacked by manual stacking, the magnetizing cavity has a certain depth, and the materials stacked by manual stacking are uneven, so that the materials are easily turned on one side and damaged. The conveying track 2 penetrating through the magnetizing seat 3 is arranged on the machine base 1, the material moving and leveling mechanism 5 moves the materials to the conveying track 2 and levels the top of the materials, and the material pushing mechanism 4 pushes the materials into the magnetizing channel 301, so that the materials pushed into the magnetizing channel 301 are neat and uniform, and are not easy to turn on one side, the yield is high, and the automation and mechanization of magnetizing are realized, and the production efficiency is high.

[0026] In the embodiment of the utility model, material moving and leveling mechanism 5 includes transfer piece 501 and magnetic attraction piece 502, transfer piece 501 can move to above conveying track 2, the bottom surface of transfer piece 501 is defined as transfer leveling surface 503, transfer leveling surface 503 is a plane and parallel with the conveying surface of conveying track 2, magnetic attraction piece 502 can move close to or away from transfer leveling surface 503, when magnetic attraction piece 502 moves close to transfer leveling surface 503, several materials are adsorbed on transfer leveling surface 503, when magnetic attraction piece 502 moves away from transfer leveling surface 503, transfer leveling surface 503 releases several materials, magnetic attraction piece 502 is made of strong magnetic material. The above-mentioned setting is configured with the transfer piece 501 with the transfer leveling surface 503 and the magnetic attraction piece 502 that can move close to or away from the transfer leveling surface 503 to adsorb or release the materials on the transfer leveling surface 503, so that the material moving and leveling mechanism 5 can move the materials into the conveying track 2 and level the top of the materials, which is simple in structure and easy to implement.

[0027] In the embodiment of the utility model, magnetic attraction piece 502 extends in the length direction of transfer leveling surface 503. The above-mentioned setting is configured with the magnetic attraction piece 502 extending along the length direction of the transfer leveling surface 503, so that the area of the transfer leveling surface 503 for sucking the materials is maximized, and the transfer efficiency is high.

[0028] In the embodiment of the utility model, the moving member 501 is provided with a cylinder 504, the moving member 501 has an assembly cavity 505 with an opening facing upwards, the magnetic member 502 is accommodated in the assembly cavity 505 and is driven by the cylinder 504 to approach or move away from the moving flush surface 503. The above-mentioned arrangement allows the moving member 501 and the magnetic member 502 to be assembled stably and compactly by configuring the cylinder 504 for driving the magnetic member 502 to move on the moving member 501 and the assembly cavity 505 for accommodating the magnetic member 502.

[0029] In the embodiment of the utility model, the moving flush surface 503 extends forward and backward, the output end of the cylinder 504 is provided with a connecting member 506, the connecting member 506 is provided with a positioning groove 507 extending forward and backward, the magnetic member 502 is magnetically attracted to the connecting member 506 and is at least partially embedded in the positioning groove 507, and the magnetic member 502 is provided with a fastener (not marked in the figure) for locking the magnetic member 502 on the connecting member 506. Specifically, the fastener is a screw rod. The above-mentioned arrangement allows the magnetic member 502 and the connecting member 506 to be assembled stably by configuring the connecting member 506 on the output end of the cylinder 504, configuring the positioning groove 507 on the connecting member 506, configuring the magnetic member 502 in the positioning groove 507, and configuring the fastener for locking the magnetic member 502 on the connecting member 506 on the magnetic member 502.

[0030] In the embodiment of the utility model, the material moving flush mechanism 5 further comprises a driving arm group 508 for driving the moving member 501 to move above the conveying track 2, the driving arm group 508 comprises a base arm 509 and a moving arm 510, the base arm 509 extends left and right across the conveying track 2, and the moving member 501 is fixedly arranged on the moving arm 510. The moving arm 510 moves left and right along the base arm 509 to move the moving member 501 above the conveying track 2. The above-mentioned arrangement allows the moving member 501 to move above the conveying track 2 and realize the moving of the material by configuring the driving arm group 508 as the base arm 509 extending left and right across the conveying track 2 and the moving arm 510 moving left and right along the base arm 509, and the structure is simple and convenient to implement.

[0031] In the embodiment of the utility model, the conveying track 2 has a bottom plate 201 and two baffles 202, the bottom plate 201 extends forward and backward and is parallel to the moving flush surface 503, and the two baffles 202 are opposite to each other on the bottom plate 201 to form a conveying channel 203 for the material to pass through. The above-mentioned arrangement allows the left and right sides of the plurality of materials to be flush when moving along the conveying track 2 by configuring the conveying track 2 as the bottom plate 201 extending forward and backward and being parallel to the moving flush surface 503 and the two baffles 202 opposite to each other on the bottom plate 201 to form the conveying channel 203, thereby avoiding the left and right misalignment.

[0032] In the embodiment of the utility model, the pushing mechanism 4 includes a guide arm 401, a moving and pushing arm 402 and a moving and pushing block 403, the guide arm 401 extends forward and backward and is arranged on one side of the conveying track 2, the moving and pushing block 403 is fixedly connected to the moving and pushing arm 402 and has a groove 404 matched with the shape of the outer wall of the material, and the moving and pushing arm 402 can move along the guide arm 401 to make the moving and pushing block 403 push the material. The above arrangement is to configure the pushing mechanism 4 as the forward and backward extending guide arm 401, the moving and pushing arm 402 moving along the guide arm 401 and the moving and pushing block 403 arranged on the moving and pushing arm 402 to push the material to the magnetizing channel 301, so that the pushing mechanism 4 has a simple structure and is convenient to implement. Meanwhile, the groove 404 matched with the shape of the outer wall of the material is arranged on the moving and pushing block 403, so that the moving and pushing block 403 tightly matches with the material when pushing the material, and the pushing is stable and the material is prevented from turning over.

[0033] In the embodiment of the utility model, the base 1 is provided with a material storage bin 6 on one side of the conveying track 2, the material storage bin 6 is used for storing materials, and the material moving and leveling mechanism 5 is used for moving a plurality of materials from the material storage bin 6 to the conveying track 2 and making the top of the plurality of materials level. The above arrangement is to configure the material storage bin 6 used for storing materials on one side of the conveying track 2, so that the workers can pre-pile the materials in the material storage bin 6, and the conveying efficiency is improved.

[0034] It should be understood that the terms "first", "second" and the like are used to describe various information, but these information should not be limited to these terms, and these terms are only used to distinguish the same type of information from each other. For example, without departing from the scope of the utility model, the "first" information can also be referred to as "second" information, and similarly, the "second" information can also be referred to as "first" information. In addition, the orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting the utility model to a specific orientation, structure and operation. Therefore, it cannot be understood as limiting the utility model.

[0035] As described above, one or more embodiments are provided in combination with specific content, and it is not intended that the specific implementation of the utility model is limited to these descriptions. Any approximation, similarity or replacement of the method and structure of the utility model, or any technical deduction or replacement under the concept of the utility model, should be regarded as the protection of the utility model.

Claims

1. A magnetizer with a material transfer flush mechanism, comprising a base, characterized in that, The machine base is provided with a conveying track, a magnetizing seat, a pushing mechanism and a material moving and leveling mechanism. The conveying track extends forward and backward to allow materials to move along it. The magnetizing seat has a magnetizing channel through which the conveying track passes. The magnetizing seat can magnetize materials entering the magnetizing channel. The pushing mechanism is arranged on one side of the conveying track to push materials towards the magnetizing channel. The material moving and leveling mechanism is arranged on one side of the conveying track to move several materials into the conveying track and level the top of the several materials. The material moving and leveling mechanism includes a moving and transferring member and a magnetic member. The moving and transferring member can move above the conveying track. The bottom surface of the moving and transferring member is defined as a moving and transferring leveling surface. The moving and transferring leveling surface is a plane and is parallel to the conveying surface of the conveying track. The magnetic member can move close to or away from the moving and transferring leveling surface. When the magnetic member moves close to the moving and transferring leveling surface, several materials are adsorbed on the moving and transferring leveling surface. When the magnetic member moves away from the moving and transferring leveling surface, the moving and transferring leveling surface releases the several materials.

2. The magnetizer with a material transfer flush mechanism according to claim 1, characterized in that, The magnetic member extends in the length direction of the moving and transferring leveling surface. The magnetic member is made of a strong magnetic material.

3. The magnetizer with a material transfer flush mechanism according to claim 1, characterized in that, The moving and transferring member is provided with a pneumatic cylinder. The moving and transferring member has an assembly cavity with an upward opening. The magnetic member is accommodated in the assembly cavity and is driven by the pneumatic cylinder to move close to or away from the moving and transferring leveling surface.

4. The magnetizer with a material transfer flush mechanism according to claim 3, characterized in that, The moving and transferring leveling surface extends forward and backward. The output end of the pneumatic cylinder is provided with a connecting member. The connecting member is provided with a forward and backward extending positioning groove. The magnetic member is magnetically attracted to the connecting member and is at least partially embedded in the positioning groove. The magnetic member is provided with a fastener for locking the magnetic member on the connecting member.

5. The magnetizer with a material transfer flush mechanism according to claim 1, characterized in that, The material moving and leveling mechanism further includes a driving arm group for driving the moving and transferring member to move above the conveying track. The driving arm group includes a base arm and a moving arm. The base arm extends left and right to span the conveying track. The moving and transferring member is fixed to the moving arm. The moving arm moves left and right along the base arm to move the moving and transferring member above the conveying track.

6. The magnetizer with a material transfer flush mechanism according to claim 1, characterized in that, The conveying track has a bottom plate and two baffle plates. The bottom plate extends forward and backward and is parallel to the moving and transferring leveling surface. The two baffle plates are opposite to each other on the bottom plate to form a conveying channel for materials to pass through.

7. The magnetizer with a material transfer flush mechanism according to claim 1, characterized in that, The pushing mechanism includes a guide arm, a moving and pushing arm and a moving and pushing block. The guide arm extends forward and backward and is arranged on one side of the conveying track. The moving and pushing block is fixed to the moving and pushing arm and has a groove matched with the shape of the outer wall of the material. The moving and pushing arm can move along the guide arm to push the moving and pushing block to push the material.

8. The magnetizer with a material transfer flush mechanism according to claim 1, characterized in that, The machine base is provided with a material storage bin on one side of the conveying track. The material storage bin is used to store materials. The material moving and leveling mechanism is used to move several materials from the material storage bin into the conveying track and level the top of the several materials.