Oscillating device for resin grinding

By designing a vibrating device for resin grinding, and utilizing the combination of a clamping mechanism and a vibration component, the problem of steel balls concentrating at both ends of the tank in existing devices is solved, achieving a more efficient and uniform resin grinding effect.

CN223477320UActive Publication Date: 2025-10-28阪田油墨(上海)有限公司
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Patent Information

Application Number
CN202422659821.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-28
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

In existing resin grinding devices, the method of shaking the tank left and right causes the steel balls to concentrate at both ends of the tank, making it difficult to fully grind the resin in the middle of the tank, and manual grinding is inefficient.

Method used

A vibration device including a mounting platform, a placement platform, and elastic elements is used. Through the cooperation of the clamping vibration mechanism and the vibration components, the container is vibrated in multiple directions, increasing the movement trajectory of the steel balls and improving the fineness of the resin grinding.

Benefits of technology

It improves the efficiency and uniformity of resin grinding, reduces labor consumption, and ensures that the resin in the middle of the tank can also be fully ground.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oscillating device for resin grinding, the oscillating device for resin grinding comprises a device main body and a clamping and vibrating mechanism, the device main body comprises a mounting table, a placing table and a plurality of elastic elements, the mounting table is kept at a preset position above the placing table, and the clamping and vibrating mechanism is arranged on the mounting table. Each elastic element is arranged between the mounting table and the placing table, the two ends of each elastic element are connected with the mounting table and the placing table respectively, the clamping and vibrating mechanism comprises a clamping assembly and a vibrating assembly, the clamping assembly is used for clamping a container containing resin and steel balls, and the vibrating assembly is used for vibrating the clamping assembly. And the vibration assembly is used for vibrating the container clamped by the clamping assembly, and the mounting table is driven to act on each elastic element when the vibration assembly vibrates the container, so that the movement modes of the steel balls in the container are increased, resin at different positions in the container can be ground, and the resin grinding refining degree is improved.
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Description

Technical Field

[0001] This utility model relates to the field of resin grinding technology, and more specifically to a vibrating device for resin grinding. Background Technology

[0002] Currently, resin grinding methods are mainly divided into two types: manual grinding and equipment grinding. Manual grinding involves a high degree of human intervention in the resin grinding process, which seriously wastes manpower. In addition, manual grinding is less efficient than equipment grinding. Therefore, equipment grinding is more common.

[0003] Most common resin grinding devices perform resin grinding by shaking a container filled with steel balls and resin from side to side. However, shaking the container from side to side tends to cause the steel balls to concentrate at both ends of the container. In addition, some resins are highly viscous, making it even more difficult for the steel balls to move to the center of the container to grind the resin. As a result, the resin in the center of the container may not be ground finely enough. Utility Model Content

[0004] To solve the above-mentioned technical problems and achieve at least one advantage of this utility model, this utility model provides a vibrating device for resin grinding, the vibrating device for resin grinding comprising:

[0005] The device body includes a mounting platform, a placement platform, and a plurality of elastic elements, wherein the mounting platform is held at a predetermined position above the placement platform, each of the elastic elements is disposed between the mounting platform and the placement platform, and the two ends of each of the elastic elements are respectively connected to the mounting platform and the placement platform;

[0006] At least one clamping mechanism, each of the clamping mechanisms comprising:

[0007] A vibration assembly, comprising a drive unit and a vibrating element, wherein the drive unit is mounted on the side of the mounting platform away from the placement platform and spaced at a predetermined distance from the placement platform, and the drive unit has a drive end, and the vibrating element is rotatably mounted on the drive end of the drive unit.

[0008] A clamping assembly is disposed at the end of the vibrating element away from the drive unit in a manner capable of clamping the container;

[0009] The mounting platform is driven by the drive unit to act on each of the elastic elements.

[0010] According to one embodiment of the present invention, the mounting platform forms the same number of mounting slots as the elastic element on the side near the placement platform. The size of each mounting slot is adapted to the size of one of the elastic elements to accommodate the end of one of the elastic elements. The placement platform forms the same number of placement slots as the elastic element on the side near the mounting platform, and each placement slot is correspondingly provided to one of the mounting slots. The size of each placement slot is adapted to the size of one of the elastic elements to accommodate the other end of each elastic element away from the mounting platform.

[0011] According to one embodiment of the present invention, the number of elastic elements is set to four, and each elastic element is evenly arranged on the side of the mounting platform.

[0012] According to one embodiment of the present invention, the clamping assembly includes a movable clamping arm, a clamping arm, a driving member, and at least one guide member, wherein the movable clamping arm is driven to move movably connected to the driving member, and the movable clamping arm is driven by the driving member to move on the guide member, a clamping opening is formed between the movable clamping arm and the clamping arm for clamping the container, the clamping opening is adjusted in size to fit the size of the container when the driving member drives the movable clamping arm to move, the clamping arm is connected to the guide member, and the guide member is installed at the end of the vibrating member away from the driving unit.

[0013] According to one embodiment of the present invention, the movable clamping arm has a first groove recessed on the side near the clamping arm, the first groove being used to accommodate one end of the container. Correspondingly, the clamping arm has a second groove recessed on the side near the movable clamping arm, the second groove being used to accommodate the other end of the container that is accommodated by the first groove, and the second groove and the first groove are arranged opposite to each other.

[0014] According to one embodiment of the present invention, the clamping arm is driven to move movably connected to the driving member, and the clamping arm is driven by the driving member to move on the guide member, thereby approaching and moving away from the movable clamping arm.

[0015] According to one embodiment of the present invention, the driving member extends a predetermined length at its end to form two handle portions, each of which is used by the user's hand to apply force to drive the driving member.

[0016] According to one embodiment of the present invention, the number of guide members is set to two, and the two guide members are arranged in parallel and symmetrically.

[0017] According to one embodiment of the present invention, the mounting platform forms an installation space, which is used to accommodate the drive unit.

[0018] According to one embodiment of the present invention, the oscillating device for resin grinding further includes a controller, the drive unit is controllably connected to the controller, and the controller is mounted on the mounting platform of the device body. Attached Figure Description

[0019] Figure 1 A perspective view of the vibrating device for resin grinding according to the present invention is shown.

[0020] Figure 2 This diagram shows a structural schematic of the vibrating device for resin grinding described in this invention from another angle.

[0021] Figure 3 A schematic diagram of another state of the vibrating device for resin grinding according to this invention is shown.

[0022] Figure 4 A cross-section of the vibrating device for resin grinding according to the present invention is shown. Figure 1 .

[0023] Figure 5 A cross-section of the vibrating device for resin grinding according to the present invention is shown. Figure 2 . Detailed Implementation

[0024] The following description is intended to disclose the present invention so that those skilled in the art can implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art. The basic principles of the present invention defined in the following description can be applied to other embodiments, modifications, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.

[0025] Those skilled in the art should understand that, in the disclosure of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this utility model.

[0026] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.

[0027] refer to Figures 1 to 5 A preferred embodiment of the present invention, an oscillating device for resin grinding, will be described in detail below. The oscillating device for resin grinding includes a device body 10 and at least one clamping mechanism 20, wherein each clamping mechanism 20 is used to clamp and vibrate a container containing resin and steel balls, thereby completing the resin grinding operation.

[0028] The main body 10 of the device includes a mounting platform 11, a placement platform 12, and a plurality of elastic elements 13, wherein the mounting platform 11 is held at a predetermined position above the placement platform 12. Each elastic element 13 is disposed between the mounting platform 11 and the placement platform 12, and the two ends of each elastic element 13 are respectively connected to the mounting platform 11 and the placement platform 12.

[0029] Each of the clamping vibration mechanisms 20 is disposed on the side of the mounting platform 11 away from the placement platform 12.

[0030] Those skilled in the art will understand that when the clamping vibration mechanism 20 vibrates the clamped container, the mounting platform 11 is affected by the transmission. Due to the elastic force of the multiple elastic elements 13, the mounting platform 11 is driven to vibrate. The vibrating mounting platform 11 also acts on the clamping vibration mechanism 20 and the container, causing the clamping vibration mechanism 20 and the container to vibrate. Moreover, the way the mounting platform 11 vibrates the container is different from the way the clamping vibration mechanism 20 vibrates the container. As a result, the ways in which the container is vibrated increase, so that the steel balls inside the container can generate different motion trajectories due to different vibration modes.

[0031] In this way, the steel balls inside the container can move to different positions inside the container when the container is vibrated, thereby allowing the resin in different positions inside the container to be ground.

[0032] Preferably, the mounting platform 11 forms the same number of mounting slots 1101 as the elastic element 13 on its side near the placement platform 12, and the size of each mounting slot 1101 is adapted to the size of one of the elastic elements 13 to accommodate one end of the elastic element 13. Correspondingly, the placement platform 12 forms the same number of placement slots 1201 as the elastic element 13 on its side near the mounting platform 11, and each placement slot 1201 is correspondingly disposed to one of the mounting slots 1101, and the size of each placement slot 1201 is adapted to the size of one of the elastic elements 13 to accommodate the other end of each elastic element 13 away from the mounting platform 11.

[0033] It should be noted that when the mounting platform 11 is affected by the clamping vibration mechanism 20 and acts on the elastic element 13, since the two ends of each elastic element 13 are respectively installed in the corresponding mounting groove 1101 and the placement groove 1201, the two ends of each elastic element 13 are respectively limited by the inner wall forming the mounting groove 1101 and the inner wall forming the placement groove 1201, thereby preventing the two ends of each elastic element 13 from deforming.

[0034] In a preferred embodiment, the number of elastic elements 13 is set to four, and each elastic element 13 is evenly arranged on the side of the mounting platform 11, so that when the mounting platform 11 is shaken by the clamping mechanism 20, the periphery of the mounting platform 11 can avoid contact with the placement platform 12, thereby reducing wear.

[0035] In another preferred embodiment, the number of the clamping vibration mechanism 20 is set to two, thereby increasing the number of containers being clamped and vibrated, and thus improving the working efficiency of the vibration device for resin grinding.

[0036] Each of the clamping and vibrating mechanisms 20 includes a clamping assembly 21 and a vibrating assembly 22. The clamping assembly 21 is used to clamp the container containing resin and steel balls. The vibrating assembly 22 is used to vibrate the container clamped by the clamping assembly 21 and the mounting platform 11, so that the steel balls can be shaken at different positions within the container, thereby improving the abrasion fineness of the resin contained in the container.

[0037] Preferably, the clamping assembly 21 includes a movable clamping arm 211, a clamping arm 212, a driving member 213, and at least one guide member 214. The movable clamping arm 211 is movably connected to the driving member 213 and is driven by the driving member 213 to move along the guide member 214. Furthermore, a clamping opening 2101 is formed between the movable clamping arm 211 and the clamping arm 212 for clamping the container. The clamping opening 2101 is adjusted in size to fit the size of the container when the driving member 213 drives the movable clamping arm 211 to move. The clamping arm 212 is connected to the guide member 214. The guide member 214 is disposed on the vibration assembly 22.

[0038] It is understood that when the container is placed in the clamping opening 2101, the movable clamping arm 211 is driven by the driving member 213 to move relatively closer to the clamping arm 212 until the size of the clamping opening 2101 is adapted to the size of the container. Or, when the clamping assembly 21 needs to adjust the size of the clamping opening 2101 to clamp the container, the movable clamping arm 211 can be driven by the driving member 213 to move away from the clamping arm 212, so that after the container is placed in the clamping opening 2101, the movable clamping arm 211 is driven closer to the clamping arm 212, thereby clamping the container.

[0039] Preferably, the movable clamping arm 211 has a first groove 21101 recessed on its side near the clamping arm 212, the first groove 21101 being used to receive one end of the container. Correspondingly, the clamping arm 212 has a second groove 21201 recessed on its side near the movable clamping arm 211, the second groove 21201 being used to receive the other end of the container whose end is received by the first groove 21101, and the second groove 21201 and the first groove 21101 are arranged opposite to each other.

[0040] It should be noted that when the vibration assembly 22 vibrates the container clamped by the moving clamping arm 211 and the clamping arm 212, the inner wall forming the first groove 21101 and the inner wall forming the second groove 21201 can respectively limit the two ends of the container, thereby making it difficult for the container to be affected by vibration and detach from the moving clamping arm 211 and the clamping arm 212.

[0041] In one embodiment, the clamping arm 212 is movably connected to the drive member 213 and is driven by the drive member 213 to move toward the guide member 214, thereby moving closer to and away from the movable clamping arm 211. Therefore, when adjusting the size of the clamping opening 2101 to fit the size of the container, the movable clamping arm 211 and the clamping arm 212 can move toward each other to adjust the size of the clamping opening 2101, thereby shortening the time required for the container to be clamped.

[0042] Preferably, the drive member 213 extends a predetermined length at its end to form two handle portions 2131, each of which is used by the user's hand to apply force to drive the drive member 213, thereby adjusting the distance between the movable clamping arm 211 and the clamping arm 212.

[0043] Preferably, the number of guide members 214 is set to two, and the two guide members 214 are arranged in parallel and symmetrically. It is understood that the movable clamping arm 211 and the clamping arm 212 can move more stably on two guide members 214 than the movable clamping arm 211 and the clamping arm 212 can move on one guide member 214.

[0044] Preferably, the vibration assembly 22 includes a drive unit 221 and a vibrating element 222, wherein the drive unit 221 is mounted on the side of the mounting platform 11 away from the placement platform 12 and spaced at a predetermined distance from the placement platform 12, and the drive unit 221 has a drive end. The vibrating element 222 is driven to be rotatably mounted on the drive end of the drive unit 221, and the end of the vibrating element 222 away from the drive unit 221 is used to mount the guide member 214.

[0045] Understandably, when the drive unit 221 is activated to drive the vibrator 222 to rotate, the guide 214 mounted on the vibrator 222 is driven to rotate along the axial direction of the vibrator 222, causing the movable clamping arm 211 and the clamping arm 212 connected to the guide 214 to also rotate along the axial direction of the vibrator 222, thereby causing the container clamped by the movable clamping arm 211 and the clamping arm 212 to rotate along the axial direction of the vibrator 222, so that the steel balls inside the container are driven to grind the resin.

[0046] Specifically, in one example, the mounting platform 11 forms a mounting space 1102 for accommodating the drive unit 221, thereby reducing the space occupied by the oscillating device for resin grinding.

[0047] Preferably, the driving member 213 is implemented as a screw. It should be noted that when only the movable clamping arm 211 is movable, the screw is threadedly connected to the movable clamping arm 211, and the screw is also rotatably connected to the clamping arm 212. Thus, when the screw is driven to adjust the distance between the movable clamping arm 211 and the clamping arm 212, the guide member 214 provides a limiting and guiding effect, allowing the movable clamping arm 211 to approach the clamping arm 212 along the axial direction of the guide member 214. When both the movable clamping arm 211 and the clamping arm 212 are movable, the screw has opposite threads for connecting to the movable clamping arm 211 and the clamping arm 212 respectively, and the screw is also rotatably connected to the vibrating member 222, allowing the movable clamping arm 211 and the clamping arm 212 to move towards and away from each other.

[0048] Furthermore, the vibrating device for resin grinding also includes a controller 30, to which the drive unit 221 is controllably connected. Preferably, the controller 30 is mounted on the mounting platform 11 of the device body 10.

[0049] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The advantages of the present invention have been fully and effectively realized. The functions and structural principles of the present invention have been shown and explained in the embodiments, and any modifications or variations may be made to the implementation of the present invention without departing from the stated principles.

Claims

1. A vibrating device for resin grinding, characterized in that, The vibrating device for resin grinding includes: The device body includes a mounting platform, a placement platform, and a plurality of elastic elements, wherein the mounting platform is held at a predetermined position above the placement platform, each of the elastic elements is disposed between the mounting platform and the placement platform, and the two ends of each of the elastic elements are respectively connected to the mounting platform and the placement platform; At least one clamping mechanism, each of the clamping mechanisms comprising: A vibration assembly, comprising a drive unit and a vibrating element, wherein the drive unit is mounted on the side of the mounting platform away from the placement platform and spaced at a predetermined distance from the placement platform, and the drive unit has a drive end, and the vibrating element is rotatably mounted on the drive end of the drive unit. A clamping assembly is disposed at the end of the vibrating element away from the drive unit in a manner capable of clamping the container; The mounting platform is driven by the drive unit to act on each of the elastic elements.

2. The vibrating device for resin grinding according to claim 1, characterized in that, The mounting platform has the same number of mounting slots as the elastic element on its side near the placement platform. The size of each mounting slot is adapted to the size of one of the elastic elements to accommodate one end of the elastic element. The placement platform has the same number of placement slots as the elastic element on its side near the mounting platform. Each placement slot is corresponding to one of the mounting slots, and the size of each placement slot is adapted to the size of one of the elastic elements to accommodate the other end of each elastic element away from the mounting platform.

3. The vibrating device for resin grinding according to claim 2, characterized in that, The number of elastic elements is set to four, and each elastic element is evenly arranged on the side of the mounting platform.

4. The vibrating device for resin grinding according to claim 1 or 3, characterized in that, The clamping assembly includes a movable clamping arm, a clamping arm, a drive member, and at least one guide member, wherein the movable clamping arm is driven to move movably connected to the drive member, and the movable clamping arm is driven by the drive member to move along the guide member, a clamping opening is formed between the movable clamping arm and the clamping arm for clamping the container, the clamping opening is adjusted in size to fit the size of the container when the drive member drives the movable clamping arm to move, the clamping arm is connected to the guide member, and the guide member is mounted at the end of the vibrator away from the drive unit.

5. The vibrating device for resin grinding according to claim 4, characterized in that, The movable clamping arm has a first groove recessed on its side near the clamping arm to accommodate one end of the container. Correspondingly, the clamping arm has a second groove recessed on its side near the movable clamping arm to accommodate the other end of the container that is accommodated by the first groove. The second groove and the first groove are arranged opposite to each other.

6. The vibrating device for resin grinding according to claim 5, characterized in that, The clamping arm is movably connected to the drive member and is driven by the drive member to move toward the guide member, thereby approaching and moving away from the movable clamping arm.

7. The vibrating device for resin grinding according to claim 6, characterized in that, The drive member extends a predetermined length at its end to form two handles, each of which is used by the user's hand to apply force to drive the drive member.

8. The vibrating device for resin grinding according to claim 7, characterized in that, The number of guide members is set to two, and the two guide members are arranged in parallel and symmetrically.

9. The vibrating device for resin grinding according to claim 1, characterized in that, The mounting platform forms an installation space for accommodating the drive unit.

10. The vibrating device for resin grinding according to claim 9, characterized in that, The vibrating device for resin grinding also includes a controller, the drive unit being controllably connected to the controller, and the controller being mounted on the mounting platform of the device body.