Single-cylinder ball mill, milling tank for ball mill and vibrating device

The split design of the barrel and locking cover, combined with the cooperation of the flywheel mechanism and the elastic seat, solves the problems of inconvenient opening and closing of the barrel and insufficient vibration force in large-scale equipment, and improves the crushing efficiency.

CN223324644UActive Publication Date: 2025-09-12CHANGZHOU BAIHELING INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422465655.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-09-12
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

In large-scale equipment, it is inconvenient to open and close the feed port of the barrel and the vibration force of the vibration motor is limited, resulting in low crushing efficiency.

Method used

The barrel and locking cover are designed in a split style, and the flywheel mechanism and elastic seat are combined to realize convenient opening and closing of the feed port by rotating the locking cover, and the eccentric force is generated by the flywheel mechanism to enhance the vibration intensity.

Benefits of technology

The convenient opening and closing of the barrel and sufficient vibration intensity are achieved, which improves the crushing efficiency of the material.

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Abstract

The utility model belongs to the technical field of crushing, and particularly relates to a single-barrel ball mill, a milling tank for the ball mill and a vibrating device, the single-barrel ball mill comprises a flywheel mechanism, a vibration device, a vibration device and a vibration device, the flywheel mechanism is arranged on an elastic seat, and an accommodating position is arranged on the flywheel mechanism; the grinding tank is transversely arranged in the accommodating position and comprises a charging barrel and a locking cover; wherein the charging barrel is suitable for being filled with materials and crushing balls, and the locking cover is suitable for being overlapped with a feeding port of the charging barrel through transverse movement and then locked; according to the single-barrel ball mill, eccentric force is generated through rotation of the flywheel mechanism, the flywheel mechanism is matched with the elastic base, so that the charging barrel obtains enough vibration strength, and therefore the materials are crushed; meanwhile, in order to conveniently open and close the feeding port of the charging barrel, the charging barrel and the locking cover which are designed in a split mode are adopted, and when the charging barrel is used, only the locking cover needs to be rotated to enable a gap to be reserved between the locking cover and the feeding port of the charging barrel, and then the feeding port can be opened.
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Description

Technical Field

[0001] The utility model belongs to the technical field of crushing, and in particular relates to a single-cylinder ball mill, a grinding pot for the ball mill and a vibration device. Background Art

[0002] The ball mill is a key equipment for crushing materials after they are crushed. In related technologies, the ball mill includes a barrel for loading materials and crushing balls. The barrel uses a vibrating motor to make the crushing balls inside collide with the materials, thereby crushing the materials.

[0003] However, the vibration force generated by the vibration motor and the side wall of the barrel is limited, which is not effective in large-scale equipment, and it is inconvenient to open and close the feed port of a conventional barrel.

[0004] Therefore, how to solve the problem of inconvenience in opening and closing the feed port of the barrel and limited vibration force of the vibration motor in large-scale equipment is a technical problem that technical personnel in this field urgently need to solve.

[0005] It should be noted that the above information disclosed in this background technology section is only used to understand the background technology of the present application concept, and therefore, the above description is not considered to constitute information of the prior art. Utility Model Content

[0006] The embodiments of the present disclosure provide a single-cylinder ball mill, a grinding pot for the ball mill, and a vibration device.

[0007] In the first aspect, an embodiment of the present disclosure provides a single-cylinder ball mill, which includes: a flywheel mechanism, which is arranged on an elastic seat and has a receiving position provided thereon; and a grinding jar, which is placed horizontally in the receiving position and includes: a barrel and a locking cover; wherein the barrel is suitable for filling materials and crushing balls, and the locking cover is suitable for overlapping with the feed port of the barrel by horizontal movement and then locking; and the flywheel mechanism is suitable for rotating and cooperating with the elastic seat to vibrate and crush the material in the barrel.

[0008] In an optional embodiment, the cross-section of the feed port is "T"-shaped; the locking lid includes: a snap buckle that is approximately "U"-shaped, and both ends of the snap buckle are provided with inward-extending protrusions to buckle the feed port; and a rotating handle that is passed through the snap buckle and is threadedly connected to the snap buckle; and a cover plate that is connected to the end of the rotating handle located in the snap buckle; wherein the snap buckle is suitable for causing the cover plate to overlap with the feed port by horizontal movement, and the rotating handle is suitable for causing the cover plate to move toward the feed port by rotation until it is locked.

[0009] In an optional embodiment, the accommodating position includes: an arc-shaped groove adapted to the side wall of the barrel; the barrel is limited in the arc-shaped groove by an arc-shaped pressure plate.

[0010] In an optional embodiment, the flywheel mechanism includes: a mounting frame, which is arranged on the elastic seat; a rotating shaft, which passes through the mounting frame; and a flywheel block, which is arranged at one end of the rotating shaft; wherein the rotating shaft is suitable for driving the flywheel block to rotate so that the elastic seat vibrates.

[0011] In an optional embodiment, the elastic seat includes: a base and several elastic components that are all vertically arranged; wherein, one end of the elastic component is connected to the upper surface of the base, and the other end is connected to the lower surface of the mounting frame; the elastic component includes: a first limit block, a second limit block and a spring; wherein the first limit block and the second limit block are respectively arranged on the base and the mounting frame; and the spring is vertically arranged, and the two ends are respectively mounted on the first limit block and the second limit block.

[0012] In the second aspect, an embodiment of the present disclosure provides a grinding jar for a ball mill, which includes: a grinding jar, suitable for horizontal placement and including: a barrel and a locking lid; wherein, the barrel is suitable for filling materials and crushing balls, and the locking lid is suitable for overlapping with the feed port of the barrel by horizontal movement and then locking.

[0013] In an optional embodiment, the cross-section of the feed port is "T"-shaped; the locking lid includes: a snap buckle that is approximately "U"-shaped, and both ends of the snap buckle are provided with inward-extending protrusions to buckle the feed port; and a rotating handle that is passed through the snap buckle and is threadedly connected to the snap buckle; and a cover plate that is connected to the end of the rotating handle located in the snap buckle; wherein the snap buckle is suitable for causing the cover plate to overlap with the feed port by horizontal movement, and the rotating handle is suitable for causing the cover plate to move toward the feed port by rotation until it is locked.

[0014] In a third aspect, an embodiment of the present disclosure provides a vibration device for a ball mill, comprising: a flywheel mechanism, which is arranged on an elastic seat and has a accommodating position for a barrel; the flywheel mechanism is suitable for rotating and cooperating with the elastic seat to vibrate and crush the material in the barrel.

[0015] In an optional embodiment, the flywheel mechanism includes: a mounting frame, which is arranged on the elastic seat; a rotating shaft, which passes through the mounting frame; and a flywheel block, which is arranged at one end of the rotating shaft; wherein the rotating shaft is suitable for driving the flywheel block to rotate so that the elastic seat vibrates.

[0016] In an optional embodiment, the elastic seat includes: a base and several elastic components that are all vertically arranged; wherein, one end of the elastic component is connected to the upper surface of the base, and the other end is connected to the lower surface of the mounting frame; the elastic component includes: a first limit block, a second limit block and a spring; wherein the first limit block and the second limit block are respectively arranged on the base and the mounting frame; and the spring is vertically arranged, and the two ends are respectively mounted on the first limit block and the second limit block.

[0017] The beneficial effect of the present utility model is that the single-drum ball mill generates eccentric force through the rotation of the flywheel mechanism, and cooperates with the elastic seat to enable the barrel to obtain sufficient vibration intensity, thereby crushing the material; at the same time, in order to facilitate the opening and closing of the feed port of the barrel, a split-type design of the barrel and the locking cover is adopted. When in use, the feed port can be opened by simply rotating the locking cover to leave a gap between it and the feed port of the barrel.

[0018] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or understood by practicing the present invention. The objectives and other advantages of the present invention are realized and obtained by the structures particularly pointed out in the description, claims and drawings.

[0019] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, preferred embodiments are given herein and described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0021] Figure 1 A schematic structural diagram of a single-drum ball mill provided in an embodiment of the present disclosure;

[0022] Figure 2 A schematic structural diagram of a grinding tank provided in an embodiment of the present disclosure;

[0023] Figure 3 A schematic structural diagram of a flywheel mechanism provided in an embodiment of the present disclosure;

[0024] Figure 4 A schematic structural diagram of an elastic seat provided in an embodiment of the present disclosure.

[0025] In the picture:

[0026] 1. Flywheel mechanism; 11. Arc-shaped groove; 12. Arc-shaped pressure plate; 13. Mounting frame; 14. Rotating shaft; 15. Flywheel block; 151. Eccentric block; 2. Elastic seat; 21. Base; 22. Elastic assembly; 221. First limit block; 222. Second limit block; 223. Spring; 3. Grinding jar; 31. Barrel; 311. Feed port; 32. Locking lid; 321. Buckle; 322. Rotating handle; 323. Cover plate; 324. Protrusion. DETAILED DESCRIPTION

[0027] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.

[0028] It should be noted that similar reference numerals and letters represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings. In addition, in the drawings, the thickness of components may be exaggerated or reduced in order to effectively describe the technical content.

[0029] The following embodiments of the present invention are described in detail with reference to the accompanying drawings. In the absence of conflict, the following embodiments and features in the embodiments may be combined with each other.

[0030] like Figure 1 As shown, at least one embodiment provides a single-cylinder ball mill, which includes: a flywheel mechanism 1, which is arranged on an elastic seat 2, and a receiving position is provided on the flywheel mechanism 1; and a grinding pot 3, which is placed horizontally in the receiving position of the flywheel mechanism 1, and includes: a barrel 31 and a locking cover 32; wherein, the barrel 31 is suitable for filling materials and crushing balls, and the locking cover 32 is suitable for overlapping with the feed port 311 of the barrel 31 by horizontal movement and then locking; and the flywheel mechanism 1 is suitable for rotating and cooperating with the elastic seat 2 to vibrate and crush the material in the barrel 31.

[0031] In this embodiment, the flywheel mechanism 1 generates an eccentric force after being driven by the driver, and cooperates with the elastic seat 2 to enable the barrel 31 to obtain sufficient vibration intensity. During the vibration process of the barrel 31, the crushing balls loaded inside the barrel 31 collide with the material to crush the material; in order to facilitate the opening and closing of the feed port 311, the grinding tank 3 used in this single-cylinder ball mill adopts a split-type design of the barrel 31 and the locking cover 32. When in use, you only need to rotate the locking cover 32 to leave a gap between it and the feed port 311 of the barrel 31, and then you can remove the locking cover 32 to open the feed port 311.

[0032] like Figure 2As shown, in some embodiments, the cross-section of the feed port 311 is "T"-shaped; the locking cover 32 includes: a buckle 321 that is approximately "U"-shaped; and a rotating handle 322, which is passed through the buckle 321; and a cover plate 323, which is connected to the end of the rotating handle 322 located inside the buckle 321; wherein the buckle 321 is suitable for making the cover plate 323 overlap with the feed port 311 by horizontal movement, and the rotating handle 322 is suitable for moving the cover plate 323 toward the feed port 311 by rotation until it is locked.

[0033] In this embodiment, both ends of the buckle 321 are provided with inward extending protrusions 324. The buckle 321 is moved horizontally so that the protrusions 324 are located below the feed port 311, and then the cover plate 323 is moved toward the feed port 311 by rotating the rotating handle 322 until the cover plate 323 is close to the feed port 311.

[0034] Specifically, the rotating handle 322 is threadedly connected to the buckle 321 , so that when the rotating handle 322 is rotated, it moves relative to the buckle 321 , thereby driving the cover plate 323 to move.

[0035] like Figure 1 As shown, in some embodiments, the accommodating position includes: an arc-shaped groove 11 adapted to the side wall of the barrel 31 ; the barrel 31 is limited in the arc-shaped groove 11 by the arc-shaped pressing plate 12 .

[0036] In this embodiment, the barrel 31 is fixed by an arc-shaped pressing plate 12 , and both ends of the arc-shaped pressing plate 12 are connected to the flywheel mechanism 1 through limiters, that is, the barrel 31 vibrates along with the flywheel mechanism 1 .

[0037] like Figure 3 As shown, in some embodiments, the flywheel mechanism 1 includes: a mounting frame 13, which is arranged on the elastic seat 2; a rotating shaft 14, which is passed through the mounting frame 13; and a flywheel block 15, which is arranged at one end of the rotating shaft 14; wherein the rotating shaft 14 is suitable for driving the flywheel block 15 to rotate so that the elastic seat 2 vibrates.

[0038] In this embodiment, at least one flywheel block 15 is mounted on the rotating shaft 14; the rotating shaft 14 is driven by a motor to rotate, thereby driving the flywheel block 15 to rotate. An eccentric block 151 is provided on the flywheel block 15, so that the flywheel block 15 generates an eccentric force when rotating, thereby causing the elastic seat 2 to vibrate.

[0039] like Figure 4 As shown, in some embodiments, the elastic seat 2 includes: a base 21 and several elastic components 22 that are vertically arranged; wherein one end of the elastic component 22 is connected to the upper surface of the base 21, and the other end is connected to the lower surface of the mounting frame 13.

[0040] Specifically, the elastic component 22 includes: a first limit block 221, a second limit block 222 and a spring 223; wherein the first limit block 221 and the second limit block 222 are respectively arranged on the base 21 and the mounting frame 13; and the spring 223 is vertically arranged, and the two ends are respectively mounted on the first limit block 221 and the second limit block 222.

[0041] In this embodiment, both ends of the spring 223 are limited, thereby preventing the spring 223 from shifting.

[0042] At least one embodiment also provides a grinding jar for a ball mill, which includes: a grinding jar 3, suitable for horizontal placement and including: a barrel 31 and a locking lid 32; wherein, the barrel 31 is suitable for filling materials and crushing balls, and the locking lid 32 is suitable for overlapping with the feed port 311 of the barrel 31 by horizontal movement and then locking.

[0043] In some embodiments, the cross-section of the feed port 311 is "T"-shaped; the locking cover 32 includes: a snap 321 that is approximately "U"-shaped, and both ends of the snap 321 are provided with inward-extending protrusions 324 to buckle the feed port 311; and a rotating handle 322, which is passed through the snap 321 and threadedly connected to the snap 321; and a cover plate 323, which is connected to the end of the rotating handle 322 located in the snap 321; wherein the snap 321 is suitable for making the cover plate 323 overlap with the feed port 311 by horizontal movement, and the rotating handle 322 is suitable for moving the cover plate 323 toward the feed port 311 by rotation until it is locked.

[0044] At least one embodiment further provides a vibration device for a ball mill, comprising: a flywheel mechanism 1, which is arranged on an elastic seat 2 and has a receiving position for a barrel 31; the flywheel mechanism 1 is suitable for rotating and cooperating with the elastic seat 2 to vibrate and crush the material in the barrel 31.

[0045] In some embodiments, the flywheel mechanism 1 includes: a mounting frame 13, which is arranged on the elastic seat 2; a rotating shaft 14, which is passed through the mounting frame 13; and a flywheel block 15, which is arranged at one end of the rotating shaft 14; wherein the rotating shaft 14 is suitable for driving the flywheel block 15 to rotate so that the elastic seat 2 vibrates.

[0046] In some embodiments, the elastic seat 2 includes: a base 21 and several elastic components 22 that are all vertically arranged; wherein, one end of the elastic component 22 is connected to the upper surface of the base 21, and the other end is connected to the lower surface of the mounting frame 13; the elastic component 22 includes: a first limit block 221, a second limit block 222 and a spring 223; wherein the first limit block 221 and the second limit block 222 are respectively arranged on the base 21 and the mounting frame 13; and the spring 223 is vertically arranged, and the two ends are respectively sleeved on the first limit block 221 and the second limit block 222.

[0047] To sum up, this single-barrel ball mill generates eccentric force through the rotation of the flywheel mechanism 1, and cooperates with the elastic seat 2 to enable the barrel 31 to obtain sufficient vibration intensity, thereby crushing the material; at the same time, in order to facilitate the opening and closing of the feed port 311 of the barrel 31, a split-type design of the barrel 31 and the locking cover 32 is adopted. When in use, it is only necessary to rotate the locking cover 32 to leave a gap between it and the feed port 311 of the barrel 31 to open the feed port 311.

[0048] Herein, when it is mentioned that a first component is located on a second component, this may mean that the first component may be directly formed on the second component or a third component may be interposed between the first component and the second component.

[0049] As used herein, when an element or layer is referred to as being "located on," "engaged to," "connected to," "attached to," or "coupled to" another element or layer, it may be directly located on, engaged, connected, attached to, or coupled to the other element or layer, or there may be intervening elements or layers. Conversely, when an element is referred to as being "directly on," "directly engaged to," "directly connected to," "directly attached to," or "directly coupled to" another element or layer, there may be no intervening elements or layers. Other words used to describe the relationship between elements should be interpreted in a similar manner (e.g., "between" versus "directly between," "adjacent" versus "directly adjacent," etc.). As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0050] Herein, example embodiments of the present disclosure will be described in more detail with reference to the accompanying drawings. As used herein, expressions such as "at least one of..." when following a list of elements modify the entire list of elements, rather than modifying individual elements in the list. For example, the expression "at least one of a, b, and c" should be understood to include only a, only b, only c, both a and b, both a and c, both b and c, or all of a, b, and c.

[0051] The terms used herein are only used to describe specific exemplary configurations and are not intended to be limiting. As used herein, the singular articles "a", "an" and "the" may also be intended to include plural forms, unless otherwise clearly indicated herein. The terms "comprise", "include" and "have" are inclusive and therefore specify the presence of features, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, elements, components and / or combinations thereof. The method steps, processes and operations described herein should not be interpreted as necessarily requiring them to be performed in the particular order discussed or shown, unless specifically identified as an execution order. Additional or alternative steps may be adopted.

[0052] As used herein, the phrases "in one embodiment," "according to one embodiment," "in some embodiments," and the like generally refer to the fact that the particular feature, structure, or characteristic following the phrase may be included in at least one embodiment of the present disclosure. Thus, a particular feature, structure, or characteristic may be included in more than one embodiment of the present disclosure, such that these phrases do not necessarily refer to the same embodiment. As used herein, the terms "example," "exemplary," and the like are used to "serve as an example, instance, or illustration." Any implementation, aspect, or design described herein as "example" or "exemplary" is not necessarily to be construed as preferred or advantageous over other implementations, aspects, or designs. Instead, the use of the terms "example," "exemplary," and the like is intended to present concepts in a concrete manner.

[0053] In the description of the embodiments of the present invention, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances.

[0054] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inside", "outside" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, terms such as "first", "second" and other numerical terms do not imply an order or sequence when used herein unless expressly indicated above. Therefore, without departing from the teachings of the example embodiments, the first element, component, region, layer or section discussed above may be referred to as a second element, component, region, layer or section.

[0055] Spatially relative terms, such as "inside," "outside," "below," "beneath," "down," "above," "on," etc., may be used herein to describe the relationship of one element or feature to another element or feature as illustrated in the figures. In addition to the orientations depicted in the figures, spatially relative terms may be intended to encompass different orientations of the device in use or operation. For example, if the device in the figures is flipped, an element described as being "below" or "below" other elements or features will be oriented to be "above" the other elements or features. Thus, the example term "below" may encompass both above and below orientations. The device may be oriented otherwise (rotated 90 degrees or in other orientations), and the spatially relative descriptors used herein are interpreted accordingly.

[0056] In the above discussion, unless otherwise indicated, the terms "about," "approximately," "substantially," etc., when used to describe a numerical value, mean a variation of + / - 10% of the value.

[0057] Based on the above-mentioned ideal embodiment of the present invention, and in accordance with the above description, relevant personnel can make various changes and modifications without departing from the technical scope of the present invention. The technical scope of the present invention is not limited to the content of the specification, but must be determined according to the scope of the claims.

Claims

1. A single-drum ball mill, characterized in that: include: A flywheel mechanism (1) is arranged on an elastic seat (2) and has an accommodating position thereon; and The grinding pot (3) is placed horizontally in the receiving position and comprises: a barrel (31) and a locking cover (32); The barrel (31) is suitable for filling materials and crushing balls, and the locking cover (32) is suitable for overlapping with the feed opening (311) of the barrel (31) by lateral movement and then locking; and The flywheel mechanism (1) is adapted to rotate and cooperate with the elastic seat (2) to vibrate and crush the material in the barrel (31).

2. The single-drum ball mill according to claim 1, wherein The cross section of the feed port (311) is T-shaped; The locking cover (32) comprises: A substantially "U"-shaped buckle (321), wherein both ends of the buckle (321) are provided with inwardly extending protrusions (324) for buckling the feed port (311); and A rotating handle (322) is provided on the buckle (321) and is threadedly connected to the buckle (321); and A cover plate (323) connected to the end of the rotating handle (322) located inside the buckle (321); The buckle (321) is adapted to make the cover plate (323) overlap with the feed opening (311) by lateral movement, and the rotating handle (322) is adapted to move the cover plate (323) toward the feed opening (311) by rotation until it is locked.

3. The single-drum ball mill according to claim 2, characterized in that: The accommodating position includes: an arc-shaped groove (11) adapted to the side wall of the barrel (31); The barrel (31) is limited in the arc-shaped groove (11) by the arc-shaped pressing plate (12).

4. The single-drum ball mill according to claim 3, characterized in that: The flywheel mechanism (1) comprises: A mounting frame (13) is provided on the elastic seat (2); A rotating shaft (14) is passed through the mounting frame (13); and A flywheel block (15) is provided at one end of the rotating shaft (14); The rotating shaft (14) is suitable for driving the flywheel block (15) to rotate, so as to cause the elastic seat (2) to vibrate.

5. The single-drum ball mill according to claim 4, characterized in that: The elastic seat (2) comprises: a base (21) and a plurality of elastic components (22) all arranged vertically; One end of the elastic component (22) is connected to the upper surface of the base (21), and the other end is connected to the lower surface of the mounting frame (13); The elastic component (22) comprises: a first limiting block (221), a second limiting block (222) and a spring (223); wherein The first limiting block (221) and the second limiting block (222) are respectively arranged on the base (21) and the mounting frame (13); and The spring (223) is arranged vertically, and its two ends are respectively sleeved on the first limiting block (221) and the second limiting block (222).

6. A grinding pot for a ball mill, characterized in that: include: A grinding pot (3) adapted to be placed horizontally and comprising: a barrel (31) and a locking lid (32); The barrel (31) is suitable for filling materials and crushing balls, and the locking cover (32) is suitable for overlapping with the feed opening (311) of the barrel (31) through transverse movement and then being locked.

7. The grinding pot according to claim 6, wherein: The cross section of the feed port (311) is T-shaped; The locking cover (32) comprises: A substantially "U"-shaped buckle (321), wherein both ends of the buckle (321) are provided with inwardly extending protrusions (324) for buckling the feed port (311); and A rotating handle (322) is provided on the buckle (321) and is threadedly connected to the buckle (321); and A cover plate (323) connected to the end of the rotating handle (322) located inside the buckle (321); The buckle (321) is adapted to make the cover plate (323) overlap with the feed opening (311) by lateral movement, and the rotating handle (322) is adapted to move the cover plate (323) toward the feed opening (311) by rotation until it is locked.

8. A vibration device for a ball mill, characterized in that: include: A flywheel mechanism (1) is arranged on an elastic seat (2) and is provided with a receiving position for a barrel (31); The flywheel mechanism (1) is adapted to rotate and cooperate with the elastic seat (2) to vibrate and crush the material in the barrel (31).

9. The vibration device according to claim 8, characterized in that The flywheel mechanism (1) comprises: A mounting frame (13) is provided on the elastic seat (2); A rotating shaft (14) is passed through the mounting frame (13); and A flywheel block (15) is provided at one end of the rotating shaft (14); The rotating shaft (14) is suitable for driving the flywheel block (15) to rotate, so as to cause the elastic seat (2) to vibrate.

10. The vibration device according to claim 9, characterized in that The elastic seat (2) comprises: a base (21) and a plurality of elastic components (22) all arranged vertically; One end of the elastic component (22) is connected to the upper surface of the base (21), and the other end is connected to the lower surface of the mounting frame (13); The elastic component (22) comprises: a first limiting block (221), a second limiting block (222) and a spring (223); wherein The first limiting block (221) and the second limiting block (222) are respectively arranged on the base (21) and the mounting frame (13); and The spring (223) is arranged vertically, and its two ends are respectively sleeved on the first limiting block (221) and the second limiting block (222).