Magnetic material block discharging disc and discharging tool
By designing a magnetic material block discharge tray, and using magnetic suction pieces to fix the magnetic material blocks in the filler tank, the problem of cumbersome arrangement and mixing of magnetic material blocks in mass production is solved, and efficient grouping arrangement and simplified operation is achieved.
Patent Information
- Application Number
- CN202422601845.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-25
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-25
AI Technical Summary
When mass production of toy water balloons, the arrangement of magnetic blocks is complicated and inefficient, which is easy to mix and affect production efficiency.
A magnetic material block discharge tray is designed, including a shaking material disk body and a magnetic suction piece. A plurality of discharge areas and filler grooves are provided on the slide material bearing surface. The magnetic material block is absorbed and fixed through the magnetic suction piece to prevent it from falling out during shaking, and efficient grouping arrangement is achieved.
The operation process of magnetic material blocks is simplified, the discharge efficiency is improved, and the mixing of magnetic material blocks is reduced, making it easier to follow-up installation operations.
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Figure CN223225359U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of toy water ball production, and in particular to a magnetic block discharge tray and a discharge tool. Background Art
[0002] As temperatures rise, people often enjoy summer activities such as water gun games and water ball games. Water ball games use toy water balls, which are filled with water and thrown at players. Players get soaked by the water as the balls burst. There are many different types of toy water balls.
[0003] For example, Chinese patent document CN221637331U discloses a toy water ball, comprising a pair of petals and a connecting portion connecting the petals, each petal comprising a main body and an annular edge portion extending inward from the circumferential edge of the main body, each annular edge portion comprising a magnetic component; the connecting portion can change between an expanded state and a bent state so that the petals can switch between a closed state and an open state; when the petals are in a closed state, the petals together enclose a water-carrying cavity, the magnetic components on the petals attract each other so that the annular edge portions of the petals fit tightly together, thereby forming a water retaining layer to seal the water-carrying cavity, and the annular edge portions extend into the water-carrying cavity.
[0004] In order to ensure that the annular edge portions of the above-mentioned toy water balls can fit tightly together, it is usually necessary to set multiple magnetic elements on the edge portions. The magnetic elements are obtained by magnetizing magnetic blocks such as iron, cobalt, nickel, etc. During production, multiple magnetic elements are manually arranged according to the shape of the annular edge portions. However, when mass-producing toy water balls, multiple groups of magnetic blocks need to be prepared at one time. If the operation is not done properly, the magnetic blocks of each toy water ball can easily mix together, which is not only cumbersome but also inefficient. Utility Model Content
[0005] The purpose of the present invention is to overcome the shortcomings of the prior art and provide a magnetic block discharge tray and discharge tooling that can discharge magnetic blocks in batches and quickly.
[0006] The purpose of this disclosure is achieved through the following technical solutions:
[0007] A magnetic material block discharge tray comprises a shaking tray body and a plurality of magnetic suction parts, one side of the shaking tray body is a sliding material bearing surface, and the sliding material bearing surface is used to bear magnetic material blocks; a plurality of discharge areas are provided on the sliding material bearing surface, and the plurality of discharge areas are distributed in a matrix; a plurality of filling slots are provided in each of the discharge areas, and the plurality of filling slots in the same discharge area are distributed at intervals, and each of the filling slots is used to accommodate one magnetic material block respectively; the shaking tray body is provided with at least one magnetic suction part at a position corresponding to each filling slot to adsorb and fix the magnetic material block in the corresponding filling slot.
[0008] In one embodiment, the shaking material tray body is provided with a cavity at a position corresponding to each of the filling slots, and one of the magnetic components is embedded in each cavity.
[0009] In one embodiment, the cavity extends out of the shaking tray and forms a disassembly opening.
[0010] In one embodiment, the magnetic element is disposed close to the bottom of the filling slot.
[0011] In one embodiment, the connecting lines of the plurality of filling slots in the same discharge area form a closed figure.
[0012] In one embodiment, the connecting line of the plurality of filling slots in the same discharge area is in the shape of a ring or a polygon.
[0013] In one embodiment, the shaking material tray body is provided with an alignment hole on the sliding material bearing surface, and the alignment hole is used to cooperate with the positioning column of the material discharge station.
[0014] In one embodiment, a handle is provided on the shaking material tray, and the handle is arranged close to the edge of the sliding material bearing surface, and the handle is used for being held by a human hand.
[0015] In one embodiment, the handle is located on a side of the shaking tray body that is away from the sliding material bearing surface.
[0016] A discharge tool comprises the magnetic block discharge tray of any one of the above embodiments.
[0017] Compared with the prior art, the present disclosure has at least the following advantages:
[0018] 1) By placing a large number of free magnetic blocks on the sliding material bearing surface, when the shaking plate is slightly shaken, the magnetic blocks can slide on the sliding material bearing surface with the shaking. Since multiple filling grooves are provided in each discharge area of the sliding material bearing surface, part of the free magnetic blocks can be respectively accommodated in each filling groove during the sliding process, thereby filling the filling grooves in each discharge area. At this time, the magnetic blocks on each discharge area will be constrained by the corresponding filling groove and arranged in a fixed position, so that a large number of magnetic blocks can be divided into multiple groups at one time, which simplifies the operation process and improves the discharge efficiency.
[0019] 2) Since the shaking material plate is fixed with magnetic suction parts at the position corresponding to each filling slot, the magnetic material blocks in the corresponding filling slot are adsorbed by the magnetic suction parts, which can prevent the magnetic material blocks from escaping from the filling slot when the shaking material plate is shaken, thereby reducing the mixing of magnetic material blocks in different discharge areas and making it more convenient to install the magnetic material blocks later. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present disclosure and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.
[0021] Figure 1 This is a cross-sectional structural diagram of a magnetic block discharge tray according to an embodiment of the present disclosure;
[0022] Figure 2 for Figure 1 A partial enlarged view shown in the middle;
[0023] Figure 3 for Figure 1 The structural diagram of the magnetic block discharge tray shown;
[0024] Figure 4 for Figure 3 A partial enlarged view shown at B.
[0025] Figure numerals: 10, magnetic material block discharge tray; 100, shaking material tray body; 110, sliding material bearing surface; 1110, discharge area; 1111, filling groove; 1120, alignment hole; 120, accommodating cavity; 1210, disassembly and assembly port; 130, handle; 200, magnetic suction part; 20, magnetic material block. DETAILED DESCRIPTION
[0026] To facilitate understanding of the present disclosure, a more comprehensive description of the present disclosure will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present disclosure. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure.
[0027] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.
[0028] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this disclosure pertains. The terms used herein in the specification of this disclosure are intended only to describe specific embodiments and are not intended to limit this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0029] In order to better understand the technical solutions and beneficial effects of the present disclosure, the present disclosure is further described in detail below with reference to specific embodiments:
[0030] like Figure 1 and Figure 2 As shown, a magnetic material block discharge tray 10 of an embodiment includes a shaking tray body 100 and a plurality of magnetic suction components 200; one side of the shaking tray body 100 is a sliding material bearing surface 110, and the sliding material bearing surface 110 is used to bear the magnetic material block 20; a plurality of discharge areas 1110 are provided on the sliding material bearing surface 110, and the plurality of discharge areas 1110 are distributed in a matrix; a plurality of filling slots 1111 are provided in each discharge area 1110, and the plurality of filling slots 1111 in the same discharge area 1110 are distributed at intervals, and each filling slot 1111 is used to accommodate a magnetic material block 20 respectively; the shaking tray body 100 is provided with at least one magnetic suction component 20 at a position corresponding to each filling slot 1111, so as to adsorb and fix the magnetic material block 20 in the corresponding filling slot 1111.
[0031] It can be understood that by placing a large number of free magnetic blocks 20 on the slider bearing surface 110, when the shaking plate 100 is slightly shaken, the magnetic blocks 20 can slide on the slider bearing surface 110 with the shaking. Since a plurality of filling grooves 1111 are provided in each discharge area 1110 of the slider bearing surface 110, part of the free magnetic blocks 20 can be respectively accommodated in each filling groove 1111 during the sliding process, thereby filling the filling grooves 1111 in each discharge area 1110. At this time, the magnetic blocks 20 on each discharge area 1110 will be constrained by the corresponding filling grooves 1111 and arranged in a fixed position, so that a large number of magnetic blocks 20 can be divided into multiple groups at one time, which simplifies the operation process and improves the discharge efficiency.
[0032] It can be understood that since the shaking material tray 100 is provided with at least one magnetic component 200 at the position corresponding to each filling slot 1111, the magnetic component 200 adsorbs the magnetic material block 20 in the corresponding filling slot 1111, which can prevent the magnetic material block 20 from escaping from the filling slot 1111 when the shaking material tray 100 is shaken, thereby reducing the mixing of the magnetic material blocks 20 in different discharge areas 1110, making it more convenient to perform subsequent installation operations on the magnetic material blocks 20.
[0033] In one embodiment, the magnetic element 200 may be a permanent magnet, etc. The specific shape is not limited and can be selected by those skilled in the art according to needs.
[0034] Combine Figure 2 As described above, in this embodiment, the size of the filling slot 1111 is consistent with the size of the magnetic material block 20, so that each filling slot 1111 can only accommodate one magnetic material block 20, so that the magnetic material blocks 20 in multiple filling slots 1111 in the same discharge area 1110 can be discharged neatly without overlapping.
[0035] Combine Figure 2 As shown, in one embodiment, the shaking material tray body 100 is respectively provided with a cavity 120 at a position corresponding to each filling slot 1111, and a magnetic member 200 is respectively embedded in each cavity 120. It can be understood that since the shaking material tray body 100 is respectively provided with a cavity 120 at a position corresponding to each filling slot 1111, by embedding a magnetic member 200 in each cavity 120, the magnetic member 200 can be securely installed in the shaking material tray body 100.
[0036] Combine Figure 2As shown, in this embodiment, the cavity 120 extends out of the shaking material tray body 100 and forms a disassembly opening 1210. It can be understood that since the cavity 120 extends out of the shaking material tray body 100 and forms the disassembly opening 1210, when the magnetic component 200 needs to be replaced, the magnetic component 200 can be removed through the disassembly opening 1210, and a new magnetic component 200 can be installed into the cavity 120 through the disassembly opening 1210, which is more convenient to use.
[0037] Combine Figure 2 As shown, in one embodiment, the magnetic member 200 is disposed close to the bottom of the filling slot 1111. It can be understood that since the magnetic member 200 is disposed close to the bottom of the filling slot 1111, the magnetic material block 20 in the filling slot 1111 can be firmly attached to the bottom of the filling slot 1111 under the action of the magnetic force of the magnetic member 200, further preventing the magnetic material block 20 from escaping from the filling slot 1111 when the shaking tray 100 is shaken.
[0038] Combine Figure 2 As shown, in one embodiment, the lines connecting the multiple filling slots 1111 within the same discharge area 1110 form a closed figure. It can be understood that by making the lines connecting the multiple filling slots 1111 within the same discharge area 1110 form a closed figure, the magnetic material blocks 20 within the same discharge area 1110 can be arranged along the extension direction of the edge of the toy water ball to form a closed loop, thereby making the magnetic force on the edge of the toy water ball evenly distributed, so that the edge of the toy water ball can fit together more tightly. Specifically, the closed figure can be a regular geometric figure or an irregular pattern outline, such as the outline of a rabbit, duck, etc. The specific shape of the closed figure is not limited, and those skilled in the art can replace it as needed.
[0039] Combine Figure 3 As shown, in this embodiment, the lines connecting the multiple filling slots 1111 within the same discharge area 1110 are in the form of a ring or polygon. It is understood that since the lines connecting the multiple filling slots 1111 within the same discharge area 1110 are in the form of a ring or polygon, the ring or polygon is more regular and easier to process. The polygon can be a triangle, a rectangle, or a diamond, and the specific shape is not limited here, and those skilled in the art can replace it as needed.
[0040] Combine Figure 3 and Figure 4As shown, in one embodiment, the material shaking plate body 100 is provided with an alignment hole 1120 on the sliding material bearing surface 110, and the alignment hole 1120 is used to cooperate with the positioning column of the material discharge station. It can be understood that since the material shaking plate body 100 is provided with the alignment hole 1120 on the sliding material bearing surface 110, when it is necessary to place the magnetic material block 20 in the filling groove 1111 on the material discharge station, the alignment hole 1120 is matched with the positioning column of the material discharge station, so that the sliding material bearing surface 110 is buckled on the material discharge station, and the magnetic material block 20 can be placed at the preset position on the material discharge station, which is more convenient to operate.
[0041] Combine Figure 1 and Figure 3 As shown, in one embodiment, a handle 130 is provided on the material shaking tray 100, and the handle 130 is arranged near the edge of the sliding material bearing surface 110, and the handle 130 is used for being held by a human hand. It can be understood that by arranging the handle 130 on the material shaking tray 100, the handle 130 can be conveniently held by a human hand to shake the material shaking tray 100. By arranging the handle 130 near the edge of the sliding material bearing surface 110, interference with the magnetic material block 20 can be reduced. Specifically, the number of the handles 130 is two, and the two handles 130 are arranged opposite to each other. It can be understood that by arranging two handles 130, the operator can lift the material shaking tray 100 with both hands, so that the material shaking tray 100 can be shaken more conveniently.
[0042] Combine Figure 1 and Figure 3 As shown, in this embodiment, the handle 130 is located on the side of the shaking tray 100 away from the sliding material bearing surface 110. It can be understood that by arranging the handle 130 on the side of the shaking tray 100 away from the sliding material bearing surface 110, the operator can easily turn the shaking tray 100 over by using the handle 130 without interfering with the movement of the magnetic material blocks 20, thereby quickly unloading the magnetic material blocks 20 in each discharge area 1110 on the sliding material bearing surface 110.
[0043] Combine Figure 1 and Figure 2As shown, the present disclosure also provides a discharge tool, including a magnetic block discharge tray 10 of any of the above-mentioned embodiments. It can be understood that by applying the magnetic block discharge tray 10 of the present disclosure to the discharge tool, part of the free magnetic blocks 20 can be respectively accommodated in each filling groove 1111 during the sliding process, thereby filling the filling groove 1111 in each discharge area 1110. At this time, the magnetic blocks 20 on each discharge area 1110 will be constrained by the corresponding filling groove 1111 and arranged in a fixed position, so that a large number of magnetic blocks 20 can be divided into multiple groups at one time, simplifying the operation process and improving the discharge efficiency. At the same time, by adsorbing the magnetic blocks 20 in the corresponding filling groove 1111 by the magnetic suction member 200, the magnetic blocks 20 can be prevented from escaping from the filling groove 1111 when the shaking tray body 100 is shaken, thereby reducing the mixing of the magnetic blocks 20 on different discharge areas 1110, and making it more convenient to install the magnetic blocks 20 later.
[0044] Compared with the prior art, the present disclosure has at least the following advantages:
[0045] 1) By placing a large number of free magnetic blocks 20 on the sliding material bearing surface 110, when the shaking plate 100 is slightly shaken, the magnetic blocks 20 can slide on the sliding material bearing surface 110 with the shaking. Since a plurality of filling grooves 1111 are provided in each discharge area 1110 of the sliding material bearing surface 110, part of the free magnetic blocks 20 can be respectively accommodated in each filling groove 1111 during the sliding process, thereby filling the filling grooves 1111 in each discharge area 1110. At this time, the magnetic blocks 20 on each discharge area 1110 will be constrained by the corresponding filling grooves 1111 and arranged in a fixed position, so that a large number of magnetic blocks 20 can be divided into multiple groups at one time, which simplifies the operation process and improves the discharge efficiency.
[0046] 2) Since the shaking material tray 100 is fixed with a magnetic suction component 200 at the position corresponding to each filling slot 1111, the magnetic suction component 200 adsorbs the magnetic material block 20 in the corresponding filling slot 1111, which can prevent the magnetic material block 20 from escaping from the filling slot 1111 when the shaking material tray 100 is shaken, thereby reducing the mixing of the magnetic material blocks 20 in different discharge areas 1110, making it more convenient to perform subsequent installation operations on the magnetic material blocks 20.
[0047] The above-described embodiments merely represent several implementation methods of the present disclosure. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that a person of ordinary skill in the art could make various modifications and improvements without departing from the scope of the present disclosure, all of which fall within the scope of protection of the present disclosure. Therefore, the scope of protection of the present patent shall be determined by the appended claims.
Claims
1. A magnetic block discharge tray, characterized in that: It includes a shaking material tray and multiple magnetic parts. One side of the shaking material tray is a sliding material bearing surface, and the sliding material bearing surface is used to bear magnetic material blocks; a plurality of discharge areas are provided on the sliding material bearing surface, and the multiple discharge areas are distributed in a matrix; a plurality of filling slots are opened in each of the discharge areas, and the multiple filling slots in the same discharge area are distributed at intervals, and each of the filling slots is used to accommodate one magnetic material block respectively; the shaking material tray is provided with at least one magnetic part at the position corresponding to each filling slot to adsorb and fix the magnetic material block in the corresponding filling slot.
2. The magnetic block discharge tray according to claim 1, characterized in that: The shaking material tray body is respectively provided with a cavity at a position corresponding to each of the filling slots, and one of the magnetic attraction components is respectively embedded in each cavity.
3. The magnetic block discharge tray according to claim 2, characterized in that: The cavity extends out of the shaking tray body and forms a disassembly and assembly opening.
4. The magnetic block discharge tray according to claim 2, characterized in that: The magnetic attraction member is arranged close to the bottom of the filling slot.
5. The magnetic block discharge tray according to claim 1, characterized in that: The connecting lines of the plurality of filling slots in the same discharge area form a closed figure.
6. The magnetic block discharge tray according to claim 5, characterized in that: The connecting line of the plurality of filling slots in the same discharge area is in the shape of a ring or a polygon.
7. The magnetic block discharge tray according to claim 1, characterized in that: The shaking material disc body is provided with an alignment hole on the sliding material bearing surface, and the alignment hole is used to cooperate with the positioning column of the material discharge station.
8. The magnetic block discharge tray according to claim 1, characterized in that: A handle is provided on the material shaking tray body, and the handle is arranged close to the edge of the sliding material bearing surface, and the handle is used for being held by a human hand.
9. The magnetic block discharge tray according to claim 8, characterized in that: The handle is located on a side of the material shaking tray body that is away from the sliding material bearing surface.
10. A nesting tool, characterized in that: A magnetic block discharge tray comprising the magnetic block discharge tray according to any one of claims 1 to 9.
Citation Information
Patent Citations
Toy water ball
CN221637331U