Feeding rotating mechanism for coating crucible filling machine

By designing a rotating feeding plate, a fixed plate, a suction and blowing mechanism on the coating crucible filling machine, the problems of crucible not being fixed and unsmooth material feeding during rotation are solved, achieving stable feeding and smooth material feeding, and improving work efficiency and quality.

CN223852738UActive Publication Date: 2026-01-30SUZHOU DONGXING SURFACE TECH CO LTD
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Patent Information

Application Number
CN202520428426.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-30
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

Existing coating crucible filling machines suffer from problems such as crucibles not being fixed, being easily thrown out, or having uneven feeding during the loading and unloading process, which affects work efficiency and quality.

Method used

A feeding and rotating mechanism is designed, which includes a rotating feeding tray, a fixed tray, a suction mechanism, and a blower mechanism. The crucible is fixed in the feeding trough by suction, and the material is smoothly discharged by blowing. Combined with a stepper drive motor, stable feeding and discharging are achieved.

Benefits of technology

This effectively prevents the crucible from being thrown out during rotation, ensuring the stability of feeding and the smoothness of discharging, and improving the working efficiency and quality of the device.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223852738U_ABST
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Abstract

The utility model discloses a feeding rotating mechanism for a coating crucible filling machine. The feeding rotating mechanism comprises a rotating feeding disc, a fixing disc arranged on the lower end face of the rotating feeding disc and a driving mechanism penetrating through the fixing disc to drive the rotating feeding disc to rotate. A plurality of feeding grooves which are uniformly spaced are formed in the edge position of the rotary feeding disc, the end part of the outer side of each feeding groove is in a square groove opening form, the inner side of each feeding groove is in a semicircular structure which is matched with the crucible in size, the upper end part and the lower end part of each feeding groove are in an opening form, and the lower end part of each feeding groove is correspondingly blocked by the fixed disc. According to the device, the crucible enters the feeding groove and can be fixed in the discharging groove through suction force of the air suction device, the situation that feeding fails due to centrifugal force generated by rotating the feeding disc is avoided, the structural arrangement is ingenious, and feeding is convenient and reasonable.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the preparation technical field of plating film crucible, specifically speaking, a kind of feeding rotary mechanism for plating film crucible filling machine. BACKGROUND

[0002] As Figure 1 As shown, it is the structure of the existing plating film crucible filling machine, and the specific structure can refer to the technology solution disclosed in the authorized announcement No.CN222434604U;The specific working principle of this structure is that the crucible to be filled is sent into the circular groove of the turntable by vibrating feeding barrel, the crucible moves to the lower side of the transfer device in the circular groove, the steel wool sheet is transferred to the crucible by the transfer device, then moves to the compaction device along with the turntable, the steel wool sheet in the crucible is compacted by the compaction device, then moves to the unloading position to realize unloading.

[0003] However, the above-mentioned equipment has the following shortcomings in specific use, first, the crucible is not fixed in the circular groove after being sent into the circular groove through the feeding channel, and there is no part to fix the crucible outside, so when the turntable rotates to the next station, the crucible may be thrown out by the centrifugal force of the turntable, resulting in feeding failure.

[0004] In addition, after the crucible is filled and compacted, the unloading of the crucible is realized by relying on the gravity of the crucible, and sometimes the circular groove needs to maintain a certain clamping force to fix the crucible in the circular groove, so that the unloading fails when unloading, which seriously affects the working efficiency and quality of the whole device.

[0005] Therefore, in order to solve the above problems, a feeding rotary mechanism for plating film crucible filling machine with reasonable structure is needed, which is beneficial to feeding and unloading. UTILITY MODEL CONTENTS

[0006] The utility model aims at the deficiencies in the prior art, and provides a feeding rotary mechanism for plating film crucible filling machine;The technical scheme is as follows:

[0007] A feeding rotary mechanism for plating film crucible filling machine, comprising a rotary feeding disc, a fixed disc arranged at the lower end face of the rotary feeding disc, and a driving mechanism for rotating the rotary feeding disc through the fixed disc;A plurality of evenly spaced feeding grooves are arranged at the edge position of the rotary feeding disc, the outer end of the feeding groove is in the form of square notch, the inner side is in the form of semicircular structure matched with the size of the crucible, and the upper end and the lower end of the feeding groove are in the form of opening, while the lower end is blocked by the fixed disc;

[0008] The side of the rotary feeding disc is further provided with a feeding pipe which is close to the edge of the rotary feeding disc and corresponds to the feeding groove, and when the feeding pipe corresponds to the feeding groove, the crucible in the feeding pipe enters the feeding groove.

[0009] A suction mechanism is further installed at the middle position of the rotary feeding disc, and the inside of the rotary feeding disc is correspondingly embedded with suction channels connected with the suction mechanism, the number of the suction channels is consistent with the number of the feeding grooves, and the other end of the suction channel is correspondingly communicated to the inner side wall of each feeding groove, so that the negative pressure is generated in the feeding groove through the suction mechanism, and when the crucible enters the feeding groove, the outer side wall of the crucible is adsorbed and fixed, so that the crucible is fixed in the feeding groove and moves with the rotary feeding disc.

[0010] The crucible moves in the feeding groove with the rotary feeding disc, and the bottom is blocked by the fixing disc, and reaches the discharging position after filling is completed through the matched filling mechanism, the fixing disc is provided with a discharging groove at the discharging position, and the upper side of the rotary feeding disc is further provided with a blowing mechanism corresponding to the position of the discharging groove, and the blowing mechanism is downwardly aligned with the discharging groove.

[0011] Further, the rotary feeding disc is provided with at least four feeding grooves, and since the crucible needs to complete the filling and compaction of steel wool pieces, the number of the feeding grooves needs to be correspondingly set.

[0012] Further, the position of the feeding pipe is adjacent to the position of the discharging groove, the discharging is the last step in the device, and therefore the discharging groove is arranged at the last position and is adjacent to the feeding pipe.

[0013] Further, the fixing disc is arranged with the rotary feeding disc and has the same center, and the size of the fixing disc is greater than that of the rotary feeding disc, and the overall size of the discharging groove is greater than that of the feeding groove.

[0014] Further, the lower side of the discharging groove is further provided with a collecting frame, and the collecting frame is used for collecting the crucible which has completed filling.

[0015] Further, the driving mechanism is a rotary motor which is arranged in a step-by-step driving form, since the feeding, filling and discharging need to be completed in a certain time, the rotary motor is arranged in a step-by-step structure.

[0016] Further, the rotary feeding disc rotates counterclockwise.

[0017] Beneficial effects: the utility model has the following beneficial effects:

[0018] 1) the crucible in the device enters into the feeding groove, and is fixed in the discharging groove by suction force of the suction device, so that the feeding failure caused by centrifugal force generated by the rotating feeding disc is avoided, the structure is ingenious, and the feeding is convenient and reasonable;

[0019] 2) the device can realize smooth discharging of the crucible by the discharging groove and the blowing mechanism, so that the discharging is not smooth, and the discharging is completely realized by the gravity of the crucible itself, and the discharging is more reasonable;

[0020] 3) the fixed disc is arranged at the lower end surface of the rotating feeding disc in the device, the fixed disc does not move, and the whole process of feeding, filling and discharging is realized by cooperation of the rotating feeding disc, and the structure is reasonable. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 for the rotating feeding mechanism in the prior art;

[0022] Figure 2 for the structural diagram of the present application;

[0023] Figure 3 for the position diagram of the crucible moving to the discharging area;

[0024] Figure 4 for Figure 3 A-A view in the figure;

[0025] Figure 5 for Figure 4 B view in the figure;

[0026] Among them, the rotating feeding disc 1; the fixed disc 2; the driving mechanism 3; the feeding groove 4; the feeding pipe 5; the suction mechanism 6; the suction channel 7; the crucible 8; the discharging groove 9; the blowing mechanism 10; the collection frame 11. DETAILED DESCRIPTION

[0027] The present application will be further illustrated below in combination with the drawings and specific embodiments, and the embodiments are implemented on the premise of the technical scheme of the present application, and it should be understood that the embodiments are only used for illustrating the present application and are not used for limiting the scope of the present application.

[0028] As shown in Figure 2 and Figure 3 , a feeding rotating mechanism for a coating crucible filling machine, comprising a rotating feeding disc 1, a fixed disc 2 arranged at the lower end surface of the rotating feeding disc 1, and a driving mechanism 3 for driving the rotating feeding disc 1 to rotate through the fixed disc 2; a plurality of uniformly spaced feeding grooves 4 are arranged at the edge position of the rotating feeding disc 1, the outer end of the feeding groove 4 is arranged in the form of a square notch, the inner side is arranged in the form of a semicircular structure matched with the size of the crucible 8, the upper end and the lower end of the feeding groove 4 are both in the form of opening, and the lower end is blocked by the fixed disc 2;

[0029] One side of the rotating feeding disc 1 is also provided with a feeding pipe 5 which is close to the edge position of the rotating feeding disc 1 and corresponds to the feeding groove 4, when the feeding pipe 5 corresponds to the feeding groove 4, the crucible 8 in the feeding pipe 5 enters the feeding groove 4;

[0030] The middle position of the rotating feeding disc 1 is also provided with an air suction mechanism 6, and the inside of the rotating feeding disc 1 is correspondingly embedded with an air suction channel 7 connected with the air suction mechanism 6, the number of the air suction channel 7 is consistent with the number of the feeding groove 4, the other end of the air suction channel 7 correspondingly communicates to the inner side groove wall of each feeding groove 4, the air suction mechanism 6 generates negative pressure in the feeding groove 4, when the crucible 8 enters the feeding groove 4, the outer side wall of the crucible 8 is adsorbed and fixed, so that the crucible 8 is fixed in the feeding groove 4 and moves with the rotating feeding disc 1;

[0031] As shown in Figure 4 and Figure 5 , the crucible 8 moves in the feeding groove 4 with the rotating feeding disc 1, the bottom is blocked by the fixed disc 2, reaches the discharging position after filling is completed by the matched filling mechanism, the fixed disc 2 is provided with a discharging groove 9 at the discharging position, and the upper side of the rotating feeding disc 1 is also provided with a blowing mechanism 10 corresponding to the position of the discharging groove 9, the blowing mechanism 10 downwardly aims at the discharging groove 9.

[0032] The rotating feeding disc 1 is provided with at least four feeding grooves 4; the position of the feeding pipe 5 is close to the position of the discharging groove 9.

[0033] The fixed disc 2 is provided with the same center as the rotating feeding disc 1, and the size of the fixed disc 2 is greater than the size of the rotating feeding disc 1, and the overall size of the discharging groove 9 is greater than the overall size of the feeding groove 4.

[0034] The lower side of the discharging groove 9 is also provided with a collecting frame 11; the driving mechanism 3 is a rotary motor which is provided in a step driving form; the rotating feeding disc 1 rotates counterclockwise.

[0035] The specific working principle and working process of the device are as follows: the feeding pipe is connected with the feeding vibrating barrel, the crucible is sent into the feeding groove, the feeding groove is provided with a square notch, the crucible can directly enter the feeding groove, the inside of the feeding groove is a semicircular structure with a size suitable for the crucible, the crucible directly enters the inside, and the air suction mechanism generates suction after being turned on, each feeding groove generates suction, and the air suction pipe is mainly connected and installed at the side wall of the feeding groove, so that the side wall position of the crucible can be directly sucked and fixed, so that the crucible is fixed in the feeding groove.

[0036] After the crucible rotates in the loading slot along with the rotating loading disc, the crucible will not be thrown out due to the centrifugal force generated by rotation, and then the rotating loading disc can complete the transfer and compaction of the steel wool piece, and the rotating loading disc needs to be rotated to the unloading area to achieve the unloading of the crucible.

[0037] The lower end surface of the rotating loading disc in the device is provided with a fixed position fixing disc. When the rotating loading disc rotates, the lower fixing disc is not moved, and the work of loading and compacting the steel wool piece of the crucible is completed. The fixing disc is provided with a loading slot at the unloading area position. When the crucible is transferred to the position of the loading slot along with the rotating unloading disc, the crucible is suspended below, but the crucible is fixed due to the suction effect of the suction mechanism. At this time, the air blowing mechanism vertically downwardly aims at the crucible to blow air. Since the crucible is suspended below and has no support, the air blowing mechanism is easily blown down to the collection frame below, and the smooth loading and unloading of the crucible are completed.

[0038] The above specific embodiment is only a preferred embodiment of the present application, and is not used to limit the implementation and the scope of claims of the present application. Any equivalent changes and modifications made according to the patent protection scope of the present application should be included in the patent application scope of the present application.

Claims

1. A feeding rotary mechanism for a coating crucible filling machine, characterized by: The utility model relates to a rotary feeding disc (1), a fixed disc (2) arranged at the lower end surface of the rotary feeding disc (1) and a driving mechanism (3) passing through the fixed disc (2) to drive the rotary feeding disc (1) to rotate. The rotary feeding disc (1) is provided with a feeding pipe (5) at one side, which is closely arranged at the edge position of the rotary feeding disc (1) and corresponds to the position of the feeding groove (4). When the feeding pipe (5) corresponds to the feeding groove (4), the crucible (8) in the feeding pipe (5) enters the feeding groove (4). The rotary feeding disc (1) is provided with an air suction mechanism (6) at the middle position, and the inside of the rotary feeding disc (1) is correspondingly provided with an air suction channel (7) connected with the air suction mechanism (6). The number of the air suction channel (7) is consistent with the number of the feeding groove (4). The other end of the air suction channel (7) is correspondingly communicated to the inner wall of each feeding groove (4). The air suction mechanism (6) generates negative pressure in the feeding groove (4). When the crucible (8) enters the feeding groove (4), the outer wall of the crucible (8) is adsorbed and fixed, so that the crucible (8) is fixed in the feeding groove (4) and moves with the rotary feeding disc (1). The crucible (8) moves in the feeding groove (4) with the rotary feeding disc (1), and the bottom is blocked by the fixed disc (2). After filling by the matched filling mechanism, it reaches the discharging position. The fixed disc (2) is provided with a discharging groove (9) at the discharging position, and the rotary feeding disc (1) is further provided with a blowing mechanism (10) corresponding to the position of the discharging groove (9). The blowing mechanism (10) is downwardly aligned with the discharging groove (9).

2. The feeding and rotating mechanism for coating crucible filling machine according to claim 1, characterized in that: The rotary feeding disc (1) is provided with at least four feeding grooves (4).

3. The feeding and rotating mechanism for coating crucible filling machine according to claim 2, characterized in that: The position of the feeding pipe (5) is close to the position of the discharging groove (9).

4. The feeding and rotating mechanism for coating crucible filling machine according to claim 3, characterized in that: The fixed disc (2) and the rotary feeding disc (1) are arranged at the same center, and the size of the fixed disc (2) is larger than that of the rotary feeding disc (1). The size of the discharging groove (9) is larger than that of the feeding groove (4).

5. The feeding and rotating mechanism for coating crucible filling machine according to claim 4, characterized in that: The discharging groove (9) is further provided with a collecting frame (11) below.

6. The feeding and rotating mechanism for coating crucible filling machine according to claim 1, characterized in that: The driving mechanism (3) is a rotary motor arranged in a step-by-step driving mode.

7. The feeding and rotating mechanism for coating crucible filling machine according to claim 6, characterized in that: The rotary feeding disc (1) rotates counterclockwise.

Citation Information

Patent Citations

  • Filling machine for coated crucible

    CN222434604U