Automatic blank drawing device for Longquan celadon
By designing the gears, snap teeth, rotating ring transmission system and the second electric push rod and the processing cutting head in the Longquan celadon automatic blasting device, the problem of mud residue is solved, and better automatic blasting effect and product quality are achieved.
Patent Information
- Application Number
- CN202421871389.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-05
AI Technical Summary
When used, the existing celadon automatic embryo drawing device is prone to the existence of cut mud residues remaining inside the ceramic embryo, affecting product quality.
A Longquan celadon automatic blasting device is designed, which is transmitted through gears, snap teeth, and rotating rings, so that the first motor does not have to be in the middle of the column. The second electric push rod and the processing cutting head are used to perform hole cutting from the inner lower end of the clay embryo, and the mud slag falls under the action of gravity to avoid residue.
It effectively avoids the residue of mud inside the ceramic embryo, improves the effect of automatic embryo drawing, and ensures the improvement of product quality.
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Figure CN223013456U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of embryo pulling devices, and specifically relates to an automatic embryo pulling device for Longquan celadon. Background Technique
[0002] The automatic embryo pulling technology in porcelain production is one of the important advancements in modern ceramic manufacturing. It greatly improves production efficiency, reduces labor costs, and significantly enhances the quality and consistency of ceramic products.
[0003] The automatic embryo pulling machine realizes the automatic grasping, extrusion, stretching and shaping of clay through preset programs and precise control of the robotic arm. During the embryo pulling process, the robotic arm continuously rotates, stretches and cuts the clay according to the set shape and size until the required embryo shape is formed.
[0004] For such embryo pulling devices in the prior art, such as a celadon automatic embryo pulling device with the application number 202022462497.2 of a Chinese patent, the inside of the ceramic embryo can be processed from the upper end during use, but it is easy for the mud residue cut off to remain inside the ceramic embryo during processing. Therefore, an automatic embryo pulling device for Longquan celadon is needed to improve this problem. Content of the Utility Model
[0005] The purpose of the utility model is to provide an automatic embryo pulling device for Longquan celadon to solve the problems raised in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: an automatic embryo pulling device for Longquan celadon, including a bottom plate, a column is fixedly arranged at the upper end of the bottom plate, a rotating mechanism for driving the ceramic embryo to rotate at a high speed is arranged at the upper end of the column, the rotating mechanism includes a rotating ring, a rotating disc and a toothed wheel, the upper end of the column is movably arranged with the rotating ring through a bearing, the rotating disc is fixedly arranged at the upper end of the rotating ring, a plurality of toothed wheels are evenly fixedly arranged on the outer surface of the rotating disc, a processing mechanism for processing the inside of the ceramic embryo is arranged on one side of the column on the upper end of the bottom plate, the processing mechanism includes a fixed seat, an adjusting disc, a first electric push rod, a second electric push rod and a processing cutter head, a fixed seat is fixedly arranged on one side of the upper end of the bottom plate, the adjusting disc is movably arranged at the upper end of the fixed seat through a rotating shaft, a plurality of first electric push rods are evenly fixedly arranged on the outer surface of the upper end of the adjusting disc, the movable end of the first electric push rod is fixedly arranged with the second electric push rod, and the movable end of the second electric push rod is fixedly arranged with the processing cutter head.
[0007] Preferably, the column, the rotating ring and the rotating disc are all hollow in the middle. Through the hollow column, rotating ring and rotating disc, it is convenient for the second electric push rod and the processing cutter head to pass through and then contact and process the ceramic embryo.
[0008] Preferably, a first motor is fixedly arranged on one side of the surface of the column. A speed reducer is fixedly arranged on the surface of the column above the first motor. A gear is arranged above the speed reducer. The power output shaft end of the first motor is in transmission connection with the power input shaft end of the speed reducer through a coupling. The power output terminal of the speed reducer is fixedly connected with the gear. The first motor can drive the gear to rotate through the speed reducer, so that the rotating ring and the rotating disc can be driven to rotate together through the engaging teeth.
[0009] Preferably, the gear meshes with the engaging teeth. The rotation of the gear can drive the engaging teeth to rotate together, so that the rotating ring and the rotating disc can be driven to rotate, and thus the ceramic blank on the upper end of the rotating disc can be driven to rotate.
[0010] Preferably, a second motor is fixedly arranged at the upper end inside the fixed seat. The output shaft end of the second motor is in transmission connection with the rotating shaft where the adjusting disc is located through a coupling. The second motor can drive the adjusting disc to rotate, so that different second electric push rods and processing tool heads can enter the inside of the column, and thus different internal processing requirements of the ceramic blank can be met.
[0011] Preferably, a notch is formed on the outer surface of the column. Through the notch, the second electric push rod and the processing tool head can conveniently move to the middle of the column. The middle parts of the column, the rotating ring and the rotating disc are all hollow, so that the second electric push rod can extend, and then the processing tool head can be inserted into the lower end of the ceramic blank. As the ceramic blank rotates, the inside of the ceramic blank can be processed. The mud residue generated after processing can fall on the rotating disc or the lower end inside the column under the action of gravity. When the accumulation is large after the processing is completed, the staff can clean the mud residue.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] The present utility model is driven by a gear, an engaging tooth and a rotating ring, so that the first motor does not have to be in the middle of the column, and thus the position in the column can be vacated. At this time, the first motor can extend, so that the second electric push rod and the processing tool head can move into the column. Subsequently, the second electric push rod extends, so that the processing tool head and the rotating ceramic blank can be processed. In this way, operations such as drilling and cutting can be carried out from the lower end inside the ceramic blank. The mud residue generated in this way will not remain inside the ceramic blank and can be discharged under the action of gravity. In this way, the automatic embryo pulling effect of the device is better.
[0014] 1. The present utility model can drive the adjusting disc to rotate through the second motor, so that different second electric push rods and processing tool heads can enter the inside of the column, thereby playing a role in replacing the tool head and meeting different internal processing requirements of the ceramic blank. Brief Description of the Drawings
[0015] Figure 1 This is a schematic diagram of the overall structure of an automatic embryo-pulling device for Longquan celadon of the present utility model;
[0016] Figure 2 This is a cross-sectional view of the overall structure of an automatic embryo-pulling device for Longquan celadon of the present utility model;
[0017] Figure 3 This is a bottom view of the overall structure of an automatic embryo-pulling device for Longquan celadon of the present utility model;
[0018] Figure 4 This is for an automatic embryo-pulling device for Longquan celadon of the present utility model Figure 2 front view.
[0019] In the figure: 1, bottom plate; 2, column; 3, rotating ring; 4, rotating disk; 5, engaging teeth; 6, fixed seat; 7, adjusting disk; 8, first electric push rod; 9, second electric push rod; 10, processing tool head; 11, first motor; 12, speed reducer; 13, gear; 14, second motor; 15, notch. Detailed Description of the Preferred Embodiment
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0021] Please refer to Figures 1-4 , the present utility model provides a technical solution: an automatic embryo-pulling device for Longquan celadon, including a bottom plate 1, a column 2 is fixedly arranged at the upper end of the bottom plate 1, a rotating mechanism for driving the ceramic embryo to rotate at a high speed is arranged at the upper end of the column 2, the rotating mechanism includes a rotating ring 3, a rotating disk 4, and engaging teeth 5, the upper end of the column 2 is movably arranged with a rotating ring 3 through a bearing, a rotating disk 4 is fixedly arranged at the upper end of the rotating ring 3, a plurality of engaging teeth 5 are uniformly and fixedly arranged on the outer surface of the rotating disk 4, a processing mechanism for processing the inside of the ceramic embryo is arranged on one side of the column 2 at the upper end of the bottom plate 1, the processing mechanism includes a fixed seat 6, an adjusting disk 7, a first electric push rod 8, a second electric push rod 9, and a processing tool head 10, a fixed seat 6 is fixedly arranged on one side at the upper end of the bottom plate 1, an adjusting disk 7 is movably arranged at the upper end of the fixed seat 6 through a rotating shaft, a plurality of first electric push rods 8 are uniformly and fixedly arranged on the outer surface of the upper end of the adjusting disk 7, a second electric push rod 9 is fixedly arranged at the movable end of the first electric push rod 8, and a processing tool head 10 is fixedly arranged at the movable end of the second electric push rod 9.
[0022] The middle parts of the upright column 2, the rotating ring 3, and the rotating disk 4 are all hollow. Through the hollow upright column 2, rotating ring 3, and rotating disk 4, the second electric push rod 9 and the processing tool head 10 can pass through conveniently, and then contact and process the ceramic blank;
[0023] On one side of the surface of the upright column 2, a first motor 11 is fixedly arranged. On the surface of the upright column 2 above the first motor 11, a speed reducer 12 is fixedly arranged. A gear 13 is arranged above the speed reducer 12. The power output shaft end of the first motor 11 is in transmission connection with the power input shaft end of the speed reducer 12 through a coupling. The power output terminal of the speed reducer 12 is fixedly connected with the gear 13. Through the first motor 11, the gear 13 can be driven to rotate by the speed reducer 12, so that the rotating ring 3 and the rotating disk 4 can be driven to rotate together by the engaging teeth 5;
[0024] The gear 13 and the engaging teeth 5 are meshed with each other. By rotating the gear 13, the engaging teeth 5 can be driven to rotate together; thus, the rotating ring 3 and the rotating disk 4 can be driven to rotate, and in this way, the ceramic blank on the upper end of the rotating disk 4 can be driven to rotate;
[0025] Inside the upper end of the fixed seat 6, a second motor 14 is fixedly arranged. The output shaft end of the second motor 14 is in transmission connection with the rotating shaft where the adjusting disk 7 is located through a coupling. By the second motor 14, the adjusting disk 7 can be driven to rotate, so that different second electric push rods 9 and processing tool heads 10 can enter the inside of the upright column 2, thus meeting the different internal processing requirements of the ceramic blank;
[0026] On the outer surface of the upright column 2, a notch 15 is provided. Through the notch 15, the second electric push rod 9 and the processing tool head 10 can move to the middle of the upright column 2. The middle parts of the upright column 2, the rotating ring 3, and the rotating disk 4 are all hollow, so that the second electric push rod 9 can extend, and then the processing tool head 10 can be inserted into the lower end of the ceramic blank. As the ceramic blank rotates, the inside of the ceramic blank can be processed; and the mud residue generated after processing can fall on the rotating disk 4 or the lower end inside the upright column 2 under the action of gravity. When there is a lot of accumulation after the processing is completed, the staff can clean the mud residue.
[0027] Working principle: When using this device, place the ceramic blank on the upper end of the rotating disk 4. Subsequently, the first motor 11 can drive the gear 13 to rotate through the speed reducer 12, so that the rotating ring 3 and the rotating disk 4 can be driven to rotate together by the engaging teeth 5. In this way, the ceramic blank can be driven to rotate. And this device is driven by the gear 13, the engaging teeth 5, and the rotating ring 3, so that the first motor 11 does not have to be in the middle of the upright column 2, thus making it possible to vacate the position in the upright column 2;
[0028] At this time, the first motor 11 can be extended so that the second electric push rod 9 and the processing tool head 10 can be moved into the column 2. Subsequently, the second electric push rod 9 is extended so that the processing tool head 10 and the rotating ceramic blank can be processed. In this way, operations such as opening and cutting can be performed from the lower end inside the ceramic blank. In this way, the mud residue generated will not remain inside the ceramic blank and can be discharged under the action of gravity. Thus, the automatic drawing effect of this device is better;
[0029] When this device is in use, the second motor 14 can drive the adjustment disk 7 to rotate, so that different second electric push rods 9 and processing tool heads 10 can be adjusted to enter the inside of the column 2, thus playing the role of replacing the tool head (when switching different tool heads, it should be ensured that the first electric push rod 8 is in the shortened state), so as to meet different processing requirements inside the ceramic blank.
[0030] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0031] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An automatic embryo pulling device for Longquan celadon, comprising a bottom plate (1), characterized in that: The upper end of the bottom plate (1) is fixedly provided with a column (2), and the upper end of the column (2) is provided with a rotating mechanism for driving the ceramic embryo to rotate at high speed, and the rotating mechanism comprises a rotating ring (3), a rotating disk (4), and a latching tooth (5). The upper end of the column (2) is provided with a rotating ring (3) movably through a bearing, and the upper end of the rotating ring (3) is fixedly provided with a rotating disk (4), and a plurality of latching teeth (5) are evenly fixedly provided on the outer surface of the rotating disk (4). The upper end of the bottom plate (1) is provided with a processing mechanism for processing the inside of the ceramic embryo on one side of the column (2), and the processing mechanism comprises a rotating ring (3), a rotating disk (4), and a latching tooth (5). The structure comprises a fixed seat (6), an adjustment disk (7), a first electric push rod (8), a second electric push rod (9), and a processing cutter head (10); the fixed seat (6) is fixedly arranged on one side of the upper end of the base plate (1); the adjustment disk (7) is movably arranged on the upper end of the fixed seat (6) through a rotating shaft; a plurality of first electric push rods (8) are evenly fixedly arranged on the outer surface of the upper end of the adjustment disk (7); the second electric push rod (9) is fixedly arranged on the movable end of the first electric push rod (8); and the processing cutter head (10) is fixedly arranged on the movable end of the second electric push rod (9).
2. The automatic embryo pulling device for Longquan celadon according to claim 1, characterized in that: The middle parts of the upright column (2), the rotating ring (3) and the rotating disk (4) are all hollow.
3. The automatic embryo pulling device for Longquan celadon according to claim 1, characterized in that: A first motor (11) is fixedly arranged on one side of the surface of the column (2); a reducer (12) is fixedly arranged on the surface of the column (2) at the upper end of the first motor (11); a gear (13) is arranged at the upper end of the reducer (12); a power output shaft end of the first motor (11) is transmission-connected to a power input shaft end of the reducer (12) via a coupling; and a power output terminal of the reducer (12) is fixedly connected to the gear (13).
4. The automatic embryo pulling device for Longquan celadon according to claim 3, characterized in that: The gear (13) and the latching teeth (5) are meshed with each other.
5. The automatic embryo pulling device for Longquan celadon according to claim 1, characterized in that: A second motor (14) is fixedly arranged at the upper end of the fixed seat (6), and an output shaft end of the second motor (14) is transmission-connected to a rotating shaft where the adjusting disk (7) is located via a coupling.
6. The automatic embryo pulling device for Longquan celadon according to claim 1, characterized in that: A notch (15) is provided on the outer surface of the column (2).
Citation Information
Patent Citations
Automatic blank pulling device for celadon
CN214187643U