Preparation equipment of sculpture cement for industrial art

By improving the installation of sealing blocks and positioning sleeves in the sludge preparation equipment, the function of adding pigments without shutting down is achieved. Combined with real-time monitoring of the monitor and camera, the problem of inconvenience in adding pigments in existing equipment is solved, and the preparation efficiency and color accuracy are improved.

CN120502280AInactive Publication Date: 2025-08-19湖南工商大学
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Patent Information

Application Number
CN202510574080.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-06
Publication Date
2025-08-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing sludge preparation equipment needs to suspend the device when adding pigments to manually open the cover, which leads to inconvenience and reduced preparation efficiency, affecting the convenience of use.

Method used

By providing a closure block and positioning sleeve on the stirred top cover, the pigment is allowed to enter the inner shaft through the vertical cavity and add pigment through the output and guide slot without shutting down. At the same time, the monitor and camera monitor the preparation process in real time to ensure color accuracy.

Benefits of technology

It realizes that there is no need to shut down during the stirring process to add pigments, improves the efficiency and convenience of slurry preparation, and ensures color accuracy through real-time monitoring, improving the stability and convenience of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides sculpture cement preparation equipment for industrial art. The sculpture cement preparation equipment structurally comprises supporting blocks, a base, a preparation main body, a monitor and a stirring top cover, the supporting blocks are welded to corner areas of the lower end of the base, and the upper end of the base is connected with the lower end of the preparation main body; after the stirring top cover is further improved, the top of the rotating shaft is restrained through the positioning sleeve of the cover body, so that the vertical cavity formed in the center of the rotating shaft can be communicated with the sealing block, and pigment can flow into a guide groove of a receiving block of the output device in the vertical direction after being fed into the rotating shaft through the vertical cavity; then, the guide groove utilizes an inclined sliding block to enable the pigment to continuously flow, flow out of a through groove of a parallel block and enter the preparation main body to be in contact with the plaster, so that the pigment with related colors can be added into the plaster area without shutdown in the stirring preparation process, and the effect of facilitating color mixing is achieved; meanwhile, the manufacturing efficiency and the use convenience of the daub preparation equipment are improved.
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Description

Technical Field

[0001] The invention relates to the technical field of sculpture clay preparation, and more particularly to a device for preparing sculpture clay for arts and crafts. Background Art

[0002] Arts and crafts is an art form that combines practicality and aesthetics. The sculptures it includes can be formed by special clay. Therefore, the clay used for sculptures needs to be manufactured through corresponding preparation equipment. To this end, the main material of the clay (mesh clay) can be removed of impurities through special preparation equipment, and then the overall hardness can be adjusted by tamping to produce clay with appropriate hardness. In summary, the inventors have found that the existing clay preparation equipment mainly has the following defects: when the current clay preparation equipment prepares the clay material, the clay needs to be colored according to the relevant process and the required color, so that the corresponding pigments need to be added during the preparation process. However, due to the overall closed form of the device, pigments cannot be added during the stirring and mixing process of the raw materials. Each time pigment is added, the device needs to be paused and the cover opened for manual addition. Therefore, it will reflect the inconvenience of adding pigments and affect the overall clay preparation efficiency, which in turn reduces the convenience of use of the preparation equipment. Summary of the Invention

[0003] The technical solution adopted by the present invention to achieve the technical purpose is: a sculpture clay preparation device for arts and crafts, whose structure includes: a support block, a base, a preparation body, a monitor, and a stirring top cover. The support block is welded to the lower end corner area of the base and the upper end of the base is connected to the lower end of the preparation body. The edge of the preparation body is connected to the monitor and the top is covered by the stirring top cover.

[0004] As a further improvement of the present invention, the stirring top cover is provided with a closing block, which is embedded in the top center of the positioning sleeve and the positioning sleeve is connected to the center part of the cover body. The cover body is combined with the positioning sleeve to restrain the rotating shaft. The left and right sides of the rotating shaft are connected to the stirring body and a center block is also provided at the bottom. The surface of the rotating shaft is also equipped with an output device that communicates with the positioning sleeve and the closing block.

[0005] As a further improvement of the present invention, the output device is also provided with a positioning block, one end of which is welded to the left and right sides of the parallel block and a through groove is opened in the center of the parallel block to communicate with the guide groove on the back, and a slider is also provided inside the guide groove to be fixedly connected to the receiving block.

[0006] As a further improvement of the present invention, the positioning sleeve of the stirring top cover on the top of the preparation body takes out the closing block and adds pigment to the inside of the rotating shaft. The rotation of the rotating shaft on the inner wall of the positioning sleeve does not affect the manual removal and loading of the closing block. Then, when the rotating shaft drives the stirring body to rotate, the pigment can be drawn out through the output device, so that the receiving block of the output device sends the pigment to the through groove through the guide groove and the slider, and then the through groove allows the pigment to flow into the interior of the preparation body and contact with the clay and the stirring body.

[0007] As a further improvement of the present invention, there are four support blocks in the corner area of the lower end of the base and the base and the preparation body are perpendicular to each other. The monitor on the edge of the preparation body is arc-shaped, and the stirring top cover covers the top of the preparation body.

[0008] As a further improvement of the present invention, the closing block is made of rubber and matches the center shape of the positioning sleeve. The positioning sleeve and the center of the cover body are interlaced and connected with each other. The left and right sides of the rotating shaft carry "L"-shaped solid stirring bodies and a vertical cavity is opened in the center to communicate with the center of the positioning sleeve.

[0009] As a further improvement of the present invention, the positioning blocks are provided on both sides of the parallel block and are set in symmetrical positions. The through grooves of the parallel blocks are circular and communicate with the guide grooves, and the sliders in the guide grooves are set in an inclined position.

[0010] As a further improvement of the present invention, the monitor is also provided with a display screen, which is installed on the surface of the video module and the center of the other end of the video module is connected to a data receiving module and connected to one end of the separation module. A camera is installed at the other end of the separation module, and the camera is electrically connected to the data receiving module through the separation module.

[0011] As a further improvement of the present invention, the display screen completely covers the surface of the video module, the video module and the data receiving module are perpendicular to each other, and a power circuit is provided in the separation module to electrically connect the camera and the data receiving module.

[0012] As a further improvement of the present invention, a slot is further provided at the connection portion between the camera and the separation module. The slot is opened at the center of the parallel block. A power block is connected to the center of the parallel block, and the camera is embedded through the power block. Vertical grooves are opened on the left and right sides of the top of the parallel block to allow the fixed block to be embedded. One end of the fixed block is fixedly connected to the side of the lens, and the lens is covered on the surface of the camera through the fixed block.

[0013] As a further improvement of the present invention, the slot is a square concave shape and is equipped with a conductive shaft between the inside of the power block. The parallel block is in the shape of a "concave" character, allowing the power block to be vertically embedded, and the vertical grooves on the left and right sides of the upper end allow the fixing block to be vertically embedded to complete the snap connection so that the lens covers the camera surface.

[0014] As a further improvement of the present invention, the cover body is also provided with a limiting ring, the bottom layer of the limiting ring is provided with a solid disk, the center of the solid disk is opened with a restraining groove to allow the top of the rotating shaft and the bottom of the positioning sleeve to be embedded, and the lower edge of the solid disk is also provided with a rubber ring embedded in the top edge area of the preparation body.

[0015] As a further improvement of the present invention, the limiting ring covers the edge of the solid disk and the containment groove of the solid disk is circular, and the rubber ring is installed with a distance between the edge of the solid disk and the containment groove.

[0016] As a further improvement of the present invention, an assembly sleeve is further provided in the restraining groove, and a connecting layer is provided on the outer edge of the assembly sleeve to be threadedly connected to the inner wall of the restraining groove. A magnetic block is also provided on the edge of the assembly sleeve and is parallel to the bottom of the assembly sleeve. A vertical rail is opened on the top edge of the assembly sleeve to communicate with the magnetic block to allow the positioning sleeve to be vertically embedded and positioned.

[0017] As a further improvement of the present invention, the assembly sleeve is in the shape of a small cylinder and the connecting layer is in the shape of an external thread. The diameter of the magnetic block is consistent with the diameter of the assembly sleeve. Two vertical rails are set in symmetrical positions on the inner wall of the assembly sleeve and are connected to the magnetic block.

[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention is a further improvement of the stirring top cover. The top of the rotating shaft is restrained by the positioning sleeve of the cover body, so that the vertical cavity opened in the center of the rotating shaft can be connected with the closing block. Then, after the pigment is put into the interior of the rotating shaft through the vertical cavity, it can flow into the guide groove of the receiving block of the output device in a vertical direction. Then, the guide groove uses an inclined slider to allow the pigment to continue to flow out from the through groove of the parallel block into the interior of the preparation body and contact with the clay. The stirring preparation process can be achieved without stopping the machine to add pigments of relevant colors to the clay area, thereby achieving the effect of facilitating color adjustment and improving the manufacturing efficiency and ease of use of the clay preparation equipment.

[0019] 2. After the monitor of the present invention is further improved, the display screen can receive the preparation status of the clay inside the preparation body captured by the camera through the video module and the data receiving module, so that the clay color and preparation status can be judged at any time according to the picture generated during the preparation of the clay to determine whether they meet the requirements of the preparation process, thereby improving the use intensity of the preparation equipment and allowing timely adjustments if any abnormality occurs. The part where the camera is connected to the separation module can allow the fixed block to carry the lens to cover the camera surface through the vertical grooves on the left and right sides of the top of the parallel block, thereby preventing contamination caused by direct contact between the camera and the clay. At the same time, the lens can improve the convenience of later cleaning according to its own smooth state.

[0020] 3. The present invention is based on the limiting ring newly added to the cover body, and then covers the edge of the solid disk and fixes the rubber ring. At the same time, the rubber ring can be embedded in the top edge of the preparation body. The rebound effect of the rubber ring can eliminate the assembly gap, thereby improving the air tightness during the preparation of the putty. At the same time, the central restraining groove can utilize the vertical rail and magnetic block in the assembly sleeve to allow the positioning sleeve to be vertically embedded and adsorbed and connected, achieving the effect of easy disassembly and improving the vertical restraining strength of the positioning sleeve, indirectly ensuring that the rotating shaft can be installed and used in a vertical and stable position through the positioning sleeve to prevent tilting. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 The present invention is a structural diagram of a device for preparing sculpture clay for arts and crafts.

[0022] Figure 2 The present invention is a schematic diagram of the cross-section structure of an improved stirring top cover.

[0023] Figure 3 This is a schematic diagram of the improved three-dimensional structure of an output device.

[0024] Figure 4 The present invention is a schematic diagram of the structure of an improved monitor with a side view.

[0025] Figure 5 This is a schematic structural diagram of a cross-section of newly added components at the connection between a camera and a separation module.

[0026] Figure 6 The present invention is a schematic diagram of the three-dimensional structure of an improved cover.

[0027] Figure 7 This is a three-dimensional structural diagram of the newly added components inside the containment tank.

[0028] In the figure: support block-1, base-2, preparation body-3, monitor-4, stirring cover-5; Closing block 51, positioning sleeve 52, cover 53, rotating shaft 54, stirring body 55, center block 56, output device 57; Positioning block 571, parallel block 572, through slot 573, guide slot 574, slider 575, receiving block 576; Display screen 41, video module 42, data receiving module 43, separation module 44, camera 45; Slot 451, parallel block 452, power block 453, vertical slot 454, fixed block 455, lens 456; Limiting ring 531, solid disc 532, restraining groove 533, rubber ring 534; Connecting layer-5331, assembly sleeve-5332, magnetic block-5333, vertical rail-5334. DETAILED DESCRIPTION

[0029] The present invention will be further described below with reference to the accompanying drawings: Example

[0030] Figures 1 to 5 As shown: The present invention provides a device for preparing sculpture clay for arts and crafts. Its structure includes a support block 1, a base 2, a preparation body 3, a monitor 4, and a stirring top cover 5. The support block 1 is welded to the lower end corner area of the base 2 and the upper end of the base 2 is connected to the lower end of the preparation body 3. The edge of the preparation body 3 is connected to the monitor 4 and the top is covered by the stirring top cover 5.

[0031] Among them, the stirring top cover 5 is provided with a closing block 51, which is embedded in the top center of the positioning sleeve 52 and the positioning sleeve 52 is connected to the center of the cover body 53. The cover body 53 is combined with the positioning sleeve 52 to restrain the rotating shaft 54. The left and right sides of the rotating shaft 54 are connected to the stirring body 55 and a center block 56 is also provided at the bottom. The surface of the rotating shaft 54 is also equipped with an output device 57 that communicates with the positioning sleeve 52 and the closing block 51.

[0032] Among them, the output device 57 is also provided with a positioning block 571, one end of the positioning block 571 is welded to the left and right sides of the parallel block 572, and a through groove 573 is opened in the center of the parallel block 572 to communicate with the guide groove 574 on the back, and a slider 575 is also provided inside the guide groove 574 to be fixedly connected with the receiving block 576.

[0033] Among them, the closing block 51 is taken out through the positioning sleeve 52 of the stirring top cover 5 on the top of the preparation main body 3 and pigment is added to the inside of the rotating shaft 54. The rotation of the rotating shaft 54 on the inner wall of the positioning sleeve 52 does not affect the manual removal and loading of the closing block 51. Then, when the rotating shaft 54 drives the stirring body 55 to rotate, the pigment can be drawn out through the output device 57, so that the receiving block 576 of the output device 57 sends the pigment to the through groove 573 through the guide groove 574 and the slider 575, and then the through groove 573 allows the pigment to flow into the interior of the preparation main body 3 and contact with the clay and the stirring body 55.

[0034] Among them, there are four supporting blocks 1 in the lower corner area of the base 2, and the base 2 and the preparation body 3 are perpendicular to each other. The monitor 4 on the edge of the preparation body 3 is arc-shaped, and the stirring top cover 5 covers the top of the preparation body 3.

[0035] Among them, the closing block 51 is made of rubber and matches the center shape of the positioning sleeve 52. The positioning sleeve 52 and the cover body 53 are interlaced and connected with each other. The left and right sides of the rotating shaft 54 carry "L"-shaped solid stirring bodies 55 and a vertical cavity is opened in the center to communicate with the center of the positioning sleeve 52.

[0036] Among them, the positioning block 571 is provided on each side of the parallel block 572 and is set in a symmetrical orientation. The through groove 573 of the parallel block 572 is circular and communicates with the guide groove 574, and the slider 575 in the guide groove 574 is set in an inclined orientation.

[0037] Among them, the monitor 4 is also provided with a display screen 41, which is installed on the surface of the video module 42 and the center of the other end of the video module 42 is connected to a data receiving module 43 and connected to one end of the separation module 44. A camera 45 is installed at the other end of the separation module 44, and the camera 45 is electrically connected to the data receiving module 43 through the separation module 44.

[0038] The display screen 41 completely covers the surface of the video module 42 . The video module 42 and the data receiving module 43 are perpendicular to each other. A power line is provided in the separation module 44 to electrically connect the camera 45 and the data receiving module 43 .

[0039] Among them, a slot 451 is also provided at the connection part between the camera 45 and the separation module 44. The slot 451 is opened at the center of the parallel block 452. The center of the parallel block 452 is connected to a power block 453, and the camera 45 is embedded through the power block 453. Vertical grooves 454 are opened on the left and right sides of the top of the parallel block 452 to allow the fixing block 455 to be embedded. One end of the fixing block 455 is fixedly connected to the side of the lens 456, and the lens 456 is covered on the surface of the camera 45 through the fixing block 455.

[0040] Among them, the slot 451 is a square concave shape and is equipped with a conductive shaft between the inside of the power block 453. The parallel block 452 is in the shape of a "concave" character, allowing the power block 453 to be vertically embedded, and the vertical grooves 454 on the left and right sides of the upper end allow the fixing block 455 to be vertically embedded to complete the snap connection and allow the lens 456 to cover the surface of the camera 45.

[0041] Specific functions and operation procedures of this embodiment: In the present invention, the sculpture clay preparation equipment for arts and crafts can vertically install the preparation body 3 in the preparation site through the support block 1 and the base 2, and then after the preparation body 3 is connected to the external power supply, the preparation program of the preparation body 3 can be debugged through the touch mode of the monitor 4, and then the stirring top cover 5 is manually opened to add raw materials into the preparation body, and then the stirring top cover 5 is closed again to seal the clay preparation, and then the cover body 53 of the stirring top cover 5 can be used to position the top of the rotating shaft 54 through the bottom of the central positioning sleeve 52, and then the stirring bodies 55 on the left and right sides of the rotating shaft 54 can be rotated inside the preparation body 3 through the rotating shaft 54, thereby achieving the stirring effect of the raw materials, improving the stability during preparation, and the positioning sleeve 52 can be used to position the stirring bodies 55 on the left and right sides of the rotating shaft 54. The rubber sealing block 51 on the top of the sleeve 52 is taken out to add the pigment of the relevant color to the vertical cavity inside the rotating shaft 54, and then the pigment can enter the output device 57 in a vertical direction through the centrifugal force and the vertical characteristics of the rotating shaft 54, and finally flow out from the output device 57 area into the preparation body 3 to contact the clay raw materials. Therefore, it is possible to add pigment to the preparation body 3 to change the color of the clay without stopping the machine, thereby improving the preparation efficiency of the clay and the convenience of use of the preparation equipment. During the rotation of the rotating shaft 54, it can improve its own vertical rotation stability through the bottom center block 56, prevent the formation of inclination inside the preparation body 3, ensure the stability of the clay during stirring and mixing preparation, and then the receiving block 576 of the output device 57 can be in a straight direction Insert it into the rotating shaft 54, and then install the parallel block 572 connected at one end on the surface of the rotating shaft 54, so that the through groove 573 in the center of the parallel block 572 can communicate with the inside of the preparation body 3, and at the same time, the positioning blocks 571 on the left and right sides of the parallel block 572 can provide left and right support to improve the overall fixity, and then the guide groove 574 inside the receiving block 576 can form a communication state with the vertical cavity inside the rotating shaft 54, and then receive the pigment, and at the same time use the inclined position of the slider 575 to let the pigment flow to the through groove 573 position, and finally output it to the inside of the preparation body 3 to complete the pigment addition, thereby improving the color change stability during the preparation of the clay, and at the same time, the monitor 4 equipped with the preparation body 3 can not only adjust the program of the entire device by touch, The video module 42 and the data receiving module 43 of the display screen 41 can also be used to receive the preparation status of the internal clay of the preparation body 3 captured by the camera 45 of the separation module 44, so that the picture provided by the display screen 41 can be used to view in real time whether the clay color and the preparation process conform to the preparation process. Therefore, if a problem is found, the program can be adjusted immediately, which indirectly improves the accuracy of the clay preparation and prevents the occurrence of excessive color errors. Subsequently, the portion where the camera 45 is connected to the separation module 44 can be positioned by the parallel block 452, and then the slot 451 at the bottom of the parallel block 452 allows one end of the line in the separation module 44 to be inserted, so that the power block 453 can be stably electrically connected to the data receiving module 43.The camera 45 is then electrically connected to the power block 453 by insertion. The vertical slots 454 on the left and right sides of the top of the parallel block 452 allow the fixing block 455 to be inserted, allowing the lens 456 to cover the surface of the camera 45, preventing the camera 45 from being contaminated by the clay and making it difficult to clean. After the clay is prepared, the contaminated area of the lens 456 can be directly cleaned by washing with water, avoiding partial contamination that may cause image obstruction and unclearness during subsequent use. This can significantly improve the stability of the preparation equipment. Example

[0042] Figures 6 and 7 As shown: The present invention provides a device for preparing sculpture clay for arts and crafts. Its structure includes that the cover body 53 is also provided with a limiting ring 531, and the bottom of the limiting ring 531 is provided with a solid disk 532. A restraining groove 533 is opened in the center of the solid disk 532 to allow the top of the rotating shaft 54 and the bottom of the positioning sleeve 52 to be embedded. A rubber ring 534 is also provided on the lower edge of the solid disk 532 and embedded in the top edge area of the preparation body 3.

[0043] The limiting ring 531 covers the edge of the solid disk 532 , and the restraining groove 533 of the solid disk 532 is circular. The rubber ring 534 is installed with a gap between the edge of the solid disk 532 and the restraining groove 533 .

[0044] Among them, an assembly sleeve 5332 is also provided in the restraining groove 533. The outer edge of the assembly sleeve 5332 is provided with a connecting layer 5331 which is threadedly connected to the inner wall of the restraining groove 533. The edge of the assembly sleeve 5332 is also provided with a magnetic block 5333 which is parallel to the bottom of the assembly sleeve 5332. The top edge of the assembly sleeve 5332 is opened with a vertical rail 5334 which is connected to the magnetic block 5333 to allow the positioning sleeve 52 to be vertically embedded and positioned.

[0045] Among them, the assembly sleeve 5332 is in the shape of a small cylinder and the connecting layer 5331 is in the shape of an external thread. The diameter of the magnetic block 5333 is consistent with the diameter of the assembly sleeve 5332. Two vertical rails 5334 are set in symmetrical positions on the inner wall of the assembly sleeve 5332 and are connected to the magnetic block 5333.

[0046] Specific functions and operation procedures of this embodiment: In the present invention, the limiting ring 531 of the cover body 53 can cover the edge of the solid disk 532, so that the edge of the solid disk 532 can allow the rubber ring 534 to be vertically fixed, ensuring that the rubber ring 534 is restrained by the position of the limiting ring 531 to improve the connection with the edge of the solid disk 532, so that after the solid disk 532 is embedded in the top edge of the preparation body 3 through the rubber ring 534, the rebound effect of the rubber ring 534 can eliminate the assembly gap, thereby improving the airtightness of the top of the preparation body 3, and then the assembly sleeve 5332 newly added to the restraining groove 533 in the center of the solid disk 532 can be locked into the threaded connection through the connecting layer 5331 (external thread), ensuring the restraining groove The center of 533 can coincide with the center of the positioning sleeve 52 and the rotating shaft 54. At the same time, the magnetic block 5333 at the bottom of the assembly sleeve 5332 can be connected to the bottom of the vertical rail 5334, so that the positioning sleeve 52 can be vertically inserted through the vertical rail 5334 to allow the bottom of the positioning sleeve 52 to be adsorbed and spliced with the magnetic block 5333. Then the rotating shaft 54 penetrates the restraining groove 533 and embeds it into the lower interior of the positioning sleeve 52 to achieve the same vertical line, preventing the occurrence of tilting, further ensuring the vertical operation stability of the overall components and ensuring that the vertical cavity in the rotating shaft 54 can be kept at the same center point as the center of the restraining groove 533, thereby improving the accuracy of pigment addition.

[0047] Utilizing the technical solution of the present invention, or those skilled in the art designing similar technical solutions inspired by the technical solution of the present invention to achieve the above technical effects, all fall within the scope of protection of the present invention.

Claims

1. A device for preparing sculpture clay for arts and crafts, comprising: A support block (1), a base (2), a preparation body (3), a monitor (4), and a stirring cover (5), wherein the support block (1) is welded to the lower corner area of the base (2) and the upper end of the base (2) is connected to the lower end of the preparation body (3), the edge of the preparation body (3) is connected to the monitor (4) and the top is covered by the stirring cover (5), characterized in that: The stirring top cover (5) is provided with a closing block (51), the closing block (51) is embedded in the top center of the positioning sleeve (52), and the positioning sleeve (52) is connected to the center of the cover body (53), the cover body (53) is combined with the positioning sleeve (52) to restrain the rotating shaft (54), the left and right sides of the rotating shaft (54) are connected to the stirring body (55), and the bottom is also provided with a center block (56), and the surface of the rotating shaft (54) is also equipped with an output device (57) that communicates with the positioning sleeve (52) and the closing block (51); The output device (57) is further provided with a positioning block (571), one end of which is welded to the left and right sides of the parallel block (572), and a through groove (573) is opened in the center of the parallel block (572) and communicates with the guide groove (574) on the back, and a slider (575) is further provided inside the guide groove (574) to be fixedly connected with the receiving block (576); The positioning sleeve (52) of the stirring cover (5) on the top of the preparation body (3) takes out the closing block (51) and adds pigment to the inside of the rotating shaft (54) (the rotation of the rotating shaft (54) on the inner wall of the positioning sleeve (52) does not affect the manual removal and loading of the closing block (51)). Then, when the rotating shaft (54) drives the stirring body (55) to rotate, the pigment can be drawn out through the output device (57), so that the receiving block (576) of the output device (57) sends the pigment to the through groove (573) through the guide groove (574) and the slider (575), and then the through groove (573) allows the pigment to flow into the interior of the preparation body (3) and contact the clay and the stirring body (55).

2. A sculpture clay preparation device for arts and crafts according to claim 1, characterized in that: The support blocks (1) are provided with four blocks in the corner area at the lower end of the base (2), and the base (2) and the preparation body (3) are perpendicular to each other. The monitor (4) at the edge of the preparation body (3) is in an arc shape, and the stirring top cover (5) covers the top of the preparation body (3).

3. The device for preparing sculpture clay for arts and crafts according to claim 1, wherein: The closing block (51) is made of rubber and matches the center shape of the positioning sleeve (52). The positioning sleeve (52) and the cover body (53) are interlaced and connected to each other at the center. The left and right sides of the rotating shaft (54) carry "L"-shaped solid stirring bodies (55) and a vertical cavity is opened in the center to communicate with the center of the positioning sleeve (52).

4. The device for preparing sculpture clay for arts and crafts according to claim 1, wherein: The positioning blocks (571) are provided on both sides of the parallel block (572) and are set in symmetrical positions. The through groove (573) of the parallel block (572) is circular and communicates with the guide groove (574). The slider (575) in the guide groove (574) is set in an inclined position.

5. The device for preparing sculpture clay for arts and crafts according to claim 1, wherein: The monitor (4) is further provided with a display screen (41), the display screen (41) being mounted on the surface of the video module (42), and the center of the other end of the video module (42) being connected to a data receiving module (43) and one end of the separation module (44), the other end of the separation module (44) being provided with a camera (45), the camera (45) being electrically connected to the data receiving module (43) via the separation module (44); The display screen (41) completely covers the surface of the video module (42), the video module (42) and the data receiving module (43) are perpendicular to each other, and a power circuit is provided in the separation module (44) to electrically connect the camera (45) and the data receiving module (43).

6. The device for preparing sculpture clay for arts and crafts according to claim 5, wherein: The connection portion between the camera (45) and the separation module (44) is further provided with a slot (451), the slot (451) being opened at the center of the parallel block (452), the center of the parallel block (452) being connected to a power supply block (453), the camera (45) being embedded through the power supply block (453), the top left and right sides of the parallel block (452) being opened with vertical slots (454) for embedding the fixing block (455), one end of the fixing block (455) being fixedly connected to the side of the lens (456), the lens (456) being covered on the surface of the camera (45) through the fixing block (455); The slot (451) is in a square concave shape and is provided with a conductive shaft between the slot (451) and the inside of the power block (453). The parallel block (452) is in a "concave" shape to allow the power block (453) to be vertically embedded. The vertical grooves (454) on the left and right sides of the upper end allow the fixing block (455) to be vertically embedded to complete the engagement and allow the lens (456) to cover the surface of the camera (45).

7. The device for preparing sculpture clay for arts and crafts according to claim 1, wherein: The cover (53) is further provided with a limiting ring (531), the bottom layer of the limiting ring (531) is provided with a solid disk (532), the center of the solid disk (532) is provided with a restraining groove (533) for the top of the rotating shaft (54) and the bottom of the positioning sleeve (52) to be embedded, and the lower edge of the solid disk (532) is further provided with a rubber ring (534) embedded in the top edge area of the preparation body (3); The limiting ring (531) covers the edge of the solid disk (532), and the restraining groove (533) of the solid disk (532) is circular in shape. The rubber ring (534) is installed with a gap between the edge of the solid disk (532) and the restraining groove (533).

8. The device for preparing sculpture clay for arts and crafts according to claim 7, wherein: An assembly sleeve (5332) is further provided in the restraining groove (533), and a connecting layer (5331) is provided on the outer edge of the assembly sleeve (5332) for threaded connection with the inner wall of the restraining groove (533), and a magnetic block (5333) is further provided on the edge of the assembly sleeve (5332) and is parallel to the bottom of the assembly sleeve (5332), and a vertical rail (5334) is opened on the top edge of the assembly sleeve (5332) and communicates with the magnetic block (5333) to allow the positioning sleeve (52) to be vertically embedded and positioned; The assembly sleeve (5332) is in the form of a small cylinder and the connecting layer (5331) is in the form of an external thread. The diameter of the magnetic block (5333) is consistent with the diameter of the assembly sleeve (5332). Two vertical rails (5334) are set in symmetrical positions on the inner wall of the assembly sleeve (5332) and communicate with the magnetic block (5333).