Manufacturing table for stone carving handicrafts

Through the servo turntable and plywood mechanism, the dust cleaner and water pump system clean the debris, and the carving knife placement groove is conveniently stored, solving the problems of automatic flip, cleaning and carving knife storage in the stone carving device, and improving the efficiency and cleanliness of stone carving.

CN223058659UActive Publication Date: 2025-07-04JINPENG STONE (SHANDONG) CO LTD
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Patent Information

Application Number
CN202421707592.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-07-04
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The existing stone carving devices cannot automatically turn over stones, which increases the labor intensity of staff. During the carving process, debris pollutes the environment and lacks convenient cleaning and carving knife storage structure.

Method used

The servo turntable and plywood mechanism are used to realize the automatic flip of the stone, and the debris is cleaned in combination with the vacuum cleaner and the water pump system, and a carving knife is designed to place the groove to facilitate storage of the carving knife.

Benefits of technology

Automatic flip reduces the labor intensity of staff, the cleaning mechanism keeps the working environment clean, and the carving knife storage structure improves the convenience of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a manufacturing table for stone carving handicrafts, which belongs to the technical field of stone carving and comprises a manufacturing table, a transverse frame is fixedly mounted on one side of the upper portion of the manufacturing table, and a U-shaped groove is embedded in one side of the manufacturing table. By means of the cleaning mechanism, the dust collection head is arranged on the wrist, where a worker fixes a stone, of the worker in a sleeving mode through an elastic bracelet, the angle of the dust collection head can be conveniently adjusted, in the carving process, generated chippings are sucked into the dust collection pipe from the dust collection head and then enter the dust collector, the purpose of cleaning the carving chippings is achieved, and after carving is completed, the chippings can be cleaned conveniently. A worker picks off the elastic bracelet from the wrist, loosens the dust collection head, pulls the dust collection pipe to reset under the action of the gravity of the balancing weight, then pulls the dust collection head to reset, and holds the spray head to wash away residual chippings attached to the surface of stone after engraving is completed, so that the cleaning effect is better, and the cleanliness of the working environment is guaranteed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of stone carving, and particularly relates to a production table for stone carving handicrafts. Background Art

[0002] Stone carving refers to the art of creating visible and tangible artistic images with a certain space by using various carvable and engraveable stones, so as to reflect social life, express the artist's aesthetic feelings, aesthetic emotions and aesthetic ideals. When making stone carvings, it is necessary to use a carving tool to complete the work on a production table.

[0003] Among them, through retrieval, it is found that there is an application with the application number CN202021261663.6, which discloses a rotatable stone carving, including a support table and a base cover. A connecting column is movably installed in the middle of the support table. During use, by starting the motor, the error tolerance rate can be improved. When the motor works, it drives the active rotating shaft, and thus the active turntable will also rotate. When the active turntable rotates, because the active turntable is movably connected to the passive turntable through a belt, and the width of the belt matches the widths of the active turntable and the passive turntable, the passive turntable will also be driven to rotate. By connecting with a belt, the stability can be improved. The passive turntable drives the passive rotating shaft to rotate, and the passive rotating shaft drives the base table to rotate through the internal structure. Because the base table is connected to the base cover, and the stone carving is placed on the surface of the base cover, the base cover and the stone carving on its surface will be driven to rotate, thus solving the problems of general stone carving processes. Most of them install a water pump at the bottom of the stone carving, and the circular stone carving is rotated by hydraulic force. This method requires good protection of the bottom of the stone carving, needs to improve the sealing performance, has a low error tolerance rate, is prone to failures, and the form of the statue used is single.

[0004] However, through research, it is found that: this device can only rotate the stone horizontally, and cannot automatically turn over the stone. When turning over for carving is required, manual turning is needed. Since the stone material is heavy, the labor intensity of the staff is increased. Moreover, during the carving process of this device, it is not convenient to clean the generated debris. The debris will pollute the working environment and cause discomfort to the staff. In addition, there is no structure for storing the carving knives, which is easy to cause the loss of the knives, and it is not easy to take and place the knives, so the use is not convenient enough. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a production table for stone carving handicrafts in order to solve the problems of no structure for turning over the stone material, no cleaning structure, and inconvenient use.

[0006] The technical solution adopted by the utility model is as follows: a production table for stone carving handicrafts, comprising a production table, a horizontal frame is fixedly installed on one side of the production table, a U-shaped groove is embedded in one side of the production table, and a production groove is embedded in the upper part of the production table corresponding to the U-shaped groove;

[0007] A carving mechanism which can automatically turn over the stone and a cleaning mechanism which is convenient for cleaning the debris generated during the carving process are arranged above the production table.

[0008] Wherein, the engraving mechanism includes a servo turntable, a support plate, a servo electric cylinder A, a connecting plate, a connecting tube, a servo electric cylinder B, a servo motor, a clamp and a connecting piece. A servo turntable is embedded and installed at the center of the inner part of the production groove, a support plate is installed above the servo turntable, a servo electric cylinder A is symmetrically embedded and installed above the production table and corresponding to the production groove, a connecting plate is fixedly installed above the servo electric cylinder A, the middle part of the connecting plate is embedded and rotatably connected with a connecting tube through a hollow turntable, a servo electric cylinder B is embedded and installed inside the connecting tube, a clamp is fixedly installed at the end of the servo electric cylinder B, and the clamp is arranged in an arc shape, the inner wall of the clamp is elastically connected with a connecting piece by a spring equidistantly surrounding it, a servo motor is embedded and installed on one side of the connecting plate, and the output shaft of the servo motor is transmission-connected to the corresponding connecting tube through a chain, and sprockets meshing with the chain are nested on the outside of the connecting tube and the outside of the servo motor output shaft.

[0009] Among them, the cleaning mechanism includes a vacuum cleaner, a vacuum tube, a counterweight, a vacuum head and an elastic bracelet. A vacuum cleaner is installed on one side above the production table, the vacuum cleaner inlet is connected to the vacuum tube, and the vacuum tube passes through the surface of the cross frame through a through hole, the end of the vacuum tube is connected to the vacuum head through a metal molding tube, the outside of the vacuum tube is nested and slidably connected with a counterweight, one side of the end of the vacuum tube is connected to an elastic bracelet, a water sink is embedded in the production table, and through grooves communicating with the water sink are equidistantly arranged inside the production sink, a filter plate is slidably embedded in the water sink near the production sink through a slide rail, a water pump is installed on one side of the production table, and the water pump inlet is connected to the water sink pipeline, the water pump outlet is connected to a water pipe, and a placement cavity is provided inside the production table, and some water pipes are arranged in a serpentine shape inside the placement cavity, the end of the water pipe extends to the top of the production table through the through hole and is connected to a nozzle, and the outside of the water pipe is nested and slidably connected with a counterweight ball.

[0010] Wherein, on the other side above the production table, a connecting disk is rotatably connected through a hollow turntable. A cutter placing groove is embedded in the connecting disk. A cover plate is rotatably connected at the entrance of the cutter placing groove, and the cover plate is elastically connected to the connecting disk through a spring. A support table is slidably connected in an embedded manner at the bottom edge of the cutter placing groove. The support table is arranged in a T shape, and a through hole is embedded at the corresponding position of the bottom of the connecting disk and the support table. A cavity is embedded in the production table. A limiting ball is movably connected in the cavity. One side of the limiting ball is fixedly installed with a push rod, and the other end of the push rod extends to the outside of one side of the production table. A spring coil is nested outside the push rod. A limiting rod is elastically connected in the cavity. The number of cutter placing grooves is eight, and the cutter placing grooves are arranged equidistantly and circumferentially in the connecting disk. The materials of the surface of the connecting disk near the support table and one side of the production table near the push rod are both transparent glass.

[0011] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present utility model are as follows:

[0012] 1. In the present utility model, through the engraving mechanism, during the engraving process, by operating the servo turntable, the stone rotates, which is convenient for engraving the stone in different directions. When it is necessary to engrave the bottom of the stone, the servo cylinder B extends to push two clamping plates to clamp on both sides of the stone. The connecting piece can be deformed under the action of the spring so as to adhere to different planes of the stone, which is convenient for clamping the stone with an uneven surface. After the two clamping plates clamp and fix the stone, the servo cylinder A extends to push the connecting plate and the stone to move up synchronously. Then the servo motor drives the connecting cylinder to rotate 180°, achieving the purpose of turning the stone over, which is convenient for engraving the outer wall of the whole stone, and there is no need for manual turning by the staff, reducing the labor intensity of the staff.

[0013] 2. In the present utility model, through the cleaning mechanism, the dust suction head is sleeved on the wrist of the staff who fixes the stone through an elastic bracelet, which is convenient for adjusting the angle of the dust suction head. During the engraving process, the generated debris is sucked into the dust suction pipe from the dust suction head and then enters the vacuum cleaner, achieving the purpose of cleaning the engraving debris. After the engraving is completed, the staff removes the elastic bracelet from the wrist and loosens the dust suction head. Under the action of the gravity of the counterweight, the dust suction pipe is pulled back to its original position, and then the dust suction head is pulled back to its original position. After the engraving is completed, the staff holds the spray head to rinse the remaining debris adhering to the surface of the stone, and the cleaning effect is better, ensuring the cleanliness of the working environment.

[0014] 3. In the present utility model, for the rotary connection disk, observe the shape of the cutter head from the transparent glass on one side of the production table. When the cutter corresponding to the shape is seen from the transparent glass, the staff presses the push rod. The push rod drives the limit ball to move upward inside the cavity, pushing the limit rod to move upward. The upper end of the limit rod pushes the support platform to move upward, pushing the corresponding cutter to move upward. The cutter handle squeezes the cover plate to flip. The staff takes out the cutter from the entrance of the corresponding cutter placement groove and uses the cutter for engraving work. After use, the cutter is reset inside the cutter placement groove for storage, which is convenient for storing and taking the cutter, and makes the use more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a partial three-dimensional structural schematic diagram of the present utility model;

[0016] Figure 2 In the present utility model Figure 1 is an enlarged structural schematic diagram of part A;

[0017] Figure 3 is an overall side sectional structural schematic diagram of the present utility model;

[0018] Figure 4 In the present utility model Figure 3 is an enlarged structural schematic diagram of part B.

[0019] Reference numerals in the figures: 1, production table; 101, cross frame; 1011, vacuum cleaner; 1012, suction pipe; 1013, counterweight; 1014, suction head; 1015, elastic bracelet; 102, production groove; 103, water tank; 1031, filter plate; 1032, water pump; 1033, water pipe; 1034, counterweight ball; 1035, spray head; 104, connection disk; 1041, cutter placement groove; 1042, cover plate; 1043, support platform; 105, limit ball; 1051, push rod; 1052, cavity; 1053, limit rod; 2, servo turntable; 201, support plate; 202, servo cylinder A; 2021, connecting plate; 203, connecting cylinder; 2031, servo cylinder B; 2032, servo motor; 204, clamping plate; 2041, connecting piece. DETAILED DESCRIPTION OF THE EMBODIMENTS

[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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0021] In the present utility model:

[0022] Reference Figures 1 - 4 A production table for stone carving crafts, comprising a production table 1, a horizontal frame 101 is fixedly installed on one side of the production table 1, a U-shaped groove is embedded in one side of the production table 1, and a production groove 102 is embedded in the upper part of the production table 1 corresponding to the U-shaped groove;

[0023] A carving mechanism that can automatically turn over the stone and a cleaning mechanism that can clean up the debris generated during the carving process are arranged above the production table 1.

[0024] Reference Figure 1 , 3 In this embodiment, the engraving mechanism includes a servo turntable 2, a support plate 201, a servo electric cylinder A202, a connecting plate 2021, a connecting tube 203, a servo electric cylinder B2031, a servo motor 2032, a clamping plate 204 and a connecting piece 2041. The servo turntable 2 is embedded and installed at the center of the production groove 102, and the support plate 201 is installed above the servo turntable 2. The servo electric cylinder A202 is symmetrically embedded and installed above the production table 1 corresponding to the production groove 102. The connecting plate 2021 is fixedly installed above the servo electric cylinder A202, and the middle of the connecting plate 2021 is connected by a hollow turntable. A connecting cylinder 203 is embedded and rotatably connected, a servo electric cylinder B2031 is embedded and installed inside the connecting cylinder 203, a clamping plate 204 is fixedly installed at the end of the servo electric cylinder B2031, and the clamping plate 204 is arranged in an arc shape, and the inner wall of the clamping plate 204 is elastically connected with a connecting piece 2041 by a spring equidistantly surrounding, a servo motor 2032 is embedded and installed on one side of a connecting plate 2021, and the output shaft of the servo motor 2032 is transmission-connected to the corresponding connecting cylinder 203 through a chain, and a sprocket meshing with the chain is nested on the outside of the connecting cylinder 203 and the outside of the output shaft of the servo motor 2032;

[0025] The staff places the stone to be carved on the servo turntable 2. During the carving process, the servo turntable 2 is operated to rotate the stone, which is convenient for carving in different directions of the stone. When the bottom of the stone needs to be carved, the servo electric cylinder B2031 extends and pushes the two clamps 204 to clamp the two sides of the stone. The connecting piece 2041 can be deformed under the action of the spring so that it can be attached to different planes of the stone, which is convenient for clamping stones with uneven surfaces. The two clamps 204 clamp the stone After fixation, the servo cylinder A202 extends, pushing the connecting plate 2021 and the stone to move upward synchronously, and then the servo motor 2032 drives the connecting tube 203 to rotate 180°, and the servo cylinder B2031, the clamping plate 204 and the stone rotate 180° synchronously to achieve the purpose of turning over the stone, and then the servo cylinder A202 contracts, causing the stone to move down and fall on the supporting plate 201, which is convenient for carving the entire outer wall of the stone, and does not require the staff to manually turn it over, reducing the labor intensity of the staff.

[0026] ReferenceFigures 1 - 3 , in this embodiment, the cleaning mechanism includes a vacuum cleaner 1011, a suction pipe 1012, a counterweight 1013, a suction head 1014 and an elastic bracelet 1015. A vacuum cleaner 1011 is installed on one side above the production table 1. A suction pipe 1012 is connected to the inlet of the vacuum cleaner 1011, and the suction pipe 1012 passes through the surface of the cross frame 101 through a through hole. The end of the suction pipe 1012 is connected to a suction head 1014 through a metal shaping pipe. A counterweight 1013 is nested and slidably connected to the outside of the suction pipe 1012. One side of the end of the suction pipe 1012 is connected to an elastic bracelet 1015;

[0027] During the process of carving the stone, the worker pulls the suction head 1014, puts the elastic bracelet 1015 on the wrist of the other hand, and adjusts the direction of the suction head 1014 by rotating the shaping metal pipe so that the direction of the suction head 1014 points to the cutter head of the carving knife. The worker holds the carving knife in one hand to carve the stone, and the other hand with the suction head 1014 assists in holding the stone to fix the stone. During the carving process, the generated debris is sucked into the suction pipe 1012 from the suction head 1014 and then enters the vacuum cleaner 1011 to achieve the purpose of cleaning the carving debris. After the carving is completed, the worker removes the elastic bracelet 1015 from the wrist and releases the suction head 1014. Under the action of the gravity of the counterweight 1013, the suction pipe 1012 is pulled back to its original position, and then the suction head 1014 is pulled back to its original position.

[0028] Refer to Figure 1 , 3 , in this embodiment, a water tank 103 is embedded in the production table 1, and through grooves communicating with the water tank 103 are equidistantly arranged around the inside of the production groove 102. A filter plate 1031 is slidably embedded and connected to the inside of the water tank 103 near the production groove 102 through a slide rail. A water pump 1032 is installed on one side of the production table 1, and the inlet of the water pump 1032 is connected to the water tank 103 through a pipeline. The outlet of the water pump 1032 is connected to a water pipe 1033. A placement cavity is arranged inside the production table 1, and part of the water pipe 1033 is arranged in a snake shape inside the placement cavity. The end of the water pipe 1033 extends above the production table 1 through a through hole and is connected to a spray head 1035. A counterweight ball 1034 is nested and slidably connected to the outside of the water pipe 1033;

[0029] After the carving is completed, the worker pulls the spray head 1035, the water pump 1032 works, and sprays the water inside the water tank 103 onto the surface of the stone through the spray head 1035 to wash the stone and wash away the remaining debris. The excess water and debris flow downward, and the filter plate 1031 filters the debris. The water flows into the water tank 103 for repeated use. After the stone is washed, the worker releases the spray head 1035. Under the action of the gravity of the counterweight ball 1034, the water pipe 1033 is pulled back to its original position, and then the spray head 1035 is pulled back to its original position.

[0030] Refer to Figure 1 、 3 、4, in this embodiment, on the other side above the production table 1, a connecting plate 104 is rotatably connected through a hollow turntable. Inside the connecting plate 104, a cutter placement groove 1041 is embedded. At the entrance of the cutter placement groove 1041, a cover plate 1042 is rotatably connected, and the cover plate 1042 and the connecting plate 104 are elastically connected by a spring. At the bottom edge of the cutter placement groove 1041, a support table 1043 is slidably embedded, and the support table 1043 is arranged in a T shape. At the corresponding position of the bottom of the connecting plate 104 and the support table 1043, a through hole is embedded. Inside the production table 1, a cavity 1052 is embedded. Inside the cavity 1052, a limiting ball 105 is movably connected. On one side of the limiting ball 105, a push rod 1051 is fixedly installed, and the other end of the push rod 1051 extends to the outside of one side of the production table 1. A spring coil is nested outside the push rod 1051. Inside the cavity 1052, a limiting rod 1053 is elastically embedded. The number of cutter placement grooves 1041 is eight, and the cutter placement grooves 1041 are equidistantly arranged around the inside of the connecting plate 104. The materials of the surface of the connecting plate 104 near the support table 1043 and one side of the production table 1 near the push rod 1051 are both transparent glass;

[0031] Eight different-shaped cutters are stored in the eight cutter placement grooves 1041. When the staff needs to use a certain cutter, rotate the connecting plate 104, and observe the shape of the cutter head from the transparent glass on one side of the production table 1. When seeing the cutter with the corresponding shape from the transparent glass, the staff presses the push rod 1051. The push rod 1051 drives the limiting ball 105 to move upward inside the cavity 1052, pushing the limiting rod 1053 upward. The upper end of the limiting rod 1053 pushes the support table 1043 upward, pushing the corresponding cutter upward. The handle of the cutter squeezes the cover plate 1042 to flip. The staff takes out the cutter from the entrance of the corresponding cutter placement groove 1041 and uses the cutter for engraving work. After use, the cutter is reset inside the cutter placement groove 1041 for storage, which is convenient for storing and taking the cutter.

[0032] Refer to Figure 3 , in this embodiment, the vacuum cleaner 1011, the water pump 1032, the servo turntable 2, the servo cylinder A 202, the servo cylinder B 2031, and the servo motor 2032 are all electrically connected to an external power supply through a switch panel.

[0033] Working principle: First, the staff places the stone to be carved above the servo turntable 2. When the staff needs to use a certain carving tool, rotate the connecting disk 104, and observe the shape of the carving tool head through the transparent glass on one side of the production table 1. When seeing the carving tool with the corresponding shape through the transparent glass, the staff presses the push rod 1051. The push rod 1051 drives the limit ball 105 to move upward inside the cavity 1052, pushing the limit rod 1053 upward. The upper end of the limit rod 1053 pushes the support table 1043 upward, pushing the corresponding carving tool upward. The handle of the carving tool squeezes the cover plate 1042 to flip, and the staff takes out the carving tool from the entrance of the corresponding carving tool placement groove 1041. Then, the staff pulls the dust suction head 1014, puts the elastic bracelet 1015 on the wrist of the other hand, and adjusts the direction of the dust suction head 1014 by rotating the shaping metal tube so that the direction of the dust suction head 1014 points to the carving tool head. One hand of the staff holds the carving tool to carve the stone, and the other hand with the dust suction head 1014 helps to hold the stone to fix it. During the carving process, the generated debris is sucked into the dust suction pipe 1012 from the dust suction head 1014 and then enters the vacuum cleaner 1011 to achieve the purpose of cleaning the carving debris. Then, during the carving process, by operating the servo turntable 2, the stone rotates, which is convenient for carving different directions of the stone. When it is necessary to carve the bottom of the stone, the servo cylinder B 2031 extends, pushing the two clamping plates 204 to clamp on both sides of the stone. The connecting piece 2041 can deform under the action of the spring so as to adhere to different planes of the stone, which is convenient for clamping the stone with an uneven surface. After the two clamping plates 204 clamp and fix the stone, the servo cylinder A 202 extends, pushing the connecting plate 2021 and the stone to move upward synchronously. Then, the servo motor 2032 drives the connecting cylinder 203 to rotate 180°. The servo cylinder B 2031, the clamping plates 204 and the stone rotate 180° synchronously to achieve the purpose of turning the stone over. Then, the servo cylinder A 202 contracts, causing the stone to move downward and fall on the support plate 201, which is convenient for carving the outer wall of the whole stone. After the carving is completed, the carving tool is reset and stored inside the carving tool placement groove 1041. The staff removes the elastic bracelet 1015 from the wrist, releases the dust suction head 1014, and under the action of the gravity of the counterweight 1013, pulls the dust suction pipe 1012 to reset, and then pulls the dust suction head 1014 to reset. Finally, the staff pulls the nozzle 1035, and the water pump 1032 works to spray the water in the water tank 103 onto the surface of the stone through the nozzle 1035 to wash the stone and wash away the retained debris. The excess water and debris flow downward, and the filter plate 1031 filters the debris. The water flows into the water tank 103 for repeated use. After washing the stone, the staff releases the nozzle 1035, and under the action of the gravity of the counterweight ball 1034, pulls the water pipe 1033 to reset, and then pulls the nozzle 1035 to reset.

[0034] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A production table for stone carving handicrafts, comprising a production table (1), characterized in that: A horizontal frame (101) is fixedly installed on one side above the production table (1), a U-shaped groove is embedded in one side of the production table (1), and a production groove (102) is embedded in a position above the production table (1) corresponding to the U-shaped groove; The production table (1) is provided with a carving mechanism capable of automatically turning over the stone material, and a cleaning mechanism for cleaning the debris generated during the carving process; The engraving mechanism comprises a servo turntable (2), a support plate (201), a servo electric cylinder A (202), a connecting plate (2021), a connecting tube (203), a servo electric cylinder B (2031), a servo motor (2032), a clamping plate (204) and a connecting sheet (2041); A servo turntable (2) is embedded and installed at the center of the production groove (102), a support plate (201) is installed above the servo turntable (2), a servo electric cylinder A (202) is symmetrically embedded and installed above the production table (1) and corresponding to the production groove (102), a connecting plate (221) is fixedly installed above the servo electric cylinder A (202), a connecting tube (203) is embedded and rotatably connected in the middle of the connecting plate (2021) via a hollow turntable, and a servo electric cylinder B (2031) is embedded and installed inside the connecting tube (203), A clamping plate (204) is fixedly mounted on the end of the servo electric cylinder B (2031), and the clamping plate (204) is arranged in an arc shape. The inner wall of the clamping plate (204) is elastically connected with a connecting plate (2041) by means of a spring equidistantly surrounding the inner wall. A servo motor (2032) is embedded and mounted on one side of the connecting plate (221), and the output shaft of the servo motor (2032) is transmission-connected to the corresponding connecting cylinder (203) via a chain, and sprockets meshing with the chain are nested on the outside of the connecting cylinder (203) and the outside of the output shaft of the servo motor (2032).

2. The production table for a stone carving handicraft according to claim 1, characterized in that: The cleaning mechanism comprises a vacuum cleaner (1011), a vacuum tube (1012), a counterweight (1013), a vacuum head (1014) and an elastic wristband (1015); A vacuum cleaner (1011) is installed on one side above the production table (1); a vacuum tube (1012) is connected to the inlet of the vacuum cleaner (1011); the vacuum tube (1012) passes through the surface of the horizontal frame (101) through a through hole; the end of the vacuum tube (1012) is connected to a vacuum head (1014) through a metal shaping tube; a counterweight (1013) is nested and slidably connected to the outside of the vacuum tube (1012); and an elastic bracelet (1015) is connected to one side of the end of the vacuum tube (1012).

3. The fabrication table for a stone carving handicraft as described in claim 1, characterized in that: A water tank (103) is embedded in the production table (1), and through slots communicating with the water tank (103) are equidistantly arranged around the production tank (102). A filter plate (1031) is slidably embedded in the water tank (103) near the production tank (102) via a slide rail.

4. The production table for a stone carving handicraft as described in claim 1, characterized in that: One side of the production table (1) is equipped with a water pump (1032), and the inlet of the water pump (1032) is connected to the water tank (103) through a pipeline. The outlet of the water pump (1032) is connected to a water pipe (1033). A placement cavity is arranged inside the production table (1), and part of the water pipe (1033) is arranged in a snake shape inside the placement cavity. The end of the water pipe (1033) extends above the production table (1) through a through hole and is connected to a spray head (1035). A counterweight ball (1034) is nested and slidably connected to the outside of the water pipe (1033).

5. The fabrication table for a stone carving handicraft as described in claim 1, wherein: On the other side above the production table (1), a connection disk (104) is rotatably connected through a hollow turntable. A cutter placement groove (1041) is embedded inside the connection disk (104). A cover plate (1042) is rotatably connected at the entrance of the cutter placement groove (1041), and the cover plate (1042) is elastically connected to the connection disk (104) through a spring. A support platform (1043) is embedded and slidably connected to the bottom edge of the cutter placement groove (1041). The support platform (1043) is arranged in a T shape, and a through hole is embedded at the corresponding position of the bottom of the connection disk (104) and the support platform (1043). A cavity (1052) is embedded inside the production table (1). A limiting ball (105) is movably connected inside the cavity (1052). A push rod (1051) is fixedly installed on one side of the limiting ball (105), and the other end of the push rod (1051) extends to the outside of one side of the production table (1). A spring coil is nested on the outside of the push rod (1051). A limiting rod (1053) is elastically connected and embedded inside the cavity (1052).

6. The fabrication table for a stone carving handicraft as described in claim 5, characterized in that: The number of the cutter placement grooves (1041) is eight, and the cutter placement grooves (1041) are equidistantly arranged in a circular pattern inside the connection disk (104). The materials of the surface of the connection disk (104) near the support platform (1043) and one side of the production table (1) near the push rod (1051) are both transparent glass.

Citation Information

Patent Citations

  • Rotatable stone carving

    CN213007322U