Ceramic gilding processing automation device
By designing an automated ceramic gilding processing device, multi-axis transmission and rotation mechanisms are used to achieve multi-angle gilding, solving the problems of low efficiency and poor adaptability in existing technologies, and realizing an efficient and stable ceramic gilding process.
Patent Information
- Application Number
- CN202211725281.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-30
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2042-12-30
AI Technical Summary
In existing technologies, ceramic gilding is inefficient and costly, the quality of manual gilding is inconsistent, and existing machines can only perform gilding on a single type of ceramic, resulting in poor adaptability and the inability to guarantee the precision and stability of the gilding process.
An automated device for ceramic gilding processing was designed. It uses Z-axis, X-axis, and Y-axis transmission mechanisms in conjunction with a turntable and a rotation mechanism to achieve multi-angle movement of the screen pen and rotation of the ceramic. Combined with a storage tank and a peristaltic motor, the gilding rate is controlled to adapt to gilding different ceramic surfaces.
It improves the efficiency and adaptability of gold painting, reduces the defect rate, makes the gold painting process more stable, the gold solution rate is controllable, the ink output is uniform, and the device structure is clear and easy to operate.
Smart Images

Figure CN116100659B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ceramic processing equipment, in particular to a ceramic gold drawing processing automation device. BACKGROUND
[0002] China is the largest ceramic production country, and the ceramic market is expected to further expand in potential demand in the future with the development of global economy and the updating of consumption concept. Gold drawing, as an important part of porcelain production, is mainly manual gold drawing, but manual gold drawing is very low in efficiency and high in cost, and inevitable mistakes occur in manual gold drawing, which makes the specifications of finished ceramic products different, resulting in low gold drawing quality; the waste rate is high, long-time work fatigue affects the quality of gold drawing.
[0003] In the prior art, there are a small number of gold drawing machines, but the object of drawing gold ceramic is single, and only one type of ceramic can be drawn gold; different structure types of ceramic cannot be drawn gold, the device has poor adaptability, the gold drawing pen turning mechanism is complex, the gold drawing speed cannot be controlled, the quality of the finished ceramic product after gold drawing is poor, and the precision of the gold drawing process, the stability of the porcelain and the safety of the porcelain cannot be guaranteed at the same time. SUMMARY
[0004] The present application aims to solve at least one of the technical problems existing in the prior art. To this end, the present application provides a ceramic gold drawing processing automation device.
[0005] According to the ceramic gold drawing processing automation device of the first aspect of the present application, the device comprises:
[0006] a box body;
[0007] The box body is provided with a first cavity chamber and a second cavity chamber; the second cavity chamber is fixedly connected with a Z-axis transmission mechanism, the Z-axis transmission mechanism is movably connected with an X-axis transmission mechanism, the X-axis transmission mechanism is movably connected with a Y-axis transmission mechanism, the Y-axis transmission mechanism is movably connected with a transmission plate, and the transmission plate is fixedly connected with a mesh screen pen;
[0008] The second cavity chamber is provided with a liquid storage tank and a peristaltic pump, the liquid storage tank is connected with the peristaltic pump through a hose, and the peristaltic pump is connected with the mesh screen pen through a hose;
[0009] A turntable mechanism; the turntable mechanism comprises a lifting motor, a mounting disc, a rotating motor and a rotating disc; the lifting motor is fixedly installed in the first cavity chamber; the lifting screw rod of the lifting motor passes through the first cavity chamber and is fixedly connected with the mounting disc; the mounting disc is provided with a rotating motor; the rotating motor is fixedly connected with a rotating disc;
[0010] The rotating mechanism comprises a rotating table and a tray transmission member; the rotating table is fixedly installed on the surface of the first cavity; and the tray transmission member is detachably connected with the rotating table.
[0011] According to some embodiments of the present application, through the arrangement of the Z-axis transmission mechanism, the X-axis transmission mechanism and the Y-axis transmission mechanism, the Y-axis transmission mechanism is movably connected with a transmission plate, and the transmission plate is movably connected with a meshing pen; the meshing pen can be spatially positioned and moved, and can be rotated at multiple angles; different surfaces of different ceramic bowls and plates can be gilded, and the rotating disc mechanism and the rotating mechanism are arranged; the ceramic to be gilded is rotated to the top of the rotating mechanism by the rotating disc mechanism, and is placed on the rotating mechanism; after the meshing pen positions the ceramic to be gilded, the rotating mechanism drives the ceramic to rotate, and the automatic gilding process is realized; the problem of single gilded ceramic object in the prior art is solved, the gilding efficiency is higher, the adaptability is stronger, and the generation of defective products is reduced; compared with the gilding method in the prior art, the gilding speed of the gilding ink can be controlled, the ink is more uniform, the gilding process is more stable, and the problem of different shapes and sizes of traditional gilding brushes is solved; meanwhile, the structure of the device is more clear, and the operator can control the device more conveniently.
[0012] According to some embodiments of the present application, the rotating disc is provided with a ceramic placing groove along the circumference, and the ceramic placing groove is coaxial with the tray transmission member when the rotating disc rotates; the top surface of the tray transmission member is provided with an annular groove from inside to outside, and the surface of the annular groove is ground; and the bottom surface of the tray transmission member is provided with a plurality of installation limiting pins; the ceramic bowl and plate placed on the rotating disc can be fixed and limited through the ceramic placing groove, so that the ceramic bowl and plate on the rotating disc does not shake when the rotating disc rotates; the ceramic bowl and plate can be accurately placed on the middle surface of the tray transmission through the coaxial arrangement of the ceramic placing groove and the tray transmission member at a certain moment; the circular base of the ceramic bowl and plate is matched through the arrangement of the annular groove, and the surface grinding treatment of the annular groove increases the friction; so as to drive the ceramic bowl and plate to rotate and gild.
[0013] According to some embodiments of the present application, the transmission plate is provided with a limiting hole and a threaded transmission hole, and the surface of the transmission plate is movably connected with a rotating block; the rotating block is provided with a fixing hole; the limiting hole and the threaded transmission hole are arranged, so that the transmission plate is installed on the Y-axis transmission mechanism, the transmission plate moves along the Y-axis direction, the rotating block is provided with a fixing hole, and the fixing hole is used for fixedly installing the meshing pen; the surface of the transmission plate is movably connected with the rotating block; and the meshing pen is rotated at multiple angles.
[0014] According to some embodiments of the present application, the Z-axis transmission mechanism comprises a Z-axis stepper motor, a first Z-axis fixed plate, a Z-axis limiting rod, a Z-axis transmission screw rod, a Z-axis connecting transmission member and a second Z-axis fixed plate; the two ends of the Z-axis limiting rod are fixedly connected with the first Z-axis fixed plate and the second Z-axis fixed plate respectively; the middle part of the Z-axis limiting rod is movably connected with the Z-axis connecting transmission member; the Z-axis transmission screw rod is movably connected with the first Z-axis fixed plate, the Z-axis connecting transmission member and the second Z-axis fixed plate; the Z-axis stepper motor is installed on one side of the first Z-axis fixed plate, and the output shaft of the Z-axis stepper motor is fixedly connected with the Z-axis transmission screw rod; the transmission plate member fixedly installed with the screen pen is moved in the Z-axis direction through the Z-axis transmission mechanism.
[0015] According to some embodiments of the present application, the X-axis transmission mechanism comprises an X-axis stepper motor, a first X-axis fixed plate, an X-axis limiting rod, an X-axis transmission screw rod, an X-axis connecting transmission member and a second X-axis fixed plate; the two ends of the X-axis limiting rod are fixedly connected with the first X-axis fixed plate and the second X-axis fixed plate respectively; the middle part of the X-axis limiting rod is movably connected with the X-axis connecting transmission member; the X-axis transmission screw rod is movably connected with the first X-axis fixed plate, the X-axis connecting transmission member and the second X-axis fixed plate; the X-axis stepper motor is installed on one side of the first X-axis fixed plate, and the output shaft of the X-axis stepper motor is fixedly connected with the X-axis limiting rod; the transmission plate member fixedly installed with the screen pen is moved in the X-axis direction through the X-axis transmission mechanism.
[0016] According to some embodiments of the present application, the Y-axis transmission mechanism comprises a Y-axis stepper motor, a first Y-axis fixed plate, a Y-axis limiting rod, a Y-axis transmission screw rod and a second Y-axis fixed plate; the two ends of the X-axis limiting rod are fixedly connected with the first Y-axis fixed plate and the second Y-axis fixed plate respectively; the Y-axis transmission screw rod is movably connected with the first Y-axis fixed plate and the second Y-axis fixed plate; the Y-axis stepper motor is installed on one side of the first Y-axis fixed plate, and the output shaft of the Y-axis stepper motor is fixedly connected with the Y-axis limiting rod. The transmission plate member fixedly installed with the screen pen is moved in the Y-axis direction through the Y-axis transmission mechanism.
[0017] According to some embodiments of the present application, the X-axis transmission mechanism is perpendicular to the Z-axis transmission mechanism; the first X-axis fixed plate is fixedly connected with the Z-axis connecting transmission member. The Y-axis transmission mechanism is perpendicular to the X-axis transmission mechanism; the first Y-axis fixed plate is fixedly connected with the X-axis connecting transmission member. The screen pen can be positioned at each position in a certain range of space through the cooperation of the Z-axis transmission mechanism, the X-axis transmission mechanism and the Y-axis transmission mechanism.
[0018] According to some embodiments of the present application, the rotating table comprises a peripheral stator and an inner rotor; the inner rotor is installed in the peripheral stator, and the inner rotor is provided with a pin hole; the pin hole is matched with a limiting pin arranged on the surface of the tray transmission member. Through the arrangement of the rotating table, the ceramic bowl is self-rotated, and through the matching arrangement of the pin hole and the limiting pin arranged on the surface of the tray transmission member, the tray transmission member is conveniently installed on the rotating table.
[0019] Additional aspects and advantages of the application will be set forth in part in the description which follows, and in part will become apparent to those having ordinary skill in the art upon examination of the following or can be learned from practice of the application. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.
[0021] Figure 1 is a structural schematic view of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0022] Figure 2 is a front view of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0023] Figure 3 is a top view of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0024] Figure 4 is a side view of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0025] Figure 5 is a structural schematic view of a transmission mechanism of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0026] Figure 6 is a structural schematic view of a rotating disc mechanism of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0027] Figure 7 is a structural schematic view of a rotating mechanism of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0028] Figure 8 is a structural schematic view of a tray transmission member of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0029] Figure 9It is a transmission plate structure schematic view of a ceramic gold drawing processing automation device according to an embodiment of the present application;
[0030] Reference signs:
[0031] 100, box; 110, first cavity chamber; 120, second cavity chamber;
[0032] 200, Z-axis transmission mechanism; 201, Z-axis stepping motor; 202, first Z-axis fixed plate; 203, Z-axis limiting rod; 204, Z-axis transmission screw; 205, Z-axis connecting transmission part; 206, second Z-axis fixed plate;
[0033] 300, X-axis transmission mechanism; 301, X-axis stepping motor; 302, first X-axis fixed plate; 303, X-axis limiting rod; 304, X-axis transmission screw; 305, X-axis connecting transmission part; 306, second X-axis fixed plate;
[0034] 400, Y-axis transmission mechanism; 401, Y-axis stepping motor; 402, first Y-axis fixed plate; 403, Y-axis limiting rod; 404, Y-axis transmission screw; 405, second Y-axis fixed plate;
[0035] 500, rotating disc mechanism; 510, lifting motor; 511, lifting screw; 512, mounting table; 520, motor protection cover; 512, rotating motor; 530, rotating disc; 531, ceramic placing groove; 532, connecting end
[0036] 600, rotating mechanism; 610, rotating table; 611, peripheral stator; 612, inner layer rotor; 620, tray transmission part; 621, annular groove; 622, mounting limiting pin;
[0037] 700, liquid storage tank; 710, peristaltic pump; 720, hose; 730, transmission plate part; 731, limiting hole; 732, transmission screw hole; 733, rotating block; 734, fixed hole; 740, mesh pen; DETAILED DESCRIPTION
[0038] The embodiments of the present application will be described in detail below, the embodiments described with reference to the accompanying drawings are exemplary, and it should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.
[0039] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element.
[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0041] Example 1
[0042] Please see Figures 1 to 4 This embodiment provides an automated device for ceramic gilding processing, including:
[0043] Box 100;
[0044] The housing 100 is provided with a first cavity 110 and a second cavity 120; the second cavity 120 is fixedly connected to a Z-axis transmission mechanism 200, the Z-axis transmission mechanism 200 is movably connected to an X-axis transmission mechanism 300, the X-axis transmission mechanism 300 is movably connected to a Y-axis transmission mechanism 400, the Y-axis transmission mechanism 400 is movably connected to a transmission plate 730, and a screen pen 740 is movably connected to the transmission plate 200; through the arrangement of the Z-axis transmission mechanism 300, the X-axis transmission mechanism 300, and the Y-axis transmission mechanism 400, the Y-axis transmission mechanism 400 is movably connected to the transmission plate 200, and the transmission plate 200 is movably connected to the screen pen 740; this allows the screen pen 740 to move and be positioned in space; at the same time, the screen pen 740 can rotate at multiple angles; and it can be used to apply gold leaf to different surfaces of different ceramic bowls and plates.
[0045] like Figure 1 and Figure 3 As shown, the second cavity 120 opens upwards, and a liquid storage tank 700 and a peristaltic motor 710 are disposed inside the second cavity 120. The liquid storage tank 700 is connected to the peristaltic motor 710 through a hose 720, and the peristaltic motor 710 is connected to the screen pen 740 through a hose 720. Compared with the existing gold painting method, the arrangement of the liquid storage tank 700, the screen pen 740, and the peristaltic motor 710 allows for controllable gold paint application rate, more uniform ink application, and a more stable gold painting process.
[0046] like Figure 1 and Figure 2As shown, a turntable mechanism 500 is included; the turntable mechanism 500 includes: a lifting motor 510, a mounting plate 512, a rotary motor 521, and a rotating disk 530; the lifting motor 510 is fixedly installed in the first cavity 110; the lifting screw 511 of the lifting motor 510 passes through the first cavity 110 and is fixedly connected to the mounting plate 512; the rotary motor 521 is mounted on the upper surface of the mounting plate 512, and the rotary motor 521 is surrounded by a motor protective cover 520; the output shaft of the rotary motor 521 is fixedly connected to the rotating disk 530; the lifting motor 510 realizes the lifting and lowering of the rotating disk 530; the rotary motor 521 realizes the rotation of the rotating disk 530.
[0047] like Figure 4 As shown, a rotating mechanism 600 is included; the rotating mechanism 600 includes a rotating table 610 and a tray transmission component 620; the rotating table 610 is fixedly installed on the surface of the first cavity 110; the tray transmission component 620 is detachably connected to the rotating table 610; the rotating disk 530 has a ceramic placement groove 531 along its circumference, and when the rotating disk 530 rotates, the ceramic placement groove 531 and the tray transmission component 620 are coaxial. The Z-axis transmission mechanism 300, the X-axis transmission mechanism 300, and the Y-axis transmission mechanism 400 are arranged in conjunction with the turntable mechanism 500 and the rotating mechanism 600; the turntable mechanism 500 rotates the ceramic to be gilded to a position directly above the rotating mechanism 600, and lowers it onto the rotating mechanism 600. After the screen pen 740 positions the ceramic to be gilded, the rotating mechanism 600 drives the ceramic to rotate, realizing an automatic gilding process.
[0048] The surface of the housing 100 is provided with a control panel 130; the control panel 130 is electrically connected to the brake stepper motors of the Z-axis transmission mechanism 300, the X-axis transmission mechanism 300 and the Y-axis transmission mechanism 400; and is electrically connected to the brake motors of the turntable mechanism 500 and the rotation mechanism 600, so as to realize the automated control of the entire device.
[0049] Example 2
[0050] Please see Figure 5 This embodiment, based on Embodiment 1, further describes the specific structure and connection relationship of the Z-axis transmission mechanism 300, the X-axis transmission mechanism 300, and the Y-axis transmission mechanism 400, including:
[0051] The Z-axis transmission mechanism 200 comprises a Z-axis stepping motor 201, a first Z-axis fixed plate 202, a Z-axis limiting rod 203, a Z-axis transmission screw rod 204, a Z-axis connecting transmission member 205 and a second Z-axis fixed plate 206; the two ends of the Z-axis limiting rod 203 are fixedly connected with the first Z-axis fixed plate 202 and the second Z-axis fixed plate 206 respectively; the middle part of the Z-axis limiting rod 203 is movably connected with the Z-axis connecting transmission member 205; the Z-axis transmission screw rod 204 is movably connected with the first Z-axis fixed plate 202, the Z-axis connecting transmission member 205 and the second Z-axis fixed plate 206; the Z-axis stepping motor 201 is installed on one side of the first Z-axis fixed plate 202, and the output shaft of the Z-axis stepping motor 201 is fixedly connected with the Z-axis transmission screw rod 204. Through the Z-axis transmission mechanism 200, the transmission plate member fixedly installed with the screen pen 740 can move in the Z-axis direction.
[0052] The X-axis transmission mechanism 300 comprises an X-axis stepping motor 301, a first X-axis fixed plate 302, an X-axis limiting rod 303, an X-axis transmission screw rod 304, an X-axis connecting transmission member 305 and a second X-axis fixed plate 306; the two ends of the X-axis limiting rod 303 are fixedly connected with the first X-axis fixed plate 302 and the second X-axis fixed plate 306 respectively; the middle part of the X-axis limiting rod 303 is movably connected with the X-axis connecting transmission member 305; the X-axis transmission screw rod 304 is movably connected with the first X-axis fixed plate 302, the X-axis connecting transmission member 305 and the second X-axis fixed plate 306; the X-axis stepping motor 301 is installed on one side of the first X-axis fixed plate 302, and the output shaft of the X-axis stepping motor 301 is fixedly connected with the X-axis limiting rod 303. Through the X-axis transmission mechanism 300, the transmission plate member fixedly installed with the screen pen 740 can move in the X-axis direction.
[0053] The X-axis transmission mechanism 300 is perpendicular to the Z-axis transmission mechanism 200; the first X-axis fixed plate 302 is fixedly connected with the Z-axis connecting transmission member 205.
[0054] The Y-axis transmission mechanism 400 comprises a Y-axis stepping motor 401, a first Y-axis fixed plate 402, a Y-axis limiting rod 403, a Y-axis transmission screw rod 404 and a second Y-axis fixed plate 405; the two ends of the X-axis limiting rod 303 are fixedly connected with the first Y-axis fixed plate 402 and the second Y-axis fixed plate 405 respectively; the Y-axis transmission screw rod 404 is movably connected with the first Y-axis fixed plate 402 and the second Y-axis fixed plate 405; the Y-axis stepping motor 401 is installed on one side of the first Y-axis fixed plate 402, and the output shaft of the Y-axis stepping motor 401 is fixedly connected with the Y-axis limiting rod 403. Through the Y-axis transmission mechanism 400, the transmission plate member fixedly installed with the screen pen 740 can move in the Y-axis direction.
[0055] The Y-axis transmission mechanism 400 is perpendicular to the X-axis transmission mechanism 300; the first Y-axis fixed plate 402 is fixedly connected with the X-axis connecting transmission member 305; through the cooperation transmission of the Z-axis transmission mechanism 200, the X-axis transmission mechanism 300 and the Y-axis transmission mechanism 400, the meshing pen 740 can be positioned at each position in a certain range of space.
[0056] Embodiment 3
[0057] Please refer to Figure 6 , this embodiment is based on the embodiment 1, the rotating disc mechanism 500 specific structure and the connection relationship are further described, including:
[0058] The rotating disc mechanism 500 includes: lifting motor 510, mounting disc 512, rotating motor 521 and rotating disc 530; the lifting motor 510 is fixedly installed in the first cavity chamber 110; the lifting motor 510 is electrically connected with the control panel 130; the lifting screw rod 511 of the lifting motor 510 passes through the first cavity chamber 110 and is fixedly connected with the mounting disc 512; the length of the lifting screw rod 511 is less than the height of the first cavity chamber 110; the low surface of the mounting disc 512 is provided with a threaded sleeve which is threadedly connected with the lifting screw rod 511; the upper surface of the mounting disc 512 is provided with a rotating motor 521, and the rotating motor 521 is peripherally provided with a motor protection cover 520; the motor protection cover 520 is used for protecting the rotating motor 521, and the rotating motor 521 is point-connected with the control panel 130; the output shaft of the rotating motor 521 is fixedly connected with the rotating disc 530; the lifting motor 510 realizes the lifting of the rotating disc 530; the rotating motor 521 realizes the rotation of the rotating disc 530; the rotating disc 530 is provided with a ceramic placing groove 531 along the circumference, and when the rotating disc 530 rotates, the ceramic placing groove 531 is coaxial with the tray transmission member; wherein the ceramic placing groove 531 is designed according to the shape structure of the ceramic bowl which needs to be gilded, so as to realize the gilding of different ceramic bowls; the low surface of the rotating disc 530 is fixedly provided with a connecting end 532, and the connecting end 532 is threadedly connected with the rotating motor 521. When gilding different shape ceramic bowls, the rotating disc 530 is convenient to replace.
[0059] Embodiment 4
[0060] Please refer to Figure 7 and Figure 8 , this embodiment is based on the embodiment 1, the rotating mechanism 600 specific structure and the connection relationship are further described, including:
[0061] The rotating mechanism 600 comprises a rotating table 610 and a tray transmission member 620; the rotating table 610 is fixedly installed on the surface of the first cavity chamber 110; the tray transmission member 620 is detachably connected with the rotating table 610; the top surface of the tray transmission member 620 is sequentially provided with an annular groove 621 from inside to outside, and the surface of the annular groove 621 is frosted; the bottom surface of the tray transmission member 620 is provided with a plurality of mounting limiting pins 622; the rotating table 610 comprises a peripheral stator 611 and an inner layer rotor 612; the inner layer rotor 612 is installed in the peripheral stator 611, and the surface of the inner layer rotor 612 is provided with a latch hole; the latch hole is matched with the limiting pin 622 arranged on the surface of the tray transmission member 620. Through the arrangement of the rotating table 610, the ceramic bowl and plate are self-rotated; through the matching arrangement of the latch hole and the limiting pin 622 arranged on the surface of the tray transmission member 620, the tray transmission member is conveniently installed on the rotating table.
[0062] Embodiment 5
[0063] Please refer to Figure 9 , the embodiment is based on the embodiment 1, and the specific structure and connection relationship of the transmission plate member 730 are further described, which comprises:
[0064] The transmission plate member 730 is provided with a limiting hole 731 and a threaded transmission hole 732, and the surface of the transmission plate member 730 is movably connected with a rotating block 733; the rotating block is provided with a fixing hole 734. The limiting hole 731 and the threaded transmission hole 732 are respectively sleeved with the Y-axis limiting rod and the Y-axis transmission screw rod of the Y-axis transmission mechanism; the movement of the transmission plate member 730 along the Y-axis direction is realized; the rotating block is provided with a fixing hole 734, and the fixing hole 734 is used for fixedly installing the mesh screen pen; the surface of the transmission plate member 730 is movably connected with the rotating block 733; the multi-angle rotation of the mesh screen pen is realized. So as to draw gold on different ceramic bowls and plates or different positions of the ceramic bowls and plates.
[0065] In the description of the application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the application.
[0066] In the description of the application, references to "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" mean that a particular feature, structure, material, or characteristic being described is included in at least one embodiment or example of the application. The appearances of the phrases "in one embodiment", "in some embodiments", "in an example", "in a specific example", or "in some examples" in various places in the specification are not necessarily all referring to the same embodiment or example.
[0067] It is apparent that the described embodiments are only some, but not all, of the embodiments of the present application. Reference to "an embodiment" or "some embodiments" in this specification means that a particular feature, structure, material or characteristic described in connection with the embodiment is included in at least one embodiment or example of the application. The appearances of the phrase "in one embodiment" or "in some embodiments" in various places in the specification are not necessarily all referring to the same embodiment or example, nor are they necessarily mutually exclusive or alternative embodiments or examples. It will be apparent to those skilled in the art from this disclosure that the described embodiments can be combined with other embodiments in a manner not specifically mentioned in the above description. All such possible combinations are within the scope of the present application.
[0068] Although embodiments of the application have been shown and described, it will be apparent to those skilled in the art that many more embodiments can be made without departing from the teachings of the present application. Accordingly, the scope of the application is to be construed as including all the embodiments falling within the scope of the claims and their equivalents.
Claims
1. A ceramic gilding processing automation device, characterized by, Include: Box (100); The box (100) is provided with a first cavity room (110) and a second cavity room (120); the second cavity room (120) is fixedly connected with Z-axis transmission mechanism (200), the Z-axis transmission mechanism (200) is movably connected with X-axis transmission mechanism (300), the X-axis transmission mechanism (300) is movably connected with Y-axis transmission mechanism (400), the Y-axis transmission mechanism (400) is movably connected with transmission plate (730), and the transmission plate (730) is movably connected with meshing pen (740); The second cavity room (120) is provided with a liquid storage tank (700) and a peristaltic machine (710), the liquid storage tank (700) is connected with the peristaltic machine (710) through a hose (720), and the peristaltic machine (710) is connected with the meshing pen (740) through the hose (720); Rotating disc mechanism (500); the rotating disc mechanism (500) includes: lifting motor (510), mounting disc (512), rotating motor (521) and rotating disc (530); the lifting motor (510) is fixedly installed in the first cavity room (110); the lifting screw (511) of the lifting motor (510) passes through the first cavity room (110) and is fixedly connected with the mounting disc (512); the mounting disc (512) is provided with a rotating motor (521); the output shaft of the rotating motor (521) is fixedly connected with a rotating disc (530); Rotating mechanism (600); the rotating mechanism (600) includes: rotating table (610) and tray transmission part (620); the rotating table (610) is fixedly installed on the surface of the first cavity room (110); the tray transmission part (620) is detachably connected with the rotating table (610), the top surface of the tray transmission part (620) is provided with an annular groove (621) from inside to outside, and the surface of the annular groove (621) is frosted; a plurality of mounting limit pins (622) are arranged on the bottom surface of the tray transmission part (620); the rotating table (610) includes a peripheral stator (611) and an inner rotor (612); the inner rotor (612) is installed in the peripheral stator (611), and a plug hole is formed in the surface of the inner rotor (612); the plug hole cooperates with the mounting limit pin (622) arranged on the surface of the tray transmission part (620), the rotating disc (530) is provided with a ceramic placing groove (531) along the circumference, and when the rotating disc (530) rotates, the ceramic placing groove (531) is coaxial with the tray transmission part (620).
2. The automatic device for ceramic gold drawing processing according to claim 1, characterized in that, The transmission plate (730) is provided with a limiting hole (731) and a threaded transmission hole (732), and the surface of the transmission plate (730) is movably connected with a rotating block (733); the rotating block is provided with a fixing hole (734).
3. The automatic device for ceramic gold drawing processing according to claim 1, characterized in that, The Z-axis transmission mechanism (200) comprises a Z-axis stepping motor (201), a first Z-axis fixed plate (202), a Z-axis limiting rod (203), a Z-axis transmission screw rod (204), a Z-axis connecting transmission member (205) and a second Z-axis fixed plate (206); the Z-axis limiting rod (203) is fixedly connected with the first Z-axis fixed plate (202) and the second Z-axis fixed plate (206) at two ends respectively; the Z-axis limiting rod (203) is movably connected with the Z-axis connecting transmission member (205) at a middle part; the Z-axis transmission screw rod (204) is movably connected with the first Z-axis fixed plate (202), the Z-axis connecting transmission member (205) and the second Z-axis fixed plate (206); the Z-axis stepping motor (201) is installed on one side of the first Z-axis fixed plate (202), and an output shaft of the Z-axis stepping motor (201) is fixedly connected with the Z-axis transmission screw rod (204).
4. The automatic device for ceramic gold drawing processing according to claim 1, characterized in that, The X-axis transmission mechanism (300) comprises an X-axis stepping motor (301), a first X-axis fixed plate (302), an X-axis limiting rod (303), an X-axis transmission screw rod (304), an X-axis connecting transmission member (305) and a second X-axis fixed plate (306); the X-axis limiting rod (303) is fixedly connected with the first X-axis fixed plate (302) and the second X-axis fixed plate (306) at two ends respectively; the X-axis limiting rod (303) is movably connected with the X-axis connecting transmission member (305) at a middle part; the X-axis transmission screw rod (304) is movably connected with the first X-axis fixed plate (302), the X-axis connecting transmission member (305) and the second X-axis fixed plate (306); the X-axis stepping motor (301) is installed on one side of the first X-axis fixed plate (302), and an output shaft of the X-axis stepping motor (301) is fixedly connected with the X-axis limiting rod (303).
5. The automatic device for ceramic gold engraving processing according to claim 4, characterized in that, The X-axis transmission mechanism (300) is perpendicular to the Z-axis transmission mechanism (200); the first X-axis fixed plate (302) is fixedly connected with the Z-axis connecting transmission member (205).
6. The automatic device for ceramic gold engraving processing according to claim 1, characterized in that, The Y-axis transmission mechanism (400) comprises a Y-axis stepping motor (401), a first Y-axis fixed plate (402), a Y-axis limiting rod (403), a Y-axis transmission screw rod (404) and a second Y-axis fixed plate (405); the Y-axis limiting rod (403) is fixedly connected with the first Y-axis fixed plate (402) and the second Y-axis fixed plate (405) at two ends respectively; the Y-axis transmission screw rod (404) is movably connected with the first Y-axis fixed plate (402) and the second Y-axis fixed plate (405); the Y-axis stepping motor (401) is installed on one side of the first Y-axis fixed plate (402), and an output shaft of the Y-axis stepping motor (401) is fixedly connected with the Y-axis limiting rod (403).
7. A ceramic marking processing automation device according to claim 6, characterized in that, The Y-axis transmission mechanism (400) is perpendicular to the X-axis transmission mechanism (300); the first Y-axis fixed plate (402) is fixedly connected with the X-axis connecting transmission member (305).
Citation Information
Patent Citations
Ceramic gold drawing processing automation device
CN219255937U