A glazing rotating platform convenient for drying and sealing
The design of the platform reciprocating and transposition mechanism solves the problem of the glazing rotating platform needing to be transferred to the drying equipment after spraying glaze, realizes continuous processing and efficient material transfer, and improves processing efficiency and device flexibility.
Patent Information
- Application Number
- CN202510029388.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-01-08
AI Technical Summary
The existing glazing rotary platform improves processing efficiency by setting up a multi-station glazing spraying structure, but after the multi-station glazing is completed, it needs to be transferred to the drying equipment, resulting in poor processing continuity and troublesome material transfer operations.
The platform reciprocating mechanism and the transposition mechanism are adopted, and the motor drives the lead screw and the gear disc to realize the automatic alternation of the workpiece between the glaze spraying and drying positions. The belt drive and the hydraulic cylinder are combined to adjust the exhaust drying and glaze spraying positions to ensure continuous processing.
The continuous processing of the glazing rotary platform is realized, the processing efficiency is improved, the material transfer operation is simplified, and the flexibility and stability of the device are enhanced.
Smart Images

Figure CN119795344B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of glazing rotary platforms, in particular to a glazing rotary platform that is convenient for drying and sealing treatment. Background Art
[0002] The glazing process is a kind of ancient ceramic production technology, which refers to the process of applying glaze slurry on the surface of the formed ceramic body. The body needs to be assisted by a rotating platform during the glazing and subsequent drying process. After searching, it was found that the glazing rotating platform in the prior art is typically such as the announcement number CN215660918U, a double-station single-drive glazing rotating platform, including a workbench, the workbench has a loading area and a glaze spraying area, the rotating frame is intermittently rotated and arranged on the workbench, the rotating shaft is rotatably arranged on the rotating frame, the mounting plate is arranged on the rotating shaft, the mounting plate is used to place the toilet, and drives the toilet to move between the loading area and the glaze spraying area, the first gear is arranged on the rotating shaft and is concentrically arranged with the rotating shaft, the first gear, the rotating shaft and the mounting plate rotate synchronously, the sliding part is slidably arranged on the workbench, the turntable has teeth thereon, the turntable is rotatably arranged on the sliding part, and moves with the sliding part. The turntable and the slider are both located in the glaze spraying area, and after the slider moves, the teeth are engaged with the first gear. The main feature of the invention is that it solves the problem of complex layout of the driving structure of the self-rotation of the toilet when the toilet is glazed in the related art.
[0003] To sum up, the existing glazing rotary platform improves processing efficiency by setting up a multi-station glazing spraying structure. However, the multi-station glazing spraying needs to be transferred to the drying equipment for drying after completing the glazing and sealing process. Therefore, it is necessary to pause the device after glazing to batch the workpieces on the multi-station for material transfer, which makes the continuity of the device during processing poor and the material transfer operation more troublesome. In view of the above problems, the existing equipment needs to be improved. Summary of the Invention
[0004] The object of the present invention is to provide a glazing rotary platform that is convenient for drying and sealing processing, so as to solve the problem proposed in the above background technology that the existing glazing rotary platform improves the processing efficiency by setting a multi-station glazing spraying structure, but the multi-station glazing spraying needs to be transferred to the drying equipment for drying after completing the glazing and sealing process, so that the device needs to be paused after glazing to batch the workpieces on the multi-station for material transfer, which makes the continuity of the device during processing poor and the material transfer operation more troublesome.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a glazing rotary platform for drying and sealing, comprising a bearing plate and a platform reciprocating mechanism,
[0006] The cam is connected to the transmission mechanism by the linkage, and the linkage is connected to the transmission mechanism by the linkage, and the linkage is connected to the transmission mechanism by the linkage.
[0007] Preferably, the sliding block on the first lead screw moves in the opposite direction to the sliding block on the second lead screw, and a sphere is provided at the bottom of the sliding block.
[0008] Preferably, the blocking mechanism includes a telescopic spring, a push switch and a buffer plate, and the buffer plate is connected to the mounting plate through the telescopic spring, and the push switch is arranged on the inner side of the buffer plate.
[0009] Preferably, the push switch is electrically connected to the first motor, the second motor, the control box and the transposition mechanism.
[0010] Preferably, the driven gear disc is meshedly connected with the driving gear disc, and four groups of driving gear discs are provided.
[0011] Preferably, the first storage platform and the second storage platform are respectively arranged on the inner side of the glaze spraying cover and the drying box, and the glaze spraying cover and the drying box are relatively distributed on the top of the supporting plate, and the supporting plate is connected to the base through the bottom bracket.
[0012] Preferably, the shifting mechanism includes a first rotating shaft, a second rotating shaft, a transmission gear, a transmission rack, a movable plate and a hydraulic cylinder, and the first rotating shaft is rotatably connected to the top of the glaze spray hood, and the second rotating shaft is rotatably connected to the top of the drying box. The first rotating shaft is connected to the second rotating shaft through a belt drive structure, and a transmission gear is provided on the second rotating shaft, and the transmission gear is meshed with the transmission rack. One end of the transmission rack is connected to one side of the movable plate, and the other side of the movable plate is connected to the hydraulic cylinder, and the hydraulic cylinder is installed on the top of the drying box.
[0013] Preferably, the shifting mechanism also includes a drying rack, a glaze spraying rack, a glaze spraying assembly, an exhaust pipe fitting, a first vertical plate, a return spring and a limit plate, and the drying rack and the glaze spraying rack are respectively arranged inside the drying box and the glaze spraying cover, and the drying rack and the glaze spraying rack are respectively connected to the bottom of the first rotating shaft and the second rotating shaft, and the bottom of one side of the drying rack and the glaze spraying rack are connected to the exhaust pipe fitting and the glaze spraying assembly.
[0014] Preferably, a first vertical plate is connected to the bottom of the other side of the drying rack and the glaze spraying rack, and the first vertical plate is connected to the limit plate through a reset spring, and the limit plate is in contact with the glaze spraying cover and the inner wall of the drying box.
[0015] Preferably, the exhaust pipe fittings and the glaze spraying assembly are correspondingly arranged above the first storage platform and the second storage platform, and the exhaust pipe fittings and the glaze spraying assembly are respectively connected to the external drying equipment and the glaze spraying equipment through conveying pipes.
[0016] Compared with the prior art, the present invention has the following advantages: the glazing rotary platform is convenient for drying and sealing.
[0017] (1) The present invention can effectively solve the problem that the existing glazing rotating platform improves the processing efficiency by setting a multi-station glazing structure through the platform reciprocating mechanism, but the multi-station glazing needs to be transferred to the drying equipment for drying after completing the glazing and sealing process, so that the device needs to be paused after glazing to batch the workpieces on the multi-station for material transfer, which makes the continuity of the device during processing poor and the material transfer operation more troublesome. The first motor synchronously drives the first screw and the second screw to rotate under the cooperation of the belt transmission structure, so that the slider above the first screw drives the first storage platform to move into the interior of the glaze spray cover until the driven gear disc under the first storage platform is engaged with the active gear disc. At this time, the buffer plate applies pressure to the press switch under the squeezing of the slider to control The first motor stops adjusting the position of the first placement platform, and controls the second motor to drive the active rod to rotate the active gear disc. When the active gear disc rotates, it pushes the driven gear disc on one side to drive the first placement platform and the workpiece on the top of it to rotate, so as to facilitate uniform glazing on them. After the glazing is completed, the first motor rotates in the opposite direction to drive the slider to drive the first placement platform to move toward the drying box until the driven gear disc under the first placement platform engages with the active gear disc in the drying box. The second placement platform operates in the same way as above, so that the workpiece on the second placement platform can be rotated and glazed while the first placement platform is dried. Such a cycle can realize continuous alternating glazing and automatic material transfer operations, thereby improving the continuity of the device during processing and ensuring the processing efficiency of the device.
[0018] (2) The present invention can effectively solve the problem that the existing rotating platform has fixed glazing position and drying exhaust position, thus failing to meet the processing requirements of different workstations, by using the switching mechanism and the belt transmission structure in conjunction with each other. When the push switch is pressed and started, the hydraulic cylinder is controlled to push the moving plate to drive the transmission rack to move. During the movement of the transmission rack, the transmission gear engaged on one side thereof is pushed to drive the second rotating shaft to rotate. The second rotating shaft drives the first rotating shaft to rotate together with the cooperation of the belt transmission structure, thereby switching the exhaust pipe fittings at the bottom of the drying rack and the glaze spraying rack and the exhaust drying and glaze spraying positions of the glaze spraying assembly to be switched and adjusted, so as to meet different exhaust drying and glaze spraying processing, thereby improving the flexibility of the device structure.
[0019] (3) The present invention can effectively solve the problem that the drying rack and the glaze spraying rack are easily shaken due to the impact of airflow and liquid during the process of exhaust drying and glaze spraying by using the first vertical plate, the return spring and the limit plate. When the drying rack and the glaze spraying rack are rotated to adjust the exhaust drying and glaze spraying positions, the limit plate at the bottom will compress the return spring to prevent it from rotating normally. After the adjustment is completed, the limit plate will be in contact with the inner wall of the glaze spraying cover and the drying box under the elastic action of the return spring, thereby fixing the position of the drying rack and the glaze spraying rack, thereby preventing the drying rack and the glaze spraying rack from shaking due to the impact of airflow and liquid during the process of exhaust drying and glaze spraying. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is an isometric view of the present invention;
[0021] Figure 2 This is a schematic diagram of the overall structure of the position distribution of the platform reciprocating mechanism on the bearing plate of the present invention;
[0022] Figure 3 Schematic diagram of the overall structure of the transposition mechanism of the present invention;
[0023] Figure 4 For the present invention Figure 1 A in the middle is an enlarged structural diagram;
[0024] Figure 5 It is an isometric view of the present invention;
[0025] Figure 6 For the present invention Figure 2 Enlarged structural diagram at point B in the middle.
[0026] In the figure: 1, bearing plate; 2, platform reciprocating mechanism; 201, first lead screw; 202, second lead screw; 203, mounting plate; 204, stopping mechanism; 2041, telescopic spring; 2042, press switch; 2043, buffer plate; 205, first motor; 206, belt transmission structure; 207, slider; 208, ball; 209, driven rod; 2010, driven gear disc; 2011, first storage platform; 2012, second storage platform; 2013, driving gear disc; 2014 , active rod; 2015, second motor; 2016, chain transmission structure; 3, glaze spray hood; 4, drying box; 5, shifting mechanism; 501, first rotating shaft; 502, second rotating shaft; 503, transmission gear; 504, transmission rack; 505, moving plate; 506, hydraulic cylinder; 507, drying rack; 508, glaze spray rack; 509, glaze spray assembly; 5010, exhaust duct; 5011, first vertical plate; 5012, reset spring; 5013, limit plate; 6, bracket; 7, base. DETAILED DESCRIPTION
[0027] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0028] See also Figure 1-6 The present invention provides a technical solution: a glazing rotary platform that is convenient for drying and sealing.
[0029] Example 1
[0030] A platform reciprocating mechanism 2 is provided on the bearing plate 1, and the platform reciprocating mechanism 2 includes a first lead screw 201, a second lead screw 202, a mounting plate 203, a blocking mechanism 204, a first motor 205, a belt transmission structure 206, a slider 207, a ball 208, a driven rod 209, a driven gear disc 2010, a first storage platform 2011, a second storage platform 2012, a driving gear disc 2013, an active rod 2014, a second motor 2015 and a chain transmission structure 2016. A second lead screw 202 is provided on one side of the first lead screw 201, and both the first lead screw 201 and the second lead screw 202 are provided on the mounting plate 203. The first lead screw 201 is connected to the second lead screw 202 through the belt transmission structure 206. The two lead screws 202 are connected, and the second lead screw 202 is connected to the output end of the first motor 205. A slider 207 is provided on the first lead screw 201 and the second lead screw 202, and a driven rod 209 is provided on the top of the slider 207. The tops of the two groups of driven rods 209 are respectively provided with a first storage platform 2011 and a second storage platform 2012. A driven gear disc 2010 is connected to the driven rod 209, and a driving gear disc 2013 is provided on both sides of the driven gear disc 2010. At the same time, the driving gear disc 2013 is provided on the active rod 2014, and the active rod 2014 is connected to the output end of the second motor 2015. At the same time, the active rods 2014 are connected by a chain transmission structure 2016.
[0031] In a further embodiment, the slider 207 on the first lead screw 201 and the slider 207 on the second lead screw 202 move in opposite directions, and a ball 208 is provided at the bottom of the slider 207 .
[0032] In a further embodiment, the blocking mechanism 204 includes a telescopic spring 2041 , a push switch 2042 and a buffer plate 2043 , and the buffer plate 2043 is connected to the mounting plate 203 through the telescopic spring 2041 , while the push switch 2042 is arranged on the inner side of the buffer plate 2043 .
[0033] In a further embodiment, the push switch 2042 is electrically connected to the first motor 205 , the second motor 2015 , the control box, and the shifting mechanism 5 .
[0034] In a further embodiment, the driven gear disc 2010 is meshedly connected with the driving gear disc 2013 , and the driving gear disc 2013 is provided with four groups.
[0035] In a further embodiment, the first storage platform 2011 and the second storage platform 2012 are respectively arranged on the inner sides of the glaze spraying cover 3 and the drying box 4, and the glaze spraying cover 3 and the drying box 4 are relatively distributed on the top of the supporting plate 1, and the supporting plate 1 is connected to the base 7 through the bottom bracket 6.
[0036] Specifically, in the actual working process, the workpiece to be glazed is placed on the first placement platform 2011, and then the power starter is connected. The first motor 205 synchronously drives the first screw 201 and the second screw 202 to rotate under the cooperation of the belt transmission structure 206, so that the slider 207 above the first screw 201 drives the first placement platform 2011 to move into the interior of the glaze spraying cover 3 until the driven gear disc 2010 below the first placement platform 2011 is engaged with the active gear disc 2013. At this time, the buffer plate 2043 exerts pressure on the press switch 2042 under the pressure of the slider 207 to control the first motor 205 to stop adjusting the position of the first placement platform 2011, and controls the second motor 2015 to drive the active rod 2014 to rotate the active gear disc 2013. When the active gear disc 2013 rotates, it pushes the driven gear disc 2010 on one side to drive the first placement platform 2011 and the workpiece on the top of it to rotate under the glaze spraying assembly 509 for glazing.
[0037] After the glaze spraying is completed, the first motor 205 rotates in the opposite direction to drive the slider 207 to drive the first storage platform 2011 to move toward the drying box 4 until the driven gear disc 2010 under the first storage platform 2011 engages with the active gear disc 2013 in the drying box 4, and the second storage platform 2012 drives the workpiece to move in the opposite direction to the inside of the glaze spraying cover 3. At this time, the slider 207 squeezes another set of press switches 2042 to control the second motor 2015 to synchronously drive the first storage platform 2011 and the second storage platform 2012 to rotate, and control the shifting mechanism 5 to adjust the position of the exhaust duct 5010 and the glaze spraying assembly 509. Then, the exhaust duct 5010, with the cooperation of the external drying equipment, exhausts and dries the workpiece above the first storage platform 2011 below it, and this cycle is repeated until all products are processed.
[0038] Example 2
[0039] This embodiment is a further description of the above embodiment. It should be understood that this embodiment includes all the above technical features and is further described in detail.
[0040] In a further embodiment, the shifting mechanism 5 includes a first rotating shaft 501, a second rotating shaft 502, a transmission gear 503, a transmission rack 504, a movable plate 505 and a hydraulic cylinder 506, and the first rotating shaft 501 is rotatably connected to the top of the glaze spray hood 3, and the second rotating shaft 502 is rotatably connected to the top of the drying box 4. The first rotating shaft 501 is connected to the second rotating shaft 502 through a belt drive structure 206, and a transmission gear 503 is provided on the second rotating shaft 502, and the transmission gear 503 is meshed with the transmission rack 504. One end of the transmission rack 504 is connected to one side of the movable plate 505, and the other side of the movable plate 505 is connected to the hydraulic cylinder 506, and the hydraulic cylinder 506 is installed on the top of the drying box 4.
[0041] In a further embodiment, the shifting mechanism 5 also includes a drying rack 507, a glaze spraying rack 508, a glaze spraying assembly 509, an exhaust pipe 5010, a first vertical plate 5011, a return spring 5012 and a limit plate 5013, and the drying rack 507 and the glaze spraying rack 508 are respectively arranged inside the drying box 4 and the glaze spraying cover 3, and the drying rack 507 and the glaze spraying rack 508 are respectively connected to the bottom of the first rotating shaft 501 and the second rotating shaft 502, and the bottom of one side of the drying rack 507 and the glaze spraying rack 508 are connected to the exhaust pipe 5010 and the glaze spraying assembly 509.
[0042] In a further embodiment, a first vertical plate 5011 is connected to the bottom of the other side of the drying rack 507 and the glaze spraying rack 508, and the first vertical plate 5011 is connected to the limit plate 5013 through a return spring 5012, and the limit plate 5013 is in contact with the inner wall of the glaze spraying cover 3 and the drying box 4.
[0043] In a further embodiment, the exhaust duct 5010 and the glaze spraying assembly 509 are correspondingly arranged above the first storage platform 2011 and the second storage platform 2012, and the exhaust duct 5010 and the glaze spraying assembly 509 are respectively connected to the external drying equipment and the glaze spraying equipment through the conveying pipe.
[0044] The second shaft 502 is driven by the gear 503 engaged on one side of the gear 504 and the second shaft 502 is driven to rotate. The second shaft 502 is driven by the gear 503 engaged on one side of the gear 504 and the second shaft 502 is driven to rotate together with the belt transmission structure 206, thereby switching the exhaust pipe 5010 and the glaze spraying assembly 509 at the bottom of the drying rack 507 and the glaze spraying rack 508 for exhaust drying and glaze spraying position switching and adjustment. When the drying rack 507 and the glaze spraying rack 508 rotate, the limit plate 5013 at the bottom thereof will compress the return spring 5012 to ensure the normal rotation of the device. When the adjustment is completed, the limit plate 5013 will be in contact with the inner wall of the glaze spraying cover 3 and the drying box 4 under the elastic action of the return spring 5012, thereby fixing the position of the drying rack 507 and the glaze spraying rack 508 to ensure the normal operation.
[0045] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A glazing rotary platform for drying and sealing, comprising a bearing plate (1), a platform reciprocating mechanism (2) and a position-changing mechanism (5), characterized in that: The bearing plate (1) is provided with a platform reciprocating mechanism (2), and the platform reciprocating mechanism (2) comprises a first lead screw (201), a second lead screw (202), a mounting plate (203), a stopping mechanism (204), a first motor (205), a belt transmission structure (206), a slider (207), a sphere (208), a driven rod (209), a driven gear disc (2010), a first storage platform (2011), a second storage platform (2012), an active gear disc (2013), an active rod (2014), a second motor (2015) and a chain transmission structure (2016), and a second lead screw (2011) is provided on one side of the first lead screw (201). 2), and the first lead screw (201) and the second lead screw (202) are both arranged on the mounting plate (203), the first lead screw (201) is connected to the second lead screw (202) via a belt transmission structure (206), and the second lead screw (202) is connected to the output end of the first motor (205), the first lead screw (201) and the second lead screw (202) are both provided with a slider (207), and the top of the slider (207) is provided with a driven rod (209), the tops of the two groups of driven rods (209) are respectively provided with a first storage platform (211) and a second storage platform (212), and the driven rods (209) are connected to a driven gear disc (210),Both sides of the driven gear disc (210) are provided with active gear discs (213), and the active gear discs (213) are provided on the active rod (214), and the active rod (214) is connected to the output end of the second motor (215), and the active rods (214) are connected through a chain transmission structure (216). The shifting mechanism (5) includes a first rotating shaft (501), a second rotating shaft (502), a transmission gear (503), a transmission rack (504), a moving plate (505) and a hydraulic cylinder (506). ), and the first rotating shaft (501) is rotatably connected to the top of the glaze spraying cover (3), and the second rotating shaft (502) is rotatably connected to the top of the drying box (4), the first rotating shaft (501) is connected to the second rotating shaft (502) through a belt transmission structure (206), and the second rotating shaft (502) is provided with a transmission gear (503), and the transmission gear (503) is meshed with a transmission rack (504), one end of the transmission rack (504) is connected to one side of the moving plate (505), and the other end of the moving plate (505) is connected to the second rotating shaft (502). One side is connected to the hydraulic cylinder (506), and the hydraulic cylinder (506) is installed on the top of the drying box (4). The shifting mechanism (5) also includes a drying rack (507), a glaze spraying rack (508), a glaze spraying assembly (509), an exhaust pipe (5010), a first vertical plate (5011), a return spring (5012) and a limit plate (5013), and the drying rack (507) and the glaze spraying rack (508) are respectively arranged inside the drying box (4) and the glaze spraying cover (3). The drying rack (507) and the glaze spraying rack (508) are respectively arranged inside the drying box (4) and the glaze spraying cover (3). The bottoms of the drying rack (507) and the glaze spraying rack (508) are connected to the bottoms of the first rotating shaft (501) and the second rotating shaft (502), and the bottoms of one side of each of the drying rack (507) and the glaze spraying rack (508) are connected to an exhaust pipe (5010) and a glaze spraying assembly (509). The bottoms of the other sides of the drying rack (507) and the glaze spraying rack (508) are connected to a first vertical plate (5011), and the first vertical plate (5011) is connected to a limit plate (5013) via a return spring (5012), and the limit plate (5013) is in contact with the inner wall of the glaze spraying cover (3) and the drying box (4).
2. The glazing rotary platform for drying and sealing according to claim 1, characterized in that: The sliding block (207) on the first lead screw (201) and the sliding block (207) on the second lead screw (202) move in opposite directions, and a sphere (208) is provided at the bottom of the sliding block (207).
3. The glazing rotary platform for drying and sealing according to claim 1, characterized in that: The blocking mechanism (204) comprises a telescopic spring (2041), a push switch (2042) and a buffer plate (2043), wherein the buffer plate (2043) is connected to the mounting plate (203) via the telescopic spring (2041), and the push switch (2042) is arranged on the inner side of the buffer plate (2043).
4. The glazing rotary platform for drying and sealing according to claim 3, characterized in that: The push switch (2042) is electrically connected to the first motor (205), the second motor (2015), the control box, and the transposition mechanism (5).
5. The glazing rotary platform for drying and sealing according to claim 1, characterized in that: The driven gear disc (2010) is meshedly connected with the driving gear disc (2013), and the driving gear disc (2013) is provided with four groups.
6. The glazing rotary platform for drying and sealing according to claim 1, characterized in that: The first storage platform (2011) and the second storage platform (2012) are respectively arranged on the inner sides of the glaze spraying cover (3) and the drying box (4), and the glaze spraying cover (3) and the drying box (4) are relatively distributed on the top of the supporting plate (1), and the supporting plate (1) is connected to the base (7) through the bottom bracket (6).
7. The glazing rotary platform for drying and sealing according to claim 1, characterized in that: The exhaust pipe (5010) and the glaze spraying assembly (509) are respectively arranged above the first storage platform (2011) and the second storage platform (2012), and the exhaust pipe (5010) and the glaze spraying assembly (509) are connected to the external drying equipment and the glaze spraying equipment respectively through the conveying pipeline.
Citation Information
Patent Citations
Ceramic product follows annular spraying glaze equipment
CN207915720U