Process and equipment for treating glaze with orange peel texture features
By designing glaze treatment equipment with dip-coating, printing, and drying components, the problems of uneven ceramic glaze spraying and limited coloring methods have been solved, achieving automation and high-efficiency uniformity in glaze treatment.
Patent Information
- Application Number
- CN202311767599.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-21
- Publication Date
- 2026-04-28
AI Technical Summary
In the existing technology, ceramic glaze spraying devices have limited functions, uneven spraying, cannot adapt to different glaze coloring methods, and lack a degree of automation.
A glaze treatment device with a dipping component, a printing component, and a drying component was designed, including a clamping mechanism, an adjusting mechanism, and a rotating mechanism, to achieve uniform dipping of glaze, multi-angle printing, and automatic drying.
It improves the uniformity of glaze application and coloring efficiency, enhances the applicability and automation of the equipment, and ensures the consistency and efficiency of glaze treatment on ceramic plates.
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Figure CN121928666A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of porcelain glaze treatment technology, and in particular to a glaze treatment process and equipment with orange peel texture characteristics. Background Technology
[0002] Orange peel texture glazing is a decorative treatment typically used on ceramic and tile products. Ceramic products mimic the texture of orange peel, giving the surface a unique feel. Through glaze design, the texture of orange peel can be simulated. This may include adding fine particles to the glaze to give the surface a subtle grainy texture, similar to that of orange peel.
[0003] Chinese invention patent with publication number CN105084942A discloses a ceramic glaze spraying device. This device sprays glaze onto ceramics through multiple nozzles to ensure product quality. However, this device has a relatively simple function and cannot guarantee the uniformity of the spraying when spraying ceramics. Furthermore, different glazes have different effects and different coloring methods, so this device cannot effectively adapt to different glaze coloring methods. Summary of the Invention
[0004] In view of the problems existing in the above-mentioned technologies, the present invention proposes a glaze treatment process and equipment with orange peel texture characteristics.
[0005] To address the aforementioned technical problems, the present invention provides the following technical solution: a glaze treatment device with orange peel texture characteristics, comprising a dipping assembly, which includes a support column, a glaze tank, a mounting rod, and a clamping mechanism. The glaze tank contains a prepared transparent glaze. The clamping mechanism clamps and moves a ceramic plate. A printing assembly is slidably mounted on the mounting rod, comprising a mounting base, a fixed plate, a support mechanism, and an adjustment mechanism. The adjustment mechanism drives a pressing head to embellish the ceramic plate. The support mechanism supports the ceramic plate. A sliding frame is slidably mounted on the mounting rod, placing the ceramic plate on the support assembly. A rotating frame is rotatably mounted on the side of the fixed plate, with multiple pressing heads mounted on it. A drying assembly is mounted on the side of the glaze tank, comprising a drying base, a drying plate, and multiple rotating discs. A rotating mechanism is mounted on each rotating disc, and the drying plate dries the ceramic plate.
[0006] Furthermore, the clamping mechanism includes a lifting ring slidably mounted on a support column, a rotating frame 1 rotatably mounted on the lifting ring, a rotating frame 2 rotatably mounted on the rotating frame 1, a clamping disc 1, a clamping disc 2, a clamping block 2, and a sliding frame 1 slidably mounted on the rotating frame 2, the clamping disc 1 and the clamping disc 2 simultaneously clamp the ceramic disc, and a clamping block 1 slidably mounted on the sliding frame 1, the clamping block 1 and the clamping block 2 simultaneously clamp the ceramic disc.
[0007] Furthermore, a clamping block three is slidably disposed on the sliding frame two, and the clamping block three and the sliding frame two clamp the ceramic disc.
[0008] Furthermore, the support mechanism includes a lifting plate 1 that is slidably mounted on a fixed plate, and multiple sets of support columns 2 that are slidably arranged on the lifting plate 1. The support columns 2 are adjusted according to the shape of the ceramic plate to support different types of ceramic plates.
[0009] Furthermore, the adjustment mechanism includes an adjustment base that is slidably mounted on a fixed plate, a mounting frame that is rotatably mounted on the adjustment base, a lifting block that is slidably mounted on the mounting frame, an adjustment plate that is slidably mounted on the lifting block, and a pressing mechanism that drives a pressing head to press against the ceramic plate.
[0010] Furthermore, the pressing mechanism includes a second lifting plate that is slidably mounted on an adjusting plate. A rotating column is rotatably mounted on the adjusting plate, and a swing column is rotatably mounted on the rotating column. An adjusting frame is provided at one end of the swing column, and a limit ball is provided at the other end of the swing column. The limit ball is slidably connected to the second lifting plate.
[0011] Furthermore, a pressing plate is slidably arranged on the adjusting frame, and two sets of clamping blocks are slidably arranged on the pressing plate, which clamp the ceramic plate.
[0012] Furthermore, multiple sets of clamping rings are slidably arranged on the rotating frame, and the clamping rings clamp the pressing head, which is coated with pigment or release agent.
[0013] Furthermore, the rotating mechanism includes a first baffle, a second baffle, and a third baffle mounted on the rotating disk. A support wheel is rotatably mounted on the second baffle. The ceramic disk is placed between the first baffle and the third baffle, and the support wheel supports the ceramic disk.
[0014] Furthermore, a method of using a glaze treatment device with an orange peel texture includes the following steps:
[0015] S1. Place the prepared transparent glaze in the glaze box and place the ceramic plate on the clamping mechanism;
[0016] S2. Drive the clamping mechanism, which drives the ceramic disc to perform the first glazing.
[0017] S3, drive the clamping mechanism to place the ceramic disc on the support assembly;
[0018] S4. Drive adjustment mechanism, the adjustment mechanism drives a set of pressing heads to apply pigments or release agents to the ceramic plate;
[0019] S5. After the embellishment is completed, the clamping mechanism clamps the ceramic plate again and drives the ceramic plate to dip in the glaze for the second time.
[0020] S6. After the second glaze application is completed, the clamping mechanism places the ceramic disc on the rotating mechanism.
[0021] S7. Drive the drying plate to dry the ceramic disc, and at the same time drive the rotating mechanism to rotate the ceramic disc, thereby improving the drying efficiency of the ceramic disc. Then, fire the dried ceramic disc.
[0022] The beneficial effects of the present invention compared with the prior art are as follows: (1) The dipping component of the present invention automatically clamps and transfers the ceramic plate, and the dipping component automatically changes the clamping method of the ceramic plate when dipping the ceramic plate, thereby improving the uniformity of dipping the ceramic plate; (2) The printing component of the present invention automatically applies release agent and prints patterns on the ceramic plate, and the multi-angle adjustment of the printing component enables the present invention to color different types of ceramic plates, thereby improving the applicability of the present invention, and the present invention automatically changes different pressing heads, thereby improving the coloring efficiency of the present invention; (3) The drying component of the present invention automatically collects the ceramic plate and dries the collected ceramic plate, and drives the ceramic plate to rotate and the drying plate to rotate, thereby improving the drying efficiency of the drying component of the present invention. Attached Figure Description
[0023] Figure 1 This is a left view of the overall structure of the present invention.
[0024] Figure 2 This is a schematic diagram of the overall structure of the present invention.
[0025] Figure 3 This is a right view of the structure of the dipping sauce assembly of the present invention.
[0026] Figure 4 This is a partial structural diagram of the dipping sauce assembly of the present invention.
[0027] Figure 5 This is a front view of the dipping sauce assembly structure of the present invention.
[0028] Figure 6 This is a schematic diagram of the printing component structure of the present invention.
[0029] Figure 7 for Figure 6 Enlarged schematic diagram of the structure at point A in the middle.
[0030] Figure 8 for Figure 6 Enlarged schematic diagram of the structure at point B.
[0031] Figure 9 This is a partial structural diagram of the printing component of the present invention.
[0032] Figure 10 This is a cross-sectional view of the printing component structure of the present invention.
[0033] Figure 11 This is a schematic diagram of the rotating frame structure of the present invention.
[0034] Figure 12 This is a left view of the drying component structure of the present invention.
[0035] Figure reference numerals: 1-Dipping component; 2-Printing component; 3-Drying component; 101-Glaze box; 102-Lifting ring; 103-Support column one; 104-Rotating frame one; 105-Rotating frame two; 106-Ceramic plate; 107-Mounting rod; 108-Clamping plate one; 109-Clamping plate two; 110-Sliding frame one; 111-Clamping block one; 112-Clamping block two; 201-Mounting base; 202-Fixing plate; 203-Sliding frame two; 204-Lifting plate one; 205-Support column two; 206-Rotating frame; 20 7-Adjustable base; 208-Mounting bracket; 209-Lifting block; 210-Adjusting plate; 211-Clamping block three; 212-Lifting plate two; 213-Pressing head; 214-Rotating column; 215-Swinging column; 216-Adjusting frame; 217-Limiting ball; 218-Pressing plate; 219-Clamping block four; 220-Spring; 221-Cam; 222-Clamping ring; 301-Drying base; 302-Drying plate; 303-Baffle one; 304-Baffle two; 305-Baffle three; 306-Support wheel; 307-Rotating plate. Detailed Implementation
[0036] refer to Figures 1-12 The glaze treatment process and equipment shown include a dipping component 1 for clamping a ceramic plate 106, which dips the ceramic plate 106 into the glaze and ensures the uniformity of the glaze application. A printing component 2 and a drying component 3 are respectively provided on both sides of the dipping component 1. The printing component 2 applies a release agent and a pattern to the ceramic plate 106, and the drying component 3 collects the ceramic plate 106 and dries it.
[0037] Dipping assembly 1 includes a support column 103, a glaze tank 101 at the lower end of the support column 103, the glaze tank 101 being filled with transparent glaze, a mounting rod 107 at the upper end of the glaze tank 101, a sliding frame 203 slidably mounted on the mounting rod 107, a lifting ring 102 slidably mounted on the support column 103, a rotating frame 104 coaxially rotatably mounted on the lifting ring 102, a rotating frame 205 rotatably mounted on the side of the rotating frame 104, and a clamping plate 108 and a clamping plate 209 slidably mounted on the rotating frame 205. Plate 108 and clamping plate 2 109 are mirror images of each other on rotating frame 2 105. A set of sliding frames 110 and clamping blocks 2 112 are slidably mounted on both sides of rotating frame 2 105. Clamping blocks 111 are slidably mounted on sliding frames 110. When clamping plates 108 and 2 109 approach each other, they clamp the ceramic plate 106. When clamping blocks 111 and 2 112 approach each other, they also clamp the ceramic plate 106. The clamping state of the dipping component 1 on the ceramic plate 106 is divided into two clamping stages. The first clamping stage is... The first clamping plate 108 and the second clamping plate 109 clamp the ceramic plate 106. At this time, neither the second clamping block 112 nor the first clamping block 111 is in contact with the ceramic plate 106. The second clamping stage is when the first clamping block 111 and the second clamping block 112 clamp the ceramic plate 106. During the second stage of clamping, the second clamping plate 109 is driven to move on the second rotating frame 105. The second clamping plate 109 pushes the ceramic plate 106 to move, so that the ceramic plate 106 gradually approaches the first clamping block 111. The first sliding frame 110 is driven to move on the second rotating frame 105. When the first clamping block 111... When the first clamping block 111 reaches above the ceramic plate 106, it slides on the sliding frame 110 and moves towards the second clamping block 112. At this time, the first clamping block 111 and the second clamping plate 109 clamp the ceramic plate 106. The second clamping plate 109 is driven to reset, and the second clamping block 112 is driven to approach the ceramic plate 106. At this time, the second clamping block 112 is in contact with the ceramic plate 106. The second clamping block 112 and the first clamping block 111 clamp the ceramic plate 106 to avoid uneven glaze application on the upper part of the ceramic plate 106.
[0038] The printing assembly 2 includes a sliding frame 203 slidably mounted on the mounting rod 107. A clamping block 211 is slidably disposed on the sliding frame 203. When the clamping block 211 and the sliding frame 203 approach each other, they clamp the ceramic disc 106. The printing assembly 2 also includes a mounting base 201. A fixing plate 202 is disposed on the mounting base 201. A lifting plate 204 is slidably disposed on the fixing plate 202. Multiple sets of support columns 205 are slidably disposed on the lifting plate 204. By adjusting the different heights of the multiple sets of support columns 205 on the lifting plate 204, different support methods are achieved, ensuring that the support columns 205 support various types of ceramic discs 106. To ensure the ceramic disc 106 does not move during the printing process, a rotating frame 206 is rotatably mounted on the side of the fixed plate 202. Various pressing heads 213 are placed on the rotating frame 206. Different printing methods are used on the pressing heads 213; some pressing heads 213 are used to pick up ink and then print on the ceramic disc 106, while others are used to pick up release agent and then print on the ceramic disc 106. Multiple sets of clamping rings 222 are slidably mounted on the rotating frame 206 to clamp the pressing heads 213 and prevent them from falling off. An adjusting base 207 is slidably mounted on the fixed plate 202, and a mounting bracket 208 is rotatably mounted on the adjusting base 207 for installation. A lifting block 209 is slidably mounted on the mounting frame 208. A slot is provided on the mounting frame 208. An adjusting plate 210 is slidably mounted on the lifting block 209, passing through the slot on the mounting frame 208. A rotating column 214 is rotatably mounted on the adjusting plate 210, and a swing column 215 is rotatably mounted inside the rotating column 214. An adjusting frame 216 is mounted at one end of the swing column 215, and a limit ball 217 is mounted at the other end. A pressing plate 218 is slidably mounted on the adjusting frame 216, and a spring 220 is provided between the pressing plate 218 and the adjusting frame 216. Two sets of clamping blocks 219 are slidably mounted on the pressing plate 218. When the two sets of clamping blocks 219 approach each other... The pressing head 213 is clamped, and a cam 221 is rotatably mounted on the adjusting frame 216. When the clamping block 211 rotates, it drives the pressing plate 218 to slide on the adjusting frame 216. The spring 220 drives the pressing plate 218 to reset on the adjusting frame 216. The pressing plate 218 drives the pressing head 213 to be decorated on the ceramic plate 106. A lifting plate 212 is slidably mounted on the adjusting plate 210. The lifting plate 212 is provided with a limit groove. The limit ball 217 slides in the limit groove of the lifting plate 212. Driving the lifting plate 212 to rise and fall and driving the rotating column 214 to rotate realizes the adjustment of the position of the pressing plate 218, realizing decoration at multiple positions on the ceramic plate 106.
[0039] The drying assembly 3 includes a drying base 301, on which a drying plate 302 and multiple rotating disks 307 are rotatably mounted. Each rotating disk 307 has a first baffle 303, a second baffle 304, and a third baffle 305. A ceramic disc 106 is placed between the first baffle 303 and the third baffle 305 to prevent the ceramic disc 106 from tilting. A support wheel 306 is rotatably mounted on the second baffle 304 to support the ceramic disc 106. When the drying plate 302 is driven, it dries the multiple ceramic discs 106. When the rotating disks 307 are driven to rotate, they rotate the ceramic discs 106, improving the drying efficiency of the ceramic discs 106.
[0040] A method of using a glaze treatment device with an orange peel texture includes the following steps:
[0041] S1. Place the prepared transparent glaze in the glaze box 101 and place the ceramic plate 106 on the clamping mechanism.
[0042] S2. Drive the clamping mechanism, which drives the ceramic disc 106 to perform the first glazing.
[0043] S3, drive the clamping mechanism to place the ceramic disc 106 on the support assembly.
[0044] S4. Drive adjustment mechanism, the adjustment mechanism drives a set of pressing heads 213 to apply pigments or release agents to the ceramic plate 106.
[0045] S5. After the embellishment is completed, the clamping mechanism clamps the ceramic plate 106 again and drives the ceramic plate 106 to dip in the glaze for the second time.
[0046] S6. After the second glaze application is completed, the clamping mechanism places the ceramic plate 106 on the rotating mechanism.
[0047] S7. Drive the drying plate 302 to dry the ceramic disc 106, and at the same time drive the rotating mechanism to rotate the ceramic disc 106 to improve the drying efficiency of the ceramic disc 106. Then, fire the dried ceramic disc 106.
[0048] Working principle: During operation, transparent glaze is filled into the glaze tank 101. The ceramic plate 106 is placed between clamping plate one 108 and clamping plate two 109. The clamping plates one 108 and two 109 are driven to move closer to each other, thus clamping the ceramic plate 106. The rotating frame two 105 is driven to rotate on the rotating frame one 104, causing the ceramic plate 106 to face downwards. The rotating frame two 105 and the rotating frame one 104 are set at right angles. The drive rotating frame 104 rotates on the lifting ring 102, causing the rotating frame 105 and ceramic disc 106 to reach above the glaze tank 101. The drive lifting ring 102 slides on the support column 103, causing the rotating frame 104 and ceramic disc 106 to insert into the glaze tank 101. The ceramic disc 106 picks up glaze in the glaze tank 101, but at this time, the area on the ceramic disc 106 covered by the clamping plate 108 and clamping plate 109 is not picked up with glaze. At this time, the second clamping disk 109 moves on the second rotating frame 105, pushing the ceramic disk 106 to move, causing the ceramic disk 106 to gradually approach the first clamping block 111. The first sliding frame 110 moves on the second rotating frame 105. When the first clamping block 111 reaches above the ceramic disk 106, the first clamping block 111 slides on the first sliding frame 110, moving towards the second clamping block 112. At this time, the first clamping block 111 and the second clamping disk 109 are aligned. The ceramic disc 106 is clamped, and the second clamping disc 109 is driven to reset. At the same time, the second clamping block 112 is driven to approach the ceramic disc 106. At this time, the second clamping block 112 is in contact with the ceramic disc 106. The second clamping block 112 and the first clamping block 111 clamp the ceramic disc 106 and dip the area that was not dipped in glaze during the first stage of clamping. After the dipping is completed, the lifting ring 102, the first rotating frame 104 and the second rotating frame 105 are driven to reset. At this time, the first rotating frame 104 and the second rotating frame 105 are set in parallel.
[0049] The second sliding bracket 203 is driven to move along the mounting rod 107, causing the ceramic disc 106 to be inserted between the second sliding bracket 203 and the third clamping block 211. The third clamping block 211 is driven to move closer to the second sliding bracket 203, and the third clamping block 211 and the second sliding bracket 203 clamp the ceramic disc 106. At this time, the dipping assembly 1 is driven to release the ceramic disc 106, thus releasing the fixation of the ceramic disc 106. The second sliding bracket 203 is then driven to move, and the second sliding bracket 203 moves the ceramic disc 106 to above the first lifting plate 204. The lifting plate 204 moves, causing multiple sets of support columns 205 to rise. At this time, the support columns 205 support the ceramic plate 106, driving the multiple sets of support columns 205 to slide on the lifting plate 204. By moving the multiple sets of support columns 205, the support shape is changed, thus supporting the ceramic plate 106. The lifting plate 204 is then started to slide on the fixed plate 202, causing the support columns 205 and the ceramic plate 106 to descend, completing the transfer of the ceramic plate 106.
[0050] When it is necessary to apply a release agent or print on the ceramic plate 106, the drive adjustment base 207 slides on the fixed plate 202, and the fixed plate 202 drives the mounting frame 208 to move. In the initial state, the mounting frame 208 drives the adjustment plate 210 towards the ceramic plate 106, and the drive lifting block 209 slides on the mounting frame 208, and the drive adjustment plate 210 slides on the lifting block 209. At this time, the position of the adjustment plate 210 is changed. When the adjustment plate 210 reaches the position on the ceramic plate 106 that needs to be decorated, the drive cam 221 rotates, and the clamping block 211 drives the pressing plate 218 to slide on the adjustment frame 216. The adjustment frame 216 drives the pressing head 213 to decorate or print on the ceramic plate 106. When the pressing angle of the pressure plate 218 is adjusted, the lifting plate 212 is driven to slide on the adjusting plate 210. When the lifting plate 212 moves, it drives the limiting ball 217 to move. The limiting ball 217 drives the swing column 215 to rotate along the axis of the swing column 215. The swing column 215 drives the adjusting frame 216 to rotate. The adjusting frame 216 drives the pressing plate 218 to rotate. The pressing plate 218 drives the pressing head 213 to rotate, changing the pressing angle of the pressing head 213. When the rotating column 214 is driven to rotate, the rotating column 214 drives the swing column 215 to rotate along the axis of the rotating column 214. The swing column 215 drives the adjusting frame 216 and the pressing head 213 to rotate, changing the pressing angle of the pressing head 213, thus realizing the pressing of different prints.
[0051] When different press heads 213 need to be replaced, the drive adjustment base 207 is reset. After the adjustment base 207 is reset, the drive mounting bracket 208 rotates on the adjustment base 207. The mounting bracket 208 drives the lifting block 209 and the adjustment plate 210 to rotate. The adjustment plate 210 is aligned with the rotating frame 206. The drive lifting block 209 moves on the mounting bracket 208, and the drive adjustment plate 210 moves on the lifting block 209, so that the adjustment plate 210 reaches the upper end of the set of press heads 213 that need to be replaced. The drive rotating frame 206 is then activated. The rotating frame 206 drives the press head 213 that needs to be replaced to the lower end of the adjusting plate 210, and drives the lifting block 209 to move on the mounting frame 208. The lifting block 209 drives the adjusting plate 210 to move, and the adjusting plate 210 drives the two sets of clamping blocks 219 to move. The press head 213 that needs to be replaced is placed between the two sets of clamping blocks 219, and the two sets of clamping blocks 219 are driven to move closer to each other to complete the clamping of the press head 213. Then, printing or applying release agent is performed to realize the replacement of the press head 213.
[0052] After the embellishment is completed, the dipping component 1 is driven to dip the ceramic plate 106 in glaze again. Then, the dipping component 1 is placed between the first baffle 303 and the third baffle 305. At the same time, the support wheel 306 supports the ceramic plate 106. The drying plate 302 is started and dries multiple ceramic plates 106. The drying plate 302 is driven to rotate on the drying base 301 to improve the drying efficiency of the drying plate 302. The rotating disk 307 is driven to rotate on the drying base 301. The drying base 301 drives the ceramic plate 106 to rotate, increasing the drying range of the ceramic plate 106.
[0053] This invention is not limited to the specific embodiments described above. Any modifications made by those skilled in the art based on the above concept without creative effort are all within the protection scope of this invention.
Claims
1. A glaze treatment device with orange peel texture characteristics, comprising a dipping assembly (1), characterized in that: The dipping component (1) includes a support column (103), on which a glaze tank (101), a mounting rod (107), and a clamping mechanism are provided. The glaze tank (101) contains a prepared transparent glaze. The clamping mechanism clamps the ceramic disc (106) and moves it. A printing component (2) is slidably mounted on the mounting rod (107). The printing component (2) includes a mounting base (201), on which a fixing plate (202) is provided. The fixing plate (202) is equipped with a support mechanism and an adjustment mechanism. The adjustment mechanism drives a pressing head (213) to embellish the ceramic disc (106). The support mechanism... The structure supports the ceramic disc (106). A sliding frame (203) is slidably mounted on the mounting rod (107). The sliding frame (203) places the ceramic disc (106) on the support assembly. A rotating frame (206) is rotatably mounted on the side of the fixed disc (202). Multiple sets of pressing heads (213) are mounted on the rotating frame (206). A drying assembly (3) is mounted on the side of the glaze box (101). The drying assembly (3) includes a drying base (301). A drying plate (302) and multiple sets of rotating discs (307) are rotatably mounted on the drying base (301). A rotating mechanism is mounted on the rotating discs (307). The drying plate (302) dries the ceramic disc (106).
2. The glaze treatment equipment with orange peel texture characteristics according to claim 1, characterized in that: The clamping mechanism includes a lifting ring (102) slidably mounted on a support column (103). A rotating frame (104) is rotatably mounted on the lifting ring (102). A rotating frame (105) is rotatably mounted on the rotating frame (104). A clamping disc (108), a clamping disc (109), a clamping block (112), and a sliding frame (110) are slidably mounted on the rotating frame (105). The clamping disc (108) and the clamping disc (109) simultaneously clamp the ceramic disc (106). A clamping block (111) is slidably mounted on the sliding frame (110). The clamping block (111) and the clamping block (112) simultaneously clamp the ceramic disc (106).
3. The glaze treatment equipment with orange peel texture characteristics according to claim 1, characterized in that: The sliding frame two (203) is slidably provided with a clamping block three (211), which clamps the ceramic disc (106) together with the sliding frame two (203).
4. The glaze treatment equipment with orange peel texture characteristics according to claim 3, characterized in that: The support mechanism includes a lifting plate (204) that is slidably mounted on a fixed plate (202). Multiple sets of support columns (205) are slidably arranged on the lifting plate (204). The support columns (205) are adjusted according to the shape of the ceramic plate (106) to support different types of ceramic plates (106).
5. The glaze treatment equipment with orange peel texture characteristics according to claim 3, characterized in that: The adjustment mechanism includes an adjustment base (207) slidably mounted on a fixed plate (202), a mounting bracket (208) rotatably mounted on the adjustment base (207), a lifting block (209) slidably mounted on the mounting bracket (208), an adjustment plate (210) slidably mounted on the lifting block (209), and a pressing mechanism mounted on the adjustment plate (210). The pressing mechanism drives a pressing head (213) to press onto the ceramic plate (106).
6. The glaze treatment equipment with orange peel texture characteristics according to claim 5, characterized in that: The pressing mechanism includes a second lifting plate (212) slidably mounted on an adjusting plate (210). A rotating column (214) is rotatably mounted on the adjusting plate (210). A swing column (215) is rotatably mounted on the rotating column (214). An adjusting frame (216) is provided at one end of the swing column (215). A limit ball (217) is provided at the other end of the swing column (215). The limit ball (217) is slidably connected to the second lifting plate (212).
7. The glaze treatment equipment with orange peel texture characteristics according to claim 6, characterized in that: The adjustment frame (216) is slidably provided with a pressing plate (218), and the pressing plate (218) is slidably provided with two sets of clamping blocks (219), which clamp the ceramic plate (106).
8. The glaze treatment equipment with orange peel texture characteristics according to claim 7, characterized in that: Multiple sets of clamping rings (222) are slidably arranged on the rotating frame (206), and the clamping rings (222) clamp the pressing head (213), which is coated with pigment or release agent.
9. The glaze treatment equipment with orange peel texture characteristics according to claim 1, characterized in that: The rotating mechanism includes a first baffle (303), a second baffle (304), and a third baffle (305) mounted on a rotating disk (307). A support wheel (306) is rotatably mounted on the second baffle (304). The ceramic disk (106) is placed between the first baffle (303) and the third baffle (305). The support wheel (306) supports the ceramic disk (106).
10. A method of using a glaze treatment device with orange peel texture characteristics according to claim 1, comprising the following steps, characterized in that: S1. Place the prepared transparent glaze in the glaze box (101) and place the ceramic plate (106) on the clamping mechanism; S2, drive the clamping mechanism, the clamping mechanism drives the ceramic disc (106) to perform the first glazing; S3, drive the clamping mechanism to place the ceramic disk (106) on the support assembly; S4. Drive adjustment mechanism, the adjustment mechanism drives a set of pressing heads (213) to apply pigments or release agents to the ceramic plate (106); S5. After finishing the decoration, the clamping mechanism clamps the ceramic plate (106) again and drives the ceramic plate (106) to dip in the glaze for the second time. S6. After the second glaze application is completed, the clamping mechanism places the ceramic plate (106) on the rotating mechanism. S7. Drive the drying plate (302) to dry the ceramic disc (106), and at the same time drive the rotating mechanism to rotate the ceramic disc (106) to improve the drying efficiency of the ceramic disc (106). Then, fire the dried ceramic disc (106).
Citation Information
Patent Citations
Ceramic glaze surface spraying device
CN105084942A