A ceramic embryo drying device for ceramic pot production
Through the design of flipped components and disturbed components, the problem of uneven drying of ceramic embryos caused by hot air cooling is solved, and more efficient drying quality and uniformity of ceramic embryos are achieved, and product quality is improved.
Patent Information
- Application Number
- CN202411233543.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2044-09-04
AI Technical Summary
When the hot gas is transported to the inside of the box, some of the hot gas will be cooled, causing the cooled air to be deposited in the lower part of the box, affecting the circulation of hot gas, causing uneven ceramic drying and reducing product quality.
The flip assembly and disturbance assembly are designed. The flip assembly realizes the flip over the ceramic embryo through the electric push rod and the electromagnet. The disturbance assembly slowly disturbs the hot air through the fan blade and the gear structure to ensure the uniform distribution of the hot air. The flip assembly includes the electric push rod, the solenoid, the top plate, the bottom plate and the pressure roller. The disturbance assembly includes the hot air fan, the air outlet pipe, the fan blade and the gear structure.
It improves the uniformity and quality of the dried ceramic embryo, reduces the poor drying effect of the lower part of the ceramic embryo, ensures the flowability of hot gas, and improves the overall drying effect of the product.
Smart Images

Figure CN118935976B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of drying devices, and in particular to a ceramic embryo drying device for producing ceramic pots. Background Art
[0002] Any object made of two different types of clay, pottery clay and porcelain clay, as raw materials and through a process of mixing, molding, drying, and firing can be called ceramics. Ceramic drying equipment is required during ceramic processing.
[0003] For example, a ceramic drying device with the announcement number CN109489377B includes a bottom box, the top of which is fixedly connected to the drying box, the left side of the front of the drying box is movably connected to the door frame through a rotating shaft, the right side of the top of the drying box is connected to the air pipe, and the inner cavity of the bottom box is laterally slidably connected to a movable plate, which is driven to rise by the cylinder, and the movable plate is driven to rise by the moving plate, and the rising of the movable plate drives the fixed column to rise, and the rising of the fixed column drives the sleeve barrel to rise, and the sleeve barrel rises and contacts with the tooth plate and the transmission rod, and then the output end of the motor rotates through the transmission rod to drive the sleeve to rotate in coordination with the tooth plate, and the sleeve barrel rotates in coordination with the track while driving the placement plate to rotate, which solves the problem that the existing drying equipment usually puts multiple ceramics into the drying box for drying, but the drying area is only on one side and cannot be dried evenly, reduces the waiting time for subsequent products of the user, reduces the labor of the user, and increases the practicality of the drying equipment. However, when the hot air is transported to the inside of the box, part of the hot air will be cooled, and this part of the cooled air will be deposited in the lower part of the box, affecting the circulation of the hot air and reducing the drying effect of the lower part of the ceramics, which may cause uneven drying of the ceramics and reduce the product quality, and has certain defects.
[0004] Therefore, a pottery embryo drying device for pottery production is proposed to solve the above-mentioned problems. Summary of the Invention
[0005] The object of the present invention is to provide a ceramic embryo drying device for ceramic pot production, so as to solve the problem that when the hot air is transported to the interior of the box, part of the hot air will be cooled. This part of the cooled air will be deposited in the lower part of the box, affecting the circulation of the hot air, which may cause uneven drying of the ceramic and reduce product quality.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a ceramic embryo drying device for pottery production, comprising a base plate, a hot air blower, a ceramic embryo body, and an electric heating plate; a processing box is fixedly connected to the top of the base plate; a box door is hingedly connected to one side of the front of the processing box; and the hot air blower is fixedly installed in the middle of the top of the processing box;
[0007] Also includes:
[0008] The air outlet pipes are symmetrically installed at the lower parts of both sides of the processing box. A flip assembly is provided in the middle of the interior of the processing box. A disturbance assembly is provided on one side of the interior of the processing box. Electric heating plates are symmetrically embedded in the inner side walls of the processing box. An observation window is fixedly installed on the front side of the box door.
[0009] The flip assembly includes an electric push rod symmetrically mounted on the top surface of the processing box, an electromagnet is mounted on the bottom end of the telescopic rod of the electric push rod, a top plate is mounted on the bottom of the electromagnet, a left rod is symmetrically connected to one side of the bottom of the top plate, the bottom end of the left rod is fixedly connected to the bottom plate, a right rod is symmetrically fixedly connected to the top of the bottom plate, the top plate is slidably connected to the left rod, and the top plate is slidably connected to the right rod;
[0010] A card rod is symmetrically installed on one side of the top plate, a card slot is opened on the outer side of the right rod, the card rod is engaged with the card slot, a left plate is fixedly connected to one side of the top of the base plate, a rotating shaft is fixedly installed between the two left rods, the rotating shaft is rotatably connected to the left plate, and a rotating rod is fixedly installed between the two right rods, and the rotating rod is rotatably connected to the processing box;
[0011] The bottom of the top plate is symmetrically fixedly connected to a bottom block, and both sides of the bottom block are symmetrically rotatably connected to a spreading rod, and one end of the spreading rod away from the bottom block is rotatably connected to a mounting plate, and the interior of the mounting plate is rotatably connected to a pressure roller;
[0012] The disturbance component includes a symmetrically arranged air outlet pipe, one end of the air outlet pipe is connected to the hot air blower, one end of the air outlet pipe is connected to a connecting pipe, a middle nozzle and a side nozzle are fixedly installed at the bottom of the connecting pipe, a through hole is provided at the bottom of the air outlet pipe on one side, a rotating shaft is rotatably installed on the inner wall of one side of the processing box, a fan blade is fixedly connected to the outer side of the upper part of the rotating shaft, and one side of the fan blade is located directly below the through hole.
[0013] Preferably, there are no less than two electric push rods, the electromagnet is magnetically connected to the top plate, two left rods are symmetrically arranged, and two right rods are symmetrically arranged.
[0014] By adopting the above technical solution, a turning assembly is provided, and when the ceramic embryo is initially hardened and dried, the lower part of the ceramic embryo is turned to the upper part, thereby reducing the poor drying effect of the lower part of the ceramic embryo and improving the drying quality of the ceramic embryo.
[0015] Preferably, a spring 1 is symmetrically fixedly connected to one side of the top plate close to the clamping rod, an end of the spring 1 away from the top plate is fixedly connected to the outer side of the end of the clamping rod, and the clamping rod is slidably connected to the top plate.
[0016] By adopting the above technical solution, when the locking rod is in the position of the locking slot, the elastic force of spring 1 drives the locking rod to the position of the locking slot. At this time, the top plate is tightly attached to the top of the ceramic body, and the electromagnet is powered off and separated from the top plate, which facilitates the rotation and flipping of the top plate and the bottom plate.
[0017] Preferably, a spring 2 is installed between the two spreading rods, and the two ends of the spring 2 are fixedly connected to the two spreading rods respectively. An auxiliary plate is symmetrically fixedly connected to the middle of the top of the base plate, and the top of the auxiliary plate is arc-shaped. The left side plate and the auxiliary plate on one side are both provided with square grooves for the belt to pass through.
[0018] By adopting the above technical solution, the top plate descends and drives the bottom block to descend, the bottom block drives the expansion rod to press down, the expansion rod drives the pressure roller to contact the upper outer side of the ceramic blank, the expansion rod is squeezed and expanded, and the second spring is stretched, so that the two pressure rollers press the ceramic blank to assist in positioning, thereby reducing the shaking of the ceramic blank.
[0019] Preferably, a main pulley is fixedly connected to the outer side of the lower part of the rotating shaft, a center rod and an auxiliary rod are rotatably connected to the top middle of the base plate, a slave pulley is fixedly connected to the middle part of the outer side of the center rod, and the slave pulley is connected to the main pulley through a belt adapter.
[0020] By adopting the above technical solution, part of the air is ejected through the bottom end of the air outlet pipe, driving the fan blades and the rotating shaft to rotate, and the rotating shaft drives the main pulley and the slave pulley to rotate, so that the slave pulley can drive the center rod and the half gear to rotate.
[0021] Preferably, a half gear is fixedly connected to the upper outer portion of the center rod, an arc-shaped segment tooth block is provided on the outer side of the half gear, and a slave gear is fixedly connected to the top end of the auxiliary rod.
[0022] By adopting the above technical solution, when the half gear is engaged with the slave gear, the half gear drives the slave gear and the connecting plate to rotate.
[0023] Preferably, the half gear is meshedly connected with the slave gear, the auxiliary rod is located on one side of the center rod, and a connecting plate is fixedly connected to the top of the slave gear.
[0024] By adopting the above technical solution, when the half gear is separated from the slave gear, the torsion spring drives the auxiliary rod to reset, so that the vertical plate rotates back and forth.
[0025] Preferably, one end of the connecting plate away from the central rod is fixedly connected to a vertical plate, the vertical plate is located on the inner side of the door, and a torsion spring is sleeved on the outer side of the auxiliary rod.
[0026] By adopting the above technical solution, the vertical plate can be rotated back and forth, thereby slowly disturbing the hot air inside the processing box.
[0027] Preferably, the top end of the torsion spring is fixedly connected to the slave gear, and the bottom end of the torsion spring is fixedly connected to the base plate.
[0028] By adopting the above technical solution, the torsion spring is used to drive the auxiliary rod and the slave gear to reset.
[0029] Compared with the prior art, the present invention has the following advantages: a turning assembly is provided, and when the ceramic embryo is initially hardened and dried, the lower part of the ceramic embryo is turned over to the upper part, thereby reducing the poor drying effect of the lower part of the ceramic embryo and improving the drying quality of the ceramic embryo;
[0030] 1. A flip assembly is provided. Place the ceramic embryo body on the top of the bottom plate, close the box door, power on the electric heating plate for heating, and at the same time, the hot air blower inputs heated gas through the air outlet pipe and the connecting pipe to dry the ceramic embryo. After a period of time, when the ceramic embryo is initially hardened and dried, start the electric push rod, and the electromagnet is energized to adsorb the top plate. The electric push rod drives the top plate to descend until the card rod is in the position of the card slot. The elastic force of the spring drives the card rod to the position of the card slot. At this time, the top plate is close to the top of the ceramic embryo body, the electromagnet is powered off and separated from the top plate, and the electric push rod drives the electromagnet to retract and reset. Then rotate the rotating rod, which drives the right rod, the top plate and the bottom plate to rotate. After rotating 180 degrees , so that the lower part of the ceramic embryo is turned over, thereby improving the drying effect. At the same time, the top plate descends and drives the bottom block to descend. The bottom block drives the expansion rod to press down. The expansion rod drives the pressure roller to contact the upper outer side of the ceramic embryo. The expansion rod is squeezed and expanded, and the second spring is stretched, so that the two pressure rollers press the ceramic embryo to assist in positioning, reducing the shaking of the ceramic embryo. By turning the lower part of the ceramic embryo to the upper part, the poor drying effect of the lower part of the ceramic embryo is reduced, and the drying quality of the ceramic embryo is improved. It solves the problem that part of the hot air will be cooled when it is transported to the inside of the box. This part of the cooled air will be deposited in the lower part of the box, affecting the circulation of the hot air, which may cause uneven drying of the ceramic and reduce the quality of the product.
[0031] 2. A disturbance component is provided. The hot air blower inputs hot air through the air outlet pipe and the connecting pipe. Part of the hot air is ejected downward through the side nozzles and the middle nozzle, and air holes are opened in the center of the top plate and the bottom plate to facilitate drying the ceramic embryos from top to bottom. The other part is ejected through the bottom end of the air outlet pipe, driving the fan blades and the rotating shaft to rotate. The rotating shaft drives the main pulley and the slave pulley to rotate. The slave pulley drives the center rod and the half gear to rotate. The half gear is provided with an arc segment tooth block, so that when the half gear is engaged with the slave gear, the half gear drives the slave gear and the connecting plate to rotate. When the half gear is separated from the slave gear, the torsion spring drives the auxiliary rod and the slave gear to reset, so that the vertical plate rotates back and forth, thereby slowly disturbing the hot air inside the processing box, which is convenient for better drying of the ceramic embryos. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a schematic diagram of the three-dimensional overall structure of the present invention;
[0033] Figure 2 This is a schematic cross-sectional view of the processing box of the present invention;
[0034] Figure 3 For the present invention Figure 2 A in the middle is an enlarged structural diagram;
[0035] Figure 4 For the present invention Figure 2 The enlarged structural diagram at B in the middle;
[0036] Figure 5 This is a schematic diagram of the top plate installation structure of the present invention;
[0037] Figure 6 For the present invention Figure 5 The enlarged structural diagram at C in the middle;
[0038] Figure 7 This is a schematic diagram of the base plate installation structure of the present invention;
[0039] Figure 8 This is a schematic diagram of the top plate pressing down of the present invention;
[0040] Figure 9 This is a schematic diagram of the auxiliary plate installation structure of the present invention;
[0041] Figure 10 For the present invention Figure 9 The enlarged structural diagram at D in the middle;
[0042] Figure 11 For the present invention Figure 9 Enlarged structural diagram at E in the middle.
[0043] Figure: 1, base plate; 2, processing box; 3, box door; 4, hot air blower; 5, air outlet pipe; 6, ceramic body; 7, flip assembly; 71, electric push rod; 72, electromagnet; 73, top plate; 74, left rod; 75, bottom plate; 76, right rod; 77, latching rod; 78, spring 1; 79, latching slot; 710, left side plate; 711, rotating shaft; 712, rotating rod; 713, bottom block; 714, opening rod; 715, mounting plate; 71 6. Pressure roller; 717. Spring 2; 718. Auxiliary plate; 8. Disturbance assembly; 81. Exhaust pipe; 82. Connecting pipe; 83. Middle nozzle; 84. Side nozzle; 85. Rotating shaft; 86. Fan blade; 87. Main pulley; 88. Center rod; 89. Slave pulley; 810. Half gear; 811. Auxiliary rod; 812. Slave gear; 813. Torsion spring; 814. Connecting plate; 815. Vertical plate; 9. Electric heating plate; 10. Observation window. DETAILED DESCRIPTION
[0044] 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.
[0045] See also Figures 1-11 The present invention provides a technical solution: a ceramic embryo drying device for pottery production, comprising a base plate 1, a hot air blower 4, a ceramic embryo body 6 and an electric heating plate 9. The top of the base plate 1 is fixedly connected to a processing box 2, a box door 3 is hinged on one side of the front of the processing box 2, and the hot air blower 4 is fixedly installed in the middle of the top of the processing box 2.
[0046] The air outlet pipes 5 are symmetrically installed at the lower parts of both sides of the processing box 2. The inner wall of the processing box 2 is symmetrically embedded with electric heating plates 9. An observation window 10 is fixedly installed on the front side of the box door 3.
[0047] A flip assembly 7 is provided in the middle of the interior of the processing box 2. The flip assembly 7 includes an electric push rod 71 symmetrically installed on the top surface of the processing box 2. An electromagnet 72 is installed at the bottom end of the telescopic rod of the electric push rod 71. A top plate 73 is installed at the bottom of the electromagnet 72. A left rod 74 is symmetrically connected to one side of the bottom of the top plate 73. The bottom end of the left rod 74 is fixedly connected to a bottom plate 75. The top of the bottom plate 75 is symmetrically fixedly connected to a right rod 76. The top plate 73 is slidably connected to the left rod 74, and the top plate 73 is slidably connected to the right rod 76.
[0048] There are no less than two electric push rods 71, the electromagnet 72 is magnetically connected to the top plate 73, two left rods 74 are symmetrically arranged, and two right rods 76 are symmetrically arranged.
[0049] A clamping rod 77 is symmetrically installed on one side of the top plate 73, and a clamping slot 79 is opened on the outer side of the right rod 76. The clamping rod 77 is engaged with the clamping slot 79. A left side plate 710 is fixedly connected to the top side of the base plate 1. A rotating shaft 711 is fixedly installed between the two left rods 74. The rotating shaft 711 is rotatably connected to the left side plate 710. A rotating rod 712 is fixedly installed between the two right rods 76, and the rotating rod 712 is rotatably connected to the processing box 2.
[0050] A spring 78 is symmetrically fixedly connected to one side of the top plate 73 close to the clamping rod 77. The end of the spring 78 away from the top plate 73 is fixedly connected to the outer side of the end of the clamping rod 77. The clamping rod 77 is slidably connected to the top plate 73.
[0051] The bottom of the top plate 73 is symmetrically fixedly connected to a bottom block 713, and both sides of the bottom block 713 are symmetrically rotatably connected to a spreading rod 714. The end of the spreading rod 714 away from the bottom block 713 is rotatably connected to a mounting plate 715, and the inside of the mounting plate 715 is rotatably connected to a pressure roller 716.
[0052] A spring 2 717 is installed between the two spreading rods 714, and the two ends of the spring 2 717 are fixedly connected to the two spreading rods 714 respectively. An auxiliary plate 718 is symmetrically fixedly connected to the middle of the top of the base plate 1. The top of the auxiliary plate 718 is arc-shaped, and the left side plate 710 and the side auxiliary plate 718 are both provided with square grooves for the belt to pass through.
[0053] A disturbance component 8 is provided on one side of the interior of the processing box 2, and the disturbance component 8 includes a symmetrically arranged air outlet pipe 81, one end of the air outlet pipe 81 is connected to the hot air blower 4, and one end of the air outlet pipe 81 is connected to a connecting pipe 82, and a middle nozzle 83 and a side nozzle 84 are fixedly installed at the bottom of the connecting pipe 82. A through hole is provided at the bottom of one side of the air outlet pipe 81, and a rotating shaft 85 is rotatably installed on the inner wall of one side of the processing box 2, and a fan blade 86 is fixedly connected to the outer side of the upper part of the rotating shaft 85, and one side of the fan blade 86 is located directly below the through hole.
[0054] The lower outer side of the rotating shaft 85 is fixedly connected to the main pulley 87, the top middle of the base plate 1 is rotatably connected to the center rod 88 and the auxiliary rod 811, the outer middle part of the center rod 88 is fixedly connected to the slave pulley 89, and the slave pulley 89 is connected to the main pulley 87 through a belt adapter.
[0055] A half gear 810 is fixedly connected to the upper outer portion of the center rod 88 , an arc-shaped segment tooth block is provided on the outer side of the half gear 810 , and a slave gear 812 is fixedly connected to the top end of the auxiliary rod 811 .
[0056] The half gear 810 is meshed with the slave gear 812 . The auxiliary rod 811 is located on one side of the center rod 88 . A connecting plate 814 is fixedly connected to the top of the slave gear 812 .
[0057] The end of the connecting plate 814 away from the center rod 88 is fixedly connected to the vertical plate 815, and the vertical plate 815 is located on the inner side of the box door 3. The outer side of the auxiliary rod 811 is sleeved with a torsion spring 813, and the top end of the torsion spring 813 is fixedly connected to the gear 812, and the bottom end of the torsion spring 813 is fixedly connected to the base plate 1.
[0058] Example 1: Figures 1-8As shown, a flip assembly 7 is provided. The ceramic embryo body 6 is placed on the top of the bottom plate 75, the box door 3 is closed, the electric heating plate 9 is powered on for heating, and at the same time, the hot air blower 4 inputs heated gas through the outlet pipe 81 and the connecting pipe 82, thereby drying the ceramic embryo. After a period of time, when the ceramic embryo is initially hardened and dried, the electric push rod 71 is started, the electromagnet 72 is energized to adsorb the top plate 73, and the electric push rod 71 drives the top plate 73 to descend until the clamping rod 77 is in the position of the clamping groove 79. The elastic force of the spring 1 78 drives the clamping rod 77 to the position of the clamping groove 79.
[0059] At this time, the top plate 73 is close to the top of the ceramic body 6, the electromagnet 72 is powered off and separated from the top plate 73, the electric push rod 71 drives the electromagnet 72 to retract and reset, and then the rotating rod 712 is rotated, and the rotating rod 712 drives the right rod 76, the top plate 73 and the bottom plate 75 to rotate. After rotating 180 degrees, the lower part of the ceramic body is turned over, thereby improving the drying effect. At the same time, the top plate 73 descends and drives the bottom block 713 to descend, and the bottom block 713 drives the opening rod 714 to press down, and the opening rod 714 drives the pressing roller 716 to contact the upper part of the ceramic body. On the outside of the box, the expansion rod 714 is squeezed and expanded, and the second spring 717 is stretched, so that the two pressing rollers 716 press the ceramic embryo to assist in positioning, reducing the shaking of the ceramic embryo. By turning the lower part of the ceramic embryo to the upper part, the poor drying effect of the lower part of the ceramic embryo is reduced, and the drying quality of the ceramic embryo is improved. The problem that part of the hot air will be cooled when it is transported to the inside of the box and this part of the cooled air will be deposited in the lower part of the box, affecting the circulation of the hot air, which may cause uneven drying of the ceramic and reduce the quality of the product is solved.
[0060] Example 2: Figures 9-11 As shown, a disturbance component 8 is provided, and the hot air blower 4 inputs hot air through the air outlet pipe 81 and the connecting pipe 82. Part of the hot air is ejected downward through the side nozzles 84 and the middle nozzle 83, and air holes are opened in the centers of the top plate 73 and the bottom plate 75 to facilitate drying the ceramic blank from top to bottom. The other part of the hot air is ejected through the bottom end of the air outlet pipe 81, driving the fan blades 86 and the rotating shaft 85 to rotate, and the rotating shaft 85 drives the main pulley 87 and the secondary pulley 89 to rotate.
[0061] The slave pulley 89 drives the central rod 88 and the half gear 810 to rotate. The half gear 810 is provided with an arc-shaped segment tooth block, so that when the half gear 810 is engaged with the slave gear 812, the half gear 810 drives the slave gear 812 and the connecting plate 814 to rotate. When the half gear 810 is separated from the slave gear 812, the torsion spring 813 drives the auxiliary rod 811 and the slave gear 812 to return to their original position, causing the vertical plate 815 to rotate back and forth, thereby slowly disturbing the hot air inside the processing box 2, facilitating better drying of the ceramic embryos.
[0062] Working principle: When using this device, first, Figures 1-11As shown, the ceramic embryo body 6 is placed on top of the bottom plate 75, the box door 3 is closed, the electric heating plate 9 is powered on for heating, and at the same time, the hot air blower 4 inputs heated gas through the outlet pipe 81 and the connecting pipe 82, thereby drying the ceramic embryo. After a period of time, when the ceramic embryo is initially hardened and dried, the electric push rod 71 is started, the electromagnet 72 is energized to attract the top plate 73, and the electric push rod 71 drives the top plate 73 to descend until the locking rod 77 is in the position of the locking groove 79. The elastic force of the spring 1 78 drives the locking rod 77 to the position of the locking groove 79.
[0063] At this time, the top plate 73 is in close contact with the top of the ceramic body 6, the electromagnet 72 is powered off and separated from the top plate 73, and the electric push rod 71 drives the electromagnet 72 to retract and reset, and then the rotating rod 712 is rotated, which drives the right rod 76, the top plate 73 and the bottom plate 75 to rotate. After rotating 180 degrees, the lower part of the ceramic body is turned over, thereby improving the drying effect. At the same time, the top plate 73 descends, driving the bottom block 713 to descend, and the bottom block 713 drives the expansion rod 714 to press down. The expansion rod 714 drives the pressure roller 716 to contact the upper outer side of the ceramic body. The expansion rod 714 is squeezed and expanded, and the second spring 717 is stretched, so that the two pressure rollers 716 press the ceramic body to assist in positioning, thereby reducing the shaking of the ceramic body.
[0064] The hot air blower 4 inputs hot air through the air outlet pipe 81 and the connecting pipe 82. Part of the hot air is ejected downward through the side nozzles 84 and the middle nozzle 83. The top plate 73 and the bottom plate 75 are both provided with air holes in the center to facilitate drying the ceramic blank from top to bottom. The other part of the hot air is ejected through the bottom end of the air outlet pipe 81, driving the fan blades 86 and the rotating shaft 85 to rotate. The rotating shaft 85 drives the main pulley 87 and the slave pulley 89 to rotate. The slave pulley 89 drives the center rod 88 and the half gear 810 to rotate.
[0065] The half gear 810 is provided with an arc-shaped segment tooth block, so that when the half gear 810 is engaged with the slave gear 812, the half gear 810 drives the slave gear 812 and the connecting plate 814 to rotate. When the half gear 810 is separated from the slave gear 812, the torsion spring 813 drives the auxiliary rod 811 and the slave gear 812 to return to their original position, causing the vertical plate 815 to rotate back and forth, thereby slowly disturbing the hot air inside the processing box 2, facilitating better drying of the ceramic embryos.
[0066] The contents not described in detail in this specification belong to the prior art known to those skilled in the art.
[0067] 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 ceramic embryo drying device for producing ceramic pots, comprising a base plate (1), a hot air blower (4), a ceramic embryo body (6) and an electric heating plate (9), wherein the top of the base plate (1) is fixedly connected to a processing box (2), a box door (3) is hinged on one side of the front of the processing box (2), and the hot air blower (4) is fixedly installed in the middle of the top of the processing box (2); It is characterized by: Also includes: The air outlet pipe (5) is symmetrically installed at the lower part of both sides of the processing box (2); a flip assembly (7) is provided in the middle of the interior of the processing box (2); a disturbance assembly (8) is provided on one side of the interior of the processing box (2); an electric heating plate (9) is symmetrically embedded in the inner wall of the processing box (2); and an observation window (10) is fixedly installed on the front side of the box door (3); The flip assembly (7) comprises an electric push rod (71) symmetrically mounted on the top surface of the processing box (2); an electromagnet (72) is mounted on the bottom end of the telescopic rod of the electric push rod (71); a top plate (73) is mounted on the bottom of the electromagnet (72); a left rod (74) is symmetrically connected to one side of the bottom of the top plate (73); a bottom end of the left rod (74) is fixedly connected to a bottom plate (75); a right rod (76) is symmetrically fixedly connected to the top of the bottom plate (75); the top plate (73) is slidably connected to the left rod (74); and the top plate (73) is slidably connected to the right rod (76); A clamping rod (77) is symmetrically installed on one side of the top plate (73), a clamping slot (79) is opened on the outer side of the right rod (76), and the clamping rod (77) is engaged with the clamping slot (79). A left side plate (710) is fixedly connected to one side of the top of the base plate (1), a rotating shaft (711) is fixedly installed between the two left rods (74), and the rotating shaft (711) is rotatably connected to the left side plate (710), and a rotating rod (712) is fixedly installed between the two right rods (76), and the rotating rod (712) is rotatably connected to the processing box (2); The bottom of the top plate (73) is symmetrically fixedly connected to a bottom block (713), and both sides of the bottom block (713) are symmetrically rotatably connected to a spreading rod (714), and one end of the spreading rod (714) away from the bottom block (713) is rotatably connected to a mounting plate (715), and the interior of the mounting plate (715) is rotatably connected to a pressure roller (716); The disturbance component (8) comprises a symmetrically arranged air outlet pipe (81), one end of the air outlet pipe (81) is connected to the hot air blower (4), one end of the air outlet pipe (81) is connected to a connecting pipe (82), a middle nozzle (83) and a side nozzle (84) are fixedly installed at the bottom of the connecting pipe (82), a through hole is provided at the bottom of one side of the air outlet pipe (81), a rotating shaft (85) is rotatably installed on the inner wall of one side of the processing box (2), a fan blade (86) is fixedly connected to the outer side of the upper part of the rotating shaft (85), and one side of the fan blade (86) is located directly below the through hole.
2. The pottery embryo drying device for pottery production according to claim 1, characterized in that: There are no less than two electric push rods (71), the electromagnet (72) is magnetically connected to the top plate (73), two left rods (74) are symmetrically arranged, and two right rods (76) are symmetrically arranged.
3. The pottery embryo drying device for pottery production according to claim 1, characterized in that: A spring 1 (78) is symmetrically fixedly connected to one side of the top plate (73) close to the clamping rod (77), and an end of the spring 1 (78) away from the top plate (73) is fixedly connected to the outer side of the end of the clamping rod (77), and the clamping rod (77) is slidably connected to the top plate (73).
4. The pottery embryo drying device for pottery production according to claim 1, characterized in that: A second spring (717) is installed between the two opening rods (714), and the two ends of the second spring (717) are fixedly connected to the two opening rods (714) respectively. An auxiliary plate (718) is symmetrically fixedly connected to the middle of the top of the base plate (1), and the top of the auxiliary plate (718) is arranged in an arc shape. The left side plate (710) and the auxiliary plate (718) on one side are both provided with square grooves for the belt to pass through.
5. The pottery embryo drying device for pottery production according to claim 1, characterized in that: The lower outer side of the rotating shaft (85) is fixedly connected to a main pulley (87), the top middle of the base plate (1) is rotatably connected to a center rod (88) and an auxiliary rod (811), the outer middle of the center rod (88) is fixedly connected to a slave pulley (89), and the slave pulley (89) is connected to the main pulley (87) through a belt adapter.
6. The pottery embryo drying device for pottery production according to claim 5, characterized in that: A half gear (810) is fixedly connected to the upper outer portion of the center rod (88), an arc-shaped segment tooth block is provided on the outer side of the half gear (810), and a slave gear (812) is fixedly connected to the top end of the auxiliary rod (811).
7. The pottery embryo drying device for pottery production according to claim 6, characterized in that: The half gear (810) is meshedly connected with the slave gear (812), the auxiliary rod (811) is located on one side of the center rod (88), and a connecting plate (814) is fixedly connected to the top of the slave gear (812).
8. The pottery embryo drying device for pottery production according to claim 7, characterized in that: One end of the connecting plate (814) away from the central rod (88) is fixedly connected to a vertical plate (815), and the vertical plate (815) is located on the inner side of the door (3). The outer side of the auxiliary rod (811) is sleeved with a torsion spring (813).
9. The pottery embryo drying device for pottery production according to claim 8, characterized in that: The top end of the torsion spring (813) is fixedly connected to the slave gear (812), and the bottom end of the torsion spring (813) is fixedly connected to the base plate (1).
Citation Information
Patent Citations
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