CN217168970U - Small-size ceramic bowl glazing device - Google Patents

Small-size ceramic bowl glazing device Download PDF

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Publication number
CN217168970U
CN217168970U CN202122465638.0U CN202122465638U CN217168970U CN 217168970 U CN217168970 U CN 217168970U CN 202122465638 U CN202122465638 U CN 202122465638U CN 217168970 U CN217168970 U CN 217168970U
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block
transmission shaft
bevel gear
container
bearing seat
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CN202122465638.0U
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Chinese (zh)
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杜金盛
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Zibo Fuxing Ceramic Color and Glaze Co.,Ltd.
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Individual
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Abstract

The utility model relates to a glazing device especially relates to a small-size ceramic bowl glazing device. The technical problem is as follows: the small ceramic bowl glazing device has high working efficiency and reduces labor force. The technical scheme is as follows: a small ceramic bowl glazing device comprises a container, a cover, a first handle, a lifting mechanism and a clamping mechanism, wherein the cover is arranged on the upper portion of the container in an inward sliding mode, the first handle is arranged on one side of the cover, the lifting mechanism is arranged in the middle of the container, and the clamping mechanism is arranged on one side of the lifting mechanism. Has the advantages that: through rotating the turning block, torsion spring is compressed to the turning block drives first connecting block and rotates, and first connecting block drives the sliding block and slides to the guide block, and second reset spring is compressed.

Description

Small ceramic bowl glazing device
Technical Field
The utility model relates to a glazing device especially relates to a small-size ceramic bowl glazing device.
Background
Along with the continuous broadening of the application field of ceramics, more and more people pay attention to the application of ceramics, as a novel industrial material, the application surface of ceramics is also continuously developed, and because ceramics have very strong aesthetic value, the firing of ceramics is more and more taken the attention of people, because people pursue more and more the meaning to the aesthetics now, so the glaze on ceramics becomes an indispensable part in the ceramic firing process, general glaze on ceramics adopts the mode of glaze on the manual work to go on, but because glaze on the manual work can lead to the existence of the hand print at the bowl mouth, influence pleasing to the eye, and glaze on the manual work basically leans on the experience of hand artists, this leads to the thickness unevenness of the glaze on the ceramics, is unfavorable for the firing of ceramics.
In the glaze production process on current pottery, glaze mainly adopts the manual work to use the spray gun to go on glaze by hand, and general requirement can be satisfied to this kind of mode, but intensity of labour is big, work efficiency is low, and hardly guarantees the homogeneity of glaze, can lead to the existence hand stamp of bowl mouth department to glaze by hand simultaneously.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of low working efficiency and high labor intensity, the technical problem is as follows: the small ceramic bowl glazing device has high working efficiency and reduces labor force.
The technical scheme is as follows: a small ceramic bowl glazing device comprises a container, a cover, a first handle, a lifting mechanism and a clamping mechanism, wherein the cover is arranged on the upper portion of the container in an inward sliding mode, the first handle is arranged on one side of the cover, the lifting mechanism is arranged in the middle of the container, and the clamping mechanism is arranged on one side of the lifting mechanism.
More preferably, elevating system is including first supporting block, the bracing piece, first reset spring, primary shaft bearing, the second handle, first connecting block and fixture block, the container right part is equipped with first supporting block, be connected with the bracing piece on the first supporting block rear portion, the movable primary shaft bearing that is equipped with in bracing piece upper portion outside, be connected with first reset spring between primary shaft bearing and the first supporting block, primary shaft bearing one side is connected with the second handle, second handle and first supporting block sliding fit, primary shaft bearing one side slidingtype is equipped with first connecting block, primary connecting block upper portion is equipped with the fixture block, fixture block and primary shaft bearing chucking cooperation.
More preferably, clamping mechanism is including the base, the turning block, torsion spring, the guide block, the second connecting block, second reset spring and sliding block, first connecting block bottom is equipped with the turning block, be connected with torsion spring between turning block and the first connecting block, the turning block bottom is equipped with the base, the base upper portion outside evenly is equipped with three guide block, the inside slidingtype of guide block is equipped with the sliding block, be connected with second reset spring between sliding block and the guide block, the turning block outside evenly is equipped with three second connecting block, second connecting block and sliding block sliding fit.
More preferably, still including rabbling mechanism, the rabbling mechanism is including the rack, third reset spring, first transmission shaft, the straight-teeth gear, first bevel gear, the secondary drive shaft, second bevel gear and agitator, first supporting block front portion internal sliding type is equipped with the rack, be connected with third reset spring between rack and the first supporting block, the internal rotation type in container right part is connected with first transmission shaft, be connected with the straight-teeth gear on the first transmission shaft right part, straight-teeth gear and rack mesh, be connected with first bevel gear on the first transmission shaft left part, the rotary type is connected with the secondary drive shaft in the container, be equipped with the second bevel gear on the secondary drive shaft front portion, first bevel gear meshes with second bevel gear mutually, the last rotation type in secondary drive shaft rear portion is equipped with the agitator.
More preferably, still including grinding machanism, grinding machanism is including the belt pulley, the third transmission shaft, the flat belt, the second supporting shoe, third bevel gear, the fourth transmission shaft, fourth bevel gear and the dish of polishing, container rear portion internal rotation formula is connected with the third transmission shaft, third transmission shaft one side all is connected with the belt pulley with first transmission shaft left part, around having the flat belt on the belt pulley, container right part rear side is equipped with the second supporting shoe, the rotation type is connected with the fourth transmission shaft on the second supporting shoe, be connected with fourth bevel gear on the fourth transmission shaft middle part, third transmission shaft one side is connected with third bevel gear, third bevel gear meshes with fourth bevel gear mutually, the rotation type is connected with the dish of polishing on the fourth transmission shaft.
More preferably, still including moving mechanism, moving mechanism is equipped with the second bearing seat including second bearing seat, pivot, axle sleeve, fourth reset spring and wheel, the even symmetry around the container bottom, and the interior rotary type of second bearing seat lower part is equipped with the pivot, and the cover is equipped with the axle sleeve in the pivot, and the rotation type is connected with the wheel on the axle sleeve middle part, all is connected with fourth reset spring between second bearing seat and the axle sleeve.
More preferably, still including tray mechanism, tray mechanism is equipped with the third supporting shoe including third supporting shoe, sponge and buckle on one side of the first supporting shoe, is equipped with the sponge on the third supporting shoe, is equipped with the buckle in the sponge, buckle and third supporting shoe clamping-fit.
More preferably, rubber is provided on the outside of the first handle.
Compared with the prior art, the utility model has the advantages of as follows: 1. the torsion spring is compressed by rotating the rotating block, so that the rotating block drives the first connecting block to rotate, the first connecting block drives the sliding block to slide in the guide block, the second reset spring is compressed, when force is not applied to the rotating block any more, the rotating block drives the first connecting block to rotate to the original position under the reset action of the torsion spring, when the second connecting block is not influenced by resistance, the sliding block slides to the outer side of the guide block under the reset action of the second reset spring, and finally the purpose of clamping the ceramic bowl can be achieved;
2. the rack is extruded by sliding downwards through the second handle, so that the rack slides downwards and is meshed with the straight gear, the straight gear drives the first transmission shaft to rotate, the first transmission shaft drives the first bevel gear to rotate, the second bevel gear drives the second transmission shaft to rotate, the second transmission shaft drives the stirrer to rotate, and finally, the purpose of stirring the glaze can be achieved;
3. the belt pulley is driven to rotate through the first transmission shaft, the belt pulley is matched with the flat belt, so that the belt pulley drives the third transmission shaft to rotate, the third transmission shaft drives the third bevel gear to rotate, the fourth bevel gear drives the polishing disc to rotate, and finally the purpose of polishing the ceramic bowl can be achieved.
Drawings
Fig. 1 is a schematic view of the three-dimensional structure of the present invention.
Fig. 2 is a schematic view of a partial three-dimensional structure of the present invention.
Fig. 3 is a schematic view of the three-dimensional structure of the lifting mechanism of the present invention.
Fig. 4 is a schematic perspective view of the clamping mechanism of the present invention.
Fig. 5 is a schematic view of the three-dimensional structure of the stirring mechanism of the present invention.
Fig. 6 is a schematic view of a three-dimensional structure of the polishing mechanism of the present invention.
Fig. 7 is a schematic perspective view of the moving mechanism of the present invention.
Fig. 8 is a schematic perspective view of the tray mechanism of the present invention.
The meaning of the reference symbols in the figures: 1. a container, 2, a cover, 3, a first handle, 4, a lifting mechanism, 40, a first supporting block, 41, a supporting rod, 42, a first return spring, 43, a first bearing seat, 44, a second handle, 45, a first connecting block, 46, a clamping block, 5, a clamping mechanism, 50, a base, 51, a rotating block, 52, a torsion spring, 53, a guiding block, 54, a second connecting block, 55, a second return spring, 56, a sliding block, 6, a stirring mechanism, 60, a rack, 61, a third return spring, 62, a first transmission shaft, 63, a straight gear, 64, a first bevel gear, 65, a second transmission shaft, 66, a second bevel gear, 67, a stirrer, 7, a polishing mechanism, 70, a belt pulley, 71, a third transmission shaft, 72, a flat belt, 73, a second supporting block, 74, a third bevel gear, 75, a fourth transmission shaft, 76, a fourth bevel gear, 77, a polishing disk, 8. the moving mechanism 80, the second bearing block 81, the rotating shaft 82, the shaft sleeve 83, the fourth return spring 84, the wheel 9, the tray mechanism 90, the third supporting block 91, the sponge 92 and the buckle.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below, and it should be apparent that the described embodiments are only some embodiments of the present invention, but not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Example 1
A small ceramic bowl glazing device is shown in figures 1-4 and comprises a container 1, a cover 2, a first handle 3, a lifting mechanism 4 and a clamping mechanism 5, wherein the cover 2 is arranged on the upper portion of the container 1 in a sliding mode, the first handle 3 is arranged on the front side of the cover 2, the lifting mechanism 4 is arranged on the right side of the middle of the container 1, and the clamping mechanism 5 is arranged on the right side of the lifting mechanism 4.
When needs use ceramic bowl glazing device, pulling the first in command 3, the first in command 3 drives lid 2 and slides forward, lid 2 breaks away from with container 1, pour the frit into container 1 afterwards, thereby start clamping mechanism 5, clamping mechanism 5 work presss from both sides tightly the ceramic bowl, and then rotate elevating system 4, elevating system 4 drives the ceramic bowl and rotates, rotate to 1 upside of container, pulling elevating system 4 afterwards, elevating system 4 work is to ceramic bowl lapse to container 1 in, thereby ceramic bowl and frit contact, finally can realize going on the purpose of frit to the ceramic bowl.
The lifting mechanism 4 comprises a first supporting block 40, a supporting rod 41, a first return spring 42, a first bearing seat 43, a second handle 44, a first connecting block 45 and a clamping block 46, the first supporting block 40 is arranged on the right side of the container 1, the supporting rod 41 is connected to the upper side of the rear portion of the first supporting block 40, the first bearing seat 43 is movably arranged on the outer side of the upper portion of the supporting rod 41, the first return spring 42 is connected between the first bearing seat 43 and the first supporting block 40, the second handle 44 is connected to the front side of the first bearing seat 43, the second handle 44 is in sliding fit with the first supporting block 40, the first connecting block 45 is slidably arranged on the right side of the first bearing seat 43, the clamping block 46 is arranged on the inner side of the upper portion of the first connecting block 45, and the clamping block 46 is in clamping fit with the first bearing seat 43.
When ceramic bowls need to be fed, the first bearing seat 43 is rotated, the first bearing seat 43 drives the first connecting block 45 to rotate, the first connecting block 45 drives the ceramic bowls to rotate to the upper side of the container 1, then the second handle 44 is pulled along the first supporting block 40, the second handle 44 drives the first bearing seat 43 to slide downwards, the first return spring 42 is compressed, the first bearing seat 43 drives the first connecting block 45 to slide downwards, the first connecting block 45 drives the ceramic bowls to slide downwards and further slide to the inner side of the container 1, the ceramic bowls are contacted with glaze, when a user does not apply force to the second handle 44 any more, under the reset action of the first return spring 42, the second handle 44 drives the first bearing seat 43 to slide upwards to the original position, the first connecting block 45 is driven to slide upwards, the first connecting block 45 drives the ceramic bowls to slide upwards, and then the first bearing seat 43 is rotated, thereby driving the ceramic bowl to rotate to the original position and finally realizing the purpose of feeding the ceramic bowl.
Clamping mechanism 5 is including base 50, turning block 51, torsion spring 52, guide block 53, second connecting block 54, second reset spring 55 and sliding block 56, first connecting block 45 bottom downside is equipped with turning block 51, be connected with torsion spring 52 between turning block 51 and the first connecting block 45, turning block 51 bottom is equipped with base 50, base 50 upper portion outside evenly is equipped with three guide block 53, the inside front side sliding type of guide block 53 is equipped with sliding block 56, be connected with second reset spring 55 between sliding block 56 and the guide block 53, the turning block 51 outside evenly is equipped with three second connecting block 54, second connecting block 54 and sliding block 56 sliding fit.
When the ceramic bowl needs to be clamped, the rotating block 51 is rotated, the torsion spring 52 is deformed, then the rotating block 51 drives the second connecting block 54 to rotate, so that the second connecting block 54 is limited by the guide block 53, the second connecting block 54 drives the sliding block 56 to slide in the guide block 53, at this time, the second return spring 55 is compressed, then the first connecting block 45 is pulled downwards, the first connecting block 45 drives the rotating block 51 and the base 50 to slide downwards, so that the base 50 drives the guide block 53 to slide downwards to be in contact with the ceramic bowl, when a user does not apply force to the rotating block 51 any more, under the reset action of the torsion spring 52, the rotating block 51 drives the second connecting block 54 to rotate to the original position, when the second connecting block 54 is not influenced by resistance, under the reset action of the second return spring 55, the sliding block 56 slides to the outer side of the guide block 53, therefore, the sliding block 56 is in contact with the ceramic bowl, so that the sliding block 56 clamps the ceramic bowl, and finally the purpose of clamping the ceramic bowl can be achieved.
Example 2
On the basis of the embodiment 1, as shown in fig. 5 to 8, the stirring device 6 is further included, the stirring device 6 includes a rack 60, a third return spring 61, a first transmission shaft 62, and a spur gear 63, first bevel gear 64, second transmission shaft 65, second bevel gear 66 and agitator 67, the sliding formula of the anterior inboard of first supporting block 40 is equipped with rack 60, be connected with third reset spring 61 between rack 60 and the first supporting block 40, container 1 right part inboard rotary type is connected with first transmission shaft 62, first transmission shaft 62 right part upside is connected with straight-teeth gear 63, straight-teeth gear 63 meshes with rack 60 mutually, first transmission shaft 62 left part upside is connected with first bevel gear 64, container 1 inboard rotary type is connected with second transmission shaft 65, the anterior upside of second transmission shaft 65 is equipped with second bevel gear 66, first bevel gear 64 meshes with second bevel gear 66, second transmission shaft 65 rear portion upside rotary type is equipped with agitator 67.
When the glaze is required to be stirred, the second handle 44 slides downwards to extrude the rack 60, so that the rack 60 slides downwards along the first supporting block 40, the third return spring 61 is compressed, the rack 60 slides downwards to be meshed with the straight gear 63, the straight gear 63 rotates to drive the first transmission shaft 62 to rotate, then the first transmission shaft 62 drives the first bevel gear 64 to rotate, the first bevel gear 64 is meshed with the second bevel gear 66, so that the second bevel gear 66 drives the second transmission shaft 65 to rotate, the second transmission shaft 65 drives the stirrer 67 to rotate, and the stirrer 67 rotates to stir the glaze, when the second handle 44 slides upwards to not extrude the rack 60, under the resetting action of the third return spring 61, the rack 60 slides upwards to be meshed with the straight gear 63, so that the straight gear 63 rotates reversely to drive the first transmission shaft 62 to rotate, and then drive agitator 67 counter-rotation, when rack 60 and gear engagement, agitator 67 stopped rotating, can realize the purpose of stirring the frit finally.
The grinding device is characterized by further comprising a grinding mechanism 7, the grinding mechanism 7 comprises a belt pulley 70, a third transmission shaft 71, a flat belt 72, a second supporting block 73, a third bevel gear 74, a fourth transmission shaft 75, a fourth bevel gear 76 and a grinding disc 77, the inner side of the rear portion of the container 1 is rotatably connected with the third transmission shaft 71, the left side of the third transmission shaft 71 and the left side of the first transmission shaft 62 are both connected with the belt pulley 70, the flat belt 72 is wound on the belt pulley 70, the rear side of the right portion of the container 1 is provided with the second supporting block 73, the upper side of the second supporting block 73 is rotatably connected with the fourth transmission shaft 75, the upper side of the middle portion of the fourth transmission shaft 75 is connected with the fourth bevel gear 76, the right side of the third transmission shaft 71 is connected with the third bevel gear 74, the third bevel gear 74 is meshed with the fourth bevel gear 76, and the upper side of the fourth transmission shaft 75 is rotatably connected with the grinding disc 77.
When excessive glaze on the lower side of the ceramic bowl needs to be ground, the first connecting block 45 is rotated rightwards, the first connecting block 45 drives the ceramic bowl to rotate rightwards, then the ceramic bowl rotates rightwards to be in contact with the grinding disc 77, so that the first transmission shaft 62 drives the belt pulley 70 to rotate, further under the matching of the belt pulley 70 and the flat belt 72, the belt pulley 70 drives the third transmission shaft 71 to rotate, the third transmission shaft 71 drives the third bevel gear 74 to rotate, the third bevel gear 74 is meshed with the fourth bevel gear 76, the fourth bevel gear 76 drives the fourth transmission shaft 75 to rotate, the fourth transmission shaft 75 drives the grinding disc 77 to rotate, then the grinding disc 77 rotates to grind the excessive glaze on the lower side of the ceramic bowl, and finally the purpose of grinding the ceramic bowl can be achieved.
Still including moving mechanism 8, moving mechanism 8 is including second bearing frame 80, pivot 81, axle sleeve 82, fourth reset spring 83 and wheel 84, and the even symmetry in both sides is equipped with second bearing frame 80 around the container 1 bottom, and the rotary type is equipped with pivot 81 in the second bearing frame 80 lower part, and the cover is equipped with axle sleeve 82 on the pivot 81, and axle sleeve 82 middle part upside rotary type is connected with wheel 84, all is connected with fourth reset spring 83 between second bearing frame 80 and the axle sleeve 82.
When needs move equipment, under the action of gravity of the glaze in the container 1, make the second bearing housing 80 slide downwards, fourth reset spring 83 is compressed, promote container 1 afterwards, thereby container 1 drives wheel 84 and moves on ground, wheel 84 drives pivot 81 and rotates, when need not move equipment, stop promoting container 1, under the condition effect that the glaze runs out of, under the reset action of fourth reset spring 83, make second bearing housing 80 slide upwards, can realize finally moving equipment's purpose.
Still including tray mechanism 9, tray mechanism 9 is equipped with third supporting shoe 90 including third supporting shoe 90, sponge 91 and buckle 92 on the left of first supporting shoe 40, and third supporting shoe 90 upside is equipped with sponge 91, and the sponge 91 inboard is equipped with buckle 92, buckle 92 and the chucking cooperation of third supporting shoe 90.
When the ceramic bowl unloading of good glaze is gone up to needs, pulling buckle 92 forward, make buckle 92 and sponge 91 contactless, pulling sponge 91 downwards afterwards, thereby promote buckle 92 in to sponge 91, and then buckle 92 and sponge 91 chucking cooperation, first connecting block 45 drives the ceramic bowl afterwards and rotates to the sponge 91 upside, rotate turning block 51 afterwards, thereby turning block 51 is not to the ceramic bowl chucking, and then the ceramic bowl slides down to the sponge 91 upside, can realize finally carrying out the purpose of unloading to the ceramic bowl.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (6)

1. A small ceramic bowl glazing device is characterized by comprising a container (1), a cover (2), a first handle (3), a lifting mechanism (4) and a clamping mechanism (5), wherein the cover (2) is arranged on the upper portion of the container (1) in an inward sliding manner, the first handle (3) is arranged on one side of the cover (2), the lifting mechanism (4) is arranged in the middle of the container (1), and the clamping mechanism (5) is arranged on one side of the lifting mechanism (4);
The lifting mechanism (4) comprises a first supporting block (40), a supporting rod (41), a first return spring (42), a first bearing seat (43), a second handle (44), a first connecting block (45) and a clamping block (46), a first supporting block (40) is arranged at the right part of the container (1), a supporting rod (41) is connected to the rear part of the first supporting block (40), a first bearing seat (43) is movably arranged on the outer side of the upper part of the supporting rod (41), a first return spring (42) is connected between the first bearing seat (43) and the first supporting block (40), a second handle (44) is connected to one side of the first bearing seat (43), the second handle (44) is in sliding fit with the first supporting block (40), a first connecting block (45) is arranged on one side of the first bearing seat (43) in a sliding manner, a clamping block (46) is arranged on the upper part of the first connecting block (45), and the clamping block (46) is in clamping fit with the first bearing seat (43);
clamping mechanism (5) is including base (50), turning block (51), torsion spring (52), guide block (53), second connecting block (54), second reset spring (55) and sliding block (56), first connecting block (45) bottom is equipped with turning block (51), be connected with torsion spring (52) between turning block (51) and first connecting block (45), turning block (51) bottom is equipped with base (50), base (50) upper portion outside evenly is equipped with three guide block (53), the inside slidingtype of guide block (53) is equipped with sliding block (56), be connected with second reset spring (55) between sliding block (56) and guide block (53), the turning block (51) outside evenly is equipped with three second connecting block (54), second connecting block (54) and sliding block (56) sliding fit.
2. The small ceramic bowl glazing device according to claim 1, further comprising a stirring mechanism (6), wherein the stirring mechanism (6) comprises a rack (60), a third return spring (61), a first transmission shaft (62), a straight gear (63), a first bevel gear (64), a second transmission shaft (65), a second bevel gear (66) and a stirrer (67), the rack (60) is arranged in the front of the first supporting block (40) in a sliding manner, the third return spring (61) is connected between the rack (60) and the first supporting block (40), the first transmission shaft (62) is rotatably connected to the right portion of the container (1), the straight gear (63) is connected to the right portion of the first transmission shaft (62), the straight gear (63) is engaged with the rack (60), the first bevel gear (64) is connected to the left portion of the first transmission shaft (62), the second transmission shaft (65) is rotatably connected to the container (1), a second bevel gear (66) is arranged on the front part of the second transmission shaft (65), the first bevel gear (64) is meshed with the second bevel gear (66), and a stirrer (67) is rotationally arranged on the rear part of the second transmission shaft (65).
3. The small ceramic bowl glazing device according to claim 2, further comprising a polishing mechanism (7), wherein the polishing mechanism (7) comprises a belt pulley (70), a third transmission shaft (71), a flat belt (72), a second supporting block (73), a third bevel gear (74), a fourth transmission shaft (75), a fourth bevel gear (76) and a polishing disc (77), the third transmission shaft (71) is rotatably connected to the rear portion of the container (1), the belt pulley (70) is respectively connected to one side of the third transmission shaft (71) and the left portion of the first transmission shaft (62), the flat belt (72) is wound on the belt pulley (70), the second supporting block (73) is arranged on the rear side of the right portion of the container (1), the fourth transmission shaft (75) is rotatably connected to the second supporting block (73), the fourth bevel gear (76) is connected to the middle portion of the fourth transmission shaft (75), the third bevel gear (74) is connected to one side of the third transmission shaft (71), the third bevel gear (74) is meshed with the fourth bevel gear (76), and the fourth transmission shaft (75) is rotatably connected with a polishing disc (77).
4. The small ceramic bowl glazing device according to claim 3, further comprising a moving mechanism (8), wherein the moving mechanism (8) comprises a second bearing seat (80), a rotating shaft (81), a shaft sleeve (82), a fourth return spring (83) and wheels (84), the second bearing seat (80) is uniformly and symmetrically arranged at the front and back of the bottom of the container (1), the rotating shaft (81) is rotatably arranged in the lower portion of the second bearing seat (80), the shaft sleeve (82) is sleeved on the rotating shaft (81), the wheels (84) are rotatably connected to the middle portion of the shaft sleeve (82), and the fourth return spring (83) is connected between the second bearing seat (80) and the shaft sleeve (82).
5. The small ceramic bowl glazing device according to claim 4, further comprising a tray mechanism (9), wherein the tray mechanism (9) comprises a third supporting block (90), a sponge (91) and a buckle (92), the third supporting block (90) is arranged on one side of the first supporting block (40), the sponge (91) is arranged on the third supporting block (90), the buckle (92) is arranged in the sponge (91), and the buckle (92) is in clamping fit with the third supporting block (90).
6. A small ceramic bowl enameling apparatus according to claim 5, characterized in that the first handle (3) is provided with rubber on the outside.
CN202122465638.0U 2021-10-13 2021-10-13 Small-size ceramic bowl glazing device Active CN217168970U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122465638.0U CN217168970U (en) 2021-10-13 2021-10-13 Small-size ceramic bowl glazing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122465638.0U CN217168970U (en) 2021-10-13 2021-10-13 Small-size ceramic bowl glazing device

Publications (1)

Publication Number Publication Date
CN217168970U true CN217168970U (en) 2022-08-12

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Application Number Title Priority Date Filing Date
CN202122465638.0U Active CN217168970U (en) 2021-10-13 2021-10-13 Small-size ceramic bowl glazing device

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CN (1) CN217168970U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117140699A (en) * 2023-10-31 2023-12-01 福建省德化佳汇陶瓷有限公司 Ceramic production glazing equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117140699A (en) * 2023-10-31 2023-12-01 福建省德化佳汇陶瓷有限公司 Ceramic production glazing equipment
CN117140699B (en) * 2023-10-31 2024-01-05 福建省德化佳汇陶瓷有限公司 Ceramic production glazing equipment

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20221130

Address after: No. 168, Yanbei Road, Boshan District, Zibo City, Shandong Province 255200

Patentee after: Zibo Fuxing Ceramic Color and Glaze Co.,Ltd.

Address before: 511441 room 912, 9 / F, building 3, No. 16 Shilou road section, Shilian Road, Panyu District, Guangzhou, Guangdong

Patentee before: Du Jinsheng

TR01 Transfer of patent right