CN211261701U - Universal ceramic chip drying rack - Google Patents

Universal ceramic chip drying rack Download PDF

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Publication number
CN211261701U
CN211261701U CN201921842874.6U CN201921842874U CN211261701U CN 211261701 U CN211261701 U CN 211261701U CN 201921842874 U CN201921842874 U CN 201921842874U CN 211261701 U CN211261701 U CN 211261701U
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Prior art keywords
board
assembly
drying rack
groove
assembling
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CN201921842874.6U
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Chinese (zh)
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王雅青
陈锦春
雷美凤
郑昱
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Zhuhai Huajing Microelectronics Co ltd
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Zhuhai Huajing Microelectronics Co ltd
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Priority to CN201921842874.6U priority Critical patent/CN211261701U/en
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Abstract

The utility model provides a general type ceramic chip stoving work or material rest, is provided with the first board of inserting and the second board of inserting that the structure is the same, and first board of inserting passes through the support with the second board of inserting fixedly, first board of inserting and second board parallel arrangement. This general type stoving work or material rest, in the ceramic chip stoving operating mode, the mode that uses the work or material rest can realize the stack of ceramic chip, carries out ceramic chip batched stoving, and the distance accessible screw fixed adjustment between first cartridge board and the second cartridge board simultaneously can be applicable to the ceramic chip of different specifications size, has space utilization height, drying efficiency height and easy and simple to handle's characteristics.

Description

Universal ceramic chip drying rack
Technical Field
The utility model relates to a thick film technical field, in particular to general type ceramic chip stoving work or material rest.
Background
Ceramic tiles, also known as tiles or tiles, refer to thin-layer tiles that are applied to a wall surface and have a ceramic surface on the surface. Each tile is usually matched with a wall tile or a floor tile, but it is different from a ceramic tile, which is a porcelain, and the tiles are all body ceramics. The ceramic product needs to be dried after being cleaned in daily maintenance and decontamination, and sheets cannot be superposed during drying.
In the prior art, the ceramic wafer drying process is to directly place the cleaned ceramic wafer on a drying furnace chain belt and dry the ceramic wafer by a drying furnace. The drying mode needs an operator to hold the ceramic product all the time during drying, the ceramic plates cannot be overlapped, the space utilization rate is low, batch drying cannot be realized, the drying efficiency is low, and meanwhile, the ceramic plates are also easily contaminated by the chain belt.
Therefore, it is necessary to provide a universal ceramic tile drying rack for overcoming the defects of the prior art.
SUMMERY OF THE UTILITY MODEL
The utility model aims to avoid the weak point of prior art and provide a general type ceramic chip stoving work or material rest is necessary very in order to solve prior art not enough. The space of the universal ceramic chip drying rack is adjustable, the universal ceramic chip drying rack is suitable for ceramic chips of different specifications, the ceramic chips are stacked in a mode of using the rack, batch drying of the ceramic chips can be achieved, and the universal ceramic chip drying rack has the advantages of being high in space utilization rate, high in drying efficiency and simple and convenient to operate.
The above object of the present invention is achieved by the following technical means.
The utility model provides a general type ceramic chip stoving work or material rest is provided with the first board of inserting and the second board of inserting that the structure is the same, and first board of inserting passes through the support with the second board of inserting fixedly, first board of inserting and second board parallel arrangement.
Preferably, the first insertion plate is provided with a first assembling surface, and the first assembling surface is provided with a plurality of first protruding strips and a first groove between two adjacent first protruding strips.
Preferably, the second inserting plate is provided with a second assembling surface, and the second assembling surface is provided with a plurality of second protruding strips corresponding to the first protruding strips and a second groove between two adjacent second protruding strips.
Preferably, the first grooves and the second grooves are respectively arranged at equal intervals.
Preferably, the first insertion plate is provided with four first assembly holes, the second insertion plate is provided with four second assembly holes, and the positions of the first assembly holes and the positions of the second assembly holes correspond to each other.
Preferably, the support is provided with four assembling columns, each assembling column penetrates through the second assembling hole and is assembled in the corresponding first assembling hole, and the first inserting plate and the second inserting plate are fixed through the four assembling columns.
Preferably, the assembly column is fixed with the first assembly hole through threads, and the assembly column is further fixed with the second insertion plate through screws.
Preferably, the assembly column is provided with a plurality of threaded holes, the second insertion plate is further provided with positioning holes, and after the assembly column is assembled with the second assembly hole, the assembly column is fixed with the second insertion plate through screws screwed into the positioning holes and entering the threaded holes.
Preferably, the assembling columns are fixed through fixing rods.
Preferably, the width of the first groove and the width of the second groove are 1-1.2 mm.
More preferably, the width of the first groove and the second groove is 1.1 mm.
The utility model provides a general type potsherd stoving work or material rest is provided with the first cartridge board and the second cartridge board that the structure is the same, and first cartridge board passes through the support with the second cartridge board and fixes, first cartridge board and the parallel arrangement of second cartridge board. This general type stoving work or material rest, in the ceramic chip stoving operating mode, the mode that uses the work or material rest can realize the stack of ceramic chip, carries out ceramic chip batched stoving, and the distance accessible screw fixed adjustment between first cartridge board and the second cartridge board simultaneously can be applicable to the ceramic chip of different specifications size, has space utilization height, drying efficiency height and easy and simple to handle's characteristics.
Drawings
The present invention will be further described with reference to the accompanying drawings, but the contents in the drawings do not constitute any limitation to the present invention.
Fig. 1 is the structure schematic diagram of the general type ceramic chip drying rack of the utility model.
Fig. 2 is the structural schematic diagram of the first inserting plate and the second inserting plate of the universal ceramic chip drying rack of the present invention.
Fig. 3 is the utility model discloses a general type ceramic chip stoving work or material rest's erection column structural schematic.
In fig. 1 to 3, including,
a first insertion plate 100,
A first assembly surface 110, a first assembly hole 120,
A first raised strip 111, a first groove 112,
A second inserting plate 200,
A second assembly surface 210, a second assembly hole 220, a positioning hole 230,
A second convex strip 211, a second groove 212,
A bracket 300,
A mounting post 310,
A threaded hole 311,
The rod 400 is fixed.
Detailed Description
The invention will be further described with reference to the following examples.
Example 1.
A universal ceramic chip drying rack is provided with a first inserting plate 100 and a second inserting plate 200 which are identical in structure, wherein the first inserting plate 100 and the second inserting plate 200 are fixed through a support 300, and the first inserting plate 100 and the second inserting plate 200 are arranged in parallel, as shown in figure 1.
Specifically, as shown in fig. 2, the first package board 100 in the present embodiment is provided with a first assembling surface 110, and the first assembling surface 110 is provided with a plurality of first protruding bars 111 and a first groove 112 between two adjacent first protruding bars 111. The second package board 200 is provided with a second mounting surface 210, and the second mounting surface 210 is provided with a plurality of second protruding bars 211 corresponding to the first protruding bars 111 and a second groove 212 between two adjacent second protruding bars 211.
By inserting a proper amount of ceramic plates into the corresponding first groove 112 and second groove 212 between the first package board 100 and the second package board 200, the space can be fully utilized, and batch drying of the ceramic plates is realized.
In the present embodiment, the first mounting surface 110 is defined as an inner surface of the first package board 100, and a surface opposite to the inner surface is defined as an outer surface of the first package board 100; the second mounting surface 210 is defined as an inner surface of the second card 200, and a surface opposite to the inner surface is defined as an outer surface of the second card 200. It should be noted that, those skilled in the art may set the outer surfaces of the first board 100 and the second board 200 to be smooth planes, or may set the outer surfaces to be non-flat planes, which is not particularly required herein.
In the present embodiment, the first grooves 112 and the second grooves 212 are respectively arranged at equal intervals.
Further, the first board 100 is provided with four first assembly holes 120, the second board 200 is provided with four second assembly holes 220, and the positions of the first assembly holes 120 and the second assembly holes 220 correspond to each other. The bracket 300 is provided with four assembly posts 310, each assembly post 310 respectively passes through the second assembly hole 220 and is assembled to the corresponding first assembly hole 120, and the first and second package boards 100 and 200 are fixed by the four assembly posts 310.
Specifically, the mounting post 310 is fixed to the first mounting hole 120 by a screw, and the mounting post 310 is further fixed to the second board 200 by a screw.
Specifically, as shown in fig. 3, the mounting post 310 is provided with a plurality of threaded holes 311, the second board 200 is further provided with a positioning hole 230, and after the mounting post 310 is assembled with the second mounting hole 220, the mounting post 310 is fixed with the second board 200 by screwing into the positioning hole 230 and entering the threaded hole 311.
In this embodiment, the distance between the first insertion plate 100 and the second insertion plate 200 can be adjusted and fixed by moving the second insertion plate 200 and screwing the screws into the positioning holes 230 of the second insertion plate 200 and into the threaded holes 311. It should be noted that the size of the distance between the first insertion plate 100 and the second insertion plate 200 is determined by the specification of the tiles to be dried.
The assembling columns 310 in this embodiment are fixed to the assembling columns 310 by fixing rods 400. It should be noted that the fixing rod 400 is disposed between the assembling post 310 and the assembling post 310 on one side, and those skilled in the art can set the fixing rod according to actual requirements, and the fixing rod is not limited herein.
In the actual drying operation process, firstly loosening the screws fixed on the positioning holes 230 and the threaded holes 311, adjusting the distance between the first insertion plate 100 and the second insertion plate 200 according to the size of the ceramic wafer to be dried, so that the ceramic wafer can be just inserted into the first groove 112 and the second groove 212 corresponding to the first insertion plate and the second insertion plate, then screwing the screws into the four positioning holes 230 corresponding to the second insertion plate 200 and entering the threaded holes 311 to fix the assembling columns 310 and the second insertion plate 200;
after the distance is adjusted, the ceramic plates are pressed on the fixing rods one by one in the first grooves 112 of the first insertion plates and the second grooves 212 of the second insertion plates, the ceramic plates after insertion can not fall off, a plurality of material racks are inserted and then placed into the drying furnace, drying conditions are set, and operation can be completed after drying.
The universal ceramic wafer drying rack is provided with a first inserting plate 100 and a second inserting plate 200 which have the same structure, wherein the first inserting plate 100 and the second inserting plate 200 are fixed through a support 300, and the first inserting plate 100 and the second inserting plate 200 are arranged in parallel; the first assembly surface 110 on the first insertion plate 100 is provided with a plurality of first protruding strips 111 and a first groove 112 between two adjacent first protruding strips 111, the second assembly surface 210 on the second insertion plate 200 is provided with a plurality of second protruding strips 211 corresponding to the first protruding strips 111 and a second groove 212 between two adjacent second protruding strips 211, and in a ceramic tile drying working condition, the ceramic tiles can be stacked by using a material rack mode, so that ceramic tiles can be dried in batch; meanwhile, the distance between the first insertion plate 100 and the second insertion plate 200 can be adjusted and fixed and limited by screws through the threaded holes 311 on the assembly columns 310 and the positioning holes 230 on the second insertion plate 200, so that the ceramic tile drying device is suitable for ceramic tiles of different specifications, and has the characteristics of high space utilization rate, high drying efficiency and simplicity and convenience in operation.
Example 2.
The utility model provides a general type ceramic chip stoving work or material rest, other structures are the same with embodiment 1, the difference lies in: the widths of the first groove 112 and the second groove 212 are 1-1.2 mm.
In this embodiment, 1.1mm is selected as the optimum width of the first groove 112 and the second groove 212. It should be noted that, those skilled in the art can select the width values of the first groove 112 and the second groove 212 according to actual requirements, and the requirement is not mandatory here.
The utility model discloses a general type ceramic chip stoving work or material rest, first assembly surface 110 on first plugboard 100 is provided with a plurality of first protruding strip 111 and is in the first recess 112 between two adjacent first protruding strips 111, and second assembly surface 210 on the second plugboard 200 is provided with a plurality of second protruding strips 211 that correspond with first protruding strip 111 and is in the second recess 212 between two adjacent second protruding strips 211. In the drying operation process, the ceramic plates are inserted into the first groove 112 and the second groove 212, so that not only can space resources be utilized to the maximum extent, but also batch drying of the ceramic plates can be realized, and the drying efficiency is improved.
Example 3.
The utility model provides a general type ceramic chip stoving work or material rest, other structures are the same with embodiment 1 or 2, the difference lies in: the first insertion plate and the second insertion plate are both aluminum plates.
It should be noted that aluminum is the most abundant metal element in the earth crust, has the characteristics of good electrical and thermal conductivity, high reflectivity and oxidation resistance, and has wide application in the development of three important industries of aviation, building and automobile which require material characteristics with the unique properties of aluminum and its alloys.
Specifically, the first insertion plate and the second insertion plate are of a square structure or a rectangular structure. It should be noted that, those skilled in the art can design the shapes of the first board 100 and the second board 200, and no specific requirement is made here.
In this embodiment, the mounting post 310 and the fixing rod 400 are made of iron. Specifically, iron is an important metal element commonly used in industrial production, has good ductility, electric conductivity and heat conductivity, and simultaneously has extremely strong ferromagnetism, and belongs to a magnetic material.
This general type ceramic chip stoving work or material rest, first cartridge board and second cartridge board use the preparation of aluminum material, and erection column 310 and dead lever 400 use iron as the preparation material, all have extremely strong heat conductivility, can be at the stoving in-process, and stoving ceramic chip that can be quick improves the efficiency of drying.
It should be finally noted that the above embodiments are only intended to illustrate the technical solutions of the present invention and not to limit the scope of the present invention, and although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention can be modified or replaced with equivalents without departing from the spirit and scope of the technical solutions of the present invention.

Claims (10)

1. The utility model provides a general type ceramic chip stoving work or material rest which characterized in that: the first inserting plate and the second inserting plate are arranged in the same structure, the first inserting plate and the second inserting plate are fixed through a support, and the first inserting plate and the second inserting plate are arranged in parallel.
2. The universal ceramic tile drying rack according to claim 1, wherein: the first plug-in mounting plate is provided with a first assembling surface, and the first assembling surface is provided with a plurality of first protruding strips and a first groove between two adjacent first protruding strips.
3. The universal ceramic tile drying rack according to claim 2, wherein: the second plug-in mounting plate is provided with a second assembling surface, and the second assembling surface is provided with a plurality of second protruding strips corresponding to the first protruding strips and a second groove between two adjacent second protruding strips.
4. The universal ceramic tile drying rack according to claim 3, wherein: the first grooves and the second grooves are respectively arranged at equal intervals.
5. The universal ceramic tile drying rack according to claim 4, wherein:
the first plug-in board is provided with four first assembling holes, the second plug-in board is provided with four second assembling holes, and the positions of the first assembling holes and the second assembling holes correspond to each other;
the support is provided with four assembly columns, each assembly column penetrates through the second assembly hole and is assembled in the corresponding first assembly hole, and the first insertion plate and the second insertion plate are fixed through the four assembly columns.
6. The universal ceramic tile drying rack according to claim 5, wherein:
the assembly column is fixed with the first assembly hole through threads, and the assembly column is fixed with the second insertion plate through screws.
7. The universal ceramic tile drying rack according to claim 6, wherein: the assembly column is provided with a plurality of threaded holes, the second insertion plate is further provided with positioning holes, and after the assembly column is assembled with the second assembly hole, the assembly column is fixed with the second insertion plate through screws screwed into the positioning holes and entering the threaded holes.
8. The universal ceramic tile drying rack according to claim 7, wherein: the assembling columns are fixed through fixing rods.
9. The universal ceramic tile drying rack according to claim 8, wherein: the width of the first groove and the second groove is 1-1.2 mm.
10. The universal ceramic tile drying rack according to claim 9, wherein: the width of the first groove and the second groove is 1.1 mm.
CN201921842874.6U 2019-10-30 2019-10-30 Universal ceramic chip drying rack Active CN211261701U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921842874.6U CN211261701U (en) 2019-10-30 2019-10-30 Universal ceramic chip drying rack

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921842874.6U CN211261701U (en) 2019-10-30 2019-10-30 Universal ceramic chip drying rack

Publications (1)

Publication Number Publication Date
CN211261701U true CN211261701U (en) 2020-08-14

Family

ID=71955958

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921842874.6U Active CN211261701U (en) 2019-10-30 2019-10-30 Universal ceramic chip drying rack

Country Status (1)

Country Link
CN (1) CN211261701U (en)

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