Ceramic cup blank cooling frame
The design of the clamping plate and rotating rod structure solves the problem of inconvenient fixation of the ceramic cup blank surface by the cooling rack, realizing stable fixation and height adjustment of the inner and outer surfaces of the blank, thus improving the usage effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN DEHUA SHUNYING CERAMICS CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-04-17
AI Technical Summary
The existing ceramic cup cooling racks do not have a circular support plate that makes it difficult to fix the surface of the ceramic body, resulting in a reduced performance.
A ceramic cup cooling rack was designed, which adopts a clamping plate and rotating rod structure. The rack can be conveniently fixed and its height adjusted by threaded connection and drive assembly. The clamping plate can fix the blank on the inner and outer peripheral walls. The rotating rod is driven to rotate by the meshing of the active bevel gear and the driven bevel gear. The connecting rod and screw adjust the height of the placement plate.
It achieves stable fixation and height adjustment of the inner and outer surfaces of the embryo, improves the convenience and stability of the drying process, and enhances the effect of use.
Smart Images

Figure CN224130105U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ceramic cup technology, specifically a ceramic cup cooling rack. Background Technology
[0002] Ceramic cups are drinking vessels made of clay. Ceramics are clay shaped into a form. They are made from clay or other inorganic non-metallic raw materials, processed through molding and sintering, and used to decorate and protect the walls and floors of buildings. The ceramic cup blank needs to be dried before molding and then sintered.
[0003] The patent CN222628157U discloses a ceramic cup cooling rack. This patent discloses a technical solution to improve stability and solves the problem that when using existing cooling racks, the ceramic cup blanks are not fixed on the fixed head, and when the user moves the ceramic cup blanks, they are easy to fall off the fixed head, resulting in damage to the ceramic cup blanks.
[0004] When in use, the device fixes the blank with an arc-shaped support plate to improve stability. However, when the inside of the blank needs to be dried, the arc-shaped support plate is not convenient for fixing the surface of the blank, which reduces the effectiveness of use. Therefore, a ceramic cup cooling rack is proposed to solve the above problems. Utility Model Content
[0005] To address the shortcomings of existing technologies, this utility model provides a ceramic cup cooling rack that offers the advantage of convenient fixing. It solves the problem that existing ceramic cup cooling racks, where the arc-shaped support plate is not convenient for fixing the surface of the ceramic body, thus reducing the effectiveness of use.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A ceramic cup cooling rack includes two placement plates. The top surface of the bottom placement plate is fixedly connected to two connecting plates. The top surfaces of both placement plates are fixedly connected to multiple connecting compartments. Each of the multiple connecting compartments is provided with a fixing component for fixing the ceramic cup blank.
[0008] The fixing assembly includes two clamping plates, both of which are placed on the top surface of the connecting chamber. The left and right sides of the connecting chamber are provided with clearance grooves. The bottom surfaces of the two clamping plates are fixedly connected to a drive plate with one end passing through the clearance groove and extending into the interior of the connecting chamber. The left and right inner walls of the connecting chamber are rotatably connected to rotating rods via bearings. The top surfaces of the two drive plates are fixedly connected to linkage plates. The side of the two linkage plates near the rotating rods is fixedly connected to a first screw with one end extending into the interior of the rotating rod.
[0009] Each of the aforementioned connecting compartments is equipped with a drive assembly for rotating the rotating rod.
[0010] An adjustment assembly is provided between the two connecting plates to adjust the height of the top placement plate.
[0011] Furthermore, the connecting compartment is a hollow cuboid, the clamping plate is an arc plate, the driving plate and the clearance groove are slidably connected, and the driving plate is an L-shaped plate.
[0012] Furthermore, each of the two adjacent rotating rods has a first threaded hole on one of its opposite sides, and the two first screws extend into the interior of the two first threaded holes and are threadedly connected to them, with the threads of the two first screws being opposite.
[0013] Furthermore, the drive assembly includes a drive motor, which is fixedly mounted on the inner top wall of the connecting compartment. The output shaft of the drive motor is fixedly connected to a drive rod. An active bevel gear is fixedly mounted on the outer peripheral wall of the drive rod. A driven bevel gear that meshes with the active bevel gear is fixedly mounted on the outer peripheral walls of both rotating rods. Two support slots are provided on the top surface of the connecting compartment. A support plate extending into the support slot is fixedly connected to the bottom surface of both clamping plates. Two limiting slots are provided inside the connecting compartment. A limiting plate extending into the limiting slot is fixedly connected to the bottom surface of both support plates. An installation slot is provided on the opposite side of both connecting plates. A battery is fixedly mounted on the left inner wall of the connecting compartment.
[0014] Furthermore, the limiting groove is located at the bottom of the support groove, and the limiting groove and the support groove are connected.
[0015] Furthermore, the support plate and the support groove are slidably connected, and the limiting plate and the limiting groove are slidably connected.
[0016] Furthermore, the adjustment assembly includes two connecting rods, each of which is rotatably connected to the interior of two mounting slots via bearings. The top surfaces of the two connecting rods are movably connected to a second screw extending into the screw, and the top surfaces of the two second screws are fixedly connected to mounting plates. The bottom surface of the top mounting plate has two slots, and the top surfaces of the two mounting plates are fixedly connected to a plate extending into the slot.
[0017] Furthermore, the card plate and the card slot are fitted together, and the top surfaces of the two connecting rods are provided with second threaded holes. The two second screws extend to the two second threaded holes and are threadedly connected to them.
[0018] Compared with the prior art, this utility model provides a ceramic cup cooling rack, which has the following beneficial effects:
[0019] 1. This ceramic cup cooling rack, through the action of clamps, conveniently fixes the inner and outer circumferential walls of the blank, thereby drying the inside and surface of the blank and improving the use effect. Through the threaded connection between the rotating rod and the first screw, the clamps can be easily moved, thereby adjusting the distance between the two clamps, which is convenient for the staff to operate.
[0020] 2. This ceramic cup cooling rack, through the meshing of the active and driven bevel gears, conveniently drives the rotating rod to rotate. Through the threaded connection between the connecting rod and the second screw, it drives the mounting plate to move, thereby adjusting the height of the top placement plate, making it convenient for staff to operate and more practical. Attached Figure Description
[0021] Figure 1 This is a three-dimensional view of the structure of this utility model;
[0022] Figure 2 This is a schematic diagram of the internal structure of the present invention;
[0023] Figure 3 This is an enlarged schematic diagram of the internal structure of the connecting compartment in this utility model;
[0024] Figure 4 This utility model Figure 3 A magnified schematic diagram of the structure of A in the middle.
[0025] In the diagram: 1 Placement plate, 2 Connecting plate, 3 Connecting compartment, 4 Clamping plate, 5 Mounting slot, 6 Connecting rod, 7 Second screw, 8 Mounting plate, 9 Slot, 10 Slot plate, 11 Clearance slot, 12 Drive plate, 13 Drive rod, 14 Drive motor, 15 Support plate, 16 Battery, 17 Driving bevel gear, 18 Driven bevel gear, 19 Rotating rod, 20 First screw, 21 Linkage plate, 22 Support slot, 23 Limiting slot, 24 Limiting plate. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figures 1 to 4In this embodiment, a ceramic cup cooling rack includes two placement plates 1. The top surface of the bottom placement plate 1 is fixedly connected to two connecting plates 2. The top surfaces of both placement plates 1 are fixedly connected to multiple connecting compartments 3. Each of the multiple connecting compartments 3 is provided with a fixing component for fixing the ceramic cup blank.
[0028] The fixing assembly includes two clamping plates 4, both of which are placed on the top surface of the connecting chamber 3. The left and right sides of the connecting chamber 3 are provided with clearance grooves 11. The bottom surfaces of the two clamping plates 4 are fixedly connected to a drive plate 12, one end of which passes through the clearance groove 11 and extends into the interior of the connecting chamber 3. The left and right inner walls of the connecting chamber 3 are rotatably connected to rotating rods 19 via bearings. The top surfaces of the two drive plates 12 are fixedly connected to linkage plates 21. The side of the two linkage plates 21 near the rotating rods 19 is fixedly connected to a first screw 20, one end of which extends into the interior of the rotating rods 19.
[0029] The connecting chamber 3 is a hollow cuboid, the clamping plate 4 is an arc plate, the drive plate 12 and the relief groove 11 are slidably connected, the drive plate 12 is an L-shaped plate, and the two adjacent rotating rods 19 are provided with first threaded holes on opposite sides. The two first screws 20 extend into the interior of the two first threaded holes and are threadedly connected to them. The threads of the two first screws 20 are opposite.
[0030] Specifically, the rotating rod 19 rotates, and through the threaded connection between the rotating rod 19 and the first screw 20 and the sliding connection between the drive plate 12 and the relief groove 11, the first screw 20 drives the clamping plate 4 to move through the cooperation of the linkage plate 21 and the drive plate 12. The clamping plate 4 fits against the inner wall of the embryo to fix the embryo, thereby drying the surface of the embryo. Conversely, when the clamping plate 4 fits against the surface of the embryo and the opening of the embryo faces upward, the interior of the embryo is dried.
[0031] Please see Figures 1 to 4In this embodiment, each of the multiple connecting compartments 3 is provided with a drive assembly for driving the rotating rod 19 to rotate. The drive assembly includes a drive motor 14, which is fixedly installed on the inner top wall of the connecting compartment 3. The output shaft of the drive motor 14 is fixedly connected to a drive rod 13. An active bevel gear 17 is fixedly installed on the outer peripheral wall of the drive rod 13. A driven bevel gear 18 that meshes with the active bevel gear 17 is fixedly installed on the outer peripheral wall of each of the two rotating rods 19. Two support grooves 22 are opened on the top surface of each connecting compartment 3. A support plate 15 extending into the support groove 22 is fixedly connected to the bottom surface of each of the two clamping plates 4. Two limiting grooves 23 are opened inside the connecting compartment 3. A limiting plate 24 extending into the limiting groove 23 is fixedly connected to the bottom surface of each of the two support plates 15. An installation groove 5 is opened on the opposite side of each of the two connecting plates 2. A battery 16 is fixedly installed on the left inner wall of the connecting compartment 3.
[0032] The limiting groove 23 is located at the bottom of the support groove 22, the limiting groove 23 and the support groove 22 are connected, the support plate 15 and the support groove 22 are slidably connected, and the limiting plate 24 and the limiting groove 23 are slidably connected.
[0033] Specifically, the drive motor 14 is started, and the output shaft of the drive motor 14 drives the drive rod 13 to rotate. The drive rod 13 drives the active bevel gear 17 to rotate. Through the meshing between the active bevel gear 17 and the driven bevel gear 18, the rotating rod 19 is driven to rotate. Through the sliding connection between the support plate 15 and the support groove 22, the clamping plate 4 is supported, improving the stability of the clamping plate 4. Through the sliding connection between the limiting plate 24 and the limiting groove 23, the support plate 15 is supported, improving the stability of the support plate 15.
[0034] It should be noted that the storage battery 16 is a conventional device known to the public in the prior art, and its specific structure and working principle will not be described in detail in this article.
[0035] Please see Figures 1 to 4 In this embodiment, an adjustment assembly is provided between the two connecting plates 2 to adjust the height of the top placement plate 1. The adjustment assembly includes two connecting rods 6, which are rotatably connected to the inside of the two mounting slots 5 via bearings. The top surfaces of the two connecting rods 6 are movably connected to a second screw 7 extending into the inside of the screw 7. The top surfaces of the two second screws 7 are fixedly connected to mounting plates 8. The bottom surface of the top placement plate 1 has two slots 9. The top surfaces of the two mounting plates 8 are fixedly connected to a plate 10 extending into the slot 9.
[0036] The card plate 10 and the card slot 9 are fitted together, and the top surfaces of the two connecting rods 6 are provided with second threaded holes. The two second screws 7 extend to the two second threaded holes and are threadedly connected to them.
[0037] Specifically, the top placement plate 1 is placed on the connecting plate 2, and the clamping plate 10 is inserted into the slot 9. The top placement plate 1 is restricted by the fit between the clamping plate 10 and the slot 9. The mounting plate 8 is grasped, and the connecting rod 6 is rotated to make the connecting rod 6 rotate. Through the threaded connection between the connecting rod 6 and the second screw 7, the second screw 7 drives the mounting plate 8 to move upward, thereby adjusting the height of the top placement plate 1.
[0038] The working principle of the above embodiments is as follows:
[0039] The top placement plate 1 is placed on the connecting plate 2, and the clamping plate 10 is inserted into the slot 9. The top placement plate 1 is restricted by the fit between the clamping plate 10 and the slot 9. The mounting plate 8 is grasped, and the connecting rod 6 is rotated. The connecting rod 6 rotates, and the second screw 7 drives the mounting plate 8 to move upward through the threaded connection between the connecting rod 6 and the second screw 7, thus adjusting the height of the top placement plate 1. The ceramic cup body is placed in the connecting chamber 3, and the clamping plate 4 is located inside the body. The drive motor 14 is started, driving the drive rod 13 to rotate. The drive rod 13 causes the active cone to rotate. Gear 17 rotates, and through the meshing between the driving bevel gear 17 and the driven bevel gear 18, it drives the rotating rod 19 to rotate. Through the threaded connection between the rotating rod 19 and the first screw 20 and the sliding connection between the drive plate 12 and the relief groove 11, the first screw 20 drives the clamping plate 4 to move through the cooperation of the linkage plate 21 and the drive plate 12. The clamping plate 4 fits against the inner wall of the blank to fix the blank and then the surface of the blank is dried. Conversely, when the clamping plate 4 fits against the surface of the blank and the opening of the blank faces upward, the inside of the blank is dried.
[0040] The installation, connection, or setting methods disclosed in this embodiment are all common mechanical connection methods. Any method that can achieve its beneficial effect can be implemented. In addition, the electrical components in this embodiment are all electrically connected to the main controller and the battery. The main controller can be a conventional known device such as a computer that plays a control role. Those skilled in the art can control the electrical components through simple programming. Moreover, the existing disclosed power connection technology is also common knowledge in the field. Therefore, the specific structural composition and working principle will not be described in detail in this embodiment.
[0041] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0042] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A ceramic cup green body cooling rack comprising two placing plates (1), characterized in that: The top surface of the placement plate (1) located at the bottom is fixedly connected to two connecting plates (2), and the top surface of each of the two placement plates (1) is fixedly connected to multiple connecting compartments (3), and each of the multiple connecting compartments (3) is provided with a fixing component for fixing the ceramic cup body. The fixing assembly includes two clamping plates (4), both clamping plates (4) are placed on the top surface of the connecting chamber (3), the left and right sides of the connecting chamber (3) are provided with clearance grooves (11), the bottom surfaces of the two clamping plates (4) are fixedly connected with a drive plate (12) that passes through the clearance groove (11) and extends into the interior of the connecting chamber (3), the left inner wall and the right inner wall of the connecting chamber (3) are rotatably connected with a rotating rod (19) through a bearing, the top surfaces of the two drive plates (12) are fixedly connected with a linkage plate (21), and the side of the two linkage plates (21) near the rotating rod (19) is fixedly connected with a first screw (20) that extends into the interior of the rotating rod (19); Each of the multiple connecting compartments (3) is provided with a drive assembly for rotating the rotating rod (19), and an adjustment assembly is provided between the two connecting plates (2) for adjusting the height of the top placement plate (1).
2. A ceramic cup body drying rack as claimed in claim 1, wherein: The connecting compartment (3) is a hollow cuboid, the clamping plate (4) is an arc plate, the driving plate (12) and the clearance groove (11) are slidably connected, and the driving plate (12) is an L-shaped plate.
3. A ceramic cup greenware shelf according to claim 1, wherein: Each of the two adjacent rotating rods (19) has a first threaded hole on one side. The two first screws (20) extend into the two first threaded holes and are threadedly connected to them. The threads of the two first screws (20) are opposite.
4. The ceramic cup greenware shelf of claim 1, wherein: The drive assembly includes a drive motor (14), which is fixedly mounted on the inner top wall of the connecting chamber (3). The output shaft of the drive motor (14) is fixedly connected to a drive rod (13). A driving bevel gear (17) is fixedly mounted on the outer peripheral wall of the drive rod (13). A driven bevel gear (18) that meshes with the driving bevel gear (17) is fixedly mounted on the outer peripheral walls of both rotating rods (19). Two support slots (2) are provided on the top surface of the connecting chamber (3). 2) The bottom surfaces of the two clamping plates (4) are fixedly connected to a support plate (15) with one end extending into the support groove (22). The interior of the connecting compartment (3) is provided with two limiting grooves (23). The bottom surfaces of the two support plates (15) are fixedly connected to a limiting plate (24) with one end extending into the limiting groove (23). The opposite sides of the two connecting plates (2) are provided with mounting grooves (5). A storage battery (16) is fixedly installed on the left inner wall of the connecting compartment (3).
5. A ceramic cup greenware shelf according to claim 4, wherein: The limiting groove (23) is located at the bottom of the support groove (22), and the limiting groove (23) and the support groove (22) are connected.
6. A ceramic cup greenware shelf according to claim 4, wherein: The support plate (15) and the support groove (22) are slidably connected, and the limiting plate (24) and the limiting groove (23) are slidably connected.
7. A ceramic cup greenware shelf according to claim 4, wherein: The adjustment assembly includes two connecting rods (6), which are rotatably connected to the interior of two mounting slots (5) via bearings. A second screw (7) extending into the top surface of each connecting rod (6) is movably connected to the top surface of each second screw (7). Mounting plates (8) are fixedly connected to the top surface of each second screw (7). Two slots (9) are provided on the bottom surface of the top mounting plate (1). A locking plate (10) extending into the slot (9) is fixedly connected to the top surface of each mounting plate (8).
8. A ceramic cup greenware shelf according to claim 7, wherein: The card plate (10) and the card slot (9) are fitted together, and the top surfaces of the two connecting rods (6) are provided with second threaded holes. The two second screws (7) extend to the two second threaded holes and are threadedly connected to them.
Citation Information
Patent Citations
Ceramic cup blank cooling frame
CN222628157U