Ceramic marmite processing and placing platform

By designing combined and clamping components, the problem of fixing the height of the casserole placement platform was solved, enabling adaptive adjustment and stable clamping of casseroles of different sizes, and reducing storage space and maintenance costs.

CN224144618UActive Publication Date: 2026-04-21FENGFENG MINING AREA BOXING PORCELAIN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FENGFENG MINING AREA BOXING PORCELAIN CO LTD
Filing Date
2025-05-27
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The existing clay pot placement platform has a fixed height and cannot be quickly extended or adjusted, making it unsuitable for the production of clay pots of different sizes. Furthermore, it occupies a large amount of storage space when not in use, and the replacement of parts is difficult, increasing maintenance costs.

Method used

A ceramic casserole processing and placement platform was designed, which includes a combination component and a clamping component. By combining a limiting block, an internal threaded lifting cylinder and a clamping sleeve, the height of the placement platform can be adjusted and the casserole can be stably clamped. It supports the placement of casseroles of different sizes and facilitates quick disassembly and replacement of parts.

Benefits of technology

The height of the placement platform is adjustable, making it suitable for casseroles of different sizes. This reduces storage space requirements, lowers the difficulty of component replacement and maintenance costs, and improves placement stability and convenience.

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Abstract

The utility model discloses a ceramic marmite processing and placing platform which is characterized in that a plurality of concave processing blocks are welded at the top end and the bottom end of a fixed supporting plate, combined limiting blocks are clamped on the inner sides of the concave processing blocks through combined pins, and combined limiting holes are symmetrically formed in one ends of the concave processing blocks and one ends of the combined limiting blocks; the two ends of the two fixed supporting plates are provided with combined limiting blocks, internal thread lifting cylinders are welded to one ends of the combined limiting blocks, a two-way lifting screw is connected between the two internal thread lifting cylinders through threads, and reversing inner hole blocks are welded to one ends of the internal thread lifting cylinders. The spring reset rods are matched for clamping the inner limiting fixing sleeves and the sliding limiting sleeves, so that the height of the placing platform is adjusted, the height of the equipment can be adjusted according to the marmite through rapid telescopic adjustment when the marmite is placed, and the marmite placing device is suitable for placing different marmite conveniently.
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Description

Technical Field

[0001] This utility model relates to the field of casserole processing technology, specifically a ceramic casserole processing and placement platform. Background Technology

[0002] A clay pot is a type of cooking utensil. Traditional clay pots are ceramic products made from materials such as quartz, feldspar, and clay, which are not good conductors of heat. They are fired at high temperatures and have the characteristics of being breathable, absorbent, having even heat distribution, and slow heat dissipation. Nowadays, storage equipment is needed during the clay pot making, glazing, and firing processes.

[0003] However, when placing casseroles now, the height of the platform is fixed and cannot be quickly extended or adjusted. This results in a limited variety of casseroles that can be placed, making it unsuitable for the production of casseroles of different sizes. At the same time, it cannot be quickly separated and disassembled, which means that it still occupies a lot of storage space when not in use. Furthermore, the parts cannot be quickly replaced, increasing the difficulty of replacement and the cost of maintenance. Utility Model Content

[0004] This utility model provides a ceramic casserole processing and placement platform, which can effectively solve the problems mentioned in the background art, where the height of the placement platform is fixed when placing casseroles, and it cannot be quickly extended or retracted. This results in a fixed type of casserole that cannot be used for the production of casseroles of different sizes. At the same time, it cannot be quickly separated and disassembled, which still requires a lot of storage space when not in use, and the parts cannot be quickly replaced, increasing the difficulty of replacement and maintenance costs.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a ceramic casserole processing and placement platform, comprising a fixed support plate, wherein a combined component is provided on the side end of the fixed support plate;

[0006] The combined component includes a recessed processing block;

[0007] The top and bottom ends of the fixed support plate are each welded with a number of concave blocks. The inner side of the concave blocks is connected to a combined limiting block by a combined pin. The concave blocks and the combined limiting blocks are symmetrically provided with combined limiting holes at one end.

[0008] One end of the combined limiting block is welded with an internal thread lifting cylinder, and the two internal thread lifting cylinders are connected by a bidirectional lifting screw through a threaded connection.

[0009] One end of the internal threaded lifting cylinder is welded with a reversing inner hole block, one end of the reversing inner hole block is connected to an inner limit fixing sleeve by a combination pin, and the other end of the reversing inner hole block is connected to a sliding limit sleeve by a combination pin.

[0010] A spring reset rod is engaged between the inner limiting fixing sleeve and the sliding limiting sleeve. The bottom ends of multiple internal threaded lifting cylinders are connected to load-bearing threaded rods by threads, and the bottom ends of the load-bearing threaded rods are bonded with anti-slip pads.

[0011] According to the above technical solution, the longitudinal section of the combined limiting block is I-shaped, and the combined pin is inserted and installed inside the combined limiting hole.

[0012] According to the above technical solution, the inner limiting fixing sleeve and the sliding limiting sleeve are slidably combined, and the longitudinal section of the anti-slip treatment pad is trapezoidal.

[0013] According to the above technical solution, a clamping assembly is provided on the side end of the fixed support plate;

[0014] The clamping assembly includes an internal locking block;

[0015] The fixed support plate has an inner locking block symmetrically welded to the top center. The inner locking block is connected to a limiting frame by a connecting pin on its side. The limiting frame is rotatably connected to a displacement screw.

[0016] The side end of the shifting screw is equipped with a lifting clamping sleeve through the screw seat. The top of the fixed support plate and the top of the lifting clamping sleeve are clamped with a breathable mesh plate. One end of the inner clamping limiting block is provided with an insertion fixing hole.

[0017] According to the above technical solution, the cross-section of the inner card limiting block is U-shaped, and the lifting clamping sleeve is slidably connected to the limiting processing frame.

[0018] According to the above technical solution, the connecting pin is embedded in the inner side of the insertion fixing hole, and the longitudinal section of the limiting treatment frame is L-shaped.

[0019] Compared with the prior art, the advantages of this utility model are: the structure of this utility model is scientific and reasonable, and it is safe and convenient to use.

[0020] 1. The system is equipped with a combination assembly. The combination limiting block is embedded into the concave block between two fixed support plates. The inner limiting fixing sleeve and the sliding limiting sleeve are both fitted onto the side end of the reversing inner hole block. The reversing inner hole block and the inner limiting fixing sleeve, the reversing inner hole block and the sliding limiting sleeve, and the combination limiting block and the concave block are engaged using combination pins to achieve quick connection of the equipment. The rotation of the bidirectional lifting screw drives the two internal thread lifting cylinders to rise and fall respectively, changing the distance between the two fixed support plates. With the help of the spring return rod, the inner limiting fixing sleeve and the sliding limiting sleeve are engaged to achieve height adjustment of the placement platform. This allows for quick extension and retraction adjustment when placing casseroles, and the equipment height can be adjusted according to the casserole to accommodate different casseroles. At the same time, the use of snap-fit ​​assembly and pin fixation allows for quick replacement of damaged parts during equipment maintenance, reducing operation difficulty and maintenance costs. Furthermore, the use of dispersed components allows the placement platform to be quickly dispersed for storage when not in use, reducing the storage space required and ensuring the convenience of using the placement platform.

[0021] 2. A clamping assembly is provided, which embeds the restraining frame into the inner clamping block. The restraining frame and the inner clamping block are locked in place by inserting pins into the insertion fixing holes. The shifting screw drives the lifting clamping sleeve to move, adjusting the distance between the lifting clamping sleeve and the ventilated mesh plate and the fixed support plate. Thus, the two sets of ventilated mesh plates are used to fix and restrain the casserole, ensuring the stability of the clamping process. Furthermore, the height can be adjusted to clamp the casserole, allowing the size of the placement platform to be adjusted according to the size of the casserole during placement, fixing the casserole and preventing it from sliding and falling, thereby improving the stability of the placement. Attached Figure Description

[0022] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation thereof.

[0023] In the attached diagram:

[0024] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0025] Figure 2 This is a schematic diagram of the combined components of this utility model;

[0026] Figure 3 This is a schematic diagram of the installation structure of the concave processing block of this utility model;

[0027] Figure 4 This is a schematic diagram of the clamping assembly of this utility model;

[0028] Numbered in the diagram: 1. Fixed support plate;

[0029] 2. Combined components; 201. Recessed treatment block; 202. Combined pin; 203. Combined limiting block; 204. Combined limiting hole; 205. Internal threaded lifting cylinder; 206. Bidirectional lifting screw; 207. Reversing inner hole block; 208. Inner limiting fixing sleeve; 209. Sliding limiting sleeve; 210. Spring return rod; 211. Load-bearing threaded rod; 212. Anti-slip treatment pad;

[0030] 3. Clamping assembly; 301. Inner clamping limiting block; 302. Connecting pin; 303. Limiting treatment frame; 304. Transposition screw; 305. Lifting clamping sleeve; 306. Ventilation mesh plate; 307. Insertion fixing hole. Detailed Implementation

[0031] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0032] Example: Figure 1-4 As shown, this utility model provides a technical solution: a ceramic casserole processing and placement platform, including a fixed support plate 1, and a combined component 2 is provided on the side of the fixed support plate 1.

[0033] The combined component 2 includes a concave treatment block 201, a combined pin 202, a combined limiting block 203, a combined limiting hole 204, an internal thread lifting cylinder 205, a bidirectional lifting screw 206, a reversing inner hole block 207, an inner limiting fixing sleeve 208, a sliding limiting sleeve 209, a spring return rod 210, a load-bearing threaded rod 211, and an anti-slip treatment pad 212;

[0034] Several recessed blocks 201 are welded to the top and bottom of the fixed support plate 1. A combination limiting block 203 is snapped into the inner side of the recessed block 201 by a combination pin 202. A combination limiting hole 204 is symmetrically opened at one end of the recessed block 201 and the combination limiting block 203. The longitudinal section of the combination limiting block 203 is I-shaped. The combination pin 202 is inserted into the inner side of the combination limiting hole 204 to achieve a stable snap-in connection and ensure the stability of the combination positioning and combination restriction.

[0035] One end of the combined limiting block 203 is welded with an internal thread lifting cylinder 205, and the two internal thread lifting cylinders 205 are connected by a bidirectional lifting screw 206 through a thread.

[0036] One end of the internal threaded lifting cylinder 205 is welded with a reversing inner hole block 207. One end of the reversing inner hole block 207 is engaged with an inner limit fixing sleeve 208 by a combination pin 202, and the other end of the reversing inner hole block 207 is engaged with a sliding limit sleeve 209 by a combination pin 202. The inner limit fixing sleeve 208 and the sliding limit sleeve 209 slide together to achieve telescopic positioning and ensure the stability of the engagement limit.

[0037] A spring reset rod 210 is snapped between the inner limiting fixing sleeve 208 and the sliding limiting sleeve 209. The bottom ends of multiple internally threaded lifting cylinders 205 are connected to load-bearing threaded rods 211 by threads. The bottom ends of the load-bearing threaded rods 211 are bonded with anti-slip pads 212. The longitudinal section of the anti-slip pads 212 is trapezoidal to achieve support and positioning and increase the support area at the bottom.

[0038] A clamping assembly 3 is provided on the side end of the fixed support plate 1;

[0039] The clamping assembly 3 includes an inner locking block 301, a connecting pin 302, a limiting processing frame 303, a shifting screw 304, a lifting clamping sleeve 305, a breathable mesh plate 306, and an insertion fixing hole 307.

[0040] The top center of the fixed support plate 1 is symmetrically welded with an inner clamping block 301. The cross-section of the inner clamping block 301 is U-shaped. The connecting pin 302 is embedded in the inner side of the insertion fixing hole 307 to realize positioning restriction and clamping connection. The side end of the inner clamping block 301 is clamped to the restriction processing frame 303 through the connecting pin 302. The top of the restriction processing frame 303 is rotatably connected to the displacement screw 304.

[0041] The side end of the shifting screw 304 is equipped with a lifting clamping sleeve 305 through the screw seat. The lifting clamping sleeve 305 is slidably connected to the limiting frame 303. The longitudinal section of the limiting frame 303 is L-shaped to realize lifting positioning and lifting clamping, ensuring the movement and alignment of the equipment. The top of the fixed support plate 1 and the top of the lifting clamping sleeve 305 are clamped with a breathable mesh plate 306. One end of the inner clamping limiting block 301 is provided with an insertion fixing hole 307.

[0042] The working principle and usage process of this utility model are as follows: When it is necessary to place the casserole, the worker embeds the combined limiting block 203 into the concave block 201 between the two fixed support plates 1, and embeds the combined pin 202 into the inner side of the combined limiting hole 204. The inner limiting fixing sleeve 208 is fitted onto the side end of the reversing inner hole block 207, and the sliding limiting sleeve 209 is fitted onto the side end of the reversing inner hole block 207. The combined pin 202 is used to engage and fix the reversing inner hole block 207 and the inner limiting fixing sleeve 208, and the reversing inner hole block 207 and the sliding limiting sleeve 209, thereby achieving combined positioning. The bidirectional lifting screw 206 is used to rotate and push the two internal threads to rise. The lowering cylinder 205 is raised and lowered respectively, changing the distance between the two fixed support plates 1. With the help of the spring return rod 210, the inner limit fixing sleeve 208 and the sliding limit sleeve 209 are locked in place to achieve positioning support restriction. At the same time, multiple inner limit fixing sleeves 208 and sliding limit sleeves 209 are staggered to achieve positioning and locking and support restriction. The load-bearing threaded rod 211 is combined with the inner thread lifting cylinder 205 through the thread. The level of the placement platform is adjusted by the load-bearing threaded rod 211. The anti-slip pad 212 is used to support and buffer the placement platform to ensure the stability of load-bearing limit and load-bearing fixation. The above steps are repeated to realize the combination of multi-layer placement platforms one by one.

[0043] The limiting frame 303 is embedded inside the inner clamping block 301, and the connecting pin 302 is embedded inside the insertion fixing hole 307. The connecting pin 302 is used to lock the limiting frame 303 and the inner clamping block 301 in place. The casserole is placed on the top of the ventilated mesh plate 306 at the top of the fixed support plate 1. The shifting screw 304 drives the lifting clamping sleeve 305 to move up and down along the limiting frame 303. The distance between the lifting clamping sleeve 305 and the ventilated mesh plate 306 and the fixed support plate 1 is adjusted. The two sets of ventilated mesh plates 306 are used to fix and restrict the casserole, ensuring the stability of the clamping process.

[0044] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A ceramic casserole processing and placement platform, comprising a fixed support plate (1), characterized in that: The fixed support plate (1) is provided with a combined component (2) on its side end; The combined component (2) includes a recessed processing block (201); The fixed support plate (1) has several concave processing blocks (201) welded to its top and bottom. The concave processing blocks (201) are connected to a combination limiting block (203) by a combination pin (202) on their inner side. The concave processing blocks (201) and the combination limiting blocks (203) are symmetrically provided with combination limiting holes (204) at one end. One end of the combined limiting block (203) is welded with an internal thread lifting cylinder (205), and the two internal thread lifting cylinders (205) are connected by a bidirectional lifting screw (206) through a thread. One end of the internal threaded lifting cylinder (205) is welded with a reversing inner hole block (207), one end of the reversing inner hole block (207) is secured with an inner limit fixing sleeve (208) by a combination pin (202), and the other end of the reversing inner hole block (207) is secured with a sliding limit sleeve (209) by a combination pin (202); A spring reset rod (210) is snapped between the inner limiting fixing sleeve (208) and the sliding limiting sleeve (209). The bottom ends of the plurality of internal threaded lifting cylinders (205) are connected by a load-bearing threaded rod (211) through threads. The bottom end of the load-bearing threaded rod (211) is bonded with an anti-slip pad (212).

2. The ceramic crockery processing and placing platform according to claim 1, characterized in that, The longitudinal section of the combined limiting block (203) is I-shaped, and the combined pin (202) is inserted and installed inside the combined limiting hole (204).

3. The ceramic crock processing and placing platform according to claim 1, wherein, The inner limiting fixing sleeve (208) and the sliding limiting sleeve (209) are slidably combined, and the longitudinal section of the anti-slip treatment pad (212) is trapezoidal.

4. The ceramic crock processing and placement platform of claim 1, wherein, The fixed support plate (1) is provided with a clamping assembly (3) on its side end; The clamping assembly (3) includes an inner locking block (301); The fixed support plate (1) has an inner locking block (301) symmetrically welded to the middle of its top end. The inner locking block (301) has a limiting processing frame (303) connected to its side end by a connecting pin (302). The limiting processing frame (303) has a shifting screw (304) rotatably connected to its top end. The side end of the shifting screw (304) is equipped with a lifting clamping sleeve (305) through the screw seat. The top end of the fixed support plate (1) and the top end of the lifting clamping sleeve (305) are clamped with a breathable mesh plate (306). One end of the inner clamping limiting block (301) is provided with an insertion fixing hole (307).

5. The ceramic crock processing and placement platform of claim 4, wherein, The cross-section of the inner card limiting block (301) is U-shaped, and the lifting clamping sleeve (305) is slidably connected to the limiting processing frame (303).

6. The ceramic crock processing and placement platform of claim 4, wherein, The connecting pin is embedded in the inner side of the insertion fixing hole (307), and the longitudinal section of the limiting treatment frame (303) is L-shaped.