Drying device for processing rock plate
By introducing an air extraction component and a cooling box into the slab drying device, the problems of low drying efficiency and high energy consumption are solved, achieving a highly efficient and energy-saving slab drying process, and ensuring dryness and rapid cooling inside the drying box.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG SHUNHUI NEW MATERIAL TECH CO LTD
- Filing Date
- 2025-07-09
- Publication Date
- 2026-07-21
Smart Images

Figure CN224534636U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of sheet metal processing technology, and in particular relates to a drying device for processing rock slabs. Background Technology
[0002] Sintered stone is one of the most common materials used in home decoration. It is made from a variety of natural mineral raw materials through high-strength pressing and then high-temperature firing. After production, the surface of the sintered stone needs to be cleaned and dried to ensure its cleanliness and improve its aesthetics.
[0003] Chinese patent application CN222951441U discloses a rapid drying device for granite slab processing, relating to the field of granite slab processing technology. It aims to solve the technical problem that current traditional static drying methods result in a long drying process for moisture evaporated from the surface of granite slabs, which is detrimental to improving drying efficiency. The device includes a drying chamber with several drying components arranged at equal intervals inside. Each drying component includes a swing assembly with a detachable support component inside. The swing assembly includes a support shaft rotatably connected to the inner wall of the drying chamber at one end. A frame is fixedly mounted on the outer edge of the support shaft. The frame includes symmetrically arranged U-shaped frames, each with a drive structure fixedly mounted inside. The drive structure includes a fixed shaft integrally connected to the U-shaped frames and fixedly connected at one end to the inner wall of the drying chamber. Motors are detachably mounted at equal intervals on both sides of the drying chamber. This invention has the advantage of improving the drying efficiency of the granite slab itself.
[0004] The aforementioned rapid drying equipment for granite slab processing has a cabinet door on the front of the drying chamber, with the drying components located inside. This closed-loop drying chamber dries the granite slabs placed inside. After drying, the slabs are at a high temperature, requiring the equipment to be stopped and the slabs allowed to cool completely before removal. Secondary drying is impossible during this process, and reheating is necessary for subsequent drying, leading to excessive power consumption. Furthermore, during drying, water droplets evaporate from the slab surface. These droplets, when heated, form steam. In the closed-loop environment, this steam accumulates at the top of the chamber and condenses again on the inner wall, interfering with the drying process. To address these issues, we provide a drying device for granite slab processing. Utility Model Content
[0005] The purpose of this utility model is to provide a drying device for processing granite slabs. The air extraction component can not only achieve a heat circulation effect, but also dry the high-temperature gas to ensure the dryness of the environment inside the drying chamber. The cooling chamber can receive the dried high-temperature granite slabs and cool them down quickly, while also avoiding excessive loss of heat resources in the drying chamber environment. This solves the problems of the above-mentioned rapid drying equipment for processing granite slabs.
[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0007] This utility model relates to a drying device for processing rock slabs, comprising a drying chamber; the drying chamber has a loading component inside, the loading component including a loading frame fixed to the inner wall of the drying chamber, and a sliding abutment block is provided on the rear part of the left side wall of the loading frame, an electric push rod is installed on the left side wall of the abutment block, a box plate is installed on the front side wall of the drying chamber, and a controller is embedded in the outer wall of the box plate, an air extraction component is embedded in the upper side wall of the drying chamber, the air extraction component includes an air extraction pipe communicating with the drying chamber, and a drying plate is provided inside the air extraction pipe, an electric gate is installed on the right side wall of the drying chamber, and a cooling chamber is also provided on the right side wall of the drying chamber, a support plate is provided inside the cooling chamber, and a cover plate is also installed on the right side wall of the cooling chamber.
[0008] The present invention is further configured such that the drying oven has a drying trough inside, and an air outlet is provided at the center of the top side wall of the drying oven. One end of the air extraction pipe is fixedly provided with a connecting frame, and the connecting frame covers the air outlet.
[0009] The present invention is further configured such that the other end of the exhaust pipe is connected to the heating mechanism on the rear side wall of the drying oven, and the exhaust pipe is S-shaped, with a groove at its bottom end, and a connector is inserted into the groove.
[0010] The present invention is further configured such that a drying plate is provided inside the plug-in frame, a pull plate for hand-held use is fixedly installed on the outer side wall of the plug-in frame, and the drying plate is arranged in a horizontal structure inside the air extraction pipe.
[0011] The present invention is further configured such that multiple load-bearing components are provided, and the multiple load-bearing components are arranged vertically and parallel to each other. The load-bearing frame is fixedly connected to the inner wall of the drying tank, and a fixing frame is fixedly provided on the left outer wall of the drying box.
[0012] The present invention is further configured such that the electric push rod is fixedly installed in the fixed frame, and the electric push rod is also inserted into the left side wall of the drying box, and the shaft end of the electric push rod passes through the left side wall of the drying box and connects with the abutment block.
[0013] The present invention is further configured such that a side frame is provided on the right side wall of the drying box, and the drying box is connected to the cooling box through the side frame. The electric gate is located inside the side frame. The right side wall of the drying box is hollowed out, and the left side wall of the cooling box is hollowed out. The left side wall of the cooling box is connected to the right side wall of the drying box.
[0014] The present invention is further configured such that the interior of the cooling box is provided with a plurality of vertically parallel support plates, and the support plates are correspondingly arranged with the loading frame. Fan 1 and Fan 2 are respectively embedded and installed on the bottom of the front side wall and the top side wall of the cooling box. A plate frame is installed on the right side wall of the cooling box, and the cover plate is arranged inside the plate frame.
[0015] This utility model has the following beneficial effects:
[0016] 1. This utility model incorporates an extraction assembly located at the top of the drying chamber. The assembly includes an extraction pipe fixed to the top of the drying chamber, one end of which connects to the interior of the drying chamber, and the other end connects to a heating mechanism on the rear wall of the drying chamber. This achieves a heat circulation effect. The extraction pipe is S-shaped, with a groove at its bottom. A connector is inserted into the groove, and a drying plate is installed inside the connector. A pull plate for handheld operation is fixedly installed on the outer side wall of the connector. During use, the heating mechanism at the bottom of the rear wall of the drying chamber (a standard feature in slab drying equipment, not described in detail here) operates. The high-heat gas from the heating mechanism is then introduced into the bottom of the drying chamber through the heating pipe, thereby achieving heating and... The drying chamber contains slabs of rock. During the drying process, water droplets evaporate from the surface of the slabs. These water droplets are heated to form hot steam. Since the drying environment is a closed structure, the hot steam accumulates at the top of the drying chamber. The exhaust system is connected to the air inlet of the heating mechanism. When the heating mechanism is working, it generates a suction action. Part of the suction draws air from the external environment, and the other part draws air from the exhaust pipe. This suction action absorbs the hot water vapor and allows the hot gas rich in water vapor to come into contact with the drying plates before being reintroduced into the heating mechanism. This not only achieves a heat circulation effect but also dries the gas, ensuring the dryness of the environment inside the drying chamber.
[0017] 2. This utility model incorporates a drying chamber and a cooling chamber. An electric gate is located on the side wall of the drying chamber, and a cooling chamber is located on the other side of the electric gate. When the electric gate is open, the cooling chamber is connected to the drying chamber. A support structure is installed inside the drying chamber to support the rock slab. Fan 1 and Fan 2 are respectively installed at the bottom front and top of the cooling chamber. The support structure includes a frame fixed to the inner wall of the drying chamber. A stop block is located at the rear of the left side wall of the frame, and an electric push rod is mounted on the stop block. The electric push rod is also fixedly inserted into the left side wall of the drying chamber. In use, the chamber is opened, and the rock slab to be dried is inserted into the frame from the front. At this time, the electric push rod is in its minimum compressed state, i.e., the stop block is close to the inner left side wall of the frame. Then, the chamber is closed, and the drying mechanism is activated, allowing the rock slab to be dried. After drying, the... Open the electric gate, connecting the drying chamber and the cooling chamber. Then, activate the electric push rod, which extends and pushes the slab towards the cooling chamber via the abutment block. Since a support plate is installed inside the cooling chamber, it horizontally aligns with the loading frame, catching the slab falling from the loading frame until it is fully inside. Then, close the electric gate, isolating the drying chamber and cooling chamber again. The rapid pushing action of the slab ensures that only a small amount of high temperature escapes from the drying chamber. After the electric gate closes, activate fans one and two. Fan one draws air from the outside environment into the cooling chamber to cool the slab, while fan two removes high-temperature gas from the top of the cooling chamber, thus accelerating the cooling of the dried slab. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of a drying device for processing rock slabs.
[0020] Figure 2 This is a structural disassembly diagram of a drying device for processing rock slabs.
[0021] Figure 3 This is a structural disassembly diagram of the drying oven.
[0022] Figure 4 This is a structural disassembly diagram of the air extraction unit.
[0023] Figure 5 This is a structural disassembly diagram of the cooling box.
[0024] Figure 6 This is a schematic diagram of the cooling chamber.
[0025] The attached diagram lists the components represented by each number as follows:
[0026] 1-Drying oven, 101-Drying trough, 102-Air outlet, 103-Loading component, 103a-Loading frame, 103b-Abutting block, 103c-Electric push rod, 103d-Fixing frame, 104-Stone slab body, 2-Box panel, 201-Controller, 3-Extraction assembly, 301-Extraction pipe, 301a-Pipe groove, 302-Connecting frame, 303-Plug-in frame, 303a-Pull plate, 304-Drying plate, 4-Side frame, 401-Electric gate, 5-Cooling box, 501-Plate frame, 502-Fan one, 503-Fan two, 504-Bearing plate, 6-Cover plate. Detailed Implementation
[0027] 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 skilled in the art without creative effort are within the protection scope of the present utility model.
[0028] Example 1
[0029] Please see Figure 1-3 This utility model is a drying device for processing rock slabs, including a carrying component 103. The carrying component 103 can support the rock slab body 104, and after the rock slab body 104 is dried, it can be pushed from the drying box 1 into the cooling box 5.
[0030] Specifically, the drying oven 1 is provided with a drying trough 101 inside, a loading component 103 is provided inside the drying trough 101, and a rock slab body 104 is inserted into the loading component 103. A box panel 2 is installed on the front side wall of the drying oven 1, and a controller 201 is embedded on the outer wall of the box panel 2.
[0031] Furthermore, multiple sets of the load-bearing components 103 are arranged parallel to each other vertically. The load-bearing components 103 include a load-bearing frame 103a fixed inside the drying oven 1. An abutment block 103b is slidably provided on the rear part of the left side wall of the load-bearing frame 103a. An electric push rod 103c is fixedly provided on the left side wall of the abutment block 103b. The electric push rod 103c is also inserted into the left side wall of the drying oven 1. The outer wall of the electric push rod 103c is also connected to the left outer wall of the drying oven 1 through a fixing bracket 103d.
[0032] The operation process of this embodiment is as follows: When in use, open the box panel 2, and then insert the rock slab body 104 to be dried into the interior of the carrying frame 103a from the front side of the carrying frame 103a. At this time, the electric push rod 103c is in the minimum compression state, that is, the abutment block 103b is close to the left inner wall of the carrying frame 103a. Then close the box panel 2, start the drying mechanism, and the rock slab body 104 will be dried.
[0033] Example 2
[0034] Please see Figure 4 Based on Example 1, an extraction component 3 is also provided. The extraction component 3 can not only achieve a heat circulation effect, but also dry the high-temperature gas to ensure the dryness of the environment inside the drying oven.
[0035] Specifically, the top of the drying oven 1 is provided with an air outlet 102, and an air extraction component 3 is installed on the air outlet 102. The air extraction component 3 includes a connecting frame 302 covering the air outlet 102. The connecting frame 302 is connected to one end of the air extraction pipe 301, and the other end of the air extraction pipe 301 is connected to the heating mechanism on the rear side wall of the drying oven 1.
[0036] Furthermore, the exhaust pipe 301 is S-shaped, with a groove 301a at its bottom end. A connector 303 is inserted into the groove 301a, and a drying plate 304 is installed inside the connector 303. A pull plate 303a for hand-held use is fixedly installed on the outer side wall of the connector 303. The drying plate 304 absorbs water vapor, which greatly reduces the humidity of the gas and prevents the vapor from condensing on the top wall of the drying chamber 1.
[0037] The operation process of this embodiment is as follows: During use, the heating mechanism at the bottom of the rear side wall of the drying chamber 1 is activated. Since this is a standard configuration in slab drying equipment, it will not be described in detail here. With the heating mechanism activated, the high-heat gas on it is input to the bottom of the drying chamber 1 through the heating pipe, thereby heating and drying the slab body 104 placed inside the drying chamber 1. During the drying process, water droplets will evaporate from the surface of the slab body 104. These water droplets will be heated to form hot steam. Since the drying environment is a closed structure, the hot steam will rise to the top of the drying chamber 1. The air is gathered together, and then the air extraction component 3 is connected to the air inlet of the heating mechanism. When the heating mechanism is working, it will generate a suction action. Part of the suction is drawn in air from the external environment, and the other part is drawn in air from the air extraction pipe 301. The air extraction pipe 301 will then form a suction action on the top environment of the drying chamber 1. This suction action will absorb the high-temperature water vapor, and after the part of the high-temperature gas rich in water vapor comes into contact with the drying plate 304, it will be reintroduced into the heating mechanism. This not only achieves the effect of heat circulation, but also dries the gas and ensures the dryness of the environment inside the drying chamber 1.
[0038] Example 3
[0039] Please see Figure 5-6 Based on Embodiments 1 and 2, an electric gate 401 and a cooling box 5 are also provided. The electric gate 401 can realize the connection or closure of the drying box 1 and the cooling box 5, and the cooling box 5 can perform cooling treatment on the dried rock slab body 104.
[0040] Specifically, the right side wall of the drying oven 1 is hollowed out, and the left side wall of the cooling box 5 is hollowed out. A side frame 4 is installed on the right side wall of the drying oven 1, and an electric gate 401 is installed inside the side frame 4. The left side wall of the cooling box 5 is connected to the right side wall of the drying oven 1.
[0041] Furthermore, a frame 501 is installed on the right side wall of the cooling box 5, and a cover plate 6 is installed inside the frame 501. Multiple vertically parallel support plates 504 are provided inside the cooling box 5, and the support plates 504 are correspondingly arranged with the loading frame 103a. Fan 1 502 and fan 2 503 are respectively embedded and installed on the bottom of the front side wall and the top side wall of the cooling box 5.
[0042] The operation process of this embodiment is as follows: After the drying chamber 1 completes the drying of the rock slab body 104, the electric gate 401 is opened. At this time, the drying chamber 1 is connected to the cooling chamber 5. Then, the electric push rod 103c is activated, and it extends, pushing the rock slab body 104 towards the cooling chamber 5 through the abutment block 103b. Since the cooling chamber 5 is equipped with a support plate 504, the support plate 504 is horizontally connected to the loading frame 103a, which will then receive the rock slab body 104 falling from the loading frame 103a until the rock slab body 104 is completely inserted into the support plate 504. Then, the electric gate 401 is closed, and the drying chamber 1 and the cooling chamber 5 are connected again. The secondary isolation is not connected, and the pushing action of the slab body 104 is fast, which ensures that only a small amount of high temperature in the environment inside the drying chamber 1 is lost. After the electric gate 401 is closed, the first fan 502 and the second fan 503 are started. The first fan 502 draws air from the outside environment into the cooling chamber 5 to cool the slab body 104 inside the cooling chamber 5. The second fan 503 draws the high temperature gas from the top of the cooling chamber 5 and removes it from the cooling chamber 5, thereby accelerating the cooling effect of the dried slab body 104. After cooling is completed, the slab body 104 inside the cooling chamber 5 can be taken out by opening the cover plate 6.
[0043] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0044] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A drying device for processing slabs, comprising a drying chamber (1); characterized in that: The drying oven (1) is equipped with a loading component (103) inside. The loading component (103) includes a loading frame (103a) fixed to the inner wall of the drying oven (1), and an abutment block (103b) is slidably disposed on the rear part of the left side wall of the loading frame (103a). An electric push rod (103c) is installed on the left side wall of the abutment block (103b). A box panel (2) is installed on the front side wall of the drying oven (1), and a controller (201) is embedded in the outer wall of the box panel (2). An air extraction assembly (3) is embedded in the upper side wall of the drying oven (1). The air extraction assembly (3) includes an air extraction pipe (301) that communicates with the drying oven (1), and a drying plate (304) is provided inside the air extraction pipe (301). An electric gate (401) is installed on the right side wall of the drying oven (1), and a cooling box (5) is also provided on the right side wall of the drying oven (1). A support plate (504) is provided inside the cooling box (5), and a cover plate (6) is also installed on the right side wall of the cooling box (5).
2. The drying device for processing slabs according to claim 1, characterized in that, The drying box (1) is provided with a drying trough (101) inside, and an air outlet (102) is provided at the center of the top side wall of the drying box (1). A connecting frame (302) is fixedly provided at one end of the air extraction pipe (301), and the connecting frame (302) covers the air outlet (102).
3. The drying device for processing rock slabs according to claim 2, characterized in that, The other end of the exhaust pipe (301) is connected to the heating mechanism on the rear side wall of the drying oven (1), and the exhaust pipe (301) is S-shaped, with a pipe groove (301a) at its bottom end, and a connector (303) is inserted into the pipe groove (301a).
4. The drying device for processing rock slabs according to claim 3, characterized in that, The plug-in frame (303) is provided with a drying plate (304) inside. A pull plate (303a) for hand-held use is fixedly installed on the outer side wall of the plug-in frame (303). The drying plate (304) is arranged in a horizontal structure inside the air extraction pipe (301).
5. A drying device for processing slabs according to claim 1, characterized in that, Multiple load cells (103) are provided, and the load cells (103) are arranged vertically and parallel to each other. The load cell (103a) is fixedly connected to the inner wall of the drying tank (101), and a fixing frame (103d) is fixedly provided on the left outer wall of the drying box (1).
6. A drying device for processing slabs according to claim 5, characterized in that, The electric push rod (103c) is fixedly installed inside the fixed frame (103d), and the electric push rod (103c) is also inserted into the left side wall of the drying box (1), and the shaft end of the electric push rod (103c) passes through the left side wall of the drying box (1) and is connected to the abutment block (103b).
7. A drying device for processing slabs according to claim 1, characterized in that, A side frame (4) is provided on the right side wall of the drying box (1), and the drying box (1) is connected to the cooling box (5) through the side frame (4). The electric gate (401) is located inside the side frame (4). The right side wall of the drying box (1) is hollowed out, and the left side wall of the cooling box (5) is hollowed out. The left side wall of the cooling box (5) is connected to the right side wall of the drying box (1).
8. A drying apparatus for processing slabs according to claim 1, characterized in that, The cooling box (5) is provided with multiple vertically parallel support plates (504), and the support plates (504) are correspondingly arranged with the loading frame (103a). Fan 1 (502) and fan 2 (503) are respectively embedded and installed on the bottom of the front side wall and the top side wall of the cooling box (5). A plate frame (501) is installed on the right side wall of the cooling box (5), and the cover plate (6) is set inside the plate frame (501).
Citation Information
Patent Citations
Rapid drying equipment for granite plate processing
CN222951441U