An intelligent polishing device for ceramic tile manufacturing process
By introducing a connecting pipe structure into the intelligent polishing device of the tile manufacturing process, the problems of large corner vortex influence and poor air uniformity have been solved, thereby improving the drying efficiency.
Patent Information
- Application Number
- CN202411959957.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2044-12-30
AI Technical Summary
Existing intelligent polishing devices for tile manufacturing suffer from significant vortex effects at the corners and poor airflow uniformity, resulting in low drying efficiency.
A first connecting pipe and a second connecting pipe are introduced into the drying device, which are connected to the two side walls of the fan outlet pipe and the side wall of the ventilation cavity, respectively. The airflow is adjusted by regulating the control valve to reduce corner eddies and improve the uniformity of airflow.
By reducing eddies, the airflow uniformity of the drying module is improved, thereby increasing the drying efficiency of the drying device.
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Figure CN119458079B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of ceramic tile manufacturing equipment and process technology, specifically to an intelligent polishing device for ceramic tile manufacturing processes. Background Technology
[0002] like Figure 1 As shown, the existing intelligent polishing device for tile manufacturing uses a drying unit. This unit is used for drying the tile blanks after water washing and polishing or wet polishing. The drying unit is located above the tile conveyor line and includes a blower and a drying module. The blower has a rectangular blower outlet pipe. The drying module includes a first ventilation chamber and a second ventilation chamber connected vertically. An air outlet is located at the downstream end of the second ventilation chamber. The blower outlet pipe is fixedly connected to and communicates with the first ventilation chamber, and the airflow direction is blower outlet pipe → first ventilation chamber → second ventilation chamber → air outlet. However, the existing drying unit still suffers from significant vortex effects at the corners and poor airflow uniformity, indicating that the drying efficiency needs further improvement. Summary of the Invention
[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and provide an intelligent polishing device for tile manufacturing process. Through the structural design of the drying device, specifically, one end of the first connecting pipe is connected to the first side wall of the fan outlet pipe, and the other end is connected to the first side wall of the second ventilation cavity. One end of the second connecting pipe is connected to the second side wall of the fan outlet pipe, and the other end is connected to the first side wall of the first ventilation cavity. This allows part of the airflow in the fan outlet pipe to be guided through the first and second connecting pipes to the first side wall of the second ventilation cavity and the first side wall of the first ventilation cavity at the first and second corners, respectively. This reduces eddies at the corners, improves the uniformity of airflow from the drying module, and thus improves the drying efficiency of the drying device.
[0004] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0005] An intelligent polishing device for ceramic tile manufacturing process includes a drying device for drying the ceramic tile blanks after water washing and polishing or wet polishing. The drying device is located above the ceramic tile conveying line. The drying device includes a blower (1) and a drying module (2). The blower has a blower outlet pipe (11) with a rectangular cross-section. The drying module includes a first ventilation cavity (21) and a second ventilation cavity (22) connected vertically. The downstream end of the second ventilation cavity is provided with an air outlet surface (23) with a rectangular air outlet hole. The blower outlet pipe is fixedly connected to and communicates with the first ventilation cavity. The direction of the drying airflow is blower outlet pipe → first ventilation cavity → second ventilation cavity → air outlet surface. The device is characterized in that: the first side wall of the blower outlet pipe is connected to a first connecting pipe (3). One end of the first connecting pipe is connected to the first side wall of the blower outlet pipe, and the other end is connected to the first side wall of the second ventilation cavity.
[0006] Furthermore, the length of the drying module (2) is adapted to the length of the brick blank.
[0007] Furthermore, the cross-sections of the first ventilation cavity (21) and the second ventilation cavity (22) are rectangular.
[0008] Furthermore, the first connecting pipe (3) has a rectangular cross-section and a first orifice (31) at its end. The first connecting pipe and the second ventilation cavity (22) have approximately the same thickness and are arranged coplanarly or parallel. The first connecting pipe is located near the first corner where the first ventilation cavity and the second ventilation cavity intersect.
[0009] Furthermore, a first regulating control valve is provided on the first connecting pipe (3), which is used to regulate and control the flow rate and / or pressure of the airflow in the first connecting pipe.
[0010] Furthermore, the second sidewall of the fan outlet pipe (11) is connected to a second connecting pipe (4). One end of the second connecting pipe is connected to the second sidewall of the fan outlet pipe, and the other end is connected to the first sidewall of the first ventilation cavity (21). The second sidewall of the fan outlet pipe is parallel to the first sidewall, and the first sidewall of the second ventilation cavity (22) is perpendicular to the first sidewall of the first ventilation cavity.
[0011] Furthermore, the second connecting pipe (4) has a rectangular cross-section and a second opening (41) at its end. The second connecting pipe and the second ventilation cavity (22) have approximately the same thickness and are arranged coplanarly or parallel. The second connecting pipe is located near the second corner where the first ventilation cavity and the second ventilation cavity intersect. The first corner and the second corner are two corners at opposite corners of the first ventilation cavity (21).
[0012] Furthermore, a second regulating control valve is provided on the second connecting pipe (4), which is used to regulate and control the flow rate and / or pressure of the airflow in the second connecting pipe.
[0013] The present invention discloses an intelligent polishing device for ceramic tile manufacturing process. Specifically, through the structural design of the drying device, one end of the first connecting pipe is connected to the first side wall of the fan outlet pipe, and the other end is connected to the first side wall of the second ventilation cavity. One end of the second connecting pipe is connected to the second side wall of the fan outlet pipe, and the other end is connected to the first side wall of the first ventilation cavity. This allows a portion of the airflow from the fan outlet pipe to be guided through the first and second connecting pipes to the first side wall of the second ventilation cavity at the first and second corners, and the first side wall of the first ventilation cavity at the first and second corners, respectively. This reduces eddies at the corners, improves the uniformity of airflow from the drying module, and thus enhances the drying efficiency of the drying device. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of a prior art drying device.
[0015] Figure 2 This is a schematic diagram of the drying device structure of the intelligent polishing device for ceramic tile manufacturing process of the present invention.
[0016] Figure 3 This is a schematic diagram of another embodiment of the drying device of the present invention.
[0017] In the diagram: blower 1, drying module 2, first connecting pipe 3, second connecting pipe 4, blower outlet pipe 11, first ventilation cavity 21, second ventilation cavity 22, air outlet surface 23, first orifice 31, second orifice 41. Detailed Implementation
[0018] To make the technical solution and advantages of the present invention clearer, the technical solution of the present invention will be described in a clearer and more complete manner below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some embodiments of the present invention, and are only used to explain the present invention, not to limit the present invention. It should be noted that, for ease of description, only the parts / structures related to the present invention are shown in the accompanying drawings. Other related parts can be referred to with ordinary design. In the absence of conflict, the embodiments and technical features in the embodiments of the present invention can be combined with each other to obtain new embodiments.
[0019] Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of this invention. Furthermore, unless otherwise defined, the technical or scientific terms used in the description of this invention should have the ordinary meaning understood by those skilled in the art.
[0020] The present invention will now be described in further detail with reference to the accompanying drawings.
[0021] like Figure 2-3 As shown, an intelligent polishing device for ceramic tile manufacturing process includes a drying device for drying the ceramic tile blanks after water washing and polishing or wet polishing. The drying device is located above the ceramic tile conveyor line and includes a blower 1 and a drying module 2. The blower 1 has a blower outlet pipe 11 with a rectangular cross-section. The drying module 2 includes a first ventilation cavity 21 and a second ventilation cavity 22 connected vertically. The downstream end of the second ventilation cavity 22 is provided with an air outlet surface 23 with a rectangular air outlet hole. The blower outlet pipe 11 is fixedly connected to and communicates with the first ventilation cavity 21, and the direction of the drying airflow is blower outlet pipe 11 → first ventilation cavity 21 → second ventilation cavity 22 → air outlet surface 23. The device is characterized in that: a first connecting pipe 3 is connected to the first side wall of the blower outlet pipe 11, one end of the first connecting pipe 3 is connected to the first side wall of the blower outlet pipe 11, and the other end is connected to the first side wall of the second ventilation cavity 22.
[0022] The length of the drying module 2 is adapted to the length of the tile / brick blank.
[0023] The cross-sections of the first ventilation cavity 21 and the second ventilation cavity 22 are rectangular.
[0024] The first connecting pipe 3 has a rectangular / square cross-section and a first orifice 31 at its end. The first connecting pipe 3 and the second ventilation cavity 22 have approximately the same thickness and are arranged coplanarly / parallel. The first connecting pipe 3 is located near the first corner where the first ventilation cavity 21 and the second ventilation cavity 22 intersect.
[0025] The present invention, through the structural design of the drying device, specifically, connects one end of the first connecting pipe 3 to the first side wall of the fan outlet pipe 11 and the other end to the first side wall of the second ventilation cavity 22. This allows part of the airflow in the fan outlet pipe 11 to be guided through the first connecting pipe 3 to the first side wall of the second ventilation cavity 22 at the first corner, thereby reducing eddies at the first corner, improving the uniformity of airflow from the drying module 2, and thus improving the drying efficiency of the drying device.
[0026] In one embodiment, a first regulating control valve is provided on the first connecting pipe 3, which is used to regulate and control the flow rate and / or pressure of the airflow in the first connecting pipe 3.
[0027] In one embodiment, a second connecting pipe 4 is connected to the second side wall of the fan outlet pipe 11. One end of the second connecting pipe 4 is connected to the second side wall of the fan outlet pipe 11, and the other end is connected to the first side wall of the first ventilation cavity 21. The second side wall of the fan outlet pipe 11 is parallel to the first side wall, and the first side wall of the second ventilation cavity 22 is perpendicular to the first side wall of the first ventilation cavity 21.
[0028] The second connecting pipe 4 has a rectangular / square cross-section and a second orifice 41 at its end. The second connecting pipe 4 and the second ventilation cavity 22 have approximately the same thickness and are arranged coplanarly / parallel. The second connecting pipe 4 is located near the second corner where the first ventilation cavity 21 and the second ventilation cavity 22 intersect. The first corner and the second corner are two corners at opposite corners of the first ventilation cavity 21.
[0029] A second regulating control valve is provided on the second connecting pipe 4. The second regulating control valve is used to regulate and control the flow rate and / or pressure of the airflow in the second connecting pipe 4.
[0030] The present invention, through the structural design of the drying device, specifically, connects one end of the second connecting pipe 4 to the second side wall of the fan outlet pipe 11 and the other end to the first side wall of the first ventilation cavity 21. This allows part of the airflow in the fan outlet pipe 11 to be guided through the second connecting pipe 4 to the first side wall of the first ventilation cavity 21 at the second corner, thereby reducing eddies at the second corner, improving the uniformity of airflow from the drying module 2, and thus improving the drying efficiency of the drying device.
[0031] Blower 1 is a centrifugal blower or a centrifugal compressor.
[0032] The present invention discloses an intelligent polishing device for ceramic tile manufacturing process. Through the structural design of the drying device, specifically, one end of the first connecting pipe 3 is connected to the first side wall of the fan outlet pipe 11, and the other end is connected to the first side wall of the second ventilation cavity 22. One end of the second connecting pipe 4 is connected to the second side wall of the fan outlet pipe 11, and the other end is connected to the first side wall of the first ventilation cavity 21. This allows part of the airflow in the fan outlet pipe 11 to be guided through the first connecting pipe 3 and the second connecting pipe 4 to the first side wall of the second ventilation cavity 22 and the first side wall of the first ventilation cavity 21 at the first and second corners, respectively. This reduces eddies at the corners, improves the uniformity of airflow from the drying module 2, and thus improves the drying efficiency of the drying device.
[0033] The above embodiments are illustrative of the present invention and not intended to limit the invention. It is understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent polishing device for ceramic tile manufacturing process, comprising a drying device for drying the ceramic tile blanks after water washing and polishing or wet polishing, the drying device being positioned above the ceramic tile conveyor line, the drying device comprising a blower (1) and a drying module (2), the blower having a blower outlet pipe (11) with a rectangular cross-section, the drying module comprising a first ventilation cavity (21) and a second ventilation cavity (22) vertically connected, the downstream end of the second ventilation cavity being provided with an air outlet surface (23) having a rectangular air outlet hole, the blower outlet pipe being fixedly connected and communicating with the first ventilation cavity, and the direction of the drying airflow being blower outlet pipe → first ventilation cavity → second ventilation cavity → air outlet surface; characterized in that: A first connecting pipe (3) is connected to the first side wall of the fan outlet pipe. One end of the first connecting pipe is connected to the first side wall of the fan outlet pipe, and the other end is connected to the first side wall of the second ventilation cavity. The first connecting pipe is located near the first corner where the first ventilation cavity and the second ventilation cavity intersect.
2. The intelligent polishing device for ceramic tile manufacturing process as described in claim 1, characterized in that, The length of the drying module (2) is adapted to the length of the brick blank.
3. The intelligent polishing device for ceramic tile manufacturing process as described in claim 2, characterized in that, The cross-sections of the first ventilation cavity (21) and the second ventilation cavity (22) are rectangular.
4. The intelligent polishing device for ceramic tile manufacturing process as described in claim 3, characterized in that, The first connecting pipe (3) has a rectangular cross-section and a first orifice (31) at its end. The first connecting pipe and the second ventilation cavity (22) have the same thickness and are coplanar or parallel.
5. The intelligent polishing device for ceramic tile manufacturing process as described in claim 4, characterized in that, A first regulating control valve is provided on the first connecting pipe (3), which is used to regulate and control the flow rate and / or pressure of the airflow in the first connecting pipe.
6. The intelligent polishing device for ceramic tile manufacturing process as described in claim 5, characterized in that, The second side wall of the fan outlet pipe (11) is connected to a second connecting pipe (4). One end of the second connecting pipe is connected to the second side wall of the fan outlet pipe, and the other end is connected to the first side wall of the first ventilation cavity (21). The second side wall of the fan outlet pipe is parallel to the first side wall, and the first side wall of the second ventilation cavity (22) is perpendicular to the first side wall of the first ventilation cavity.
7. The intelligent polishing device for ceramic tile manufacturing process as described in claim 6, characterized in that, The second connecting pipe (4) has a rectangular cross section and a second orifice (41) at its end. The second connecting pipe and the second ventilation cavity (22) have the same thickness and are coplanar or parallel. The second connecting pipe is located near the second corner where the first ventilation cavity and the second ventilation cavity intersect. The first corner and the second corner are two corners at opposite corners of the first ventilation cavity (21).
8. The intelligent polishing device for ceramic tile manufacturing process as described in claim 7, characterized in that, A second regulating control valve is provided on the second connecting pipe (4), which is used to regulate and control the flow rate and / or pressure of the airflow in the second connecting pipe.
Citation Information
Patent Citations
Ceramic tile surface drying device
CN204202347U
Drying equipment, cleaning base station and cleaning system
CN219000194U