Ceramic plate thermal cycle equipment

By introducing pressure and temperature sensors into the terracotta panel drying equipment, combined with electric valves and exhaust fans, automatic regulation of pressure and temperature is achieved, solving the safety hazards of the terracotta panel drying equipment under high temperature and high pressure, and ensuring the safety of equipment and personnel.

CN223564604UActive Publication Date: 2025-11-18JIANGXI SHAOHUA CERAMICS CO LTD
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Patent Information

Application Number
CN202423043779.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-18
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing terracotta panel drying equipment is prone to safety accidents under high temperature and high pressure, and the hot air may burn workers.

Method used

A terracotta panel thermal circulation device was designed, equipped with a pressure sensor and a temperature sensor. Exhaust and drainage are controlled by an electric valve. Combined with an exhaust fan and a cooler, it can automatically regulate air pressure and temperature to prevent excessively high air pressure and temperature.

Benefits of technology

It effectively prevents excessive air pressure and temperature inside the drying chamber, avoiding safety accidents and the risk of burns, and ensuring the safety of equipment and personnel.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223564604U_ABST
Patent Text Reader

Abstract

The utility model discloses ceramic plate heat circulation equipment which comprises a drying box body, a third reinforcing frame is fixedly connected to the drying box body, a second exhaust fan is fixedly installed on the third reinforcing frame, a second heat absorption pipe is connected between the second exhaust fan and the drying box body, and a second heat outlet pipe is connected to the second exhaust fan. A second electric valve is installed on the second heat absorption pipe, a second temperature sensor is installed on the cooling box, a cooler is installed on the cooling box, and a third electric valve is installed on a cooling box drainage pipe. The temperature of water in the cooling box is detected through the second temperature sensor, so that the cooler can timely cool water with overhigh temperature, the hot air discharging efficiency is kept, and workers are prevented from being scalded due to the fact that the sealing door is opened when the temperature of the drying box body is overhigh.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to pottery plate processing technical field especially relates to a pottery plate heat cycle equipment. BACKGROUND

[0002] Pottery plate in the process of production, will dry pottery plate, will use drying equipment when drying.

[0003] The utility model discloses a hot -blast drying equipment of building ceramic discloses a kind of hot -blast drying equipment of building ceramic, including cabinet, vertical plate is arranged in cabinet, the upper surface and the lower surface of vertical plate are respectively fixedly connected in the upper surface and the lower surface of cabinet inner wall, the right side of vertical plate is fixedly connected with several placing plates, and the right side of several placing plates is fixedly connected in the right side of cabinet inner wall, the right side of cabinet is fixedly connected with drying device, the left end of drying device is communicated with the right end of shunt pipe, the upper surface of shunt pipe is provided with several spray heads, and the upper surface of spray head is clamped in the lower surface of cabinet, the device when drying, temperature and air pressure can increase, if there is no time to discharge air pressure, easy to damage cabinet inside, cause safety accident, and open box door before hot air is not excluded, and the hot gas that gushes out is easy to scald body part, therefore a kind of pottery plate heat cycle equipment is presented. UTILITY MODEL CONTENTS

[0004] The utility model is to provide a kind of pottery plate heat cycle equipment to solve the problems presented in the above background.

[0005] A kind of pottery plate heat cycle equipment, it includes drying cabinet, drying cabinet is fixedly connected with cooling box, cooling box is connected with drain pipe, drying cabinet is rotatably connected with closed door, controller is installed on closed door, drying cabinet is fixedly connected with first reinforcing frame, first reinforcing frame is fixedly installed with hot blast machine, and the air outlet pipe between hot blast machine and drying cabinet, drying cabinet is fixedly connected with exhaust pipe, first electric valve is installed on exhaust pipe, first temperature sensor is installed in drying cabinet, air pressure sensor is installed in drying cabinet, drying cabinet is connected with multiple partitions, drying cabinet is fixedly connected with second reinforcing frame, second reinforcing frame is fixedly installed with first air extractor, first heat absorption pipe is connected between first air extractor and drying cabinet, first hot pipe is connected between first air extractor and drying cabinet, drying cabinet is fixedly connected with second fixed ring, drying cabinet is fixedly connected with third reinforcing frame, third reinforcing frame is fixedly installed with second air extractor, second heat absorption pipe is connected between second air extractor and drying cabinet, second hot pipe is connected to second air extractor, second electric valve is installed on second heat absorption pipe, second temperature sensor is installed on cooling box, cooler is installed on cooling box, third electric valve is installed on the drain pipe of cooling box.

[0006] Further, the closing door is fixedly connected with a handle.

[0007] Further, the controller is provided with a start button, a close button and a cooling button.

[0008] The utility model discloses beneficial effect has:

[0009] 1, the utility model discloses a drying box body inside the air pressure is detected to the air pressure sensor, when drying box body inside the air pressure reaches the first threshold value of air pressure sensor, thereby control first electric valve opens exhaust pipe, makes hot air exhaust through exhaust pipe, thereby reduces drying box body inside the air pressure, when drying box body inside the air pressure is less than the second threshold value of air pressure sensor, thereby control first electric valve closes exhaust pipe, thereby realizes the automatic discharge of drying box body inside the air pressure.

[0010] 2, the utility model discloses the water temperature in cooling box is detected to the second temperature sensor, makes the cooler can in time to the water of temperature too high cooling, thereby keeps the efficiency of hot air discharge, prevents drying box body and opens the closing door when temperature too high and scalds to the staff. BRIEF DESCRIPTION OF DRAWINGS

[0011] Fig. 1 It is the three-dimensional structure schematic diagram of the utility model ceramic plate heat cycle equipment;

[0012] Fig. 2 It is the side view three-dimensional structure schematic diagram of drying box body;

[0013] Fig. 3 It is the first sectional view three-dimensional structure schematic diagram of drying box body;

[0014] Fig. 4 It is the second sectional view three-dimensional structure schematic diagram of drying box body.

[0015] In the drawing, 1-drying box body, 101-cooling box, 2-closing door, 3-controller, 4-first reinforcing frame, 5-hot air blower, 6-first fixed ring, 7-outlet pipe, 8-exhaust pipe, 9-first electric valve, 10-first temperature sensor, 11-air pressure sensor, 12-baffle, 13-second reinforcing frame, 14-first air extractor, 15-first heat absorbing pipe, 16-first heat outlet pipe, 17-second fixed ring, 18-third reinforcing frame, 19-second air extractor, 20-second heat absorbing pipe, 21-second heat outlet pipe, 22-second electric valve, 23-second temperature sensor, 24-cooler, 25-third electric valve. DETAILED DESCRIPTION

[0016] The technical scheme in the utility model embodiment will be described clearly and completely below with the drawings in the utility model embodiment.

[0017] like Figs. 1 to 4 The terracotta panel heat circulation device of this utility model, as shown, includes a drying chamber 1, a cooling box 101 fixedly connected to the drying chamber 1, a drain pipe connected to the cooling box 101, a rotatable door 2 rotatably connected to the drying chamber 1, a controller 3 installed on the closing door 2, a first reinforcing frame 4 fixedly connected to the drying chamber 1, a hot air blower 5 fixedly installed on the first reinforcing frame 4 for generating hot air, an air outlet pipe 7 between the hot air blower 5 and the drying chamber 1, an exhaust pipe 8 fixedly connected to the drying chamber 1, a first electric valve 9 installed on the exhaust pipe 8, a first temperature sensor 10 installed inside the drying chamber 1 for detecting the temperature inside the drying chamber 1, a pressure sensor 11 installed inside the drying chamber 1 for detecting the pressure inside the drying chamber 1, and multiple partitions 12 connected inside the drying chamber 1, with openings on the partitions 12. The drying chamber 1 has multiple through holes. A second reinforcing frame 13 is fixedly connected to the drying chamber 1. A first exhaust fan 14 is fixedly installed on the second reinforcing frame 13. A first heat absorption pipe 15 is connected between the first exhaust fan 14 and the drying chamber 1. A first heat outlet pipe 16 is connected between the first exhaust fan 14 and the drying chamber 1. A second fixing ring 17 is fixedly connected to the drying chamber 1. A third reinforcing frame 18 is fixedly connected to the drying chamber 1. A second exhaust fan 19 is fixedly installed on the third reinforcing frame 18. A second heat absorption pipe 20 is connected between the second exhaust fan 19 and the drying chamber 1. A second heat outlet pipe 21 is connected to the second exhaust fan 19. A second electric valve 22 is installed on the second heat absorption pipe 20. A second temperature sensor 23 is installed on the cooling box 101. A cooler 24 is installed on the cooling box 101 to cool the water. A third electric valve 25 is installed on the drain pipe of the cooling box 101.

[0018] A handle is fixedly connected to the closed door 2.

[0019] The controller 3 is equipped with a start button, a stop button, and a cooling button.

[0020] The working principle of this utility model is as follows: the first temperature sensor is provided with a first threshold and a second threshold, and the value of the first threshold is greater than the value of the second threshold.

[0021] The barometric pressure sensor is equipped with a first threshold and a second threshold, with the value of the first threshold being greater than the value of the second threshold.

[0022] By pulling the handle to rotate the closing door, thereby opening the inside of the drying box body, then put the pottery plate on the partition, then reverse rotation of the closing door to close the drying box, then pour cold water into the cooling box, press the start button, thereby controlling the work of the hot air blower, the hot air generated by the hot air blower enters the inside of the drying box through the air outlet pipe, thereby drying the pottery plate, when the temperature inside the drying box reaches the first temperature sensor preset first threshold, thereby controlling the first air extractor to work, the first air extractor extracts the hot air accumulated at the top of the drying box, so that the hot air returns to the bottom of the drying box through the first heat absorption pipe and the first heat outlet pipe, thereby utilizing the hot air, when the air pressure inside the drying box reaches the first threshold preset by the air pressure sensor, thereby controlling the first electric valve to open the exhaust pipe, so that the hot air is discharged through the exhaust pipe, thereby reducing the air pressure inside the drying box, when the air pressure inside the drying box is lower than the second threshold preset by the air pressure sensor, thereby controlling the first electric valve to close the exhaust pipe, after the pottery plate is dried, press the close button, thereby controlling the hot air blower and the first air extractor to stop working, then press the cooling button, thereby controlling the second electric valve to open the second heat absorption pipe channel, and controlling the second air extractor to work, the second air extractor extracts the hot air inside the drying box, so that the hot air enters the cooling box through the second heat absorption pipe and the second heat outlet pipe, thereby performing heat exchange work, when the temperature of the water reaches the threshold preset by the second temperature sensor, thereby controlling the cooler to work, the cooler cools the water, when the temperature inside the drying box is lower than the second threshold preset by the first temperature sensor, thereby controlling the second air extractor to stop working, when you want to discharge the cold water, control the third electric valve to open the cooling box drain pipe.

[0023] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A ceramic plate thermal cycling apparatus, characterized by: The application discloses a ceramic plate heat cycle device, which comprises a drying box body, a cooling box fixedly connected to the drying box body, a drain pipe connected to the cooling box, a closing door rotatably connected to the drying box body, a controller installed on the closing door, a first reinforcing frame fixedly connected to the drying box body, a hot air fan fixedly installed on the first reinforcing frame, an air outlet pipe between the hot air fan and the drying box body, an exhaust pipe fixedly connected to the drying box body, a first electric valve installed on the exhaust pipe, a first temperature sensor installed in the drying box body, an air pressure sensor installed in the drying box body, a plurality of partition plates connected to the drying box body, a second reinforcing frame fixedly connected to the drying box body, a first air extractor fixedly installed on the second reinforcing frame, a first heat absorption pipe connected between the first air extractor and the drying box body, a first heat outlet pipe connected between the first air extractor and the drying box body, a second fixing ring fixedly connected to the drying box body, a third reinforcing frame fixedly connected to the drying box body, a second air extractor fixedly installed on the third reinforcing frame, a second heat absorption pipe connected between the second air extractor and the drying box body, a second heat outlet pipe connected to the second air extractor, a second electric valve installed on the second heat absorption pipe, a second temperature sensor installed on the cooling box, a cooler installed on the cooling box and a third electric valve installed on the drain pipe of the cooling box.

2. The ceramic plate thermal cycle apparatus of claim 1, wherein: A handle is fixedly connected to the closing door.

3. The ceramic plate thermal cycle apparatus of claim 1, wherein: The controller is provided with a starting button, an off button and a cooling button.

Citation Information

Patent Citations

  • Hot air drying equipment for building ceramics

    CN210718420U