Gypsum processing production aging device
By designing a small-scale aging device and equipping it with a precise temperature and humidity control system, the problems of high power consumption and inaccurate temperature and humidity control of large-scale storage equipment were solved, and efficient and energy-saving production of gypsum aging was achieved.
Patent Information
- Application Number
- CN202422524356.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-10-18
AI Technical Summary
Large-scale warehouse-type gypsum aging equipment has high power consumption and inaccurate temperature and humidity control, resulting in uneven gypsum aging reaction.
A small aging device is designed, equipped with aging ventilation equipment, including a ventilation fan unit, a humidification water tank, a central control electrical box, a temperature and humidity probe, etc., to achieve precise control of temperature and humidity.
Precise control of temperature and humidity during the gypsum aging process is achieved, which reduces energy consumption and improves aging effect and production efficiency.
Smart Images

Figure CN223433398U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of gypsum processing, especially relates to a gypsum processing production aging device. BACKGROUND
[0002] Gypsum aging refers to the process that gypsum is stored for a period of time under certain conditions, so that the performance of gypsum is improved. In this process, the hemihydrate gypsum in the gypsum further reacts with water, and the crystal structure is optimized. The principle is mainly to fully hydrate the crystal phase inside the gypsum, so that the setting time of the gypsum is more reasonable and the strength is higher. The gypsum aging device has a warehouse type aging equipment, a dynamic aging equipment and a multi-layer belt type aging equipment. The warehouse type aging equipment is designed with a large storage warehouse for storing gypsum. The ventilation system can adjust the humidity and temperature in the warehouse to keep it within the appropriate aging value range. However, the ventilation equipment and humidification equipment used in large-scale storage have high power consumption, which is not suitable for smaller production scales. Moreover, due to the large structure of the large-scale storage type aging warehouse, it is not accurate and fast to control the temperature and humidity inside the warehouse, which may cause overreaction or incomplete reaction of the gypsum aging. Therefore, a gypsum processing production aging device is designed. SUMMARY
[0003] The utility model discloses a gypsum processing production aging device, which solves the above technical problems.
[0004] A gypsum processing production aging device, comprising an aging warehouse, a material parallel placement table and an aging ventilation equipment. The two ends of the aging warehouse are open. The material parallel placement table is arranged in the aging warehouse. The aging ventilation equipment is arranged at one end of the aging warehouse.
[0005] On the basis of the above technical scheme, the aging ventilation equipment is composed of a ventilation fan group, an air duct support, a humidification water tank, a central control electrical box, a water pump group, water pipe materials, water mist spray heads, temperature and humidity probes, electrical wires and electrical heating wire meshes. The air duct support is arranged on the top surface of the humidification water tank. The ventilation fan group is fixed on the air duct support. The heating wire meshes are arranged on the front side of the air duct support and in front of the ventilation fan group. The central control electrical box is arranged on one side of the humidification water tank. The water pump group is connected to the bottom edge of the side surface of the humidification water tank. The water mist spray heads are arranged in multiple groups. The multiple groups of water mist spray heads are arranged on the outer side of the front surface of the air duct support. The multiple groups of water mist spray heads are all connected to the water pump group through the water pipe materials. The temperature and humidity probes are arranged in multiple groups. The multiple groups of temperature and humidity probes are all connected to the central control electrical box through the electrical wires. The ventilation fan group, the water pump group and the heating wire meshes are all connected to the central control electrical box through the electrical wires.
[0006] On the basis of the above technical scheme, the temperature and humidity probe is arranged in the aging bin, and the temperature and humidity probe is arranged at the open end of the aging bin opposite to the aging ventilation equipment.
[0007] Compared with the prior art, the gypsum aging equipment is optimized, the traditional storage type aging equipment is changed, a small aging device is designed, the structure adopts a small environment aging bin, and a separate ventilation equipment is arranged, so that the temperature and humidity control is more accurate, and the gypsum aging equipment is suitable for popularization and use. BRIEF DESCRIPTION OF DRAWINGS
[0008] Figure 1 It is an overall appearance state diagram of the utility model.
[0009] Figure 2 It is an aging ventilation schematic view of the utility model.
[0010] In the drawing: aging bin 1, material parallel placement table 2, aging ventilation equipment 3, ventilation fan group 4, air duct support 5, humidification water tank 6, central control electrical box 7, water supply pump group 8, water supply pipe material 9, water mist spray head 10, temperature and humidity probe 11, electrical wire 12. DETAILED DESCRIPTION
[0011] The utility model will be further described in detail in combination with the drawings and specific implementation.
[0012] A gypsum processing production aging device, including aging bin 1, material parallel placement table 2, aging ventilation equipment 3, the both ends of aging bin 1 are open settings, material parallel placement table 2 is arranged in aging bin 1, aging ventilation equipment 3 is arranged in one side end of aging bin 1.
[0013] The aging ventilation equipment 3 is composed of a ventilation fan group 4, an air duct support 5, a humidification water tank 6, a central control electrical box 7, a water supply pump group 8, a water supply pipe material 9, a water mist spray head 10, a temperature and humidity probe 11, an electrical wire 12 and an electric heating wire mesh, the air duct support 5 is arranged on the top surface of the humidification water tank 6, the ventilation fan group 4 is fixed on the air duct support 5, the heating wire mesh is arranged on the front side of the air duct support 5 and the front side of the ventilation fan group 4, the central control electrical box 7 is arranged on one side of the humidification water tank 6, the water supply pump group 8 is connected to the side bottom edge of the humidification water tank 6, the water mist spray head 10 is provided with multiple groups, the multiple groups of water mist spray heads 10 are arranged on the front side outer edge of the air duct support 5, and the multiple groups of water mist spray heads 10 are all connected to the water supply pump group 8 through the water supply pipe material 9, the temperature and humidity probe 11 is provided with multiple groups, the multiple groups of temperature and humidity probes 11 are all connected to the central control electrical box 7 through the electrical wire 12, and the ventilation fan group 4, the water supply pump group 8 and the heating wire mesh are all connected to the central control electrical box 7 through the electrical wire 12.
[0014] The temperature and humidity probe 11 is arranged in the aging bin 1, and the temperature and humidity probe 11 is arranged at an open end of the aging bin 1 opposite to the aging ventilation device 3.
[0015] The utility model working principle: the design of this equipment has the characteristics of miniaturization, convenient operation, control is more accurate.
[0016] Different aging bins 1 can be arranged according to production requirements, and the aging bins not working can stop running, so that the actual production power consumption is reduced, energy saving is more, and the small-sized aging bin 1 is more convenient to arrange in a production site.
[0017] The main principle is that the temperature and humidity information in the aging bin 1 is transmitted to the aging ventilation device 3 through the temperature and humidity probe 11, and after the calculation and adjustment of the aging ventilation device 3, the output power of the ventilation fan set 4 and the output power of the water supply pump set 8 are adjusted, so that the temperature and humidity in the aging bin 1 are adjusted, the most suitable temperature and humidity for aging production are achieved, when the internal temperature is too low, the electric heating wire net can also work to heat the temperature blown in by the ventilation fan set 4, so that the temperature in the aging bin 1 is increased.
[0018] The above is the preferred embodiment of the utility model, and for ordinary skilled persons in the art, according to the teaching of the utility model, the change, modification, replacement and modification of the embodiment without departing from the principle and spirit of the utility model still fall within the protection scope of the utility model.
Claims
1. A gypsum processing and aging device, characterized in that: The invention comprises an aging bin (1), a material parallel storage platform (2), and an aging ventilation device (3). The two ends of the aging bin (1) are open, the material parallel storage platform (2) is arranged in the aging bin (1), and the aging ventilation device (3) is arranged at one side end of the aging bin (1). The aging ventilation device (3) is composed of a ventilation fan unit (4), an air duct bracket (5), a humidifying water tank (6), a central control electrical box (7), a water supply pump unit (8), a water supply pipe (9), a water mist spray head (10), a temperature and humidity probe (11), an electrical wire (12), and an electric heating wire mesh. The air duct bracket (5) is arranged on the top surface of the humidifying water tank (6), the ventilation fan unit (4) is fixed on the air duct bracket (5), and the heating wire mesh is arranged in the air duct. The bracket (5) is arranged on the front side of the bracket, and the heating wire mesh is arranged on the front side of the ventilation fan group (4). The central control electrical box (7) is arranged on one side of the humidifying water tank (6). The water supply pump group (8) is connected to the side bottom edge of the humidifying water tank (6). The water mist spray heads (10) are provided in multiple groups. The multiple groups of water mist spray heads (10) are arranged outside the front side of the air duct bracket (5), and the multiple groups of water mist spray heads (10) are connected to the water supply pump group (8) through the water supply pipe (9). The temperature and humidity probes (11) are provided in multiple groups. The multiple groups of temperature and humidity probes (11) are connected to the central control electrical box (7) through the electrical wire (12). The ventilation fan group (4), the water supply pump group (8), and the heating wire mesh are all connected to the central control electrical box (7) through the electrical wire (12).
2. A gypsum processing and production aging device according to claim 1, characterized in that, The temperature and humidity probe (11) is arranged in the aging bin (1), and the temperature and humidity probe (11) is arranged at the open end of the aging bin (1) on the other side relative to the aging ventilation equipment (3).