Curing agent production device and system
By designing a curing agent production device and using a measurement module and an integrated control module to precisely control the feeding ratio and speed, the problem of unstable curing agent production in existing technologies has been solved, and the production quality of curing agents has been improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-31
AI Technical Summary
Existing technologies make it difficult to achieve automatic feeding of each raw material component during the curing agent production process, while ensuring accurate proportions and appropriate feeding speeds, resulting in unstable quality of the produced curing agent.
A curing agent production device was designed, including a mixing drum, a small material tank, a feed pipe, a measuring module, and a comprehensive control module. By measuring the weight of the materials in the mixing drum and the small material tank, the feeding ratio and feeding speed of each raw material component are precisely controlled. Combined with the mixing host, automatic feeding and discharging are achieved.
It enables automatic feeding of each raw material component of the curing agent, and precisely controls the feeding ratio and feeding speed of each raw material component, thereby improving the production quality of the curing agent.
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Figure CN224057296U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of curing agent production technology, and in particular to a curing agent production device and system. Background Technology
[0002] A soil hardener is a material used to improve the performance of backfill soil. Its main components typically react chemically with minerals and moisture in the soil to form cementing substances, such as calcium silicate and calcium aluminate. These cementing substances bind soil particles together, forming a stable granular structure, thereby improving the strength and stability of the backfill soil. Furthermore, some components in the hardener can fill the gaps between soil particles, making the soil denser and reducing porosity. Simultaneously, it can improve the particle size distribution of the soil, making the distribution of large and small particles more reasonable, further enhancing the soil's density and bearing capacity.
[0003] During the production of this type of curing agent, it is necessary to carefully control the proportions of each component and ensure that they are mixed evenly and react completely. If the content of a certain key component is too high or too low, it will affect the curing effect. For example, if too much cement is used in a cement-based curing agent, it may cause the backfill soil to become too hard and brittle after curing, while if the amount is too low, the strength will be insufficient, thus affecting the overall curing quality.
[0004] However, existing curing agent production equipment struggles to ensure accurate proportions and appropriate feeding speeds for each component while simultaneously achieving automatic feeding of the curing agent's raw materials, resulting in yield problems in the produced curing agents. Utility Model Content
[0005] This invention aims to solve at least one of the technical problems existing in the prior art. This overview is not intended to limit the scope of the claims.
[0006] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a curing agent production apparatus and system, which can automatically feed each raw material component of the curing agent while precisely controlling the feeding ratio and feeding speed of each raw material component, thereby improving the production quality of the curing agent.
[0007] The curing agent production apparatus according to a first aspect embodiment of the present invention includes:
[0008] The mixing drum is equipped with a mixing host for mixing materials inside the mixing drum. A first feed inlet is provided at the top of the mixing drum, and a discharge pipe is provided on the side wall of the mixing drum. The discharge pipe is equipped with a discharge control module for controlling the discharge speed.
[0009] The small material tank is located above the mixing drum. The top of the small material tank is equipped with a second inlet, and the bottom of the small material tank is equipped with a first feeding control module. The small material tank is connected to the first inlet through the first feeding control module. The first feeding control module is used to control the speed at which the raw materials in the small material tank enter the mixing drum.
[0010] The first feed pipe has one end for receiving raw materials and the other end connected to the first feed port;
[0011] The second feed pipe has one end for receiving raw materials and the other end connected to the second feed port. Both the first feed pipe and the second feed pipe are equipped with a second feed control module for controlling the feed speed.
[0012] The frame is provided with a first support part and a second support part. The first support part is used to support the mixing drum and the discharge pipe so that the entire weight of the mixing drum is borne by the first support part. The second support part is used to support the small material tank so that the entire weight of the small material tank is borne by the second support part.
[0013] The first measuring module is set between the first support part of the frame and the mixing drum. The mixing drum is connected to the first support part through the first measuring module. The first measuring module is used to detect the weight of the material in the mixing drum.
[0014] The second measuring module is located between the second support part of the frame and the small material tank. The small material tank is connected to the second support part through the second measuring module. The second measuring module is used to detect the weight of the material in the small material tank.
[0015] The integrated control module is mounted on the frame and is electrically connected to the first feeding control module, the second feeding control module, the discharge control module, the first measurement module, and the second measurement module.
[0016] The curing agent production apparatus according to the first aspect of the present invention has at least the following beneficial effects:
[0017] The curing agent production apparatus of this utility model embodiment includes a mixing drum, a small material tank, a first feed pipe, a second feed pipe, a frame, a first measuring module, and a second measuring module. The first and second feed pipes are used to feed raw materials into the mixing drum and the small material tank, respectively. Both the first and second feed pipes are equipped with a second feed control module, thus enabling control of the feeding speed of the first and second feed pipes. Furthermore, the small material tank is used to separately store small quantities of raw material. By installing a first feed control module at the bottom of the small material tank, the speed at which the raw material enters the mixing drum from the small material tank can be precisely controlled. Additionally, the mixing drum and the small material tank are respectively connected via… The first and second measuring modules are connected to the frame, thus the weight of the materials in the mixing drum and the small material tank can be obtained through the first and second measuring modules. This allows the integrated control module to control the first and second feeding control modules to achieve precise automatic feeding by detecting the weight of the materials in the mixing drum and the small material tank, as well as to control the mixing host to complete the mixing and control the discharge control module to achieve automatic discharge. Therefore, the curing agent production device of this utility model embodiment can achieve automatic feeding of each raw material component of the curing agent while accurately controlling the feeding ratio and feeding speed of each raw material component, thereby improving the production quality of the curing agent.
[0018] According to some embodiments of the present invention, a first protrusion is provided on the wall of the mixing drum, and a second protrusion is provided on the wall of the small material tank. The mixing drum and the small material tank are respectively connected to the first measuring module and the second measuring module through the first protrusion and the second protrusion.
[0019] According to some embodiments of the present invention, multiple first protrusions and multiple second protrusions are provided, and multiple first measuring modules and multiple second measuring modules are provided corresponding to the first protrusions and multiple second protrusions, respectively.
[0020] According to some embodiments of this utility model, the first feeding control module includes a first feeding valve and a first feeding control motor. The first feeding valve is disposed between the small material tank and the inlet. The small material tank is connected to the inlet through the first feeding valve. The first feeding control motor is connected to the first feeding valve and is used to control the opening and closing of the first feeding valve. The second feeding control module includes a second feeding valve and a second feeding control motor. The second feeding valve is disposed inside the first feeding pipe and the second feeding pipe. The second feeding control motor is connected to the second feeding valve and is used to control the opening and closing of the second feeding valve. The first feeding control motor and the second feeding control motor are respectively electrically connected to the integrated control module.
[0021] According to some embodiments of this utility model, the discharge control module includes a discharge valve and a discharge control motor. The discharge valve is installed inside the discharge pipe, and the discharge control motor is connected to the discharge valve to control the opening and closing of the discharge valve. The discharge control motor is electrically connected to the integrated control module.
[0022] According to some embodiments of the present invention, the first feed pipe is connected to the first support portion of the frame, and the second feed pipe is connected to the second support portion of the frame.
[0023] According to some embodiments of the present invention, the present invention also includes a finished product scale for weighing the finished product. The finished product scale is provided with one or more corresponding to the number of discharge pipes. The finished product scale is located below the discharge pipes and is electrically connected to the integrated control module.
[0024] According to some embodiments of the present invention, the mixing host includes a drive motor, a reducer, a transmission shaft, and mixing blades. The drive motor and the reducer are located at the top of the mixing drum and are each equipped with a pulley. The drive motor and the reducer are driven by a transmission belt with matching pulleys. The mixing blades are located inside the mixing drum, and the reducer and the mixing blades are connected by the transmission shaft.
[0025] According to some embodiments of the present invention, the frame is further provided with a platform portion for providing a maintenance operation platform, the platform portion being located on the outer side of the mixing drum wall and equipped with stairs.
[0026] The curing agent production system according to the second aspect embodiment of the present invention has at least the following beneficial effects: The curing agent production system of the present invention includes the curing agent production apparatus of the first aspect embodiment described above. The curing agent production apparatus includes a mixing drum, a small material tank, a first feed pipe, a second feed pipe, a frame, a first measuring module, and a second measuring module. The first feed pipe and the second feed pipe are respectively used to convey raw materials into the mixing drum and the small material tank. Both the first feed pipe and the second feed pipe are equipped with a second feed control module, thus enabling the control of the feeding speed of the first feed pipe and the second feed pipe respectively. Furthermore, the small material tank is used to separately store raw materials in small quantities. By setting the first feed control module at the bottom of the small material tank, precise measurement can be achieved. The device accurately controls the speed at which raw materials from the small material tank enter the mixing drum. Furthermore, the mixing drum and the small material tank are connected to the frame via a first measuring module and a second measuring module, respectively. Therefore, the weight of the materials in the mixing drum and the small material tank can be obtained through the first and second measuring modules. This allows the integrated control module to control the first and second feeding control modules to achieve precise automatic feeding by detecting the weight of the materials in the mixing drum and the small material tank. It also controls the mixing host to complete the mixing process and controls the discharge control module to achieve automatic discharge. Therefore, the curing agent production device of this embodiment can achieve automatic feeding of each raw material component of the curing agent while accurately controlling the feeding ratio of each raw material component, thereby improving the production quality of the curing agent.
[0027] According to some embodiments of the present invention, the curing agent production system also includes a central control console, which is electrically connected to the curing agent production device and is used to control the operation of one or more curing agent production devices.
[0028] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practicing the invention. Attached Figure Description
[0029] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0030] Figure 1 This is a top view schematic diagram of the curing agent production apparatus provided in this embodiment of the utility model;
[0031] Figure 2 This is a partial side view schematic diagram of the curing agent production device provided in this embodiment of the utility model.
[0032] Reference numerals: 100 for curing agent production device, 200 for mixing drum, 210 for discharge pipe, 220 for first protrusion, 230 for discharge control module, 231 for unloading valve, 232 for unloading control motor, 240 for drive motor, 250 for reducer, 300 for small material tank, 310 for first feeding control module, 311 for first feeding control motor, 312 for first feeding valve, 320 for second protrusion, 400 for first feeding pipe, 500 for second feeding pipe, 510 for second feeding control module, 511 for second feeding control motor, 512 for second feeding valve, 600 for frame, 610 for first support part, 620 for second support part, 630 for platform part, 640 for stairs, 700 for first measuring module, 710 for second measuring module, 800 for integrated control module, and 900 for finished product scale. Detailed Implementation
[0033] The embodiments of this utility model are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0034] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0035] In the description of a utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If the terms "first" and "second" are used, they are merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly specifying the number of indicated technical features or the order of the indicated technical features.
[0036] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0037] Reference Figure 1 and Figure 2 , Figure 1 This is a top view schematic diagram of the curing agent production apparatus 100 provided in this embodiment of the utility model. Figure 2 This is a partial side view schematic diagram of the curing agent production apparatus 100 provided in this embodiment of the utility model. Figure 1 and Figure 2 The curing agent production apparatus 100 shown includes:
[0038] A mixing drum 200 is equipped with a mixing host for mixing materials inside the mixing drum 200. A first feed inlet is located at the top of the mixing drum 200, and a discharge pipe 210 is located on the side wall of the mixing drum 200. The discharge pipe 210 is equipped with a discharge control module 230 for controlling the discharge speed. A small material tank 300 is located above the mixing drum 200. A second feed inlet is located at the top of the small material tank 300, and a first feed control module 310 is located at the bottom of the small material tank 300. The small material tank 300 is connected to the first feed inlet through the first feed control module 310. The feeding control module 310 is used to control the speed at which raw materials in the small material tank 300 enter the mixing drum 200; the first feeding pipe 400 has one end for receiving raw materials and the other end connected to the first feeding port; the second feeding pipe 500 has one end for receiving raw materials and the other end connected to the second feeding port, and both the first feeding pipe 400 and the second feeding pipe 500 are equipped with a second feeding control module 510 for controlling the feeding speed; the frame 600 is equipped with a first support part 610 and a second support part 620, the first support part 610 being used for support The mixing drum 200 and the discharge pipe 210 are configured such that the entire weight of the mixing drum 200 is borne by the first support portion 610. The second support portion 620 supports the small material tank 300, so that the entire weight of the small material tank 300 is borne by the second support portion 620. A first measuring module 700 is disposed between the first support portion 610 and the mixing drum 200 of the frame 600. The mixing drum 200 is connected to the first support portion 610 through the first measuring module 700. The first measuring module 700 is used to detect the weight of the material inside the mixing drum 200. The second measuring module 710 is disposed between the second support part 620 of the frame 600 and the small material tank 300. The small material tank 300 is connected to the second support part 620 through the second measuring module 710. The second measuring module 710 is used to detect the weight of the material in the small material tank 300. The integrated control module 800 is installed on the frame 600. The integrated control module 800 is electrically connected to the first feeding control module 310, the second feeding control module 510, the discharge control module 230, the first measuring module 700, and the second measuring module 710.
[0039] The first feed pipe 400 and the second feed pipe 500 are used to convey raw materials into the mixing drum 200 and the small material tank 300, respectively. Both the first feed pipe 400 and the second feed pipe 500 are equipped with a second feed control module 510, thus enabling control of the feeding speed of the first feed pipe 400 and the second feed pipe 500, respectively. Furthermore, the small material tank 300 is used to store small quantities of raw materials. By installing the first feed control module 310 at the bottom of the small material tank 300, the speed at which the raw materials in the small material tank 300 enter the mixing drum 200 can be precisely controlled. Additionally, the mixing drum 200 and the small material tank 300 are connected to the frame 600 via a first measuring module 700 and a second measuring module 710, respectively. The connection allows the first measuring module 700 and the second measuring module 710 to obtain the weight of the materials in the mixing drum 200 and the small material tank 300. This enables the integrated control module 800 to control the first feeding control module 310 and the second feeding control module 510 to achieve precise automatic feeding by detecting the weight of the materials in the mixing drum 200 and the small material tank 300, and to control the mixing host to complete the mixing and control the discharge control module 230 to achieve automatic discharge. Therefore, the curing agent production device 100 of this utility model embodiment can achieve automatic feeding of each raw material component of the curing agent while accurately controlling the feeding ratio and feeding speed of each raw material component, thereby improving the production quality of the curing agent.
[0040] It should be noted that the entire weight of the mixing drum 200 is borne by the first support part 610, and the entire weight of the small material tank 300 is borne by the second support part 620. Since the mixing drum 200 is connected to the first support part 610 via the first measuring module 700, and the small material tank 300 is connected to the second support part 620 via the second measuring module 710, the entire weight of the mixing drum 200 is transferred to the first support part 610 of the frame 600 via the first measuring module 700, and the entire weight of the small material tank 300 is transferred to the second support part 620 of the frame 600 via the second measuring module 710. Therefore, the first measuring module 700 and the second measuring module 710 can accurately measure the current weight of the mixing drum 200 and the small material tank 300. Combined with the pre-measured self-weight of the mixing drum 200 and the small material tank 300, the accurate weight of the material inside the mixing drum 200 and the small material tank 300 can be determined.
[0041] Understandably, the integrated control module 800 can accurately measure the current weight of the material in the mixing drum 200 and the small material tank 300 through the first measurement module 700 and the second measurement module 710. By measuring the difference between the initial weight and the current weight of the material in the mixing drum 200, the weight of the material entering the mixing drum 200 from the small material tank 300, or the weight of the material input into the mixing drum 200 through the first feed port, can be accurately calculated.
[0042] Understandably, the integrated control module 800 can control the first feeding control module 310 or the second feeding control module 510 to feed materials and adjust the feeding speed based on the weight of the material entering the mixing drum 200 from the small material tank 300 or the weight of the material input into the mixing drum 200 through the first feed port or the current weight of the material in the mixing drum 200 and the small material tank 300, and control the mixing host to stir the material in the mixing drum 200.
[0043] Specifically, one or more first feed inlets may be provided, and one or more corresponding first feed pipes 400 may also be provided. This embodiment of the utility model does not make specific limitations in this regard.
[0044] Specifically, both the first measurement module 700 and the second measurement module 710 use load cells, such as the XYL-2 type load cell from Xi'an Xinhui Electronics Co., Ltd. This embodiment of the utility model does not specifically limit the type and model of the load cell used.
[0045] It is understood that one or more small material tanks 300 can be provided, and one or more second feed pipes 500 and first feed control modules 310 corresponding to the small material tanks 300 can also be provided. This utility model embodiment does not make specific limitations in this regard.
[0046] Specifically, refer to Figure 1 There are two small material tanks 300, two second feed pipes 500 corresponding to the small material tanks 300, and four first feed pipes 400.
[0047] Understandably, the integrated control module 800 can also control the discharge control module 230 to achieve automatic discharge.
[0048] In one embodiment, a first protrusion 220 is provided on the wall of the mixing drum 200, and a second protrusion 320 is provided on the wall of the small material tank 300. The mixing drum 200 and the small material tank 300 are respectively connected to the first measuring module 700 and the second measuring module 710 through the first protrusion 220 and the second protrusion 320.
[0049] Specifically, the first protrusion 220 and the second protrusion 320 include a horizontal plate that is placed horizontally and perpendicular to the wall of the mixing drum 200 or the small material tank 300, and a triangular reinforcing rib that connects the top surface of the horizontal plate to the wall of the mixing drum 200 or the small material tank 300.
[0050] In one embodiment, multiple first protrusions 220 and multiple second protrusions 320 are provided, and multiple first measuring modules 700 and multiple second measuring modules 710 are provided corresponding to the first protrusions 220 and the second protrusions 320, respectively. By providing multiple first measuring modules 700 and multiple second measuring modules 710, the weight of the mixing drum 200 or the small material tank 300 can be distributed among multiple first measuring modules 700 or multiple second measuring modules 710, thereby ensuring the stability of the force on the mixing drum 200 or the small material tank 300, and improving the measurement accuracy based on multiple first measuring modules 700 or multiple second measuring modules 710.
[0051] Specifically, refer to Figure 1 Each mixing drum 200 and small material tank 300 has three first protrusions 220 or second protrusions 320, which are evenly distributed along the drum wall of the mixing drum 200 or small material tank 300.
[0052] Understandably, the integrated control module 800 can obtain the current weight of the material in the mixing drum 200 and the small material tank 300 based on the measurement results of multiple first measurement modules 700 or second measurement modules 710.
[0053] In one embodiment, the first feeding control module 310 includes a first feeding valve 312 and a first feeding control motor 311. The first feeding valve 312 is disposed between the small material tank 300 and the inlet. The small material tank 300 is connected to the inlet through the first feeding valve 312. The first feeding control motor 311 is connected to the first feeding valve 312 and is used to control the opening and closing of the first feeding valve 312. The second feeding control module 510 includes a second feeding valve 512 and a second feeding control motor 511. The second feeding valve 512 is disposed inside the first feeding pipe 400 and the second feeding pipe 500. The second feeding control motor 511 is connected to the second feeding valve 512 and is used to control the opening and closing of the second feeding valve 512. The first feeding control motor 311 and the second feeding control motor 511 are electrically connected to the integrated control module 800, respectively.
[0054] It is understandable that the integrated control module 800 controls the first feeding control module 310 and the second feeding control module 510 by controlling the first feeding control motor 311 and the second feeding control motor 511.
[0055] In one embodiment, the discharge control module 230 includes a discharge valve 231 and a discharge control motor 232. The discharge valve 231 is disposed in the discharge pipe 210. The discharge control motor 232 is connected to the discharge valve 231 and is used to control the opening and closing of the discharge valve 231. The discharge control motor 232 is electrically connected to the integrated control module 800.
[0056] In one embodiment, the first feed pipe 400 is connected to the first support portion 610 of the frame 600, and the second feed pipe 500 is connected to the second support portion 620 of the frame 600. Therefore, the weight of the first feed pipe 400 and the second feed pipe 500 is not actually borne by the mixing drum 200 or the small material tank 300, but is borne by the frame 600. This further ensures the accuracy of the weights of the mixing drum 200 and the small material tank 300 measured by the first measurement module 700 and the second measurement module 710, freeing them from interference from the first feed pipe 400 and the second feed pipe 500. Consequently, this further improves the accuracy of the integrated control module 800 in controlling the feeding ratio and speed.
[0057] In one embodiment, the curing agent production apparatus 100 further includes a finished product scale 900 for weighing the finished product. One or more finished product scales 900 are provided corresponding to the number of discharge pipes 210. The finished product scales 900 are located below the discharge pipes 210 and are electrically connected to the integrated control module 800.
[0058] Understandably, the integrated control module 800 can control the unloading control motor 232 by measuring the weight of the discharged material by the finished product scale 900, thereby controlling the opening and closing of the unloading valve 231 and thus controlling the discharge speed.
[0059] It is understood that the discharge pipe 210 in this utility model can be provided as one or multiple. This utility model embodiment does not make a specific limitation in this regard. Similarly, the discharge control module 230 and the finished product scale 900 corresponding to the discharge pipe 210 can also be provided as one or more. This utility model embodiment does not make a specific limitation in this regard.
[0060] Specifically, refer to Figure 1 There are four discharge pipes 210, and there are also four finished product scales 900 corresponding to the discharge pipes 210.
[0061] Reference Figure 2 In one embodiment, the mixing host includes a drive motor 240, a reducer 250, a transmission shaft, and mixing blades. The drive motor 240 and the reducer 250 are located at the top of the mixing drum 200 and are each equipped with a pulley. The drive motor 240 and the reducer 250 are driven by a transmission belt with matching pulleys. The mixing blades are located inside the mixing drum 200. The reducer 250 and the mixing blades are connected by the transmission shaft.
[0062] Understandably, the integrated control module 800 can control the rotation speed of the drive motor 240 to change the stirring speed of the stirring blades.
[0063] In one embodiment, the frame 600 is further provided with a platform portion 630 for providing a maintenance work platform. The platform portion 630 is located on the outer side of the mixing drum 200 and is equipped with a staircase 640. By providing the platform portion 630 with the staircase 640, it is convenient for workers to climb onto the platform portion 630 to perform maintenance work.
[0064] This utility model embodiment also provides a curing agent production system, which includes the curing agent production device 100 in this utility model embodiment. The curing agent production system also includes a central control console, which is electrically connected to the integrated control module 800 of the curing agent production device 100, so that it can control one or more curing agent production devices 100 to work.
[0065] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," 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.
[0066] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A curative production apparatus characterized by comprising: The utility model relates to a kind of mixing machine, including: Mixing drum, install the mixing host for stirring material in the mixing drum, the first feed inlet is provided at the top of the mixing drum, the discharge pipe is provided on the lateral wall of the mixing drum, the discharge control module for controlling the discharge speed is provided in the discharge pipe; Small material tank, it is provided above the mixing drum, the second feed inlet is provided at the top of the small material tank, the first feed control module is provided at the bottom of the small material tank, the small material tank is connected the first feed inlet by the first feed control module, the first feed control module is used to control the speed of raw material in the small material tank into the mixing drum; First feed pipe, one end is used to receive raw material, the other end is connected the first feed inlet; Second feed pipe, one end is used to receive raw material, the other end is connected the second feed inlet, the first feed pipe and the second feed pipe are provided with second feed control module for controlling the speed of feed; Frame, the frame is provided with first support part and second support part, the first support part is used to support the mixing drum and the discharge pipe, so that the whole weight of the mixing drum is borne by the first support part, the second support part is used to support the small material tank, so that the whole weight of the small material tank is borne by the second support part; First measurement module, it is arranged between the first support part of the frame and the mixing drum, the mixing drum is connected with the first support part by the first measurement module, and the first measurement module is used to detect the weight of material in the mixing drum; Second measurement module, it is arranged between the second support part of the frame and the small material tank, the small material tank is connected with the second support part by the second measurement module, and the second measurement module is used to detect the weight of material in the small material tank; Integrated control module, it is installed on the frame, and the integrated control module is electrically connected with the first feed control module, the second feed control module, the discharge control module, the first measurement module and the second measurement module.
2. The curative production apparatus according to claim 1, wherein First protruding part is provided on the wall of the mixing drum, second protruding part is provided on the wall of the small material tank, and the mixing drum and the small material tank are connected with the first measurement module and the second measurement module by the first protruding part and the second protruding part respectively.
3. The curative production apparatus according to claim 2, wherein The first protruding part and the second protruding part are provided with a plurality of, and the first measurement module and the second measurement module are provided with a plurality of corresponding the first protruding part and the second protruding part respectively.
4. The curative production apparatus according to claim 1, wherein The first feed control module includes first feed valve and first feed control motor, the first feed valve is arranged between the small material tank and the feed inlet, the small material tank is connected with the feed inlet by the first feed valve, and the first feed control motor is connected with the first feed valve and is used to control the opening and closing of the first feed valve; The second feed control module includes second feed valve and second feed control motor, the second feed valve is arranged in the first feed pipe and the second feed pipe, and the second feed control motor is connected with the second feed valve and is used to control the opening and closing of the second feed valve. The first feeding control motor and the second feeding control motor are electrically connected with the comprehensive control module respectively.
5. The curative production apparatus according to claim 1, wherein The discharge control module comprises a discharge valve and a discharge control motor, the discharge valve is arranged in the discharge pipe, the discharge control motor is connected with the discharge valve, and the discharge control motor is used for controlling opening and closing of the discharge valve, and the discharge control motor is electrically connected with the comprehensive control module.
6. The curative production apparatus according to claim 1, wherein The first feeding pipe is connected with the first supporting part of the rack, and the second feeding pipe is connected with the second supporting part of the rack.
7. The curative production apparatus according to claim 1, wherein A finished product scale for weighing the weight of the finished product is further included, one or more finished product scales are arranged corresponding to the number of the discharge pipes, the finished product scale is arranged below the discharge pipe, and the finished product scale is electrically connected with the comprehensive control module.
8. The curative production apparatus according to claim 1, wherein The stirring main machine comprises a driving motor, a speed reducer, a transmission shaft and stirring blades, wherein the driving motor and the speed reducer are arranged at the top of the stirring cylinder and are each provided with a belt pulley, the driving motor and the speed reducer are connected through a transmission belt matched with the belt pulley to realize belt transmission, the stirring blades are arranged in the stirring cylinder, and the speed reducer and the stirring blades are connected through the transmission shaft.
9. The curative production apparatus according to claim 1, wherein The rack is further provided with a platform part for providing a maintenance work platform, the platform part is arranged outside the cylinder wall of the stirring cylinder, and the platform part is installed with a staircase.
10. A system for producing a curing agent, characterized by The curing agent production system further comprises a central control console electrically connected with the curing agent production device and used for controlling operation of one or more curing agent production devices.