Material storage system
By introducing monitoring and control devices into the material storage system, combined with insulation and hydraulic systems, precise temperature control of the storage space is achieved, solving the problem of poor material stability and improving the stability and safety of material storage.
Patent Information
- Application Number
- CN202422944438.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-29
AI Technical Summary
Existing material storage systems have low accuracy in temperature control, resulting in poor material stability, especially at low or high temperatures where freezing or thawing is likely to occur.
The system employs a monitoring device to monitor the temperature and material status of the storage space in real time. A temperature adjustment command is generated through a control device, and a heat preservation device is used for precise temperature control. Combined with components such as a hydraulic gate, camera, humidity module, and alarm device, the system ensures that the storage space remains within the preset temperature range.
It improves the accuracy of temperature control during material storage, prevents materials from freezing in low-temperature environments and melting in high-temperature environments, enhances the stability and safety of the material storage system, and improves the user experience.
Smart Images

Figure CN223606217U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material storage technical field, specifically, relate to a material storage system. BACKGROUND
[0002] Material storage is one of the important processes in production and manufacturing process, in order to guarantee the quality of products, more and more enterprises realized the importance of material storage, and due to part material is sensitive to temperature, in low temperature environment or high temperature environment, material quality change easily occurs, even can lead to part material scrap situation.But the accuracy of the temperature control in the related art when material storage is low, leading to the stability of the material in the material storage system is poor.
[0003] For the above problems, no effective solution has been proposed so far. UTILITY MODEL CONTENT
[0004] The utility model embodiment provides a kind of material storage system, to at least solve the technical problem that the stability of the material in material storage system is poor due to the accuracy of the temperature control when material storage is low.
[0005] According to an aspect of the utility model embodiment, a kind of material storage system is provided, comprising: storage structure, for storing material in internal storage space, the top of storage structure is provided with material inlet, the bottom of storage structure is provided with material outlet;Monitoring device, it is set in storage structure, for monitoring the current temperature and the current storage state of material in storage space;Control device is connected with monitoring device, for generating temperature regulation instruction according to current temperature and preset temperature;Heat preservation device, it is set in the outer surface of storage structure, for temperature regulation according to temperature regulation instruction, to make storage space be at preset temperature.
[0006] Further, the material storage system further includes: hydraulic sluice, it is set in material outlet, for switching operating state according to control instruction, to open or close the release channel of material;Control device is connected with hydraulic sluice, for generating control instruction according to current storage state and preset storage state.
[0007] Further, monitoring device includes: material level indicator, it is set in the first position in storage structure, for monitoring the storage state of material, obtains current storage state, wherein, the first position is used to indicate the position that material in storage space can be monitored in storage structure;Temperature module, it is set in the second position in storage structure, for monitoring the temperature in storage space, obtains current temperature, wherein, the second position is used to indicate the position that temperature in storage space can be monitored in storage structure.
[0008] Further, the monitoring device further comprises a camera arranged at a third position in the storage structure, configured to monitor the storage space to obtain multimedia data of the storage space, wherein the third position is used to represent a position in the storage structure at which the overall environment of the storage space is monitored.
[0009] Further, the material storage system further comprises a first alarm device connected with the camera and the control device, configured to output a first alarm signal when the multimedia data meets a preset condition.
[0010] Further, the monitoring device further comprises a humidity module arranged at a fourth position of the storage structure, configured to monitor humidity in the storage space to obtain a current humidity, wherein the fourth position is used to represent a position in the storage structure at which the humidity in the storage space can be monitored; and the control device is connected with the humidity module and is configured to generate a humidity adjustment instruction according to the current humidity and a preset humidity.
[0011] Further, the heat preservation device comprises a heat preservation plate laid on an outer surface of the storage structure, and a heat tracing band arranged between the outer surface of the storage structure and the heat preservation plate, configured to perform temperature adjustment according to the temperature adjustment instruction.
[0012] Further, the material storage system further comprises a second alarm device connected with the heat tracing band, configured to output a second alarm information when the adjusted temperature of the heat tracing band is in a preset temperature range.
[0013] Further, the material storage system further comprises a protection device arranged on an outer surface of the heat preservation device, configured to protect the heat preservation device.
[0014] Further, the material storage system further comprises a vibration motor arranged on the storage structure, configured to vibrate the storage structure based on a preset vibration frequency when a flow rate of the material is less than a preset flow rate.
[0015] Further, the storage structure is a steel frame structure.
[0016] In the embodiment of the utility model, provide a kind of material storage system, comprising: storage structure, for storing material in internal storage space, the top of storage structure is provided with material inlet, the bottom of storage structure is provided with material outlet;Monitoring device, it is set in storage structure, for monitoring the current temperature and the current storage state of material in storage space;Control device is connected with monitoring device, for generating temperature adjusting instruction according to current temperature and preset temperature;Heat preservation device, it is set in the outer surface of storage structure, for temperature adjustment according to temperature adjusting instruction, to make storage space be at preset temperature.The utility model discloses the temperature and material storage state in storage structure are monitored by monitoring device, and by control device based on current temperature and preset temperature, the temperature inside storage structure is accurately controlled using heat preservation device, to make the temperature in the storage space inside storage structure be at preset temperature, so that the material in the inside of storage structure does not appear freezing phenomenon etc. In low temperature environment, also does not appear melting phenomenon etc. In high temperature environment, effectively improve the accuracy of temperature control when material is stored, effectively improve the stability of material in material storage system, and further solve the technical problem that the stability of material in material storage system is poor due to the low accuracy of temperature control when material is stored. BRIEF DESCRIPTION OF DRAWINGS
[0017] The drawings described herein are used to provide further understanding of the utility model, and constitute a part of the present application, and the illustrative embodiment of the utility model and its explanation are used to explain the utility model, and do not constitute undue limitation on the utility model. In the drawings:
[0018] Figure 1 It is a structure schematic view of an optional material storage system according to the utility model embodiment;
[0019] Figure 2 It is a flow chart of an optional material storage system according to the utility model embodiment.
[0020] Wherein, the above drawing contains the following figure marks: 11, storage structure;12, monitoring device;13, control device;14, heat preservation device;111, material inlet;112, material outlet. DETAILED DESCRIPTION
[0021] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The utility model will be described in detail below with reference to the drawings and in combination with embodiments.
[0022] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising," when used in this specification, specify the presence of stated features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or groups thereof.
[0023] It is to be understood that the terms "first", "second", and the like, used in the specification and the claims herein, are used to distinguish between similar objects, and are not necessarily used to describe a particular sequential or chronological order. It is to be understood that the terms so used are interchangeable under appropriate circumstances such that the embodiments of the application described herein are, for example, capable of practical implementation in other than the order illustrated or other than the order described herein. Moreover, the terms "comprise", "comprising", "include", "including", and the like, are typically used herein to indicate the presence of stated features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or groups thereof.
[0024] Reference will now be made in detail to the exemplary embodiments of the present application, which are illustrated in the accompanying drawings. However, these exemplary embodiments can be implemented in various different forms, and should not be construed as being limited to only the embodiments set forth herein. It should be understood that the embodiments are provided so that the disclosure of the present application is complete and comprehensive, and the concepts of the exemplary embodiments are sufficiently conveyed to those of ordinary skill in the art. In the drawings, the thicknesses of layers and regions can be exaggerated for clarity, and the same reference numerals are used to designate the same elements throughout the drawings, so that a description thereof will not be repeated.
[0025] According to the embodiments of the present application, an embodiment of a material storage system is provided, Figure 1 is a structural schematic diagram of an optional material storage system according to the embodiments of the present application, as Figure 1 shown, the system comprises: a storage structure 11, configured to store materials in an internal storage space, a material inlet 111 is arranged at the top of the storage structure 11, and a material outlet 112 is arranged at the bottom of the storage structure 11; a monitoring device 12, arranged in the storage structure 11, configured to monitor the current temperature in the storage space and the current storage state of the materials; a control device 13, connected with the monitoring device 12, configured to generate a temperature adjustment instruction according to the current temperature and a preset temperature; and a heat preservation device 14, arranged on the outer surface of the storage structure 11, configured to perform temperature adjustment according to the temperature adjustment instruction, so that the storage space is at the preset temperature.
[0026] The above-mentioned material refers to various material resources required in the process of production, manufacturing, construction or maintenance, and the above-mentioned material can be raw materials, auxiliary materials, semi-finished products or finished products, etc. which need temperature control during storage. In this application, the above-mentioned material can be food, gangue, textiles, lubricating oil or adhesive, etc. which are seriously affected by temperature change.
[0027] The above-mentioned storage structure refers to a device for storing materials, and the materials enter the above-mentioned storage structure through the material inlet at the top of the storage structure and are taken out through the material outlet at the bottom of the storage structure when needed. Among them, the above-mentioned storage structure can be a cylindrical structure, a cuboid structure or a conical structure, etc. which is open at the top and bottom and has a storage function.
[0028] The above-mentioned monitoring device refers to a device for monitoring the temperature inside the above-mentioned storage structure and monitoring the storage state of the material in the above-mentioned storage structure, wherein the above-mentioned monitoring device includes but is not limited to: a level indicator, a temperature sensor, a humidity sensor, a pressure sensor, a gravity sensor, a photoelectric sensor, an industrial camera, a machine vision system, a spectrum analyzer, an ultrasonic detection device, an X-ray detection device or a vibration monitoring device, etc. In this application, the temperature inside the storage structure and the state of the material in the above-mentioned storage structure are monitored by the above-mentioned monitoring device, so as to adjust the temperature inside the storage structure in real time by the control device.
[0029] The above-mentioned storage state refers to the state that the above-mentioned storage structure stores materials or the above-mentioned storage structure does not store materials. In this application, the storage state of the material in the storage space is monitored by the above-mentioned monitoring device, and when the storage state of the material in the storage space is stored, the temperature of the storage space in the storage structure is adjusted; when the storage state of the material in the storage space is not stored, the temperature of the storage space in the storage structure is stopped.
[0030] The above-mentioned control device refers to a device for controlling the temperature in the storage space according to the current temperature and the preset temperature in the storage space, and in this application, the above-mentioned control device controls the current temperature in the storage space to reach the preset temperature. Among them, the above-mentioned control device can be: a single-chip microcomputer, a programmable logic controller or a distributed control system, etc.
[0031] The above-mentioned preset temperature refers to the suitable temperature for storing the above-mentioned material, wherein the above-mentioned preset temperature can be set according to the state of the material, the above-mentioned preset temperature can also be set artificially according to experience and demand, and the above-mentioned preset temperature can also be set according to the actual application scene.
[0032] The temperature adjustment instruction is an instruction for adjusting the temperature in the storage space. The temperature adjustment instruction is generated by the control device and sent to the heat preservation device. The temperature adjustment instruction is executed by the heat preservation device. The temperature adjustment instruction includes, but is not limited to, a heating instruction and a cooling instruction. When the current temperature in the storage space is greater than the preset temperature, the control device generates a cooling instruction as the temperature adjustment instruction. When the current temperature in the storage space is less than the preset temperature, the control device generates a heating instruction as the temperature adjustment instruction.
[0033] In an alternative embodiment, the material storage system includes a storage structure, a monitoring device, a control device, and a heat preservation device. The top of the storage structure is provided with a material inlet, and the bottom of the storage structure is provided with a material outlet. The monitoring device is arranged in the storage structure to monitor the current temperature in the storage space and the storage state of the material. The monitoring device is connected to the control device. The control device compares the current temperature in the storage space monitored by the monitoring device with the preset temperature to determine whether the temperature adjustment instruction is a heating instruction or a cooling instruction. After obtaining the temperature adjustment instruction, the control device sends the temperature adjustment instruction to the heat preservation device arranged on the outer surface of the storage structure to adjust the temperature in the storage space according to the temperature adjustment instruction, so that the storage space is at the preset temperature.
[0034] In the case where the monitoring device includes a temperature sensor and a pressure sensor, the temperature sensor can be arranged on the inner side wall of the storage structure, and the pressure sensor can be arranged at the bottom of the storage structure. The current temperature in the storage space is obtained by the temperature sensor, and the current storage state of the material is determined by the pressure sensor. When the current storage state of the material is that the material is stored, the temperature sensor sends the current temperature to the control device. After receiving the current temperature, the control device compares the current temperature with the preset temperature to determine whether the temperature adjustment instruction is a heating instruction or a cooling instruction. After obtaining the temperature adjustment instruction, the control device sends the temperature adjustment instruction to the heat preservation device arranged on the outer surface of the storage structure to adjust the temperature in the storage space according to the temperature adjustment instruction, so that the storage space is at the preset temperature.
[0035] In the case that the monitoring device comprises a temperature sensor and a machine vision system, the temperature sensor and the camera of the machine vision system can be arranged on the inner side wall of the storage structure, the current temperature in the storage space is obtained by the temperature sensor, the image information in the storage space is captured by the camera of the machine vision system, and the current storage state of the material is determined by identifying the image information. When the current storage state of the material is that the material is stored, the temperature sensor sends the current temperature to the control device, and after receiving the current temperature, the control device compares the current temperature with the preset temperature to determine the temperature adjustment instruction as a heating instruction or a cooling instruction. After obtaining the temperature adjustment instruction, the control device sends the temperature adjustment instruction to the heat preservation device arranged on the outer surface of the storage structure to adjust the temperature in the storage space according to the temperature adjustment instruction, so that the storage space is at the preset temperature.
[0036] In the present application, by arranging the monitoring device, the control device and the heat preservation device, the temperature in the storage space can be adjusted in real time according to the current temperature in the storage space combined with the preset temperature, which effectively improves the accuracy of the temperature in the storage space and improves the user experience.
[0037] Through the scheme provided in the present application, a material storage system is provided, which comprises: a storage structure for storing material in an internal storage space, a material inlet is arranged on the top of the storage structure, and a material outlet is arranged on the bottom of the storage structure; a monitoring device arranged in the storage structure for monitoring the current temperature in the storage space and the current storage state of the material; a control device connected with the monitoring device for generating a temperature adjustment instruction according to the current temperature and the preset temperature; and a heat preservation device arranged on the outer surface of the storage structure for temperature adjustment according to the temperature adjustment instruction, so that the storage space is at the preset temperature. The temperature and the material storage state in the storage structure are monitored by the monitoring device, and based on the current temperature and the preset temperature, the storage structure is accurately at the preset temperature by the heat preservation device, so that the material in the storage structure does not freeze in a low-temperature environment or melt in a high-temperature environment, effectively improving the accuracy of controlling the temperature during material storage, effectively improving the stability of the material in the material storage system, and solving the technical problem of poor stability of the material in the material storage system due to low accuracy of controlling the temperature during material storage.
[0038] Optionally, the material storage system further comprises: a hydraulic gate arranged at the material outlet for switching the working state according to the control instruction to open or close the release channel of the material; and a control device connected with the hydraulic gate for generating a control instruction according to the current storage state and the preset storage state.
[0039] The hydraulic shutter is a shutter provided at the material outlet and controlled by hydraulic pressure. The hydraulic shutter can be opened or closed by hydraulic pressure. When the hydraulic shutter is in an open state, the material outlet forms a release channel, and the material stored in the storage space can be released through the material outlet. When the hydraulic shutter is in a closed state, the material stored in the storage space cannot be released through the material outlet. The hydraulic shutter can be circular, rectangular, triangular, or the like, and the hydraulic shutter can completely cover the material outlet in the closed state.
[0040] The control instruction is an instruction for controlling the opening or closing of the hydraulic shutter. The control instruction can control the opening time or closing time of the hydraulic shutter according to the storage state.
[0041] The preset storage state is a storage state of the stored material, which can be determined according to the weight or volume of the material to be stored. The preset storage state can be set according to the state of the storage structure. The preset storage state can be set artificially according to experience and demand. The preset storage state can also be set according to the actual application scenario.
[0042] In an optional embodiment, the material outlet of the storage structure is further provided with a hydraulic shutter. The hydraulic shutter is connected to the control device. The controller can generate a control instruction according to the current storage state and the preset storage state, and send the control instruction to the hydraulic shutter. The hydraulic shutter switches the working state according to the control instruction to open or close the release channel of the material.
[0043] For example, when the current storage state of the storage space is full of material, and the preset storage state is to store half of the current stored material, the control device calculates the time required to open the release channel of the material, and sends the target time required to open the release channel of the material and the instruction to open the release channel of the material to the hydraulic shutter. The hydraulic shutter receives the target time required to open the release channel of the material and the instruction to open the release channel of the material, opens the hydraulic shutter to form the release channel of the material, starts the material release, and controls the hydraulic shutter to close after the target time to close the release channel of the material and stop the material release.
[0044] In this application, the hydraulic shutter is provided, so that the user can open or close the material channel according to the demand, and the hydraulic pressure prevents the failure that the material outlet cannot be opened, effectively improves the stability of the material storage system, and improves the user experience.
[0045] Optionally, the monitoring device comprises: a level indicator arranged at a first position in the storage structure, configured to monitor the storage state of the material to obtain a current storage state, wherein the first position is used to represent a position in the storage structure at which the storage space can be monitored for the material; and a temperature module arranged at a second position in the storage structure, configured to monitor the temperature in the storage space to obtain a current temperature, wherein the second position is used to represent a position in the storage structure at which the storage space can be monitored for the temperature.
[0046] The level indicator refers to a device installed at the first position in the storage structure for detecting the storage state of the material. When the material passes the level indicator, it is determined that the storage space stores the material.
[0047] The first position refers to a position in the storage structure that is pre-set to represent a position at which the storage space can be monitored for the material. The first position can be set according to the state of the storage structure. The first position can also be set artificially according to experience and demand. The first position can also be set according to the actual application scenario.
[0048] The second position refers to a position that is pre-set to determine the current temperature in the storage space. The second position can be set according to the state of the temperature module. The second position can also be set artificially according to experience and demand. The second position can also be set according to the actual application scenario.
[0049] In an optional embodiment, the monitoring device comprises a level indicator and a temperature module. The level indicator is arranged at a first position in the storage structure for monitoring the material in the storage space. The temperature module is arranged at a position in the storage structure for monitoring the current temperature in the storage space. In this application, the storage state of the material is monitored by the level indicator to obtain a current storage state. The current temperature in the storage space is monitored by the temperature module to obtain a current temperature.
[0050] In this application, by arranging the level indicator and the temperature module, the current storage state and the current temperature in the storage space can be quickly determined, which effectively improves the storage efficiency of the material storage system and improves the user experience.
[0051] Optionally, the monitoring device further comprises a camera arranged at a third position in the storage structure, configured to monitor the storage space to obtain multimedia data of the storage space, wherein the third position is used to represent a position in the storage structure at which the overall environment of the storage space is monitored.
[0052] The third position refers to a position in the storage space for installing the camera. In this application, the camera is installed at the third position and can obtain complete image information of the storage space. The multimedia data in the storage space is obtained through the image information.
[0053] The multimedia data refers to data for representing the state of the material in the storage space. The user can determine whether the storage space changes according to the multimedia data, so as to prompt the user that the storage space fails or the like. The multimedia data includes, but is not limited to, the color, shape or size of the storage space.
[0054] In an optional embodiment, the detection device further comprises a camera installed at the third position of the storage structure. The camera is used to monitor the storage space and obtain the multimedia data of the storage space, so as to determine the state of the storage space of the storage structure.
[0055] In the present application, the multimedia data is obtained by the camera, so that the user can determine the state of the storage space according to the multimedia data, to determine whether the storage space fails. The safety of the material storage system is effectively improved, and the user experience is improved.
[0056] Optionally, the material storage system further comprises a first alarm device connected with the camera and the control device, and used to output a first alarm signal when the multimedia data meets a preset condition.
[0057] The first alarm signal refers to a signal for warning the user that the material storage space fails. The first alarm signal can be an image signal, a sound signal or a text signal.
[0058] The preset condition refers to a condition for determining that the storage space fails, which is set in advance. The preset condition can be set according to the state of the storage space. The preset condition can also be set artificially according to experience and demand. The preset condition can also be set according to the actual application scenario.
[0059] In an optional embodiment, the material storage system further comprises an alarm device connected with the camera. The alarm device is also connected with the control device. After the control device obtains the multimedia data obtained by the camera, the control device compares the multimedia data with the preset condition. When the multimedia data meets the preset condition, the control device controls the alarm device to output the first alarm signal.
[0060] For example, when the first alarm signal is an image signal and the preset condition is that the shape of the storage space has a cavity, after the control device obtains the multimedia data such as the color, shape or size of the storage space obtained by the camera, if the shape of the storage space has a cavity, the control device controls the alarm device to output the image signal and sends the image signal to the user terminal, so as to remind the user that the storage space fails.
[0061] In the present application, by setting the alarm device, when the storage space fails, the first alarm signal can be sent in time through the alarm device to inform the user of the storage space failure, effectively improving the safety of the material storage system and improving the user experience.
[0062] Optionally, the monitoring device further comprises a humidity module arranged at a fourth position of the storage structure, configured to monitor the humidity in the storage space to obtain a current humidity, wherein the fourth position represents a position in the storage structure that can monitor the humidity in the storage space; and the control device is connected to the humidity module and configured to generate a humidity adjustment instruction according to the current humidity and a preset humidity.
[0063] The fourth position refers to a position in the storage space for monitoring the humidity inside the storage space through the humidity module, wherein the fourth position can be set according to the state of the storage space, the fourth position can also be set artificially according to experience and demand, and the fourth position can also be set according to the actual application scenario.
[0064] In an optional embodiment, the monitoring device further comprises a humidity module arranged at a fourth position of the storage structure, configured to monitor the humidity in the storage space. The humidity module is further connected to the control device, and the humidity module sends the current humidity obtained by the humidity module to the control device. The control device generates a humidity adjustment instruction according to the humidity module and a preset humidity to adjust the humidity in the storage space to the preset humidity.
[0065] In the present application, by setting the humidity module, the user can obtain the humidity in the storage space in real time, and the humidity in the storage space can be controlled through the control device to improve the applicability of the storage space and improve the user experience.
[0066] Optionally, the heat preservation device comprises a heat preservation plate laid on the outer surface of the storage structure, and a heat tracing band arranged between the outer surface of the storage structure and the heat preservation plate and configured to adjust the temperature according to the temperature adjustment instruction.
[0067] The heat preservation plate refers to a device arranged on the outer surface of the storage structure for heat preservation. When the heat preservation plate is arranged on the outer surface of the storage structure, the heat loss of the storage space in the storage structure can be prevented.
[0068] The heat tracing band refers to an electric heating device for pipes, equipment or storage tanks, etc. for thawing and preventing freezing, which is used to convert electrical energy into heat energy to maintain the temperature of the medium in the pipeline. In the present application, the heat tracing band is used to maintain the temperature in the storage space at a preset temperature.
[0069] In an optional embodiment, the heat preservation device comprises a heat preservation plate and a heating belt, the heat preservation plate is laid on the outer surface of the storage structure, and the heating belt is arranged between the outer surface of the storage structure and the heat preservation plate and used for adjusting the temperature in the storage space according to the temperature adjustment instruction.
[0070] In the present application, the heat preservation plate is arranged to prevent the heat in the storage space in the storage structure from flowing out too fast, and the heating belt is arranged between the heat preservation plate and the outer surface of the storage structure, so that the resource consumption can be reduced when the temperature in the storage space is controlled, the performance-price ratio of the material storage system is effectively improved, and the user experience is improved.
[0071] Optionally, the material storage system further comprises a second alarm device connected with the heating belt, used for outputting second alarm information when the adjustment temperature of the heating belt is in a preset temperature interval.
[0072] The second alarm information refers to alarm information for warning the user that the adjustment temperature of the heating belt is abnormal, wherein the second alarm signal can be an image signal, a sound signal or a text signal.
[0073] The preset temperature interval refers to an interval for determining that the adjustment temperature of the heating belt is abnormal, wherein the preset temperature interval can be set according to the state of the heating belt, the preset temperature interval can be set artificially according to experience and demand, and the preset temperature interval can be set according to the actual application scenario.
[0074] In an optional embodiment, the material storage system further comprises a second alarm device connected to the heating belt, when the adjustment temperature of the heating belt is in a preset temperature interval, it is determined that the adjustment temperature of the heating belt is abnormal, and second alarm information is outputted to warn the user that the adjustment temperature of the heating belt is abnormal.
[0075] In the present application, the second alarm device is arranged, so that the user can be notified in time when the adjustment temperature of the heating belt is abnormal, the safety of the material storage system is effectively improved, and the user experience is improved.
[0076] Optionally, the material storage system further comprises a protection device arranged on the outer surface of the heat preservation device and used for protecting the heat preservation device.
[0077] The protection device refers to a device arranged on the outer surface of the heat preservation device and used for protecting the heat preservation device, in the present application, the protection device can prevent external factors from interfering with the heat preservation device, so as to prevent the heat preservation device from being abnormal.
[0078] In an optional embodiment, the material storage system is further provided with a protective device, which is installed on the outer surface of the insulation device to protect the insulation device from damage caused by severe weather conditions such as rain and hail, and to prevent damage to the insulation device by wild animals.
[0079] In this application, by setting up protective devices, external factors are effectively prevented from interfering with the insulation device, thereby effectively improving the safety and stability of the material storage system and enhancing the user experience.
[0080] Optionally, the material storage system further includes a vibration motor, which is installed on the storage structure and is used to vibrate the storage structure based on a preset vibration frequency when the material flow rate is less than the preset flow rate.
[0081] The aforementioned vibration motor refers to a device installed on a storage structure to vibrate the storage structure, thereby increasing the material flow rate. In this application, if the material flow rate is slow due to material properties or other reasons, a vibration motor is needed to increase the material flow rate.
[0082] The aforementioned preset vibration frequency refers to the frequency set in advance for vibrating the storage structure by a vibration motor to improve the material flow rate. The preset vibration frequency can be set according to the storage structure status, or it can be manually set based on experience and needs, or it can be set according to the actual application scenario.
[0083] In one optional embodiment, the material storage system further includes a vibration motor, which is disposed on the storage structure and is used to vibrate the storage structure according to a preset vibration frequency when the material flow rate is less than a preset flow rate, so as to improve the material flow rate.
[0084] In this application, by setting a vibration motor, the material flow rate can be increased by setting a preset vibration frequency when the material flow rate is low, which effectively improves the working efficiency of the material storage system and enhances the user experience.
[0085] Optionally, the storage structure is a steel frame structure.
[0086] In this application, by setting the storage structure as a steel frame structure to facilitate user installation or disassembly, the convenience of the material storage system is effectively improved, and the user experience is enhanced.
[0087] The following is combined with Figure 2 The material storage system provided by this utility model will be described in detail, wherein, Figure 2 This is an operational flowchart of an optional material storage system according to an embodiment of the present invention, as follows:Figure 2 As shown, the operation process of the material storage system provided by the utility model comprises the following steps:
[0088] In step S202, the current temperature in the storage space, the current storage state of the material, and the multimedia data of the storage space are monitored by the monitoring device.
[0089] In an alternative embodiment, when the monitoring device comprises a temperature sensor and a pressure sensor, the temperature sensor can be arranged on the inner sidewall of the storage structure, and the pressure sensor can be arranged at the bottom of the storage structure. The current temperature in the storage space is obtained by the temperature sensor, and the current storage state of the material is determined by the pressure sensor. When the current storage state of the material is that the material is stored, the temperature sensor sends the current temperature to the control device. The monitoring device further comprises a camera installed at the third position of the storage structure, which monitors the storage space by the camera to obtain the multimedia data of the storage space, so as to determine the state of the storage space of the storage structure.
[0090] In step S204, the control device generates a temperature adjustment instruction according to the current temperature and the preset temperature, and generates a control instruction according to the current storage state and the preset storage state.
[0091] In an alternative embodiment, when the current storage state of the storage space is that the material is fully stored, if the preset storage state is that half of the current stored material is stored, the control device calculates the time required for opening the release channel of the material, and sends the target time required for opening the release channel of the material and the instruction for opening the release channel of the material to the hydraulic flap. After receiving the target time required for opening the release channel of the material and the instruction for opening the release channel of the material, the hydraulic flap is opened to form the release channel of the material, and the material release is started. After the target time is opened, the hydraulic flap is controlled to be closed to close the release channel of the material and stop the material release. When the current temperature in the storage space is greater than the preset temperature, the control device generates a cooling instruction as the temperature adjustment instruction; when the current temperature in the storage space is less than the preset temperature, the control device generates a heating instruction as the temperature adjustment instruction.
[0092] In step S206, the temperature adjustment device adjusts the temperature according to the temperature adjustment instruction, and the hydraulic flap switches the working state according to the control instruction.
[0093] In an alternative embodiment, after obtaining the temperature adjustment instruction, the control device sends the temperature adjustment instruction to the heat preservation device arranged on the outer surface of the storage structure, so as to adjust the temperature in the storage space according to the temperature adjustment instruction, and make the storage space at the preset temperature. When the current storage state of the storage space is full of materials, if the preset storage state is to store half of the current storage materials, the control device calculates the time required for opening the material release channel, and sends the target time required for opening the material release channel and the instruction of opening the material release channel to the hydraulic gate. After receiving the target time required for opening the material release channel and the instruction of opening the material release channel, the hydraulic gate opens to form the material release channel, starts the material release, and controls the hydraulic gate to close after the target time to close the material release channel and stop the material release.
[0094] In step S208, the first alarm device outputs a first alarm signal according to the multimedia belonging to the preset condition.
[0095] In an alternative embodiment, in the case that the first alarm signal is an image signal and the preset condition is that the storage space shape appears a cavity, after the control device obtains the multimedia data such as the color, shape or size of the storage space obtained by the camera, if the storage space shape appears a cavity, the control device controls the alarm device to output an image signal and sends the image signal to the user terminal to remind the user of the storage space failure.
[0096] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can be variously changed and modified. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application. The above only describes the preferred embodiments of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should be considered as the protection scope of the present application.
Claims
1. A material storage system, characterized by, The application relates to a material storage system. The material storage system comprises a storage structure for storing materials in an internal storage space, a material inlet arranged at the top of the storage structure, and a material outlet arranged at the bottom of the storage structure; a monitoring device arranged in the storage structure for monitoring a current temperature in the storage space and a current storage state of the materials, wherein the monitoring device comprises a level indicator arranged at a first position in the storage structure for monitoring the storage state of the materials to obtain the current storage state, wherein the first position is used to indicate a position in the storage structure at which the materials in the storage space can be monitored; and a temperature module arranged at a second position in the storage structure for monitoring the temperature in the storage space to obtain the current temperature, wherein the second position is used to indicate a position in the storage structure at which the temperature in the storage space can be monitored; a control device connected to the monitoring device for generating a temperature adjustment instruction according to the current temperature and a preset temperature; and a heat preservation device arranged on the outer surface of the storage structure for adjusting the temperature according to the temperature adjustment instruction so that the storage space is at the preset temperature, wherein the heat preservation device comprises a heat preservation plate laid on the outer surface of the storage structure and a heat tracing band arranged between the outer surface of the storage structure and the heat preservation plate for adjusting the temperature according to the temperature adjustment instruction. The material storage system further comprises a hydraulic gate arranged at the material outlet for switching the working state according to a control instruction to open or close the release channel of the materials; and the control device is connected to the hydraulic gate for generating the control instruction according to the current storage state and a preset storage state. The monitoring device further comprises a camera arranged at a third position in the storage structure for monitoring the storage space to obtain multimedia data of the storage space, wherein the third position is used to indicate a position in the storage structure at which the overall environment of the storage space can be monitored. The material storage system further comprises a first alarm device connected to the camera and the control device for outputting a first alarm signal when the multimedia data meets a preset condition.
2. The material storage system of claim 1, wherein, The monitoring device further comprises a humidity module arranged at a fourth position in the storage structure for monitoring the humidity in the storage space to obtain a current humidity, wherein the fourth position is used to indicate a position in the storage structure at which the humidity in the storage space can be monitored; and the control device is connected to the humidity module for generating a humidity adjustment instruction according to the current humidity and a preset humidity. The material storage system further comprises a second alarm device connected to the heat tracing band for outputting a second alarm signal when the adjustment temperature of the heat tracing band is in a preset temperature range. The material storage system further comprises a protection device arranged on the outer surface of the heat preservation device for protecting the heat preservation device.
3. The material storage system of claim 1, wherein, The material storage system further comprises 4. A material storage system according to claim 3, characterised in that, 5. The material storage system of claim 1, wherein, 6. The material storage system of claim 1, wherein, 7. A material storage system according to any one of claims 1 to 6, characterised in that, 8. A material storage system according to any one of claims 1 to 6, characterised in that, A vibration motor is arranged on the storage structure and used to vibrate the storage structure based on a preset vibration frequency when the flow rate of the material is less than a preset flow rate.