Raw material storage device for nano calcium carbonate production
By introducing components such as filters, air intake fans, and exhaust fans into the nano-calcium carbonate storage device, air circulation and humidity control are achieved, solving the problem of moisture absorption during nano-calcium carbonate storage and improving storage efficiency and quantitative discharge capacity.
Patent Information
- Application Number
- CN202520347465.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Existing technologies cannot effectively maintain air circulation and humidity control inside the tank during the storage of nano-calcium carbonate, leading to moisture absorption of the nano-calcium carbonate and affecting its storage performance.
A raw material storage device for the production of nano-calcium carbonate was designed. Through components such as a filter screen, an air inlet fan, a heating rod, an exhaust fan, an air outlet pipe, an air inlet pipe, and a discharge component, air circulation and humidity control are achieved inside the tank. Dry air is introduced by the air inlet fan, dust is filtered by the filter screen, moisture is discharged by the exhaust fan, and raw materials are discharged quantitatively by the discharge roller.
This effectively prevents nano-calcium carbonate from getting damp, improves storage efficiency, ensures quantitative discharge of raw materials, and enhances the efficiency of the equipment.
Smart Images

Figure CN223687313U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a chemical production technical field especially relates to a raw material storage device for nanometer calcium carbonate production. BACKGROUND
[0002] Nanometer calcium carbonate is also called super micro calcium carbonate or ultrafine calcium carbonate, which is a new type of ultrafine solid powder material. It has attracted much attention due to its unique performance and wide application field. However, the conventional device is inconvenient to take out the required amount of raw materials according to the production requirements when taking out the raw materials, thereby affecting the use effect of the device.
[0003] The prior art CN212048861U discloses a raw material storage device for nanometer calcium carbonate production, which comprises a feeding port, a tank body, a first motor, a sleeve, a stirring shaft one, a transmission shaft one, a locking device, a discharge port, a stirring shaft two, a feeding tank, a brush disc, brush hairs, a second motor, conveying blades, a temperature sensor, a signal alarm and a cold air box. The raw materials are poured into the tank body from the feeding port, the first motor drives the sleeve, the stirring shaft one and the transmission shaft one to rotate, so that the raw materials are uniformly stored in the tank body. Then, the locking device is sealed by using a tool. When the raw materials need to be taken out, the discharge port is opened, the first motor drives the transmission shaft one to rotate, thereby driving the stirring shaft two to rotate and feeding the raw materials into the feeding tank. The brush disc and the brush hairs can scrape off the raw materials adhered to the inner wall of the tank body. The second motor drives the conveying blades to rotate, uniformly conveying the raw materials in the feeding tank to the discharge port. Workers can take out the appropriate amount of raw materials according to the actual needs. When the temperature inside the tank body is high, the temperature sensor sends a signal to the alarm to notify the staff to convey cold air into the cold air box to cool the tank body, thereby improving the use effect of the device.
[0004] In normal use, the prior art is inconvenient to maintain the air circulation inside the tank body and control the humidity inside the tank body during the storage of nanometer calcium carbonate, thereby causing the nanometer calcium carbonate inside the tank body to be damp, which affects the storage effect of the device on the nanometer calcium carbonate. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a raw material storage device for nanometer calcium carbonate production, which solves the problem that the prior art is inconvenient to maintain the air circulation inside the tank body and control the humidity inside the tank body during the storage of nanometer calcium carbonate, thereby causing the nanometer calcium carbonate inside the tank body to be damp, which affects the storage effect of the device on the nanometer calcium carbonate.
[0006] The utility model provides a raw material storage device for nano calcium carbonate production, including jar body and structural component, the structural component includes filter screen, air inlet fan, heating rod, exhaust fan, outlet pipe, air inlet pipe, material pipe, out pipe, outer frame and discharge component, the outer frame fixed mounting in jar body side, the out pipe with jar body intercommunication, the discharge component with out pipe connects, the material pipe with jar body intercommunication and located jar body side away from out pipe, air inlet pipe with jar body intercommunication and located jar body side close to the outer frame, air inlet fan fixed mounting in air inlet pipe side away from jar body, heating rod fixed mounting in air inlet pipe side away from air inlet fan, filter screen with air inlet pipe screw connection and located air inlet pipe side away from heating rod, the material pipe with jar body intercommunication, the outlet pipe with jar body intercommunication and located jar body side away from air inlet pipe, exhaust fan fixed mounting in outlet pipe side away from jar body.
[0007] Wherein, the discharge component includes discharge roller and discharge motor, the discharge roller is rotatably connected with the out pipe and located at the side of the out pipe away from the jar body, the discharge motor is fixedly connected with the out pipe, and the output shaft of the discharge motor is connected with the discharge roller.
[0008] Wherein, the structural component further includes brush disc, frame body and hanging removal motor, the frame body is rotatably connected with the jar body and located at the side of the jar body away from the out pipe, the brush disc is fixedly connected with the frame body and located at the side of the frame body close to the jar body, and the hanging removal motor is fixedly connected with the jar body, and the output shaft of the hanging removal motor is connected with the frame body.
[0009] Wherein, the structural component further includes brush, block body and driving component, the block body is slidably connected with the jar body and located at the side of the jar body close to the air inlet pipe, the brush is fixedly connected with the block body and located at the side of the block body close to the filter screen, and the driving component is connected with the jar body and the block body.
[0010] Wherein, the driving component includes frame body, driving screw rod and driving motor, the frame body is slidably connected with the block body and fixedly connected with the jar body, the driving screw rod is rotatably connected with the frame body and threadedly connected with the block body, and the driving motor is fixedly connected with the frame body, and the output shaft of the driving motor is connected with the driving screw rod.
[0011] The utility model discloses a raw material storage device for nanometer calcium carbonate production, the frame body is rotated on the jar body under the drive of the hang and remove motor, the frame body drives the brush disc to hang and fall nanometer calcium carbonate on the inner wall of jar body when rotating, the discharge roller is rotated on the outlet pipe under the drive of the discharge motor, the discharge roller imports nanometer calcium carbonate in the jar body into the outlet pipe when rotating, and nanometer calcium carbonate is discharged from the outlet pipe, the filter screen is installed on the inlet pipe, the inlet fan acts, and the outside air is imported into the jar body from the inlet pipe, the heating rod heats the air that enters the jar body, makes the air dry, and simultaneously, the filter screen filters the dust in the air, the exhaust fan acts, and the air circulation in the jar body is discharged, the air circulation in the jar body is kept, the humidity in the jar body is controlled, and then the nanometer calcium carbonate in the jar body is prevented from being damp, thereby improving the storage effect of the device on nanometer calcium carbonate. BRIEF DESCRIPTION OF DRAWINGS
[0012] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced as follows.
[0013] Figure 1 It is the whole structure schematic diagram of raw material storage device for nanometer calcium carbonate production of the utility model first embodiment.
[0014] Figure 2 It is the structure schematic diagram of frame body and hang and remove motor of the utility model.
[0015] Figure 3 It is the utility model Figure 2 It is the enlarged view of A place.
[0016] Figure 4 It is the whole structure schematic diagram of raw material storage device for nanometer calcium carbonate production of the utility model second embodiment.
[0017] In the drawing: 101-jar body, 102-filter screen, 103-inlet fan, 104-heating rod, 105-exhaust fan, 106-outlet pipe, 107-inlet pipe, 108-charge pipe, 109-outlet pipe, 110-outer frame, 111-brush disc, 112-frame body, 113-hang and remove motor, 114-discharge roller, 115-discharge motor, 201-brush, 202-block, 203-frame, 204-drive screw rod, 205-drive motor. DETAILED DESCRIPTION
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] The first embodiment of this application is as follows:
[0020] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of the raw material storage device for the production of nano-calcium carbonate according to the first embodiment of this utility model. Figure 2 This is a structural diagram of the frame and the motor mounting of this utility model. Figure 3 This is a utility model Figure 2 The enlarged view at point A shows that this utility model provides a raw material storage device for the production of nano-calcium carbonate, including a tank 101 and structural components. The structural components include a filter screen 102, an air inlet fan 103, a heating rod 104, an exhaust fan 105, an air outlet pipe 106, an air inlet pipe 107, a material pipe 108, an outlet pipe 109, an outer frame 110, a discharge component, a brush plate 111, a frame 112, and a hanging motor 113. The discharge component includes a discharge roller 114 and a discharge motor 115. The aforementioned solution solves the problem in the prior art that it is inconvenient to maintain air circulation inside the tank 101 and control the humidity inside the tank 101 during the storage of nano-calcium carbonate, which leads to the nano-calcium carbonate inside the tank 101 becoming damp and affecting the storage effect of the device. It can be understood that the aforementioned solution can be used when it is inconvenient to maintain air circulation inside the tank 101 and control the humidity inside the tank 101 during the storage of nano-calcium carbonate.
[0021] In this specific embodiment, by installing the filter 102 on the air inlet pipe 107, activating the air intake fan 103 to introduce external air into the tank 101 through the air inlet pipe 107, and using the heating rod 104 to heat the air entering the tank 101 to dry the air, while the filter 102 filters dust from the air, and the exhaust fan 105 activates to exhaust the air circulating inside the tank 101, maintaining air circulation inside the tank 101 and controlling the humidity inside the tank 101, thereby preventing the nano-calcium carbonate inside the tank 101 from getting damp and improving the storage effect of the device for nano-calcium carbonate.
[0022] The outer frame 110 is fixedly installed on one side of the tank body 101, the outlet pipe 109 communicates with the tank body 101, the discharge member is connected with the outlet pipe 109, the material pipe 108 communicates with the tank body 101 and is located on the side of the tank body 101 away from the outlet pipe 109, the air inlet pipe 107 communicates with the tank body 101 and is located on the side of the tank body 101 close to the outer frame 110, the air inlet fan 103 is fixedly installed on the side of the air inlet pipe 107 away from the tank body 101, the heating rod 104 is fixedly installed on the side of the air inlet pipe 107 away from the air inlet fan 103, the filter screen 102 is screwed with the air inlet pipe 107 and is located on the side of the air inlet pipe 107 away from the heating rod 104, the material pipe 108 communicates with the tank body 101, the air outlet pipe 106 communicates with the tank body 101 and is located on the side of the tank body 101 away from the air inlet pipe 107, the air outlet fan 105 is fixedly installed on the side of the air outlet pipe 106 away from the tank body 101, the tank body 101 is hollow inside, a plurality of support columns are designed on the outer side of the bottom end of the tank body 101, the top end of the outlet pipe 109 communicates with the bottom end of the tank body 101, the bottom end of the material pipe 108 communicates with the top front end of the tank body 101, the outer thread is designed on the left end of the air inlet pipe 107, the right end of the air inlet pipe 107 communicates with the upper left side of the tank body 101, the air inlet fan 103 is located inside the right side of the air inlet pipe 107, the heating rod 104 has a plurality of, the heating rod 104 is located inside the left side of the air inlet pipe 107, the left end of the air outlet pipe 106 communicates with the upper right side of the tank body 101, the air outlet fan 105 is located inside the left side of the air inlet pipe 107, the inner thread is designed on the right end of the filter screen 102, a plurality of filter holes are designed on the left end of the filter screen 102, the inner thread of the filter screen 102 is connected with the outer thread of the air inlet pipe 107, the end of the outer frame 110 is designed with a through hole, the inside of the outer frame 110 is designed with a cavity, the outer side left part of the outer frame 110 is designed with a pipeline and is connected with external conveying equipment, the temperature of the tank body 101 is cooled by the external conveying equipment conveying cold air inside the outer frame 110, the outer frame 110 is located on the outer side of the lower part of the tank body 101, the discharge member can guide the nano calcium carbonate inside the tank body 101 into the outlet pipe 109 and discharge, the air inlet fan 103 is installed on the air inlet pipe 107, the external air is guided into the tank body 101 from the air inlet pipe 107, the heating rod 104 heats the air entering the tank body 101 to make the air dry, the filter screen 102 filters the dust in the air, the air outlet fan 105 operates to discharge the circulating air in the tank body 101,The air inside the tank body 101 is circulated, the humidity inside the tank body 101 is controlled, and the nano calcium carbonate inside the tank body 101 is prevented from being damp, thereby improving the storage effect of the device on the nano calcium carbonate.
[0023] Secondly, the discharge roller 114 is rotatably connected with the discharge pipe 109 and located at the side of the discharge pipe 109 away from the tank body 101; the discharge motor 115 is fixedly connected with the discharge pipe 109, the output shaft of the discharge motor 115 is connected with the discharge roller 114, the vertical end of the discharge pipe 109 is designed with a through hole, and the bottom end of the discharge roller 114 is fixedly connected with the output shaft of the discharge motor 115 through the through hole of the discharge pipe 109; the discharge roller 114 is driven to rotate on the discharge pipe 109 by the discharge motor 115, the nano calcium carbonate inside the tank body 101 is introduced into the discharge pipe 109 by the rotation of the discharge roller 114, and the nano calcium carbonate is discharged from the discharge pipe 109, thereby facilitating the quantitative discharge of the nano calcium carbonate.
[0024] Then, the frame body 112 is rotatably connected with the tank body 101 and located at the side of the tank body 101 away from the discharge pipe 109; the brush disc 111 is fixedly connected with the frame body 112 and located at the side of the frame body 112 close to the tank body 101; the hanging removal motor 113 is fixedly connected with the tank body 101, the output shaft of the hanging removal motor 113 is connected with the frame body 112, the top center of the tank body 101 is designed with a rotating hole, the vertical end of the frame body 112 is fixedly connected with the output shaft of the hanging removal motor 113 through the rotating hole of the tank body 101, and the brush disc 111 has a plurality of brush discs; the inner side of the brush disc 111 is fixedly connected with the horizontal end of the frame body 112, the frame body 112 is driven to rotate on the tank body 101 by the hanging removal motor 113, and the brush disc 111 is driven to rotate on the tank body 101 by the frame body 112, thereby cleaning the nano calcium carbonate on the inner wall of the tank body 101.
[0025] When the nanometer calcium carbonate raw material storage device of the embodiment is used, the hanging motor 113 drives the frame body 112 to rotate on the tank body 101, the frame body 112 drives the brush disc 111 to hang the nanometer calcium carbonate on the inner wall of the tank body 101 when rotating, the discharging motor 115 drives the discharging roller 114 to rotate on the outlet pipe 109, the discharging roller 114 guides the nanometer calcium carbonate in the tank body 101 into the outlet pipe 109 when rotating, discharges the nanometer calcium carbonate from the outlet pipe 109, the filter screen 102 is installed on the air inlet pipe 107, the air inlet fan 103 operates, guides the external air from the air inlet pipe 107 into the tank body 101, the heating rod 104 heats the air entering the tank body 101, so that the air is dry, and the filter screen 102 filters the dust in the air, the air outlet fan 105 operates, discharges the air circulating in the tank body 101, maintains the air circulation in the tank body 101, controls the humidity in the tank body 101, thereby avoiding the nanometer calcium carbonate in the tank body 101 from being damp, and improving the storage effect of the device on the nanometer calcium carbonate.
[0026] The second embodiment of the present application is:
[0027] Please refer to Figure 4 , Figure 4 is the overall structure schematic view of the nanometer calcium carbonate raw material storage device of the second embodiment of the utility model, on the basis of the first embodiment, the structural assembly of the embodiment further includes a brush 201, a block 202 and a driving member, the driving member includes a frame 203, a driving screw 204 and a driving motor 205.
[0028] For the specific embodiment, the block 202 is driven by the driving member to move on the tank body 101, the block 202 drives the brush 201 to move when moving, and the dust on the filter screen 102 is cleaned, thereby improving the filtering effect of the filter screen 102.
[0029] The block 202 is in sliding connection with the tank body 101 and is located on the side of the tank body 101 close to the air inlet pipe 107; the brush 201 is in fixed connection with the block 202 and is located on the side of the block 202 close to the filter screen 102; the driving member is connected with the tank body 101 and is connected with the block 202, the driving member drives the right lower part of the block 202 to move on the top left side of the tank body 101, the top end of the brush 201 is in fixed connection with the bottom left side of the block 202, the block 202 drives the brush 201 to move when moving, and the dust on the filter screen 102 is cleaned, thereby improving the filtering effect of the filter screen 102.
[0030] Secondly, the frame body 203 is in sliding connection with the block 202 and is in fixed connection with the tank body 101; the driving screw rod 204 is in rotating connection with the frame body 203 and is in threaded connection with the block 202; the driving motor 205 is in fixed connection with the frame body 203, the output shaft of the driving motor 205 is connected with the driving screw rod 204, the bottom of the frame body 203 is hollow, the end of the frame body 203 is designed with a rotating hole, the right side of the block 202 is designed with a through threaded hole, the outer side of the driving screw rod 204 is designed with external threads, the external threads of the driving screw rod 204 are connected with the through threaded hole of the block 202, and the end of the driving screw rod 204 is fixedly connected with the output shaft of the driving motor 205 through the rotating hole of the frame body 203, the driving motor 205 drives the driving screw rod 204 to rotate on the frame body 203, and the driving screw rod 204 drives the block 202 to move on the tank body 101 when rotating, thereby driving the block 202 to move.
[0031] When the nanometer calcium carbonate production raw material storage device is used, the driving motor 205 drives the driving screw rod 204 to rotate on the frame body 203, the driving screw rod 204 drives the block 202 to move on the tank body 101 when rotating, the block 202 drives the brush 201 to move when moving, the dust on the filter screen 102 is cleaned, and the filtering effect of the filter screen 102 is improved.
[0032] The above only discloses one or more preferred embodiments of the application, and cannot limit the scope of the application, and those skilled in the art can understand that all or part of the above-mentioned processes can be implemented, and equivalent changes made according to the claims of the application still belong to the scope covered by the application.
Claims
1. A raw material storage device for nano calcium carbonate production, comprising a tank body, characterized in that: it further comprises a structural assembly; the structural assembly comprises a filter screen, an air inlet fan, a heating rod, an air outlet fan, an air outlet pipe, an air inlet pipe, a material pipe, an outlet pipe, an outer frame and an outlet member, the outer frame is fixedly installed on one side of the tank body, the outlet pipe is in communication with the tank body, the outlet member is connected with the outlet pipe, the material pipe is in communication with the tank body and located on the side of the tank body away from the outlet pipe, the air inlet pipe is in communication with the tank body and located on the side of the tank body close to the outer frame, the air inlet fan is fixedly installed on the side of the air inlet pipe away from the tank body, the heating rod is fixedly installed on the side of the air inlet pipe away from the air inlet fan, the filter screen is threadedly connected with the air inlet pipe and located on the side of the air inlet pipe away from the heating rod, the material pipe is in communication with the tank body, the air outlet pipe is in communication with the tank body and located on the side of the tank body away from the air inlet pipe, and the air outlet fan is fixedly installed on the side of the air outlet pipe away from the tank body.
2. The raw material storage device for nano calcium carbonate production according to claim 1, characterized in that: the outlet member comprises an outlet roller and an outlet motor, the outlet roller is rotatably connected with the outlet pipe and located on the side of the outlet pipe away from the tank body, and the outlet motor is fixedly connected with the outlet pipe, and the output shaft of the outlet motor is connected with the outlet roller.
3. The raw material storage device for nano calcium carbonate production according to claim 1, characterized in that: the structural assembly further comprises a brush disc, a frame body and a hanging and removing motor, the frame body is rotatably connected with the tank body and located on the side of the tank body away from the outlet pipe, the brush disc is fixedly connected with the frame body and located on the side of the frame body close to the tank body, and the hanging and removing motor is fixedly connected with the tank body, and the output shaft of the hanging and removing motor is connected with the frame body.
4. The raw material storage device for nano calcium carbonate production according to claim 1, characterized in that: the structural assembly further comprises a brush, a block body and a driving member, the block body is slidably connected with the tank body and located on the side of the tank body close to the air inlet pipe, the brush is fixedly connected with the block body and located on the side of the block body close to the filter screen, and the driving member is connected with the tank body and the block body.
5. The raw material storage device for nano calcium carbonate production according to claim 4, characterized in that: the driving member comprises a frame, a driving screw rod and a driving motor, the frame is slidably connected with the block body and fixedly connected with the tank body, the driving screw rod is rotatably connected with the frame and threadedly connected with the block body, and the driving motor is fixedly connected with the frame, and the output shaft of the driving motor is connected with the driving screw rod.
Citation Information
Patent Citations
Raw material storage device for nano calcium carbonate production
CN212048861U